Lsi08G005750 (gene) Bottle gourd (USVL1VR-Ls) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.CGACTCTTCTCTTCGGCCATGCGATGATAAAAATAGAATAAATTACAGAATTCAGTTTTTCTGTCTTCAGATCACCGACCGGAAAAATCGGAAGAGCCATTAGGCTCCAAATTTGTGATTGTCTGAAGCTCACAAAAGAGGGAAAAATGAAGTTTCTCTTATCGTTCTTACTTCTCTCTGTTACTACTCCAGCTTTTTATCACGTTGCACTGGCTCGAGGCGCCTCGAATCGCTTCATTTCGTCAGGTTTCTGCTTTGTTTTCGTTACAATGTTTCGTTATCTTTGTTTATGCATATGAGAACGCGATGTTTTCTGTTTGGCAGCCGATAAATTGGTATGATTGAGTAGTTGATTCTTTTGAACTAAGGAAATTTGTACTCCGCGAGTTTATTTAGTTCTATACCGGAATCTTTTTTACTTTATGTTCCTACATGACATTTTGATTCGTTTTCTGTGAGAATTGAGGCGAGGAAAGCGTAAGTATGATTCCAAAACGTTTTGCCGTCCTAAATTTTCTTTTGTTCTTCGTTTGATATGTATTTTAGGTTGCGCTCGGATTTTGAATTATTACGTTTGATCGTTTGAATTGAGTTTGAATGCCTTTAAATCAGTGTTCACTGTTCAGTTCCTTTATGCAGTAGGTTTCAGTAGTTGACATTTTCATCGTTCTTAATTTTCTTCGTTATTCCTTTGTTATGTGTACGCCTTAGATTGTGCGGCTCGGATTTCCGATTATTGTCTACGATTATTTGATTTGAATTTGAATGTTCTTTTTTCCTTAATCGGTTTTATGCAGTGGACTTCGATAATCGTTCATATGGCGGTTCTGCTAGATTTTTACTCGAGGATAATAAATCTCAAGGAAGGTAACTTCCTTGGAGATTCCAGTATTTTGTGGTTACTTAAATTTAGTTGATGTATTATGTTATTTTGAGTTCTGAAGTATTTCAAAATTTATTTATCGACAGCATCATGCAAGGTTATATGACCAATAAAGAGCTTGAGGAGGCGATTAAAGCTTTCGGTAAAAAATGTAGTAAAATTTCTAGGATATACAGGTAATTCTAAGAGTTGTGATTTCCTTATTACCAAGCAAAGAAGGCCTAGTTTATGTGCTGATTTCTCTTTCGCTTTCCTTTCCTCGCTCTTGGATGCTTGATCATCAGTATTGGAGACAGCGTGCAAGGGTTTCCACTGGTAATCATTCCAAAATGTTAGTTCTTTTGTTTATTCTAAATCTTCCCTCCCTAATATCTATAATTTTAAGTGGAAATTTATAATATCTGACGCAGAGCTTTCATCTGATTGATAATAGTGGGTAATGGAAATCTCTGACAAGCCAGGCCAGGAAGAAGCTGAACCTGCATTTAAGGTGAATGGTCTACTACTTTCATATAATAGTCATGCCCGACTGCCCATGCACACACCTGACAGCTTTCACTTGTGAATTCTTCTTCTTCCTCTTGTTGTAAACAATTCAGTTATAGGCAAAAAAGGCATCTCTTGCGAGTATATTAACATGACTGTTGCTATTTATCTGTTCTATGGGGCTATGCCATGATTAATTGCTAAAGCATGTGTCCCTTGTCAAATTTCCTAATTATTAGTCATCTTTGGTCTACTGTTGATATCATAGTGGTTATTGTTCTGTGCTTATTAACATGGTTGCTCTTTGACTGCAAGTATTATTTCGAAAACCATAATTTCTTACTTTTCGCCCTGTCATTGCGTTAGTGTCTGTTTATCTGTATGTATGGTCCAAATGTAGAATTGAATGGAGTATTTGTTATCAAAGCACCTGTAGACTTTCTCGAGGAAGTTTGAAATGATTTCATTTGATATTGCAGTACATAGGAAATGTACATGGAGATGAACCTGTTGGCAGGGAGCTTCTTTTGCAATTTGCTAACTGGATATGTGATAATTACCTGAAGGATCCGTTGGTAACTTATGTTCTTTCTTTTTTTTCCATTTACATACATCCTCATTCTTATTCATATTCACCATTTCATGAATTTAAGACATTTATATAATATTCATCTTACTTATTCAAATTTTTTTTGTTTTATTCTTGCCCTATTTGTGACATGTCAATGTAATCTAGTTGCCAATTTATGTTTGCATATAACATTTTAAAGAACTGCATAAATTTGTGCAACAGTGAAATATTGTGGACATAAACAAAACAAAAGGTTTCAATATGACAACCGTATCAGTTTTTTAACTGAATCCAGTTAATTGTTGTAATTACATCTCCAAACTCCATTATGGCCTTTTTTTGCTCTGTTATATTCCCAGAACTTAGAAAGGTGATGAACTCACACTTTTAATACAAATGAATATTTGATGTTCTGATTTTAGCATTATTATTATTATTTGTATTTTCTAAGTTAGCACCTGTATATGTGCACTCTCTCCTCTTAGCATTCCCAAACAATAGCATATTTTCTTAATTTGAGGATTTTCCCCTCTACCTATGCCAATGCCCATAAACTGTCGTTGGAAATGTCTTGCAGTGAGAAACTGCAAAGCAATCAATCAATAGTTTAGGAATGCTTCATATTTTTTGTCATATGAAGAATTTCCAATGTATGGAGTACTCTATTCGTTACATACTTGATGTTTCCCCAGAGATCTACCATCTCTTTAGTTTAAGAGGAGCCTTTGGACTGAGTGATTAGAGAATAGGTCCTTTTAATTGTTATGGTGGACTGAGCCTTTGGACTAATGGCTTCGGAGGCTTCTTTCCCGTGGCCTCCTATGTCTTAAGGATGTGTGTTCCCTCCTACCAGTCTATTGCAAAGTTGTATGAAAGGTGTTGATCCCTAAAAAATGTGGTTTTTATTGGATCTTAGCTTGGGTGGTTTGGTATAATACTGAAGGAAAAATTTAATGAAGGAACCCTTTTATTTACCTAAACCCAATTGATGCAACTTTTGCTTTTCTGATCGATTATAAGATGCAGTATTTGATTTCCATTATGTAATTTGTTCCACTACAACTTTCGTCTCACTCAGAAGTCTCGATGTATTTCTGAAGGCTACACTGATTGTGGAGAATGTTCATCTTCATATACTTCCATCCATGAATCCTGATGGGTTTTCTCTTAAGAGACGCAATAATGCGAACAATGTTGATCTAAACAGAGATTTCCCCGACCAGGTACATCTATTGACCTCCTAGTTTATTATGTGCGAGTAAATTTAAGTCTTAGCAGGCTTTCCTACTTTTGATTGAAGTCAGATGCTATTGCAATATAGGTTGTATTCACTGCATCTCTTTGCATTTGCTTGAATATATGAATAGTTTCATTCTTTGTTATCTGCTTTTTTTTTTTGTTGCGTACTTGAGGGTTGGTGCCCAAAATGTATTTTGGAGTGATTTTTCCTCTTCACATCAATGTCTCATTAGACCACTGCCAAATTTGTATCAGTTGTTTTCTTTTTCTGTCTATAATTGATCATTTGGTGCAATATATGATTCGTTATTTACTGATCTTGATTATATTCTTTCCCCCCCTAAATCTAAGATTTTGGATGATTATGTCTTATTGCATCGACTATTCTATTATTCTTTTTCTGTTGCTGCATCTTGTTCGATTTACTTTGATTTTCTGTTTTGTTTTTTTTTTTCCTGAGGTCATTTGCTTTTCAACATTAAATGGCCAAAACCAATTCTATGATGTTATACGTTTTAAGCAGGGATTAACTGTACACTTAATGTCAGTTCTTTGTCATCAACGACGATGAATATACACGACAACCTGAAACAAAAGCAATAATGAAGTGGATGAGAGATGTACATTTCACTGCCTCTGCCAGTTTGCATGGGGTAAGACCTGACCTTGTCTTCTTCTACAGCTTAAGGAAATTTTAACACGTCACTGACTTCCTATTTTGTGGGGAGTCTGGTTCAAGAGAAACAATAGGATTCTTAGAAAGGTGGAAAGATTGAGTGGTGAGGTTTAATGCCTCTCTGTTGGCTTTGGTAACAGGGACCCTTTTGTAATTATCGTAGTTTGATTTGGTTGGATTGGAGTCCCTTTTTATATTTTCGGGCCTTTTCTTTTGTGGGACTTGTCTTTTTGGATGCTTTGTATATTCTTTCATTTTTATCAAACTTGGTTCCTTACGCATGCGTGTGGAGGGGAAAAAACAAAAAGCAAAAACAAAACTTCATTGCCTTTCTAAATAGTCGTTCTTGAATGGTATCATTTGGGACATTATTTATGCACTCTTTTCCAAGGAGAAGCCCAGAACCTTATAATGGAGCCATCCTTTGTTCAATGAATTCTTGCCCCCACAAGTACAGAAGTCAGAAATTATAAACCTCCTAAAAAATATCTTGTACATGATTTTAAATATTGTTTCAAACTCCTAGAACAGCATGTTCTTTTAAGCATTATTCTCTTCTTTTTATTTCTTCAATGAAAAGTTTCGTTTCTTATTATAAATAAAAAAATATTGATAAATGCAGACTTAGGAAACACCTAAAGAGGTTTTTGTCAATTTCTTTCCTCTTTACAGGGTGCACTTGTTGCAAATTACCCATGGGATGGCACAGCAGATAAAAGGTCACAATTTTTCGTATTTTTCTTTTGTTGCTGGAAAGATTTTATTTTGCCCTTTGGTGTTTCTCCCAGTGTTGCCATATTCTTTCGTGTTTTATATTTGTGTCCCTATATATATTTTGTCACTTAAGTGACTAATGACTATGGACTAAACTGAACCAGGACTCAGATCTCGTTTCTTCATGATTTTTTCTTAATTATTCCCCCTTATATATGCTTATTTGTCAATATGTTTGCTATTTATTCTATCATACATTTGTTCTCATTCATTGTCCATGTCGTATGTGAGTTTAGGACTTCTTTTTTTCCTTTAGGAAATAGGAATTATTATTATCTTCTGTCTTTGGCCCTCAAGGAATTGGTTTTCAATTATGTTGATAAACATTCATAGCTACCAAATTATGGATGTAACTTCAACTTTAAGACTCAGGAAAAGTATAGATGAGAACAAACTAAATGTAAAAATAAGGTCAGGCTGATTAGTTTGTAGACGGCTCTATGTAGTTGTTGGCTGAAGTTGTTGACTAAATTACAACAATATTGTAAAAGTTATTTATAGCTTAGTCCATTATGCATCTTCAAAATGCATTACTGAGTGTTGGTTAATATCTCGGTTACTTGCTCTCTTTTCACATTCTAAAATGTGGTTCTTCAGGAAAGATTATTATGCATGTCCAGATGATGAAACATTCCGATTCATGGCCGGTGTCTATAGTCGCTCACATCATAACATGTCTTTTAGCCAAGAATTTCAAGGAGGAATTACGAATGGAGCTCAATGGTATGGCAATTAAGGCTTAAAGAAATTTTGTTTGAGAATCACATCCATGCGTCATGGTTCGGATTTTCTGAAGTTAATGAATTATTCTCTATAAAGTGCTTTTTAGAATTTACTCAAGATTGCTGCAGGTATCCCATATATGGTGGCATGCAAGACTGGAACTATCTACATGGTGGCTGTTTTGAGTTGACTTTAGAGATTACAGACAACAAATGGCCTCCTGCTAATGAGGTTTGAGCTGAGTTTAATCCTTCCCAAATAGAAAAAATTAAAATATTTGTTATTATATTACTATAAATGAATTAGAGGTTTAGAAAGTATTGGCAGTCAGTTTTTCTCGTGTAGATTTTAGCAATCTTTGCCATTCACACTACTGTCGGGTCATCTGACCATTATCCAGTCAATGATTTTTCTCTTTGGCATACGTGCAGCTTGCTACCATTTTTGAGTATAACAAGTTGAGTATGCTAAAGCTTGTTGCAAGTCTTGTTCAGGTACTCCTTAGTTTGTCTTTCAGTTGCATTTGCGTGAAAGAATACAGTATAGACTTCTCTCTCCTTGAATTGCAATCTGTCAAAGAAATTAAAACGCAATTCAATGAATTTAAAAGATTGTTGAAGACCTTTGTTTTGTAGGTAAGTTATAAATCACTAACATATCCTATTCAGACAGGAATACATGGAAGAATTTTTTCATCAGACAGTGGAAGGCCGTTGCCTGCAACCATTACACTCGAGGGAATAGATTATTCGGTACGTTTTAACCTTTAAATTCCCTCTCTCTTTTTTTTATTCTGCAATTAATTATTTGGGGATCCTTTTTTGAGTCAATTTGTGTCTTAGCTTGTAATACCTGCCATACCCTTTCCAAAAATATGCAATGTATGTGTGTTGCTCCATTTTAGCCTTAGGGGGAGTGTCCGTGTCGAACACATACACATTTGGACATGCTCCAGACTCGTGTCCGACAAGCAAATTGTGTCCTATTTTTATTATTTATTTATAGTTTCATACACGTTTGAAACACTTCTTGGATACGTCTTGGGACTTCTTTAAAGAGAAAATGATCCAACTTTTTATGTTGGACCCGAATTTAAAGCCCAAATCAATTATATGTTAACCTAAACATTTCATCTCCTACAATTGTTAATTAACTAGACATTTTATGTTTTTTTTTTAGTGGAGTGCATTTAATATGTTATGTTAAATTTATATGTCCTTTAATAAAAATAATAAAAAGGAGCTATCCCAACGTGTCTCTGTACTAATGTTTTCGAAATTGCCGTATCATTGTGTCGTGTCGATTTCTGTGTACATGCTTCTTAGTGCTTGACTTGAATTACAGATGAAAAAAAATAAATTGATTGCCTTTGAATATCACATCACACGAATCAGATTTTGGAATCTACCATAACTGAATTAGATTTAGACCAAATAAGTTGAAAGAAGAAAAGTTGTATACTGGGAGGAGGTGGATGGTTGGATTGAGTTAAGATGATATTAATAACCTGAGAGGTGAGAGAAAAGGGGTTAGAGTGGTAGAGATGCTGCATAAACAAGTGAGAAGATGATTGAATATTGACGATGGTCATCATTCTGGTAAAAACGAGATCCGAGTCCTGTTGGATATTGACCATGGACAGCTCTTGTAGAAAACAATTAACAAAATATCTTGCTTATAATATGTTTATTCCTTCTGCTGCTCGTTGAGATTGGGGGAAAACTACTCTTTATAAAAACATGGTAAAAATATATTAACGTGGTTATCTGTTGGATGTTATTGTCGATTGTAATGAAACTTTGTGGATAAATACGTAGTTAACTTTTGCATTTTCTGTCTCTTCAATTGTTCTAGATTTCATCAGCATATAGTGGTTTTAGTCCTCTCCTTAATTGTCATATTTTACAACAGCTTTCTCCAGAATAAGAACTTGTTAAATCCTCTCGTTGATGGTTTGTTTAATGCTATTTTGACATCGTTATTTTCTCACTCTCTGGTGAATAATCTACCTAATAAATATTCTCAAATTTAATTGACAGGTTAAAGCTGGTCAAAAGTTTGCCGACTACCACCGGTTAGCCGCACCAAGACAGAAATATGAAGGTTAGTGCTCCTATTTCCCTTTTAACTGTTTATGTGTAGTTTTGATCTTGGTCATTGATTTTGAAATTCTCGATGTCCTAGCCTCCTAGGTAAAAAAGATTTAAACGTAAGACTCCAGGTTAAGATGAATTTTATATGGTACAACTTTTGCATTTACCAATTAGACAACGAATCTAATTCGATTGAATTACAAAGATTAAACATGCAATTAAGCCCGAAGTCAAGCATGCACATATAAAAATTCTCTTTCGAGAACAATTAAACTCCCTTTGCTAAATTTGAAACTCGATATCTCTATTCAATTTTTTTTGGTAAATGAAACTTATATTAATAATCCAGGAGTAAAACCCCAAGCAATACAAGAGTTACGGGAGGAAAAGCCAATTACTGACTAAAAAATATAAGCTGAAATGAGTAAAATGGTGCTTAGTTTTGCACCAAAAAAATGCGGTAGATAAAACAAGTTCCATAAAACGAGGAAAAGATGAAAAAGAATCATTAAAAAGATGTTTGTTCCTTTCACCTCCATAAGCTCCACAAAAAAGCATGAGTAGTGGCCAACCAAATTGTCTTTTTTCTACCACTAAAGGGATGACCTACCAACAAGGATGCTAACGCGTCAGAAATGTTATTAGGGCAAGTATAGGACCATCTAGAAGCAAGCAATCTCTATCATTTTTTAATAACAAACAAAGGTTTTAGGTCCACTTCTATTAACAAGCTCTAAAGGAATCTTAAATCTCTTGCAAGTTCATAACTACTCTAGTCGTGCAATTAAGTAAAAACCCCCCATATCAAGTATAAGGTTATGGGCCAATCAACAATTAATCCGAGAGATTAAAAACATTATTCACATAAAAGCATGAAAAGATTAAGAGCAAACCATCGATGCACTTAAAAGATCAATTCATAAACTCTGGCTACATCTACCCCTAGGATTAAGAGTTTAGCTACTCATATTCCGCAATCTAAACACAAAACTAAATACAAATCCCATAAGAAAAATATGAGGGAAAGATGAAGAAAAACTAGTGTTCTTACATGAATCAATTGTTCTCATTATAACATCCATGAACTTTCCTCTGCTCCAATGGTCTCATGCTCTCAAAAATATGTAAGTTTCAAGAATAGGGTTTGAACTCTCCAAAATTCCTCCCACAAAATGATTAGAAAAATCAAGACAACACAGATATTGTAAATGGCATCTCAACACTGTCCAAAACACATCAATTAACTATGGAAAATTGTTGTAGTGTCGATAGCATCTCAACGCCACAAACAAGAATGAAACTTCTACATTTTAAGCGTTTAGCCTTCATCTTCGTAGTGTTGAGTCACTGATTTGCAATGTCTCGATGCTATCTCCTCGGTGATTTTGGCTTCATCCCCTCTCTAAATCCTGAATTTCTTATAGTCTGTCCAATTTAACCATTTCTTTTTTGATAATTACTATAGAAAACAAATCCTACAAAATATTCAAATGTCTTCGTGAATTTGACTAATTAAATATCATAACCAGCAAGAATTAAGCCCTAAAAATAGCTCACAATGTGCGTTATCTATCAATCACCGAGAGGAAACCCAAATAATCAATCCCTGTAAACCCAATGTCTCGCAAAAAACGTCCAATTTCCTTTGGAAATTATACCAAAATATTATCCACCTGTGATATAGCACTTAGCAGACACCACAATGTTTCTTTCCAATCCCTAAACTAATGAATCATTTTTTCACACTTGTAGCCTCTTTCAAAATATTACAAATTACAATCTTGTAGCCCCCTTTTCAAGCCTAAACTTCTTAAGAAGGTCAACAATAAACATTTCTAGCCATTATAGCTCATTCCAATACAACCTAATATAGATAGAGGAGAACTTCCTCTTCTCTTCTAATTTGAAACTAAAATTCCCCAAAAAAACCAAGTGAATAAATAGAGAAGAATTTGTTTTCTACACTACAGTCTGGCTGCAACCATCTATAGTATAGTTTTAAGAGAATGAAGTGCAGAGCTAATTTAAATTAGCATGACTTTAGAGATTCCTCCACTTGTTTTGATAGGTGCAAATTGAAGCACAAGAGTTCTAATTTTCTTATTTAGTTTCCAATTGGAAATTTTTATTGTAATCACTTAATTGGTGTTTGGGGTCTTCCCTTATTTCATTTTATCAATGAAATGTTTCTTCTAAAAAAAAAATTAGCATAGAAAAAATTTCACCGTTATTGTTTTGAACTTTAAACTATGGAATATAACTGCAGTAACTGCATCGATGCTCGGGTACAAGTCGAAGAATACGAGCATCTGGTTGGAAGAGGGAGCGATGTCTGTGGACTTTGTTCTTGATCCAGACTCAACAACCAAAGGAAAACTAATACAAAACTGTGATTGCTACTGTGGCAATAGGCTCGACTTTGTGGGCTATATTTGGGGACACTACTTTGAGGCCTATATTTTCTTGGCGGTTGTTTTAGTATTTATTTGCTTTTTATTTCAGAAGAGGATGAAATCTAGACTTTCCAAGCAAAGATTAGTTGCATTACCTAAGAGGACTGTGGTCTGAAACCTTTTTTCTTTTTCCTATTTATTTTAGTCTACTTTTCATTACTGGAGAAATGATATCATATGATTGTAGCGTAACAGTTTTTGAGGCATTTCCCAAAAAAAAAAAAGGCAGAAAGGATCTTGTGTAATGTTTATCGTCAAAATTTCATAGTCAGAATAAATTTTGATTCTTGTATCATTCTATTTCTAGTACAATCTCCTTGCTCTCAGTGAGGGTCTAAATTTTTGAGTTTTTTTTAGTACAACTGAAGGATGGGGGAATTGAACATCAACTCAATTATTATTGAGCTAATTTTACT CGACTCTTCTCTTCGGCCATGCGATGATAAAAATAGAATAAATTACAGAATTCAGTTTTTCTGTCTTCAGATCACCGACCGGAAAAATCGGAAGAGCCATTAGGCTCCAAATTTGTGATTGTCTGAAGCTCACAAAAGAGGGAAAAATGAAGTTTCTCTTATCGTTCTTACTTCTCTCTGTTACTACTCCAGCTTTTTATCACGTTGCACTGGCTCGAGGCGCCTCGAATCGCTTCATTTCGTCAGTGGACTTCGATAATCGTTCATATGGCGGTTCTGCTAGATTTTTACTCGAGGATAATAAATCTCAAGGAAGCATCATGCAAGGTTATATGACCAATAAAGAGCTTGAGGAGGCGATTAAAGCTTTCGGCCAGGAAGAAGCTGAACCTGCATTTAAGTACATAGGAAATGTACATGGAGATGAACCTGTTGGCAGGGAGCTTCTTTTGCAATTTGCTAACTGGATATGTGATAATTACCTGAAGGATCCGTTGGCTACACTGATTGTGGAGAATGTTCATCTTCATATACTTCCATCCATGAATCCTGATGGGTTTTCTCTTAAGAGACGCAATAATGCGAACAATGTTGATCTAAACAGAGATTTCCCCGACCAGGGTGCACTTGTTGCAAATTACCCATGGGATGGCACAGCAGATAAAAGGAAAGATTATTATGCATGTCCAGATGATGAAACATTCCGATTCATGGCCGGTGTCTATAGTCGCTCACATCATAACATGTCTTTTAGCCAAGAATTTCAAGGAGGAATTACGAATGGAGCTCAATGGTATCCCATATATGGTGGCATGCAAGACTGGAACTATCTACATGGTGGCTGTTTTGAGTTGACTTTAGAGATTACAGACAACAAATGGCCTCCTGCTAATGAGCTTGCTACCATTTTTGAGTATAACAAGTTGAGTATGCTAAAGCTTGTTGCAAGTCTTGTTCAGACAGGAATACATGGAAGAATTTTTTCATCAGACAGTGGAAGGCCGTTGCCTGCAACCATTACACTCGAGGGAATAGATTATTCGGTTAAAGCTGGTCAAAAGTTTGCCGACTACCACCGGTTAGCCGCACCAAGACAGAAATATGAAGTAACTGCATCGATGCTCGGGTACAAGTCGAAGAATACGAGCATCTGGTTGGAAGAGGGAGCGATGTCTGTGGACTTTGTTCTTGATCCAGACTCAACAACCAAAGGAAAACTAATACAAAACTGTGATTGCTACTGTGGCAATAGGCTCGACTTTGTGGGCTATATTTGGGGACACTACTTTGAGGCCTATATTTTCTTGGCGGTTGTTTTAGTATTTATTTGCTTTTTATTTCAGAAGAGGATGAAATCTAGACTTTCCAAGCAAAGATTAGTTGCATTACCTAAGAGGACTGTGGTCTGAAACCTTTTTTCTTTTTCCTATTTATTTTAGTCTACTTTTCATTACTGGAGAAATGATATCATATGATTGTAGCGTAACAGTTTTTGAGGCATTTCCCAAAAAAAAAAAAGGCAGAAAGGATCTTGTGTAATGTTTATCGTCAAAATTTCATAGTCAGAATAAATTTTGATTCTTGTATCATTCTATTTCTAGTACAATCTCCTTGCTCTCAGTGAGGGTCTAAATTTTTGAGTTTTTTTTAGTACAACTGAAGGATGGGGGAATTGAACATCAACTCAATTATTATTGAGCTAATTTTACT ATGAAGTTTCTCTTATCGTTCTTACTTCTCTCTGTTACTACTCCAGCTTTTTATCACGTTGCACTGGCTCGAGGCGCCTCGAATCGCTTCATTTCGTCAGTGGACTTCGATAATCGTTCATATGGCGGTTCTGCTAGATTTTTACTCGAGGATAATAAATCTCAAGGAAGCATCATGCAAGGTTATATGACCAATAAAGAGCTTGAGGAGGCGATTAAAGCTTTCGGCCAGGAAGAAGCTGAACCTGCATTTAAGTACATAGGAAATGTACATGGAGATGAACCTGTTGGCAGGGAGCTTCTTTTGCAATTTGCTAACTGGATATGTGATAATTACCTGAAGGATCCGTTGGCTACACTGATTGTGGAGAATGTTCATCTTCATATACTTCCATCCATGAATCCTGATGGGTTTTCTCTTAAGAGACGCAATAATGCGAACAATGTTGATCTAAACAGAGATTTCCCCGACCAGGGTGCACTTGTTGCAAATTACCCATGGGATGGCACAGCAGATAAAAGGAAAGATTATTATGCATGTCCAGATGATGAAACATTCCGATTCATGGCCGGTGTCTATAGTCGCTCACATCATAACATGTCTTTTAGCCAAGAATTTCAAGGAGGAATTACGAATGGAGCTCAATGGTATCCCATATATGGTGGCATGCAAGACTGGAACTATCTACATGGTGGCTGTTTTGAGTTGACTTTAGAGATTACAGACAACAAATGGCCTCCTGCTAATGAGCTTGCTACCATTTTTGAGTATAACAAGTTGAGTATGCTAAAGCTTGTTGCAAGTCTTGTTCAGACAGGAATACATGGAAGAATTTTTTCATCAGACAGTGGAAGGCCGTTGCCTGCAACCATTACACTCGAGGGAATAGATTATTCGGTTAAAGCTGGTCAAAAGTTTGCCGACTACCACCGGTTAGCCGCACCAAGACAGAAATATGAAGTAACTGCATCGATGCTCGGGTACAAGTCGAAGAATACGAGCATCTGGTTGGAAGAGGGAGCGATGTCTGTGGACTTTGTTCTTGATCCAGACTCAACAACCAAAGGAAAACTAATACAAAACTGTGATTGCTACTGTGGCAATAGGCTCGACTTTGTGGGCTATATTTGGGGACACTACTTTGAGGCCTATATTTTCTTGGCGGTTGTTTTAGTATTTATTTGCTTTTTATTTCAGAAGAGGATGAAATCTAGACTTTCCAAGCAAAGATTAGTTGCATTACCTAAGAGGACTGTGGTCTGA MKFLLSFLLLSVTTPAFYHVALARGASNRFISSVDFDNRSYGGSARFLLEDNKSQGSIMQGYMTNKELEEAIKAFGQEEAEPAFKYIGNVHGDEPVGRELLLQFANWICDNYLKDPLATLIVENVHLHILPSMNPDGFSLKRRNNANNVDLNRDFPDQGALVANYPWDGTADKRKDYYACPDDETFRFMAGVYSRSHHNMSFSQEFQGGITNGAQWYPIYGGMQDWNYLHGGCFELTLEITDNKWPPANELATIFEYNKLSMLKLVASLVQTGIHGRIFSSDSGRPLPATITLEGIDYSVKAGQKFADYHRLAAPRQKYEVTASMLGYKSKNTSIWLEEGAMSVDFVLDPDSTTKGKLIQNCDCYCGNRLDFVGYIWGHYFEAYIFLAVVLVFICFLFQKRMKSRLSKQRLVALPKRTVV Homology
