Sgr015458 (gene) Monk fruit (Qingpiguo) v1

Overview
NameSgr015458
Typegene
OrganismSiraitia grosvenorii (Monk fruit (Qingpiguo) v1)
DescriptionTransaldolase
Locationtig00003991: 284844 .. 303287 (+)
RNA-Seq ExpressionSgr015458
SyntenySgr015458
Sequences
The following sequences are available for this feature:

Gene sequence (with intron)

Legend: exonCDSpolypeptide
Hold the cursor over a type above to highlight its positions in the sequence below.
ATGGCTTCCATTTCCAAGCTTTCCAATCCCACCTCTGCGCCATCTCTCTCCTCTTCCTTCAACCCCCGATCTTCCCCCTCCAAGTGTTTCATCTCCTTCCGACCCCGTACCGATTTCTGCCTCAAGGTTTCCGCGTCTAGATTGTCCGTTCGGAGGGACTCCGATTTGAGCGGCTCCTTGGCGTACGTCTACTTTCTGAATTTTTTCTTCTTGCTTTCCTGTGATTGATCGGTGGTTGACGAATTTGCGTTTTGGGTTTCCTTTTTATTACGAAGATCTGCTTGATGTTTATATTTTGTCGGCTTCTACTTCGTTTTCTGTGTCTGATTTTATATATGGCGTTGAGTTCTTGATCATCATATGATATTTCAGTTTCCCAACACCCTTTTTTTGGGTGTGAAGGATCATTTCTTGCACTTCAAAAGATTGATGTGGAAGAACAGCATTAGTAGGATCTATGTTTCCTGCGCATTCTTAGATCTTATTGTATCATCATCCTTGTGTCGTTGGTTTTCTTGTCAAGTTGATAAATCTAGCATGGGGTAGGAGTGTTTGATTCTTTTATAGAAGTTAGCTCTGAGCTATTATTATATTCTTCCCAGATTCTAGTCAAAGTTGGATTTTTCTAGCTAATTTCTTACTGAGATTCAATGTTCATTTCTTGGAAATGATAATAATCTAAGAAACACATGCACTAACACAAATTGAAAGCGTGACATGTCATCTTGGACTGAACTCATTCAAGTGCTCAAGAAGTTTATGATAACAGGGATTGAATTCTGACTTAGAGTTTGAAGTTGGGAAAGAAATCTGAAGTTTTTCTAATTTACAATAATGATCATTTTGTATTGAAGTTGTGAAAATTTCTCCGGGAGTGTTCTAACCCACACACGTCCAAGTGTGCTCCCGAGCAGCGCCTGTCCGTGTTTGAGATGGATGCATCGGATAGCAACACTCCAACCTTGGAGGATTATCTATGCTTAAAATTTGCATATGTTTTATGATTGTTTCCTAACTACAGTGATGCTATGTATTGCATGTTGTTATAACAGTGTCAGGTGTTCCCAAGGAGATGGAAATGGAATCCCAACGAAGAGAACAGTGCTTCATGATCTTTATGAAAAGGAAGGACAGTCTCCGTGGTATGATAATCTCTGCCGCCCTGTTACCGACCTGCTTCCCCTTATTTCCAAAGGTGTCAGAGGTGTAACTAGCAACCCGGCAGTACGTATTCAAATCTTATTGTTTTATCTCTGCTAGTAAATCTCATCAGGACAATTTTCATGAGAACACAGGAATATGATTATGTAATCTTGTGATCACCAATCCATAATTCTTGTGGTTTACCCAATTTTTATATGAAATTCATGATCACCTAACTTTTTGCTTTTATCCTCTTACAGATTTTCCAGAAAGCAATTTCATCTTCAAATGCTTATAACGACCAATTCAGGTATTATTAATCAAATCTGTCTCTTACTTTATTACACTTTGATCTTTTCTACATTTCACGGATGGTAATCATATGAATGGAATTTTCAGAGAACTTGTTCAATCGGGAAAAGATATTGAAAGTGCATATTGGGAACTTGTGGTGAAGGATATCCAAGATGCATGCAAACTTTTTGAGCCTATCTATGATCAAACAGATGGTGGTGATGGCTACGTTTCAGTCGAAGTGTCTCCAAAACTTGCTGACGATACCGAAGGAACCGTTGAGGCTGCAAAGTGGCTCCACAAAGTTGTTAGTCGCCCGAATGTATACATAAAGATACCTGCTCCTGCTGCTTGCATCCCTTCTATTAGGGATACTATTGCAAATGGCATAAGTGTCAATGTAACTGTAAGTTCTTTCTCTATACACCCTTGGCTTTATGAATGACTGTTGCATACTTCAAAATGTTTATCAGAGCTGAATTATTAACCATTGGTATTGGAGTTAGACATTTAGTCTAATTGCAACTCTTGAGAAGTGGTAGCCTAACATTCATTTCCTGATTTCTCGCACAGCTCATATTCTCTGTTGCTCGATACGAAGCAGTCATTGATGCATACTTGGATGGACTTGAGGCCTCGGGTTTAAGTGACCTTTCTAGAGTCACAAGTGTCGCTTCCTTCTTTGTAAGTCGGGTCGACACCCTTATTGACAAATTGCTTGAGAAAATTGGAACACCGGAGGCCCTTGATCTGCGAGGAAAGGTGACTGCATCATCGTTTCTAGAATTTAATTTTCACCTCTGTAAACATACTGTAAGATTTGCTGATTTATGAAATGATGAATATTTTAGGCTGCAGTTGCTCAAGCCGCCCTTGCTTACCAGCTCTACCAGAAGAAGTTCTCCGGCCCAAGATGGGAGGCTCTGGTGAAGAAGGGTGCAAAGAAGCAAAGGTTGCTCTGGGCATCTACAAGTGTTAAGAACCCGGCATACTCCGACACCTTATACGTTGCCCCGCTCATTGGACCCGACACTGTAAGTGATCTAATATCACATATCTCTTCTCGTGTCAATCACGCTATCGCTATCGAATCAATAAAACAGGCATCCCCTTTTCTTATCTGAATTGTACCACTTCCCCCTCCTCCTCAGGTTTCGACCATGCCTGACCAAGCTCTTGAAGCATTTGTTGACCATGGAACTGTTTCGAGGACTATCGATTCAAACGTATCCGAAGCTGAAGGAATATACAGTGCACTTGAGAAGCTGGGAATAGACTGGAATGAAGTTGGGAATCAGCTTGAAGTTGAAGGAGTGGATTCTTTCAAGAAGAGCTTTGACAGCCTGCTTAATACTCTCCAAGACAAGGCCAACTCTCTTAAATTGGTCAGCCATTAAACTTCCCAGTTGAATATCAAGTGTGATGGTGGGTGAGAATTAATAAAAACTGTTGGGTAAATTCCTGCTGTAAAATGTGTTATTCAGTGTCTTAAAAATACCTTATCTTTGAATGTAATATATGTCGGTTAGTGCTAAGTTTTTAGGGATTGAAAAACTAAGAGGCCTTTTAATAACGTTCGGATTTTCCATTTTTCGTTTCTTGTTTTTAGTTTTTAAGAAACGGTGTTTAGTAATTGTTTCTGATTTTCTCGTTTTTCATTTGTATGAAATGTTTCCAAAATTGTTTATGAAGTTTGGAAACAAAAAAAAAATCTCATTTGTTGATTTTTGTTTTCAGTTTTCCAGATATATAAATAGAAGTATTATTTTATCATTTTTACTTTTAAAATCTATTATAAATGTTAAGAAAATTAAATATAATAATTTTGAATATTTTAATTTATAAAATCATTTCTCAAGTAAAATTTTAAAATGATTACCATATTTTGTTTCTTTTCTCAATAGAAAAAAAAAAAGTAAGAATAGATTATTACTTTTTAAATGTTCTAGGTGATAATAATTAACTTAGATTTTATGAGTTTTTATATAATTTATTGATTATATGTTTAGGTATAATATTTATATCTATTAAATAAATGTTTTTCTAGGTAATTTAAAATAAAATAAATTTGTAAATATGAAATTTTGATTAATAGATTATAATTTTTTTAAATGACCTAAGTATTACTTAATTTATTTATATTTATTAATGAGATTTTTAGTTATATTAATTATTATATTTATTAATCAAATTTTTTTAGATAATTAAGAATAATAAATTTATTGTAAATATAAATTGTTGATTAATAGATTATTATTTTTATTTTTAATTTATGTTTTCTTTCTTATATAGATTGAAAATGAGAGATGAAAGTTTAGAAATTCTCTTGGATGCAAAGGGTCATATAATTTGGATGATATATGCTGCAAAAATTTGCAATAGGTTGTCAATTCATCTCTAAAATTTAGACAGAATCTTCTTTTAAGTGCTATAATTGAATTGACCATAACTTTATTTAAATCAACAATTTAAAACAATATAAAGTTTAAAACCAAAAGGTTAAAAAAAAAAACATTTAGTCTCTTTGACTGAAAATGTTTCCAACTCTCCATTTGAATGTATTTCTAAAATAAAAAGATTTTTTTTTTGTTCAACAAATGTAGAGGTTGGAGATTGAACATTCAACCGGCTCAATTTGGCCCTAAAATAGAAAGCTTATGGGTGAACGCTTTTGTTATCTTTACTCATGTGAATCAAAAACACACCCACACAAGTAGGAGTTCATTTTATAGTCATGATTAAAATCAAATATGCATATGATTATCCTAGTGACGTGTTTACATTTCTATAATAGTCTTATATGAAAGTGCAAGACAGATTGTGGTCTAGTCTTAAGCAATCTCATTACATGCGATACCTCTACTCGCAATTCACTGCATGAATGATCAAAATATGACCATTTGTAACAATTACAAAATGAATCATATCAGTAATGTAGCCAATATAATATCTCCAACTCTATTCATATTCTATAGACTATTTAAGCTACTATTGTTGAACTAGATCCTTTCTTGTGTACTTACACTATGTACCTCGTTTGAGAACGCATCTGGTAGCAACTAGAAATTGAATGATAAAAAATGTTAGAAGACAAGATGCACATATTAACGATGAATCTTTATAGTTAAATTGAAAATTTGGTCCCTATGGTTTTAAAATGTTCAATTGAGTCCCTATAGTTTGGGTTTAGTTTCAATTTGGTCCTAATAATTTTAAAAGTTTTAATTTCTTATATATAGTTTAGGCATAGTTTCAATTTGGTACCTATGGTTTTGTTAAATCTCATAAGTTATCTCTAAATTGTGTTTTACCCACCCAAAAAATTTACTTTTTTCCTTTTATTTTTTTCTCAACTCTAAATCTTAATATAATCAACTAACATAATTAGCCAAATAGAAAATATTGTCACATAAAAAAATGTGTCAATATGGTAATTAACAGGGATCATTTATGAAGTTTGACGAAATCATAAGGACCAAATTGAAACTTTTAAAGTCATAGGGACCAAATTAAAATGAAACTCAAACTATAAGAATAAAATTGAAACTAAGCCTAAATTATAGAGACTAAATTGAAACTATGCCCAAATTATAGGGACAAAATTGAAATTATGCCAAAATTATAAGGACCAAAATTACAATTTAACAAATCTTTAGCTACTTTCAATGTTTACAAAAATTATGAGCTTTAAGACATAAATCTCAACGCCCGCTCCCGTCGTGCTCCCTTCTCTCTCTCCCTCTTCCCTCATCCCCGCCACACCCCCTTCCCGTGCTACTCCCATCCTGTCTTCAAATCTAGAAAAGAGAGAAAGGAGATGTGAGTCGTGTGACAGTGGTGGAAGCCAGGAGTGGTGGCTGGCAACTTTTTTATAAAAAATTTTAAAAAATGGCCCCATCACCTTAAAAATATTATTTTTTGTAATCGCATCATCTTTTTATTAAAGTGGTTATTTAAAAACAAACGTAAGAACCAAATAGAAATCTAACTCAAACACAAGGACAAAAAGAGTAGTTATTCTTAGGATAAATCTAAAAATTCATGACAAAAATGAAATTTAAACTTGAAAATACAAACCCACCAAAAATAACGACTAACAAAGCATGCAACAAAGGAGAAGAGTCTTAAGGGAGAAATTTTTTCTCTCCATTATCCCTTTTTTTCGATTCATTTATTGTAATTGTAATTTTTTTTTTTATTTTAGTTTTGTACATTAATAAATTAAAAAAATTTATAATAGTGCTAGAGGAAAAATTTTATATTTCCATTTGGCCCTTTATTTTTTATATTATTCTTATTTTATCATTTATTTTTCTAAAATCAAAACATCTTTTTTTAAGGCTAAAAAATATTATTTTAACAGATGTAATTATATATATATATATATATATATATATATATATATATATATATATATATTTGTCAATTTTCAAATGACTTCATGTTTAAAATTGGATAAGTATTTTAGTTTTTCAATAAAGTTATCAATAATGGTAACAGTGTGAATATATTGTATTTTCTAATTATTTTTTACTTTAAAAGAATATGATATTACGTACATTTATCCTTTAAAAATAATGAAGACTTTTAATTTCTCAATATTATTGCCCCTTATTTAATATTTAATTTTATTTTAGCTATCTACATGTTTTGACTATTTAAATTTTTTTCTATCTTGATAAATACAATAAATTTTATTTGTTTACATTTAAGTTTTAAATTTATGAAACTGATTTTAATTGAAAATGTGTAATTACATTAATTATTTGAAATTTATAATATGTTTATACCCTTTCCTCATTTTATTATTTTATTTTTTACTTAGAAATATGATAATTTATTTTTCTTATTTGAAAGAAAATTTTAATAAACACTAATATATTTTGTTTAAAAAATTAATTGTTAGTACAATTTAAAAACTATTTTACTTTTTTATTTTTAAATCTTACCGTTAAAAGATTATGGCTAAATATATCATATGATCCTAAATTTTTTAGATTTTTCTCAATTTTGTCATTAATCTTTTAAAATTCTTAATTTTACCCTTAATGTATTAAAATTTTTCAATCAAGTCCTTTCATTAAAAAATATGTTAAATTTTGTTAATTAAAAGTTGATTTGTCATTAAATTATTGTTTTGTTAACATATTTTGACACATGGGCATGTCACTTGAATATACCATTTGAAAGAAATAGATTTATTGATGAGCGGGTCGAATTTTTTTGATGAGCGAGTTAGGTGTGTCAAGTAGCATCCGAGTGGCATATTACGTGTCCAAATATATTAATAAAACAATAATTTGATGATAACTATTTGTTAACAAATTTTAACAACTTTTTTATGAAAGGATTTAATTGAGAATTTTTTATACATTAGAGGTAAAATTGAGAATTTTAAAAGATTAAAGATCAAATTGAGAATTAACTACAAGATTAATAATAATGTGATATATTTAGCTAAAGATTATTTTAAAACACGTGCGTTGCACGTGAATGCAAAAGATAAAAGGCGGAGGGGCGGTGGTAGAGAGGTGAGGCCGTTATCTTCCCGCGTAACGCTGTACTGTTCAGACGTTTTTTCCTCTGTTCAACAATGGCGTCCATTTCCGCTACTGGTTCTCTACTCAAATTCCCAACCCTATTCCTCGGAAGGTCTCTGAACATGGTACGTTCTCCACTTAATTCCCAATCTCCATAGCTTTCGGGATTTTCCCTCTTTAACTGTTCGGTTCCATGTGCTGGATAAAGCGTTTTGCTATTTTGATTTAGAGGTGGCGCGGCCCACATTTCATTCACTATCCCCAGGAGTTTGAGCCTTCATCATCTACCGGTATTTTTTTCATTTTAACTTCTTGTTGTTTTAGTTCTTTACCGCTCCAAATTTTCCGTCCTACGAAGCGGCGGATTTGCTCTCATTCTAATTTATAATTCCTGGAAGTACGGGATTCGGGAATACAATGTTGTTAATGGACTACTGTTCTTTCTGGGTTCGAATTGCAAAGTTAAACAAATTAGTACGTTTGGGTGATTGTTTACATTTCTTATGTAGGAGACAGCACTGAGGGATGTTGCAGGCTAGTACTTGACCGTAGGGCATTGGTGCTCTCATCCTTTGGCGTACTAGCTGGAGCCTTGTTGAAGGTGGCAGATGATGGCCTAGCTGTCGCATCTCAATTTGCTGACAGTATTTTCCTGTACTCTGTCGCTCGTTCATTTCTTTTTGGATTTAGAGAAGAATGGTTGTTCCAGTTATCTGTTACCTGTTCATTCATATTTCAGTTGTTAATTCCAGTTTTAGATATGACCGCTTAATGTACAACTGTTGTTGCATGGTTGGGCACAGAAGGCTGCTACATATCTACCACATTTATCCTTTTATATTCAGCCTTACGTCTAATAAATGTAATTTTAACCTCAAACTGTGCGTTACACCTTTTACCTGCTATGGTGTTCAACATTCATTGTTGTGCACGGCATTATTTCATTTTGAGTTCAATTGACATCCGACCACTATACAACAAAGTTTGATCCACAGTAGCCGCGACAGAGGAAGAAACATGTTAAGGAATTATGGGAGGAAGGTCTCTCCCTTTGCCATACAACACTTTATAGGGTAACCTTCAAAGTCAAGTGAAAAGAAGTATTGAACTATACTCCTCCCATGCCAACTACCTCGCCCATTGTGAAGGTTTTGAGGAAGAAAAGCAATACAAATAAGTCTCTAAGCACTGATTAGCAACCTTTGTCTACCCATCACTTTTAGGGTGATAAGCAGTACTTTTGCATAGCAGAGTTCCTTGTAGTTGTAGCTTGAATAGCTTAGTCCAAAACAAGAAGGTAAAGATCTTATCGCTGTTAGAAACAATGCTCCATAACATGTCATGCAACCTCACCACCTCTTTAATGAATACCGTGGCAACCTCCTGGGGCTATGAAAGGGTGTTCTAGTGGAATGAAATGGTTTTATTTACTAAGCCTGTCCATAACCACAAAGATGGTGGTGTGGCACTTTGATTTAGACAGTCATTCAATGAAATCTGTCAAAATGTCTAACCTTTTGTAGAATAGTGAGGGATTTCAAAAGTCCCGCAGGGCAGACTTGGCATTATGCTACGAAGGTTTAGACTGAAGCTTTTGTTTTCTTCTAGTAGACTTCCTTGTTCAGACATTGATAGGTGCGCATAATCCCTCCATGTTCTCCTATTGGACCATTGTGAAATTCTTGATGAAGTAGTTGGATGGTAGGCTAAATAGTGGGAAGTACATTTTGATTGTGAATCTCAGAGTTTCATTTACCAACCTATAGCTCGGTGCGGCAGCTTCTCCATTTAATAGCCGATTCTTTCTTTTTCCCAGCTCCTCATCTTGCCCCACTTAATGGTCTATTTTAACTGAATTGAACCTCCTGCCACCGATAACAAAGAGAGTTTTAGTGGGGCTAGCATCCTAGACGAGGTATTTGATATCTTATTTTCTAAGTCTGGTTTGTATTGAATGTCAAACTCATAGTCCAACAATTTGGTAACACAATTCTAATAATCCCATGCAATTACTCATTGTCCTAGGTGAAACTTCAAAACCTTTTGATCCATACATATAAGAAATTTCACCCCAACCACTGCCATTTTTTAATTGCCAACACAATCGCCATTAATTCTTGTTCGTAAATGGATTTTACCTGGTCTCATCGAGGTAGAACATGACCATAATAGGAAGCAGATCATTTTTCGCTTCCTCCTTCCACCCAAAATTGTCCATTTTCAAGTGTTGGGTAGTGGCCAAGCAATATAACTGTATTGGACACAAATTTACTGTAGTATCCTATCAACGCAAGAAAAGCCCAAAGCTCTTTTAGATTTGCTGGAGTAGGCCAACTCAATATAGCTTCAACTTTTGAAGTATCCACAGCCACCCTTGCGTTGTAACTACATGCCCCAGGTACTCAATCTTAGGCACCCCAAACTAACATTTATTTTTGTTAGTTGCTAACTAGTTCTAACTCATAATTGCCATCAACTCAGTTAGATTTTGGACATGATTTTCCATACTAGCTCTAAAAGTCAATATTTCATCAAGAAAAATGAGAATGAACTTTTGTAGGTAAGACCTGAATGAGCCGTTCATCAAGGATTGAAAGGTGGTGGTAAAAGCATTAGTCAGAATGAATGGCATGACCTTGAACTCATAATGTCCCTTGTCTATTTGAAAAGAAATCTTATGGACACCTTGGAGTTGCACACGAATTTGATGGTAGCTAGATTTAAGGTCAATGTTGGAAAAAACCTTAGCACCATGTAGTTCATCCAGCAACTCCTCTACAACTTATTAGTGATTATTTCCCCATCGAGGGGCCAAATAATCTACCCAGAATTGCCAACTACCATTTTTTTTTTATCAACAGCACAGGACTAGAAAATTGGCTTGTACTTGGTCTGGTCTGATGACCCCTGCTGAAAGCGTATCCCTGACCAGCAACTATATCACATTTTTTTAAATCTAGGGATATCAATAAGGTCTCACATTGCCTGATGTCGTACTTGGTTTTAGAACAATTGTGTGCTCCCTCCCTCAGTGGCTGAAACATGGGCAAATTGTTGTTGGACAGGTAAAATTTTTTTCAGTACTCCTTCATTCCCGTTGCTTGGCATGTCCAGGGACTGGGTTTGAGTCTGCATTGCATTAAGCTCCATTAAAATACCCTATCCTTCAGTTTCTAGGATCTCCTTTCAATACCACTTCCTCCTTACATACTTGAAACTTTGTGATCAACTTTCCCCAATCCACACTCATCGATTCCATGGTCGACAACCACTGTACTCTTAGTATAACGTTTGTGTTGCCTAATGGTAGGGATAAAAAAATCCTCCATAACCAATAGTTCTTGCAACAGCAATATCACCCCTTGGCACATACTCCTTCCTTTAACCAAAAGTCTAGTTCCCATGATCACTCCATAATCAATGGTCTTAGTAGTTGGTAGATGCAACTCCTTCACTACCTCTTCAGATATGAAGTTGTGAGTTGCCCCACAATCTCATCAACACCCTGCAACTTCTTTAGCAACAACGTCCCTTTTCTCTTCAAGTTTGTAATATTTAGTATCCTCTTTACTACCCGCAGAAGTGGAGGGAGTTGTCTTGCTATTTACAACTACGCCAAATCCATTTTCGGCCCTATCCTGTAGGCCACAACTTTTGAACCTTCACCTGGAATTCAATCTTCAGCCTGTTCATAAATTGGCTTTCCAGTAGGCTCTCCAAGGGTGATGTTAGAACTGTGAACATTCTCTAGTACAACTTCACTGTAATAGGTTTTGAAGGTCCCATCTTGAGTCTGCTTGAATCTACTCAATAGTTGCAAGCACAATTCAATCCAACTCTAAAATGGTCTTCTTCCTTCCTTCCTTCCGCTAGGACCAAGAGAAGGCTTCCCCCTCCAGTTTCCATAACCTCTTTTGTTCCTCCTAATGATTCTCCCAATGGTGCCTTACCTTTCTCCTCTGTGGAACCATTTCTTTCACTAAATTTGACTTTCTCAACATTTCTTCCATCCGTTTCACTACACTCTCCATAAATTTTTTCAAGCTATGGTGCATCTTAGGAAGCATGGACACTCTATTTTTTTTAGCGAAGTGTCAGTGTCGGACACTGACACACTTTGACACATGAAAAAAGAGTGTTTGATTATTTAATTATTTTTTAATTTCTTGACAAGTTAAGGACATGCTTGGGACACGTTTTAAAAATTTTGAAAAACATTAGACCCTTCTCTAGATTAAAAAGCCGATTGCCCACTAGAAAATGAAGGTAATAAAGAGCCCACTTAAGAAAGAAACCTAAACTAAATATATTAAAAAGAAAAGAGGAAAAACATTTGTTTCATTTTATTTCTAGGTTTGTTTTGTACACCTTATTGATAATGGATTTTGTTGGTTACCTCTCACCTTTTAATGGATTGTATTCTATTTTGATGTTTAAATTTAGATTTACCATATTTTATATTTAAATTATTTCAAAATAAACACACAAACACGCATATATTAAAAAAAAAACGTGTCCCTAGATGTCGTGTCCTATTTTTTAGAAATTGACATGTTGTTGTGTCCATGTCGTGCATATCCATGTCGTATGTCCATGTCCGTGCTTCTTATGGTGGATCACTTTTTGCATCTATTTATGTCCTACCTCGATCATGGTCTGCACTTCTGCTGATTGCTTTTGCACACATGAGCTTTTCTGTTCTGCTGTCACAATTTTCCTTCCATTTTCTCATTCGCATTCCTACCTCGAAGTCCTTACTGCGCTGATACCACTTTGATAGAACTCAAAGTAACATATGTATTACGTAAGTCGAACAATTTAAGTGAGGAGAATCTGAGAGCTCCTCTTCTCTCAAAAATTTACCTCCAGAATCCGCCTACCTGCCCATGCAAGACCCCCTTACTTAAAACAATCACATACACTTAGTTACATGGGTTCCAACAAATATTTCTTTGCTTGAAACTATCCTGAATTCCCCTTCGTAGCCCTTCTTGTGTAAGTATGGTTAATCGGGACCTATCATTGTACTGATGATATCATTGTCAAGAAATGATCATGTTGAAGCAAAAATATTCAAGAGTTACCTTGCACAGGAATTTGAAATAAATGATTTGTGGACTTTGAGTCCTTGGATAGAAATTGAAAGACTAAATGAAGGTTCTATCATGACAAACTATATATTTTATTTATGAAGTGAAATTGCCAATCCGGAATGCTAGTTAAAAGGCTGGTGATTCTCCTGTGGGTGAAACCACAAAATTGAGTCTAGTGACTAGTGGTAACAGATAAGTTGTATACATGGAAAGCTATTAGAGGCTTGTTAGTTAATTTTGATTTATTTGGTCCATACAAACTTGATATTGCATTTGCCTTAGGAATAGTGATTCAATTTATGCGTAGTCCAAATAAAGGTTTCATGGATGTTTTCTATAGAATGTTCGAGTACATAAAAGGAATAGTTGGTGCAGGTATTCTTTCTTCTAAAGGTAATAACCTTGATATTGTTGACGCTGACTACATAGGTTTAATTAGGGGTAGAAGATGAACATCTAGTTACTTGCATTCTTTAGAGAAAATTTGGTGATTTCAAGAAATAATTGAAGAAGTAAAGAGGTATCAATGGCAGCAAGGTCCAATCTAGGGACACAGTTCTAGATCTTTCGACTTCAATGTTTTTACACTAAATTTATCTCAAATATGCTATACAGGAAAGGGAACTAGTTAAAGTCCTACGTAACTATAAAATGATAACAAACCACTGTTAATGTTAGCTATTATTTTTTGCAGCATGATAGAACAAAATGTGTGGAAATTTAGACAGCCCATCAAAGCAAAATTTGATGGAGCTATAATTTAGTAAGAACAAAACCTTCACTTTGAGAAACTGAGACTGAGTTAGGGAAATTTTTGTAGGATAGGTCTTCCCATAGCCCCCCAGGCAGGCACAAGATTGGAGTGAAGAACGCATTTGAACTTGTTGAGAGTATAGGAAAGTTTCAGTCAGATATATGTTTTTTCCTTGCAAAATTATGTTTTTTTTACTATATCTTTTTTCTTTATCTTGTAACTTGTCAGTTATTTTTTATCTTTTATTCATTCTCTAGTTTAAGTTCTGTTCTGAAATTTGAACTAGTGGTTAGTTCCTTATCTATTAGATTTGAACAATTTATATTGTTAAAAAAAATTTATCTTTGAATAATACAGCTATATGGCTGAATAAAATCTTCTAGCCTTTTTTGTAATTGTTAGGGTGCCTCTTTTGTATGAGCTCTTTTTGTAGTTGGCTTTTCCCCCTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTGTAACGGCCGTTTATCTTTCATTCATCTTAATGAAATCTTGATTTTTTTCATTAAAAAAATCATTAGAAAATTGGGATAACCATCGCTTTCATAAGACAGAAATCTGTAGGGTAGGTAATTTACCTTGGTAGTCTTATTATATTATGTACCTTGAAGTATCTTTTCGTGGTCACATCTTTGTCTCATTGTCTTTTGTTATATAAAACACGACATGAGCATGTAAGTTTTTTGTTAAGAATAAAGATTGAGGCAGGTAGATATGTTGACAGTTGGCATATCTGAACTGAACACATACAGTGCCAGCTCTTAGGGGGAAGGATTATGGCAAGACTAAAATGAAATATCTGGACTACACAGAGACAGAATCAGGTCTTCAATATAAGGTCACCCATTATAAAGTTGTAGTATAATATTCATTTATATTTTTCTGTGCATGCTCTCATAAGTCTTATTTGTTTTAAATTTACTTGACAAGGCTGCAGGATTTGAGAGTGGGGGAAGGCCCCTCACCAAAAATGGGAGATACAGTGGTGGTAAGACTGTAGTGCAGTTTATGAATTATCAGACCATCTCGGATGAAATTATTTCTCAAATATGTCAAGTTGTATGAGTTTCATTTCATGTTCAAAACCTAATGGAGTTATACTTATCTAGACTTTTGATATGTTATTTTTTTTAAGGAATAAATAATTATCACATGACCTAAAATGGATATGTTAAATTTTATATGTTACACATTTTGAGTGGGAGTTTCCAATTGAGGGTTCAGCAAAGAAGTACAGCCAAACTGAAAATTGATGTTGCCAGCTTTTTCCAAGGTCTATATGTTTATTTTAGGTTGATTGGGATGGCTATACAATTGGGTATTATGGCCGCATTTTTGAAGCCAGAAATAAGACAAAGGGTGGTTCTTTCGAGGTAGGTAATGCTTTGGCTTCTCAGATTTTGATTTCAAGGAAGCTCTTTAACATTTGATTCAATCTTAATATTTTATTGCACAGGGTGATGACAAGGACTTCTTCAAATTTAGGTTAGGATTTCAAGAGGTGAGACATTTGTGTTATTCATTTGGAAAGATGCATCTTCCTTTACTTAATTGTGATGATTCAAAATTTACTCTACTGTTTCTATAACTTGTGTTCTATTTGTTGGTAGGCTAAGTTGAACTGTAGCTATTGTCCTTTTTGTGAGGACTGAGAAGTACCTAATTGTTAAAATTATTGGCTGTTGTTAAATTGCATGGTGTTATCATTGATTACACTAATTTTCTCAACAGTTTTGGTTTAACTTCAAATTTTAGTGACTTATTTCTTTTAAAATTTAAGCTTGCTTCATTGTTCCTTGATATCAGGTGATTCAGGCATTTGAGGAAGCTGTTTCGGGCATGGCTCTGGGCGGGATTAGAAGGTGCTGCATTTTCTTTTCTTAACCTTGGATTGTTTTCCAGTGTGGGTAGCTTAGCCGAGACATTTTCTAAATAACATTATTACTGGTTATACTTCATTGCTTATCAATTGGCAAAATCCTTAAGCTAATTGTTCTTTACTGAGATAAGATTGCGTGGCCTCTGACACGTTTGTTCAAGCTCTATGCAATTTGATCCACAGCAAGTTGTGGCAAAATTTAATATAAATGAACTGTATATAAAAGCCAAATGCACGTGCATATGAATTTCTGAATGTTATGTGCGACATATAAACTAATTAGCAGTTGAGCAGGCTTATAGTTCCTCCAGAGTTGGGATATCCTGAGAATGACTTTAATAAAAGGGGTCCAAGACCGACAACGTTCTCGGTAACATTTTATTTTTCCGTTAGTCAGCCAATATACATTTGTATGAATACATATGGAGGTTTTTTGATAGCAACGCTTTCAGGGGCAAAGAGCTTTGGACTTTGTGCTGAGGAACCAGGGATTGATAGACAAGACTCTATTGTTTGACATTGAGCTTCTGAAAATCATACCTAACTCATCGGTTTAAGGTTGATGTTTCACAATCGCTGCTGGGTAGACATTGAGGTTTCTTTTTTTACTTGTAGTATCACCATCTAATTAACAGAGGCTTTTATAACCTTCTTATTTACTGGGCTCCTTACATTTTACAGGGACTTGAGAGGCAAAAAGATTGTTATCCGGAAGCTGTGAGATTCTTTGCTTAATGGTATTTTAGTTTATTGCCCTTAAGTATGTATAGAGGAATCATATATGTACTTGGTCTGTATTACCACAGTTTTCAATTTACTCTTCATTTCTGTGATATGATCATGGTCTTATACTGTTTTCTTTTCTTTTCCTTTCTTTTTTGTGAAAAAGAAGAAAGAAAAATACCAGATACATTTGTAATGCAATGTGGTTTTGTTCTCTTCATTAAACTGATTCAGAATGGGCAATGAAAATTGAACTTTATTGACACAGAGCTGCTATTGAGGTCCTAAAAGTGGGTGTTGATTGAATTATGTCCTCAGCCGAACGAGATGCAAATTACCTGTATTTTTAGCTTAGAGCGTGGAGAAAAGAAGAGGAATAAAACTTAAAACATGTAGAAACGCCCATTTCAAACCGTTCCTACAGAAACAAAACTTGTGATATTACAAACTAACATAAAGTAGATTAAACACTGAAACGGGACCTGAGGTCAAACTCATAGAGAAAAACCTCCTGGAAGCACAAATGGTTGAAGAAATGAAGTTGGCGCAGGCGGGAAGACAAACTATCCCAGCAATAATTAGATACTGTTAAAGCTTACAAATACTGAACGTTCTTCTGATTAACTAACAGAAAGCTTCCTCCTCTTGTACCGGACCATAACTTTTCCTTTGACACCCACAACCATGGCATTCCAATCAATTTCAGGAAAAGGAGATATTAGCTCCAGTTCGAAATTTCTTAGCAAGTGACTCCATATAGCCTTTATCTGTAGGTAAGCAAAGGGTTCGCCGAGGCACCCGTGCCTGCCGCCTCCAAATGAGATGTATGAGAATGGCCCTGCCGCCTTATCTTCATCTCTCCCAGGGGCAAACCTGTCTGGATCAAACCTGTCTGGGTCCTTATAGACATGAGGAAGTCGGTTAGCGAAAGCTGGTGATGTGGCAATGATATGGCCCTTTGGAATATCATATTCTTTCCCCTCTCGAGTTGTCACACTGAAATCAGTATGTGAACTGCGCATCAACATAATCAGTGGAGGGTGGAGTCTGAGAGCTTCTTTAATGCATCTATAGAGGTTGTCCATTTCAGACAAGATATCATGATCAATCTCATCGCCATACTTTTCCATCTGCTTTTGCTGCTCCTCTAAAACGGCAGACATGTACTCTTTGTGGCATAGAAGGTAAGCCCCGGTCCAAGTAGAGGTGATGGAGCTAGTGTGTTGACCTGCAAAAAGAGCAGCTATGAGCAAACCAGTGATCTCAGAATCTGTTGTTGGTCGACCATCTTTGTACTTTGAGTTAATAAAACATTGCAACATGTCATTCTCTGATGTTCCAGTGCATTTCCGGGAAGATATGATGTTCACAAAGATATCTGCAAGCTTGCTGCGGGCTTGATCACGGCGTCGATGAGCCGGGATAGGCAAGTAGGGGAACATCACACTGATTGGGAGCATTCCATTGTCAAGGTCATGAAACAATGCAGAAACGTCCGCAAAAAGCTGATCACGAACCTCCCTACCCAGGAGGCATCTACTAGCTGTTAAGATGATAAGGTGCTCCAACTCACACTTGAGGTCCACCTCACCACTGTCTCCCCACTTAGAGAAGTAGTCCTGCTCAATACGCCATTACATTCCCAAGTTTACACATAGATTTTATAGAATTATATAAAATGAAGACAAGCATCAGGAACTAGACATTTTAAGAGATAAATGGAAGTTCAGACTGTACATTATGAAGAAACATCTCCAAGAATGGTTGTTAAAACTAACTACATTTGACATACATTCTCATTTGCAAGGATGCTGGGCTAAATTTTACTTCTTGATAATTCATGTTTCAGGCCCCCTTCTCAGGTTTTCATGCACCAATCATGATAACTAGAGAGAAAGAGAGAGAGGGAGAGGTTTCCAAAAATTATGCAGATAAGTACCAAGTTAACAAGACAGCACAAGAAACATTTCTTATCCAACTTCAATTTAGATCTTTCAGGAAGGGGGTAATAATTTGGTTGCTGAAATACTGACCTGTGCTTCTTTGACCATCTGATCCACATAGCCCTTCAATTTTGTGACTCTTAGAGCTTCCGTAAAGAACCTGAACTGCTCCTGCCGGACCGAGTAATCCACATCGAACACGACGCCAGGCCCAAAAGTAGGCACATTAAACTGATAAACTTCCTGCTGGCTGAGATCAGACTCCGATGCCTTGAAGAAATGTGCAGAAACCTCAGGCCCAATCAAGAAGGTGATCTTCTTGTGCAACAAGTTCAAGGTGAAGACACTCCCATGTTTAGGGTACTCCTCCCTCAGCATCACAATCGGACCCTTCAGGAAACGGACCAATCCCCCAACCAAAGGGAACCCCTTAACAGTTGGAGGAACTCGTTTTTTAGATCTGGAATTTATAACTGCAGAGATGAGCTTCGCGAGGACTAAAGTGGCCACTATAAGTAGACCCACATTGAAGAATTTGTTCTCCGGTTCCATGGAAAAACCTGCAAAATTCCAGAACCCGGAATTAAGATTAAAAAAAAAAAAAAAGATACAACGTTGTAATGAAATGAGGTATACAGAATTGTTAGATGAAGGAAACCAATTGCAGTGAAGAAATTTACAAACTCTGATCGAACAAAAGAATGAATATGGGAGAGGTGGAGGCAGGAATTCGGGTGTGAATGACCTGAATTCTGTGTTCTGAGATTGAAGAGCAGATCAGGAAGGCATTTGAAGACAAGTAAGACGACAGAAACAGTGAGGAGAGAGAGAGAGTATGTATTTTTTGAGTTCAGAGAGGGAGAGATTAATTAAACGGTGATTACCGATTAGAGTTAGAGGGGCCAGGCAGCGGCCAGAGGGGCTTAAGGGTTTTTCACTGCGAATGCTTTGGCGTTATATGAAAAACAGTGGGTCTAGTGGTTTTCCCCCTTTTTTTTTTCATTTTTCTTTTTCTTTTTCTATTTTTTCTGAGAATGTGTTTGATCTTTAG

