HG10006387 (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.ATGGGCTTACTCGACCAGCTCTGGGACGATACTGTCGCCGGACCGCGGCCGGAAAGTGGCCTAGGCAAGCTTCGGAAACACTCAACGTTTTCTGGTCGACCTAGCTCCGGCAACAAGGGTACGCTACGGCCTTTTTATTCCATGGCGGACACATAATCGAACTCGATAAACTTGAACTCGAAAGCCTAATTATAAGACAATCATGGAATATTGAGTATTCGATTAAAATTTTTCTTGATTAAAAGTGTTTAAACTGTAGGCTGCCGATCCAATTGAGATTCTAATTTGTTCTTATAAATCGCTTAATGAGAAACATACTGTTGATTTTGCTTAAGAAATAGCCGGCAGCTCGGATTTATCTTGCAATTTGACGGATCTATACTGTTGAACTGAAAATATGCTCAATCGATACCTCAAACTTCATATCTTCCATGTTGACTTTTCTAATTTTCTTGTATTTTTTTAATGAACTCTTTTTGGATCAGAGCTTGATGGCCGCAGCGCTAGATCGTACGGAGAAGATTCTTCAGAGTCGCCGGTGAGGATCACAAGGAGTATTATGATAGTAAGGCCTCCAGGATACCAGAACGGTTCGCCTCCTATTTCACCGGCCGGATCTAGTTCTCCGGCGTCTCCCTTTTCTGGTAAGAAACAGAGTCAGTTCCTTTTACCTTTTCTCTTTATTTGAAATGACCGATATGACCGTCGTATAGAATCCAAAAACAATACCCTAATGGCTAAGATTTATCTTTCAATACAAGCTGGAAATAAATTTTTTGTCCTTTGGTGATGAATGGACAAGCACAAGGATGGTTCTAACTAAGCCGGAATTTCATTATGGTTCCATTGAAAAGCACTTCTGTTTGCTTAAATTAGGGCATGTTTGGGAGTGATTTTAAGATCTCCATACTCCATAGAATAGTTAATACAATGACCTGCCATATTTATGGGGAATCATTAGCAGCTTTCAGTTCAATCGTTTTCAATTCATTGTATGCTTCTATTCTTGTGGGCATCATTATAGATCTATAATGTGGAAAAAATTGGGCCATTTTGCACCACTATTCTTCTGTTCTCTGGAGTGGAAGGATTGCTCTTGTTCGTTGGTTGGGAGGTCTTGTCAAACTTAAGTAAAAAGATTTCGTGTGGATCTGCTTCTTTGTTGATGAGAGTAGGTGGGAGAGTAGTGGTTGAAAACGTAGAGCTTACTTCATAACCATGCATGTTGGTCAAACAAAAAATCTGGATCTTGTGGAAACATTATTGCAGACTAATGATCATTATTACTCTGTTGACTGATATCCTTACACATTACACCTATGTTTTTGCTCTTATGGGTTGCATTTTCTGTGAATAAAATCATCTGGGAATTCATCAAAAGTTGAAAACTTCCTTTGTAATTTTGTTTGATGTTTCACACAGCTTATCGTAGTGACCCCTTCTTATTTTTCAAGAAAGTATAGGAATATCTCTCTGATTGCCAGACCTGTGAAGTTGTTTATTCATTAGAAATTGATGCAAGTACTAATTGAGTTCATGTGTAGCTTCTTTTAATTTGTGTTTGTTTATAAGTAATTTTCTCTCTTTTGGAGGTAGAGAATCCTTCCGGTTTCGAAGAAGGTCGATCTCCGAGGTTTACGCGAAGACAACCGATGGTGGATCCGGGAGCCCTTCTTCTCCTCACAACATGTGAGATCTAATCTCTTAAGATCTCTTATATTTCCCTTCATGAATGTTTCATCAAAACCTTCATACATTTGTGTAATTTTTGTGTATTTGTAATATGCGGCTGCAGTAGTATGCATGTGAAATTTAGAATGAAGGTGTTAGAAAAATGTGTTGTAGGAAGGAAGGATGATCTTGGAATGTGTAAATGAGGGGGGTATTATAGTCAAATTGGTATTAATATGTAAATATTAGAAGAAGAAGAAAGGCATCTTGGCTGTTTCATCTTCATCCGTCAACTTTTGCTAGTCACTGTTATTGGTTTTGTTAGTGGAATGAAAAAGGGTAGTTCTTTCCATGTGTGGGCCTTCTTTGTGGATTATCTTTCTTTTTCAATTGGAGAGTGCTTGATAAATGCATAACAGCACTCTTGTCTTTGTGTGGTGGCCACAAAGCCCCAAATCAATTCTTTGGATTGATGCTTTTTAATCAGTAGTGCTTTTTCAGGATTTTAATGCCATTCCATTGAGTGTTTTGTGTTGATTTTTGCTTTTTTATTCTGTTATGCTTGGCCTTTTTGGATTTTAACTTGGATGTGTGTAAGAATTATAGTGGGTTAGTACTTTGCTAGTAAATTATTGGGTAAATTGCACAAACTATCCTTGAAGTGTCGTGGTAGTTGCAATTACACCCTCAAATTTTTAGTCTTCAAACTTCTAGAAGTGATAAAATTGGACCTTCAAACTTATACTATTGTTACAATTCTATAATAATGTAAGTTTGAGGGTCCAATTGTAATACTTGTATAAATTTGAGTGCTCAATTTTTATAATTGAAAGTTTCAAGGTATAATTGTAACTACCACCATACATCAGGGGTGGTGTTTGTTATTTGTCCTAAAATATTTTGTTAAAATATTATTTTGGTCTTATACTTGTTTACTTGTCCTAATTTCTTGTTAGTTTGAAGTTGATTTTTATCAAAATTGAAAAAATAACAACAATAATTTCTCATGAAATAATATCTTGGTTGATGTACATTGATTAAATATACGAATTTAGTATATTTTCAGTAAATTTAAAATTACTCGAAAATTAGAAATTGGTAAATTAATGTTAATAATTTTTATTAAAAAATAAAACACAATGTCGTCGAAAATGTCTTTCCTAAAAGTTATAGAAGGATGTTCACATATAGTCTGTCTTGAAAAACTCGTGCATTAACTACTAGTGACCAATTTTATAATAACTGTCTATTAGCGGGACTGTGTAGAACTGTAAAATTTTTCTATATTTGTAAATAATGATTATTTTTCTATATTTGAAAACAACTTTTTTTTTAAGATATGGAAATTAAATATGAATATTTTTTTTTTTAAGATATGGAAATTAAATATGGATATTTGATATTTGATTGTGTAGAAGTTAAGAATAGAATGATTTTTAAATGCTAGTACAATGGTATTTTAATCAAGAAAATTTCATATCTTAAAAAAATAATTGTACTATAAGATTAGTAGGGTTGAGATTTTATGTTGGAGTGATTTTGAAAATATTAAAATTACTTTATCATATTTAAAATTATCTCAAAGCATGTTTTTAATTACTTTAAATTAATTTAATATTTAGTTTTATACTTTTAAATGTCATTTTTATATTATTATAATTAATTTGAAATGATTTTAACTATTTTAGAATTACTCTTTTGAGAAGGTTGTTTAACTATTAAGCTAGGATGAATAATAAGTTTTTCTTAAAAAATTAAAAAAAAATTAATTTTATTGGATTAAAATGATATTTTAATTAAAACCTTTTAAACAAAAGTTTTGAGATTTTTTCTTCTGTTTATCAGAAGTTGAGTTTATCAGCTTTTAAATTTGGATCAAGCAAATATATAAACCTTAAAAGTTTCTAATCAATGTTAAAATTTAATTTTATGTCTAACGAATTTTTAAATTTTAAAAAATATACAAGAAGTCTAAAAGATTTTGAATTTTTGTATTTAATAAGTTGTTAAATTTTTAATTTAGTGTTCACTTTTTCGATAGTTATTAAAATGTAAAAAAATAAGTTGGGCATAAAATGAAATTTTCAACAATTTATTAGATATAAAATAATAAATTATTTAATTTATTTAAAAAATTCTTGAATATATTAAAAATCGAAGATCTATTTGATATTCGATGATCTTTCTAAATACAAAATTGAATAAAATTAGAAACACATCAAGATACTTTTTGAAGTGAAAAAGTTTGAGGAGAAACTTGTAATTTAACCTGAAAAAGAAAGTACTAACATATCAAAGATTTAGGAATGTTTTGGCTAATTAACAGTGTAATTAGGGTTACCCAAAACTTTCCACTCACATGATCTTATAAAATATAAATTTATTTATTTTGATTAATGAACCTTTTTAAAATTATTATATTTCTAACTTTTAAGATTTATGATATATATGTGTGTTATTTATCCTTTTTTAAATAAGTCTCCTTTATTTGGAATTCTTTTAAATTTCGCAGCAAGTCAATACTGGCGACTAATGCCAACCACTGGACAATTAAATTTAAAGATATCATTTCAAATAATAATAATAATAATAATGAATAAAAAGATAAAGATATGATGGGATGAGTTTATCCTAATTTTTCTTCCTTTTTTTCATTGGCATATTCAAAGAGTGATTATTAAGTTTGGACATAATTGATATATATATTTTCTCTTTTCTAAAGTTGGAGGTTCGATATCTATCATTGCAATTATTGTAGAAAAGAAAGAAATATATCAATGTTAGGTCGATTATTAAATTTAATGTGTATGTCACATCATGATTATTTATATTGATTAAAACAACCTAATCTGAAAAATTAGAAGTGTTCTTTTAAAAGTAATTTGAAAGACAAATCATTTTATAAAATCTACAAATTAGAAAATAGGTATAACTGCGGTTTCGGCAACTAATCTTTTTGTGTGTAGGTCGATAATAAGAAGTTGAATCTATATTTGGTGGCAAAAGCGATTTTAGCAAAGTCAGAAGTTCAATTTTCATCTCCGTAATTGTCGTACCAAAAATCAATAATTTAACTAAATAGTAAAAATATGACAAACTATAGAATAATCATCACTGATGTAGACATAAATATTAACCATAAAAAAATTAATTTATTTAAAAGGAGTAAATGCATATTTGTTAAGCGTTTTGTTTTTAATTATTTTTGCATATATTAATATAAGTTCTTGAAAAAATATCCATCAAATCTAAGAAGGTGTTTGGAGTGTTGAAATGTAATCAGGATTACTGGAAATGATATGAGTGTTGGAAAACGCGAGTAATCGAAGATAGAATGGAAATGAGATTGTGAGACATGAAAACGATGAGAAAGATGGTAGGATTGAAAACCGTCAAAAAACTAAATGAATTTTATATTACAAATCGAACTCAAAACATTCAATTCGAACATAGATTTTGGATTACATTACATTACATTCTCATCCTATTACGGGTCATCAAACACCTCCTAAAAGATCTCGAAATTTAAGAATAATTACAAAAAGAATGTGGATTTAGAAAGGATAATTTAACAACAAAAGAAATAATTTTAGTGAACATCCTTGTCAATATAGTTTTAAATTATATGTTTTTGATGTTTATGGAGGCACACTTCTTGTACTTTTCTTTAGCATTTGAGACACTTTTGGAATATAATCTTAAATGGGCACCACTTTTTCTTATTAAATTAACATTAGGGATTTTCTTATTTGACTCCTAAAACTTTGAGTGGATTCCAAACAATAATTGATTTCAAAATAATTGAAGAACTCTGTCATTTTCTAAAGTTAGATATATCACTAAAGCATTTTACTTTAAAGTATAAAAGTGTATCTAACACAGATACCTCCAACCTCATTTGGTAACCATTTTATTTTTTGTTATTGTTTTTTAAATTTAAGCATATATACATTACTTTCACCTTTAAACTTATTCTTTTGTTATCTACTTTTTACTGACGATTTAAAAAAGAAAAATTTTTTAAAATAGAAAAATAAGGGTAACTATTTAGCCAAATTAATAAACTTTTTAGATAGTTGTGATAGACGCTAATAGAAGTCTATCAGGGTCTATCATTGATAGAAATTATAGAAGTATATCACTGATAGATGCTGATAGAAGTCTATCAATGTCTATCAGTGTGTGTGTGTGTTTTTTTTTTTTTTTTGCTATTTTCTGTAAATAATTTGACATTTTTTTTCTGTGAAAATTTTCATTTAAAAAACGAACCAAAATTTGAAATCTAAAAAAAATAGCTTTTAAAAACTTATTTTTGTTTTTGGGATTTGACTATGAATTCAACTATTGTACTTAATAGAGATGCAAATCAAGGTAAGAAATGGAGAGGAAATAGGCTTAATTTTCAAAAACGAAATAATTACCAAACGAAGTATCTGATAATTGGCTCTAAATTTTGAGAGTTGTATTAATTAAAAATATAAACTAATAATTGTATCAATTTAAGCTCTGAACGTTCTTAAGTGTATCAATTTACACCTTTCTTCAAATTTCATTCAATTGATATCATGTGAAATTTATAATTTGGGTCAATTAAACTTCTAAAGTTTCATAATCAATCAATTTAGACCCTTTATTACGATTTACCTTGGAAAATCATCCATGCATTAATTCTCAAATGTGTGTAGACTTCTTCAAATTTTGGTTTGACAAAATGAACGATTACAGTAAATGAATGAACAATTTTCAAAGAAAATTTTGTCTAAGAATCTAAACTAATTCATTTATGAAAGTTTTAAGGTTTAATTGATACAACTATAACTTTCACACGAGGTTTTTTAGGGTAATAGAGGATGTAAATTGATACACTTACAAAAGTTCAAAGTTTAAATTGATACAACCCCTAAAATTTAGAGGTATAAATTGATATTTTTCCTAGATAACTTGAACACAACTCAACTGATTAAGGTATGATATCTTCAATAAAAAGGTCAAAGTTTAAATCTCCATCCTACATACTGATCAACTTAAAAAAAACATGCTAATATTTTAAATTTTTTGGTTAAATTACGAGTTTCTTTTTTGAAGTTTCATATTCATGTCAAATAAATCTATGAGTGAAAACTTTCGATTTCGTGTCTAGTATGTCTTCGATTTTTTTATTTTTGTATCTATTAGGTCATTTGACGTGTCCGATATTAATCTTTAATATTATACACATACTTTGAGTTTATGTCTAGATTCATTAATTTTGAAATTCGTTGAACATGTCATGGATATATTAGAAATTAGACTAAAATTAAAAAGACCTAATAAATACAATTGAAAATTTAAAAAGTTATATTAGATGTTTTTTTAAAATTTAAGGACTTTTTAGGAAAATTTGTATGGATAATCCAAAAATTGGGTCGAAAATGCCAAATAGCTCTGATTTTCAAAAAAAATGTCAAATGACCTTTTGTTGAAGTTAAGTTCAGATGAAATTGTCGAAATGAACTCGCGCACGCAGAAAAGCCAATCTCGCTCGCGCTATTGCTATCACGCTCTTGCTCTCGCTCTCGCTCTCTCTTCCTTTTCTCACTCATAGTTACTCGCCTCGCTCTCTCTCGCTTTCGCTCACTCTCGCTCACCATCACTCTCGTTCACCGAAGTTGGTCGCGTCAAAGATGATCGTGTGGACTTATCGTGTCATATAAGAAGAAGAAGAAGAAGAAGTCGCAGAAGAAGAAAACGACAGAGAAGAAGAAGAGACGGAAGCTGGAGAAAAAGAGAAAAAAGAAAAGAAGAGAAAAGAAAAAAAGGGGAGGGGGGAATGAAGCGGAAAAAGGAAGAGAAAAAAAAGGGTGAATTTGCTGCAGAAAGAAGAAGAAAAAAAAAGAAATATCAATAAGGGCAATATTGTAACTTCACATGGTCATAACTGTTCAACAAGATTTCCAGAGAAATTTGATTCGTGGAATATGAATTTTGTATTTATATGAATTTCAGTATAGTATAGTAAGTACAATCTCTAATACATAACTATTTGATGCTTTCTCTCGAAAAGTAAACTTTAATCCTTAAGCGCTTGTTGATCTTCTTGGATGATCAGCCTATGAACTTATTGATCTTCTTAGATGATCGACCTTTGGACTTGATGGTCTTCTTGGATGATCGACCTTTGGGCTTGATGATCTTCTTAGAGGATCAGCCTTCGGACTTGTTGATCTTGGTGATCGTTTTGGATGGGCCTTTGGCTTATTGATCAAGATCAGCCTCTAGCTTATTGATCAGCTTGGATCAACTTCTGGCTTGTTTATGACTTACGAGCTTTAAAGGGTCTTCTGATCTTCTGGAATTCTTCTGAGCTTTAGTTTTTAGATTTTCAGGAGAGTAGAAGTTGATCTTGGGAGCTTCAGAGTTTCAACATTCAATTCTTCCCATAACTTCAGGAGAGTAATATTCTTGAGAGCTTCAATCTTCAAAACTTGTGAGCTTGGGAGCTCAAATCTTAAGAGACTTATGAGCTTGGGAGCTTCAGTCTCGGATCTTGAGAGAGCTTTCAGAGTGTCCGTACTTCATTGCCAAATTTTCCAACCTCATAAAATGAAGCAATAAGGCCTCTATTTATAGAGGTTTCCCATGAGCTTGGGCTCGGGCCCAATATCTTCTTTGAACTAAAATTTTACAATGGGCTTGAATTGTATTAGACTTTAGACCCAAATAATTTTAATTACTCGGGTCAGTCCAAATTATAATTTTAATGAAAGACTTGGGTTTTCGTTGTGATGACGTGGGGACTTGTGATTGGCCAAAATTTCTCATTCAACAATGACATCATCAAAGAGTTGTTTCGCAATTTTTTTTAAAAAAAATAGATCATTTGCTATTTTAGACCTTTTAAAATGAATTTTTTATGTAATTATTTCGACTTTCTAGAGAAAATAAAAGTTTGAGGAGAAAACTTGTTATTTGAACCAAAACATTTTATTTGTTCTTTTAATATTTTAAAAAACTTCTGTCAAATTTGAAGAAAAACATCAATCGGCTTATAAAGTTAGAGGCTTCGAGCATCGAAAATGAGATTTAAGTTGAAAATCATATTTCGAGCATTGAAAATGAGATTTAAGTTGAAAATCATTTTTTCAGCTTATTTTTTTTAATAATCCCTAATTTTTTCTTTAAAAAATTAAAATTCTAACCTCAAAATTTTATGTGAATTTAACTATATATTTCAAAGTTTTAATCTTACTCGCTCTAATATATCAAAATAAATTATTAACTTGACTCATACAAATTTAAAATCAATGACACGTCACTATTTTATTATATTTTAATATTGTTCATGAACAACAATATAGGTTTTTTCGTTAATAAATTAAAGTCTTATAGATAAAATTAACATGAATTTTGTCTATAATAATTTACTATAATTTATTTTTCAGCACATTATTTTTTTAAGTACAATAAATTTAGGAGTTTCACTTTATATATAAAAAGAGGGAAAAAAAACACTCTTCAATATTGTTTGATTGGAAATGATTGAAGAAAACGATCTTAATTAGAATTACATCTATAAACTCTCCTTAAATCTACAAATTTATAAATATGTAAATTGCTAACGGTTTAGAAATGCCTTTGGCCTCTAAACTTTCACGAAAATAACAAATTTAGTCCATAAACTTTAATCGGTAATGAGATAGTTCTTATAATTTCAAACTTGTAACAAATTAGTTCTTAAACTTTAACAAGTAACAATTTAGTCCCTTTACTGAACAATTTATAATGATTTAATCCTTAGAGAAAATTATTAAGATTTAATGAAATTTCTTATACATGTAGATATATAAACTTATTGAAAATCAAATTTATTTATAAATCATAGAGACAATTTTATTATAAGTCATTATGTAATAATATTTTACACCCAATTTTGATGAGATTTTTTATTATAGAGACTAAATTGTTAAAAAAATTTAAGTATTATAAAGAACTAAATTATTAATGATTAAAATTTAGGAGCAAGGACGCCATTACCAACTAAAATTTAGGGACTATACGAAAGTTTTTCGTTTTAACCGATCTAAATCATGAATAAGATTAAGGCCCATTAATATTGAAAACCCAAATCCAATGGGCCTCAAACGAATCAAGCCCAAAATATTCTTAGTTGGGCTTAGGCCCAATGGACAGAAAAGGACTCTTGGTGTGGAGTAACCAAAAAGTCCGCCCCTCTGCAAATCCAAGCATCGTCTTCTTTCTTCGTTTCTCTGCGAATTTGTAATTTGCACCGAAGACTTCAAAAATGGCAGAAAGGACAAAGAATATAAATATTTGGCACTTATTCATGCTGTTAAATTTCAATCTGCTGCTTCCCTTTTCATCTGGTACACTGATTCTCTTTCTTCCTCGATTTCTTTTTTCGACTGTTCTGCAACATAATTTCTGTTTGAGTCTTGTGTTCATGTTAGATTCATTACTAAATGATTTCTGATTGTGTCGAATTGAGATATATTCGGTGATAATTTTGATTATTGTGCCTGATTTCCTGAGATTGCAGCTGGGTTTTGTCTCTACGAGATTTTTTGGATACTTGGAAAATTATTAAGTTTTTTAATCCTTCTTTTGTGTAATTCTATGAAAATTAGATGATTTTCTTTTGAATTTGTTAACTCTTTTGTTACATATCTGGAAAAATGGTTGTTATTCTAAATCTCTGGAATCAGTCTTCTTTCAATGAGTATTACTCGATGAGTGGAGAATTTTCATTTCTTCTATGACACAAAAATTTGTGGCAGTTTCTTCTTTCTTGTGAATCTATAGGTTGGCATGGTTGTATAAGTTTGGATGAACTTTGGCGTTATATCTGTCTCATTTCTAAGTTGACTAAGTAGATTCTTTCATCATATTGAATTAAGAATATATTGCTCACTGCTGTACTTCCATGCCTATTTGTAATTTGGTTTACATAGAAGGTAGACATAGCTATGTAGTATTTTTCATTGCTTTTTTCTACTTTAGTTAGGGACTGAATTGTATCAGGTTTCACATTTCTAGTCAAAGTATGGATTGTGAGGAATACTAATTTACCTCTTCCTTATTCTTTTTGTTGAAAATAGGACTTGTTTTTACAAAATTCTGTTTTTCTTAGGTGAATCAAATGATGTCTGTATTTCGCAAGGTGGTCGTTTCCCACCCTTCTCATTGGAAGGAAAACCTCCAAAAAAGGTTAGCAAAGCACAAGATTTGACGCTTTGCCGAGTCTTCCGAAAGAGGACTTGCTGTGGTGTAGCACAAACACACCCGGCCTTGCTTACTGTTAGGAGGCTGGCTTTAACAGGGGAAGCCAACCAAGAATGCTTGCAATTATGGGAACTTCTGGAGTGCTCAATATGTGATCCACAAGTCGGTGTTCAACCTGGACCTCCTCTAATATGTGCCTCTTTCTGCGACAGAGTCTTCAAAGCTTGCTCTGATGCTTACTTTTCTGTTGATGTTAAAACGCAGGTGAGCAGATGGTAGTGACCTGGTGATTCTTTTTAATTTTTTTTTGCCTGATTATGCGAACTAAACAGGTTTGGAGTATGATTGTCTTCATGGCACATAGATCTTGACACTCATTTTAGAAGGAAAAAGAAAAATAGCGTCTAATTACTAGTAAACTTCAGTTTAGTTATAAATTTAGTCTCTAAGTGCTTACAACGCATGTTTAATTCTTGAATTTTAGACTATGCTTCTATTTAGTATTTGCCATGAAGGCCATCAACAAAACATTAACATGGCATACAATCAGCCTATTTAGTTATATTATATAACACATCCTAAGCAGCATGGATAAATATATGAGACATAGATACAACATGACATCAACTTTTAAATTTTAAATGTGTGATGCCGGGTTATTTTTGTTGTTATTTTCACATTATAATAGATTAGAACATCATTAACCATCATGGGTTGGTCTAGTAGTAAAAAAGGAGACATAGCCTCAATAAATAACTAAGAGGTCATGGGTTCAATCCATAGTGGCCACCTACATAAAAGTTAATTTCCTATGAGTTTCCTTGACATCCAAAAGTTGTAGGGTCAAGCGAGTTGTCCCGTGAGATTAGTCGAGGTGCACGTAAGCTAGCCCAAAAACTCACAGATATCAGGAAAAAAAAATTGGAACTTTATTAAAATTATATCAGTTTGTTTCTTCTATTTTTTTACATGCACGATTTTCTTTTAACCAACATAATGAGATGTAAAAGCATAAACTTGAACCTTCGCCGCAATGCGAGATTAAATATATTTCCTGATTAGATTTTATGGTTCAGGTTCTAGCACCATGCGGAGTGAATGACTTTGTGTGTGGCAGGGCTTCTGAATGGGTCTCGAATGGCACGGACCTTTGTAGCGCTGCAGGTTTTTCAGTTAAGAACTCTGATGAAGAAACCTCTTGCTATGGTAGTAAAGCCAGACTAGACTCCATTGCTAATTCATGGAAGACTTCACCATCGGTAGTGTCATCCCAAAGAACAGGTTACTTGGGTTTCTTGGAGGATTTCCAGCAATGGGTGAGAGAAATGAGTTTTCATGAACAGGTTTCGTGGCTGATCGGGTCCATGGTGCTTTCAGCAGGGCTTCTGTTTGCAAGGTTGGGGGAGCTAAACATTTTCATTACATGGTCTTTTATCTTCCAAGACTTGAACAACATCTTAGTCCCTCATTCTTATTAGTTTCTCTATGGATATGCTTTAGGTTTTAGCTTCTATAAGATGGGACCGGTAATGCAATTAGTAAAACTCAAAATGTAGTGTGCTTATGTTCTTAATTCAAACAATTACTCGATTGAATTAAATGTTAAAACCATGTTAGTGGTTGATGTTGGAAGTCCTTGCTATTAGGCTAGTCAACGTTACGGGGGATTTAACAAACTCAAGTGAATAATAGCTGCTAAATTCAAAAAAAGGGAAAGGAAGGAGTTTGAGTCAAACTGTTCTAATATTTTTTTTTATCTTTGTTTACATCTGTTCTATTCTTATACCATCTATTATGCAGCAAAAGGCAAAGTCATAACCAGCGTCAGAAATATGCCGCTATTCAACGCGCAACAAAGAAAATGGAAGCAACTATGAGTCAAAATTCTCTTGGTACTCAAGGAATCAGGAAAGGGAGTAGAAGATGA ATGGGCTTACTCGACCAGCTCTGGGACGATACTGTCGCCGGACCGCGGCCGGAAAGTGGCCTAGGCAAGCTTCGGAAACACTCAACGTTTTCTGGTCGACCTAGCTCCGGCAACAAGGAGCTTGATGGCCGCAGCGCTAGATCGTACGGAGAAGATTCTTCAGAGTCGCCGGTGAGGATCACAAGGAGTATTATGATAGTAAGGCCTCCAGGATACCAGAACGGTTCGCCTCCTATTTCACCGGCCGGATCTAGTTCTCCGGCGTCTCCCTTTTCTGAGAATCCTTCCGGTTTCGAAGAAGGTCGATCTCCGAGGTTTACGCGAAGACAACCGATGGTGGATCCGGGAGCCCTTCTTCTCCTCACAACATGTGAATCAAATGATGTCTGTATTTCGCAAGGTGGTCGTTTCCCACCCTTCTCATTGGAAGGAAAACCTCCAAAAAAGGTTAGCAAAGCACAAGATTTGACGCTTTGCCGAGTCTTCCGAAAGAGGACTTGCTGTGGTGTAGCACAAACACACCCGGCCTTGCTTACTGTTAGGAGGCTGGCTTTAACAGGGGAAGCCAACCAAGAATGCTTGCAATTATGGGAACTTCTGGAGTGCTCAATATGTGATCCACAAGTCGGTGTTCAACCTGGACCTCCTCTAATATGTGCCTCTTTCTGCGACAGAGTCTTCAAAGCTTGCTCTGATGCTTACTTTTCTGTTGATGTTAAAACGCAGGTTCTAGCACCATGCGGAGTGAATGACTTTGTGTGTGGCAGGGCTTCTGAATGGGTCTCGAATGGCACGGACCTTTGTAGCGCTGCAGGTTTTTCAGTTAAGAACTCTGATGAAGAAACCTCTTGCTATGGTAGTAAAGCCAGACTAGACTCCATTGCTAATTCATGGAAGACTTCACCATCGGTAGTGTCATCCCAAAGAACAGGTTACTTGGGTTTCTTGGAGGATTTCCAGCAATGGGTGAGAGAAATGAGTTTTCATGAACAGGTTTCGTGGCTGATCGGGTCCATGGTGCTTTCAGCAGGGCTTCTGTTTGCAAGCAAAAGGCAAAGTCATAACCAGCGTCAGAAATATGCCGCTATTCAACGCGCAACAAAGAAAATGGAAGCAACTATGAGTCAAAATTCTCTTGGTACTCAAGGAATCAGGAAAGGGAGTAGAAGATGA ATGGGCTTACTCGACCAGCTCTGGGACGATACTGTCGCCGGACCGCGGCCGGAAAGTGGCCTAGGCAAGCTTCGGAAACACTCAACGTTTTCTGGTCGACCTAGCTCCGGCAACAAGGAGCTTGATGGCCGCAGCGCTAGATCGTACGGAGAAGATTCTTCAGAGTCGCCGGTGAGGATCACAAGGAGTATTATGATAGTAAGGCCTCCAGGATACCAGAACGGTTCGCCTCCTATTTCACCGGCCGGATCTAGTTCTCCGGCGTCTCCCTTTTCTGAGAATCCTTCCGGTTTCGAAGAAGGTCGATCTCCGAGGTTTACGCGAAGACAACCGATGGTGGATCCGGGAGCCCTTCTTCTCCTCACAACATGTGAATCAAATGATGTCTGTATTTCGCAAGGTGGTCGTTTCCCACCCTTCTCATTGGAAGGAAAACCTCCAAAAAAGGTTAGCAAAGCACAAGATTTGACGCTTTGCCGAGTCTTCCGAAAGAGGACTTGCTGTGGTGTAGCACAAACACACCCGGCCTTGCTTACTGTTAGGAGGCTGGCTTTAACAGGGGAAGCCAACCAAGAATGCTTGCAATTATGGGAACTTCTGGAGTGCTCAATATGTGATCCACAAGTCGGTGTTCAACCTGGACCTCCTCTAATATGTGCCTCTTTCTGCGACAGAGTCTTCAAAGCTTGCTCTGATGCTTACTTTTCTGTTGATGTTAAAACGCAGGTTCTAGCACCATGCGGAGTGAATGACTTTGTGTGTGGCAGGGCTTCTGAATGGGTCTCGAATGGCACGGACCTTTGTAGCGCTGCAGGTTTTTCAGTTAAGAACTCTGATGAAGAAACCTCTTGCTATGGTAGTAAAGCCAGACTAGACTCCATTGCTAATTCATGGAAGACTTCACCATCGGTAGTGTCATCCCAAAGAACAGGTTACTTGGGTTTCTTGGAGGATTTCCAGCAATGGGTGAGAGAAATGAGTTTTCATGAACAGGTTTCGTGGCTGATCGGGTCCATGGTGCTTTCAGCAGGGCTTCTGTTTGCAAGCAAAAGGCAAAGTCATAACCAGCGTCAGAAATATGCCGCTATTCAACGCGCAACAAAGAAAATGGAAGCAACTATGAGTCAAAATTCTCTTGGTACTCAAGGAATCAGGAAAGGGAGTAGAAGATGA MGLLDQLWDDTVAGPRPESGLGKLRKHSTFSGRPSSGNKELDGRSARSYGEDSSESPVRITRSIMIVRPPGYQNGSPPISPAGSSSPASPFSENPSGFEEGRSPRFTRRQPMVDPGALLLLTTCESNDVCISQGGRFPPFSLEGKPPKKVSKAQDLTLCRVFRKRTCCGVAQTHPALLTVRRLALTGEANQECLQLWELLECSICDPQVGVQPGPPLICASFCDRVFKACSDAYFSVDVKTQVLAPCGVNDFVCGRASEWVSNGTDLCSAAGFSVKNSDEETSCYGSKARLDSIANSWKTSPSVVSSQRTGYLGFLEDFQQWVREMSFHEQVSWLIGSMVLSAGLLFASKRQSHNQRQKYAAIQRATKKMEATMSQNSLGTQGIRKGSRR Homology
BLAST of HG10006387 vs. NCBI nr
Match: KAG6586243.1 (Dormancy-associated protein-like 3, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 590.1 bits (1520), Expect = 1.4e-164 Identity = 299/406 (73.65%), Postives = 325/406 (80.05%), Query Frame = 0
BLAST of HG10006387 vs. NCBI nr
Match: XP_038877718.1 (uncharacterized protein LOC120069948 [Benincasa hispida]) HSP 1 Score: 516.2 bits (1328), Expect = 2.5e-142 Identity = 251/273 (91.94%), Postives = 265/273 (97.07%), Query Frame = 0
BLAST of HG10006387 vs. NCBI nr
