Lsi01G020450 (gene) Bottle gourd (USVL1VR-Ls)

NameLsi01G020450
Typegene
OrganismLagenaria siceraria (Bottle gourd (USVL1VR-Ls))
DescriptionProtein kinase superfamily protein
Locationchr01 : 28248718 .. 28264637 (-)
The following sequences are available for this feature:

Gene sequence (with intron)

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

mRNA sequence

AAAAAAACAACAACGAAGAAGGTCATATTCATAAAAGAAGGAAAATAGAGAAAAAGGAAAAAAGAAAAGTGAAGTAAAAAAGGGGAAAAAAACCATCTCCATCTTCTCAGCCGCGGACCCACTCTTTTGTCGGTCTTCTTCTCCGGCGACCATCTGACCGCGCGTAGATGGTGGCGTTCACTCACTGTTCGCTGGAGAACCTTAAACCTCGCTATCCACGCGTTTACGACGTTACCCACACAGCAAACCCACACAATTGAGATGCGTTTCCTCCTCGGGCCGCGAGCGGCTAGCCCTCACCGGCGACGACCCATGCAGGTAGACGCCGGGCGTTCTTCTCCGGCGACCCATTTACTCACCAGCGAGTTTTGACCCACGAATCTGACTTGCATCGCGAGCACGACTTCGAACGGCTTCGCCTAAGCCTTCACAGCATCGTTTCCCTCCGTTTCGGCGGCGTCGACCTCACTGTCTGTTTGCCCTCTAATCAGTTTATCCATTACGTTTAAGGTTGAGATCCGCAAGTTCGGACGTTTTCGAACACCAACCGGTTTTGGACTAATTCAGAGTGATCGGCTAAGGTTTATGGTGGATTTTGGGCTTCTAGGAAATTGATGTTTGTTCAAGGAAGTGGATCTTCAGATTGAGAATTATAGGTTGTCGATCGAGGATCAAATGGAAGTTTTGAAAGCAGTGAAGTTTGACATTCTGGCACAAGACATCAATAGATGTTTCGTTTAGGTCATGATAGTTTATCCTAGAAATAGTATGTAATAAGTTGCGTCTGCTGAAGTGTGTAAGTTGTAGAAGTTTCTAATTGTTATAGTTTTCGCATTATTGTTATACATATATCAGCTGTATTGGAAAATATGGGCCGTTACATTTTGTGTTTTTGGGTATTCTAGTTTTTCTTGAGTTGGACCTCAACTGATGTTCAACTGATCACATCCTCGAAATTAGAATTTCTCATGGTTGCCGTTTGGATGAGGTGGATTTGATGCTTTCCATTGGGGATTTTTCTTTCCGCTTTACATTGGTTGGAACTGGATTGATTATCTTCCTCAAGGTCATTTCCATTCTCACTCTTTCTGGAAAGTTTGTTTATTGGGTTCCTCTAGTTTTATGTGAAGAGCTCGTTGATCTCATTTCACTGGGGATCTGGATTTTCTCATTCTTTTTAAGTTTTGAGATTTTTTTAAGTTGTCCATGCTACACATGCATGGCAACGAATCATAGGAGGAAACTTTGGACTCTTGTTGGGAGAAGGCTATATATTCTCTAAGTAATACAGAATTGTTTAAAGGCCAGATGTTATTTCTTCTACTATGCCATTGAGACTGTTGGACGAAGAGCTGGGTTTTGTTTTGGATATTTGCTAAAGAAATTTGTAGGATTGGATTTCCTGTTGAGACTCTGAGGTGGGAGTATGGGCTGCATTTGCTCTAAGGGAATTCCAGCAAATGACTATGTTGCTGAGAATCATTCCAAAGATAGGCATTTGAAGTCTAATAGATCTTCCAGACTTGGTTCTTCATTGAAGAAAGAAGAACCTGAGTTACATGCTGATGGAGGGCAAAGTGACGCAATGGTGCGATTGATATCGAAGGAACCTGGGGAAGAGAATGCTGGATCAACACCTGAATCAGATGGCGCTGAGAAGGCAACACCCTTTGAAAAAGCAGCCAGTGCTAAGCCACTGCAGCAAGGGCGGCCAACTATGGAGGATGGAGCAAAGAGAGTTGGAGTACATAATAATAAAGCAGCACCTGGAATAATCAATGTTGTTAATGGGGAAAAGGGGGCTTTGGTTATTGCTGGATGGCCTTCTTGGCTGACATCTGTGGCTGGAGAAGCAATCAATGGATGGGTTCCTAGAAAGGCAGACTCTTTTCAGAAGTTGGATAAGATTGGACAAGGAACGTACAGCAGTGTTTACAGGGCCCGTGATATTGAGACAAACAAGATTGTTGCATTGAAGAAGGGTTGGCATCAACCTCAGGGATCAAGTTCACTGAAGCACAGCAATGATGATGATACAAGAAGACTGCACCTAGGAAAACCCACGGGGAAGGTTAGAAATGCTCTCTTCTCCCCTCTCCCCTCTCTTCCTTCTTCTCATTCACTCCTTCCTCATCTTTCCGGTAACGCTCTGGCCTTTCTTCCCCTTTCCGGCGACTACAGGGAAAAGTCAGACGATGCTTCAAATTCCTTGGAAGGGGAAAATCTAGTTCCAATGTTCCAGATAGACTCCCAGGTCAATGTCACTTTTGTTTCCTGTGCTCGAGCACAAGTCCCTGATTTGCCCTTATCTAAGTCCAATCGCAAATCTTCAAAGATTATTCCCACTTCACGAGACTTTAGGCTTTCCTCTCTCTCTATTCCAAATTCAAAGAATCGATTTATTCAGGGTGTTCCTCAGCAAGTTAGCTCTCATTGTCACTCAATTCAAAATGATACAGATGTTGATTTGGATGTAAATGTTAGCATTGAAGAGCGCAAGCTAAACTCTTTGGAACTAGCCTTTGAGGAACCTTGGAGGAGAACTTTGGAGAAGATCTTGTTGACTTGTTTCACTGTTGAGCTGAAATGGAGGCTAGTCAGTCTAATATTTTCCCGAAAAAAGCAGCCTCTTACAAGCCGTGTGGTAACTTTGTGGTATCGGCCACCTGAGCTTTTGCTTGGTGCAACGGACTATGGAGTTTCTGTAGATTTGTGGAGTGCTGGTTGCATTCTTGCAGAATTGTATGCTGGGAAGCCTATCATGCCTGGAAGAACAGAGGTATTATCTTATCTAATGAACTTTCTTGCATATTAA

