
HG10004771 (gene) Bottle gourd (Hangzhou Gourd) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: CDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ATGGAGAACGGCAGCTCAGTGCAGTGTCCAAACACGGTGACGGTTCGGAGAAACCCTCACCGGAGAGCAAGAGCCACGCCGGCTGCCAAAGCAGCCGAATCCAATCCTCCATCTGCCATTTCTTCATTTCCACTTCAAGAAATACTTGCGATGGAAGTCCCACAAAACCCTAAAGACAATTCATCATCATCGTCGTTATCCGTTCAAACTCCCCTCTCCGAAAACCTGAAAGTGTACCTTAGAGTTCGACCTTTGCAACTGAAGAATTTGAAGAAGTGCGTTAATCCTGGCGATCAAAATTCGAGGTCCGGACATGTATGGCCTCAGAACCCTCAGAAGAAGAAAGTAGCGAAGGAGAAGATTGTTAAGAAGAAGAGTAGCGAGACTTGTATTACGATTAATGATGATCACTCAGTAACAGTCTGTCCGCCTATGGCATTGCAAGAGACTAGGCGGAGTAAGTCTGAGGTTTACGAAGGATTTTCCCATGTGTTTTCTACGGAATCCTCTCAGGTGAATTACGAGTTACTTTTTGTTTCAATTATGGTTATTCGTTCTCTTTCTGGATGATTCTTTGGTTATTCGATCGCCAGCTGAATCCATCATTGTTGGCAGGGTGAGGTGTATGAGAGGATGGTTAGTCCTTTAGTGGAGGATTTTCTGAAGGGCAAAAGTGGAATGCTGACTGCACTCGGTCCGAGCGGCTCGGGTAAGACCCATACCATTTTTGGTAGTCCAAGAGTTCCTGGTATGGTTCCACTGGCTCTTCAACATATTTTCCGGACAGAGTCGAATGATTCTCAATCCTCCAGGTATTTGGAGATTGTAATTCAATTTCAGTTTTGATGGACTATCATGTGTGCACTAAATACATTTTCAAGATTCTGCACTGAGTACTTCCCCTTGCCTGTCTATGAACTTCCGCGGGCAATTGTGTCGTAAGAAACTTATTGAAGGGATATGATGATTCACAGAGCATGTTCGAACACTGAAAGCGACTGGTGTGATTTTTTGCAGATCATATTATTTATCAATCTTTGAAATATACTTAGAAAAAGGAAAAGGAGAAAAGATGTACGATCTTTCAGCAGATGGGGGTGAGTTAACTATGCAGCAGTTTACTATAAAGGGCCTTAAAGAGGTAATCAAGCAACATCTGTTTTATATGCACTTTTTTTTTCCTGGTTGTGCTACAGCATGCGTCTGTTATATGTATTAAGAAGGAAAATTGCGCTTATACATTAAGGAAAGTTGATGGACCCTTGTATTTTTATGAAGGTTTTAATATCTAATGCCGGAGAAGCTGAATCATTAGTGGCTTGTGCAATGGCTAAGCGTGCCACTGCAATTACGAATGCAAATAGCACATCAAGGTTCCGTGATTTACTTTTTGGTTCTATCCTGAAAAAAGCATTGTGTATCGCTGTGTGCATGATATCTTACTATATGCTCTGTAATCAAGTCAATTGTTGTTTGGTTGGCAAATGAAACAATTGCCCATATTTTATGGTAGTAGCACTCAGCTCTTCCCGCTGTGCTTTAGTGGCTGCAAAGACGAGATGTAAACATATTCATGCAAAAATACACATGCAAAAACACTCTGTGATTGTGATAGACAAATGTGTTTTGAATGACACTGGATAAAAATTAATGGGTTTTAGGAAATGGTCGTTGTTTCATGCAATTTTCTTTCTGTATTATCACTGCATCTTGTTGCAAAGAAATTGGATAATGCTATATGTGAAAATATGTTCATATGATTTCATTGTTTATCCTTGCAGCCGGTCTCAGTGCATCATAAACGTGCGCAGAGTTGCTAACCAAGATGAAGTTGACAATCCATCGAACTGTGCCATCTTGACCATTGCTGATCTCGCTGGAGCTGAAAAAGAAAAAAGAACTGGGAATCAGGTTCTATATCCTTTTGGTGTCTGGATTTAGGTTCTGCATTTCATCTTGAATTTAATAAAGATTGTCATTCTTTCATTTCATATTGTAATGGTAGAACTTAGTGGTCCAATATATTCTGAGTCTGGCCATAGTATAAGACAATTCTTGAAATAAAGAATGATAATATGTTATTTCAAAGTGAATAAAAGTTGATGACTCTCCTCGTTAGAATGAAATATTCATGAAATATGACTTTCTTTGAATAAAACAAGATGATTCTTCTTAGAATGAAGTACTCGTGTCATTCTATTTGTCTTGTCTGTATATTAAACATATGAGAAATAGAAGAAGAAGATGATAGAACCTTAATGATTTACCTTTCCTCTTACCACATATCTTTTGCAGGGGACAAGATTACTTGAAGCTAACTTCATCAATAATACATCAATGGTTTTTGGCTTGTGCCTAAGAGTACGCGTCCTTTACTTATGTGAATCCCTTATCATTTTCTTCCTCCAAATGCTAAAAAGTATTTTATATTTTCTATATTCAATTAGGTCAAATTGGATATCCATCTTGTATTGACCTACTGAATTGAGGCATGTGACAATAGAGACTTAAGGGGAACAAATTCAAGGTCCATATTGACCACCTAGGGAATTCTATGAGGTTCTTGACAATAATATAGGGTTAAAAGAGTGAGTATAGTTAAGGTGCACTAAGCTGGCCTGAGACTCACGAATGTTGTGCATTTTGAATGGCCTGTTGTGATTCATAAATAGAAAACTGATGGGTTCTATGTTTGTCTCGTGGGGTTTTGAGATCTTCACAACTTGGAAATTCTCTTAACCCCTTTGCCTTATCCCCGGGGTTCATTAGTCATTTTTCTTACGTAAAATAGAAGATGGTTTTCATTTTATTGTGTCACTTCGTTGGTGCTTTCCATTCTCACTTTCTATCTGTTTTTTTTTTTGTTCCCTTGTTTCATATATATATATTTAAAATATTTACTGATAGCGTGTCCTTGTTTCATTTTTAGTCATTGTTTGAACACCAAAGGAATCCAAAGAAGCCACTGCAGAAGCATTTCCAGAACTCTTTGGTAATGTTTCAAGAGTATTCTTCATTCTAACATTATGTTCCCACTCAAGTATTGCAAAACGAAAAATGCTATTTATCTTTATGTTTTTCTTGCAATTATTTTCTCAAGCATAACTGTCAAAGTTTACTTTGTTTCCACACAGTTGACCAAGTACCTTCGAGATTACCTGGAAGGAAAGAAGCGAATGACCTTGGTATTCTGTTCTTATTTCAATATTTGATTTGTGGAACAGATGTACATGCAGCATCTTAAATTTTCCTATTTGCATCTTTGTTTTGATTAATGGATACAGTTAACTTTGTTGGGGACTGTTAAAGTTGTTAATCTCTTGTGAAAACTAATAGGTGCTTAATGAAGTGCGAGCCTCTGTATTTCTTTACCATATTTTCTTTTTGTTTATTTTTTTGTTTTTATGTGTAGATTTTAACTGTGAAAGCAGGAGAAGAAGATTATCTTGATACAACTTTCCTTCTCAGACAAGCTTCACCTTATATGAAAATCAAGTTATCTAACTTCATGTCATCTTTTTAAATTCAGAACTTCTTTTACATGTGATCCTGGATTGATAACTGTTTCTTTAGGTTCAACAATGTTGTGGAACCATCCAACACCAACAAGAGACAATTGCAAACGTTATGTACATTTGAGGAGCAGAAAAGAACAAAATATAGTGTTCCTGAAGCTTGTGTGGTAATTTGATCTTTTATTCATTTTTTATTTTTTATTATTATTATTATTATTTGTCTTTGTTGGATGCTGAGATTGTCTTAAATGAGTCATAATTTCGTGATACCACTTCTCTTTGTTGGTCTTTTCGCTTTACTGATTCTTTAGTGGCTGTCGTTCAATCAAAATGTTTCTGTTTCTATCTTTACACGCTCTATAATTTTTTAGGCAACAATTATTTGTTTCTTTGGCTGGCCATGTCATTTTGGAACATCATTATGCTGATTTTTATTTTTATTTACGTCTATTGAGATAATGTATAAAAATGAAAAAAATTTTAACGTTAGAAATAAATGGGATGTAGCAATGATGAGTTAGCTTCGCTCTTTGTCATCCACTGCAATTTAAAATGTTGCACCGACATGTTTTATTCATATCGTAATTAATGAGTATTCATTGTCTTGATCAACAATGTATGATTTCAGAATGAAGGAAAGGGACATCACGAGGGAGGCCAGCTTTCTCATGAAGGTTGTTAAATTCCAGCTTTATCACTCATCAGTGATCTATTCCATTTTTTTTCTCTCTGAGTTGTGTTAGTCATCTAACTTGTTTTAGAGCTGTTGGTTTGGTTCAGCTTATTACGTGTCTTTATCACTTGTCAATATTTTTTTAAAAAAAACAATTTTCTATCAGAGCCTTCAGGTCATACTGAGCGTTCAGCCACAAAGTCCAGCTGTACGGAATTGGCTGGGATTGAAAGAAACCATTTGATTATGCAAAATTTTGCTAAAACCATATGGCAAGTCTTGAAGCAGTATAGAGATAAACTAAAGGTAATCATTTAGGGATATTTAACTTGCTTCAAGTCTATAATTTCATTATTGTACTGTTTCTGAACTTTTGCTTTATAAATGGGAAACATCAATATTAGCTGAACATAATAAAAATATTTTCTTTGATGTTGGTTTAAAATAAGAGTGCAGAGAATGAAAATCAATCTCTTCGAGAAGAAATTAGGAAGGAGAAGATGAGATATTTTGAGCTGGAAAAGCAATGGCAAAGCTCAAGATGTAGTACTTGCTCCAAGGAAGATTGTGCCGAAGCTGATTCATCCGTCAAAGTAGTTACAAGTTTTGAGTTAAAAAGTGATTTGGATGAGTACAGATTCAATGATGTTCACGAGGTGTGCTTGCAGAATTTTTCCCTCTTGCTCCTTTTAGTATGTTATTATGATATGATGACATGATGTCATTTTTGTAGTTAATAGAGTGCATGTTTCTTTTGGATTTGAGTCCATTTTTGTTGGGCTGATTTTTTTTGTATACCCTTGTATATTCTTTCATTTCTTTTTGTGAAAGCTTGGCTCCTTATAGAAAAAAAAGGTGTCCAGCTTGTTTATTTAATTCAACTGACAGTGTTATAGATTCTTTATTTAAGTTATATTTGGAATAGCTAATCCACTATGACTTTGATTCTCTGGTTAGATAAATATGAACTCTTTCATCAAAGTGAAGGAATCTGAGGGAAATAAACCTCCAGAAAGATGTGATTCCTCTCCCTGTGAAGACATAAATGTAAGCACACTATTTAGCATCTATTTTTGTTTCTGTCTTTCTTTTTTCAATTGTCAAATTCGACCTTAGTCACTCATTGGATCTCAACTTCATCAAACTTATTGCTAGAAAAATAAAAAAAATTGTTTTGTTGTTTACCATAGCAAATTAGTGCTTGAAAATTGCTAATTAAGTCTTTTGACCTTTCTAATTTTGGTGAAGTTGAGTTGGGGACTATTATAGACCTTGTGACATTTAGGGAATATAATGTCCTTGATATGTGAATCTAGGGTTAATGAATCCTTGACAATTTGCTCGAAGTTGGGGGACTTTACCCTTACATTGTGGTCTTTCTAAGATTTCTTTGAGTATAGTGGTCATCACAGGATATCTATTTTCTTTGAATTCCAATGGACAATGGGTTAAACTTGTTGGTAGTAGATTATGTGATTCTAGTGGACTGGATGTGTACTGTATTTCAAATTTTCTTTAAATGGTTGATATTGCACAAAATGGAAAGGTTTCTGCTCAAATCATTTGGTGAGAAACTCAAAACCTGCAAGATCAATGTTTCTGCTTCATGCCTGATTTTCACAAAATTGCATTATATGGAAAGATTTAATTTTCTTTTCATGTTATCCAGAGTTGCTCAAAACTTGATGAAGTTAAAGAAGCACATATAAACAATGTAGACGAGACCACTCCTAGGAGTGAGTGCAACACGGCAAAAAAACTTACATATGTGGAAACAGAGGGTTGCCTGTCGACAAATCCTATAGGTAATACATGTTTGTATGTTATGATTCCGTAACTACTTTTTGATGTGGAAACTACTAAAGTACGTCTCTAACAGTAACATCTTTTAGAGAGAAACTATGAATACCTGCTAAAATGTGGGTAACCAAAAGAAAACCTTTTAGGGTGGACATTATTTTCGTAAGTATAAGATAATTGAAAGTTGGAAACCTTTGGTGTTTTTAGTTTCTAATGATTCAAGAACCAATCGTACAGGAGAGCAGAGCATTCTTAGGAGTCTGTTACATTATGACCAAATTTACATGTTTGGATCTAATGAAGCTTGTGTCATTGCTGATTTAATAAGTCCATGAAATAGCTTTATGGCTTGTGTGGGAGATTGTTTCATACTATTTTCTGTTTTTTGTCTTCAATTTTTTATAAATAGAAATTGAGTAGCTTGTAAAGCTAAAGATTAAGTCTATTATGTACTTAGGATCAATATTTCCAAGTGTGTGTATTTATATTTGGGTAAAAACTAGTCATTTGTAATTTTTTTTTAATGAATCAGTTACCAATAAATGTTTTCACTCATTTTCTGTTCTAAACAAAAGGAAATTTTCTTTTGGATACTGCTCCTAAGCAGCTTCTTGGATGTATTATATTGTCCCGAATGAATTTCTGGTGTGAGAGCTGGTTGTATGAATGCCCCTAGTACTAAACACTATCAGTTGTCTGGGGCATTCTGGTCTTTTTAGTGAAGTGATGGATGTTAAAAGAAAATCGTTAATAATATTTGTTCTAATTAACTCTTATATGTGTTGGTTACGGAACAAGAATTCCATGTCAGTATCCCTTTTATCTATAATTTTCTCGATCCTAAAAACATGGAGTTGACCATTGTACCCTCATGCATGATCTTGTTCTGCTTGATCAGCTGGTCCTACATCAAGGAATCAGTTTTTTCGTATTTCATTTGCTTATGAATAACCAAATATTGGGGATTTGGTTGTGAATGCTCGAGTATTCCTTTAAATCAATATTTTGCATGACTACACACTCCAGTAAATGCTTGGTGAGTTAACTCATCACCCTACATCTCAATTTTAATTTGTTCGGGAACTGTTTACTGTCTCTATTTTCTCCCTCTCTTTTGATTTCAACTGATAGTCTCATTTTTTTCGAATTAGCCTTTGGCACCCTGCAGTCCCATAACTTGGTGAAGCATGACAGCTGTTCATCGGTAGAGCTGGACAAACTCAGTGAGCAAGATGAGGTTAAAACCATTTTTATGTTCTATGCTTTGGCCTTTGAATTACTGTTTTCCGTGTCCATGAATTAGACTGCACAACATGTTAGGTGGTTCTGTATTCTCAATTTCTCAGCTGCTTGATGAACTACACTACTGGAGTATGAAGTTTAATGGAAAATTATGACCATGAATAACGTGTATTGCCAATTTTTTGCAATATGACAACCTTTTCAGGGAGCTTAAACTTCATGTTTATTTTGTTTCTCGGAAAGAGGGATTTGCTAAACCTGATTTATGTATAAATTTTTATTTGTTTTGTATAGTGCGTAAATTAAAATAGGAGTAACATAATATCAACTAGAAAAAATAGTAGGAAAACTCTTTAGAGAAATAGACAGCACCAATATGTTTGAATGGGTTTGAATCTCGTCAAACTTTAAGGAGCCTCACGGATATCAACTTATCACGTGTTCATTAGGGGGCCTTGAACCTTATTGAGCATATTGATTTCTATTTATATTGGACTATATGAAAATTAGTTCATATGAACCCTTTAATGACTTAGCATGTGTATCTTGCTGAATATATATTACGCCAGGCAATTGTCAATCGAGTACAGTTTAAAGCATAATTGATAGACAAATGAAGTTGAAAAATTTGAATGCTGCTGTTATTCATTTTACTTAAAAAAATGGTAAAGGAAAGCATTATTTAATATTTAGTATTTGTGATTTTTTTCCTTTTGTATTTTCTCTAAAAAAACATTTATGGTGATGATCTATGGTTTCTGCCATTTTAATTACTGGATGTTTTAGGAATCTACCTCAGTCGAATCACCTTCACAAGTAGCCTCGTTTATTCACTGCAATGCTACTGCATGTGAAACTCAACCCGTCCTTGATACTTCATTAAACCAATCAACTTCAGAGGAGTCTGATAGGTCAGTTGATGTATTTTCTTATTTTAACCAGTTCAATAACTTAGATTTCTGAACCTTGCTTCATGTATATTTTACAGGGATTCAGGTGCTTTGAATGAAGACCAGGAACTCTTAGCGGTATCTTTCTGTTAGATCTCTTTGAACGCATTTTAAGAAAGGATTTATACCCTAAACTAACCTGGATGTAACCATTGGCTGAGTTTGTATTGAATTATGGTCACTTGAGTTGATCCATGTGGCTTTTAATTAAATGGATAATGTTTATCGCAAGTTGAACCCAAATATGAATTTTCTCTGACCAGAAATTTATGTAATAGTTTTCGTTTATGTAACAGTTGCTGGTTTATTTTACTTTTTTTAGGAACTTTCGAATTCTCAACATGTACCTTCCACCGAGGATATTGAATCTTGTCAAGAACATGAACACCGCATTGATGTGCATTGCAGTGAACCAAGCACTGACATCTCATGCAAAATAGAGAAACCAAAAAGGTCAGCGTTAGTAGGTGCATCAAGTTTCTAATATTTTCTTAACTGCTGATTTGTCAACTACTCTTTCATTCCACTTCGTTGGAACTGTTCGCTTGATGTAGTTGCAACTTGCATCTGTTTTCCGCACAACTCTTATTATGACGATATTTCAGGAGACTTTTGCCCGCATCATCCACATTATTGAGGGATTTCAGCAATATGCATGTCGAGGATGATATTGAGGCGTCAAAGGTCTGTCCTGGTCTGTATGTGTAG ATGGAGAACGGCAGCTCAGTGCAGTGTCCAAACACGGTGACGGTTCGGAGAAACCCTCACCGGAGAGCAAGAGCCACGCCGGCTGCCAAAGCAGCCGAATCCAATCCTCCATCTGCCATTTCTTCATTTCCACTTCAAGAAATACTTGCGATGGAAGTCCCACAAAACCCTAAAGACAATTCATCATCATCGTCGTTATCCGTTCAAACTCCCCTCTCCGAAAACCTGAAAGTGTACCTTAGAGTTCGACCTTTGCAACTGAAGAATTTGAAGAAGTGCGTTAATCCTGGCGATCAAAATTCGAGGTCCGGACATGTATGGCCTCAGAACCCTCAGAAGAAGAAAGTAGCGAAGGAGAAGATTGTTAAGAAGAAGAGTAGCGAGACTTGTATTACGATTAATGATGATCACTCAGTAACAGTCTGTCCGCCTATGGCATTGCAAGAGACTAGGCGGAGTAAGTCTGAGGTTTACGAAGGATTTTCCCATGTGTTTTCTACGGAATCCTCTCAGGGTGAGGTGTATGAGAGGATGGTTAGTCCTTTAGTGGAGGATTTTCTGAAGGGCAAAAGTGGAATGCTGACTGCACTCGGTCCGAGCGGCTCGGGTAAGACCCATACCATTTTTGGTAGTCCAAGAGTTCCTGGTATGGTTCCACTGGCTCTTCAACATATTTTCCGGACAGAGTCGAATGATTCTCAATCCTCCAGATCATATTATTTATCAATCTTTGAAATATACTTAGAAAAAGGAAAAGGAGAAAAGATGTACGATCTTTCAGCAGATGGGGGTGAGTTAACTATGCAGCAGTTTACTATAAAGGGCCTTAAAGAGGTTTTAATATCTAATGCCGGAGAAGCTGAATCATTAGTGGCTTGTGCAATGGCTAAGCGTGCCACTGCAATTACGAATGCAAATAGCACATCAAGCCGGTCTCAGTGCATCATAAACGTGCGCAGAGTTGCTAACCAAGATGAAGTTGACAATCCATCGAACTGTGCCATCTTGACCATTGCTGATCTCGCTGGAGCTGAAAAAGAAAAAAGAACTGGGAATCAGAGTGCAGAGAATGAAAATCAATCTCTTCGAGAAGAAATTAGGAAGGAGAAGATGAGATATTTTGAGCTGGAAAAGCAATGGCAAAGCTCAAGATGTAGTACTTGCTCCAAGGAAGATTGTGCCGAAGCTGATTCATCCGTCAAAGTAGTTACAAGTTTTGAGTTAAAAAGTGATTTGGATGAGTACAGATTCAATGATGTTCACGAGATAAATATGAACTCTTTCATCAAAGTGAAGGAATCTGAGGGAAATAAACCTCCAGAAAGATGTGATTCCTCTCCCTGTGAAGACATAAATAGTTGCTCAAAACTTGATGAAGTTAAAGAAGCACATATAAACAATGTAGACGAGACCACTCCTAGGAGTGAGTGCAACACGGCAAAAAAACTTACATATGTGGAAACAGAGGGTTGCCTGTCGACAAATCCTATAGCCTTTGGCACCCTGCAGTCCCATAACTTGGTGAAGCATGACAGCTGTTCATCGGTAGAGCTGGACAAACTCAGTGAGCAAGATGAGGAATCTACCTCAGTCGAATCACCTTCACAAGTAGCCTCGTTTATTCACTGCAATGCTACTGCATGTGAAACTCAACCCGTCCTTGATACTTCATTAAACCAATCAACTTCAGAGGAGTCTGATAGGGATTCAGGTGCTTTGAATGAAGACCAGGAACTCTTAGCGGAACTTTCGAATTCTCAACATGTACCTTCCACCGAGGATATTGAATCTTGTCAAGAACATGAACACCGCATTGATGTGCATTGCAGTGAACCAAGCACTGACATCTCATGCAAAATAGAGAAACCAAAAAGGAGACTTTTGCCCGCATCATCCACATTATTGAGGGATTTCAGCAATATGCATGTCGAGGATGATATTGAGGCGTCAAAGGTCTGTCCTGGTCTGTATGTGTAG ATGGAGAACGGCAGCTCAGTGCAGTGTCCAAACACGGTGACGGTTCGGAGAAACCCTCACCGGAGAGCAAGAGCCACGCCGGCTGCCAAAGCAGCCGAATCCAATCCTCCATCTGCCATTTCTTCATTTCCACTTCAAGAAATACTTGCGATGGAAGTCCCACAAAACCCTAAAGACAATTCATCATCATCGTCGTTATCCGTTCAAACTCCCCTCTCCGAAAACCTGAAAGTGTACCTTAGAGTTCGACCTTTGCAACTGAAGAATTTGAAGAAGTGCGTTAATCCTGGCGATCAAAATTCGAGGTCCGGACATGTATGGCCTCAGAACCCTCAGAAGAAGAAAGTAGCGAAGGAGAAGATTGTTAAGAAGAAGAGTAGCGAGACTTGTATTACGATTAATGATGATCACTCAGTAACAGTCTGTCCGCCTATGGCATTGCAAGAGACTAGGCGGAGTAAGTCTGAGGTTTACGAAGGATTTTCCCATGTGTTTTCTACGGAATCCTCTCAGGGTGAGGTGTATGAGAGGATGGTTAGTCCTTTAGTGGAGGATTTTCTGAAGGGCAAAAGTGGAATGCTGACTGCACTCGGTCCGAGCGGCTCGGGTAAGACCCATACCATTTTTGGTAGTCCAAGAGTTCCTGGTATGGTTCCACTGGCTCTTCAACATATTTTCCGGACAGAGTCGAATGATTCTCAATCCTCCAGATCATATTATTTATCAATCTTTGAAATATACTTAGAAAAAGGAAAAGGAGAAAAGATGTACGATCTTTCAGCAGATGGGGGTGAGTTAACTATGCAGCAGTTTACTATAAAGGGCCTTAAAGAGGTTTTAATATCTAATGCCGGAGAAGCTGAATCATTAGTGGCTTGTGCAATGGCTAAGCGTGCCACTGCAATTACGAATGCAAATAGCACATCAAGCCGGTCTCAGTGCATCATAAACGTGCGCAGAGTTGCTAACCAAGATGAAGTTGACAATCCATCGAACTGTGCCATCTTGACCATTGCTGATCTCGCTGGAGCTGAAAAAGAAAAAAGAACTGGGAATCAGAGTGCAGAGAATGAAAATCAATCTCTTCGAGAAGAAATTAGGAAGGAGAAGATGAGATATTTTGAGCTGGAAAAGCAATGGCAAAGCTCAAGATGTAGTACTTGCTCCAAGGAAGATTGTGCCGAAGCTGATTCATCCGTCAAAGTAGTTACAAGTTTTGAGTTAAAAAGTGATTTGGATGAGTACAGATTCAATGATGTTCACGAGATAAATATGAACTCTTTCATCAAAGTGAAGGAATCTGAGGGAAATAAACCTCCAGAAAGATGTGATTCCTCTCCCTGTGAAGACATAAATAGTTGCTCAAAACTTGATGAAGTTAAAGAAGCACATATAAACAATGTAGACGAGACCACTCCTAGGAGTGAGTGCAACACGGCAAAAAAACTTACATATGTGGAAACAGAGGGTTGCCTGTCGACAAATCCTATAGCCTTTGGCACCCTGCAGTCCCATAACTTGGTGAAGCATGACAGCTGTTCATCGGTAGAGCTGGACAAACTCAGTGAGCAAGATGAGGAATCTACCTCAGTCGAATCACCTTCACAAGTAGCCTCGTTTATTCACTGCAATGCTACTGCATGTGAAACTCAACCCGTCCTTGATACTTCATTAAACCAATCAACTTCAGAGGAGTCTGATAGGGATTCAGGTGCTTTGAATGAAGACCAGGAACTCTTAGCGGAACTTTCGAATTCTCAACATGTACCTTCCACCGAGGATATTGAATCTTGTCAAGAACATGAACACCGCATTGATGTGCATTGCAGTGAACCAAGCACTGACATCTCATGCAAAATAGAGAAACCAAAAAGGAGACTTTTGCCCGCATCATCCACATTATTGAGGGATTTCAGCAATATGCATGTCGAGGATGATATTGAGGCGTCAAAGGTCTGTCCTGGTCTGTATGTGTAG MENGSSVQCPNTVTVRRNPHRRARATPAAKAAESNPPSAISSFPLQEILAMEVPQNPKDNSSSSSLSVQTPLSENLKVYLRVRPLQLKNLKKCVNPGDQNSRSGHVWPQNPQKKKVAKEKIVKKKSSETCITINDDHSVTVCPPMALQETRRSKSEVYEGFSHVFSTESSQGEVYERMVSPLVEDFLKGKSGMLTALGPSGSGKTHTIFGSPRVPGMVPLALQHIFRTESNDSQSSRSYYLSIFEIYLEKGKGEKMYDLSADGGELTMQQFTIKGLKEVLISNAGEAESLVACAMAKRATAITNANSTSSRSQCIINVRRVANQDEVDNPSNCAILTIADLAGAEKEKRTGNQSAENENQSLREEIRKEKMRYFELEKQWQSSRCSTCSKEDCAEADSSVKVVTSFELKSDLDEYRFNDVHEINMNSFIKVKESEGNKPPERCDSSPCEDINSCSKLDEVKEAHINNVDETTPRSECNTAKKLTYVETEGCLSTNPIAFGTLQSHNLVKHDSCSSVELDKLSEQDEESTSVESPSQVASFIHCNATACETQPVLDTSLNQSTSEESDRDSGALNEDQELLAELSNSQHVPSTEDIESCQEHEHRIDVHCSEPSTDISCKIEKPKRRLLPASSTLLRDFSNMHVEDDIEASKVCPGLYV Homology
BLAST of HG10004771 vs. NCBI nr
Match: QWT43321.1 (kinesin-like protein KIN11A [Citrullus lanatus subsp. vulgaris]) HSP 1 Score: 1067.4 bits (2759), Expect = 5.0e-308 Identity = 594/800 (74.25%), Postives = 616/800 (77.00%), Query Frame = 0
BLAST of HG10004771 vs. NCBI nr
Match: XP_038885528.1 (kinesin-like protein KIN-6 isoform X4 [Benincasa hispida]) HSP 1 Score: 1022.3 bits (2642), Expect = 1.8e-294 Identity = 578/839 (68.89%), Postives = 609/839 (72.59%), Query Frame = 0