mRNA sequence

ATGGCTTCCATTTCCAAGCTTTCCAATCCCACCTCTGCGCCATCTCTCTCCTCTTCCTTCAACCCCCGATCTTCCCCCTCCAAGTGTTTCATCTCCTTCCGACCCCGTACCGATTTCTGCCTCAAGGTTTCCGCGTCTAGATTGTCCGTTCGGAGGGACTCCGATTTGAGCGGCTCCTTGGCTGTCAGGTGTTCCCAAGGAGATGGAAATGGAATCCCAACGAAGAGAACAGTGCTTCATGATCTTTATGAAAAGGAAGGACAGTCTCCGTGGTATGATAATCTCTGCCGCCCTGTTACCGACCTGCTTCCCCTTATTTCCAAAGGTGTCAGAGGTGTAACTAGCAACCCGGCAATTTTCCAGAAAGCAATTTCATCTTCAAATGCTTATAACGACCAATTCAGAGAACTTGTTCAATCGGGAAAAGATATTGAAAGTGCATATTGGGAACTTGTGGTGAAGGATATCCAAGATGCATGCAAACTTTTTGAGCCTATCTATGATCAAACAGATGGTGGTGATGGCTACGTTTCAGTCGAAGTGTCTCCAAAACTTGCTGACGATACCGAAGGAACCGTTGAGGCTGCAAAGTGGCTCCACAAAGTTGTTAGTCGCCCGAATGTATACATAAAGATACCTGCTCCTGCTGCTTGCATCCCTTCTATTAGGGATACTATTGCAAATGGCATAAGTGTCAATGTAACTCTCATATTCTCTGTTGCTCGATACGAAGCAGTCATTGATGCATACTTGGATGGACTTGAGGCCTCGGGTTTAAGTGACCTTTCTAGAGTCACAAGTGTCGCTTCCTTCTTTGTAAGTCGGGTCGACACCCTTATTGACAAATTGCTTGAGAAAATTGGAACACCGGAGGCCCTTGATCTGCGAGGAAAGGCTGCAGTTGCTCAAGCCGCCCTTGCTTACCAGCTCTACCAGAAGAAGTTCTCCGGCCCAAGATGGGAGGCTCTGGTGAAGAAGGGTGCAAAGAAGCAAAGGTTGCTCTGGGCATCTACAAGTGTTAAGAACCCGGCATACTCCGACACCTTATACGTTGCCCCGCTCATTGGACCCGACACTGTTTCGACCATGCCTGACCAAGCTCTTGAAGCATTTGTTGACCATGGAACTGTTTCGAGGACTATCGATTCAAACGTATCCGAAGCTGAAGGAATATACAGTGCACTTGAGAAGCTGGGAATAGACTGGAATGAAGTTGGGAATCAGCTTGAAGTTGAAGGAGTGGATTCTTTCAAGAAGAGCTTTGACAGCCTGCTTAATACTCTCCAAGACAAGGCCAACTCTCTTAAATTGACGTTTTTTCCTCTGTTCAACAATGGCGTCCATTTCCGCTACTGGTTCTCTACTCAAATTCCCAACCCTATTCCTCGGAAGGTCTCTGAACATGTTCTTTACCGCTCCAAATTTTCCGTCCTACGAAGCGGCGGATTTGCTCTCATTCTAATTTATAATTCCTGGAAGTACGGGATTCGGGAATACAATGTTGTTAATGGACTACTGTTCTTTCTGGGAGACAGCACTGAGGGATGTTGCAGGCTAGTACTTGACCGTAGGGCATTGGTGCTCTCATCCTTTGGCGTACTAGCTGGAGCCTTGTTGAAGGTGGCAGATGATGGCCTAGCTGTCGCATCTCAATTTGCTGACATGCCAGCTCTTAGGGGGAAGGATTATGGCAAGACTAAAATGAAATATCTGGACTACACAGAGACAGAATCAGGTCTTCAATATAAGGATTTGAGAGTGGGGGAAGGCCCCTCACCAAAAATGGGAGATACAGTGGTGGTTGATTGGGATGGCTATACAATTGGGTATTATGGCCGCATTTTTGAAGCCAGAAATAAGACAAAGGGTGGTTCTTTCGAGGGTGATGACAAGGACTTCTTCAAATTTAGGTTAGGATTTCAAGAGGTGATTCAGGCATTTGAGGAAGCTGTTTCGGGCATGGCTCTGGGCGGGATTAGAAGAGGTTGTCCATTTCAGACAAGATATCATGATCAATCTCATCGCCATACTTTTCCATCTGCTTTTGCTGCTCCTCTAAAACGGCAGACATGTACTCTTTGTGGCATAGAAGGTAAGCCCCGGTCCAATGCATTTCCGGGAAGATATGATGTTCACAAAGATATCTGCAAGCTTGCTGCGGGCTTGATCACGGCGTCGATGAGCCGGGATAGGCAAGTAGGGGAACATCACACTGATTGGGAGCATTCCATTGTCAAGGCCCCCTTCTCAGGTTTTCATGCACCAATCATGATAACTAGAGAGAAAGAGAGAGAGGGAGAGGTTTCCAAAAATTATGCAGATAAGTACCAAGTTAACAAGACAGCACAAGAAACATTTCTTATCCAACTTCAATTTAGATCTTTCAGGAAGGGGAGCTTCCGTAAAGAACCTGAACTGCTCCTGCCGGACCGAGTAATCCACATCGAACACGACGCCAGGCCCAAAAGTAGGCACATTAAACTGATAAACTTCCTGCTGGCTGAGATCAGACTCCGATGCCTTGAAGAAATGTGCAGAAACCTCAGGCCCAATCAAGAAGGTGATCTTCTTGTGCAACAAGTTCAAGGTGAAGACACTCCCATGTTTAGGATTGAAGAGCAGATCAGGAAGGCATTTGAAGACAAAGTTAGAGGGGCCAGGCAGCGGCCAGAGGGGCTTAAGGGTTTTTCACTGCGAATGCTTTGGCGTTATATGAAAAACAGTGGGTCTAGTGGTTTTCCCCCTTTTTTTTTTCATTTTTCTTTTTCTTTTTCTATTTTTTCTGAGAATGTGTTTGATCTTTAG

Coding sequence (CDS)

ATGGCTTCCATTTCCAAGCTTTCCAATCCCACCTCTGCGCCATCTCTCTCCTCTTCCTTCAACCCCCGATCTTCCCCCTCCAAGTGTTTCATCTCCTTCCGACCCCGTACCGATTTCTGCCTCAAGGTTTCCGCGTCTAGATTGTCCGTTCGGAGGGACTCCGATTTGAGCGGCTCCTTGGCTGTCAGGTGTTCCCAAGGAGATGGAAATGGAATCCCAACGAAGAGAACAGTGCTTCATGATCTTTATGAAAAGGAAGGACAGTCTCCGTGGTATGATAATCTCTGCCGCCCTGTTACCGACCTGCTTCCCCTTATTTCCAAAGGTGTCAGAGGTGTAACTAGCAACCCGGCAATTTTCCAGAAAGCAATTTCATCTTCAAATGCTTATAACGACCAATTCAGAGAACTTGTTCAATCGGGAAAAGATATTGAAAGTGCATATTGGGAACTTGTGGTGAAGGATATCCAAGATGCATGCAAACTTTTTGAGCCTATCTATGATCAAACAGATGGTGGTGATGGCTACGTTTCAGTCGAAGTGTCTCCAAAACTTGCTGACGATACCGAAGGAACCGTTGAGGCTGCAAAGTGGCTCCACAAAGTTGTTAGTCGCCCGAATGTATACATAAAGATACCTGCTCCTGCTGCTTGCATCCCTTCTATTAGGGATACTATTGCAAATGGCATAAGTGTCAATGTAACTCTCATATTCTCTGTTGCTCGATACGAAGCAGTCATTGATGCATACTTGGATGGACTTGAGGCCTCGGGTTTAAGTGACCTTTCTAGAGTCACAAGTGTCGCTTCCTTCTTTGTAAGTCGGGTCGACACCCTTATTGACAAATTGCTTGAGAAAATTGGAACACCGGAGGCCCTTGATCTGCGAGGAAAGGCTGCAGTTGCTCAAGCCGCCCTTGCTTACCAGCTCTACCAGAAGAAGTTCTCCGGCCCAAGATGGGAGGCTCTGGTGAAGAAGGGTGCAAAGAAGCAAAGGTTGCTCTGGGCATCTACAAGTGTTAAGAACCCGGCATACTCCGACACCTTATACGTTGCCCCGCTCATTGGACCCGACACTGTTTCGACCATGCCTGACCAAGCTCTTGAAGCATTTGTTGACCATGGAACTGTTTCGAGGACTATCGATTCAAACGTATCCGAAGCTGAAGGAATATACAGTGCACTTGAGAAGCTGGGAATAGACTGGAATGAAGTTGGGAATCAGCTTGAAGTTGAAGGAGTGGATTCTTTCAAGAAGAGCTTTGACAGCCTGCTTAATACTCTCCAAGACAAGGCCAACTCTCTTAAATTGACGTTTTTTCCTCTGTTCAACAATGGCGTCCATTTCCGCTACTGGTTCTCTACTCAAATTCCCAACCCTATTCCTCGGAAGGTCTCTGAACATGTTCTTTACCGCTCCAAATTTTCCGTCCTACGAAGCGGCGGATTTGCTCTCATTCTAATTTATAATTCCTGGAAGTACGGGATTCGGGAATACAATGTTGTTAATGGACTACTGTTCTTTCTGGGAGACAGCACTGAGGGATGTTGCAGGCTAGTACTTGACCGTAGGGCATTGGTGCTCTCATCCTTTGGCGTACTAGCTGGAGCCTTGTTGAAGGTGGCAGATGATGGCCTAGCTGTCGCATCTCAATTTGCTGACATGCCAGCTCTTAGGGGGAAGGATTATGGCAAGACTAAAATGAAATATCTGGACTACACAGAGACAGAATCAGGTCTTCAATATAAGGATTTGAGAGTGGGGGAAGGCCCCTCACCAAAAATGGGAGATACAGTGGTGGTTGATTGGGATGGCTATACAATTGGGTATTATGGCCGCATTTTTGAAGCCAGAAATAAGACAAAGGGTGGTTCTTTCGAGGGTGATGACAAGGACTTCTTCAAATTTAGGTTAGGATTTCAAGAGGTGATTCAGGCATTTGAGGAAGCTGTTTCGGGCATGGCTCTGGGCGGGATTAGAAGAGGTTGTCCATTTCAGACAAGATATCATGATCAATCTCATCGCCATACTTTTCCATCTGCTTTTGCTGCTCCTCTAAAACGGCAGACATGTACTCTTTGTGGCATAGAAGGTAAGCCCCGGTCCAATGCATTTCCGGGAAGATATGATGTTCACAAAGATATCTGCAAGCTTGCTGCGGGCTTGATCACGGCGTCGATGAGCCGGGATAGGCAAGTAGGGGAACATCACACTGATTGGGAGCATTCCATTGTCAAGGCCCCCTTCTCAGGTTTTCATGCACCAATCATGATAACTAGAGAGAAAGAGAGAGAGGGAGAGGTTTCCAAAAATTATGCAGATAAGTACCAAGTTAACAAGACAGCACAAGAAACATTTCTTATCCAACTTCAATTTAGATCTTTCAGGAAGGGGAGCTTCCGTAAAGAACCTGAACTGCTCCTGCCGGACCGAGTAATCCACATCGAACACGACGCCAGGCCCAAAAGTAGGCACATTAAACTGATAAACTTCCTGCTGGCTGAGATCAGACTCCGATGCCTTGAAGAAATGTGCAGAAACCTCAGGCCCAATCAAGAAGGTGATCTTCTTGTGCAACAAGTTCAAGGTGAAGACACTCCCATGTTTAGGATTGAAGAGCAGATCAGGAAGGCATTTGAAGACAAAGTTAGAGGGGCCAGGCAGCGGCCAGAGGGGCTTAAGGGTTTTTCACTGCGAATGCTTTGGCGTTATATGAAAAACAGTGGGTCTAGTGGTTTTCCCCCTTTTTTTTTTCATTTTTCTTTTTCTTTTTCTATTTTTTCTGAGAATGTGTTTGATCTTTAG