Coding sequence (CDS)

ATGGGCTGCATTTGCTCTAAGGGAATTCCAGCAAATGACTATGTTGCTGAGAATCATTCCAAAGATAGGCATTTGAAGTCTAATAGATCTTCCAGACTTGGTTCTTCATTGAAGAAAGAAGAACCTGAGTTACATGCTGATGGAGGGCAAAGTGACGCAATGGTGCGATTGATATCGAAGGAACCTGGGGAAGAGAATGCTGGATCAACACCTGAATCAGATGGCGCTGAGAAGGCAACACCCTTTGAAAAAGCAGCCAGTGCTAAGCCACTGCAGCAAGGGCGGCCAACTATGGAGGATGGAGCAAAGAGAGTTGGAGTACATAATAATAAAGCAGCACCTGGAATAATCAATGTTGTTAATGGGGAAAAGGGGGCTTTGGTTATTGCTGGATGGCCTTCTTGGCTGACATCTGTGGCTGGAGAAGCAATCAATGGATGGGTTCCTAGAAAGGCAGACTCTTTTCAGAAGTTGGATAAGATTGGACAAGGAACGTACAGCAGTGTTTACAGGGCCCGTGATATTGAGACAAACAAGATTGTTGCATTGAAGAAGGGTTGGCATCAACCTCAGGGATCAAGTTCACTGAAGCACAGCAATGATGATGATACAAGAAGACTGCACCTAGGAAAACCCACGGGGAAGGTTAGAAATGCTCTCTTCTCCCCTCTCCCCTCTCTTCCTTCTTCTCATTCACTCCTTCCTCATCTTTCCGGTAACGCTCTGGCCTTTCTTCCCCTTTCCGGCGACTACAGGGAAAAGTCAGACGATGCTTCAAATTCCTTGGAAGGGGAAAATCTAGTTCCAATGTTCCAGATAGACTCCCAGGTCAATGTCACTTTTGTTTCCTGTGCTCGAGCACAAGTCCCTGATTTGCCCTTATCTAAGTCCAATCGCAAATCTTCAAAGATTATTCCCACTTCACGAGACTTTAGGCTTTCCTCTCTCTCTATTCCAAATTCAAAGAATCGATTTATTCAGGGTGTTCCTCAGCAAGTTAGCTCTCATTGTCACTCAATTCAAAATGATACAGATGTTGATTTGGATGTAAATGTTAGCATTGAAGAGCGCAAGCTAAACTCTTTGGAACTAGCCTTTGAGGAACCTTGGAGGAGAACTTTGGAGAAGATCTTGTTGACTTGTTTCACTGTTGAGCTGAAATGGAGGCTAGTCAGTCTAATATTTTCCCGAAAAAAGCAGCCTCTTACAAGCCGTGTGGTAACTTTGTGGTATCGGCCACCTGAGCTTTTGCTTGGTGCAACGGACTATGGAGTTTCTGTAGATTTGTGGAGTGCTGGTTGCATTCTTGCAGAATTGTATGCTGGGAAGCCTATCATGCCTGGAAGAACAGAGGTATTATCTTATCTAATGAACTTTCTTGCATATTAA

Protein sequence

MGCICSKGIPANDYVAENHSKDRHLKSNRSSRLGSSLKKEEPELHADGGQSDAMVRLISKEPGEENAGSTPESDGAEKATPFEKAASAKPLQQGRPTMEDGAKRVGVHNNKAAPGIINVVNGEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKIGQGTYSSVYRARDIETNKIVALKKGWHQPQGSSSLKHSNDDDTRRLHLGKPTGKVRNALFSPLPSLPSSHSLLPHLSGNALAFLPLSGDYREKSDDASNSLEGENLVPMFQIDSQVNVTFVSCARAQVPDLPLSKSNRKSSKIIPTSRDFRLSSLSIPNSKNRFIQGVPQQVSSHCHSIQNDTDVDLDVNVSIEERKLNSLELAFEEPWRRTLEKILLTCFTVELKWRLVSLIFSRKKQPLTSRVVTLWYRPPELLLGATDYGVSVDLWSAGCILAELYAGKPIMPGRTEVLSYLMNFLAY
BLAST of Lsi01G020450 vs. Swiss-Prot
Match: Y1960_ARATH (Probable serine/threonine-protein kinase At1g09600 OS=Arabidopsis thaliana GN=At1g09600 PE=3 SV=1)

