Spg024745 (gene) Sponge gourd (cylindrica) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATGACGGTCCTCATTCAGAAGCCGGAGTTTGGTGGTACTTTTTTTTTTTTTTTGGTTCTGTTTCGGTTTGTTGATCTCGGTGTTTTTGGTCTGTGGAGATCTGAAATTGAGGCTGCCGGCGAGCGATTGATGGTGTTGATTTTGTAGGAGATGCGGCGGCGGCGGCGAATGAAGAGAGGGAGTTGGTGCTGGACGGAGTGTTTTCGGTGCCCTCTGCCAATTCGTTTGGCCATGGCTTTAGGTTTGCTTTTCTTTTTGGCCCTTCTTTTACGGGAAATTTCAAAAAAAAAAAAAAAAAAATTCCCCTCAAAATTTTTCATTTTGCATCCATTTTTATTTCTCTCTAACTAAAATTGATTTTTTTTTAAGGTTTTTTTAAGAGAATTCTAACCAAGACCTCTCTCTGATGATTATACCAGTTTTATGCCAATAGAGCTAGCTCATGTTGACGGATTTTTTTTAGTTTAACATTTAGGGGTAAATGAGATAATAATTGCAATTTAAAAAAAAAAAAATTGGTAAAACAGATTCTTCTGAAAAAAAATTAGGAAAAGCATGCTGATTTTTTGTTTTTATTGGAATCCGTGGCTTGTACCTACGGATTCAATTTCAAGGATGACTGGTCAACGTTCGAAATTCAAAATCTGTTTTTCTTCTCTTTTTTGTTTTTTCGAATTTTTTTTTATCTTTTTTTAATTAATCATTGTAAGCTTTTTTTTTTCCTGGTTCATTTTCTGATTTTTATTTTTTTTTTATTTTCAAATTTGTATTTTTATTTCATATTGAAATTATGGTAATTTTTTTTCTTTTTTATTTTTTTCTACCTACCAATGGAAAATTGATTGTAATCATTTTATTGATTTTTTTCTTTTAAAATTTAGTTCTAGTTTATAATTTTGTATTTTTTTTCTTCAAATTATGATCATTGAAAAATGATTACCATACTATTAAAAGTTATTATTATTTTATTCTAATTTAATAACTTTTTTTTTTCATTTTAATATAGAGTTTTCTTTTTAATTCAAAATTTTATTACCCTAAATTATAAAGTTAAAATATTGAGTGTGACTTATAAAAGTTTGAAATAAATAAATAAAATTTTATGGCCACAAATTAGGAGATTATAGATTTTTTATGCTAAAAGTTAATTATAAACTAGTAAAATTTAGATCTAAATTTTTCATTTTAATATTTTATTTTAAATTTTAATTTTTTTTCTTCTATAAATCAAATGATTGAAATATTATTATCATTTTGATTTAAATTTTCTTCTATAAATCGAACAATTGGAATATTATTATCATTTTGATTTTGTTGTAAATTATACAAGAAAAACAAAATCCAAATTTAAAACAAAATATTAAAATGAAAATTTTAGTTCAGACAAATATAAAATTTTAAAATTCGTAATAAAGATGTAATTTCATAATTTTACTAGTTTTAAATTAACTTTTGAAATAAAAAATTAATAATCTCACAATTTGTGGCCATAAATATGTATTTTTTTTAATTTTAAACTTTTAAAAACCACACTAAATATTTTCACTTTATAATTTAGGATAATCAACTTTTGAATAAAAAAGTTGTACACTAAAATGAAAAAATAAAATTCATTACATTAGAATAAAATAATAATAACTTTTAATAGATGGTAATTATTTTTCAATTATCATGATTTGATAAAAAATACAAAATTATAAATTAAAACCAAATTTTAAAATAAAAATTCAATAAAACGATTCCAATCAATTTTCCACTAAGTTGAAAAAATAAAAAAGAAATAAAAACTTATCATCATTTTAGTCATTAGGAAAGAATAAATAAATAAAAATTTGAAAATAAAAAAACAAAAATCAGAAAATGAAAAAGGAAAAACAAATTTTACAATCATCAATTGAAAAAAAAAAAACTGAATTTGGAGAGTGGCTGACAAGTCAACGATGATGTGTCTTGGGAAGTGTAATTTGAAATGGAATCCGTGGGTACAAGCCACGGATTCCAATAAAAACAAAAAATTAGCATGTTTTTCCTAATTTTTTTCAAAAGAACTTGTTTTACCCAATTTTTTTTTTAAATTGCAATTATTATCTCATTTACCCGACATTTAGAGATAGGGAATTCGAATCTCGAACAAATAGTGTCAATTATGGTTGAGTTATACCCACTATTTCTACTATTTATTCAATTTTTATTAGTTCACCCATTAATTTTAACCATAAACAATATAAAAATCTTTATGAATCACTGATTTTAGTAATATCAAATTTTGCACATATTTAAATTTGCTTAATACACGGATTAATTATTGAATAATTTTGTCAAAATTAAAAAATCTAACTCTAATGTCCTTTTTCGATAAAACCGTATCAATTTTGTTCTATACAATTCATAGAAAAGATACAAATATTTTTTAACGAGTTTTCAAGCCAAAACTCATTGGATGATACAAATTGCAACACTTTTTAAGTTTAAGAATAATATCCAAGTTTGGAATATAGTTTTATGAAATTGAAAATTTAAGGTAAAAATTGATTTTTTTTTTTCCTACATTAGTATTTTTTGCTGATCAAAAAAAAAAAAAAGAAAAAAATTAGTATTGTTTGAAAATTGTGCTGATATAACAAAATGGAAATGTTTTGGGTAATTTTCATCTATGTCGGATTTTTCCCATTTAAGGGAATTTAGATTATTATTACTATTTTTAATTGTGAAGGAAGAAATGTGACGATGATAACAGGAAATTAGGACGAATGTTTTAAATGCAATTTTTTTTAAGATATATTTTAAATGCAAAATTCGAAATTGTCTTGGAACACAACCAATTTTAAAAAGTGTTTCTTAGTGGTTTTTTTTTTTTTTTTTGTTCAACAATATTTAGGGTGAAGAGATTCAAACCTCTGACCTCACGGTCAAGGGTACATGTCAATTACCGTTGAGCTATGCTCGCTTTGGTAGTGTTTCTTAGTATTTAAACATTTGTTTAATAAGTGTGTATATATATATATATATATTTGAGTTCAACAACATTTGAGGGTGAGAGATTCAAATCAAGATATGTCAATTATCGTTGCTCGCTTTGGCGTATATATATTTTTGAGTTCAACAACGTTTGAGGGTGGGGAATTCGGAATTCGAACCAGGGTATTTGTCAATTATCGTTGAGTTGTGCTCGCTTTGACTTAATTCACCTAGATATTGAAAATATATGAACTTATTAAACACTTTATAAAATTCTCTTTTTTTAAAAAAAAAAATGAAGGATATTATAAAATTTAAAAGCTTATTAAAACATAAAATTGAAAAGTTGAGACGCTTACTAACATTAATCCTATATAACTTTTAAAAGTATTAAAAGTATTATTAGAGCACACAATATTAATTAAAAAACGAAAATATTGATTTAAAAGAGAATTGTAAGTTGTTCCTTAAGAAAACAATTTTAAATTAATGTTTATGAGTGTTTTTTTTTTCAATTTTTATTTGAAAAGTTACTATTTTTTAATGTTATTTTTAGATAAAAGTCACGTATTTTACTGTCAAACTACAATAAATCTCATGGTTTTTACCTAAAAAACCTAGATATATGAGAATTGCTTCAAATAACAACAAATTATTAAGGTAATGAGGGTTGGTTATCTATTTATTTATTTTTAACATACTTCCCAATTTTACCCTCAAACTTAATTCAAACATAACTTTTTAAAAACAATATTTTTAATTTCTTACCAATCACTTTTATTTTCTTTTATTTTCTTTCTTTTTTATAAGGCTTCTCAACCATTATATAAGAAGGTTTTTTTTTTTTTTTTTAATCAACAATATGGAGTTGGGATATTTGAACTTGTGATCTCTCGATCATAAACACATACTTTATGCAAGTTGAGATTTGAATATTCAACTTGTAATTTCTTTTTTTACCACATGTGTGGATGAGAGATTCGAACCAGCAACCTCTTTTTCATTAGTATAAATTTTATGCTAGTTGAATTATGCTTATGTTGGCTTCGTTTTACAATATCTTAATCACTATTCATAAAATAAAGCTTCAACTTTGACATAATAAATAGGCCAACCATAAAAACAAAAGTAAAAACATGCATTTATTAATTATTACTTAATTAAGTGATTAAAATTTAGAATTATTATATTCCAAATATATTTGAAATGACATTTATAGCCCTTGTAAAACACAGGGATTATCATGCGGAAAGCGAAAGGCAAGAAGGGGTAGAGAATTTCTACAAACGCAACCACGTCAATCAAACTTACGATTTCGTAAGCAATTTCCTTTCTTCAAAATTCTGCTATTTCCGTTACGACGTCGTTTCGTTCTTCCCTCCCCGCTCTGCAGTTGAAATTCTCGAACGAAGAACTGTTCTTCAAGCGATCATTGAAAATGGCGGAATTTCTTGTTACAGGTGAAGAAGATGAGGAAAGAGTACGGCCAACTGAACAGATTGGAGATGAGCATATGGGAGTGCTGCGAGCTTCTCAATGACGTGGTTGATGAGAGCGATCCTGATTTGGATGAGCCTCAAATCGAACACTTGTTGCAGACCGCTGAGGCCATCAGAAAGGATTATCCTAATGAAGATTGGCTGCATTTGACTGCTCTTATACATGGTATTCATCCCTTTCCTCTGATGGTTTCATTCTAATTGAAATGTGCTTATTTAGATTGCAGTTTCCAGAGTTTTCTGTCTCTGCTTGTAATAGAATTGGGGGATGTTCTTATTCTGGTTGAGCCCTGAGATTTGTTCACTGGTAGATGATAGAGAGGGACAAATGAGCCTTGGTTTAAAGTGGAATCAAAGAGCATATTGGCAAATGTGAATAACATTTCCATTCTTTTTTATTATTTTTTTGTGGTAGGATCTAAAATTAAATTATGTTAGTCTTGAGTTTAAAGGAAATGGTATGTTACCAATAATGTATTTGAGAATTTTGATCCCTTTCATATCCTAGAAGTGATTTTAGGTTGTTTTCTACATATCATAAAAGTATCTTGAAGAGCATTTTTTTTTTTAATAATGTGATATTCTAAGATGTTTTGTTTTGGTATTTTTAGGATGTTTAGCTACAAATCAAAGTATATTATTTAAAATACTAGTCTTAGGAGTGTTCCCTAGTCAATCATCATGGGTTAGCCTATGGTCAATAAGGGCCATGAGAATGATAGATGGCTTAGAGGGGATGAGTTGAATCCATGATGGCCACAGATAGAATTTAATATCCTACGAATTTTCTTGACAACAAAATGTAATAGGGTCAGTCTCTTGTCAGAGTGATATATGTAGAGTTTATATTCCTAATGGTTTTATTACAATAATGAATAGGTTTCTGTCAGTCTTTCTTTTTTTCCTTCTAACTTTCTTACTTATTTCAATTCATTTTGGTCCTTGTATTTCTTAAATGTTTTGTCTGGTCCTTGCATTTTGAATAAAATTAAATTTTCGTATTACATCAATAGATTTTCTTATGGTATCACATTGACTTGTGTGCATTTGAGACTGCAACAATCATTTGACTAGTTTTATTTCCTTATTTATTTCTTCTATTTATCTATCTGTCTTTTTACCCTTTAGACCTTGGAAAGGTGCTTCTTCTTCCAAGCTTTGGTGGTCTTCCTCAATGGGCAGTTGTAGGTAAGCATGAGCTTCAATCTACCGTGCAGCCAATCACATGATTCTGTATTCTTGTCTTTTATTTTATAAAGTTTCTTTATTAATTGTCATTATCATACCCTGAACCAACTTGCAGGAGACACCTACCCTTTGGGTTGTGCTTTTGATGAATCCATTGTCCACCACAAGGTCTTGGTTTCTCTATAATTGAAGTGCCAACAACCTCTTCACTTTTCTTACAACCGCTAACCCGTCTTACCCTTTAATTACAGTATTTCGTGGAAAATCCTGATTACTATAATCCAGCTTATAACACTAAATACGGAGTTTACTCGCCAAATTGTGGACTTGACAATGTAATGATGTCTTGGGGGCATGATGACTATATGTATCTGGTATCCTTCCTGCCTCTACTAAGTACAGAGTATTGAATGTTGTCGTTCCTAAACTAAGGTTATAAAGTCAGTAATTACATGAAACTTTCAGGTGGCAAAAGAGAATAATACTACTTTACCTTCTGCAGCACTTTTTGTCATCAGATACCACTCATTCTACTGTAAGTTGAAAAAAAACATGTCAAAAACCAGTTTTTCTTTCTGAAACTTTTAACTATGAAGAAACCAGTAAGCTTACTGTAAATATTTGGTTCTTCAGCTTTACATAGATCAGATGCATATAAGCACTTGATGAATGAGGAGGATGTCGAAAACCTGGAGTGGCTGCGCATATTCAAGTAAGACAGTATTTTTATTCGCTGCCATCTTCAGAGTTTGCAACTGATATGAATTTTGAGTTTCTGAGCTAACCAAAGCCGATTTGCTTTTCTCTTTCCCCCATGAAGCAAATATGATCTCTATAGCAAGAGTAAGGTTCGGGTTAACGTTGACAAAGTGAAGCCGTACTATCTCTCTCTCATTGAGAAGGTAAGCACACTCTTAATCTCGTAATCCATATTTTCCTTCTTTTCCAGTGCATTATCAGTTACTCAACAGGAAAATCATATTTGGTTGCAGTACTTCCCTGCCAAGCTAAAATGGTGAAACAAAACCTTTGAGATTTGAAGCTGGGTGATAAATTGGCTCAAACTTCCTTTCTATTGTGGGAATCAGAGTTGTGTATTAAAGATAAATAAATGAATAATAAGAGTTGTTATTTTCTAGCTTCTATGCAAATATTGTACCAGGGTTTCGCTCAATAAAACTTTTGGTTTATTCCCGTGACTTGTCCACCTGAAATGAAAAGACTACAAAACTACCTGCTTTTTGACAGGAAGGAAGATGTTCCAATCGGTAATAAGTCAAAGCAATATTTTAAATGAAGACTAAATTTGTGGGTGAAAACCAAAATGCGTATGGTTGATGATCAACTTGCGCTAGCAATAGATCTGTCATAAGTGATATATAGTCCAATCAACAACAGTGAGGATTAAACCTTTGTTTGCAACAATATGCTGCTAAATTAAGCAGGTTGAATATAAACATATCGAGATTCATGGATTCTTAGGCTAAACCTCAACACCAGAGCTCTCCATGAGATTGAACATTGACTCAATTAAAGGGATTCAAGTTTCAGCAAACCACATGTTTATTCAACTAGATGCCTGGCAGTTAAAAATACAGCAACTTAAAATTTTTGGTATTATCCAGTTTTTGTATCAAATGAAACTGGAAATTCTAATGACACATACACATTTTCTTTGTTTGATATGATTTCTTCTTAGAATTTAAGGGTCCAAATGAAGGTTGATTTGGCAAAGCCTAAGTAAACAACTTGTCGAGCCAATGCTTAACTACATTTTGTAACCTTCAAAGTTGACATAAATCTCTTTTAACCATTATTTTGGAAATGCAAGTATCTTTTTCATTCTTATTGCAATATTGCTGATAATGTCAGGACAGCTTCTTCCTACCTACCTTCAGAGCTCTGCCTGGTTGACTTTCCTGTCTCTGACAGATAGAAAGTAACAGTGTGTTTTCTGAAGAGCCAAAGTTGTACATAAGCCATAGACTTTATAACTACTCATATTACTCACATTATAGATGTTACCCAGTGGCAGTACAGTGGTTTATCTCTGCCTCAATCATATTAACTCCTGCACATGCAAACTCATGCAGCTTTAACTCATAACACAACTACCATTTATCACCCAACTACCTCACCCAACCTTCTCATTAATGTTGCATGAATTCATAGTTTTCCAGCTAAATAATTTTATTCATAATGGTTTCTTGCAGGAAAGGTAAGGAAAGCAAAGAAAGCCGAGGAGAAAATTTTGCTTTCTTGGGATTTGGTAAAGGTATTTAAAACCAATTACCTTCAATAACAGTATTTCTTCATTAAAAGGGTCCTTATTGATTAGGTGGACTCAACCTCCAGCTTCCTTCAATAAAAGAAAATCTAAGGCGGGTCATCAGCTTTCCTTATAAGTTCTAATTCATGGTTCAGCTGCAAATCACATCGCTAAAGAAAATGGATTCTATTATTAGCAAAGTGTTGGTGTTGTTCTTTGCGTTTTTGCTTGGGAGTGGAAATGGTCAAGATACTTTGGTGCCTGCTATCATTACGTTTGGTGATTCTGCTGTGGATGTGGGAAACAATAACTATCTTCTCACTATTTTCAAGGCCAATTACCCTCCATATGGAAAGGACTTTGTGAATCATCAGCCCACTGGCAGGTTTTGCAATGGAAAACTTGCTACTGATTTTACTGGTACGTGCAAAAGCTTTCATCTCCATTAGAAATTAAACACATTGGCCTTGCATGATGGCTGGATATACTTCCTGCATCAAGTATAAAGCCATCTTTTTCTTTTAGCGCAAGGGCACACTTTGTCGGTGCCACGCCCTCCTACTTCTGGTTCTTCATGTGTCTTGAGAAAATCTATTTGATTTCTTCTTTTATGCTTCTGAGTTCTGAAAACATGAAAAACAGAAGACAAAGTTTCATTTCATAATCTGTTGATTCTGTCATTTCCATTTTAAGTTTTAAATGGAATAAAATGGTAGTTAGTTTGGTTCTCTCTCTCTCTCTTTCGTTTTCCTGCAAAACTATAAAGAAGAAGAATGATATATGATTTTACATATTTATCTGTTTCTATGATCTAAACATGCTTTTAGGAAATTTTCATAAAAACAAGACATTGGAAACCTAAAACAAGTACAATTCTCAGAAGTTCTGAAGAAAACAAGATATTGAAAGGAAAGAATATTAAACGAAGCCTGATTATCAAGTTTTTATTGACTGTTGAGTTATGTGTACCGTCATTCAAGAACTGCTGTTATATTTAATTCCTGTAATTATTATTATTGTTTTTTTTCCTCTCCAGCTCAAACTTTAGGATTTAAGACCTTTCCATTGCCGTACCTTAGCCCAGAGGCATCCGGTAAGAATCTTCTAATTGGAGTCAACTTTGCCTCGGCTGCATCTGGTTATGATGAGAATGCTGCCCTCTTAAATGTAAGAATGTTAACTTTTTTTCTTTTGGAAGCAGTATCAATCTGAGCAGATTAGTCCTTCTGTACTTACTTTTTTACTTTGAACTTTGTGAACAGCATGCACTCTCACTGCCTCAACAAGTTGGTTTGTTCAAGGAGTACCAAGCCAAGCTGGCTAAGGTAGCTGGTAATGAGAAAGCAGCATCCATAATCAAGGATGCACTGTACTTGCTAAGTGCAGGAAGTGGCGATTTTCTGCAGAACTATTACGTCAATCCTTATATTAACAAGGTCTACACTGCCGATCAGTATGGCTCGATGCTCATTGGAGCATTTACAACATTTATTAAGGTATTTTATTACTGTTGAGAAAACCATTTGGCTTTCCAGGTCATTCATGACCAAGTTTAAACGAAAAATTGCATGAAGCATGTTGGATTGATGCATTTCTGAAATTGGAAACAGGATATATATGGTTTAGGAGCTAGGAGAATTGGAGTGACTTCACTTCCTCCATTGGGTTGCTTTCCTGCTGCTCTCACCTTGTTTGGCAACCATCAAAGTGGGTGTGTCTCAAAGATCAATTCTGATGCGCAAGCCTTCAACAAGAAGCTGAATTCTGCCGCAGAAAGTTTGAAAAAACAACTTCCAGGTTTTAGAATTGTCATATTCGACATTTACAAGCCGCTTTACGATGTCATCAGTTCTCCATCCAAAAATGGTAAGGATGAAGCTTATTCTTCCTTGGGGGCAAGCTTTGTAGATTGTCTTGACATTGAATGAAGCACCAGCAAGATGCAAAATGGATCACTAATTTTCTGATGCTGTTTTTTTTCTTTTTCTTTGTCAGGCTTTGTGGAAGCCAGAAAAGGCTGCTGTGGAACAGGGACAGTGGAGACAACATCACTTTTGTGCAATCCCAAGTCCTTGGGGGGAACGTGTTCTAATGCAACTGCATATGTGTTTTGGGATAGTGTGCATCCATCTGAGGCTGCTAATCAAGTTCTTGCTGATGCCTTGATTGTCCAGGGATTTGCTCTTCTCTAGATCACTAATGATGGGTTGTTCTTCTTCTTCTTCACTCTCTTCTAAACTCCAAACGAATGATCTGCAATGCAAAAGTTTGTACTGTGTTTTATTCATGTATCTGAGGAAATTTGTTCTATGTACTTGATATTATAAGTTATATGTGTTAATTATGTTTTTGAAGTATGTTGAACCGCCAGAAATTACTCTTGAGTGTATTGATAAACATTCATCATTCAGAATTATATGTTTTAATTTGGTTTAAAAGAAAATTAAGGAAAAAATACATTTTTAGTCTCTG ATGACGGTCCTCATTCAGAAGCCGGAGTTTGGTGGAGATGCGGCGGCGGCGGCGAATGAAGAGAGGGAGTTGGTGCTGGACGGAGTGTTTTCGGTGCCCTCTGCCAATTCGTTTGGCCATGGCTTTAGGGATTATCATGCGGAAAGCGAAAGGCAAGAAGGGGTAGAGAATTTCTACAAACGCAACCACGTCAATCAAACTTACGATTTCGTGAAGAAGATGAGGAAAGAGTACGGCCAACTGAACAGATTGGAGATGAGCATATGGGAGTGCTGCGAGCTTCTCAATGACGTGGTTGATGAGAGCGATCCTGATTTGGATGAGCCTCAAATCGAACACTTGTTGCAGACCGCTGAGGCCATCAGAAAGGATTATCCTAATGAAGATTGGCTGCATTTGACTGCTCTTATACATGACCTTGGAAAGGTGCTTCTTCTTCCAAGCTTTGGTGGTCTTCCTCAATGGGCAGTTGTAGGAGACACCTACCCTTTGGGTTGTGCTTTTGATGAATCCATTGTCCACCACAAGTATTTCGTGGAAAATCCTGATTACTATAATCCAGCTTATAACACTAAATACGGAGTTTACTCGCCAAATTGTGGACTTGACAATGTAATGATGTCTTGGGGGCATGATGACTATATGTATCTGGTGGCAAAAGAGAATAATACTACTTTACCTTCTGCAGCACTTTTTGTCATCAGATACCACTCATTCTACTCTTTACATAGATCAGATGCATATAAGCACTTGATGAATGAGGAGGATGTCGAAAACCTGGAGTGGCTGCGCATATTCAAGAAGGAAGATGTTCCAATCGGAAAGGTAAGGAAAGCAAAGAAAGCCGAGGAGAAAATTTTGCTTTCTTGGGATTTGGTAAAGCTGCAAATCACATCGCTAAAGAAAATGGATTCTATTATTAGCAAAGTGTTGGTGTTGTTCTTTGCGTTTTTGCTTGGGAGTGGAAATGGTCAAGATACTTTGGTGCCTGCTATCATTACGTTTGGTGATTCTGCTGTGGATGTGGGAAACAATAACTATCTTCTCACTATTTTCAAGGCCAATTACCCTCCATATGGAAAGGACTTTGTGAATCATCAGCCCACTGGCAGGTTTTGCAATGGAAAACTTGCTACTGATTTTACTGCTCAAACTTTAGGATTTAAGACCTTTCCATTGCCGTACCTTAGCCCAGAGGCATCCGGTAAGAATCTTCTAATTGGAGTCAACTTTGCCTCGGCTGCATCTGGTTATGATGAGAATGCTGCCCTCTTAAATCATGCACTCTCACTGCCTCAACAAGTTGGTTTGTTCAAGGAGTACCAAGCCAAGCTGGCTAAGGTAGCTGGTAATGAGAAAGCAGCATCCATAATCAAGGATGCACTGTACTTGCTAAGTGCAGGAAGTGGCGATTTTCTGCAGAACTATTACGTCAATCCTTATATTAACAAGGTCTACACTGCCGATCAGTATGGCTCGATGCTCATTGGAGCATTTACAACATTTATTAAGGATATATATGGTTTAGGAGCTAGGAGAATTGGAGTGACTTCACTTCCTCCATTGGGTTGCTTTCCTGCTGCTCTCACCTTGTTTGGCAACCATCAAAGTGGGTGTGTCTCAAAGATCAATTCTGATGCGCAAGCCTTCAACAAGAAGCTGAATTCTGCCGCAGAAAGTTTGAAAAAACAACTTCCAGGTTTTAGAATTGTCATATTCGACATTTACAAGCCGCTTTACGATGTCATCAGTTCTCCATCCAAAAATGGCTTTGTGGAAGCCAGAAAAGGCTGCTGTGGAACAGGGACAGTGGAGACAACATCACTTTTGTGCAATCCCAAGTCCTTGGGGGGAACGTGTTCTAATGCAACTGCATATGTGTTTTGGGATAGTGTGCATCCATCTGAGGCTGCTAATCAAGTTCTTGCTGATGCCTTGATTGTCCAGGGATTTGCTCTTCTCTAG