Protein sequence

MASISKLSNPTSAPSLSSSFNPRSSPSKCFISFRPRTDFCLKVSASRLSVRRDSDLSGSLAVRCSQGDGNGIPTKRTVLHDLYEKEGQSPWYDNLCRPVTDLLPLISKGVRGVTSNPAIFQKAISSSNAYNDQFRELVQSGKDIESAYWELVVKDIQDACKLFEPIYDQTDGGDGYVSVEVSPKLADDTEGTVEAAKWLHKVVSRPNVYIKIPAPAACIPSIRDTIANGISVNVTLIFSVARYEAVIDAYLDGLEASGLSDLSRVTSVASFFVSRVDTLIDKLLEKIGTPEALDLRGKAAVAQAALAYQLYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAYSDTLYVAPLIGPDTVSTMPDQALEAFVDHGTVSRTIDSNVSEAEGIYSALEKLGIDWNEVGNQLEVEGVDSFKKSFDSLLNTLQDKANSLKLTFFPLFNNGVHFRYWFSTQIPNPIPRKVSEHVLYRSKFSVLRSGGFALILIYNSWKYGIREYNVVNGLLFFLGDSTEGCCRLVLDRRALVLSSFGVLAGALLKVADDGLAVASQFADMPALRGKDYGKTKMKYLDYTETESGLQYKDLRVGEGPSPKMGDTVVVDWDGYTIGYYGRIFEARNKTKGGSFEGDDKDFFKFRLGFQEVIQAFEEAVSGMALGGIRRGCPFQTRYHDQSHRHTFPSAFAAPLKRQTCTLCGIEGKPRSNAFPGRYDVHKDICKLAAGLITASMSRDRQVGEHHTDWEHSIVKAPFSGFHAPIMITREKEREGEVSKNYADKYQVNKTAQETFLIQLQFRSFRKGSFRKEPELLLPDRVIHIEHDARPKSRHIKLINFLLAEIRLRCLEEMCRNLRPNQEGDLLVQQVQGEDTPMFRIEEQIRKAFEDKVRGARQRPEGLKGFSLRMLWRYMKNSGSSGFPPFFFHFSFSFSIFSENVFDL
Homology
BLAST of Sgr015458 vs. NCBI nr
Match: RXH71692.1 (hypothetical protein DVH24_025193 [Malus domestica])

HSP 1 Score: 953.4 bits (2463), Expect = 1.5e-273
Identity = 505/684 (73.83%), Postives = 562/684 (82.16%), Query Frame = 0

Query: 2    ASISKLSNPTSAPSLSSSFNPRSSPSKCFISF--RPRTDFCLKVSASRLSVRRDSDLSGS 61
            AS+SKLSNPT A SLSS+F+PR+   +C I     P + F  K+S+S+LSVR    L GS
Sbjct: 408  ASVSKLSNPTPASSLSSTFSPRTPQPRCLIRLLTTPGSTFNSKLSSSKLSVRSKPSLRGS 467

Query: 62   LAVRCSQGDGNGIPTKRTVLHDLYEKEGQSPWYDNLCRPVTDLLPLISKGVRGVTSNPAI 121
            L VRCSQ DGNG P KRT LHDLYEKEGQSPWYDNLCRPVTDLLPLI+ GVRGVTSNPAI
Sbjct: 468  LVVRCSQSDGNGSPVKRTYLHDLYEKEGQSPWYDNLCRPVTDLLPLIASGVRGVTSNPAI 527

Query: 122  FQKAISSSNAYNDQFRELVQSGKDIESAYWELVVKDIQDACKLFEPIYDQTDGGDGYVSV 181
            FQKAIS+SNAYNDQFRELV SGKDIESAYWELVVKDIQDACKLFE IYDQTD GDGYVSV
Sbjct: 528  FQKAISTSNAYNDQFRELVHSGKDIESAYWELVVKDIQDACKLFESIYDQTDAGDGYVSV 587

Query: 182  EVSPKLADDTEGTVEAAKWLHKVVSRPNVYIKIPAPAACIPSIRDTIANGISVNVTLIFS 241
            EVSP+LADDT+GTV+AAKWLHKVV+RPNVYIKIPA A C+PSI++ IANGISVNVTLIFS
Sbjct: 588  EVSPRLADDTQGTVDAAKWLHKVVARPNVYIKIPATAPCVPSIKEVIANGISVNVTLIFS 647

Query: 242  VARYEAVIDAYLDGLEASGLSDLSRVTSVASFFVSRVDTLIDKLLEKIGTPEALDLRGKA 301
            ++RYEAVIDAYLDGLEASGLSDLSRVTSVASFFVSRVDTLIDK+LEKIGTPEALDLRGKA
Sbjct: 648  LSRYEAVIDAYLDGLEASGLSDLSRVTSVASFFVSRVDTLIDKMLEKIGTPEALDLRGKA 707

Query: 302  AVAQAALAYQLYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAYSDTLYVAPLIGPDT 361
            AVAQAALAYQLYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAY DTLYVAPLIGPDT
Sbjct: 708  AVAQAALAYQLYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAYPDTLYVAPLIGPDT 767

Query: 362  VSTMPDQALEAFVDHGTVSRTIDSNVSEAEGIYSALEKLGIDWNEVGNQLEVEGVDSFKK 421
            VSTMPDQAL+AFVDHGTVSRTIDSNVSEAEGIYSALEKLGIDW+ VGNQLE+EGVDSFKK
Sbjct: 768  VSTMPDQALQAFVDHGTVSRTIDSNVSEAEGIYSALEKLGIDWSYVGNQLEIEGVDSFKK 827

Query: 422  SFDSLLNTLQDKANSLKLTFFPLFNNGVHFRYWFSTQIPNPIPRKVSEHVLYRSKFSVLR 481
            SFDSLL+TLQ+KANSLKL                   + +P PR  S  V  +S   + R
Sbjct: 828  SFDSLLDTLQEKANSLKL-----------------VTVRSP-PRPPSSPV-GKSSTPIRR 887

Query: 482  SGGFALILIYNSWKY---GIREYNVVNGLLFFLGDSTEGCCRLVLDRRALVLSSFGVLAG 541
                  +L + S +    G + + +     F   DS  G   ++++RR++V SS G++A 
Sbjct: 888  -----FVLTFPSMRQRRRGPQSHLLPEAEKF--SDSGAGGGSILIERRSVVFSSVGMVAA 947

Query: 542  ALLKVADDGLAVASQFADMPALRGKDYGKTKMKYLDYTETESGLQYKDLRVGEGPSPKMG 601
            A    + D +A+ASQF DMPALRGKDYGK+KM Y DYTETESGLQYKDLRVG+GP PK+G
Sbjct: 948  AFCNASKDVIALASQFTDMPALRGKDYGKSKMSYPDYTETESGLQYKDLRVGDGPEPKVG 1007

Query: 602  DTVVVDWDGYTIGYYGRIFEARNKTKGGSFEGDDKDFFKFRLGFQEVIQAFEEAVSGMAL 661
            +TVVVDWDGYTIGYYGRIFEARNKTKGGSFEGDDK FFKFR+G QEVI AFEEA++GMAL
Sbjct: 1008 ETVVVDWDGYTIGYYGRIFEARNKTKGGSFEGDDKAFFKFRVGSQEVIPAFEEAITGMAL 1065

Query: 662  GGIRR-GCPFQTRYHDQSHRHTFP 680
            GGIRR   P +  Y D  +  + P
Sbjct: 1068 GGIRRIIVPPELGYPDNDYNKSGP 1065

BLAST of Sgr015458 vs. NCBI nr
Match: OWM76273.1 (hypothetical protein CDL15_Pgr009919 [Punica granatum])

HSP 1 Score: 909.4 bits (2349), Expect = 2.5e-260
Identity = 493/675 (73.04%), Postives = 532/675 (78.81%), Query Frame = 0

Query: 1   MASISKLSNPT---SAPSLSSSFNPRSSPSKCFISFRPRTDFCLKVSASRLSVRRDSDLS 60
           MA+ISKLS  T   S+ S  SS  PRS   +CF+       F  KV+ASRLSVR     +
Sbjct: 1   MATISKLSTATPSSSSSSFPSSIRPRSVQPQCFVDLHKAAGFTSKVAASRLSVRGGRPSN 60

Query: 61  GSLAVRCSQGDGNGIPTKRTVLHDLYEKEGQSPWYDNLCRPVTDLLPLISKGVRGVTSNP 120
            SL VRCSQ  GNG   KRTVLHDLYE+EGQSPWYDNLCRPVTDLLPLI  GVRGVTSNP
Sbjct: 61  VSLVVRCSQSSGNGSAAKRTVLHDLYEREGQSPWYDNLCRPVTDLLPLIESGVRGVTSNP 120

Query: 121 AIFQKAISSSNAYNDQFRELVQSGKDIESAYWELVVKDIQDACKLFEPIYDQTDGGDGYV 180
           AIFQKAISSSNAYNDQF+ELVQS KDIESAYWELVVKDIQDACKLFEPIYD+TDGGDGYV
Sbjct: 121 AIFQKAISSSNAYNDQFKELVQSRKDIESAYWELVVKDIQDACKLFEPIYDRTDGGDGYV 180

Query: 181 SVEVSPKLADDTEGTVEAAKWLHKVVSRPNVYIKIPAPAACIPSIRDTIANGISVNVTLI 240
           SVEVSP+LADDTEGTVEAAKWLHKVV  PNVYIKIPA A CIPSI+  I  GISVNVTLI
Sbjct: 181 SVEVSPRLADDTEGTVEAAKWLHKVVDCPNVYIKIPATAPCIPSIKQVIEKGISVNVTLI 240

Query: 241 FSVARYEAVIDAYLDGLEASGLSDLSRVTSVASFFVSRVDTLIDKLLEKIGTPEALDLRG 300
           FS+ARYEAVIDAYLDGLEASGL DLSRVTSVASFFVSRVDTLIDKLLEKIGTPEALDLRG
Sbjct: 241 FSLARYEAVIDAYLDGLEASGLDDLSRVTSVASFFVSRVDTLIDKLLEKIGTPEALDLRG 300

Query: 301 KAAVAQAALAYQLYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAYSDTLYVAPLIGP 360
           KAAVAQAALAYQLYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAYSDTLYVAPLIGP
Sbjct: 301 KAAVAQAALAYQLYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAYSDTLYVAPLIGP 360

Query: 361 DTVSTMPDQALEAFVDHGTVSRTIDSNVSEAEGIYSALEKLGIDWNEVGNQLEVEGVDSF 420
           DTVSTMPDQAL+AFVDHGTVSRTIDSNVSEAEGIYSALEKLGIDWN VGNQLE+EGVD+F
Sbjct: 361 DTVSTMPDQALQAFVDHGTVSRTIDSNVSEAEGIYSALEKLGIDWNYVGNQLELEGVDAF 420

Query: 421 KKSFDSLLNTLQDKANSLKLTFFPLFNNGVHFRYWFSTQIPN--------PIPRKVSEHV 480
           KKSFDSLL+TLQ+KANSL L          H  ++     P+        P+ R  S H+
Sbjct: 421 KKSFDSLLDTLQEKANSLNLVSLCFIATHSHPSFFTIFLFPSGEFQGSLGPV-RPKSAHL 480

Query: 481 ---LYRSKFSVLRSGGFALILIYNSWKYGIREYNVVNGLLFFLGDSTEGCCRLVLDRRAL 540
              L  S+  +L   G  L  +            V  G                  RR +
Sbjct: 481 PRQLPPSQAPLLSEEGCGLQSV------------VARGFA----------------RRKV 540

Query: 541 VLSSFGVLAGALLKVADDGLAVASQFADMPALRGKDYGKTKMKYLDYTETESGLQYKDLR 600
           + SS  +++ A L  + +    A +FADMPALRGKDYGKTKM++ DYTETESGLQYKDLR
Sbjct: 541 LASSSALISLAFLIDSRNKEGFAEEFADMPALRGKDYGKTKMRFPDYTETESGLQYKDLR 600

Query: 601 VGEGPSPKMGDTVVVDWDGYTIGYYGRIFEARNKTKGGSFEGDDKDFFKFRLGFQEVIQA 660
           VG GP+PK+G TVVVDWDGYTIGYYGRIFEARNKTKGGSFEG+DKDFFKFR+G  EVIQA
Sbjct: 601 VGSGPTPKVGQTVVVDWDGYTIGYYGRIFEARNKTKGGSFEGNDKDFFKFRVGSDEVIQA 646

Query: 661 FEEAVSGMALGGIRR 662
           FEEAVSGMA GGIRR
Sbjct: 661 FEEAVSGMAPGGIRR 646

BLAST of Sgr015458 vs. NCBI nr
Match: KAF9689033.1 (hypothetical protein SADUNF_Sadunf01G0049800 [Salix dunnii])

HSP 1 Score: 889.8 bits (2298), Expect = 2.0e-254
Identity = 477/673 (70.88%), Postives = 523/673 (77.71%), Query Frame = 0

Query: 10  PTSAPSLSSSFNPRSSPSKCFISFRPRTDFC-LKVSASRLSVRRDSDLSGSLAVRCSQGD 69
           P+ +P+ S    P SS  + F+ F  +T F  +  S+SRLS+        S    CSQ  
Sbjct: 3   PSPSPAASLPAPPPSSSRRVFLGFNTKTSFSKVASSSSRLSLTNTQPWRTSFV--CSQSS 62

Query: 70  GNGIPTKRTVLHDLYEKEGQSPWYDNLCRPVTDLLPLISKGVRGVTSNPAIFQKAISSSN 129
           GNG P KRT LHDLYE+EGQSPWYDNLCRPVTDL+PLI  GVRGVTSNPAIFQKAISSSN
Sbjct: 63  GNGSPLKRTTLHDLYEREGQSPWYDNLCRPVTDLIPLIESGVRGVTSNPAIFQKAISSSN 122

Query: 130 AYNDQFRELVQSGKDIESAYWELVVKDIQDACKLFEPIYDQTDGGDGYVSVEVSPKLADD 189
           AYNDQFRELVQ GKDIE+AYWELVV+DIQDACKLFEPIYDQTDGGDGYVSVEVSP+LADD
Sbjct: 123 AYNDQFRELVQMGKDIETAYWELVVRDIQDACKLFEPIYDQTDGGDGYVSVEVSPRLADD 182

Query: 190 TEGTVEAAKWLHKVVSRPNVYIKIPAPAACIPSIRDTIANGISVNVTLIFSVARYEAVID 249
           T+GTVEAAKWLHKVV R NVYIKIPA A CIPSI++ I+ GISVNVTLIFS+ RYEAVID
Sbjct: 183 TQGTVEAAKWLHKVVDRSNVYIKIPATAPCIPSIKEVISLGISVNVTLIFSLTRYEAVID 242

Query: 250 AYLDGLEASGLSDLSRVTSVASFFVSRVDTLIDKLLEKIGTPEALDLRGKAAVAQAALAY 309
           AYLDGLEASGLSDLSRVTSVASFFVSRVDTLIDK+LEKIG  EALDLRGKAAVAQA LAY
Sbjct: 243 AYLDGLEASGLSDLSRVTSVASFFVSRVDTLIDKMLEKIGPSEALDLRGKAAVAQAVLAY 302

Query: 310 QLYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAYSDTLYVAPLIGPDTVSTMPDQAL 369
           +LYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAY+DTLYVAPLIGPDTVSTMPDQAL
Sbjct: 303 KLYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAYADTLYVAPLIGPDTVSTMPDQAL 362

Query: 370 EAFVDHGTVSRTIDSNVSEAEGIYSALEKLGIDWNEVGNQLEVEGVDSFKKSFDSLLNTL 429
           +AFVDHG+V+RTIDSNVSEAEGIY+ALEKLGIDW  VGNQLEVEGVDSFKKSF+SLL+TL
Sbjct: 363 QAFVDHGSVARTIDSNVSEAEGIYNALEKLGIDWGHVGNQLEVEGVDSFKKSFESLLDTL 422

Query: 430 QDKANSLKLTFFPL----------------FNNGVHFRYWFSTQIPNPIPRKVSEHVLYR 489
           Q+KANSLKL    L                  NG+HF  W S  IP              
Sbjct: 423 QEKANSLKLVSPKLSLITTNTQNNWRHVNSCINGLHFNSWNSIPIP-------------- 482