BLAST of HG10004771 vs. NCBI nr
Match: XP_038885530.1 (kinesin-like protein KIN-6 isoform X6 [Benincasa hispida]) HSP 1 Score: 1022.3 bits (2642), Expect = 1.8e-294 Identity = 578/839 (68.89%), Postives = 609/839 (72.59%), Query Frame = 0
BLAST of HG10004771 vs. NCBI nr
Match: XP_038885526.1 (kinesin-like protein KIN-6 isoform X2 [Benincasa hispida]) HSP 1 Score: 1022.3 bits (2642), Expect = 1.8e-294 Identity = 578/839 (68.89%), Postives = 609/839 (72.59%), Query Frame = 0
BLAST of HG10004771 vs. NCBI nr
Match: XP_038885529.1 (kinesin-like protein KIN-6 isoform X5 [Benincasa hispida]) HSP 1 Score: 1020.8 bits (2638), Expect = 5.4e-294 Identity = 577/838 (68.85%), Postives = 608/838 (72.55%), Query Frame = 0
BLAST of HG10004771 vs. ExPASy Swiss-Prot
Match: F4HR11 (Kinesin-like protein KIN-6 OS=Arabidopsis thaliana OX=3702 GN=KIN6 PE=3 SV=2) HSP 1 Score: 336.7 bits (862), Expect = 6.1e-91 Identity = 195/366 (53.28%), Postives = 251/366 (68.58%), Query Frame = 0
BLAST of HG10004771 vs. ExPASy Swiss-Prot
Match: Q6YU88 (Kinesin-like protein KIN-6 OS=Oryza sativa subsp. japonica OX=39947 GN=KIN6 PE=2 SV=2) HSP 1 Score: 227.3 bits (578), Expect = 5.2e-58 Identity = 159/376 (42.29%), Postives = 223/376 (59.31%), Query Frame = 0
BLAST of HG10004771 vs. ExPASy Swiss-Prot
Match: Q3V300 (Kinesin-like protein KIF22 OS=Mus musculus OX=10090 GN=Kif22 PE=2 SV=2) HSP 1 Score: 97.8 bits (242), Expect = 4.8e-19 Identity = 69/229 (30.13%), Postives = 112/229 (48.91%), Query Frame = 0
BLAST of HG10004771 vs. ExPASy Swiss-Prot
Match: Q5I0E8 (Kinesin-like protein KIF22 OS=Rattus norvegicus OX=10116 GN=Kif22 PE=2 SV=1) HSP 1 Score: 95.9 bits (237), Expect = 1.8e-18 Identity = 68/229 (29.69%), Postives = 111/229 (48.47%), Query Frame = 0
BLAST of HG10004771 vs. ExPASy Swiss-Prot
Match: A8WFU8 (Kinesin-like protein KIF22 OS=Danio rerio OX=7955 GN=kif22 PE=2 SV=1) HSP 1 Score: 94.4 bits (233), Expect = 5.3e-18 Identity = 70/236 (29.66%), Postives = 113/236 (47.88%), Query Frame = 0
BLAST of HG10004771 vs. ExPASy TrEMBL
Match: A0A0A0LRP6 (Kinesin motor domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_2G368870 PE=3 SV=1) HSP 1 Score: 1010.0 bits (2610), Expect = 4.6e-291 Identity = 579/839 (69.01%), Postives = 607/839 (72.35%), Query Frame = 0
BLAST of HG10004771 vs. ExPASy TrEMBL