HSP 1 Score: 140.2 bits (352), Expect = 5.7e-32
Identity = 86/195 (44.10%), Postives = 116/195 (59.49%), Query Frame = 1

Query: 1   MGCICSKGI-PANDYVAENHS--KDRHLKSNRSSRLGSSLKKEEPELHADGGQSDAMVRL 60
           MGC C+KG  P ND V  ++S   + ++K  RS    +  KK++ +  +     D  V  
Sbjct: 1   MGCNCTKGTRPDNDNVDNSNSIVSNVNVKERRSKPKKTPKKKKKSK--SASSSKDNNVGF 60

Query: 61  ISKEPGEENAGST-------PESDGAEKATPFEKAASAKPLQQGRPTMEDGAKRVGVHNN 120
             +    + A  T        + D +EK    E+ +S    Q+    +E GA  +G    
Sbjct: 61  EERSNDNKEASLTLLIPIDAKKDDESEKKVNLERKSSRLVFQRRPTGIEVGANNIGTLQQ 120

Query: 121 KAAPGIINVVNGEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKIGQGTYSSVY 180
                I +V NGE+GA V+AGWPSWL SVAGEAINGW+PRKADSF+KL+KIGQGTYSSVY
Sbjct: 121 PKMTRICSVSNGERGAQVMAGWPSWLASVAGEAINGWIPRKADSFEKLEKIGQGTYSSVY 180

Query: 181 RARDIETNKIVALKK 186
           +ARD+ETN++VALKK
Sbjct: 181 KARDLETNQLVALKK 193

BLAST of Lsi01G020450 vs. Swiss-Prot
Match: Y1461_ARATH (Probable serine/threonine-protein kinase At1g54610 OS=Arabidopsis thaliana GN=At1g54610 PE=1 SV=1)

HSP 1 Score: 105.9 bits (263), Expect = 1.2e-21
Identity = 48/63 (76.19%), Postives = 54/63 (85.71%), Query Frame = 1

Query: 390 LVSLIFSRKKQPLTSRVVTLWYRPPELLLGATDYGVSVDLWSAGCILAELYAGKPIMPGR 449
           L ++     K+P+TSRVVTLWYR PELLLGATDYGV +DLWSAGCILAEL AG+PIMPGR
Sbjct: 263 LATIFDPNHKRPMTSRVVTLWYRAPELLLGATDYGVGIDLWSAGCILAELLAGRPIMPGR 322

Query: 450 TEV 453
           TEV
Sbjct: 323 TEV 325

BLAST of Lsi01G020450 vs. Swiss-Prot
Match: CDKC2_ARATH (Cyclin-dependent kinase C-2 OS=Arabidopsis thaliana GN=CDKC-2 PE=1 SV=2)

HSP 1 Score: 89.0 bits (219), Expect = 1.5e-16
Identity = 37/50 (74.00%), Postives = 44/50 (88.00%), Query Frame = 1

Query: 402 LTSRVVTLWYRPPELLLGATDYGVSVDLWSAGCILAELYAGKPIMPGRTE 452
           LT+RV+TLWYRPPELLLGAT YG ++D+WS GCI AEL  GKPI+PG+TE
Sbjct: 197 LTNRVITLWYRPPELLLGATKYGPAIDMWSVGCIFAELLNGKPILPGKTE 246

BLAST of Lsi01G020450 vs. Swiss-Prot
Match: CDKC1_ORYSJ (Cyclin-dependent kinase C-1 OS=Oryza sativa subsp. japonica GN=CDKC-1 PE=2 SV=1)

HSP 1 Score: 86.3 bits (212), Expect = 9.8e-16
Identity = 36/50 (72.00%), Postives = 43/50 (86.00%), Query Frame = 1

Query: 402 LTSRVVTLWYRPPELLLGATDYGVSVDLWSAGCILAELYAGKPIMPGRTE 452
           LT+RV+TLWYRPPELLLG+T YG +VD+WS GCI AEL  GKPI+PG+ E
Sbjct: 197 LTNRVITLWYRPPELLLGSTKYGPAVDMWSVGCIFAELLNGKPILPGKNE 246

BLAST of Lsi01G020450 vs. Swiss-Prot
Match: CDKC1_ARATH (Cyclin-dependent kinase C-1 OS=Arabidopsis thaliana GN=CDKC-1 PE=1 SV=1)

HSP 1 Score: 84.7 bits (208), Expect = 2.8e-15
Identity = 35/50 (70.00%), Postives = 42/50 (84.00%), Query Frame = 1

Query: 402 LTSRVVTLWYRPPELLLGATDYGVSVDLWSAGCILAELYAGKPIMPGRTE 452
           LT+RV+TLWYRPPELLLGAT YG ++D+WS GCI AEL   KPI+PG+ E
Sbjct: 197 LTNRVITLWYRPPELLLGATKYGPAIDMWSVGCIFAELLHAKPILPGKNE 246

BLAST of Lsi01G020450 vs. TrEMBL
Match: A0A0A0KQS4_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_5G247670 PE=4 SV=1)

HSP 1 Score: 268.5 bits (685), Expect = 1.5e-68
Identity = 134/161 (83.23%), Postives = 142/161 (88.20%), Query Frame = 1

Query: 1   MGCICSKGIPANDYVAENHSKDRHLKSNRSSRLGSSLKKEEPELHADGGQSDAMVRLISK 60
           MGCICSKGIPANDYVAENHSK+RHLKSNRSSR G+SL+KEE  LH+DGGQSDAM RLI  
Sbjct: 1   MGCICSKGIPANDYVAENHSKERHLKSNRSSRHGTSLRKEESVLHSDGGQSDAMARLILN 60