Query: 490 SKFSVLRSGGFALILIYNSWK-YGIREYNVVNGLLFFLGDSTEGCCRLVLDRRALVLSSF 549
                              WK + I  + +      F G         V++RR ++  S 
Sbjct: 483 -------------------WKNFTIHNFCIKK----FTG---------VIERRQVITLSV 542

Query: 550 GVLAGALLKVAD---DGLAVASQFADMPALRGKDYGKTKMKYLDYTETESGLQYKDLRVG 609
           G+LAGA L+ +    D  A+A++FADMPALRGKDYGKTKM+Y DYTETESGLQYKDLR G
Sbjct: 543 GLLAGAFLQHSSSNKDAAAMAAEFADMPALRGKDYGKTKMRYPDYTETESGLQYKDLRAG 602

Query: 610 EGPSPKMGDTVVVDWDGYTIGYYGRIFEARNKTKGGSFEGDDKDFFKFRLGFQEVIQAFE 662
            GP PKMG+ VVVDWDGYTIGYYGRIFEARNKTKGGSFEGDDKDFFKFRLG +EVI AFE
Sbjct: 603 NGPLPKMGEIVVVDWDGYTIGYYGRIFEARNKTKGGSFEGDDKDFFKFRLGSREVIPAFE 627

BLAST of Sgr015458 vs. NCBI nr
Match: KAF3968918.1 (hypothetical protein CMV_007237 [Castanea mollissima])

HSP 1 Score: 881.7 bits (2277), Expect = 5.5e-252
Identity = 473/662 (71.45%), Postives = 526/662 (79.46%), Query Frame = 0

Query: 1   MASISKLSNPTSAPSLSSSFNPRSSPSKCFISFRPRTDFCLKVSASRLSVRRDSDLSGSL 60
           MA+IS+LS P+ A S+SS+  PRS+  K  I F   +DF  KVS+S+L+VR +  L G L
Sbjct: 1   MATISRLSTPSHAASVSSTLKPRSAQPKILIGFYRSSDFNAKVSSSKLAVRSNPALRGPL 60

Query: 61  AVRCSQGDGNGIPTKRTVLHDLYEKEGQSPWYDNLCRPVTDLLPLISKGVRGVTSNPAIF 120
            V+CS  DGNG P KRTVLHDLYEKEGQSPWYDNLCRPVTDLLPLI+ GVRGVTSNPAIF
Sbjct: 61  VVKCSHADGNGTPVKRTVLHDLYEKEGQSPWYDNLCRPVTDLLPLIASGVRGVTSNPAIF 120

Query: 121 QKAISSSNAYNDQFRELVQSGKDIESAYWELVVKDIQDACKLFEPIYDQTDGGDGYVSVE 180
           QKAISSSNAYNDQFRELVQSGKDIE+AYWELVVKDIQDACKLFEPIYDQT+  DGYVSVE
Sbjct: 121 QKAISSSNAYNDQFRELVQSGKDIEAAYWELVVKDIQDACKLFEPIYDQTNAADGYVSVE 180

Query: 181 VSPKLADDTEGTVEAAKWLHKVVSRPNVYIKIPAPAACIPSIRDTIANGISVNVTLIFSV 240
           VSP+LAD+T+GTV+AAKWLHKVV R NVYIKIPA AACIPSI+D I+ GISVNVTLIFS+
Sbjct: 181 VSPRLADETKGTVDAAKWLHKVVDRRNVYIKIPATAACIPSIKDVISLGISVNVTLIFSL 240

Query: 241 ARYEAVIDAYLDGLEASGLSDLSRVTSVASFFVSRVDTLIDKLLEKIGTPEALDLRGKAA 300
           +RYEAVIDAYLDGLEASGL+DLS+VTSVASFFVSRVDTLIDK LEKIGTPEALDLRGKAA
Sbjct: 241 SRYEAVIDAYLDGLEASGLNDLSKVTSVASFFVSRVDTLIDKKLEKIGTPEALDLRGKAA 300

Query: 301 VAQAALAYQLYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAYSDTLYVAPLIGPDTV 360
           VAQAALAY+LYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAYSDTLYVAPLIGPDTV
Sbjct: 301 VAQAALAYKLYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAYSDTLYVAPLIGPDTV 360

Query: 361 STMPDQALEAFVDHGTVSRTIDSNVSEAEGIYSALEKLGIDWNEVGNQLEVEGVDSFKKS 420
           STMPDQAL+AF+DHG VSRTIDSNVSEAEG+Y+ALEKLGIDW++VG QLE+EGV S   S
Sbjct: 361 STMPDQALQAFIDHGAVSRTIDSNVSEAEGVYNALEKLGIDWSDVGIQLELEGVVSVPLS 420

Query: 421 FDSLLNTLQDKANSLKLTFFPLFNNGVHFRYWFSTQIPNPIPRKVSEHVLYRSKFSVLRS 480
           F   +          +L+  P            S Q P         H L     SV  S
Sbjct: 421 F---VTKASSNIGCCRLSITPQ-----------SLQQP---------HCL-----SVPTS 480

Query: 481 GGFALILIYNSWKYGIREYNVVNGLLFFLGDSTEGCCRLVLDRRALVLSSFGVL-AGALL 540
            G       +   YG                        V++RR +++SS G+L AG+  
Sbjct: 481 CG-------DPTPYG-----------------------KVVERRKVLVSSVGILVAGSWW 540

Query: 541 KVADDGLAVASQFADMPALRGKDYGKTKMKYLDYTETESGLQYKDLRVGEGPSPKMGDTV 600
             + +G++VA++F DMPALRGKDYGKTKM+Y DYTETESGLQYKDLRVG GP PKMG+TV
Sbjct: 541 NASMEGVSVAAEFTDMPALRGKDYGKTKMRYPDYTETESGLQYKDLRVGNGPIPKMGETV 600

Query: 601 VVDWDGYTIGYYGRIFEARNKTKGGSFEGDDKDFFKFRLGFQEVIQAFEEAVSGMALGGI 660
           VVDWDGYTIGYYGRIFEARNKTKGGSF GDDKDFFKFR+G QEVI AFEEAVSGMALGGI
Sbjct: 601 VVDWDGYTIGYYGRIFEARNKTKGGSFVGDDKDFFKFRIGSQEVIPAFEEAVSGMALGGI 604

Query: 661 RR 662
           RR
Sbjct: 661 RR 604

BLAST of Sgr015458 vs. NCBI nr
Match: RVW78042.1 (Peptidyl-prolyl cis-trans isomerase FKBP19, chloroplastic [Vitis vinifera])

HSP 1 Score: 877.9 bits (2267), Expect = 8.0e-251
Identity = 493/742 (66.44%), Postives = 548/742 (73.85%), Query Frame = 0

Query: 1   MASISKL--SNPTSAPSLSSSFNPRSSPSKCFISFRPRTDFCLKVSASRLSVRRDSDLSG 60
           MASISKL   +P S+ S+S S   RS   KC I F  R  F  +VS+SRLSVR D  + G
Sbjct: 1   MASISKLVSPSPVSSYSVSGSLKSRSLQPKCLIDFHSRDVFNARVSSSRLSVRNDV-VRG 60

Query: 61  SLAVRCSQGDGNGIPTKRTVLHDLYEKEGQSPWYDNLCRPVTDLLPLISKGVRGVTSNPA 120
           SL VRCSQ +GNG   KRT LHDLYE+ GQSPWYDNLCRPVTDLLPLI+ GVRGVTSNPA
Sbjct: 61  SLIVRCSQLEGNGSQIKRTTLHDLYEQGGQSPWYDNLCRPVTDLLPLIASGVRGVTSNPA 120

Query: 121 IFQKAISSSNAYNDQFRELVQSGKDIESAYWELVVKDIQDACKLFEPIYDQTDGGDGYVS 180
           IFQKAISSSNAYN+QFRELV +GKDIESAYWELVVKDIQDAC+LFEPIYD+TDGGDGYVS
Sbjct: 121 IFQKAISSSNAYNEQFRELVLAGKDIESAYWELVVKDIQDACRLFEPIYDETDGGDGYVS 180

Query: 181 VEVSPKLADDTEGTVEAAKWLHKVVSRPNVYIKIPAPAACIPSIRDTIANGISVNVT--- 240
           VEVSPKLADDT GTVEAAKWL+KVV RPNVYIKIPA A C+PSI++ I+ GISVNVT   
Sbjct: 181 VEVSPKLADDTVGTVEAAKWLYKVVDRPNVYIKIPATAPCVPSIKEVISLGISVNVTVIL 240

Query: 241 ----------------------LIFSVARYEAVIDAYLDGLEASGLSDLSRVTSVASFFV 300
                                 LIFS+ RYEAVIDAYLDGLEASGLSDLSRVTSVASFFV
Sbjct: 241 AIWVLVKLLISGKVVLRLWVVQLIFSLPRYEAVIDAYLDGLEASGLSDLSRVTSVASFFV 300

Query: 301 SRVDTLIDKLLEKIGTPEALDLRGKAAVAQAALAYQLYQKKFSGPRWEALVKKGAKKQRL 360
           SRVDTLIDKLLEKIGTPEALDLRGKAAVAQAALAYQLYQKKFSGPRWEALVKKGAKKQRL
Sbjct: 301 SRVDTLIDKLLEKIGTPEALDLRGKAAVAQAALAYQLYQKKFSGPRWEALVKKGAKKQRL 360

Query: 361 LWASTSVKNPAYSDTLYVAPLIGPDT-------------VSTMPDQALEAFVDHGTVSRT 420
           LWASTSVKNPAY DTLYV+PLIGPDT             VSTMPDQAL+AFVDHG VSRT
Sbjct: 361 LWASTSVKNPAYPDTLYVSPLIGPDTVSLLILQPQLDLAVSTMPDQALQAFVDHGVVSRT 420

Query: 421 IDSNVSEAEGIYSALEKLGIDWNEVGNQLEVEGVDSFKKSFDSLLNTLQDKANSLKLTFF 480
           IDSNVSEAEGIYSALEKLGIDW  VG+QLE+EGV+SFKKSFDSLL++LQ+KANSLKL   
Sbjct: 421 IDSNVSEAEGIYSALEKLGIDWGYVGSQLELEGVESFKKSFDSLLDSLQEKANSLKL--- 480

Query: 481 PLFNNGVHFRY------WFSTQI-------PNPIPRKVSEHVLYRSKFSVLRSGGF---- 540
            +   G   +       W S+         P+ +    S  V+     S+    GF    
Sbjct: 481 -IIKVGTRLKTANTENPWVSSDFSEDDNSPPHSLSYSDSGVVVGNQMASISAIEGFLPNS 540

Query: 541 -ALIL---IYNSWKYGIREYN-----VVNGLLFFLGDSTEGCCRLVLDRRALVLSSFGVL 600
            A+ L     + W   I   N      +    + +  S    CR V  RR   + S G+L
Sbjct: 541 LAISLGKASKSRWHMKIPRSNGGSSQELPRFSYSIDVSGGMGCRPVFGRREAAMLSIGLL 600

Query: 601 AGALLKVADDGLAVASQFAD---------------MPALRGKDYGKTKMKYLDYTETESG 660
           AGA+   +++ +AVAS+F D               MPALRGKDYGKTKM++ DYTET SG
Sbjct: 601 AGAIWNASENEVAVASEFTDSNFLCPSFGSVRIMEMPALRGKDYGKTKMRFPDYTETASG 660

Query: 661 LQYKDLRVGEGPSPKMGDTVVVDWDGYTIGYYGRIFEARNKTKGGSFEGDDKDFFKFRLG 662
           LQYKDLRVG GPSPK+G+TVVVDWDGYTIGYYGRIFEARNKTKGGSF+GDDKDFFKFR+G
Sbjct: 661 LQYKDLRVGSGPSPKVGETVVVDWDGYTIGYYGRIFEARNKTKGGSFQGDDKDFFKFRVG 720

BLAST of Sgr015458 vs. ExPASy Swiss-Prot
Match: A8KYS5 (Transaldolase OS=Frankia sp. (strain EAN1pec) OX=298653 GN=tal PE=3 SV=1)

HSP 1 Score: 323.6 bits (828), Expect = 7.6e-87
Identity = 183/356 (51.40%), Postives = 236/356 (66.29%), Query Frame = 0

Query: 87  GQSPWYDNLCRP---VTDLLPLI-SKGVRGVTSNPAIFQKAISSSNAYNDQFRELVQSGK 146
           G + W D++ R      +L  L  ++ V GVTSNP IFQKAI     YN+Q R+L   G 
Sbjct: 12  GVAVWLDDISRERIRTGNLAELARTRSVVGVTSNPTIFQKAIGGGETYNEQLRDLAVRGV 71

Query: 147 DIESAYWELVVKDIQDACKLFEPIYDQTDGGDGYVSVEVSPKLADDTEGTVEAAKWLHKV 206
           D+  A   +   DI+DAC +  P YD + G DG VS+EV P+LA +TE TV  A+ L   
Sbjct: 72  DVGEAVRAITAADIRDACDILRPAYDASAGVDGRVSLEVDPRLAHETERTVAEARALWWS 131

Query: 207 VSRPNVYIKIPAPAACIPSIRDTIANGISVNVTLIFSVARYEAVIDAYLDGLE---ASGL 266
           V RPN++IKIPA  + +P+I  T+A GISVNVTLIF++ RYEAV+DA++ GLE   A+G 
Sbjct: 132 VDRPNLFIKIPATKSGLPAITATLAQGISVNVTLIFALDRYEAVMDAFMTGLEQALAAG- 191

Query: 267 SDLSRVTSVASFFVSRVDTLIDKLLEKIGTPEALDLRGKAAVAQAALAYQLYQKKFSGPR 326
            D+S V SVASFFVSRVD+ +D  L KIGTP+A  LR KAA+A A LAY+LY+K FS PR
Sbjct: 192 RDISDVASVASFFVSRVDSEVDGRLAKIGTPKAEALRSKAAIANARLAYELYEKIFSTPR 251

Query: 327 WEALVKKGAKKQRLLWASTSVKNPAYSDTLYVAPLIGPDTVSTMPDQALEAFVDHGTV-S 386
           WE L   GAK QR LWASTS K+P   DTLYV  LI P TV+TMP+  LEAF DHG V  
Sbjct: 252 WERLAAAGAKPQRPLWASTSTKDPGLPDTLYVTELIAPGTVNTMPEATLEAFADHGVVPG 311

Query: 387 RTIDSNVSEAEGIYSALEKLGIDWNEVGNQLEVEGVDSFKKSFDSLLNTLQDKANS 435
            TI  N  +A  + + L +LG+D  +V   LEVEGV  F+ S++ LL+T++++  S
Sbjct: 312 DTITPNYEDARAVLAELTELGVDMADVVEVLEVEGVRKFEDSWNQLLDTIREQLGS 366

BLAST of Sgr015458 vs. ExPASy Swiss-Prot
Match: A9WT40 (Transaldolase OS=Renibacterium salmoninarum (strain ATCC 33209 / DSM 20767 / JCM 11484 / NBRC 15589 / NCIMB 2235) OX=288705 GN=tal PE=3 SV=1)

HSP 1 Score: 316.2 bits (809), Expect = 1.2e-84
Identity = 179/355 (50.42%), Postives = 233/355 (65.63%), Query Frame = 0

Query: 87  GQSPWYDNLCR---PVTDLLPLI-SKGVRGVTSNPAIFQKAISSSNAYNDQFRELVQSGK 146
           G S W D+L R       L  LI  K V GVT+NP+IFQ AIS   +Y  Q  EL   G 
Sbjct: 12  GVSIWLDDLSRERLTSGSLQKLIDEKNVVGVTTNPSIFQAAISKGTSYEQQVSELAAQGA 71

Query: 147 DIESAYWELVVKDIQDACKLFEPIYDQTDGGDGYVSVEVSPKLADDTEGTVEAAKWLHKV 206
           D+E+A +++  +D+ +AC  F  I   + G DG VS+EV P+ A DT+GT+E AK LH  
Sbjct: 72  DVEAAVFQITTQDVANACDFFAGIAVASKGVDGRVSIEVDPRKAWDTQGTIEEAKRLHAA 131

Query: 207 VSRPNVYIKIPAPAACIPSIRDTIANGISVNVTLIFSVARYEAVIDAYLDGLEASGLS-- 266
           V + NV+IKIPA    + +I +T+  GISVNVTLIFS+ RY AVI+A+L G+E +  +  
Sbjct: 132 VGKDNVHIKIPATLEGLEAITETLGAGISVNVTLIFSLGRYRAVINAFLLGIEKAKANGH 191

Query: 267 DLSRVTSVASFFVSRVDTLIDKLLEKIGTPEALDLRGKAAVAQAALAYQLYQKKFSGPRW 326
           DLS++ SVASFFVSRVDT IDK L+ + T EA  L+GKA VA A LAYQ++++ FS  RW
Sbjct: 192 DLSQIHSVASFFVSRVDTEIDKRLDALNTDEAKSLKGKAGVANARLAYQVFEEVFSSERW 251