Match: XP_008454094.1 (PREDICTED: uncharacterized protein LOC103494607 [Cucumis melo] >XP_008454104.1 PREDICTED: uncharacterized protein LOC103494607 [Cucumis melo]) HSP 1 Score: 509.2 bits (1310), Expect = 3.1e-140 Identity = 249/273 (91.21%), Postives = 260/273 (95.24%), Query Frame = 0
BLAST of HG10006387 vs. NCBI nr
Match: TYK13788.1 (Hedgehog-interacting protein [Cucumis melo var. makuwa]) HSP 1 Score: 508.4 bits (1308), Expect = 5.3e-140 Identity = 248/266 (93.23%), Postives = 256/266 (96.24%), Query Frame = 0
BLAST of HG10006387 vs. NCBI nr
Match: KAA0048031.1 (Hedgehog-interacting protein [Cucumis melo var. makuwa]) HSP 1 Score: 506.9 bits (1304), Expect = 1.5e-139 Identity = 247/266 (92.86%), Postives = 256/266 (96.24%), Query Frame = 0
BLAST of HG10006387 vs. ExPASy Swiss-Prot
Match: Q8LD26 (Dormancy-associated protein homolog 3 OS=Arabidopsis thaliana OX=3702 GN=At1g56220 PE=1 SV=1) HSP 1 Score: 141.4 bits (355), Expect = 2.2e-32 Identity = 76/111 (68.47%), Postives = 85/111 (76.58%), Query Frame = 0
BLAST of HG10006387 vs. ExPASy Swiss-Prot
Match: F4HV65 (Dormancy-associated protein homolog 4 OS=Arabidopsis thaliana OX=3702 GN=At1g54070 PE=3 SV=1) HSP 1 Score: 52.4 bits (124), Expect = 1.4e-05 Identity = 36/98 (36.73%), Postives = 48/98 (48.98%), Query Frame = 0
BLAST of HG10006387 vs. ExPASy TrEMBL
Match: A0A1S3BYL2 (uncharacterized protein LOC103494607 OS=Cucumis melo OX=3656 GN=LOC103494607 PE=4 SV=1) HSP 1 Score: 509.2 bits (1310), Expect = 1.5e-140 Identity = 249/273 (91.21%), Postives = 260/273 (95.24%), Query Frame = 0
BLAST of HG10006387 vs. ExPASy TrEMBL
Match: A0A5D3CRH7 (Hedgehog-interacting protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold488G00500 PE=4 SV=1) HSP 1 Score: 508.4 bits (1308), Expect = 2.6e-140 Identity = 248/266 (93.23%), Postives = 256/266 (96.24%), Query Frame = 0
BLAST of HG10006387 vs. ExPASy TrEMBL
Match: A0A0A0LIV4 (Folate_rec domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_2G031180 PE=4 SV=1) HSP 1 Score: 507.7 bits (1306), Expect = 4.4e-140 Identity = 251/299 (83.95%), Postives = 268/299 (89.63%), Query Frame = 0
BLAST of HG10006387 vs. ExPASy TrEMBL
Match: A0A5A7U399 (Hedgehog-interacting protein OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold385G00990 PE=4 SV=1) HSP 1 Score: 506.9 bits (1304), Expect = 7.5e-140 Identity = 247/266 (92.86%), Postives = 256/266 (96.24%), Query Frame = 0
BLAST of HG10006387 vs. ExPASy TrEMBL
Match: A0A6J1G4X5 (uncharacterized protein LOC111450855 OS=Cucurbita moschata OX=3662 GN=LOC111450855 PE=4 SV=1) HSP 1 Score: 501.1 bits (1289), Expect = 4.1e-138 Identity = 246/273 (90.11%), Postives = 258/273 (94.51%), Query Frame = 0
BLAST of HG10006387 vs. TAIR 10
