Lsi06G002020 (gene) Bottle gourd (USVL1VR-Ls)

NameLsi06G002020
Typegene
OrganismLagenaria siceraria (Bottle gourd (USVL1VR-Ls))
DescriptionARM repeat superfamily protein
Locationchr06 : 2224477 .. 2242515 (+)
The following sequences are available for this feature:

Gene sequence (with intron)

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

mRNA sequence

ATGGCAAAGGTTTTCCTCAGTATGTTATTGAAGGTTACTTTTCTTGATCTACCATTGTGGCATAGGATTCTTGTTCTTGAAAATTTGAGGGGTTTTTGCATGGAGGCTAGAACTTTGCAGGTTCTTTTCCAGAACTTTGATATGCATCCGAAAAACACAAATGTTGTTGAAGGCATCGTTAAATCCCTCGCTAGAGTTGTCTCCAATGTACAGGTCCACGAGACGAGTGAAGAAAGCTTGGCAGCTGTCGCAGGAATGTTTAGTAGCAAGGCCAAAGAAGAATCAACCTATAAGGAGCTTGATGTAATTAGAGGTTAA

Coding sequence (CDS)

ATGGCAAAGGTTTTCCTCAGTATGTTATTGAAGGTTACTTTTCTTGATCTACCATTGTGGCATAGGATTCTTGTTCTTGAAAATTTGAGGGGTTTTTGCATGGAGGCTAGAACTTTGCAGGTTCTTTTCCAGAACTTTGATATGCATCCGAAAAACACAAATGTTGTTGAAGGCATCGTTAAATCCCTCGCTAGAGTTGTCTCCAATGTACAGGTCCACGAGACGAGTGAAGAAAGCTTGGCAGCTGTCGCAGGAATGTTTAGTAGCAAGGCCAAAGAAGAATCAACCTATAAGGAGCTTGATGTAATTAGAGGTTAA

Protein sequence

MAKVFLSMLLKVTFLDLPLWHRILVLENLRGFCMEARTLQVLFQNFDMHPKNTNVVEGIVKSLARVVSNVQVHETSEESLAAVAGMFSSKAKEESTYKELDVIRG
BLAST of Lsi06G002020 vs. TrEMBL
Match: A0A0B2Q805_GLYSO (Protein MON2 like OS=Glycine soja GN=glysoja_012149 PE=4 SV=1)

HSP 1 Score: 157.1 bits (396), Expect = 1.1e-35
Identity = 81/90 (90.00%), Postives = 88/90 (97.78%), Query Frame = 1

Query: 3   KVFLSMLLKVTFLDLPLWHRILVLENLRGFCMEARTLQVLFQNFDMHPKNTNVVEGIVKS 62
           +VFLSMLLKVTFLDLPLWHRILVLE LRGFC+EARTL++LFQNFDMHPKNTNVVEG+VK+
Sbjct: 334 EVFLSMLLKVTFLDLPLWHRILVLEILRGFCVEARTLRILFQNFDMHPKNTNVVEGMVKA 393

Query: 63  LARVVSNVQVHETSEESLAAVAGMFSSKAK 93
           LARVVSNVQV E+SEESLAAVAGMFSSKAK
Sbjct: 394 LARVVSNVQVQESSEESLAAVAGMFSSKAK 423

BLAST of Lsi06G002020 vs. TrEMBL
Match: K7LJQ0_SOYBN (Uncharacterized protein OS=Glycine max PE=4 SV=1)

HSP 1 Score: 157.1 bits (396), Expect = 1.1e-35
Identity = 81/90 (90.00%), Postives = 88/90 (97.78%), Query Frame = 1

Query: 3   KVFLSMLLKVTFLDLPLWHRILVLENLRGFCMEARTLQVLFQNFDMHPKNTNVVEGIVKS 62
           +VFLSMLLKVTFLDLPLWHRILVLE LRGFC+EARTL++LFQNFDMHPKNTNVVEG+VK+
Sbjct: 334 EVFLSMLLKVTFLDLPLWHRILVLEILRGFCVEARTLRILFQNFDMHPKNTNVVEGMVKA 393

Query: 63  LARVVSNVQVHETSEESLAAVAGMFSSKAK 93
           LARVVSNVQV E+SEESLAAVAGMFSSKAK
Sbjct: 394 LARVVSNVQVQESSEESLAAVAGMFSSKAK 423