Query: 61  EPGEENAGSTPESDGAEKATPFEKAASAKPLQQGRPTMEDGAKRVGVHNNKAAPGIINVV 120
           +PGEENAGSTPESDGAEK T   K +SAKPL+Q RPTMEDG KRVGVHNN A P I  VV
Sbjct: 61  QPGEENAGSTPESDGAEKGTSIGKVSSAKPLRQERPTMEDGEKRVGVHNNNATPRIFGVV 120

Query: 121 NGEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKI 162
            GEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDK+
Sbjct: 121 IGEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKV 161

BLAST of Lsi01G020450 vs. TrEMBL
Match: M5Y3L9_PRUPE (Uncharacterized protein OS=Prunus persica GN=PRUPE_ppa002233mg PE=3 SV=1)

HSP 1 Score: 171.0 bits (432), Expect = 3.4e-39
Identity = 102/186 (54.84%), Postives = 125/186 (67.20%), Query Frame = 1

Query: 1   MGCICSKGIPANDYVAENHSKDRHLKSNRSSRLGSSLKKEEPELHADGGQSDAMVRLISK 60
           MGCICSK   +N YV+EN  +D+ LKS++SS+L  +         A G  +DA  RLI+ 
Sbjct: 1   MGCICSKATLSNQYVSENQRRDKELKSSKSSKLSEA---------AVG--ADATARLITN 60

Query: 61  EPGEENAGSTP-ESDGAEKATPFEKAASAKPLQQGRPTMEDGAKRVGVHNNKAAPGIINV 120
              EENAGSTP  SD  EK    +   + KP    +P ME GA   G         I +V
Sbjct: 61  PHTEENAGSTPISSDEGEK----KMVVTEKPT---KPFMEGGAS--GGKLPSGLTRITSV 120

Query: 121 VNGEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKIGQGTYSSVYRARDIETNK 180
            NGE+GA V+AGWPSWLT+VAGEAI+GWVP KADSF+KL+KIGQGTYSSVYRARD+++NK
Sbjct: 121 ANGERGAQVVAGWPSWLTAVAGEAISGWVPLKADSFEKLEKIGQGTYSSVYRARDLDSNK 166

Query: 181 IVALKK 186
           IVALKK
Sbjct: 181 IVALKK 166

BLAST of Lsi01G020450 vs. TrEMBL
Match: U5GH78_POPTR (Uncharacterized protein OS=Populus trichocarpa GN=POPTR_0004s23550g PE=3 SV=1)

HSP 1 Score: 169.9 bits (429), Expect = 7.5e-39
Identity = 95/186 (51.08%), Postives = 119/186 (63.98%), Query Frame = 1

Query: 1   MGCICSKGIPANDYVAENHSKDRHLKSNRSSRLGSSLKKEEPELHADGGQSDAMVRLISK 60
           MGCICSKG  AN+++  N  +    K+  + RL S  +K+E  +  DG  +DA   LIS 
Sbjct: 1   MGCICSKGGRANNFLDNNVRRKE--KNKPAKRLVSLSRKDEVVVEVDGSANDATASLISN 60

Query: 61  EPGEENAGSTP-ESDGAEKATPFEKAASAKPLQQGRPTMEDGAKRVGVHNNKAAPGIINV 120
           +PG +N    P  SD  EK    EKA                       NN+ +  I+++
Sbjct: 61  QPGNDNVEYAPVSSDEGEKKEIIEKA-----------------------NNRMSSSIVSM 120

Query: 121 VNGEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKIGQGTYSSVYRARDIETNK 180
            NGE+GA V+AGWPSWLT+VAGEAINGWVPR+ADSF+KLDKIGQGTYSSVY+ARD+ETNK
Sbjct: 121 SNGERGAQVVAGWPSWLTAVAGEAINGWVPRRADSFEKLDKIGQGTYSSVYKARDLETNK 161

Query: 181 IVALKK 186
           IVALKK
Sbjct: 181 IVALKK 161

BLAST of Lsi01G020450 vs. TrEMBL
Match: A0A0B0NRE7_GOSAR (Uncharacterized protein OS=Gossypium arboreum GN=F383_22386 PE=3 SV=1)

HSP 1 Score: 167.5 bits (423), Expect = 3.7e-38
Identity = 100/193 (51.81%), Postives = 124/193 (64.25%), Query Frame = 1

Query: 1   MGCICSKGIPANDYVAENHSK-DRHLKSNRSS--RLGSSLKKEEPELHADGGQSDAMVRL 60
           MGCICSKG  AN+YV  NH K D+  K++R +  +L  S K++   + AD     A  RL
Sbjct: 1   MGCICSKGSRANEYVENNHGKRDKAHKNSRKTAKKLSVSFKRDNVVVEAD-----ATARL 60

Query: 61  ISKEPGEENAGSTPES--DGAEKATP---FEKAASAKPLQQGRPTMEDGAKRVGVHNNKA 120
           IS +    +A S P S  D  EK      FE++  A P  Q RPT E   +  G      
Sbjct: 61  ISNQQPNHSAVSGPSSSSDDEEKKAALAVFERSKGAPPELQRRPTTEADGR--GGQGQPR 120

Query: 121 APGIINVVNGEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKIGQGTYSSVYRA 180
              IIN   GE+GA V+AGWPSWL +VAGEAINGW+PRKA+SF+KL+KIGQGTYSSVY+A
Sbjct: 121 MSRIINATGGERGARVVAGWPSWLAAVAGEAINGWIPRKAESFEKLEKIGQGTYSSVYKA 180