ATGACGGTCCTCATTCAGAAGCCGGAGTTTGGTGGAGATGCGGCGGCGGCGGCGAATGAAGAGAGGGAGTTGGTGCTGGACGGAGTGTTTTCGGTGCCCTCTGCCAATTCGTTTGGCCATGGCTTTAGGGATTATCATGCGGAAAGCGAAAGGCAAGAAGGGGTAGAGAATTTCTACAAACGCAACCACGTCAATCAAACTTACGATTTCGTGAAGAAGATGAGGAAAGAGTACGGCCAACTGAACAGATTGGAGATGAGCATATGGGAGTGCTGCGAGCTTCTCAATGACGTGGTTGATGAGAGCGATCCTGATTTGGATGAGCCTCAAATCGAACACTTGTTGCAGACCGCTGAGGCCATCAGAAAGGATTATCCTAATGAAGATTGGCTGCATTTGACTGCTCTTATACATGACCTTGGAAAGGTGCTTCTTCTTCCAAGCTTTGGTGGTCTTCCTCAATGGGCAGTTGTAGGAGACACCTACCCTTTGGGTTGTGCTTTTGATGAATCCATTGTCCACCACAAGTATTTCGTGGAAAATCCTGATTACTATAATCCAGCTTATAACACTAAATACGGAGTTTACTCGCCAAATTGTGGACTTGACAATGTAATGATGTCTTGGGGGCATGATGACTATATGTATCTGGTGGCAAAAGAGAATAATACTACTTTACCTTCTGCAGCACTTTTTGTCATCAGATACCACTCATTCTACTCTTTACATAGATCAGATGCATATAAGCACTTGATGAATGAGGAGGATGTCGAAAACCTGGAGTGGCTGCGCATATTCAAGAAGGAAGATGTTCCAATCGGAAAGGTAAGGAAAGCAAAGAAAGCCGAGGAGAAAATTTTGCTTTCTTGGGATTTGGTAAAGCTGCAAATCACATCGCTAAAGAAAATGGATTCTATTATTAGCAAAGTGTTGGTGTTGTTCTTTGCGTTTTTGCTTGGGAGTGGAAATGGTCAAGATACTTTGGTGCCTGCTATCATTACGTTTGGTGATTCTGCTGTGGATGTGGGAAACAATAACTATCTTCTCACTATTTTCAAGGCCAATTACCCTCCATATGGAAAGGACTTTGTGAATCATCAGCCCACTGGCAGGTTTTGCAATGGAAAACTTGCTACTGATTTTACTGCTCAAACTTTAGGATTTAAGACCTTTCCATTGCCGTACCTTAGCCCAGAGGCATCCGGTAAGAATCTTCTAATTGGAGTCAACTTTGCCTCGGCTGCATCTGGTTATGATGAGAATGCTGCCCTCTTAAATCATGCACTCTCACTGCCTCAACAAGTTGGTTTGTTCAAGGAGTACCAAGCCAAGCTGGCTAAGGTAGCTGGTAATGAGAAAGCAGCATCCATAATCAAGGATGCACTGTACTTGCTAAGTGCAGGAAGTGGCGATTTTCTGCAGAACTATTACGTCAATCCTTATATTAACAAGGTCTACACTGCCGATCAGTATGGCTCGATGCTCATTGGAGCATTTACAACATTTATTAAGGATATATATGGTTTAGGAGCTAGGAGAATTGGAGTGACTTCACTTCCTCCATTGGGTTGCTTTCCTGCTGCTCTCACCTTGTTTGGCAACCATCAAAGTGGGTGTGTCTCAAAGATCAATTCTGATGCGCAAGCCTTCAACAAGAAGCTGAATTCTGCCGCAGAAAGTTTGAAAAAACAACTTCCAGGTTTTAGAATTGTCATATTCGACATTTACAAGCCGCTTTACGATGTCATCAGTTCTCCATCCAAAAATGGCTTTGTGGAAGCCAGAAAAGGCTGCTGTGGAACAGGGACAGTGGAGACAACATCACTTTTGTGCAATCCCAAGTCCTTGGGGGGAACGTGTTCTAATGCAACTGCATATGTGTTTTGGGATAGTGTGCATCCATCTGAGGCTGCTAATCAAGTTCTTGCTGATGCCTTGATTGTCCAGGGATTTGCTCTTCTCTAG MTVLIQKPEFGGDAAAAANEERELVLDGVFSVPSANSFGHGFRDYHAESERQEGVENFYKRNHVNQTYDFVKKMRKEYGQLNRLEMSIWECCELLNDVVDESDPDLDEPQIEHLLQTAEAIRKDYPNEDWLHLTALIHDLGKVLLLPSFGGLPQWAVVGDTYPLGCAFDESIVHHKYFVENPDYYNPAYNTKYGVYSPNCGLDNVMMSWGHDDYMYLVAKENNTTLPSAALFVIRYHSFYSLHRSDAYKHLMNEEDVENLEWLRIFKKEDVPIGKVRKAKKAEEKILLSWDLVKLQITSLKKMDSIISKVLVLFFAFLLGSGNGQDTLVPAIITFGDSAVDVGNNNYLLTIFKANYPPYGKDFVNHQPTGRFCNGKLATDFTAQTLGFKTFPLPYLSPEASGKNLLIGVNFASAASGYDENAALLNHALSLPQQVGLFKEYQAKLAKVAGNEKAASIIKDALYLLSAGSGDFLQNYYVNPYINKVYTADQYGSMLIGAFTTFIKDIYGLGARRIGVTSLPPLGCFPAALTLFGNHQSGCVSKINSDAQAFNKKLNSAAESLKKQLPGFRIVIFDIYKPLYDVISSPSKNGFVEARKGCCGTGTVETTSLLCNPKSLGGTCSNATAYVFWDSVHPSEAANQVLADALIVQGFALL Homology
