HG10006575 (gene) Bottle gourd (Hangzhou Gourd) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGGATTTTTTAGTTCCACAAGATGTAGGAGATGATGATATGACAAACGAGACTCCTCGTTCGACGGTTGTGGACTATGATGAACCAATGAGCTCGTCTTCAGGATCCGAGAACATGAGCATAGCTCAACCACCAATTGTCCGAAAGAAGAGAAGTGGTCTTTGTTTGTGCGGAAGATCAACTAGAAAGATATCTAGTGAAGATATAGCAATAAGTATGAGCATAAGTAGAAGGAAAGGCATCCCTCATAGATCTCCCTTGTGTTAACTAGCAAAAAAAAAAAAAAAAACTTTTTTTTTTATTTTTTTTTATTTTTTTTTTACAATTTGACTGAAAAAAAAACCCCTCACAATCCCACCTTTTTTTATTTTTATTTTTTATCTCTCTCTTGCATTGAAATTAGAGCTTACCTTAATTAATTAATCAATTGGTCGGGGGGTTTTGTCTTAATGGCTTCACGTGGCTCCCAATTCCAAGTTATGGCTTTGAGCAATTTTCTAATATATCATATTACAATTAATATACTCATTTTATATAAGATTGTGTGATGCTCAAGAGATTTTTTTTAGTTCTAACATTTTTATATTAGCAACTATTATCGATAGAAGTTATATGTCTTAATCGGTTAAATTATAGTTAGTTTGATTAGGTTTTTAAGAGATATTTTAGTGTAAATTAATTTATCTAAGTCTATGTTTGAATGATAAAAACTTAATTAAAAATATGAGTTTAATTATATAACTTATTGTTTAGTTTGTAATTTTAATTTATAGAAAGTGAAATGTGTAGGCACTCTACACGATTAACAAATCTAGGTTAAATGTTTCGAACACTCTCTTAATTGTTGTTATCAAAAAAATATTTTTATCTCTACTTTTAAGAGAGATGATATTGAGTTCAAAATCCTGCTTTTCTTTTTAAGTTTAAATCTTATTTTAATCTCTTAAAATTTTAAGTTATTTTACTTTGATTTTGAACTTTTAAAATGCCTACTTTAATCTCTGAACATTTAAGACTAAATTTGTTTTCATAGCAAAAAATAATAATTTTGATCCTGAGCTTTATTTTAAATATAATATATCAATGATGTAATTTTGATTATGTATGCTAGCACGTTAATCTAATCGTGAATTTAAATCAAGTAGGTTAGAGACGGTTATAAGATAAAATGAATTTTAATCGTGTCTACAATGATTGTTAAAAGTTTAAGGACTAAAATAAAATTTTTGAAAGTTCAAAGATCAAATATAACAAATTTAAAGTTAAAAGAATTAAAACAATTAAATAATTAAAAATTTAGACATCAAAATATAAAGTGAAAAGTTTATGGATGAAAATGAAATTTAAACTTTTTTATAATGTATGATTAAAACAATATTCTAATCAATAAATTAGGATTAAACTGTCAATCATTGACTTTTAATGTATTTACACGTACACACTTACACATAAATGTCCCTCAAAGTAAATAAACTAAGGAATAAAACCCCATGGTTTGACTGGTCAAATCCGTACTTATTGACATTTTTTTAATACTTAGGCCTAATGTAAATAAAAGAAAAAAAATATTACACTTTGTTAAAATATAAAGTTGGTTAAATTACTATTAACTATTGTTTAGGTTTAAATTATCTAGAATATTCATTTCATTATAAAATGTTAATAGATTTTGATTTTGAATGGAATGACAAGCTTAAAAATATTCTTTTTTGTACTCAAGCCTACTTTTTAAATTACTTAAAAAGTTATTTCAGACAAATCTTTCATGAGTGATATAATTTCTAGAAAAGTAAATAGTGAGTAGTTAATAATAAATAAAGTTAACACATATTTGGAGTTGATAATTTTAATATCCTTTGATAATTATTTTGTTTTGTTTTTGAAAATTATATTTGCTTCCTCATTTGTTGGTAAGTTCCTCACTTTTTTTCTACTCCAAAAAATACATATTTGAATGAGCTATTTTCAAGAATAAAAAAAATGAGTCAAACTATTTACAAATATAAAAAATTTTACTGCCTATTAGCGATAAACCGCGATAAAATTCTATCACTTGAGCGATAGAAGTCTATCGCTTAAGCGATAACATTCTATCTCGGTCTATCGTTGATAGACAGTAAAAATTTTCTATATAGTTTGATATTTGTTCTGTTCATAGTAATTTTCCTATTTGAATTATAAGCCAAATTTTAAAAACAAAATCAAAGTAAAAAAACAAACAAACTATTTTTTTTGGAGCCCATGTGGGCTAGTTTCCAAGAATTTGGGCTAAGTGGTTGGGCTTCTTTCCCATCTTGATTAGAGAGGTCTTTGCCTTGATTTGGTCTTATTAGAGCCCATGTGGGCTACTTTCCAAGAACTACGAAATTTTATGTAAACATTAGAGATTTTTACTCAAGGTAGAATTTGAGATATCTAACTTTATGTGCTCTTCTCAATAATAATAATAATAATAATAAAATAATAAAACTTTATGTGGCTTATCAATTAAATTCTTCTCAAATTATGAATTTTTCTTAGTACAATAATTGTTAGATATGATGATAACTTTTGACTTCAAGAGGAATGTACGTTAATTATCTCTTTGTTAATTTTGACTATTAAATTACTTTTTTTTGTCTTATAATTATCACTTTATTCATTCTAGGTGAAGAAATGACACTGACAAATTTTTCTACATCATTTTGATATTGACAAAATATCAATTTGAATAGTTGTTAATTTAGTTACTACTTAGTTTTTTTTACTTCATTTATGAAACAAACCAAGTAGTATTTATATTAAAGAAATAAATTTTTATTTGAATATTACACTAGTTTCACTTAATTTATAAATTTTAATATCATTTTGGTATATATTTTGAGTCATTTATTTCCGTTCATATGACGTACTTTTGATTATTCAATTTTTGTTTGTGTACTTTCGATAAATGTTAATTTTAGTTCTGTAAAGTTAATTTTTATTGAAATTGGTTAAATAATAATAATAATAATAATAATAATAATTTTCATACGAAAAAAAACATTGTATGAATATATTGGACATTTAAAAGTTCAAGAGCAAAAATGATATTTTAATCTATTTTTTTATTTAGGATTATTTCCTATAAATTGATTTTGTCCACTCAATTTTTATTTTATAATAGCACCCTTTATTGTTTAAATTAGGAGTAAATAAATTGAAAAGTAAATTTAACCATAATAGGACTTATTAGAGAAAATGTTTTTAATTATTTCCTTTTTAGTCCAATAATTATAAAGTAAAGAATTGAACCATTGATCTTTTAAATGGACAATTACTGTTTTAGAACAAAGTTAGATAAAATTCTAGAATGTCTCTTAACTTGTGACTTCATTTTAACTAATATCTTTGAAATATTATCCCCCTTTTTGGTCACAAAGACAATGAAATCAAGTCGTTTTTTAATAGGGATTTTATTTTTCTTTAAGTCTTAATAGCGATTTTGATATGTTTCGATTATTATTATTATTATTATTTTTAGTAAACTAAGTTTTGATTCATTCGTCATCAAATTTCCTAGTTGATATCAATTTTACAAGTTGAGTAAAACCAACTTGACTTATACCTAATTAATATCAATTTAAAAATTGACATATACATCCTTAAGGATTGAAATATTGATTTGACAACGATATTGCTAATGTCTCTTTTGAATACATATAAAACACACACACACAAATCCATTAGTCATTAATCTCGTTTATGGGTATGTATTACTATGAGATCTACGACTAAGTTTTGAAACTAAAAACAATGTAATTATTAATTTTAGAAAATTTAGAAATTATTTTATATGCAAAAAGTCAACAAATAACAATGTTTTTGTTAATCTATTCATTCATAGTTTAATCATAATCAATCATGGCATAAAATTAGGCAAATTTAACTAAAACATAGAAAGAAAAATGCCAACAAGGGATGAGTTGGCCCTAAGCAGCTTTTATGTGATAAAAATTTCAATTGTCAATTTGAATGATATGAATTATTCATTTCTATATATTTTTTTTAGAGGAAAAAATGGAGAGTGCCCTTCTAAATTTTAAAATATAAAAATGAGATGTTATAGAAAATAAAACATCAATTCTGTTAAACCATTGTAATCAAAGTTGTTTTAGGGAATTTTAGATTATTTGATTTTTCTTTTATTCAAAACAAAATTTAAAGACAATTTGTCTAGTTTAAATTGTTTAATTGTGAAAAGGGATGATCATTAAATTGGTCCTAGTTTTTGTTTGTTTTTTTAAATAAAAAAATTGGTCTTAGTTCTTGATTAGATTTAAAGCAAAATTTAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAGGGAATAGAATAGAATCAAATCTAACATGCTTTTAATTTTTGTGTTCTCTTAGCTTGAGATAATAAATATGTATGTATATATTTTTTCAATTATAGAGTACTTGAATTTAGTATTATTGGTTTCGATTGGTGGTGTTTTTTTTTTTTTTTCTGTTTACAAAATTAATTAATAAGAGATGAAACTGTTCATTTTATATAAAGTAAAAGAAATATTGTTTAAACATTTTATGGGTATAAAAAGGAAAACTAATTCAACTTTTGTAAAGAAAAATGGTTTTTAGCGGTCATATTCTCAAATATTGTAAATTTTTTTATTAAAAAAAAAATACATTTTCCTACCTACAATCAAAGATTAAAATATTGATGTCGATATCAATATCAAAATTTCAAATAAACATCGTTATCAACCATTATTTCTGTAAGTACTTACACAATTCATAAAATCTAATAATTAAGTCATTTTTATTTCTAAATTAAATTATAAACCTTGTTATTAACATTTTTTTTTTTTGTATAATAATAATTGTGGAATGAGAGTTTCAAACCTTCAACTTCTAAGGTGCAGATTTACATCCCAATTACTACTATGCTAAACTCGTTTTATGGCTGGTTGTTAATATTCACATTCATATAAAGATTAATAGATCTTTTTTTTTTAATGGATATCAGATTAACATATGATAATATTTTAAATATTTTATGTGTATTTATAAAAGATATTGAAGAGAATTAAATAAAATAATAATAAAAGATATTCATGTTAAATCATCTGATTTATAGATATATCATTATACATATAACCAACAGGAAAAAAAAATTATGCTCTACATGGTAAAGTCTATAAATACACACATCTAAACTCGTAAATATTGAGACTTATTCTCATATTATTTGGAAATGTCAGATAACCAACGATATTTGGCATCGATTTCTTGAGACTAATGTGAACACTCTTTCTTCTAATAGAACAAAGTGGATCGACTTGGATCATTAGGTTTTGATTTTGGAGAGAGGTTCCCTACAGGAGTTGGCTAAGATCGTGGTGATTACATGCTAGATTTGGGAGGCCAGAAATAAGCTATGTTGTTCCAAAAAGTCCCTATCAACATCGATTCCTTAAGTGCTTCAATAAAAAAGCATCTTCAAGATGAGGTGGTTGCATGTCACACGAGTCTAGATGGAGAGTTGAGGTGATGTTGCATGATGTTTTTATTAGTTGGTTCCCTTCTTTAAGAAAAATGTAAGCTTAATACTAATGCGGCGTGGAGCTCTAAAAAGCAAACTAGCGAATTGGGATGGGTGCTTAGGATCATTTGGGTCGTATTCGCCTAACAGGCTTCAAGGTCCTCTCTAAATGTAGTATGATCAAGGTTTTGGAAGCGTTGACTATCCGCAATGAATTGGATAGTATTCTTTATACCAATGTGATAAAAGCCATTACGGAATCAGACTGGCTAGAGGTTATTAATTTACTCAACAATCAATCTTCAAATTTATCAGAGGTCTCCTTGCATTTGAGTTGGGATTTGTTTTCTTCTCCCATGTGAAGAGATGCCACAATTTTCTGGCCCATATTCCCTCGCGAAGAGGGCGATGGAGGATAATGTTTTTTCTATTCTTATTCTTCCTTATTCTAAACGGTTTGTTTCTTGTTCATCCGATGATATAATTCTTCAATTTAATTATAATTTGTTCTAAAAAAAATTACAAAGATAATATTCATAAATACAAGAATGATAAAACTACTTAGATTAGAGAGAAATATTAGAGACCAAACATGTTCTACCAACGCCATGAAAAGGGAATGCGCCAAACAATTGACATCTATTTTTTTTTCTTAGGACAATTAACGTTGACCAACACAGCTGTAGTCTGTTTCCATATATAATTTCATTTAAATAATTAAAAAAATCTAAGTTCAATTAAAATATATAATTTTTATTTATTTATTGCTTTATTGTCCAATGATTAGAGAAACGTATGTCTTTAAATTAATTAATTGCACCCGAATTTCAACCGGCTTTTCTTAGCTGGAAAATTAGAGAAAAATAAGAACATATCGACACGTGGCACTTTTATGACATGACAGCACGTTCAAGCCGAACAGTCCCTGACCGTTTCTCTCTTCTTGTATGCCGACAGCCAAAACGGTAGTTTCTGACGTGGCATCTGTCTGTTGGACTCTTTGAAATTAAATACATTTTTGTTTTTGCAAAGATTTAAATTAAATATTAATAAATTCCTTTTCATAATATTATATTTCACAACACCCTTTTGATTTAAAAATAAGGACTTTGGAGATAAAACTCCCCATCATACATCCATTATCTTTCCATTGATATTCATGGGTTTTGGAAAAGAAGTGTATACTTTTTAAGGTCTTTATAATTATGAAAATATCCTTCAAATATTAAAAATATCTAGACAAATTTAAATAAAGGAAAGAAGTAACAAAAATATAAATATTAATAAAAACAATTTTTTTTTAAAATTGTGTTAAAAGGTGGAGGATTTAAAACGAGCATAGTCCAATTGACATATAAGTGTGGTAGTGAGCATGAAGTCTATGGTTCGGATTCCCTTACTCCCAATTGTACTAAAAAACTAATTGGACCATGTTAAACTTGACAAATCTCCTCTCCTATTGTTTGAACTTAATATGTAAATTTATAATTTAATGCTTATACCAAAAGTCAAATATGTTTTATCATTAAAAAAGTCAATTTTTTTTTTTCATTTTAGAAATGAAGTCAACATTTTATTCAAGTGTCAAAATGAGCATGGCTCTCGGACATCAAGTATGTACCATCAACATTGAGGTTAGAGGGTCGATCTCCTACCCCACATCGTCAAAAATTATATGCATGCTTCTTCTTTATTTATTTACTACAATTTTAAAGAAACACTTGAATTTTTAGCCAAATTCTAAAAACAAAAATTACATTTTTTCGATTAACTTTTTTTAAACTTCCATATATTTTGAAAATATTTAGGCCCCATTTGGCAACCATTTATTATTATTTTTTTTAATTTTTGAAAATTAATCTTATAAACACACATTCTACCTTTAAATTTCTTGTTCAATCTACTTTTTACCAATATTAAAACAAAGCCAAGTTTTGAAAACTCAAAAAATATTTTAAAAACTCATTTTTTTTTTTTTTTTTTTTTGGAATTTGGCTAAGAATTCAACTTTTTACTTGAGAAATATGCTAACCATTATAAGAAATTGAGAAAAAATAAACTTAATTTTCAAAAACAAAAGACCAAATAAGTACCAAACAAGGCCTTACATTATAAACCAGAGAAACTCATAAATAAAATATTATTTATTAAATCAAATGATCCGAGACCTAACCTAATCTTAGATGATGTAAGATTAAATTTGTCTTCATCTATTATAACTTTTGGGTCAATTGACGATTTAGCATGGTATCAAAGCATATAAGACCCAAACGGGTATTTGGTCCAATAAAAATAAATTTGGATCCAATCAAGAATGGTGAACCCAAAAGAGGCATGTTGAGGATCCAAAATTAGAAAAATCAAGGGGATCCAAAATTAGAAAAATCAAGGGACCTTACACTCTTAAAGATAAATGAGTTACTCATCCTATTGTCAATTGGTTTTTAAACCCGTGCATTGTTATTTTCTTCCCAATTAATATTCATTTCCACTTATGATTAAATTTGCCTTCATCTATTAATTAAGGTTTTGAGTCCATTTGCGATTTAACATCTAAATGTTTTAATTTTTTTAAAAAATAATTATTTATTTATCATTTTTATTATTGTTACACATCCAAGGAATAATTGAAAGGTCCCACTTCAAATTCGTTCATTCCAATTCCCAAACCATAAGATAAGATATTGCCAAATCCACAGAGAAATCAGCTCGGATTCTGCAAAACTCTCAGAACGAGAGCCACTATGTTCCTCCTCCGACCCATCTCCCTCATTTCCCTCATTTTTTTTTCTCTCTTCCTTTTCTCCCATTCTTCACTCACCGTCTCTGCCCTCGGCGCCATTTCCATCTTCGGTACTCTTCTTAATTTTTTTTTCTGGGTTTGAACCAAAAACTCCATTGTTCTATAATCTGAGATTTTTCCTATCTGGGTTTTGTTGAAAACCAGAAAACTCTGGTGGGGTTGAGGTTTTTCAGGTGTCGGAGCCATGGAGGACTGGAAGAACCCTTGCGGAGCAGGGCCCTGCTGTGAACTCGTCTCTGATATTGGCCGAAGCCAGGACTCAGAGGAAAGACCCCCTTGAAAATTTTCAACCCTACATGGGTGGATGGAATATCAGCAACCAACATTACTGGGCTGTAAGTTCATTTCTTCATTCTCAATTTTTGGTTCTGTTACTTGTAATTACTCTGATTTTATTGTTTGTGTTGTGGTTATATGTTTATTTTATTTCCCCTGTTTTGTGAATCCAAAAGTTTAACTTTAAACTGATGAGTGAGTCTGGGTTTTTTCTCACAATTGTGGGAATGGAAATTAGTTTATGACTCACAAGTGATTGTCAATGTTAATTGGAGAGGAAGTGATATTTATAGGATTTAGACAGAATCTCTTGTTCTGATATCATGCTAAAACACCTTTAAACTCAAAAGCTTAAGCTGATTCATTCCTGATTTTCGTCAAAGTGAACGATCATATGATCCTTTATGTGTTGTTTGGAACATTTTTGCACCTTGTTTCTAATCTTAGATCTTCCTTTGTCCTCTACTTACTAGTGTTGTGTATTGTGTATTTCTGTCATTTCTTGTAAGAAAAGAACAGGGAAAGAAATTTTAGTACATTGTCATATGTGGCCTATGCTGGGTTTCTATTTTCATGGATCATGATAGGATTTATTTGAAGTTTTAGATGGATTTTCTTTTTTTGAAATAAGATCCGTCGAAGTTGAGATCTTTGGCGAATTTGGTTCAGGTTGGTTTAGTTGTTAATTTTTGGCTAAAGTTGAACTTGGCTTCCTGTTTTTAGGTCCTATCTTCATTACTTTTTGTGTCGTTTGATATTTATTATGTTAACCGTGGTGCCTTCTGTCTTGTTCCAATCTGATGCAGTCTGTTGCTCTTACTGCTATTCCATTCTTTGTCATTGGTATTGCTTGGTTTGTGCTCTTCGGAATATGCTTGTTCATCACCTGTCTTTGTCGTTGCTGTTGCCGGAGGGAGCCTTATGGCTATTCTCGGACAGCCTATGCCCTCTCTCTTGCTTTCCTCATATTCTTCACCATCTCGGCAATGTAAACATCCCTCTCCCTCAAAACTGCAGTCTAAATCTTTTAATGTCACTCAGAAGTTGATGTGAAGATTTCTTTGTTTTCATACTTTGAATCAGTGTAGGATGTGTTGTGTTATATGTTGGTCAAGGGAAGTTTCATAGCCGTACGTCGAGCACATTGGAATATATAGTAGATCAGGCAGATGGAACTGCTGAAAACCTCAAGAATTTGTCGGTATATCTTTCTTCAGCGAAGTCTATTGGAGTCGATTCGATATTTCTGTCTGCAGACATCCAGAAAGGAATTGACGATATTGGCTCAAAGATAGGTTCTGTTTCTTCCACTCTTACTAATGCAGCTTCTGGCAACTCAGACACGATACAAAAAGGCCTAGATGAAACGTAAGTAGAACCTCTTGTATCAAATTTCAGTGCTTTCAGTGACCACGGGTAACAAATTTTCATGTTGTGTATCGCAGCCGACTCATCCTCGTTATTCTTGCTGCTGTTATGCTCTTGTTGGCATTTATTGGATTCTGTAAGTGTTTTTACTTTTCTGAGTAAATGAATTAAAGACTGACCATAATTGGAACCTTTCTTATATCATTTTTTATACATGATCCAGTATGTTCCATCTTTGGATTGCAGTGTGTCGTATACACGTAAGTATATCTACGGTTCCATTTTCTTTGTTGATATCATGTTTTTGATGTCAAGTTGTAATATATTGAACACTTCCGTTCTTAATGGCTGCAGCTTGGTAATATTTGGTTGGATTCTCGTTACGGTCACATTCTTTCTGTGTGGCGTGTTTCTTCTTCTCCATAAGTAAGGGTCCCTATTTCATTAAGAAAGTTCTTTTTTTAACCGAAATGATGCATATAGCGCCACTGGAACTCGTAGGATATTCAATATGATAGATAACTAAATCTGGCTTTGGCTTGGATTGGAAAGCAGCTTTCCATCTTCTGAAACCAACACTTTTGATGTTATTTGACGTACAATAATTTCGATATGTCTATTATGGATCTCCACCCCCTGGGATCGATAAACCTTTTGGATCTTATTAACCAAAGAGATACGACTTTGCACTATCGTTAGTTCAGCACCAATCAAAAATCCCCAAGGAATTCCAAGAATTCTTGTTATACGCTCGTTCCAACCCTCAATTCTCTTTTCTAGGCTCATCGATATTGAATCAATCGAACGCACTTCTAATACTTGTTCTACTTTTGGTGCGTTATATCACCAGATCGCGATTTTTCATATATAAATGTAACTAAGGTATCTCCTTCGTAAAGGATTTCGCCATAATGGCGATGAACAGTTGCTCCTGAAGTGGCCAAGTAAGGCTTAGCTGATCTTATTACTACATAATCAACTTGAACAATTATAATTTGACCCGATTTTAGGTGTGGGTATTCTTGTTTTTGTTGAATGTTGTCTCTATCAGCTCCAAATTGATTCTTTTTTCCATCGTATGCATTAGTGTGGTCGGAGATACATGTGTTGCAATGGAAGATTGGCTGCAAAATCCCACTGCCCACACGGCGTTAGATGATATCCTTCCTTGCGTCGACAATGCCACTGCCAAAGAAATTCAGTCAGCAACCAAAAATGTGAATTTCCAACTTGTCAGTTTGGTCAATGGAGTGATCAACACAGTCTCAAATGTCAATCCCCCTCCAAACCTCGGCCCCCCTGTGAATTACAATCAATCTGGCCCGTTGGTGCCGCCTCTTTGTAGTCCGTTTCATTCCAATCTCACCGATCGACCCTGCTTGGCAAATGAAGTACAACTGAGCAAAGCCCCTGCGGTGAGAGATATATGTTATGGCTAGCTCAAACAAGTACATATGACCCAGCCTTTTACTGCATTTTTTTTTCGATAGTCTCATCGAGATCTCGAATTGTTGTGTGCAGGTTTGGATGGATTTCACTTGTCAAGTATCAGCCTCTGGCATTTGCACCACTACTGGCCGGTTGACTCCAACTTTCTACAACCAAATGACAGCAGCAGCAAACGTGAGCTATGGTTTGTATCGCTATGGACCGTTCTTGGTCGAACTTGTAGACTGTACGTTCGTTCGACAAGTGTTTACAGATATCAGTAACAACCATTGCCCTGGCCTCCGACTATACATGCAATGGATTTATGTCGGGTTGGTTGTGGTGTCTGGGGCTGTCATGCTTTCCCTGATCTTCTGGATTATATACGCAAGAGAGCGACGACATCGGGTTTATACGAAGCAGTTTATTTCCAGAACTCCAGGAGGACAAGACAAGGGCAGCTAG ATGGATTTTTTAGTTCCACAAGATGTAGGAGATGATGATATGACAAACGAGACTCCTCGTTCGACGGTTGTGGACTATGATGAACCAATGAGCTCGTCTTCAGGATCCGAGAACATGAGCATAGCTCAACCACCAATTGTCCGAAAGAAGAGAAGTGGTCTTTGTTTGTGCGGAAGATCAACTAGAAAGATATCTAGTGAAGATATAGCAATAAAAAACTCTGGTGGGGTTGAGGTTTTTCAGGTGTCGGAGCCATGGAGGACTGGAAGAACCCTTGCGGAGCAGGGCCCTGCTGTGAACTCGTCTCTGATATTGGCCGAAGCCAGGACTCAGAGGAAAGACCCCCTTGAAAATTTTCAACCCTACATGGGTGGATGGAATATCAGCAACCAACATTACTGGGCTTCTGTTGCTCTTACTGCTATTCCATTCTTTGTCATTGGTATTGCTTGGTTTGTGCTCTTCGGAATATGCTTGTTCATCACCTGTCTTTGTCGTTGCTGTTGCCGGAGGGAGCCTTATGGCTATTCTCGGACAGCCTATGCCCTCTCTCTTGCTTTCCTCATATTCTTCACCATCTCGGCAATTGTAGGATGTGTTGTGTTATATGTTGGTCAAGGGAAGTTTCATAGCCGTACGTCGAGCACATTGGAATATATAGTAGATCAGGCAGATGGAACTGCTGAAAACCTCAAGAATTTGTCGGTATATCTTTCTTCAGCGAAGTCTATTGGAGTCGATTCGATATTTCTGTCTGCAGACATCCAGAAAGGAATTGACGATATTGGCTCAAAGATAGGTTCTGTTTCTTCCACTCTTACTAATGCAGCTTCTGGCAACTCAGACACGATACAAAAAGGCCTAGATGAAACCCGACTCATCCTCGTTATTCTTGCTGCTGTTATGCTCTTGTTGGCATTTATTGGATTCTTATGTTCCATCTTTGGATTGCAGTGTGTCGTATACACCTCCAAATTGATTCTTTTTTCCATCGTATGCATTAGTGTGGTCGGAGATACATGTGTTGCAATGGAAGATTGGCTGCAAAATCCCACTGCCCACACGGCGTTAGATGATATCCTTCCTTGCGTCGACAATGCCACTGCCAAAGAAATTCAGTCAGCAACCAAAAATGTGAATTTCCAACTTGTCAGTTTGGTCAATGGAGTGATCAACACAGTCTCAAATGTCAATCCCCCTCCAAACCTCGGCCCCCCTGTGAATTACAATCAATCTGGCCCGTTGGTGCCGCCTCTTTGTAGTCCGTTTCATTCCAATCTCACCGATCGACCCTGCTTGGCAAATGAAGTACAACTGAGCAAAGCCCCTGCGGTTTGGATGGATTTCACTTGTCAAGTATCAGCCTCTGGCATTTGCACCACTACTGGCCGGTTGACTCCAACTTTCTACAACCAAATGACAGCAGCAGCAAACGTGAGCTATGGTTTGTATCGCTATGGACCGTTCTTGGTCGAACTTGTAGACTGTACGTTCGTTCGACAAGTGTTTACAGATATCAGTAACAACCATTGCCCTGGCCTCCGACTATACATGCAATGGATTTATGTCGGGTTGGTTGTGGTGTCTGGGGCTGTCATGCTTTCCCTGATCTTCTGGATTATATACGCAAGAGAGCGACGACATCGGGTTTATACGAAGCAGTTTATTTCCAGAACTCCAGGAGGACAAGACAAGGGCAGCTAG