Query: 181 RDIETNKIVALKK 186
           RD+E+NKIVALKK
Sbjct: 181 RDLESNKIVALKK 186

BLAST of Lsi01G020450 vs. TrEMBL
Match: A0A022R376_ERYGU (Uncharacterized protein OS=Erythranthe guttata GN=MIMGU_mgv1a002177mg PE=3 SV=1)

HSP 1 Score: 163.3 bits (412), Expect = 7.0e-37
Identity = 95/187 (50.80%), Postives = 119/187 (63.64%), Query Frame = 1

Query: 1   MGCICSKGIPANDYVAENHSKDRHLKSNRSSRLGSSLKKEEPELHADGGQSDAMVRLISK 60
           MGC+CSKG        EN  K        S +  +S + +E  +  D G +DA  RLIS 
Sbjct: 1   MGCVCSKGTKD-----ENKVKKEKGSKKSSKKFVASSRNDEIVVEVDNGGNDATARLIST 60

Query: 61  EPGEENAGSTPE--SDGAEKATPFEKAASAKPLQQGRPTMEDGAKRVGVHNNKAAPGIIN 120
           E  +++AGSTP    +G +  T FEKA  A+   Q RPT+E G +            +++
Sbjct: 61  EIADKSAGSTPALWEEGDKNPTVFEKAVVAQT--QIRPTIEPGQQG----GQPQLSRVLS 120

Query: 121 VVNGEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKIGQGTYSSVYRARDIETN 180
           + NG  GA V+AGWPSWLTSVAGEAI GW+PRKADSF+KLDKIGQGTYSSVYRARD+ET 
Sbjct: 121 IRNGVDGAQVVAGWPSWLTSVAGEAIKGWIPRKADSFEKLDKIGQGTYSSVYRARDLETG 176

Query: 181 KIVALKK 186
           K+VALKK
Sbjct: 181 KVVALKK 176

BLAST of Lsi01G020450 vs. TAIR10
Match: AT1G09600.1 (AT1G09600.1 Protein kinase superfamily protein)

HSP 1 Score: 140.2 bits (352), Expect = 3.2e-33
Identity = 86/195 (44.10%), Postives = 116/195 (59.49%), Query Frame = 1

Query: 1   MGCICSKGI-PANDYVAENHS--KDRHLKSNRSSRLGSSLKKEEPELHADGGQSDAMVRL 60
           MGC C+KG  P ND V  ++S   + ++K  RS    +  KK++ +  +     D  V  
Sbjct: 1   MGCNCTKGTRPDNDNVDNSNSIVSNVNVKERRSKPKKTPKKKKKSK--SASSSKDNNVGF 60

Query: 61  ISKEPGEENAGST-------PESDGAEKATPFEKAASAKPLQQGRPTMEDGAKRVGVHNN 120
             +    + A  T        + D +EK    E+ +S    Q+    +E GA  +G    
Sbjct: 61  EERSNDNKEASLTLLIPIDAKKDDESEKKVNLERKSSRLVFQRRPTGIEVGANNIGTLQQ 120

Query: 121 KAAPGIINVVNGEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKIGQGTYSSVY 180
                I +V NGE+GA V+AGWPSWL SVAGEAINGW+PRKADSF+KL+KIGQGTYSSVY
Sbjct: 121 PKMTRICSVSNGERGAQVMAGWPSWLASVAGEAINGWIPRKADSFEKLEKIGQGTYSSVY 180

Query: 181 RARDIETNKIVALKK 186
           +ARD+ETN++VALKK
Sbjct: 181 KARDLETNQLVALKK 193

BLAST of Lsi01G020450 vs. TAIR10
Match: AT1G57700.1 (AT1G57700.1 Protein kinase superfamily protein)

HSP 1 Score: 137.5 bits (345), Expect = 2.1e-32
Identity = 83/185 (44.86%), Postives = 113/185 (61.08%), Query Frame = 1

Query: 1   MGCICSKGIPANDYVAENHSKDRHLKSNRSSRLGSSLKKEEPELHADGGQSDAMVRLISK 60
           MGCICSKG+  ND   E +    H+   + +   S  + +  E   +G  ++A +RLI  
Sbjct: 1   MGCICSKGVRTNDDYIETN----HVSIGKENPKASKKQSDSEETSVNG--NEATLRLIPD 60

Query: 61  EPGEENAGSTPESDGAEKATPFEKAASAKPLQQGRPTMEDGAKRVGVHNNKAAPGIINVV 120
           +  +  +    E    +K + FE  +    LQ+G   + +    VG    + +  I +V 
Sbjct: 61  DVKDTFSDEEVEELEEKKESSFEMKSCESVLQKGN--VLEIVDNVGPLQPRMSR-IGSVS 120

Query: 121 NGEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKIGQGTYSSVYRARDIETNKI 180
           NG++ A VIAGWPSWL SVAGEAINGW+PR ADSF+KL+ IGQGTYSSVYRARD+ETN+I
Sbjct: 121 NGDRAAKVIAGWPSWLVSVAGEAINGWIPRSADSFEKLEMIGQGTYSSVYRARDLETNQI 176

Query: 181 VALKK 186
           VALKK
Sbjct: 181 VALKK 176

BLAST of Lsi01G020450 vs. TAIR10
Match: AT1G33770.1 (AT1G33770.1 Protein kinase superfamily protein)

HSP 1 Score: 120.6 bits (301), Expect = 2.6e-27
Identity = 76/193 (39.38%), Postives = 99/193 (51.30%), Query Frame = 1