BLAST of Spg024745 vs. NCBI nr
Match: KAA0050860.1 (GDSL esterase/lipase APG [Cucumis melo var. makuwa]) HSP 1 Score: 1182.9 bits (3059), Expect = 0.0e+00 Identity = 592/678 (87.32%), Postives = 617/678 (91.00%), Query Frame = 0
BLAST of Spg024745 vs. NCBI nr
Match: KAE8650713.1 (hypothetical protein Csa_010288 [Cucumis sativus]) HSP 1 Score: 1172.5 bits (3032), Expect = 0.0e+00 Identity = 586/678 (86.43%), Postives = 614/678 (90.56%), Query Frame = 0
BLAST of Spg024745 vs. NCBI nr
Match: KAG6581869.1 (Inositol oxygenase 1, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 1114.0 bits (2880), Expect = 0.0e+00 Identity = 568/705 (80.57%), Postives = 591/705 (83.83%), Query Frame = 0
BLAST of Spg024745 vs. NCBI nr
Match: TYK08492.1 (GDSL esterase/lipase APG [Cucumis melo var. makuwa]) HSP 1 Score: 1086.6 bits (2809), Expect = 0.0e+00 Identity = 555/678 (81.86%), Postives = 580/678 (85.55%), Query Frame = 0
BLAST of Spg024745 vs. NCBI nr
Match: QCE02297.1 (inositol oxygenase [Vigna unguiculata]) HSP 1 Score: 807.0 bits (2083), Expect = 1.2e-229 Identity = 419/660 (63.48%), Postives = 475/660 (71.97%), Query Frame = 0
BLAST of Spg024745 vs. ExPASy Swiss-Prot
Match: Q9LU14 (GDSL esterase/lipase APG OS=Arabidopsis thaliana OX=3702 GN=APG PE=2 SV=1) HSP 1 Score: 498.4 bits (1282), Expect = 1.2e-139 Identity = 240/327 (73.39%), Postives = 277/327 (84.71%), Query Frame = 0
BLAST of Spg024745 vs. ExPASy Swiss-Prot
Match: Q8L799 (Inositol oxygenase 1 OS=Arabidopsis thaliana OX=3702 GN=MIOX1 PE=2 SV=1) HSP 1 Score: 429.9 bits (1104), Expect = 5.3e-119 Identity = 201/280 (71.79%), Postives = 228/280 (81.43%), Query Frame = 0
BLAST of Spg024745 vs. ExPASy Swiss-Prot
Match: Q9FFC6 (GDSL esterase/lipase At5g22810 OS=Arabidopsis thaliana OX=3702 GN=At5g22810 PE=3 SV=3) HSP 1 Score: 414.5 bits (1064), Expect = 2.3e-114 Identity = 193/330 (58.48%), Postives = 259/330 (78.48%), Query Frame = 0
BLAST of Spg024745 vs. ExPASy Swiss-Prot
Match: Q8H1S0 (Inositol oxygenase 4 OS=Arabidopsis thaliana OX=3702 GN=MIOX4 PE=2 SV=1) HSP 1 Score: 414.1 bits (1063), Expect = 3.0e-114 Identity = 196/286 (68.53%), Postives = 227/286 (79.37%), Query Frame = 0
BLAST of Spg024745 vs. ExPASy Swiss-Prot
Match: Q5Z8T3 (Probable inositol oxygenase OS=Oryza sativa subsp. japonica OX=39947 GN=Os06g0561000 PE=2 SV=1) HSP 1 Score: 410.2 bits (1053), Expect = 4.3e-113 Identity = 193/283 (68.20%), Postives = 226/283 (79.86%), Query Frame = 0
BLAST of Spg024745 vs. ExPASy TrEMBL