BLAST of Lsi06G002020 vs. TrEMBL
Match: K7LJP9_SOYBN (Uncharacterized protein OS=Glycine max GN=GLYMA_10G159500 PE=4 SV=1)

HSP 1 Score: 157.1 bits (396), Expect = 1.1e-35
Identity = 81/90 (90.00%), Postives = 88/90 (97.78%), Query Frame = 1

Query: 3   KVFLSMLLKVTFLDLPLWHRILVLENLRGFCMEARTLQVLFQNFDMHPKNTNVVEGIVKS 62
           +VFLSMLLKVTFLDLPLWHRILVLE LRGFC+EARTL++LFQNFDMHPKNTNVVEG+VK+
Sbjct: 334 EVFLSMLLKVTFLDLPLWHRILVLEILRGFCVEARTLRILFQNFDMHPKNTNVVEGMVKA 393

Query: 63  LARVVSNVQVHETSEESLAAVAGMFSSKAK 93
           LARVVSNVQV E+SEESLAAVAGMFSSKAK
Sbjct: 394 LARVVSNVQVQESSEESLAAVAGMFSSKAK 423

BLAST of Lsi06G002020 vs. TrEMBL
Match: I1LBH5_SOYBN (Uncharacterized protein OS=Glycine max GN=GLYMA_10G159500 PE=4 SV=2)

HSP 1 Score: 157.1 bits (396), Expect = 1.1e-35
Identity = 81/90 (90.00%), Postives = 88/90 (97.78%), Query Frame = 1

Query: 3   KVFLSMLLKVTFLDLPLWHRILVLENLRGFCMEARTLQVLFQNFDMHPKNTNVVEGIVKS 62
           +VFLSMLLKVTFLDLPLWHRILVLE LRGFC+EARTL++LFQNFDMHPKNTNVVEG+VK+
Sbjct: 334 EVFLSMLLKVTFLDLPLWHRILVLEILRGFCVEARTLRILFQNFDMHPKNTNVVEGMVKA 393

Query: 63  LARVVSNVQVHETSEESLAAVAGMFSSKAK 93
           LARVVSNVQV E+SEESLAAVAGMFSSKAK
Sbjct: 394 LARVVSNVQVQESSEESLAAVAGMFSSKAK 423

BLAST of Lsi06G002020 vs. TrEMBL
Match: K7LJP8_SOYBN (Uncharacterized protein OS=Glycine max GN=GLYMA_10G159500 PE=4 SV=1)

HSP 1 Score: 157.1 bits (396), Expect = 1.1e-35
Identity = 81/90 (90.00%), Postives = 88/90 (97.78%), Query Frame = 1

Query: 3   KVFLSMLLKVTFLDLPLWHRILVLENLRGFCMEARTLQVLFQNFDMHPKNTNVVEGIVKS 62
           +VFLSMLLKVTFLDLPLWHRILVLE LRGFC+EARTL++LFQNFDMHPKNTNVVEG+VK+
Sbjct: 334 EVFLSMLLKVTFLDLPLWHRILVLEILRGFCVEARTLRILFQNFDMHPKNTNVVEGMVKA 393

Query: 63  LARVVSNVQVHETSEESLAAVAGMFSSKAK 93
           LARVVSNVQV E+SEESLAAVAGMFSSKAK
Sbjct: 394 LARVVSNVQVQESSEESLAAVAGMFSSKAK 423

BLAST of Lsi06G002020 vs. TAIR10
Match: AT5G27970.2 (AT5G27970.2 ARM repeat superfamily protein)

HSP 1 Score: 139.8 bits (351), Expect = 9.5e-34
Identity = 76/104 (73.08%), Postives = 85/104 (81.73%), Query Frame = 1

Query: 3   KVFLSMLLKVTFLDLPLWHRILVLENLRGFCMEARTLQVLFQNFDM-------------- 62
           +VFLSML+K TFLDLPLWHRILVLE LRGFC+EARTL++LFQNFDM              
Sbjct: 332 EVFLSMLVKATFLDLPLWHRILVLEILRGFCVEARTLRILFQNFDMKLPSRSFFTLQLKK 391

Query: 63  HPKNTNVVEGIVKSLARVVSNVQVHETSEESLAAVAGMFSSKAK 93
           HPKNTNVVE +VK+LARVVS++Q  ETSEESLAAVAGMFSSKAK
Sbjct: 392 HPKNTNVVESMVKALARVVSSIQFQETSEESLAAVAGMFSSKAK 435

BLAST of Lsi06G002020 vs. NCBI nr
Match: gi|778662699|ref|XP_011659941.1| (PREDICTED: protein MON2 homolog isoform X1 [Cucumis sativus])

HSP 1 Score: 171.0 bits (432), Expect = 1.1e-39
Identity = 89/90 (98.89%), Postives = 90/90 (100.00%), Query Frame = 1

Query: 3   KVFLSMLLKVTFLDLPLWHRILVLENLRGFCMEARTLQVLFQNFDMHPKNTNVVEGIVKS 62
           +VFLSMLLKVTFLDLPLWHRILVLENLRGFCMEARTLQVLFQNFDMHPKNTNVVEGIVKS
Sbjct: 334 EVFLSMLLKVTFLDLPLWHRILVLENLRGFCMEARTLQVLFQNFDMHPKNTNVVEGIVKS 393

Query: 63  LARVVSNVQVHETSEESLAAVAGMFSSKAK 93
           LARVVSNVQVHETSEESLAAVAGMFSSKAK
Sbjct: 394 LARVVSNVQVHETSEESLAAVAGMFSSKAK 423

BLAST of Lsi06G002020 vs. NCBI nr
Match: gi|778662702|ref|XP_011659942.1| (PREDICTED: protein MON2 homolog isoform X2 [Cucumis sativus])

HSP 1 Score: 171.0 bits (432), Expect = 1.1e-39
Identity = 89/90 (98.89%), Postives = 90/90 (100.00%), Query Frame = 1

Query: 3   KVFLSMLLKVTFLDLPLWHRILVLENLRGFCMEARTLQVLFQNFDMHPKNTNVVEGIVKS 62
           +VFLSMLLKVTFLDLPLWHRILVLENLRGFCMEARTLQVLFQNFDMHPKNTNVVEGIVKS
Sbjct: 334 EVFLSMLLKVTFLDLPLWHRILVLENLRGFCMEARTLQVLFQNFDMHPKNTNVVEGIVKS 393

Query: 63  LARVVSNVQVHETSEESLAAVAGMFSSKAK 93
           LARVVSNVQVHETSEESLAAVAGMFSSKAK
Sbjct: 394 LARVVSNVQVHETSEESLAAVAGMFSSKAK 423

BLAST of Lsi06G002020 vs. NCBI nr
Match: gi|659099747|ref|XP_008450757.1| (PREDICTED: LOW QUALITY PROTEIN: protein MON2 homolog [Cucumis melo])

HSP 1 Score: 169.9 bits (429), Expect = 2.4e-39
Identity = 88/90 (97.78%), Postives = 90/90 (100.00%), Query Frame = 1

Query: 3   KVFLSMLLKVTFLDLPLWHRILVLENLRGFCMEARTLQVLFQNFDMHPKNTNVVEGIVKS 62
           +VFLSMLLKVTFLDLPLWHRILVLENLRGFCMEARTLQVLFQNFDMHPKNTNVVEGIVKS
Sbjct: 334 EVFLSMLLKVTFLDLPLWHRILVLENLRGFCMEARTLQVLFQNFDMHPKNTNVVEGIVKS 393

Query: 63  LARVVSNVQVHETSEESLAAVAGMFSSKAK 93
           LARVVSNVQVHETSEE+LAAVAGMFSSKAK
Sbjct: 394 LARVVSNVQVHETSEENLAAVAGMFSSKAK 423

BLAST of Lsi06G002020 vs. NCBI nr
Match: gi|947085312|gb|KRH34033.1| (hypothetical protein GLYMA_10G159500 [Glycine max])

HSP 1 Score: 157.1 bits (396), Expect = 1.6e-35
Identity = 81/90 (90.00%), Postives = 88/90 (97.78%), Query Frame = 1

Query: 3   KVFLSMLLKVTFLDLPLWHRILVLENLRGFCMEARTLQVLFQNFDMHPKNTNVVEGIVKS 62
           +VFLSMLLKVTFLDLPLWHRILVLE LRGFC+EARTL++LFQNFDMHPKNTNVVEG+VK+
Sbjct: 334 EVFLSMLLKVTFLDLPLWHRILVLEILRGFCVEARTLRILFQNFDMHPKNTNVVEGMVKA 393

Query: 63  LARVVSNVQVHETSEESLAAVAGMFSSKAK 93
           LARVVSNVQV E+SEESLAAVAGMFSSKAK
Sbjct: 394 LARVVSNVQVQESSEESLAAVAGMFSSKAK 423