Query: 327 EALVKKGAKKQRLLWASTSVKNPAYSDTLYVAPLIGPDTVSTMPDQALEAFVDHGTVS-R 386
             L + GA  QR LWAST VK+PAY DTLYV  L+ P+ V+TMP++ L+A  DHG VS  
Sbjct: 252 ALLAEAGALPQRPLWASTGVKDPAYPDTLYVTELVAPNVVNTMPEKTLDATADHGVVSGN 311

Query: 387 TIDSNVSEAEGIYSALEKLGIDWNEVGNQLEVEGVDSFKKSFDSLLNTLQDKANS 435
           TI     EA G+ +ALE LGI +NEV   LE EG++ F  S+  LL+ +QD  NS
Sbjct: 312 TISGRYDEANGVLNALEGLGISYNEVVALLEKEGLEKFVASWKELLDHVQDALNS 366

BLAST of Sgr015458 vs. ExPASy Swiss-Prot
Match: Q2JCG8 (Transaldolase OS=Frankia casuarinae (strain DSM 45818 / CECT 9043 / CcI3) OX=106370 GN=tal PE=3 SV=1)

HSP 1 Score: 313.9 bits (803), Expect = 6.0e-84
Identity = 175/350 (50.00%), Postives = 238/350 (68.00%), Query Frame = 0

Query: 87  GQSPWYDNLCRP---VTDLLPLI-SKGVRGVTSNPAIFQKAISSSNAYNDQFRELVQSGK 146
           G + W D++ R      +L  L+ ++GV GVTSNP IFQKAISSS+ Y++Q  +L   G 
Sbjct: 12  GVAVWLDDISRDRLRTGNLAHLVENRGVVGVTSNPTIFQKAISSSDLYDEQLHDLAIRGV 71

Query: 147 DIESAYWELVVKDIQDACKLFEPIYDQTDGGDGYVSVEVSPKLADDTEGTVEAAKWLHKV 206
           D+  A   +   D++DAC +   +YD + G DG VS+EV P+LA + E T+  A+ L  +
Sbjct: 72  DVGEAVRAITAADVRDACDVLRGVYDASGGVDGRVSLEVDPRLAHEAERTLAEARALWWL 131

Query: 207 VSRPNVYIKIPAPAACIPSIRDTIANGISVNVTLIFSVARYEAVIDAYLDGLE---ASGL 266
           V RPN++IKIPA  A + +I +T+A GISVNVTLIF + RY+AVIDA++ GLE   A+G 
Sbjct: 132 VDRPNLFIKIPATRAGLSAITETLAQGISVNVTLIFGLDRYDAVIDAFMTGLEKALAAG- 191

Query: 267 SDLSRVTSVASFFVSRVDTLIDKLLEKIGTPEALDLRGKAAVAQAALAYQLYQKKFSGPR 326
            D++ + SVASFFVSRVDT +D+ LEKIGT EA  LRG+AAVA A LA++ Y+K F+ PR
Sbjct: 192 RDITDLASVASFFVSRVDTEVDQRLEKIGTSEAKALRGRAAVANARLAFERYEKAFATPR 251

Query: 327 WEALVKKGAKKQRLLWASTSVKNPAYSDTLYVAPLIGPDTVSTMPDQALEAFVDHGTVS- 386
           W AL   GAK QR LWASTS K+P+  DT+YV  LI P TV+TMP+  LEAF DHG+V+ 
Sbjct: 252 WAALAAAGAKPQRPLWASTSTKDPSLPDTIYVTELIAPGTVNTMPEATLEAFADHGSVTG 311

Query: 387 RTIDSNVSEAEGIYSALEKLGIDWNEVGNQLEVEGVDSFKKSFDSLLNTL 429
            TI     EA  +++ L  +GID ++V   LE +GV  F+ S+  LL+T+
Sbjct: 312 ETIRPRYEEAHEVFAQLTAVGIDLDDVIETLESQGVQKFEDSWTQLLDTI 360

BLAST of Sgr015458 vs. ExPASy Swiss-Prot
Match: A0LTY8 (Transaldolase OS=Acidothermus cellulolyticus (strain ATCC 43068 / 11B) OX=351607 GN=tal PE=3 SV=1)

HSP 1 Score: 313.2 bits (801), Expect = 1.0e-83
Identity = 177/345 (51.30%), Postives = 228/345 (66.09%), Query Frame = 0

Query: 87  GQSPWYDNLCR---PVTDLLPLI-SKGVRGVTSNPAIFQKAISSSNAYNDQFRELVQSGK 146
           G S W D++ R      +L  LI  + V GVT+NP IF KAI  S  Y DQ R+L   G 
Sbjct: 12  GVSIWIDDISRDRLQTGNLAALIRDRHVVGVTTNPTIFGKAIEGSARYQDQLRDLAVRGV 71

Query: 147 DIESAYWELVVKDIQDACKLFEPIYDQTDGGDGYVSVEVSPKLADDTEGTVEAAKWLHKV 206
           D+  A   L   D++ AC +  P++D TDG DG VS+EV P+LA DTE T+  A+ L  +
Sbjct: 72  DVNEALRALTAYDVRWACDVTRPVFDATDGVDGRVSIEVDPRLAHDTEATIAEARALWWL 131

Query: 207 VSRPNVYIKIPAPAACIPSIRDTIANGISVNVTLIFSVARYEAVIDAYLDGLEAS--GLS 266
           V RPN++IKIPA    +P+I   +A GISVNVTLIFSV RYE VIDA+ DG+E +     
Sbjct: 132 VDRPNLFIKIPATVEGLPAIAQCLAEGISVNVTLIFSVKRYEQVIDAFFDGVERAIEAGH 191

Query: 267 DLSRVTSVASFFVSRVDTLIDKLLEKIGTPEALDLRGKAAVAQAALAYQLYQKKFSGPRW 326
           DLSR+ SVASFFVSRVDT +DK LEKIG  EAL  + KAAVA A LAY+ Y++KF+ PRW
Sbjct: 192 DLSRLASVASFFVSRVDTEVDKRLEKIG-GEALQWKAKAAVANARLAYRTYEEKFATPRW 251

Query: 327 EALVKKGAKKQRLLWASTSVKNPAYSDTLYVAPLIGPDTVSTMPDQALEAFVDHGTV-SR 386
           +AL  KGA+ QR LWASTS K+P+  DTLYV  L+ P TV+TMP+  L+A  DHG +   
Sbjct: 252 QALAAKGARPQRPLWASTSTKDPSLPDTLYVTELVAPGTVNTMPESTLQAVYDHGVIRGD 311

Query: 387 TIDSNVSEAEGIYSALEKLGIDWNEVGNQLEVEGVDSFKKSFDSL 425
           TI    ++A+    AL  LGID+++V + LE EGV+ F+ S+  L
Sbjct: 312 TIRGYYADAQATLDALATLGIDYDDVTDTLEREGVEKFEASWTEL 355

BLAST of Sgr015458 vs. ExPASy Swiss-Prot
Match: Q0RH18 (Transaldolase OS=Frankia alni (strain ACN14a) OX=326424 GN=tal PE=3 SV=1)

HSP 1 Score: 312.4 bits (799), Expect = 1.8e-83
Identity = 169/349 (48.42%), Postives = 236/349 (67.62%), Query Frame = 0

Query: 87  GQSPWYDNLCRP---VTDLLPLI-SKGVRGVTSNPAIFQKAISSSNAYNDQFRELVQSGK 146
           G + W D++ R      +L  L+ ++ V GVTSNP IFQKAI+SS+ YN+Q R+L   G 
Sbjct: 12  GVAVWLDDISRDRLRTGNLADLVANRSVVGVTSNPTIFQKAIASSDLYNEQLRDLKVRGV 71

Query: 147 DIESAYWELVVKDIQDACKLFEPIYDQTDGGDGYVSVEVSPKLADDTEGTVEAAKWLHKV 206
           D+  A   +   D+++AC +   +YD + G DG VS+EV P+LA + E TV  A+ L  +
Sbjct: 72  DVGEAVRAITAADVREACDVLRGVYDASGGVDGRVSLEVDPRLAHEAERTVAEARALWWL 131

Query: 207 VSRPNVYIKIPAPAACIPSIRDTIANGISVNVTLIFSVARYEAVIDAYLDGLEAS--GLS 266
           V RPN++IKIPA    +P+I +T+A GISVNVTLIF + RY+AVIDA++ G+E +     
Sbjct: 132 VDRPNLFIKIPATQDGLPAITETLAQGISVNVTLIFGLDRYDAVIDAFMSGVEQAIEAGR 191

Query: 267 DLSRVTSVASFFVSRVDTLIDKLLEKIGTPEALDLRGKAAVAQAALAYQLYQKKFSGPRW 326
           D+S + SVASFFVSRVD+ +D  L+KIGTPEA  L  K A+A A LAY+ Y+K F+ PRW
Sbjct: 192 DVSDLASVASFFVSRVDSEVDARLDKIGTPEAKALHAKTAIANARLAYERYEKAFATPRW 251

Query: 327 EALVKKGAKKQRLLWASTSVKNPAYSDTLYVAPLIGPDTVSTMPDQALEAFVDHGTV-SR 386
           +AL  KGAK QR LWASTS K+P+  DT+YV+ LI P TV+TMP+  L+AF DHG V   
Sbjct: 252 KALAAKGAKPQRPLWASTSTKDPSLPDTIYVSELIAPGTVNTMPEATLQAFADHGQVKGE 311

Query: 387 TIDSNVSEAEGIYSALEKLGIDWNEVGNQLEVEGVDSFKKSFDSLLNTL 429
           TI  +  +A  +++AL  +G+D ++V   LE +GV  F+ S++ LL T+
Sbjct: 312 TIRPHYDDARQVFAALAAVGVDIDDVIETLETQGVQKFEDSWNQLLGTI 360

BLAST of Sgr015458 vs. ExPASy TrEMBL
Match: A0A498HP66 (Peptidylprolyl isomerase OS=Malus domestica OX=3750 GN=DVH24_025193 PE=3 SV=1)

HSP 1 Score: 953.4 bits (2463), Expect = 7.2e-274
Identity = 505/684 (73.83%), Postives = 562/684 (82.16%), Query Frame = 0

Query: 2    ASISKLSNPTSAPSLSSSFNPRSSPSKCFISF--RPRTDFCLKVSASRLSVRRDSDLSGS 61
            AS+SKLSNPT A SLSS+F+PR+   +C I     P + F  K+S+S+LSVR    L GS
Sbjct: 408  ASVSKLSNPTPASSLSSTFSPRTPQPRCLIRLLTTPGSTFNSKLSSSKLSVRSKPSLRGS 467

Query: 62   LAVRCSQGDGNGIPTKRTVLHDLYEKEGQSPWYDNLCRPVTDLLPLISKGVRGVTSNPAI 121
            L VRCSQ DGNG P KRT LHDLYEKEGQSPWYDNLCRPVTDLLPLI+ GVRGVTSNPAI
Sbjct: 468  LVVRCSQSDGNGSPVKRTYLHDLYEKEGQSPWYDNLCRPVTDLLPLIASGVRGVTSNPAI 527

Query: 122  FQKAISSSNAYNDQFRELVQSGKDIESAYWELVVKDIQDACKLFEPIYDQTDGGDGYVSV 181
            FQKAIS+SNAYNDQFRELV SGKDIESAYWELVVKDIQDACKLFE IYDQTD GDGYVSV
Sbjct: 528  FQKAISTSNAYNDQFRELVHSGKDIESAYWELVVKDIQDACKLFESIYDQTDAGDGYVSV 587

Query: 182  EVSPKLADDTEGTVEAAKWLHKVVSRPNVYIKIPAPAACIPSIRDTIANGISVNVTLIFS 241
            EVSP+LADDT+GTV+AAKWLHKVV+RPNVYIKIPA A C+PSI++ IANGISVNVTLIFS
Sbjct: 588  EVSPRLADDTQGTVDAAKWLHKVVARPNVYIKIPATAPCVPSIKEVIANGISVNVTLIFS 647

Query: 242  VARYEAVIDAYLDGLEASGLSDLSRVTSVASFFVSRVDTLIDKLLEKIGTPEALDLRGKA 301
            ++RYEAVIDAYLDGLEASGLSDLSRVTSVASFFVSRVDTLIDK+LEKIGTPEALDLRGKA
Sbjct: 648  LSRYEAVIDAYLDGLEASGLSDLSRVTSVASFFVSRVDTLIDKMLEKIGTPEALDLRGKA 707

Query: 302  AVAQAALAYQLYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAYSDTLYVAPLIGPDT 361
            AVAQAALAYQLYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAY DTLYVAPLIGPDT
Sbjct: 708  AVAQAALAYQLYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAYPDTLYVAPLIGPDT 767

Query: 362  VSTMPDQALEAFVDHGTVSRTIDSNVSEAEGIYSALEKLGIDWNEVGNQLEVEGVDSFKK 421
            VSTMPDQAL+AFVDHGTVSRTIDSNVSEAEGIYSALEKLGIDW+ VGNQLE+EGVDSFKK
Sbjct: 768  VSTMPDQALQAFVDHGTVSRTIDSNVSEAEGIYSALEKLGIDWSYVGNQLEIEGVDSFKK 827

Query: 422  SFDSLLNTLQDKANSLKLTFFPLFNNGVHFRYWFSTQIPNPIPRKVSEHVLYRSKFSVLR 481
            SFDSLL+TLQ+KANSLKL                   + +P PR  S  V  +S   + R
Sbjct: 828  SFDSLLDTLQEKANSLKL-----------------VTVRSP-PRPPSSPV-GKSSTPIRR 887

Query: 482  SGGFALILIYNSWKY---GIREYNVVNGLLFFLGDSTEGCCRLVLDRRALVLSSFGVLAG 541
                  +L + S +    G + + +     F   DS  G   ++++RR++V SS G++A 
Sbjct: 888  -----FVLTFPSMRQRRRGPQSHLLPEAEKF--SDSGAGGGSILIERRSVVFSSVGMVAA 947

Query: 542  ALLKVADDGLAVASQFADMPALRGKDYGKTKMKYLDYTETESGLQYKDLRVGEGPSPKMG 601
            A    + D +A+ASQF DMPALRGKDYGK+KM Y DYTETESGLQYKDLRVG+GP PK+G
Sbjct: 948  AFCNASKDVIALASQFTDMPALRGKDYGKSKMSYPDYTETESGLQYKDLRVGDGPEPKVG 1007

Query: 602  DTVVVDWDGYTIGYYGRIFEARNKTKGGSFEGDDKDFFKFRLGFQEVIQAFEEAVSGMAL 661
            +TVVVDWDGYTIGYYGRIFEARNKTKGGSFEGDDK FFKFR+G QEVI AFEEA++GMAL
Sbjct: 1008 ETVVVDWDGYTIGYYGRIFEARNKTKGGSFEGDDKAFFKFRVGSQEVIPAFEEAITGMAL 1065

Query: 662  GGIRR-GCPFQTRYHDQSHRHTFP 680
            GGIRR   P +  Y D  +  + P
Sbjct: 1068 GGIRRIIVPPELGYPDNDYNKSGP 1065

BLAST of Sgr015458 vs. ExPASy TrEMBL
Match: A0A218WUC5 (Peptidylprolyl isomerase OS=Punica granatum OX=22663 GN=CDL15_Pgr009919 PE=3 SV=1)

HSP 1 Score: 909.4 bits (2349), Expect = 1.2e-260
Identity = 493/675 (73.04%), Postives = 532/675 (78.81%), Query Frame = 0

Query: 1   MASISKLSNPT---SAPSLSSSFNPRSSPSKCFISFRPRTDFCLKVSASRLSVRRDSDLS 60
           MA+ISKLS  T   S+ S  SS  PRS   +CF+       F  KV+ASRLSVR     +
Sbjct: 1   MATISKLSTATPSSSSSSFPSSIRPRSVQPQCFVDLHKAAGFTSKVAASRLSVRGGRPSN 60

Query: 61  GSLAVRCSQGDGNGIPTKRTVLHDLYEKEGQSPWYDNLCRPVTDLLPLISKGVRGVTSNP 120
            SL VRCSQ  GNG   KRTVLHDLYE+EGQSPWYDNLCRPVTDLLPLI  GVRGVTSNP
Sbjct: 61  VSLVVRCSQSSGNGSAAKRTVLHDLYEREGQSPWYDNLCRPVTDLLPLIESGVRGVTSNP 120

Query: 121 AIFQKAISSSNAYNDQFRELVQSGKDIESAYWELVVKDIQDACKLFEPIYDQTDGGDGYV 180
           AIFQKAISSSNAYNDQF+ELVQS KDIESAYWELVVKDIQDACKLFEPIYD+TDGGDGYV
Sbjct: 121 AIFQKAISSSNAYNDQFKELVQSRKDIESAYWELVVKDIQDACKLFEPIYDRTDGGDGYV 180