Query: 1   MGCICSKGIPANDYVAENHSKDRHLKSNRSSRLGSSLKKEEPELHADGGQSDAMVRLISK 60
           MGCICSKG   ++     H +  +   N+SS                       V+LI+ 
Sbjct: 1   MGCICSKGAAEDEEGVVYHREKANEYWNKSSS----------------------VQLIAP 60

Query: 61  EPGEENAGSTPESDGAEKA--------TPFEKAASAKPLQQGRPTMEDGAKRVGVHNNKA 120
            P  ++  S    DG+            P + +   K +   RP+     +RV  +    
Sbjct: 61  LPSNKDDFSHKAVDGSSGGGRRASGLIVPIDDSHDGKTVIVERPSRSQRGRRVSDNGKGG 120

Query: 121 APGIINVVNGEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKIGQGTYSSVYRA 180
              I NV    +  L+ AGWP WLTSVAGEAI GWVPR+ADSF+KLDKIGQGTYS VY+A
Sbjct: 121 GLIISNVPRSAEAELIAAGWPYWLTSVAGEAIKGWVPRRADSFEKLDKIGQGTYSIVYKA 171

Query: 181 RDIETNKIVALKK 186
           RD+ET KIVA+KK
Sbjct: 181 RDLETGKIVAMKK 171

BLAST of Lsi01G020450 vs. TAIR10
Match: AT1G53050.1 (AT1G53050.1 Protein kinase superfamily protein)

HSP 1 Score: 112.5 bits (280), Expect = 7.2e-25
Identity = 53/63 (84.13%), Postives = 55/63 (87.30%), Query Frame = 1

Query: 390 LVSLIFSRKKQPLTSRVVTLWYRPPELLLGATDYGVSVDLWSAGCILAELYAGKPIMPGR 449
           L S    R+ QPLTSRVVTLWYRPPELLLGAT YG +VDLWSAGCILAELYAGKPIMPGR
Sbjct: 279 LASFFDPRQTQPLTSRVVTLWYRPPELLLGATRYGAAVDLWSAGCILAELYAGKPIMPGR 338

Query: 450 TEV 453
           TEV
Sbjct: 339 TEV 341

BLAST of Lsi01G020450 vs. TAIR10
Match: AT1G54610.2 (AT1G54610.2 Protein kinase superfamily protein)

HSP 1 Score: 105.9 bits (263), Expect = 6.7e-23
Identity = 48/63 (76.19%), Postives = 54/63 (85.71%), Query Frame = 1

Query: 390 LVSLIFSRKKQPLTSRVVTLWYRPPELLLGATDYGVSVDLWSAGCILAELYAGKPIMPGR 449
           L ++     K+P+TSRVVTLWYR PELLLGATDYGV +DLWSAGCILAEL AG+PIMPGR
Sbjct: 263 LATIFDPNHKRPMTSRVVTLWYRAPELLLGATDYGVGIDLWSAGCILAELLAGRPIMPGR 322

Query: 450 TEV 453
           TEV
Sbjct: 323 TEV 325

BLAST of Lsi01G020450 vs. NCBI nr
Match: gi|778701658|ref|XP_011655063.1| (PREDICTED: probable serine/threonine-protein kinase At1g09600 isoform X2 [Cucumis sativus])

HSP 1 Score: 315.8 bits (808), Expect = 1.2e-82
Identity = 159/185 (85.95%), Postives = 166/185 (89.73%), Query Frame = 1

Query: 1   MGCICSKGIPANDYVAENHSKDRHLKSNRSSRLGSSLKKEEPELHADGGQSDAMVRLISK 60
           MGCICSKGIPANDYVAENHSK+RHLKSNRSSR G+SL+KEE  LH+DGGQSDAM RLI  
Sbjct: 1   MGCICSKGIPANDYVAENHSKERHLKSNRSSRHGTSLRKEESVLHSDGGQSDAMARLILN 60

Query: 61  EPGEENAGSTPESDGAEKATPFEKAASAKPLQQGRPTMEDGAKRVGVHNNKAAPGIINVV 120
           +PGEENAGSTPESDGAEK T   K +SAKPL+Q RPTMEDG KRVGVHNN A P I  VV
Sbjct: 61  QPGEENAGSTPESDGAEKGTSIGKVSSAKPLRQERPTMEDGEKRVGVHNNNATPRIFGVV 120

Query: 121 NGEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKIGQGTYSSVYRARDIETNKI 180
            GEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKIGQGTYSSVYRARDIETNKI
Sbjct: 121 IGEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKIGQGTYSSVYRARDIETNKI 180

Query: 181 VALKK 186
           VALKK
Sbjct: 181 VALKK 185

BLAST of Lsi01G020450 vs. NCBI nr
Match: gi|778701651|ref|XP_011655061.1| (PREDICTED: probable serine/threonine-protein kinase At1g09600 isoform X1 [Cucumis sativus])

HSP 1 Score: 315.8 bits (808), Expect = 1.2e-82
Identity = 159/185 (85.95%), Postives = 166/185 (89.73%), Query Frame = 1

Query: 1   MGCICSKGIPANDYVAENHSKDRHLKSNRSSRLGSSLKKEEPELHADGGQSDAMVRLISK 60
           MGCICSKGIPANDYVAENHSK+RHLKSNRSSR G+SL+KEE  LH+DGGQSDAM RLI  
Sbjct: 1   MGCICSKGIPANDYVAENHSKERHLKSNRSSRHGTSLRKEESVLHSDGGQSDAMARLILN 60

