
PI0001690 (gene) Melon (PI 482460) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATTTCTCCATTTATTTATACTCAATTCATACCGCCGAAAAATATCCCATACCTCCGTTCCCTCTGTCACAGTCTCAATGGAGCGCTTCAACGCAATCGCTCTCTTCTTTGCTATTGTACTATCGGCGACAGTAGCTTCCGGTGTATCTTCCGATCAAATCAACGGCGCCGTAAGCGACGGCGAAGATCTTTTGATTCGTCAAGTCGTCTCCGGTGCCGATGATCGTCTTTTAACCGCGGAACAACACTTCCAGAACTTCAAACTCAAGTTCGGAAAGACTTACGCCACTGATGAGGAGCACGATTACAGGTTCCGTGTCTTTAAGGCTAACCTCCGCAAAGCGAAGCGCCACCAGAAGCTCGATCCCGACGCTGTCCACGGCGTCACTCAGTTTTCCGATCTCACCGAGTCAGAGTTCCGTGAGAATTTCGTCGGGCTGAATCGGCTCCGTCTTCCTGCTGATGCTCATAAGGCTCCGATCCTTCCGACTGATAACCTCGCCTCCGATTTCGACTGGCGCGATAAAGGTGCCGTAACGCCGGTTAAGGATCAGGTATGAGCTACTTCGGAACGAAATTACTCAAGCCTGTCGAGTATTTGATCTTGCGATTTCGGTTTCTTATTTTCTGAGAGATGTGTTTTTGTTCTGAATCTGCTAGGGTTCTTGTGGCTCGTGCTGGTCTTTTAGTGCTGTTGGAGCGCTGGAGGGAGCTAATTTCTTGTCAACTGGAAAGCTTGTTAGTCTGAGTGAGCAACAGCTTGTGGATTGTGATCATGAGGTTCGTTTCCTTCTCTGCCTTGGATTTATTGCATTTTGTTTCTATTCGCAATTGTTCATCTGATCTTCTCTCTCTTCTTAACCTGCTAATCTGATCTTCTCTCTCTTCTTAACCTGCTAATCTGATCTTCTCTCTCTTCTTAACCTGCTAATCTGATCTTCTCTCTCTTCTTAACCTGCTAATCTGCTCTTCTCTCTCTTCTTAACCTGCTACTGCAAAAGTCAATTCAGATAAAACAAACTGAGGTTCCATTTATATATAACCCGTAGCTTTTGGAAACCATGCTTTGTTTGCTCTTTCTAATATACTGTTTTCTTCTCCTTTTCAAATCATTTTCATCCTATTCAAAATCACTTTTAATATTTGTGTCACGCTTTCCATTCTCGATCAAAACTTGATTTCAATTGATTAATAAATAGGATTCCAAGTAAATTTATGTGATAAGAGTGATTTTAGCTCAACTATGTCCTTAATTTACTATTGAAATTTAAGTAGATTTCAAAAGATATTTGGAAAATAAAAAAGTAAAGAAAAATAGTTGTATGATTGTTCCGGAAAAAGGAGAGACTGTATGCAGAACAGTAAAATATGAAGTGTATATGTATTCTTTTTTGGAATCCGTTGAACAAACTTAATTTGTTTATTTTTCTCACTGAGCACAGCATGAAGCACCTACTCTGTTTTCAGTCTATTTCTAGTGCATAAAAAATGTTAATAGAATTCAATAAGAATTCGGAGGGAAATTTTTGTTCATATTTTTATGAACCGTATATTATTTTTGTAGAACAAATGGAAAATACATCGAAGTATATGGTATTTTGGTAAAAAGTTTATCATTATTATCTTTTTCTAAAAAAAAAGGAAAGAATGATTTGTTTCGAAAAAAGAACCTATCAAATGACATATTATTGGACGATTTAATGTGATAAAAAAATTGAGTGTAAGACGAAGTATTATATATATTGAATTCAACATACTTTTAAAATATGAATGGCATGTTCTGTCAATGTAAACAACTGATATTAATTAGAGGTTTTTTGGTTGTTTATGCTTTTTATAATTAATCTTGAAGTTTTAAATAGATTTTAATTATAAAAAAATACATATATGGATAATTTCATTGGGTAATGCTTCTAAAAAATTTAAATTAAATCTCTTAATTGAGAGAATGCTTAAAACAATCAAGCTGCATTTAAAGTATACTTAAATTGGCTTGTAAGAGCTACTTAGGTCTTTTTATGAATTGCAAGAAAATGGTGAAAGTTGCTTCAAAAAGTATAGCGATACGGGGGATGACATGAAATAAACTGAAAAAGATTTAAGTAAGACGATTTATTTCTAATTGGTTGGTCAAAACAAATTAAATGTGAATCGATAGATAGTCATGTTGATGTATTGTATAGATACACCCAATTTCTTTTCAAAAAAAAAAAAAAGAAAAAAAGAAATACACACTTTGAGTTCCAACACAATTTATTTAATAGTTTGAACTTTTTTAATGTATTTTCGATTAATCTTATTTTAATCCCACGAAGTTAAGCTTTGATGAAATTGGTTGAATAGTGATGATTATTTTGATGTTATGAAAATATAATATATGAATATGCTTTTAAAATTTAGTGTAAAAATGCTAATAATAAGTTTTTAAAAGAATCAACGATCAACATTTTTAATGGACCAAATCTAAGATTTCTTGAAAGTATAGATTGGAAATTTGACATTTAAACTAGAATAAATAAATTTTAAATTATATAACGAAAATAGTATTTTAACCCGTTTAATATTATCTTAGAGAATACTTCCATGTTGATTGAATTGTTAGAATGAAATCTGTACCACCTTTATTTTTATTTTAATTGGAAAAGTTTACTCTCTTTCTAATTCTCCCTCCAATAATTTTTTTTAAATTGTAATTTTTATTTTTGTTTTTCATAAAAGTTCTATGCTCTCTTCGCGTAATTTTCACCATTGAATGTAAAGAGAAAATGTATTGAATTTATATCTTATGAGCATCTAGATAATTGAATCTGCATCCAACAATATTATGAGTAGCTCCATAGTTTAGCACAGGATCCATTACAAATAAGGAGACCTATTCAAATAGAAGTAATAGGTATATTACATGGTATTTTCTTTTATGTTTACAAGAACTGAAGCCTGATTTATTACATATAGCTTAGTCGATATACAATTACCTTTTTAAAGACTTATTTTCATCTTGATTTAAAATTCCCAAAATGAGAATTGATAATATGTGTGTGTGATAATTGAAAATAAAAAGTTGTAAATTATTTGGCAGTGTGATCCGGAGGAAGCTGGTGCATGCGACGCAGGGTGCGGGGGGGGACTAATGACTTCAGCTTTTGAGTATATTTTGAAAGCAGGTGGGTTAGAGAGAGAGGAGGATTATCCTTACACCGGCACGGATCGTGGCTCTTGCAAATTCCAAAATGGCAAAATTGCTGCCTCTGTAGCCAACTTCAGTGTCATTTCAAACGATGCCGATCAAATTGCAGCCAACTTGGTCAAGAATGGCCCTCTAGCAAGTAATCTATTTCTTCTCCTTTTTATTCTCTTCATCGCTTTTTATATGCATTATATCATTTCTCACACCCTGATTTTAAAACCCATTGTTGCTGTGACGAACGGAAGTTATCAGGTTTTAAGCTTGTTAACTATTTCGGATGCGTTTGACAAGTCACGGTTGATTATAATCATTTGTGTTTTTTTAAATTAAGATTTTAAAATAAACATCTCCATCGTCACAGTTTGTTTGTTTTATTTTTCATGTTTTAGGAGAAAATAAAAACATGAGTTTTGGAAACTAAAAAAACAGTTTTTAATAATTTGTCTTTAATTTTGTAACTTAACTAAGAATTCAAGTAGGAAAAACCATAGCAATCAAATGGTAAGAAAATAAGTATAGTTTTTGAAAACCAAAAACAAGTAATGAAATGGTTATCAAACGAAAGTTTACTTTTTGGTTTTTTTAGATTGGGATTAGTTTCTCATATTTCATTACCATAGTTTTTTTAAAATCTTGCCTTGCAAAACCTAATGGCAAAAAAATAAAAACTACTTTTATTTCTTGTTTTTAAAACATAGGTTGGATTTGAAAATATGCTTGAGTAGTAGTTAACAAAGCAAATAAACTCAAGTAAAAGGTAAGCATTTTACTTTAGTACAGTGAATATTTGGACATTTGGACACTTGTTTGAGGCCAACACAATTTGAATATTTGGACATTTCGACACTTGTTTGATACATATTGGACACTTTTTAGTACAGTAAATATGTTAGATACTAGTTGTATAGAGTCAATATAGGTCCAACGAAGATTAGGTACAAAACTTTTTAAAGTATATTAAATGCACAAATTCGTTGAATTTGAATTTCTATTCTTCTATAAATAATATATATATATATATATATTTGGAATGATGCCACTTATGTGCTTTAGTATTTGCATCTATACTTCTAAGAGTGATCTGAAACCCTAATTTTAAAAAATAAATATATTATTCAAGTACTTTCATTTTTAGTTTTCTAACATTTATCTTTTCTTATTGTATCTACAGTTGGAATCAATGCAGTTTTCATGCAAACATACGTAAAGGGAGTTTCATGCCCATATATATGCTCTAAACGAAATTTAGATCATGGAGTTCTCCTTGTAGGGTATGGATCTGCAGGCTTTGCTCCAATACGGTTCAAGGAGAAACCCTACTGGATCATTAAAAACTCGTGGGGCGAAAATTGGGGAGAAAATGGATATTACTTCATTTGCAAGGGCAAGAATATCTGTGGATCCGAGTCGATGGTCTCGTCCGTGGCTGCCACCCCAAATTGAGCCACCGCTAGCGCCGTTATATTAAGGTAACTTTATGTGGCTTTGTAATTATATGTTTATATTATGGGGAATGGTTTATTATTACACCAAGTGCTATGGAATTGAATGGTTCATTCTCTTGGCTGATAGTTATTGTTGTATAATTTTTATGTTGAAATAATGTTGTAGTCTATAGGGCCTTTGGGTACTAGAAATGCATGAAGTCACATTCTTATCCTGTGTGATTGCTTTTTATGTTTGTGTTGCATTGGCTTGTGCATGTTAGTGTAGTACATTTAGTTTTTCTTTTCAAGAATATATATATATATATATATATATATATATAACTGAAAATTAAGCTGCACTTCCTTTGATATTTATTTTGTTTTTTTTTTCCGTTTTTTGAAATTTATGTTTGCTACCTTTTAAATTTCTCATCATAATTTTCACTTTTATTAAAAATATGATTTGAATTTTTAGTCAATACGAAATTTATTGTAAATGTCAATATTGTTGAAAATATTTTAAAAATAGCAAAATTTCAGATTTTATGATAAACATTGATAGACTTCTATCAAATCACGAACCTAAAATTTTACAATATTCTATAAATATTTTGATTCATTTTTCATATTTAAAAATGTCTCTAAATATATATTTTTTAGTTTTAGAAATAGAAAATAGGAAAACCAACAAATTATTAAAGCCCAAAAATTTCCCCCCTTTTTTCAGTACAATAATTGCCAGAAGTCTCGAGATATTACGTGATAAACCAAATATTATAAACTGTACCGATTAAATAGATGAGAATAACAAAAATCAATACTCGAAAAACTCTTCGATGTTTAAATTGCAAATTTAATATTTCTGTTTGTTCAGAAGTTTACTTTTTTTTATTAGGGCAATACTGTCTAGAGAGTTTTAAATTCCATCTAACATGGATTTCCTACCGTCCATACCCCATTGGATGTTCATTCTTGGATATCAACGAAAACAAATGTAATATAATAGATAAATTAATTAACATCAATCCATTAATTTTAATTATTTATTAGATATAACTACAGTACTTAGGGTTAATAAATTTCAACTAATACATTTTCGACTAGTCTTTTATGTTATTTTAACCATTTAATACAAAATTTTACTATTTTAGTAATTAAATTAAATATAGTTTAATTAATGTGTAATATAAAAATACTACTTTATTTTAAAAAATTATTACAAATGACAAAATAAACCGAAACATTTATACGATATAACAAATCTTGAATTTTATCAATGATAAACACCTATTGATATTTTGATGTCTAATCTAGACCAAATCAAATTGAACTTAAACCTTATTGGATCCTTCATAAACAAATAAATTTGATTTTGGCTAAACATTTCTGAATTTATTTATTTATTTATTTTAGCACGAATTTTACTTATTTAGCAAAAACCCTTATACTATAGAATACGTCTACGAGGACGAATCAGTAATGAAGGTAGCAATCCCACCGTCAAGACAACTATCTTTTTTACTTCAGTTGAAACCAATTTGCAACATAAATAAAATTTTGCGGGTAAATTTATTCTCAATATAATTATATATAGGTGAATCAAATTTATATATATACCTTAACCACTAACCTAAATTCAAACTTAAACCACGTAAATCTAAATTAAAACATTTTTTTAAGCAATTGTCATTTACATTGTGTATTTTATATTTTAACATTCGTGTGTGTATATGTGGACAAACACTTCAGGTATATATATTAAAAAAGAAAAAGGTAATAATATCAACAAAATTTGTAAATTATATAGAAACCAAACCAGTTGCAATATGCAAGGGAACTAACCTCTTGATTTTTGTGTCACTCATCCTCCTCCCGAAGCAACGAAAAGGAGAAAGGAGAAAATTTGAATCCGTCTCCAGCATAGAATTTGTTCTGAAACTCCACCCAGTGGAGCCTCAAGGCGTGTAGGAATGCGCTTAGAGTTTCCATAATTAGTAAAACTCCCACAGTTGCAAAAATGAAAACGGCTATTCCTATTATCCGGATGATCAAACTATTGAACCTGCAGATGTGTTATCGATTTTCTTCAATTGCAGTTTTTCTTTTTTGTTTCAAAATAGGGAGAAGAAAAGGTGTGGTAGCAGAACTAACCCCCAAGCTAAGAGTAGAACCTTGTCGTAAAATACACTCGACAACTCCGAATGCGCTAGACTGAGTGAAAGAAAAATCAAAGGTAAAGTGTGTCCTGAGTAAAAAGCTTATAAATGATGGCTAGAAACATAGAAATTTGGACCTGAAAAACTCCTTTGAATATTCATATATTCAGTTCACATTCCTATTTTTTAAAATAGTTTCAAACGACCCTCTAACTAGCAAAATCTAGAAATTATCGTTTCTGTTAAAATTTTCGCTCCAATAAGCTTGTTACTCAGATTTATGTTTCACTTGCTGTGAATACTAGATTCAGTAAAGCTAATTAACTGAAGGGTATGATCCTAACATTCGCAAACTACATGAATGTTTAAAGCCATTTTAAAAATGACTGGCATAATTGTCATAGAGGTAAAACACAACACAGTGTAATTTGTACTTATCACATCTTTAAGCAAAGAACAGTTGAGATTTGAATTCCTTTTTAAATATTTTCTTCTATAAATCTGACATTTCTATAGTGAAATAAACTGACATTTCAGATAGTAAGCTAAAACTTTGATAACCATTTGGTTTTTAGTTTTTGGCTTTTAAAAATTAAGTTAAAAAACATTACTCCCACCAAAGGTTCTTTGATGTTTTAGAAAACAAACCAAATCTTGAAAAGAAAAGAAAGTAGTTTTCAAACACTTGTATTTGTTTTTAGAATTGGACTAAAAATTCAATTGGCTTCTTTTTTCAAGAAATGTGAGAACCATAATTTGGACTTTAGAAGAAAATAAACATAAAAAGATAGAATTGAAATGTGAACTAATTTAGTAATTTTTAATTTAAGTAGTTGTAACTGGCTGTCTGGTAAAAGACCAACCAACAAAGGAAATCGACAGATTCCTATAATAAAAGTTAATGCATCTAAATGTAACATTTATGGTAAAGAATGATAAAATGTTGTGTGTTTACCTGAGGGCCCATAGGCGAAGATAGGATGCTGTGTTCGATACTGCACCAAGAACAAACTCTATGGTATGTATAAGTTGGTGTACAAAAACCTCACTGAAATCAAACTCCTCGTGGCCATGGGAATCGTGGTGTCGTTCTATTTCGTGATTGTCATCTGTACAGTGAAGTACGGAGTAGGATTGACCTTGGTGCCTCTGGAAAAGATGAGATCAGAAATTGTGATGAATGACAAGGAAAAGTACAATAAAATAAAATAGAGAAGCAACTATAAGAGACTTTAGAAAATACAACATCACCTACTTCTTCATTTTGTTTCTTCAAAAGAAGAGGCTTGGGAAATAACATCCATGGCACGGCAATGAGGGCAGACAGAAGTAACAGAAGCTGGTAGTGTAAAAATGTAGTTATTTAGAGTTGATTCCAGTTCAATAGTACGAAACCTTTTTTGAAGGGCATGAAACATCAGGAGAACCTGAAGGAACTTCTGTCCTGAGAAAAGCTGATTTTCACCTAGATCATCAGTAGGACTCAAGAACATATATATCATTACGTGATACAGATCAGCTTGAGATCCAGAGTACCACTTCACAATTATGAGAAGTGAGAGGTAACCAAATAAGCTGTTCAAGAATATGATCTGGGGAACAAATTGGTACCTGAAACAATGAAACAAAATTTACAATTATAAAGAAAATGGAATCTTCACACTTGAAATAAAACACCGGATTCTTGTATTAAGATATTATGATTTGGAGGTGATTTGTCGCAACTAACTCATTAGGGAAGCTCTTCTATGTTTCATTTATTAAAGAAGCATAATTGATTGATTTGTTAAAAATATATTTTTAATTTCATTATTGATTA ATTTCTCCATTTATTTATACTCAATTCATACCGCCGAAAAATATCCCATACCTCCGTTCCCTCTGTCACAGTCTCAATGGAGCGCTTCAACGCAATCGCTCTCTTCTTTGCTATTGTACTATCGGCGACAGTAGCTTCCGGTGTATCTTCCGATCAAATCAACGGCGCCGTAAGCGACGGCGAAGATCTTTTGATTCGTCAAGTCGTCTCCGGTGCCGATGATCGTCTTTTAACCGCGGAACAACACTTCCAGAACTTCAAACTCAAGTTCGGAAAGACTTACGCCACTGATGAGGAGCACGATTACAGGTTCCGTGTCTTTAAGGCTAACCTCCGCAAAGCGAAGCGCCACCAGAAGCTCGATCCCGACGCTGTCCACGGCGTCACTCAGTTTTCCGATCTCACCGAGTCAGAGTTCCGTGAGAATTTCGTCGGGCTGAATCGGCTCCGTCTTCCTGCTGATGCTCATAAGGCTCCGATCCTTCCGACTGATAACCTCGCCTCCGATTTCGACTGGCGCGATAAAGGTGCCGTAACGCCGGTTAAGGATCAGGGTTCTTGTGGCTCGTGCTGGTCTTTTAGTGCTGTTGGAGCGCTGGAGGGAGCTAATTTCTTGTCAACTGGAAAGCTTGTTAGTCTGAGTGAGCAACAGCTTGTGGATTGTGATCATGAGTGTGATCCGGAGGAAGCTGGTGCATGCGACGCAGGGTGCGGGGGGGGACTAATGACTTCAGCTTTTGAGTATATTTTGAAAGCAGGTGGGTTAGAGAGAGAGGAGGATTATCCTTACACCGGCACGGATCGTGGCTCTTGCAAATTCCAAAATGGCAAAATTGCTGCCTCTGTAGCCAACTTCAGTGTCATTTCAAACGATGCCGATCAAATTGCAGCCAACTTGGTCAAGAATGGCCCTCTAGCAATTGGAATCAATGCAGTTTTCATGCAAACATACGTAAAGGGAGTTTCATGCCCATATATATGCTCTAAACGAAATTTAGATCATGGAGTTCTCCTTGTAGGGTATGGATCTGCAGGCTTTGCTCCAATACGGTTCAAGGAGAAACCCTACTGGATCATTAAAAACTCGTGGGGCGAAAATTGGGGAGAAAATGGATATTACTTCATTTGCAAGGGCAAGAATATCTGTGGATCCGAGTCGATGGTCTCGTCCGTGGCTGCCACCCCAAATTGAGCCACCGCTAGCGCCGTTATATTAAGGTAACTTTATGTGGCTTTGTAATTATATGTTTATATTATGGGGAATGGTTTATTATTACACCAAGTGCTATGGAATTGAATGGTTCATTCTCTTGGCTGATAGTTATTGTTGTATAATTTTTATGTTGAAATAATGTTGTAGTCTATAGGGCCTTTGGGTACTAGAAATGCATGAAGTCACATTCTTATCCTGTGTGATTGCTTTTTATGTTTGTGTTGCATTGGCTTGTGCATGTTAGTGTAGTACATTTAGTTTTTCTTTTCAAGAATATATATATATATATATATATATATATATAACTGAAAATTAAGCTGCACTTCCTTTGATATTTATTTTGTTTTTTTTTTCCGTTTTTTGAAATTTATGTTTGCTACCTTTTAAATTTCTCATCATAATTTTCACTTTTATTAAAAATATGATTTGAATTTTTAGTCAATACGAAATTTATTGTAAATGTCAATATTGTTGAAAATATTTTAAAAATAGCAAAATTTCAGATTTTATGATAAACATTGATAGACTTCTATCAAATCACGAACCTAAAATTTTACAATATTCTATAAATATTTTGATTCATTTTTCATATTTAAAAATGTCTCTAAATATATATTTTTTAGTTTTAGAAATAGAAAATAGGAAAACCAACAAATTATTAAAGCCCAAAAATTTCCCCCCTTTTTTCAGTACAATAATTGCCAGAAGTCTCGAGATATTACGTGATAAACCAAATATTATAAACTGTACCGATTAAATAGATGAGAATAACAAAAATCAATACTCGAAAAACTCTTCGATGTTTAAATTGCAAATTTAATATTTCTGTTTGTTCAGAAGTTTACTTTTTTTTATTAGGGCAATACTGTCTAGAGAGTTTTAAATTCCATCTAACATGGATTTCCTACCGTCCATACCCCATTGGATGTTCATTCTTGGATATCAACGAAAACAAATGTAATATAATAGATAAATTAATTAACATCAATCCATTAATTTTAATTATTTATTAGATATAACTACAGTACTTAGGGTTAATAAATTTCAACTAATACATTTTCGACTAGTCTTTTATGTTATTTTAACCATTTAATACAAAATTTTACTATTTTAGTAATTAAATTAAATATAGTTTAATTAATGTGTAATATAAAAATACTACTTTATTTTAAAAAATTATTACAAATGACAAAATAAACCGAAACATTTATACGATATAACAAATCTTGAATTTTATCAATGATAAACACCTATTGATATTTTGATGTCTAATCTAGACCAAATCAAATTGAACTTAAACCTTATTGGATCCTTCATAAACAAATAAATTTGATTTTGGCTAAACATTTCTGAATTTATTTATTTATTTATTTTAGCACGAATTTTACTTATTTAGCAAAAACCCTTATACTATAGAATACGTCTACGAGGACGAATCAGTAATGAAGGTAGCAATCCCACCGTCAAGACAACTATCTTTTTTACTTCAGTTGAAACCAATTTGCAACATAAATAAAATTTTGCGGGTAAATTTATTCTCAATATAATTATATATAGGTGAATCAAATTTATATATATACCTTAACCACTAACCTAAATTCAAACTTAAACCACGTAAATCTAAATTAAAACATTTTTTTAAGCAATTGTCATTTACATTGTGTATTTTATATTTTAACATTCGTGTGTGTATATGTGGACAAACACTTCAGGTATATATATTAAAAAAGAAAAAGGTAATAATATCAACAAAATTTGTAAATTATATAGAAACCAAACCAGTTGCAATATGCAAGGGAACTAACCTCTTGATTTTTGTGTCACTCATCCTCCTCCCGAAGCAACGAAAAGGAGAAAGGAGAAAATTTGAATCCGTCTCCAGCATAGAATTTGTTCTGAAACTCCACCCAGTGGAGCCTCAAGGCGTGTAGGAATGCGCTTAGAGTTTCCATAATTAGTAAAACTCCCACAGTTGCAAAAATGAAAACGGCTATTCCTATTATCCGGATGATCAAACTATTGAACCTGCAGATGTGTTATCGATTTTCTTCAATTGCAGTTTTTCTTTTTTGTTTCAAAATAGGGAGAAGAAAAGGTGTGGTAGCAGAACTAACCCCCAAGCTAAGAGTAGAACCTTGTCGTAAAATACACTCGACAACTCCGAATGCGCTAGACTGAGTGAAAGAAAAATCAAAGGTAAAGTGTGTCCTGAGTAAAAAGCTTATAAATGATGGCTAGAAACATAGAAATTTGGACCTGAAAAACTCCTTTGAATATTCATATATTCAGTTCACATTCCTATTTTTTAAAATAGTTTCAAACGACCCTCTAACTAGCAAAATCTAGAAATTATCGTTTCTGTTAAAATTTTCGCTCCAATAAGCTTGTTACTCAGATTTATGTTTCACTTGCTGTGAATACTAGATTCAGTAAAGCTAATTAACTGAAGGGTATGATCCTAACATTCGCAAACTACATGAATGTTTAAAGCCATTTTAAAAATGACTGGCATAATTGTCATAGAGGTAAAACACAACACAGTGTAATTTGTACTTATCACATCTTTAAGCAAAGAACAGTTGAGATTTGAATTCCTTTTTAAATATTTTCTTCTATAAATCTGACATTTCTATAGTGAAATAAACTGACATTTCAGATAGTAAGCTAAAACTTTGATAACCATTTGGTTTTTAGTTTTTGGCTTTTAAAAATTAAGTTAAAAAACATTACTCCCACCAAAGGTTCTTTGATGTTTTAGAAAACAAACCAAATCTTGAAAAGAAAAGAAAGTAGTTTTCAAACACTTGTATTTGTTTTTAGAATTGGACTAAAAATTCAATTGGCTTCTTTTTTCAAGAAATGTGAGAACCATAATTTGGACTTTAGAAGAAAATAAACATAAAAAGATAGAATTGAAATGTGAACTAATTTAGTAATTTTTAATTTAAGTAGTTGTAACTGGCTGTCTGGTAAAAGACCAACCAACAAAGGAAATCGACAGATTCCTATAATAAAAGTTAATGCATCTAAATGTAACATTTATGGTAAAGAATGATAAAATGTTGTGTGTTTACCTGAGGGCCCATAGGCGAAGATAGGATGCTGTGTTCGATACTGCACCAAGAACAAACTCTATGGTATGTATAAGTTGGTGTACAAAAACCTCACTGAAATCAAACTCCTCGTGGCCATGGGAATCGTGGTGTCGTTCTATTTCGTGATTGTCATCTGTACAGTGAAGTACGGAGTAGGATTGACCTTGGTGCCTCTGGAAAAGATGAGATCAGAAATTGTGATGAATGACAAGGAAAAGTACAATAAAATAAAATAGAGAAGCAACTATAAGAGACTTTAGAAAATACAACATCACCTACTTCTTCATTTTGTTTCTTCAAAAGAAGAGGCTTGGGAAATAACATCCATGGCACGGCAATGAGGGCAGACAGAAGTAACAGAAGCTGGTAGTGTAAAAATGTAGTTATTTAGAGTTGATTCCAGTTCAATAGTACGAAACCTTTTTTGAAGGGCATGAAACATCAGGAGAACCTGAAGGAACTTCTGTCCTGAGAAAAGCTGATTTTCACCTAGATCATCAGTAGGACTCAAGAACATATATATCATTACGTGATACAGATCAGCTTGAGATCCAGAGTACCACTTCACAATTATGAGAAGTGAGAGGTAACCAAATAAGCTGTTCAAGAATATGATCTGGGGAACAAATTGGTACCTGAAACAATGAAACAAAATTTACAATTATAAAGAAAATGGAATCTTCACACTTGAAATAAAACACCGGATTCTTGTATTAAGATATTATGATTTGGAGGTGATTTGTCGCAACTAACTCATTAGGGAAGCTCTTCTATGTTTCATTTATTAAAGAAGCATAATTGATTGATTTGTTAAAAATATATTTTTAATTTCATTATTGATTA ATGGAGCGCTTCAACGCAATCGCTCTCTTCTTTGCTATTGTACTATCGGCGACAGTAGCTTCCGGTGTATCTTCCGATCAAATCAACGGCGCCGTAAGCGACGGCGAAGATCTTTTGATTCGTCAAGTCGTCTCCGGTGCCGATGATCGTCTTTTAACCGCGGAACAACACTTCCAGAACTTCAAACTCAAGTTCGGAAAGACTTACGCCACTGATGAGGAGCACGATTACAGGTTCCGTGTCTTTAAGGCTAACCTCCGCAAAGCGAAGCGCCACCAGAAGCTCGATCCCGACGCTGTCCACGGCGTCACTCAGTTTTCCGATCTCACCGAGTCAGAGTTCCGTGAGAATTTCGTCGGGCTGAATCGGCTCCGTCTTCCTGCTGATGCTCATAAGGCTCCGATCCTTCCGACTGATAACCTCGCCTCCGATTTCGACTGGCGCGATAAAGGTGCCGTAACGCCGGTTAAGGATCAGGGTTCTTGTGGCTCGTGCTGGTCTTTTAGTGCTGTTGGAGCGCTGGAGGGAGCTAATTTCTTGTCAACTGGAAAGCTTGTTAGTCTGAGTGAGCAACAGCTTGTGGATTGTGATCATGAGTGTGATCCGGAGGAAGCTGGTGCATGCGACGCAGGGTGCGGGGGGGGACTAATGACTTCAGCTTTTGAGTATATTTTGAAAGCAGGTGGGTTAGAGAGAGAGGAGGATTATCCTTACACCGGCACGGATCGTGGCTCTTGCAAATTCCAAAATGGCAAAATTGCTGCCTCTGTAGCCAACTTCAGTGTCATTTCAAACGATGCCGATCAAATTGCAGCCAACTTGGTCAAGAATGGCCCTCTAGCAATTGGAATCAATGCAGTTTTCATGCAAACATACGTAAAGGGAGTTTCATGCCCATATATATGCTCTAAACGAAATTTAGATCATGGAGTTCTCCTTGTAGGGTATGGATCTGCAGGCTTTGCTCCAATACGGTTCAAGGAGAAACCCTACTGGATCATTAAAAACTCGTGGGGCGAAAATTGGGGAGAAAATGGATATTACTTCATTTGCAAGGGCAAGAATATCTGTGGATCCGAGTCGATGGTCTCGTCCGTGGCTGCCACCCCAAATTGA MERFNAIALFFAIVLSATVASGVSSDQINGAVSDGEDLLIRQVVSGADDRLLTAEQHFQNFKLKFGKTYATDEEHDYRFRVFKANLRKAKRHQKLDPDAVHGVTQFSDLTESEFRENFVGLNRLRLPADAHKAPILPTDNLASDFDWRDKGAVTPVKDQGSCGSCWSFSAVGALEGANFLSTGKLVSLSEQQLVDCDHECDPEEAGACDAGCGGGLMTSAFEYILKAGGLEREEDYPYTGTDRGSCKFQNGKIAASVANFSVISNDADQIAANLVKNGPLAIGINAVFMQTYVKGVSCPYICSKRNLDHGVLLVGYGSAGFAPIRFKEKPYWIIKNSWGENWGENGYYFICKGKNICGSESMVSSVAATPN Homology
BLAST of PI0001690 vs. ExPASy Swiss-Prot