BLAST of Lsi08G005750 vs. ExPASy Swiss-Prot
Match: Q9M9H7 (Carboxypeptidase SOL1 OS=Arabidopsis thaliana OX=3702 GN=SOL1 PE=2 SV=1) HSP 1 Score: 484.2 bits (1245), Expect = 1.5e-135 Identity = 255/475 (53.68%), Postives = 314/475 (66.11%), Query Frame = 0
BLAST of Lsi08G005750 vs. ExPASy Swiss-Prot
Match: O75976 (Carboxypeptidase D OS=Homo sapiens OX=9606 GN=CPD PE=1 SV=2) HSP 1 Score: 209.5 bits (532), Expect = 7.2e-53 Identity = 140/404 (34.65%), Postives = 198/404 (49.01%), Query Frame = 0
BLAST of Lsi08G005750 vs. ExPASy Swiss-Prot
Match: O89001 (Carboxypeptidase D OS=Mus musculus OX=10090 GN=Cpd PE=1 SV=2) HSP 1 Score: 207.2 bits (526), Expect = 3.6e-52 Identity = 139/402 (34.58%), Postives = 200/402 (49.75%), Query Frame = 0
BLAST of Lsi08G005750 vs. ExPASy Swiss-Prot
Match: Q9JHW1 (Carboxypeptidase D OS=Rattus norvegicus OX=10116 GN=Cpd PE=1 SV=2) HSP 1 Score: 206.5 bits (524), Expect = 6.1e-52 Identity = 140/407 (34.40%), Postives = 201/407 (49.39%), Query Frame = 0
BLAST of Lsi08G005750 vs. ExPASy Swiss-Prot
Match: Q90240 (Carboxypeptidase D OS=Anas platyrhynchos OX=8839 GN=CPD PE=1 SV=1) HSP 1 Score: 206.1 bits (523), Expect = 7.9e-52 Identity = 142/399 (35.59%), Postives = 199/399 (49.87%), Query Frame = 0
BLAST of Lsi08G005750 vs. ExPASy TrEMBL
Match: A0A1S3C3Y1 (carboxypeptidase SOL1 isoform X1 OS=Cucumis melo OX=3656 GN=LOC103496589 PE=3 SV=1) HSP 1 Score: 764.6 bits (1973), Expect = 2.1e-217 Identity = 384/486 (79.01%), Postives = 403/486 (82.92%), Query Frame = 0
BLAST of Lsi08G005750 vs. ExPASy TrEMBL
Match: A0A0A0KCK0 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_6G054840 PE=3 SV=1) HSP 1 Score: 755.0 bits (1948), Expect = 1.7e-214 Identity = 382/493 (77.48%), Postives = 400/493 (81.14%), Query Frame = 0
BLAST of Lsi08G005750 vs. ExPASy TrEMBL
Match: A0A6J1H1Q5 (carboxypeptidase SOL1 isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111458783 PE=3 SV=1) HSP 1 Score: 720.7 bits (1859), Expect = 3.5e-204 Identity = 364/488 (74.59%), Postives = 388/488 (79.51%), Query Frame = 0
BLAST of Lsi08G005750 vs. ExPASy TrEMBL