Query: 61  EPGEENAGSTPESDGAEKATPFEKAASAKPLQQGRPTMEDGAKRVGVHNNKAAPGIINVV 120
           +PGEENAGSTPESDGAEK T   K +SAKPL+Q RPTMEDG KRVGVHNN A P I  VV
Sbjct: 61  QPGEENAGSTPESDGAEKGTSIGKVSSAKPLRQERPTMEDGEKRVGVHNNNATPRIFGVV 120

Query: 121 NGEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKIGQGTYSSVYRARDIETNKI 180
            GEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKIGQGTYSSVYRARDIETNKI
Sbjct: 121 IGEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKIGQGTYSSVYRARDIETNKI 180

Query: 181 VALKK 186
           VALKK
Sbjct: 181 VALKK 185

BLAST of Lsi01G020450 vs. NCBI nr
Match: gi|659114274|ref|XP_008456985.1| (PREDICTED: probable serine/threonine-protein kinase At1g09600 isoform X2 [Cucumis melo])

HSP 1 Score: 312.0 bits (798), Expect = 1.7e-81
Identity = 158/185 (85.41%), Postives = 164/185 (88.65%), Query Frame = 1

Query: 1   MGCICSKGIPANDYVAENHSKDRHLKSNRSSRLGSSLKKEEPELHADGGQSDAMVRLISK 60
           MGCICSKGIPANDYVAENH K+RHLKSNRSSR G+SL+KEE  LH+DGGQSDAM RLI  
Sbjct: 1   MGCICSKGIPANDYVAENHCKERHLKSNRSSRHGTSLRKEESVLHSDGGQSDAMARLILN 60

Query: 61  EPGEENAGSTPESDGAEKATPFEKAASAKPLQQGRPTMEDGAKRVGVHNNKAAPGIINVV 120
           +PGEENAGST ESDGAEK T   K  SAKPL+Q RPTMEDG KRVGVHNN A P II VV
Sbjct: 61  QPGEENAGSTTESDGAEKVTSIGKVGSAKPLRQERPTMEDGIKRVGVHNNNATPRIIGVV 120

Query: 121 NGEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKIGQGTYSSVYRARDIETNKI 180
            GEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKIGQGTYSSVYRARDIETNKI
Sbjct: 121 IGEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKIGQGTYSSVYRARDIETNKI 180

Query: 181 VALKK 186
           VALKK
Sbjct: 181 VALKK 185

BLAST of Lsi01G020450 vs. NCBI nr
Match: gi|659114270|ref|XP_008456983.1| (PREDICTED: probable serine/threonine-protein kinase At1g09600 isoform X1 [Cucumis melo])

HSP 1 Score: 312.0 bits (798), Expect = 1.7e-81
Identity = 158/185 (85.41%), Postives = 164/185 (88.65%), Query Frame = 1

Query: 1   MGCICSKGIPANDYVAENHSKDRHLKSNRSSRLGSSLKKEEPELHADGGQSDAMVRLISK 60
           MGCICSKGIPANDYVAENH K+RHLKSNRSSR G+SL+KEE  LH+DGGQSDAM RLI  
Sbjct: 1   MGCICSKGIPANDYVAENHCKERHLKSNRSSRHGTSLRKEESVLHSDGGQSDAMARLILN 60

Query: 61  EPGEENAGSTPESDGAEKATPFEKAASAKPLQQGRPTMEDGAKRVGVHNNKAAPGIINVV 120
           +PGEENAGST ESDGAEK T   K  SAKPL+Q RPTMEDG KRVGVHNN A P II VV
Sbjct: 61  QPGEENAGSTTESDGAEKVTSIGKVGSAKPLRQERPTMEDGIKRVGVHNNNATPRIIGVV 120

Query: 121 NGEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKIGQGTYSSVYRARDIETNKI 180
            GEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKIGQGTYSSVYRARDIETNKI
Sbjct: 121 IGEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKIGQGTYSSVYRARDIETNKI 180

Query: 181 VALKK 186
           VALKK
Sbjct: 181 VALKK 185

BLAST of Lsi01G020450 vs. NCBI nr
Match: gi|700195595|gb|KGN50772.1| (hypothetical protein Csa_5G247670 [Cucumis sativus])

HSP 1 Score: 268.5 bits (685), Expect = 2.2e-68
Identity = 134/161 (83.23%), Postives = 142/161 (88.20%), Query Frame = 1

Query: 1   MGCICSKGIPANDYVAENHSKDRHLKSNRSSRLGSSLKKEEPELHADGGQSDAMVRLISK 60
           MGCICSKGIPANDYVAENHSK+RHLKSNRSSR G+SL+KEE  LH+DGGQSDAM RLI  
Sbjct: 1   MGCICSKGIPANDYVAENHSKERHLKSNRSSRHGTSLRKEESVLHSDGGQSDAMARLILN 60

Query: 61  EPGEENAGSTPESDGAEKATPFEKAASAKPLQQGRPTMEDGAKRVGVHNNKAAPGIINVV 120
           +PGEENAGSTPESDGAEK T   K +SAKPL+Q RPTMEDG KRVGVHNN A P I  VV
Sbjct: 61  QPGEENAGSTPESDGAEKGTSIGKVSSAKPLRQERPTMEDGEKRVGVHNNNATPRIFGVV 120

Query: 121 NGEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKI 162
            GEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDK+
Sbjct: 121 IGEKGALVIAGWPSWLTSVAGEAINGWVPRKADSFQKLDKV 161