Match: P43296 (Cysteine protease RD19A OS=Arabidopsis thaliana OX=3702 GN=RD19A PE=1 SV=1) HSP 1 Score: 546.2 bits (1406), Expect = 2.9e-154 Identity = 265/365 (72.60%), Postives = 308/365 (84.38%), Query Frame = 0
BLAST of PI0001690 vs. ExPASy Swiss-Prot
Match: P25804 (Cysteine proteinase 15A OS=Pisum sativum OX=3888 PE=2 SV=1) HSP 1 Score: 521.2 bits (1341), Expect = 9.9e-147 Identity = 246/359 (68.52%), Postives = 292/359 (81.34%), Query Frame = 0
BLAST of PI0001690 vs. ExPASy Swiss-Prot
Match: P43295 (Probable cysteine protease RD19B OS=Arabidopsis thaliana OX=3702 GN=RD19B PE=2 SV=2) HSP 1 Score: 515.8 bits (1327), Expect = 4.1e-145 Identity = 244/343 (71.14%), Postives = 285/343 (83.09%), Query Frame = 0
BLAST of PI0001690 vs. ExPASy Swiss-Prot
Match: Q9SUL1 (Probable cysteine protease RD19C OS=Arabidopsis thaliana OX=3702 GN=RD19C PE=2 SV=1) HSP 1 Score: 502.3 bits (1292), Expect = 4.7e-141 Identity = 244/364 (67.03%), Postives = 295/364 (81.04%), Query Frame = 0
BLAST of PI0001690 vs. ExPASy Swiss-Prot
Match: Q10716 (Cysteine proteinase 1 OS=Zea mays OX=4577 GN=CCP1 PE=2 SV=1) HSP 1 Score: 478.4 bits (1230), Expect = 7.3e-134 Identity = 238/373 (63.81%), Postives = 281/373 (75.34%), Query Frame = 0
BLAST of PI0001690 vs. ExPASy TrEMBL
Match: A0A1S3BB40 (cysteine proteinase RD19a-like OS=Cucumis melo OX=3656 GN=LOC103488015 PE=3 SV=1) HSP 1 Score: 725.7 bits (1872), Expect = 9.7e-206 Identity = 355/373 (95.17%), Postives = 362/373 (97.05%), Query Frame = 0
BLAST of PI0001690 vs. ExPASy TrEMBL
Match: A0A0A0LPD9 (Cysteine protease OS=Cucumis sativus OX=3659 GN=Csa_2G363570 PE=3 SV=1) HSP 1 Score: 723.0 bits (1865), Expect = 6.3e-205 Identity = 349/370 (94.32%), Postives = 360/370 (97.30%), Query Frame = 0
BLAST of PI0001690 vs. ExPASy TrEMBL
Match: A0A5A7VA47 (Cysteine proteinase RD19a-like OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold82G005290 PE=3 SV=1) HSP 1 Score: 712.6 bits (1838), Expect = 8.5e-202 Identity = 352/373 (94.37%), Postives = 358/373 (95.98%), Query Frame = 0
BLAST of PI0001690 vs. ExPASy TrEMBL
Match: A0A6J1KL64 (cysteine protease RD19A-like OS=Cucurbita maxima OX=3661 GN=LOC111496246 PE=3 SV=1) HSP 1 Score: 687.6 bits (1773), Expect = 2.9e-194 Identity = 336/371 (90.57%), Postives = 347/371 (93.53%), Query Frame = 0
BLAST of PI0001690 vs. ExPASy TrEMBL
Match: A0A6J1GIG1 (cysteine protease RD19A-like OS=Cucurbita moschata OX=3662 GN=LOC111454190 PE=3 SV=1) HSP 1 Score: 685.3 bits (1767), Expect = 1.5e-193 Identity = 335/371 (90.30%), Postives = 347/371 (93.53%), Query Frame = 0