ATGGATTTTTTAGTTCCACAAGATGTAGGAGATGATGATATGACAAACGAGACTCCTCGTTCGACGGTTGTGGACTATGATGAACCAATGAGCTCGTCTTCAGGATCCGAGAACATGAGCATAGCTCAACCACCAATTGTCCGAAAGAAGAGAAGTGGTCTTTGTTTGTGCGGAAGATCAACTAGAAAGATATCTAGTGAAGATATAGCAATAAAAAACTCTGGTGGGGTTGAGGTTTTTCAGGTGTCGGAGCCATGGAGGACTGGAAGAACCCTTGCGGAGCAGGGCCCTGCTGTGAACTCGTCTCTGATATTGGCCGAAGCCAGGACTCAGAGGAAAGACCCCCTTGAAAATTTTCAACCCTACATGGGTGGATGGAATATCAGCAACCAACATTACTGGGCTTCTGTTGCTCTTACTGCTATTCCATTCTTTGTCATTGGTATTGCTTGGTTTGTGCTCTTCGGAATATGCTTGTTCATCACCTGTCTTTGTCGTTGCTGTTGCCGGAGGGAGCCTTATGGCTATTCTCGGACAGCCTATGCCCTCTCTCTTGCTTTCCTCATATTCTTCACCATCTCGGCAATTGTAGGATGTGTTGTGTTATATGTTGGTCAAGGGAAGTTTCATAGCCGTACGTCGAGCACATTGGAATATATAGTAGATCAGGCAGATGGAACTGCTGAAAACCTCAAGAATTTGTCGGTATATCTTTCTTCAGCGAAGTCTATTGGAGTCGATTCGATATTTCTGTCTGCAGACATCCAGAAAGGAATTGACGATATTGGCTCAAAGATAGGTTCTGTTTCTTCCACTCTTACTAATGCAGCTTCTGGCAACTCAGACACGATACAAAAAGGCCTAGATGAAACCCGACTCATCCTCGTTATTCTTGCTGCTGTTATGCTCTTGTTGGCATTTATTGGATTCTTATGTTCCATCTTTGGATTGCAGTGTGTCGTATACACCTCCAAATTGATTCTTTTTTCCATCGTATGCATTAGTGTGGTCGGAGATACATGTGTTGCAATGGAAGATTGGCTGCAAAATCCCACTGCCCACACGGCGTTAGATGATATCCTTCCTTGCGTCGACAATGCCACTGCCAAAGAAATTCAGTCAGCAACCAAAAATGTGAATTTCCAACTTGTCAGTTTGGTCAATGGAGTGATCAACACAGTCTCAAATGTCAATCCCCCTCCAAACCTCGGCCCCCCTGTGAATTACAATCAATCTGGCCCGTTGGTGCCGCCTCTTTGTAGTCCGTTTCATTCCAATCTCACCGATCGACCCTGCTTGGCAAATGAAGTACAACTGAGCAAAGCCCCTGCGGTTTGGATGGATTTCACTTGTCAAGTATCAGCCTCTGGCATTTGCACCACTACTGGCCGGTTGACTCCAACTTTCTACAACCAAATGACAGCAGCAGCAAACGTGAGCTATGGTTTGTATCGCTATGGACCGTTCTTGGTCGAACTTGTAGACTGTACGTTCGTTCGACAAGTGTTTACAGATATCAGTAACAACCATTGCCCTGGCCTCCGACTATACATGCAATGGATTTATGTCGGGTTGGTTGTGGTGTCTGGGGCTGTCATGCTTTCCCTGATCTTCTGGATTATATACGCAAGAGAGCGACGACATCGGGTTTATACGAAGCAGTTTATTTCCAGAACTCCAGGAGGACAAGACAAGGGCAGCTAG MDFLVPQDVGDDDMTNETPRSTVVDYDEPMSSSSGSENMSIAQPPIVRKKRSGLCLCGRSTRKISSEDIAIKNSGGVEVFQVSEPWRTGRTLAEQGPAVNSSLILAEARTQRKDPLENFQPYMGGWNISNQHYWASVALTAIPFFVIGIAWFVLFGICLFITCLCRCCCRREPYGYSRTAYALSLAFLIFFTISAIVGCVVLYVGQGKFHSRTSSTLEYIVDQADGTAENLKNLSVYLSSAKSIGVDSIFLSADIQKGIDDIGSKIGSVSSTLTNAASGNSDTIQKGLDETRLILVILAAVMLLLAFIGFLCSIFGLQCVVYTSKLILFSIVCISVVGDTCVAMEDWLQNPTAHTALDDILPCVDNATAKEIQSATKNVNFQLVSLVNGVINTVSNVNPPPNLGPPVNYNQSGPLVPPLCSPFHSNLTDRPCLANEVQLSKAPAVWMDFTCQVSASGICTTTGRLTPTFYNQMTAAANVSYGLYRYGPFLVELVDCTFVRQVFTDISNNHCPGLRLYMQWIYVGLVVVSGAVMLSLIFWIIYARERRHRVYTKQFISRTPGGQDKGS Homology
BLAST of HG10006575 vs. NCBI nr
Match: XP_038890635.1 (uncharacterized protein LOC120080138 [Benincasa hispida]) HSP 1 Score: 880.6 bits (2274), Expect = 7.5e-252 Identity = 445/511 (87.08%), Postives = 471/511 (92.17%), Query Frame = 0
BLAST of HG10006575 vs. NCBI nr
Match: XP_004139261.1 (uncharacterized protein LOC101209187 [Cucumis sativus] >KGN60755.1 hypothetical protein Csa_019264 [Cucumis sativus]) HSP 1 Score: 856.7 bits (2212), Expect = 1.2e-244 Identity = 432/508 (85.04%), Postives = 468/508 (92.13%), Query Frame = 0
BLAST of HG10006575 vs. NCBI nr
Match: XP_023521650.1 (uncharacterized protein LOC111785485 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 852.0 bits (2200), Expect = 2.8e-243 Identity = 429/528 (81.25%), Postives = 472/528 (89.39%), Query Frame = 0
BLAST of HG10006575 vs. NCBI nr
Match: KAG6599351.1 (hypothetical protein SDJN03_09129, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 852.0 bits (2200), Expect = 2.8e-243 Identity = 423/510 (82.94%), Postives = 465/510 (91.18%), Query Frame = 0
BLAST of HG10006575 vs. NCBI nr
Match: KAG7030339.1 (hypothetical protein SDJN02_08686 [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 850.1 bits (2195), Expect = 1.1e-242 Identity = 422/510 (82.75%), Postives = 464/510 (90.98%), Query Frame = 0
BLAST of HG10006575 vs. ExPASy Swiss-Prot
Match: Q1G3Q4 (Protein RGF1 INDUCIBLE TRANSCRIPTION FACTOR 1 OS=Arabidopsis thaliana OX=3702 GN=RITF1 PE=1 SV=1) HSP 1 Score: 53.1 bits (126), Expect = 1.2e-05 Identity = 37/80 (46.25%), Postives = 46/80 (57.50%), Query Frame = 0
BLAST of HG10006575 vs. ExPASy TrEMBL
Match: A0A0A0LFD9 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_2G009430 PE=4 SV=1) HSP 1 Score: 856.7 bits (2212), Expect = 5.6e-245 Identity = 432/508 (85.04%), Postives = 468/508 (92.13%), Query Frame = 0
BLAST of HG10006575 vs. ExPASy TrEMBL
Match: A0A6J1G4G7 (uncharacterized protein LOC111450661 OS=Cucurbita moschata OX=3662 GN=LOC111450661 PE=4 SV=1) HSP 1 Score: 849.0 bits (2192), Expect = 1.2e-242 Identity = 423/510 (82.94%), Postives = 463/510 (90.78%), Query Frame = 0
BLAST of HG10006575 vs. ExPASy TrEMBL
Match: A0A6J1KF77 (uncharacterized protein LOC111493765 OS=Cucurbita maxima OX=3661 GN=LOC111493765 PE=4 SV=1) HSP 1 Score: 847.4 bits (2188), Expect = 3.4e-242 Identity = 423/510 (82.94%), Postives = 462/510 (90.59%), Query Frame = 0
BLAST of HG10006575 vs. ExPASy TrEMBL
Match: A0A1S3C3P8 (uncharacterized protein LOC103496501 OS=Cucumis melo OX=3656 GN=LOC103496501 PE=4 SV=1) HSP 1 Score: 839.7 bits (2168), Expect = 7.1e-240 Identity = 433/528 (82.01%), Postives = 470/528 (89.02%), Query Frame = 0
BLAST of HG10006575 vs. ExPASy TrEMBL
Match: A0A5A7V9A8 (Transmembrane protein OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold329G00650 PE=4 SV=1) HSP 1 Score: 824.7 bits (2129), Expect = 2.4e-235 Identity = 419/497 (84.31%), Postives = 452/497 (90.95%), Query Frame = 0
BLAST of HG10006575 vs. TAIR 10