Query: 181 SVEVSPKLADDTEGTVEAAKWLHKVVSRPNVYIKIPAPAACIPSIRDTIANGISVNVTLI 240
           SVEVSP+LADDTEGTVEAAKWLHKVV  PNVYIKIPA A CIPSI+  I  GISVNVTLI
Sbjct: 181 SVEVSPRLADDTEGTVEAAKWLHKVVDCPNVYIKIPATAPCIPSIKQVIEKGISVNVTLI 240

Query: 241 FSVARYEAVIDAYLDGLEASGLSDLSRVTSVASFFVSRVDTLIDKLLEKIGTPEALDLRG 300
           FS+ARYEAVIDAYLDGLEASGL DLSRVTSVASFFVSRVDTLIDKLLEKIGTPEALDLRG
Sbjct: 241 FSLARYEAVIDAYLDGLEASGLDDLSRVTSVASFFVSRVDTLIDKLLEKIGTPEALDLRG 300

Query: 301 KAAVAQAALAYQLYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAYSDTLYVAPLIGP 360
           KAAVAQAALAYQLYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAYSDTLYVAPLIGP
Sbjct: 301 KAAVAQAALAYQLYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAYSDTLYVAPLIGP 360

Query: 361 DTVSTMPDQALEAFVDHGTVSRTIDSNVSEAEGIYSALEKLGIDWNEVGNQLEVEGVDSF 420
           DTVSTMPDQAL+AFVDHGTVSRTIDSNVSEAEGIYSALEKLGIDWN VGNQLE+EGVD+F
Sbjct: 361 DTVSTMPDQALQAFVDHGTVSRTIDSNVSEAEGIYSALEKLGIDWNYVGNQLELEGVDAF 420

Query: 421 KKSFDSLLNTLQDKANSLKLTFFPLFNNGVHFRYWFSTQIPN--------PIPRKVSEHV 480
           KKSFDSLL+TLQ+KANSL L          H  ++     P+        P+ R  S H+
Sbjct: 421 KKSFDSLLDTLQEKANSLNLVSLCFIATHSHPSFFTIFLFPSGEFQGSLGPV-RPKSAHL 480

Query: 481 ---LYRSKFSVLRSGGFALILIYNSWKYGIREYNVVNGLLFFLGDSTEGCCRLVLDRRAL 540
              L  S+  +L   G  L  +            V  G                  RR +
Sbjct: 481 PRQLPPSQAPLLSEEGCGLQSV------------VARGFA----------------RRKV 540

Query: 541 VLSSFGVLAGALLKVADDGLAVASQFADMPALRGKDYGKTKMKYLDYTETESGLQYKDLR 600
           + SS  +++ A L  + +    A +FADMPALRGKDYGKTKM++ DYTETESGLQYKDLR
Sbjct: 541 LASSSALISLAFLIDSRNKEGFAEEFADMPALRGKDYGKTKMRFPDYTETESGLQYKDLR 600

Query: 601 VGEGPSPKMGDTVVVDWDGYTIGYYGRIFEARNKTKGGSFEGDDKDFFKFRLGFQEVIQA 660
           VG GP+PK+G TVVVDWDGYTIGYYGRIFEARNKTKGGSFEG+DKDFFKFR+G  EVIQA
Sbjct: 601 VGSGPTPKVGQTVVVDWDGYTIGYYGRIFEARNKTKGGSFEGNDKDFFKFRVGSDEVIQA 646

Query: 661 FEEAVSGMALGGIRR 662
           FEEAVSGMA GGIRR
Sbjct: 661 FEEAVSGMAPGGIRR 646

BLAST of Sgr015458 vs. ExPASy TrEMBL
Match: A0A438H0Q8 (Peptidylprolyl isomerase OS=Vitis vinifera OX=29760 GN=FKBP19_0 PE=3 SV=1)

HSP 1 Score: 877.9 bits (2267), Expect = 3.9e-251
Identity = 493/742 (66.44%), Postives = 548/742 (73.85%), Query Frame = 0

Query: 1   MASISKL--SNPTSAPSLSSSFNPRSSPSKCFISFRPRTDFCLKVSASRLSVRRDSDLSG 60
           MASISKL   +P S+ S+S S   RS   KC I F  R  F  +VS+SRLSVR D  + G
Sbjct: 1   MASISKLVSPSPVSSYSVSGSLKSRSLQPKCLIDFHSRDVFNARVSSSRLSVRNDV-VRG 60

Query: 61  SLAVRCSQGDGNGIPTKRTVLHDLYEKEGQSPWYDNLCRPVTDLLPLISKGVRGVTSNPA 120
           SL VRCSQ +GNG   KRT LHDLYE+ GQSPWYDNLCRPVTDLLPLI+ GVRGVTSNPA
Sbjct: 61  SLIVRCSQLEGNGSQIKRTTLHDLYEQGGQSPWYDNLCRPVTDLLPLIASGVRGVTSNPA 120

Query: 121 IFQKAISSSNAYNDQFRELVQSGKDIESAYWELVVKDIQDACKLFEPIYDQTDGGDGYVS 180
           IFQKAISSSNAYN+QFRELV +GKDIESAYWELVVKDIQDAC+LFEPIYD+TDGGDGYVS
Sbjct: 121 IFQKAISSSNAYNEQFRELVLAGKDIESAYWELVVKDIQDACRLFEPIYDETDGGDGYVS 180

Query: 181 VEVSPKLADDTEGTVEAAKWLHKVVSRPNVYIKIPAPAACIPSIRDTIANGISVNVT--- 240
           VEVSPKLADDT GTVEAAKWL+KVV RPNVYIKIPA A C+PSI++ I+ GISVNVT   
Sbjct: 181 VEVSPKLADDTVGTVEAAKWLYKVVDRPNVYIKIPATAPCVPSIKEVISLGISVNVTVIL 240

Query: 241 ----------------------LIFSVARYEAVIDAYLDGLEASGLSDLSRVTSVASFFV 300
                                 LIFS+ RYEAVIDAYLDGLEASGLSDLSRVTSVASFFV
Sbjct: 241 AIWVLVKLLISGKVVLRLWVVQLIFSLPRYEAVIDAYLDGLEASGLSDLSRVTSVASFFV 300

Query: 301 SRVDTLIDKLLEKIGTPEALDLRGKAAVAQAALAYQLYQKKFSGPRWEALVKKGAKKQRL 360
           SRVDTLIDKLLEKIGTPEALDLRGKAAVAQAALAYQLYQKKFSGPRWEALVKKGAKKQRL
Sbjct: 301 SRVDTLIDKLLEKIGTPEALDLRGKAAVAQAALAYQLYQKKFSGPRWEALVKKGAKKQRL 360

Query: 361 LWASTSVKNPAYSDTLYVAPLIGPDT-------------VSTMPDQALEAFVDHGTVSRT 420
           LWASTSVKNPAY DTLYV+PLIGPDT             VSTMPDQAL+AFVDHG VSRT
Sbjct: 361 LWASTSVKNPAYPDTLYVSPLIGPDTVSLLILQPQLDLAVSTMPDQALQAFVDHGVVSRT 420

Query: 421 IDSNVSEAEGIYSALEKLGIDWNEVGNQLEVEGVDSFKKSFDSLLNTLQDKANSLKLTFF 480
           IDSNVSEAEGIYSALEKLGIDW  VG+QLE+EGV+SFKKSFDSLL++LQ+KANSLKL   
Sbjct: 421 IDSNVSEAEGIYSALEKLGIDWGYVGSQLELEGVESFKKSFDSLLDSLQEKANSLKL--- 480

Query: 481 PLFNNGVHFRY------WFSTQI-------PNPIPRKVSEHVLYRSKFSVLRSGGF---- 540
            +   G   +       W S+         P+ +    S  V+     S+    GF    
Sbjct: 481 -IIKVGTRLKTANTENPWVSSDFSEDDNSPPHSLSYSDSGVVVGNQMASISAIEGFLPNS 540

Query: 541 -ALIL---IYNSWKYGIREYN-----VVNGLLFFLGDSTEGCCRLVLDRRALVLSSFGVL 600
            A+ L     + W   I   N      +    + +  S    CR V  RR   + S G+L
Sbjct: 541 LAISLGKASKSRWHMKIPRSNGGSSQELPRFSYSIDVSGGMGCRPVFGRREAAMLSIGLL 600

Query: 601 AGALLKVADDGLAVASQFAD---------------MPALRGKDYGKTKMKYLDYTETESG 660
           AGA+   +++ +AVAS+F D               MPALRGKDYGKTKM++ DYTET SG
Sbjct: 601 AGAIWNASENEVAVASEFTDSNFLCPSFGSVRIMEMPALRGKDYGKTKMRFPDYTETASG 660

Query: 661 LQYKDLRVGEGPSPKMGDTVVVDWDGYTIGYYGRIFEARNKTKGGSFEGDDKDFFKFRLG 662
           LQYKDLRVG GPSPK+G+TVVVDWDGYTIGYYGRIFEARNKTKGGSF+GDDKDFFKFR+G
Sbjct: 661 LQYKDLRVGSGPSPKVGETVVVDWDGYTIGYYGRIFEARNKTKGGSFQGDDKDFFKFRVG 720

BLAST of Sgr015458 vs. ExPASy TrEMBL
Match: A0A7J0FMH7 (Peptidylprolyl isomerase OS=Actinidia rufa OX=165716 GN=Acr_13g0013140 PE=3 SV=1)

HSP 1 Score: 866.3 bits (2237), Expect = 1.2e-247
Identity = 470/665 (70.68%), Postives = 514/665 (77.29%), Query Frame = 0

Query: 1   MASISKLSNPTSAPSLSSSFNPRSSPSKCFIS-FRPRTDFCLKVSASRLSVRRDSDLSGS 60
           MASISKLS P      S+SF P+     C I  F  ++    K+S+S LS+R +  +   
Sbjct: 1   MASISKLSCPNPTTVSSASFRPKVVQPVCSIHFFNTKSASDKKISSSSLSLRSNLAIRAP 60

Query: 61  LAVRCSQGDGNGIPTKRTVLHDLYEKEGQSPWYDNLCRPVTDLLPLISKGVRGVTSNPAI 120
           L VRCSQ DGNG P KRTVLHDLYEKEGQSPWYDNLCRPVTDLLPLI+ GVRGVTSNPAI
Sbjct: 61  LLVRCSQHDGNGSPIKRTVLHDLYEKEGQSPWYDNLCRPVTDLLPLIASGVRGVTSNPAI 120

Query: 121 FQKAISSSNAYNDQFRELVQSGKDIESAYWELVVKDIQDACKLFEPIYDQTDGGDGYVSV 180
           FQKAIS+SNAYN+QFRELVQSGKDIESAYWELVVKDIQDACKLFEPIYDQTDGGDGYVSV
Sbjct: 121 FQKAISTSNAYNEQFRELVQSGKDIESAYWELVVKDIQDACKLFEPIYDQTDGGDGYVSV 180

Query: 181 EVSPKLADDTEGTVEAAKWLHKVVSRPNVYIKIPAPAACIPSIRDTIANGISVNVTLIFS 240
           EVSP+LADDT+GTVEAAKWLHKVV R NVYIKIPA A CIPSI+D I+ GISVNVTLIFS
Sbjct: 181 EVSPRLADDTQGTVEAAKWLHKVVDRSNVYIKIPATAECIPSIKDVISLGISVNVTLIFS 240

Query: 241 VARYEAVIDAYLDGLEASGLSDLSRVTSVASFFVSRVDTLIDKLLEKIGTPEALDLRGKA 300
           +ARYEAVIDAYLDGLEASGLSDLSRVTSVASFFVSRVDTL+DK+LEKIGTPEALDLRGKA
Sbjct: 241 LARYEAVIDAYLDGLEASGLSDLSRVTSVASFFVSRVDTLVDKMLEKIGTPEALDLRGKA 300

Query: 301 AVAQAALAYQLYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAYSDTLYVAPLIGPDT 360
           A AQA LAY+LYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAY DTLYVAPLIGPDT
Sbjct: 301 ANAQATLAYKLYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAYPDTLYVAPLIGPDT 360

Query: 361 VSTMPDQALEAFVDHGTVSRTIDSNVSEAEGIYSALEKLGIDWNEVGNQLEVEGVDSFKK 420
           VSTMPDQAL+AF+DHG VSR+IDSNVSEAEGIYSALEKLGIDW  VG QLE+EGVDSFKK
Sbjct: 361 VSTMPDQALQAFIDHGIVSRSIDSNVSEAEGIYSALEKLGIDWGYVGYQLELEGVDSFKK 420

Query: 421 SFDSLLNTLQDKANSLKLTFFPLFNNGVHFRYWFSTQIPNPIPRKVSEHVLYRSKFSVLR 480
           SFDSLL++LQ+KANSLKL                   +   + R +   +     F+V  
Sbjct: 421 SFDSLLDSLQEKANSLKL-----------------VGLCGTVQRSLCVSMSGHQDFAVNA 480

Query: 481 SGGFALILIYNSWKYGIREYNVVNGLLFFLGDSTEGCCRLVLDRR--ALVLSSFGVLAGA 540
           S                                    CR   DRR   LVLSS G+LA  
Sbjct: 481 SANVD--------------------------------CRPGFDRRDVLLVLSSVGLLAPT 540

Query: 541 LLKVAD-DGLAVASQFADMPALRGKDYGKTKMKYLDYTETESGLQYKDLRVGEGPSPKMG 600
             K +  DG+A+AS+FADMPALRGKDYGKTKM+Y DYTET+SGLQYK             
Sbjct: 541 FWKSSSKDGVALASEFADMPALRGKDYGKTKMRYPDYTETDSGLQYK------------- 599

Query: 601 DTVVVDWDGYTIGYYGRIFEARNKTKGGSFEGDDKDFFKFRLGFQEVIQAFEEAVSGMAL 660
               VDWDG+TIGYYGRIFEARNKTKGGSFEGDDKDF+KFR+G Q+VI AFEEA+SGMAL
Sbjct: 601 ----VDWDGFTIGYYGRIFEARNKTKGGSFEGDDKDFYKFRIGSQQVIPAFEEAISGMAL 599

Query: 661 GGIRR 662
           GGIRR
Sbjct: 661 GGIRR 599

BLAST of Sgr015458 vs. ExPASy TrEMBL
Match: A0A7J6WL55 (Peptidylprolyl isomerase OS=Thalictrum thalictroides OX=46969 GN=FRX31_012718 PE=3 SV=1)

HSP 1 Score: 861.7 bits (2225), Expect = 2.9e-246
Identity = 461/661 (69.74%), Postives = 518/661 (78.37%), Query Frame = 0

Query: 1   MASISKLSNPTSAPSLSSSFNPRSSPSKCFISFRPRTDFCLKVSASRLSVRRDSDLSGSL 60
           MASISKL  P+ A S S   N   S  +  + F  R+ F  K S+S+LSVR +     SL
Sbjct: 1   MASISKLVLPSFASSSSVKLN--YSEPRALVDFHTRSSFNNKFSSSKLSVRTNHHNKPSL 60

Query: 61  AVRCSQGDGNGIPTKRTVLHDLYEKEGQSPWYDNLCRPVTDLLPLISKGVRGVTSNPAIF 120
            V+CSQ  GNG  TKRT LHDLYE +GQSPWYDNLCRPVTDL+PLI  GVRGVTSNPAIF
Sbjct: 61  IVKCSQIGGNGAQTKRTTLHDLYELQGQSPWYDNLCRPVTDLIPLIQSGVRGVTSNPAIF 120

Query: 121 QKAISSSNAYNDQFRELVQSGKDIESAYWELVVKDIQDACKLFEPIYDQTDGGDGYVSVE 180
           QKAIS+SNAYNDQFREL Q GKDIE AYWELV+KDIQDACKLFE IYD+TDG DGYVSVE
Sbjct: 121 QKAISTSNAYNDQFRELAQEGKDIEGAYWELVIKDIQDACKLFETIYDETDGADGYVSVE 180

Query: 181 VSPKLADDTEGTVEAAKWLHKVVSRPNVYIKIPAPAACIPSIRDTIANGISVNVTLIFSV 240
           VSPKLADDT+GTVEAAKWLHKVV+R NVYIKIPA A CIPSI+D I+ GISVNVTLIFS+
Sbjct: 181 VSPKLADDTQGTVEAAKWLHKVVNRRNVYIKIPATAECIPSIKDVISLGISVNVTLIFSL 240

Query: 241 ARYEAVIDAYLDGLEASGLSDLSRVTSVASFFVSRVDTLIDKLLEKIGTPEALDLRGKAA 300
           +RYEAVIDAYLDGLEASGLSDLS+VTSVASFFVSRVDTL+DK+LEKIGTPEALDLRGKAA
Sbjct: 241 SRYEAVIDAYLDGLEASGLSDLSKVTSVASFFVSRVDTLVDKMLEKIGTPEALDLRGKAA 300