Match: A0A5A7U6Q6 (Inositol oxygenase OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold404G001300 PE=3 SV=1) HSP 1 Score: 1182.9 bits (3059), Expect = 0.0e+00 Identity = 592/678 (87.32%), Postives = 617/678 (91.00%), Query Frame = 0
BLAST of Spg024745 vs. ExPASy TrEMBL
Match: A0A5D3CB13 (Inositol oxygenase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold323G00190 PE=3 SV=1) HSP 1 Score: 1086.6 bits (2809), Expect = 0.0e+00 Identity = 555/678 (81.86%), Postives = 580/678 (85.55%), Query Frame = 0
BLAST of Spg024745 vs. ExPASy TrEMBL
Match: A0A4D6MQV8 (Inositol oxygenase OS=Vigna unguiculata OX=3917 GN=DEO72_LG8g308 PE=3 SV=1) HSP 1 Score: 807.0 bits (2083), Expect = 5.9e-230 Identity = 419/660 (63.48%), Postives = 475/660 (71.97%), Query Frame = 0
BLAST of Spg024745 vs. ExPASy TrEMBL
Match: A0A6J1D4C0 (GDSL esterase/lipase APG-like isoform X1 OS=Momordica charantia OX=3673 GN=LOC111016906 PE=3 SV=1) HSP 1 Score: 695.7 bits (1794), Expect = 1.9e-196 Identity = 348/379 (91.82%), Postives = 362/379 (95.51%), Query Frame = 0
BLAST of Spg024745 vs. ExPASy TrEMBL
Match: A0A6J1D368 (GDSL esterase/lipase APG-like isoform X3 OS=Momordica charantia OX=3673 GN=LOC111016906 PE=3 SV=1) HSP 1 Score: 690.6 bits (1781), Expect = 6.1e-195 Identity = 350/383 (91.38%), Postives = 363/383 (94.78%), Query Frame = 0
BLAST of Spg024745 vs. TAIR 10
Match: AT3G16370.1 (GDSL-like Lipase/Acylhydrolase superfamily protein ) HSP 1 Score: 498.4 bits (1282), Expect = 8.6e-141 Identity = 240/327 (73.39%), Postives = 277/327 (84.71%), Query Frame = 0
BLAST of Spg024745 vs. TAIR 10
Match: AT1G14520.2 (myo-inositol oxygenase 1 ) HSP 1 Score: 431.0 bits (1107), Expect = 1.7e-120 Identity = 202/278 (72.66%), Postives = 230/278 (82.73%), Query Frame = 0
BLAST of Spg024745 vs. TAIR 10
Match: AT1G14520.1 (myo-inositol oxygenase 1 ) HSP 1 Score: 429.9 bits (1104), Expect = 3.7e-120 Identity = 201/280 (71.79%), Postives = 228/280 (81.43%), Query Frame = 0
BLAST of Spg024745 vs. TAIR 10
Match: AT4G26260.2 (myo-inositol oxygenase 4 ) HSP 1 Score: 415.6 bits (1067), Expect = 7.3e-116 Identity = 196/287 (68.29%), Postives = 228/287 (79.44%), Query Frame = 0
BLAST of Spg024745 vs. TAIR 10
Match: AT5G22810.1 (GDSL-like Lipase/Acylhydrolase superfamily protein ) HSP 1 Score: 414.5 bits (1064), Expect = 1.6e-115 Identity = 193/330 (58.48%), Postives = 259/330 (78.48%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Sponge gourd (cylindrica) v1
Date Performed: 2022-08-01
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.
|