BLAST of Lsi06G002020 vs. NCBI nr
Match: gi|571483243|ref|XP_006589175.1| (PREDICTED: protein MON2 homolog isoform X2 [Glycine max])

HSP 1 Score: 157.1 bits (396), Expect = 1.6e-35
Identity = 81/90 (90.00%), Postives = 88/90 (97.78%), Query Frame = 1

Query: 3   KVFLSMLLKVTFLDLPLWHRILVLENLRGFCMEARTLQVLFQNFDMHPKNTNVVEGIVKS 62
           +VFLSMLLKVTFLDLPLWHRILVLE LRGFC+EARTL++LFQNFDMHPKNTNVVEG+VK+
Sbjct: 334 EVFLSMLLKVTFLDLPLWHRILVLEILRGFCVEARTLRILFQNFDMHPKNTNVVEGMVKA 393

Query: 63  LARVVSNVQVHETSEESLAAVAGMFSSKAK 93
           LARVVSNVQV E+SEESLAAVAGMFSSKAK
Sbjct: 394 LARVVSNVQVQESSEESLAAVAGMFSSKAK 423

The following BLAST results are available for this feature:
Match NameE-valueIdentityDescription
Match NameE-valueIdentityDescription
A0A0B2Q805_GLYSO1.1e-3590.00Protein MON2 like OS=Glycine soja GN=glysoja_012149 PE=4 SV=1[more]
K7LJQ0_SOYBN1.1e-3590.00Uncharacterized protein OS=Glycine max PE=4 SV=1[more]
K7LJP9_SOYBN1.1e-3590.00Uncharacterized protein OS=Glycine max GN=GLYMA_10G159500 PE=4 SV=1[more]
I1LBH5_SOYBN1.1e-3590.00Uncharacterized protein OS=Glycine max GN=GLYMA_10G159500 PE=4 SV=2[more]
K7LJP8_SOYBN1.1e-3590.00Uncharacterized protein OS=Glycine max GN=GLYMA_10G159500 PE=4 SV=1[more]
Match NameE-valueIdentityDescription
AT5G27970.29.5e-3473.08 ARM repeat superfamily protein[more]
Match NameE-valueIdentityDescription
gi|778662699|ref|XP_011659941.1|1.1e-3998.89PREDICTED: protein MON2 homolog isoform X1 [Cucumis sativus][more]
gi|778662702|ref|XP_011659942.1|1.1e-3998.89PREDICTED: protein MON2 homolog isoform X2 [Cucumis sativus][more]
gi|659099747|ref|XP_008450757.1|2.4e-3997.78PREDICTED: LOW QUALITY PROTEIN: protein MON2 homolog [Cucumis melo][more]
gi|947085312|gb|KRH34033.1|1.6e-3590.00hypothetical protein GLYMA_10G159500 [Glycine max][more]
gi|571483243|ref|XP_006589175.1|1.6e-3590.00PREDICTED: protein MON2 homolog isoform X2 [Glycine max][more]
The following terms have been associated with this gene:
Vocabulary: INTERPRO
TermDefinition
GO Assignments
This gene is annotated with the following GO terms.
Category Term Accession Term Name
biological_process GO:0015031 protein transport
cellular_component GO:0005575 cellular_component
molecular_function GO:0003674 molecular_function
molecular_function GO:0005488 binding

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

Feature NameUnique NameType
Lsi06G002020.1Lsi06G002020.1mRNA


Analysis Name: InterPro Annotations of Lagenaria siceraria
Date Performed: 2017-09-18
IPR TermIPR DescriptionSourceSource TermSource DescriptionAlignment
NoneNo IPR availablePANTHERPTHR10663GUANYL-NUCLEOTIDE EXCHANGE FACTORcoord: 4..67
score: 1.4
NoneNo IPR availablePANTHERPTHR10663:SF114PROTEIN MON2 HOMOLOGcoord: 4..67
score: 1.4

The following gene(s) are orthologous to this gene:
GeneOrthologueOrganismBlock
Lsi06G002020Csa1G574770Cucumber (Chinese Long) v2culsiB058
Lsi06G002020Cla97C03G066590Watermelon (97103) v2lsiwmbB365
Lsi06G002020Bhi02G001651Wax gourdlsiwgoB517
The following gene(s) are paralogous to this gene:

None