Match: A0A5A7VFQ0 (Kinesin-like protein KIN-6 isoform X1 OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold82G004920 PE=3 SV=1) HSP 1 Score: 983.0 bits (2540), Expect = 6.0e-283 Identity = 567/840 (67.50%), Postives = 601/840 (71.55%), Query Frame = 0
BLAST of HG10004771 vs. ExPASy TrEMBL
Match: A0A1S3BB89 (kinesin-like protein KIN-6 isoform X2 OS=Cucumis melo OX=3656 GN=LOC103488054 PE=3 SV=1) HSP 1 Score: 983.0 bits (2540), Expect = 6.0e-283 Identity = 567/840 (67.50%), Postives = 601/840 (71.55%), Query Frame = 0
BLAST of HG10004771 vs. ExPASy TrEMBL
Match: A0A1S3BB86 (kinesin-like protein KIN-6 isoform X1 OS=Cucumis melo OX=3656 GN=LOC103488054 PE=3 SV=1) HSP 1 Score: 981.5 bits (2536), Expect = 1.7e-282 Identity = 566/839 (67.46%), Postives = 600/839 (71.51%), Query Frame = 0
BLAST of HG10004771 vs. ExPASy TrEMBL
Match: A0A6J1GGC1 (kinesin-like protein KIN-6 isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111453957 PE=3 SV=1) HSP 1 Score: 931.0 bits (2405), Expect = 2.7e-267 Identity = 537/838 (64.08%), Postives = 576/838 (68.74%), Query Frame = 0
BLAST of HG10004771 vs. TAIR 10
Match: AT1G20060.1 (ATP binding microtubule motor family protein ) HSP 1 Score: 336.7 bits (862), Expect = 4.3e-92 Identity = 195/366 (53.28%), Postives = 251/366 (68.58%), Query Frame = 0
BLAST of HG10004771 vs. TAIR 10
Match: AT3G49650.1 (P-loop containing nucleoside triphosphate hydrolases superfamily protein ) HSP 1 Score: 84.7 bits (208), Expect = 3.0e-16 Identity = 75/262 (28.63%), Postives = 122/262 (46.56%), Query Frame = 0
BLAST of HG10004771 vs. TAIR 10
Match: AT5G27950.1 (P-loop containing nucleoside triphosphate hydrolases superfamily protein ) HSP 1 Score: 82.8 bits (203), Expect = 1.1e-15 Identity = 63/203 (31.03%), Postives = 100/203 (49.26%), Query Frame = 0
BLAST of HG10004771 vs. TAIR 10
Match: AT2G21380.1 (Kinesin motor family protein ) HSP 1 Score: 79.0 bits (193), Expect = 1.6e-14 Identity = 72/249 (28.92%), Postives = 116/249 (46.59%), Query Frame = 0
BLAST of HG10004771 vs. TAIR 10
Match: AT4G39050.1 (Kinesin motor family protein ) HSP 1 Score: 75.9 bits (185), Expect = 1.4e-13 Identity = 60/195 (30.77%), Postives = 96/195 (49.23%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Bottle gourd (Hangzhou Gourd) v1
Date Performed: 2022-08-01 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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