The following BLAST results are available for this feature:
Match NameE-valueIdentityDescription
Y1960_ARATH5.7e-3244.10Probable serine/threonine-protein kinase At1g09600 OS=Arabidopsis thaliana GN=At... [more]
Y1461_ARATH1.2e-2176.19Probable serine/threonine-protein kinase At1g54610 OS=Arabidopsis thaliana GN=At... [more]
CDKC2_ARATH1.5e-1674.00Cyclin-dependent kinase C-2 OS=Arabidopsis thaliana GN=CDKC-2 PE=1 SV=2[more]
CDKC1_ORYSJ9.8e-1672.00Cyclin-dependent kinase C-1 OS=Oryza sativa subsp. japonica GN=CDKC-1 PE=2 SV=1[more]
CDKC1_ARATH2.8e-1570.00Cyclin-dependent kinase C-1 OS=Arabidopsis thaliana GN=CDKC-1 PE=1 SV=1[more]
Match NameE-valueIdentityDescription
A0A0A0KQS4_CUCSA1.5e-6883.23Uncharacterized protein OS=Cucumis sativus GN=Csa_5G247670 PE=4 SV=1[more]
M5Y3L9_PRUPE3.4e-3954.84Uncharacterized protein OS=Prunus persica GN=PRUPE_ppa002233mg PE=3 SV=1[more]
U5GH78_POPTR7.5e-3951.08Uncharacterized protein OS=Populus trichocarpa GN=POPTR_0004s23550g PE=3 SV=1[more]
A0A0B0NRE7_GOSAR3.7e-3851.81Uncharacterized protein OS=Gossypium arboreum GN=F383_22386 PE=3 SV=1[more]
A0A022R376_ERYGU7.0e-3750.80Uncharacterized protein OS=Erythranthe guttata GN=MIMGU_mgv1a002177mg PE=3 SV=1[more]
Match NameE-valueIdentityDescription
AT1G09600.13.2e-3344.10 Protein kinase superfamily protein[more]
AT1G57700.12.1e-3244.86 Protein kinase superfamily protein[more]
AT1G33770.12.6e-2739.38 Protein kinase superfamily protein[more]
AT1G53050.17.2e-2584.13 Protein kinase superfamily protein[more]
AT1G54610.26.7e-2376.19 Protein kinase superfamily protein[more]
Match NameE-valueIdentityDescription
gi|778701658|ref|XP_011655063.1|1.2e-8285.95PREDICTED: probable serine/threonine-protein kinase At1g09600 isoform X2 [Cucumi... [more]
gi|778701651|ref|XP_011655061.1|1.2e-8285.95PREDICTED: probable serine/threonine-protein kinase At1g09600 isoform X1 [Cucumi... [more]
gi|659114274|ref|XP_008456985.1|1.7e-8185.41PREDICTED: probable serine/threonine-protein kinase At1g09600 isoform X2 [Cucumi... [more]
gi|659114270|ref|XP_008456983.1|1.7e-8185.41PREDICTED: probable serine/threonine-protein kinase At1g09600 isoform X1 [Cucumi... [more]
gi|700195595|gb|KGN50772.1|2.2e-6883.23hypothetical protein Csa_5G247670 [Cucumis sativus][more]
The following terms have been associated with this gene:
Vocabulary: Biological Process
TermDefinition
GO:0006468protein phosphorylation
Vocabulary: Molecular Function
TermDefinition
GO:0005524ATP binding
GO:0004672protein kinase activity
Vocabulary: INTERPRO
TermDefinition
IPR017441Protein_kinase_ATP_BS
IPR011009Kinase-like_dom_sf
IPR000719Prot_kinase_dom
GO Assignments
This gene is annotated with the following GO terms.
Category Term Accession Term Name
biological_process GO:0006468 protein phosphorylation
cellular_component GO:0005575 cellular_component
molecular_function GO:0005524 ATP binding
molecular_function GO:0004672 protein kinase activity

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

Feature NameUnique NameType
Lsi01G020450.1Lsi01G020450.1mRNA


Analysis Name: InterPro Annotations of Lagenaria siceraria
Date Performed: 2017-09-18
IPR TermIPR DescriptionSourceSource TermSource DescriptionAlignment
IPR000719Protein kinase domainPFAMPF00069Pkinasecoord: 398..450
score: 2.0
IPR000719Protein kinase domainSMARTSM00220serkin_6coord: 155..460
score: 5.
IPR000719Protein kinase domainPROFILEPS50011PROTEIN_KINASE_DOMcoord: 155..462
score: 13
IPR011009Protein kinase-like domainunknownSSF56112Protein kinase-like (PK-like)coord: 397..455
score: 7.42E-19coord: 149..190
score: 1.7
IPR017441Protein kinase, ATP binding sitePROSITEPS00107PROTEIN_KINASE_ATPcoord: 161..184
scor
NoneNo IPR availableGENE3DG3DSA:1.10.510.10coord: 399..450
score: 4.2
NoneNo IPR availableGENE3DG3DSA:3.30.200.20coord: 142..185
score: 1.
NoneNo IPR availablePANTHERPTHR24056CELL DIVISION PROTEIN KINASEcoord: 92..212
score: 3.6E-73coord: 361..452
score: 3.6E-73coord: 260..272
score: 3.6
NoneNo IPR availablePANTHERPTHR24056:SF203PROTEIN KINASE SUPERFAMILY PROTEINcoord: 92..212
score: 3.6E-73coord: 260..272
score: 3.6E-73coord: 361..452
score: 3.6

The following gene(s) are orthologous to this gene:

None

The following gene(s) are paralogous to this gene:

None