Query: 301 VAQAALAYQLYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAYSDTLYVAPLIGPDTV 360
           VAQAALAY+LYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAY+DTLYVAPLIGPDTV
Sbjct: 301 VAQAALAYKLYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAYADTLYVAPLIGPDTV 360

Query: 361 STMPDQALEAFVDHGTVSRTIDSNVSEAEGIYSALEKLGIDWNEVGNQLEVEGVDSFKKS 420
           STMPDQAL+AF+DHG VSRTID+NVSEAEGIYSALEKLGIDW EVG+QLE+EGVDSFKK+
Sbjct: 361 STMPDQALQAFIDHGKVSRTIDANVSEAEGIYSALEKLGIDWGEVGSQLEIEGVDSFKKA 420

Query: 421 FDSLLNTLQDKANSLKLTFFPLFNNGVHFRYWFSTQIPNPIPRKVSEHVLYRSKFSVLRS 480
           FDSLL TL++KAN+L L            R   S     P P+ + +             
Sbjct: 421 FDSLLLTLEEKANALNLV----------TRSCTSINNQKPSPKSLVQ------------- 480

Query: 481 GGFALILIYNSWKYGIREYNVVNGLLFFLGDSTEGCCRLVLDRRALVLSSFGVLAGALLK 540
            G  ++   + WK       +    L  L + T        DRR ++ S+ G+L G L +
Sbjct: 481 -GRKVVTSDSFWK----SKKIHISALLSLREDT-------FDRREVLFSTTGILVGTLWQ 540

Query: 541 VADDGLAVASQFADMPALRGKDYGKTKMKYLDYTETESGLQYKDLRVGEGPSPKMGDTVV 600
             +  +AVAS+FADMPALRGKDYGKTKM+Y DYTETESGLQYKDLRVG GPSPKMG+TVV
Sbjct: 541 GQESEVAVASEFADMPALRGKDYGKTKMRYADYTETESGLQYKDLRVGSGPSPKMGETVV 600

Query: 601 VDWDGYTIGYYGRIFEARNKTKGGSFEGDDKDFFKFRLGFQEVIQAFEEAVSGMALGGIR 660
           V       GY GRIFEARNKTKGG FEG+DK+FFKF LG  +VI AFEEA++GM +GGIR
Sbjct: 601 V--KQLFSGYLGRIFEARNKTKGGPFEGNDKEFFKFTLGSLQVIPAFEEAITGMTVGGIR 622

Query: 661 R 662
           R
Sbjct: 661 R 622

BLAST of Sgr015458 vs. TAIR 10
Match: AT5G13420.1 (Aldolase-type TIM barrel family protein )

HSP 1 Score: 680.2 bits (1754), Expect = 2.3e-195
Identity = 356/438 (81.28%), Postives = 388/438 (88.58%), Query Frame = 0

Query: 1   MASISKLSNPTSAPSLSSSFNPRSSP-SKCFISFRPRTDFCLKVSASRLSVRRDSDLSGS 60
           MA+IS L+N   A  + S  +  SS   + F++FR       K+S+S+LS+R +     S
Sbjct: 1   MATISNLANLPRATCVDSKSSSSSSVLPRSFVNFRALN---AKLSSSQLSLRYNQRSIPS 60

Query: 61  LAVRCSQGDGNGIPTKRTVLHDLYEKEGQSPWYDNLCRPVTDLLPLISKGVRGVTSNPAI 120
           L+VRCS   GNG   KRT LHDLYEKEGQSPWYDNLCRPVTDLLPLI++GVRGVTSNPAI
Sbjct: 61  LSVRCSVSGGNGTAGKRTTLHDLYEKEGQSPWYDNLCRPVTDLLPLIARGVRGVTSNPAI 120

Query: 121 FQKAISSSNAYNDQFRELVQSGKDIESAYWELVVKDIQDACKLFEPIYDQTDGGDGYVSV 180
           FQKAIS+SNAYNDQFR LV+SGKDIESAYWELVVKDIQDACKLFEPIYDQT+G DGYVSV
Sbjct: 121 FQKAISTSNAYNDQFRTLVESGKDIESAYWELVVKDIQDACKLFEPIYDQTEGADGYVSV 180

Query: 181 EVSPKLADDTEGTVEAAKWLHKVVSRPNVYIKIPAPAACIPSIRDTIANGISVNVTLIFS 240
           EVSP+LADDT+GTVEAAK+L KVV+R NVYIKIPA A CIPSIRD IA GISVNVTLIFS
Sbjct: 181 EVSPRLADDTQGTVEAAKYLSKVVNRRNVYIKIPATAPCIPSIRDVIAAGISVNVTLIFS 240

Query: 241 VARYEAVIDAYLDGLEASGLSDLSRVTSVASFFVSRVDTLIDKLLEKIGTPEALDLRGKA 300
           +ARYEAVIDAYLDGLEASGL DLSRVTSVASFFVSRVDTL+DK+LE+IGTPEALDLRGKA
Sbjct: 241 IARYEAVIDAYLDGLEASGLDDLSRVTSVASFFVSRVDTLMDKMLEQIGTPEALDLRGKA 300

Query: 301 AVAQAALAYQLYQKKFSGPRWEALVKKGAKKQRLLWASTSVKNPAYSDTLYVAPLIGPDT 360
           AVAQAALAY+LYQ+KFSGPRWEALVKKGAKKQRLLWASTSVKNPAYSDTLYVAPLIGPDT
Sbjct: 301 AVAQAALAYKLYQQKFSGPRWEALVKKGAKKQRLLWASTSVKNPAYSDTLYVAPLIGPDT 360

Query: 361 VSTMPDQALEAFVDHGTVSRTIDSNVSEAEGIYSALEKLGIDWNEVGNQLEVEGVDSFKK 420
           VSTMPDQALEAF DHG V RTID+NVSEAEGIYSALEKLGIDWN+VG QLE EGVDSFKK
Sbjct: 361 VSTMPDQALEAFADHGIVKRTIDANVSEAEGIYSALEKLGIDWNKVGEQLEDEGVDSFKK 420

Query: 421 SFDSLLNTLQDKANSLKL 438
           SF+SLL TLQDKAN+LKL
Sbjct: 421 SFESLLGTLQDKANTLKL 435

BLAST of Sgr015458 vs. TAIR 10
Match: AT5G13410.1 (FKBP-like peptidyl-prolyl cis-trans isomerase family protein )

HSP 1 Score: 226.9 bits (577), Expect = 6.9e-59
Identity = 118/160 (73.75%), Postives = 128/160 (80.00%), Query Frame = 0

Query: 522 DRRALVLSSFGVLAGALLKVADDG-LAVASQFADMPALRGKDYGKTKMKYLDYTETESGL 581
           DRR L++SS G+L GAL   + DG  A ASQFADMPAL+GKDYGKTKMKY DYTET+SGL
Sbjct: 60  DRRKLLVSSVGLLIGALSYDSKDGDFASASQFADMPALKGKDYGKTKMKYPDYTETQSGL 119

Query: 582 QYKDLRVGEGPSPKMGDTVVVDWDGYTIGYYGRIFEARNKTKGGSFEGDDKDFFKFRLGF 641
           QYKDLRVG GP  K GD VVVDWDGYTIGYYGRIFEARNKTKGGSFEGDDK+FFKF LG 
Sbjct: 120 QYKDLRVGTGPIAKKGDKVVVDWDGYTIGYYGRIFEARNKTKGGSFEGDDKEFFKFTLGS 179

Query: 642 QEVIQAFEEAVSGMALGGIRR-GCPFQTRYHDQSHRHTFP 680
            EVI AFEEAVSGMALGGIRR   P +  Y D  +  + P
Sbjct: 180 NEVIPAFEEAVSGMALGGIRRIIVPPELGYPDNDYNKSGP 219

BLAST of Sgr015458 vs. TAIR 10
Match: AT2G43560.1 (FKBP-like peptidyl-prolyl cis-trans isomerase family protein )

HSP 1 Score: 56.6 bits (135), Expect = 1.2e-07
Identity = 47/153 (30.72%), Postives = 75/153 (49.02%), Query Frame = 0

Query: 511 DSTEGCCRL--VLDRRALVLSSFGVLAGALLKVADDGLAVASQFADMPALRGKDYGKTKM 570
           ++ E  C++  +  RR  +L   GV +G L   +    A      D P L   +  K ++
Sbjct: 39  ETREQSCKISNLSSRREAMLLVLGV-SGGLSMSSLAAYAAGLPPEDKPRLCEAECEK-EL 98

Query: 571 KYLDYTETESGLQYKDLRVGEGPSPKMGDTVVVDWDGYTIGYYGRIFEARNKTKGGSFEG 630
           + +    TESGLQYKD++VG GPSP +G  V  ++        G+IF++ +  KG     
Sbjct: 99  ENVPMVTTESGLQYKDIKVGRGPSPPVGFQVAANYVAMVPS--GQIFDS-SLEKGLP--- 158

Query: 631 DDKDFFKFRLGFQEVIQAFEEAVSGMALGGIRR 662
                + FR+G  +VI+  +E +  M  GG RR
Sbjct: 159 -----YLFRVGSGQVIKGLDEGILSMKAGGKRR 178

BLAST of Sgr015458 vs. TAIR 10
Match: AT4G19830.1 (FKBP-like peptidyl-prolyl cis-trans isomerase family protein )

HSP 1 Score: 48.1 bits (113), Expect = 4.4e-05
Identity = 32/96 (33.33%), Postives = 47/96 (48.96%), Query Frame = 0

Query: 572 DYTE--TESGLQYKDLRVGEGPSPKMGDTVVVDWDGYTIGYYGRIFEARNKTKGGSFEGD 631
           D++E     G++  DLR+G+G  P  GD +        I YYGR+   +      +++  
Sbjct: 79  DFSEIPNSGGVKALDLRIGDGDVPIEGDQI-------EIHYYGRLAAKQGWRFDSTYDHK 138

Query: 632 DKDF----FKFRLGFQEVIQAFEEAVSGMALGGIRR 662
           D +     F F LG  +VI   E AV  M +GGIRR
Sbjct: 139 DSNGEAVPFTFVLGSSKVIPGIETAVRSMKVGGIRR 167

BLAST of Sgr015458 vs. TAIR 10
Match: AT3G60370.1 (FKBP-like peptidyl-prolyl cis-trans isomerase family protein )

HSP 1 Score: 44.3 bits (103), Expect = 6.3e-04
Identity = 26/90 (28.89%), Postives = 40/90 (44.44%), Query Frame = 0

Query: 572 DYTETESGLQYKDLRVGEGPSPKMGDTVVVDWDGYTIGYYGRIFEARNKTKGGSFEGDDK 631
           +Y + +SGL Y+D  VG+G  PK G  V   + GY         E+  +      +G   
Sbjct: 114 NYIKADSGLIYRDFNVGQGDFPKDGQQVTFHYIGYN--------ESGRRIDSTYIQGSPA 173

Query: 632 DFFKFRLGFQEVIQAFEEAVSGMALGGIRR 662
              + R+G   ++  FE  +  M  GG RR
Sbjct: 174 ---RIRMGTNALVPGFEMGIRDMKPGGRRR 192

The following BLAST results are available for this feature:
Match NameE-valueIdentityDescription
RXH71692.11.5e-27373.83hypothetical protein DVH24_025193 [Malus domestica][more]
OWM76273.12.5e-26073.04hypothetical protein CDL15_Pgr009919 [Punica granatum][more]
KAF9689033.12.0e-25470.88hypothetical protein SADUNF_Sadunf01G0049800 [Salix dunnii][more]
KAF3968918.15.5e-25271.45hypothetical protein CMV_007237 [Castanea mollissima][more]
RVW78042.18.0e-25166.44Peptidyl-prolyl cis-trans isomerase FKBP19, chloroplastic [Vitis vinifera][more]
Match NameE-valueIdentityDescription
A8KYS57.6e-8751.40Transaldolase OS=Frankia sp. (strain EAN1pec) OX=298653 GN=tal PE=3 SV=1[more]
A9WT401.2e-8450.42Transaldolase OS=Renibacterium salmoninarum (strain ATCC 33209 / DSM 20767 / JCM... [more]
Q2JCG86.0e-8450.00Transaldolase OS=Frankia casuarinae (strain DSM 45818 / CECT 9043 / CcI3) OX=106... [more]
A0LTY81.0e-8351.30Transaldolase OS=Acidothermus cellulolyticus (strain ATCC 43068 / 11B) OX=351607... [more]
Q0RH181.8e-8348.42Transaldolase OS=Frankia alni (strain ACN14a) OX=326424 GN=tal PE=3 SV=1[more]
Match NameE-valueIdentityDescription
A0A498HP667.2e-27473.83Peptidylprolyl isomerase OS=Malus domestica OX=3750 GN=DVH24_025193 PE=3 SV=1[more]
A0A218WUC51.2e-26073.04Peptidylprolyl isomerase OS=Punica granatum OX=22663 GN=CDL15_Pgr009919 PE=3 SV=... [more]
A0A438H0Q83.9e-25166.44Peptidylprolyl isomerase OS=Vitis vinifera OX=29760 GN=FKBP19_0 PE=3 SV=1[more]
A0A7J0FMH71.2e-24770.68Peptidylprolyl isomerase OS=Actinidia rufa OX=165716 GN=Acr_13g0013140 PE=3 SV=1[more]
A0A7J6WL552.9e-24669.74Peptidylprolyl isomerase OS=Thalictrum thalictroides OX=46969 GN=FRX31_012718 PE... [more]
Match NameE-valueIdentityDescription
AT5G13420.12.3e-19581.28Aldolase-type TIM barrel family protein [more]
AT5G13410.16.9e-5973.75FKBP-like peptidyl-prolyl cis-trans isomerase family protein [more]
AT2G43560.11.2e-0730.72FKBP-like peptidyl-prolyl cis-trans isomerase family protein [more]
AT4G19830.14.4e-0533.33FKBP-like peptidyl-prolyl cis-trans isomerase family protein [more]
AT3G60370.16.3e-0428.89FKBP-like peptidyl-prolyl cis-trans isomerase family protein [more]
InterPro
Analysis Name: InterPro Annotations of Monk fruit (Qingpiguo) v1
Date Performed: 2022-08-01
IPR TermIPR DescriptionSourceSource TermSource DescriptionAlignment
IPR013785Aldolase-type TIM barrelGENE3D3.20.20.70Aldolase class Icoord: 77..432
e-value: 4.0E-145
score: 485.6
IPR004732Transaldolase type 2TIGRFAMTIGR00876TIGR00876coord: 89..426
e-value: 3.0E-99
score: 330.6
IPR004732Transaldolase type 2HAMAPMF_00493Transaldolase_2coord: 79..438
score: 136.616196
IPR004732Transaldolase type 2CDDcd00955Transaldolase_likecoord: 89..423
e-value: 0.0
score: 529.203
IPR001585Transaldolase/Fructose-6-phosphate aldolasePFAMPF00923TAL_FSAcoord: 105..427
e-value: 1.7E-76
score: 257.3
IPR001585Transaldolase/Fructose-6-phosphate aldolasePANTHERPTHR10683TRANSALDOLASEcoord: 1..438
IPR001179FKBP-type peptidyl-prolyl cis-trans isomerase domainPFAMPF00254FKBP_Ccoord: 591..675
e-value: 1.6E-8
score: 34.7
IPR001179FKBP-type peptidyl-prolyl cis-trans isomerase domainPROSITEPS50059FKBP_PPIASEcoord: 596..657
score: 10.310359
NoneNo IPR availableGENE3D3.10.50.40coord: 559..683
e-value: 1.7E-18
score: 68.8
NoneNo IPR availableMOBIDB_LITEmobidb-litedisorder_predictioncoord: 1..25
NoneNo IPR availablePANTHERPTHR10683:SF37BNAA08G02750D PROTEINcoord: 1..438
NoneNo IPR availableSUPERFAMILY54534FKBP-likecoord: 548..673
NoneNo IPR availableSUPERFAMILY51569Aldolasecoord: 85..431
IPR018225Transaldolase, active sitePROSITEPS01054TRANSALDOLASE_1coord: 112..120

Relationships

The following mRNA feature(s) are a part of this gene:

Feature NameUnique NameType
Sgr015458.1Sgr015458.1mRNA


GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
Category Term Accession Term Name
biological_process GO:0005975 carbohydrate metabolic process
biological_process GO:0009809 lignin biosynthetic process
biological_process GO:0006098 pentose-phosphate shunt
biological_process GO:0000413 protein peptidyl-prolyl isomerization
biological_process GO:0009749 response to glucose
cellular_component GO:0009507 chloroplast
cellular_component GO:0005737 cytoplasm
molecular_function GO:0003755 peptidyl-prolyl cis-trans isomerase activity
molecular_function GO:0004801 transaldolase activity
molecular_function GO:0003824 catalytic activity