Match: AT5G27830.1 (FUNCTIONS IN: molecular_function unknown; INVOLVED IN: response to oxidative stress; LOCATED IN: endomembrane system; EXPRESSED IN: 22 plant structures; EXPRESSED DURING: 13 growth stages; CONTAINS InterPro DOMAIN/s: Folate receptor, conserved region (InterPro:IPR018143); Has 1807 Blast hits to 1807 proteins in 277 species: Archae - 0; Bacteria - 0; Metazoa - 736; Fungi - 347; Plants - 385; Viruses - 0; Other Eukaryotes - 339 (source: NCBI BLink). ) HSP 1 Score: 276.6 bits (706), Expect = 3.2e-74 Identity = 134/254 (52.76%), Postives = 179/254 (70.47%), Query Frame = 0
BLAST of HG10006387 vs. TAIR 10
Match: AT5G27830.3 (FUNCTIONS IN: molecular_function unknown; INVOLVED IN: response to oxidative stress; EXPRESSED IN: 22 plant structures; EXPRESSED DURING: 13 growth stages; CONTAINS InterPro DOMAIN/s: Folate receptor, conserved region (InterPro:IPR018143); Has 79 Blast hits to 79 proteins in 35 species: Archae - 0; Bacteria - 0; Metazoa - 18; Fungi - 0; Plants - 39; Viruses - 0; Other Eukaryotes - 22 (source: NCBI BLink). ) HSP 1 Score: 276.6 bits (706), Expect = 3.2e-74 Identity = 134/254 (52.76%), Postives = 179/254 (70.47%), Query Frame = 0
BLAST of HG10006387 vs. TAIR 10
Match: AT5G27830.5 (FUNCTIONS IN: molecular_function unknown; INVOLVED IN: response to oxidative stress; LOCATED IN: endomembrane system; EXPRESSED IN: 22 plant structures; EXPRESSED DURING: 13 growth stages; CONTAINS InterPro DOMAIN/s: Folate receptor, conserved region (InterPro:IPR018143). ) HSP 1 Score: 272.7 bits (696), Expect = 4.6e-73 Identity = 138/257 (53.70%), Postives = 182/257 (70.82%), Query Frame = 0
BLAST of HG10006387 vs. TAIR 10
Match: AT5G27830.4 (FUNCTIONS IN: molecular_function unknown; INVOLVED IN: response to oxidative stress; EXPRESSED IN: 22 plant structures; EXPRESSED DURING: 13 growth stages; CONTAINS InterPro DOMAIN/s: Folate receptor, conserved region (InterPro:IPR018143). ) HSP 1 Score: 272.7 bits (696), Expect = 4.6e-73 Identity = 138/257 (53.70%), Postives = 182/257 (70.82%), Query Frame = 0
BLAST of HG10006387 vs. TAIR 10
Match: AT5G27830.2 (FUNCTIONS IN: molecular_function unknown; INVOLVED IN: response to oxidative stress; LOCATED IN: endomembrane system; EXPRESSED IN: 22 plant structures; EXPRESSED DURING: 13 growth stages; CONTAINS InterPro DOMAIN/s: Folate receptor, conserved region (InterPro:IPR018143); Has 58 Blast hits to 58 proteins in 23 species: Archae - 0; Bacteria - 0; Metazoa - 8; Fungi - 0; Plants - 37; Viruses - 0; Other Eukaryotes - 13 (source: NCBI BLink). ) HSP 1 Score: 227.3 bits (578), Expect = 2.2e-59 Identity = 117/253 (46.25%), Postives = 157/253 (62.06%), 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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