BLAST of PI0001690 vs. NCBI nr
Match: XP_008444769.1 (PREDICTED: cysteine proteinase RD19a-like [Cucumis melo]) HSP 1 Score: 725.7 bits (1872), Expect = 2.0e-205 Identity = 355/373 (95.17%), Postives = 362/373 (97.05%), Query Frame = 0
BLAST of PI0001690 vs. NCBI nr
Match: XP_004152668.1 (cysteine protease RD19A [Cucumis sativus] >KGN62647.1 hypothetical protein Csa_021896 [Cucumis sativus]) HSP 1 Score: 723.0 bits (1865), Expect = 1.3e-204 Identity = 349/370 (94.32%), Postives = 360/370 (97.30%), Query Frame = 0
BLAST of PI0001690 vs. NCBI nr
Match: KAA0065192.1 (cysteine proteinase RD19a-like [Cucumis melo var. makuwa]) HSP 1 Score: 712.6 bits (1838), Expect = 1.8e-201 Identity = 352/373 (94.37%), Postives = 358/373 (95.98%), Query Frame = 0
BLAST of PI0001690 vs. NCBI nr
Match: XP_038884968.1 (cysteine protease RD19A-like [Benincasa hispida]) HSP 1 Score: 709.1 bits (1829), Expect = 1.9e-200 Identity = 341/371 (91.91%), Postives = 354/371 (95.42%), Query Frame = 0
BLAST of PI0001690 vs. NCBI nr
Match: XP_023002391.1 (cysteine protease RD19A-like [Cucurbita maxima]) HSP 1 Score: 687.6 bits (1773), Expect = 6.1e-194 Identity = 336/371 (90.57%), Postives = 347/371 (93.53%), Query Frame = 0
BLAST of PI0001690 vs. TAIR 10
Match: AT4G39090.1 (Papain family cysteine protease ) HSP 1 Score: 546.2 bits (1406), Expect = 2.0e-155 Identity = 265/365 (72.60%), Postives = 308/365 (84.38%), Query Frame = 0
BLAST of PI0001690 vs. TAIR 10
Match: AT2G21430.1 (Papain family cysteine protease ) HSP 1 Score: 515.8 bits (1327), Expect = 2.9e-146 Identity = 244/343 (71.14%), Postives = 285/343 (83.09%), Query Frame = 0
BLAST of PI0001690 vs. TAIR 10
Match: AT4G16190.1 (Papain family cysteine protease ) HSP 1 Score: 502.3 bits (1292), Expect = 3.4e-142 Identity = 244/364 (67.03%), Postives = 295/364 (81.04%), Query Frame = 0
BLAST of PI0001690 vs. TAIR 10
Match: AT3G54940.2 (Papain family cysteine protease ) HSP 1 Score: 421.8 bits (1083), Expect = 5.8e-118 Identity = 205/346 (59.25%), Postives = 254/346 (73.41%), Query Frame = 0
BLAST of PI0001690 vs. TAIR 10
Match: AT3G19390.1 (Granulin repeat cysteine protease family protein ) HSP 1 Score: 220.7 bits (561), Expect = 2.0e-57 Identity = 129/325 (39.69%), Postives = 185/325 (56.92%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (PI 482460) v1
Date Performed: 2021-10-25 Position : 0 Zoom : x 1
Relationships
The following mRNA feature(s) are a part of this gene:
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
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