Match: AT2G12400.1 (unknown protein; FUNCTIONS IN: molecular_function unknown; INVOLVED IN: biological_process unknown; LOCATED IN: endomembrane system; EXPRESSED IN: 25 plant structures; EXPRESSED DURING: 13 growth stages; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT2G25270.1); Has 177 Blast hits to 172 proteins in 23 species: Archae - 0; Bacteria - 2; Metazoa - 3; Fungi - 0; Plants - 164; Viruses - 0; Other Eukaryotes - 8 (source: NCBI BLink). ) HSP 1 Score: 554.3 bits (1427), Expect = 1.1e-157 Identity = 288/501 (57.49%), Postives = 357/501 (71.26%), Query Frame = 0
BLAST of HG10006575 vs. TAIR 10
Match: AT2G25270.1 (unknown protein; LOCATED IN: plasma membrane; EXPRESSED IN: 18 plant structures; EXPRESSED DURING: 13 growth stages; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT2G12400.1); Has 35333 Blast hits to 34131 proteins in 2444 species: Archae - 798; Bacteria - 22429; Metazoa - 974; Fungi - 991; Plants - 531; Viruses - 0; Other Eukaryotes - 9610 (source: NCBI BLink). ) HSP 1 Score: 460.3 bits (1183), Expect = 2.2e-129 Identity = 229/461 (49.67%), Postives = 319/461 (69.20%), Query Frame = 0
BLAST of HG10006575 vs. TAIR 10
Match: AT1G80540.1 (unknown protein; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT2G12400.1); Has 175 Blast hits to 171 proteins in 20 species: Archae - 0; Bacteria - 0; Metazoa - 2; Fungi - 0; Plants - 171; Viruses - 0; Other Eukaryotes - 2 (source: NCBI BLink). ) HSP 1 Score: 372.5 bits (955), Expect = 6.1e-103 Identity = 212/469 (45.20%), Postives = 281/469 (59.91%), Query Frame = 0
BLAST of HG10006575 vs. TAIR 10
Match: AT1G71110.1 (unknown protein; FUNCTIONS IN: molecular_function unknown; INVOLVED IN: biological_process unknown; LOCATED IN: endomembrane system; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT2G12400.1); Has 173 Blast hits to 169 proteins in 21 species: Archae - 0; Bacteria - 0; Metazoa - 3; Fungi - 0; Plants - 165; Viruses - 0; Other Eukaryotes - 5 (source: NCBI BLink). ) HSP 1 Score: 330.9 bits (847), Expect = 2.1e-90 Identity = 192/482 (39.83%), Postives = 279/482 (57.88%), Query Frame = 0
BLAST of HG10006575 vs. TAIR 10
Match: AT5G67550.1 (unknown protein; FUNCTIONS IN: molecular_function unknown; INVOLVED IN: biological_process unknown; LOCATED IN: endomembrane system; EXPRESSED IN: flower; EXPRESSED DURING: 4 anthesis; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT1G71110.1); Has 161 Blast hits to 154 proteins in 16 species: Archae - 0; Bacteria - 0; Metazoa - 0; Fungi - 0; Plants - 161; Viruses - 0; Other Eukaryotes - 0 (source: NCBI BLink). ) HSP 1 Score: 84.3 bits (207), Expect = 3.3e-16 Identity = 115/487 (23.61%), Postives = 200/487 (41.07%), 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
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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