Match: A0A6J1JSZ4 (carboxypeptidase SOL1 isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111487230 PE=3 SV=1) HSP 1 Score: 716.8 bits (1849), Expect = 5.1e-203 Identity = 363/488 (74.39%), Postives = 387/488 (79.30%), Query Frame = 0
BLAST of Lsi08G005750 vs. ExPASy TrEMBL
Match: A0A6J1BXF5 (carboxypeptidase SOL1 isoform X3 OS=Momordica charantia OX=3673 GN=LOC111006216 PE=3 SV=1) HSP 1 Score: 714.9 bits (1844), Expect = 1.9e-202 Identity = 364/487 (74.74%), Postives = 386/487 (79.26%), Query Frame = 0
BLAST of Lsi08G005750 vs. NCBI nr
Match: XP_038885322.1 (carboxypeptidase SOL1 isoform X1 [Benincasa hispida]) HSP 1 Score: 780.4 bits (2014), Expect = 7.8e-222 Identity = 395/488 (80.94%), Postives = 408/488 (83.61%), Query Frame = 0
BLAST of Lsi08G005750 vs. NCBI nr
Match: XP_031743068.1 (carboxypeptidase SOL1 isoform X2 [Cucumis sativus]) HSP 1 Score: 779.6 bits (2012), Expect = 1.3e-221 Identity = 382/451 (84.70%), Postives = 400/451 (88.69%), Query Frame = 0
BLAST of Lsi08G005750 vs. NCBI nr
Match: XP_008456738.1 (PREDICTED: carboxypeptidase SOL1 isoform X1 [Cucumis melo]) HSP 1 Score: 764.6 bits (1973), Expect = 4.4e-217 Identity = 384/486 (79.01%), Postives = 403/486 (82.92%), Query Frame = 0
BLAST of Lsi08G005750 vs. NCBI nr
Match: XP_004140953.3 (carboxypeptidase SOL1 isoform X1 [Cucumis sativus] >KAE8646663.1 hypothetical protein Csa_005235 [Cucumis sativus]) HSP 1 Score: 761.9 bits (1966), Expect = 2.9e-216 Identity = 382/486 (78.60%), Postives = 400/486 (82.30%), Query Frame = 0
BLAST of Lsi08G005750 vs. NCBI nr
Match: XP_022957364.1 (carboxypeptidase SOL1 isoform X1 [Cucurbita moschata]) HSP 1 Score: 720.7 bits (1859), Expect = 7.3e-204 Identity = 364/488 (74.59%), Postives = 388/488 (79.51%), Query Frame = 0
BLAST of Lsi08G005750 vs. TAIR 10
Match: AT1G71696.2 (carboxypeptidase D, putative ) HSP 1 Score: 484.2 bits (1245), Expect = 1.1e-136 Identity = 255/475 (53.68%), Postives = 314/475 (66.11%), Query Frame = 0
BLAST of Lsi08G005750 vs. TAIR 10
Match: AT1G71696.1 (carboxypeptidase D, putative ) HSP 1 Score: 474.6 bits (1220), Expect = 8.5e-134 Identity = 230/374 (61.50%), Postives = 280/374 (74.87%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Bottle gourd (USVL1VR-Ls) v1
Date Performed: 2021-10-18
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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