HG10008574 (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.ATGGGAATAGACAATATCTCAGCTCAGAAGAGAACCGGCAATGGAGGGAATAGTTTACCCACCACTGCTGCCACCGCCAACGGCAGGAGAAGCCGTGGGGTTTCCGGAATTCCCCGTGGCCGTCAGATCCAGAAGACTTTCAATAATATCAAGATCACCATACTCTGTGGCTTCGTCACCATCCTTGTTCTTCGTGGCACCATCGGCATCGGCAACCTTGGTAGCTCTGAGGCTGACGCTGTGAATCAGAATATCATCGAAGAAACCAACCGGATCCTCGCTGAGATTCGATCGGACGGCGACCCCAACGACCCGGATGATCCTGCCGAGACCCAAATCAACCCTAATGTCACTTACACGCTCGGACCCAAGATTGCGAACTGGAATCAGGAACGAAAGGTTTGGCTCGATCAGAACCCAGAATTTCCCAATTATGTTAATAAAAGAGCTAGGATCTTGCTTGTTACTGGTTCTCCCCCTAAACCCTGCGATAACCCAATTGGGGATCATTATTTGTTGAAGTCAATCAAGAATAAAATTGACTATTGTAGGCTTCATGGGATTGAAATAGTATACAATATAGCTCATCTAGATAAGGAACTTGCTGGGTATTGGGCCAAATTGCCGTTGATCCGGCGATTGATGTTGTCCCACCCTGAAGTGGAGTGGATTTGGTGGATGGACAGTGATGCATTATTTACTGATATGGTGTTTGAGATTCCTCTGGAAAAATACGATAACTATAACTTGGTCGTTCATGGTTATCCTGATTTGATGTTCAACCAGAAATCCTGGATTGCACTCAACACAGGAAGCTTTTTGTTTAGGAATTGTCAGTGGTCTTTGGATTTGCTGGATGCTTGGGCTCCAATGGGACCGAAGGGTCCTATTCGAGAAGAGGCAGGGAAGATTTTGACTGCAAATTTGAAGGGAAGGCCAGCATTTGAGGCTGATGATCAATCAGCTTTGATATATTTATTGCTTTCTCAGAAAGATCAATGGATGGATAAGGTTTTTCTTGAGAATTCATACTATTTGCATGGTTACTGGGCTGGATTAGTCGATAGGTATGAAGAAATGATTGAGAAGTATCACCCGGGATTAGGTGACGAAAGGTGGCCGTTTGTGACGCATTTTGTCGGTTGCAAACCTTGTGGTAGCTATGGAGACTATCCAGTTGAAAAGTGTTTGAGTAGCATGGAGAGGGCTTTCAACTTTGCTGACAATCAAGTTCTCAAACTGTATGGATTTCGCCATAGGGGCCTTTTGAGCCCCAAAATCAAGCGGATCAGGAATGAGACAGCCACTCCATTGGAGTCGGTTGATCAAAACGATATTCGGCGGCACGTTCTGCATCGAACCAATGCACCTCCAACCAAGTGAGCACATCACTTCCTCGTGTGATTTATCTGTAGGTGATGGTGTCATAGCTGATAAAGGCTGGTAATAGTTCATACCCAAGTCTGTCTTGCTTCCTTTTCTTGTCATTCTGATACTGCTTGAGAAGGATAGAGTGGAATTCTTTCATTAACTTAAAAACAGATAGTGTTTCAGTAATTGAGTATAGGTACTTTATTTACTGTTCTTTTTTTAATTTTGATCTTCTTTTGAGGAGTTGAAGCATTACTATTCTTGCTATGTATTTAGACTTGCTCATATTGATATCAATGTTGTGCAATCAAATTTAGACCAGAACATTTATAAACTGCGAAAAGTTGGTCTCCATATTCCAGTTTCAAAGGAAATAAGAGGGAGACCTCACTCTTAGATCACATGGTTTGGATAATTCAAGTGCTAATGAACCATTTCTGGTCTTGGGAAACTGCGATGTCTTGATATTTTTGGTTTTTTTGTTTGTTTTTGCTGCTTTTATATATATACATATTCATATATTCATTTTTTGCAAAAAGTTGGTCTGCATATACTATTGAGTATCCAAGCAGCCAGCATAGAACAACCCCATGATTCTTTCATCACAGGTGGGTGCCTGGAAACTCATAGGATTTTAATATTCTAAGTAAGCATACATTGTGGCATTGAACACATAAAGTTGGTTTTGTTGGTTTTCACATTTCATCCTGCAGTTTGGTTGTTTGAAAGTTCTTAGGATTATACGGCGGCCCATGAAGTCTAAAATGGATATTTGATCCTACATCGAAAAATGAAGAGACTTCTTAACTTGTATTCAATTGGTTTTGAGATAAAATCTCATGTTTATCTAATATTAGCATTCATTAAACTTGTACTTATTTTTTCAAAGTCCCTTTAACTTTTACCTATGTCCTGTTGCCACTATGTCAACGTGCAATGTTAATATTGTTTAGCCTTGACAATGGATCATGTTTGGGGTTACTTCAGCTATAAATTTTAGCTATTTGCGTTGGTCAGAATTTTTATTTGAGGAGTGGATTTTGTGGACGGACAAAGCAAAATTATGAAGACATTAATAACATTATTTATAGGTTAGAGACATGAACCATATATATATATATATATATATATTATATATATATATATATATATATTTTTAAATATTATGAACAAGGCTAGCCCTCCAAAACCTCAAAACCTCAACCAACTCTTTCCAGCATTAAAACATCATTCAACCACTTAGGAAATAAGGCTCCAAAAAGCACACCCTTGGTAAAAGAGCTCGTGAGATCTTCTCCATCATCAATCACAATAAAGACCTCCGTGAGATCTTCATCTTCATCAATCAGAAGCTTTACCACTTCTCGAGCATTCGACTACACGAGGAGCGTAGGAAAAGAATGAGCTAGATACGTAGATATGCGTTTAATACCTTCCAAGATTGCCATGAGGATGAAGGGTGAACCCACACAGAGGACAAGAAAAGGGTGAACCCTTGTCTTTAGTTTACTGATGTAATACCTTCCAATTGCCATGAGGATGAAGGTGAACCCAAAACTTGTATGCGTTTGTTTTTGACATTGATAAGTTAATTTATTCGTAGAATCTGATTCGATTGGAGAAAGTGAAAGCAACCACGAACAGTGAAGGGTAGAGTTAAAAAGTGTGGGGACCAAATCCAAGTTAAAGAAGGTTGAATGTGTCTAGAATATTTTAGACAAAAAGGTAAAAGCTTTTGTTTAGTTTGATAAATTTCGTTTAGGTTCCCTTTTGTAACTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTAAATTGTGCTTGTTTTCTTACCATTTTTTACTCATGACTTTCATATCTTTCCATATAACCAAATGAATTCTTAGCAAATTTCAAAAAACAAAAACAAATTTTTGAAACCTACCTTTTTTCAGTGTGGTTTTAATTTTGAAAATACTCCTAAAATTTAGACAACAAAATATATAATTGGATGGAAATAATGTTTATAGGCTTAATTTTAAAAAATTAAATGGTTATCGAACAAGACTTAGCTTTATGTTTTTTGAATTTGTGATTTTTTCCTTAAAAAAAATATTTGAATTCATAGCCAAATTTTAAATCCATAAACTTATTTAAAAAAAAAATTAAAATTTTTTACAGTTTTAAAATTTAGACTTATTAAATACGAAATTGGAGCGGTGAGACTTATGAGATGTTTCTAATGTGCCAAGCGTATTTAACGGGACTAATTTGTAATTTAACATACAAAGAATACGAAAGCGCGCTCCGGACCGCCGTGGCTACTTCCTATCTCCTCCCTTCTGGCCGATGCTATTTAAGTTATATTTCATGATTAAATAATAAGCTTAAGCTTCCATTGAAATCGTGTGTGCCGACATCCTCAATGGCGCGGACGATCAAAGCCTTTTTTCCATAGTCGTATTATATCGAGCTTATGTTGTTCTTCCTATCTCCTTCCCTACTCTCACTACGGCGGTAAGGCATTATGAACATACTCTGTAGATTTCGTTTGCTCTTTTCTGGAATTCGACGATTATTTCATGGCCGATAGGGAATTAAGAGGTAAGTTCCATTGATGAATTGAAAGAAACATATGAGTAGCTTTAATTTGCGCTTCAGGTTTCTTTATTTGTGTTTTTTGTGTATTAAACGCTGATTTCGAAGTTGAAAGGCTAAATTGTCCGTTCAACTGCTTGCTATGAATCTCAAGTCCGATCGAGGATCATAAGAGAAATCAAATAATGATACACTTCTGGATTATTTACAATTTCAGGTAGTAAAGAATTATGAAGTTTTCGAGAGTGGTGATTTTCTAAAGCCTAGTCGCTTCGTTTTTAACTTATTGCATCTTTGTCGAACCGTTTGGATTAGGGGGAAATGATTTGGTTTGGTTCGATTTGGTGGTCAAACCGAATCGAACCAAAATTTTTATAATTGTTATATATCAAATCAATCGAACCTTTAAATTTGGTTTTGCTCTTTAAATTAAAAATAGTTCGATTTTGATGTTGGTTTTGCTCTTTTTTTTTTTTAATATATAAATATATATATATATATATAATATTATATATAATATATATATATATATATATATATAATATATATATATATTATATATATTAGTTAAAAATAATTTGGTTCAGTTTCAAATTTGGTTTTCGAAATAGAAATTGAACCGGATCGAATAATTCAGTTTTAAGATTTTTTTCAAACCGGATTGAACTGTAGTTTTCGATTTCACAGAGTTTTCAGTTCGATTTTTGCGATTTTAATGGCTACCCCTAATTTGAATCTTTACTTATTGGGAAAAACTCTGTTAGTTATTATGTTTTGATCGTTTTTTTTTTTTTTTGTTCTACATGTACATGTAGACCACACCTTTAGAATGGTAAAGTGTAATTGTGTTTTCACCGTTGTCAAATTTTAGCTTAACAAATTTCATTCAACTTTATCCACGTTTTCATATTATATTTTCATTATCTCTAAAAGAAATTATATGTTTTTTTTTCATGTTTGGAAAATATATATTTTGTAAGATGGAAAATAAAACTTTTTATACATAACTGATCATAAAATATTATATTTTATATTTTACATTTTTTTTAATTGTTGTAAATGATAAAATTATTAGAAATATTTTTAAGTATATCAAAATGTCACTGGACATTTTTTTATTTTATTTAGTAAATAAATTGACTCATTTGGCTAGGTTAAAAAAAACATTTTTTTCTCCTCTTCAAAATCTTTCCAATCATACCATTTTTTAGTTGCCCTTCTAAATCCATTCAAGCTTTCCTATTTAAAAAAACAATTTTGTGTGGGGAGAAGAAAATGAAAAAGAAATATAGAAGCCAATGGGAGGGAGTAAAGTATAGATGTCATTTACCTTTTTTTTTTATTTAAACTAAAAAAATTGTTTCATCAACGTTAAAAAGACGAAAAGATAACTAGTAAACAAAAATTTTAGAATCTTTAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAGCAAAAAACAAAAAAACAAAACAAAAATTTTAGAAAATTTTAAATTAATGTTAAAGAAATAGATTAGTGTCTTTATTTTCTCTCTTGTTTTCCTTTTCTATTCAATGAAAGAAAAGAGAGATTGACAATTTTGAATGGTTTAGACTAGTGTTAGAATATGATATGTAATAGCCATTTGACAGAGTTTAGGTCATGTTTACTTTATATTAAATATAATCAGTTAAGGGTAATATCAAAAGTAAGTCCTAATTATTAGGTTTGTTGTTGTTTAACTGTGTTTCGTAATTGTAATGAACTGTGGAGCCCATCTCCAATTATGTAATCAAAATGCATAATTTGATTGAGTAATGATGATGTTCAATTTGATTGTAGTTGAAAATTACGTAAGACTCATTACCTTTACCGTTACCATTACATATATCAATATTGTAACAGTATGAAAGTTATGAATCTACCATATTTATTGTTACCTTTATCGTTAGGGTCACGTAGTAATAGTAACAATAAAATGTAACAGATTCATAGTTCTAAGTAAACAGGATCAATAATTATATTTGCGAAAAGTCTACTAGGATTAATCTCTCAACGTAATCTCCTTATGATTACATCAATTTTCATTACTGATTGGTAGACGTGGCCTTAGATTTAGAGGGAAGGATCTTAAAATTTTTGTAATAAAAATTGGCAGCAAAAAAAAGAAAACTTAGTTATAAAATTTAAAAATTAAAATTTATTTTTATCAAATTAAATCCAAACTTAAACCAGAGCTGTAATTAAATTCAATCTTAAAATTAATATTTATCATTAGTTTAAAGTTAATTTTTATATGCCTTTGAAAAATAATGACAAATTTAAAGAATAGCTAATTTGAATGTGTTTCCAAAGTGTTGAGAAAGAAATTGATAGAAACTAATTATTTTTATGAGAAAACAGCTAACTAAGTAAAAATTAGAGAAGTTACTCTAAACGAAAAAAATATCAAACTATTTACAAATATAGAAAAATTTTATTGACTATCAGTGATAGACCGCGATAGAATTCTATCGTAATTTTTTTTTTTTTTTTTATATTTGTAAATAGGTTGACTCATTTTTCTATATCTGAAAACAGTCCTACGAATTGATGGTAAGATTAATTGAAAGTACCAAACTAATTGGATGTTTGGAAGTATAATAAAAGCTAAAATAGCAATATATTATATATATATATATATTATATATATATATATATGAAAAAATGGATATACTGGCATGGTAGAAAATTTCCCTAAATAAAAAAAGAAAAAAAATCCCAATAATTATAACAAGCAATGGATCCAATCTCATATCAGACAAATGCATATGATATTTGCATAAAATCCTTTATTATTTTTATTATTTTCCCTTTTTTTCCCATAACATAAGACATGAAATCATTCAAAGAAGGGGCCTTCAATCCACAGACAGTCGGTGCTGTTTGCTGAGATAAGTCTCTTCTTCCTTTCTTAGCTGTTCCTCAACCATTTCCATTACCCCCAATGAATTGACCCTCATTAGGCATTAGTCTATATCCATTACCATTACTGCTCTATTCTTCTCGCTCCATGATTGTTTGTTTTTCTGTTTCTTCCCATTTTGGTGGCTCCATCTCTTCGATCCCCGATCTTGTTGACATTATTGAATTTAAGGTGGAAGGGAGAGGTGGAGAGAGCTGTTGGATAGAGGGAAATAAGCCATTTCCCTCATCACCCATTAGCTCCAATTCCTGGTAAGAGGATATAGAGAAGAAGTAATTATTTACATCTTTCTGTATACAGAGTGTTTAAAGTTTGTAGAGAGAGAGAGAAGGGAGAAGAAATATGGGACTAGACAATATCTCAGCTCAGAAGAGAACCGGAAGTGGAGGGAATAGTTTACCCACCACTGCTGCCACCGCCAACGGCAGGAGAGGCCGTTCTTTCCCAGGAATTCCCCGTGGCCGTCAGATCCAGAAGACTTTCAATAATATCAAGATCACCATACTCTGTGGCTTCCTTTGTTCTTCGTGGCACCATCGGCATCGGCAACCTTGGTAGCTCCGAGGCTGACGCTGTGAACCAGAATATCATCGAAGAAACCAACCGGATCCTCGCTGAGATTCGATCGGACGGCGACCCCAACGACCCGGATGATCCTGCCGAGACCCAAATCAACCCTAATGTCTCTTACACGCTCGGACCCAAGATTGCGAACTGGAATCAGGAACGACAGGTTTGGCTCGATCAGAACCCAGAATTTCCCAATTATGTTAATAGGAGAGCTAGGATCTTGCTTGTTACTGTTTCTCCCCCTAAACCCTGCGATAACCCAATTGGGGATCATTATTTGTTGAAGTCAATCAAGAATAAAATTGACTATTGTAGGCTTCATGGGATTGAAATAGTATACAATATAGCTCATCTAGATAAGGAACTTGCTGGGTATTGGGCCAAATTGCCGTTGATCCGGCGATTGATGTTGTCCCACCCTGAAGTGGAGTGGATTTGGTGGATGGACAGTGATGCATTATTTACTGATATGGTGTTTGAGATTCCTCTGGAAAAATACGATAACTATAACTTGGTCGTTCATGGTTATCCTGATTTGATGTTCAACCAGAAATCCTGGATTGCACTCAACACAGGAAGCTTTTTGTTTAGGAATTGTCAGTGGTCTTTGGATTTGCTGGATGCTTGGGCTCCAATGGGACCGAAGGGTCCTATTCGAGAAGAGGCAGGGAAGATTTTGACTGCAAATTTGAAGGGAAGGCCAGCATTTGAGGCTGATGATCAATCAGCTTTGATATATTTTTGCTTTTCATCAGAAAGTCAATGGATGGATAAGGTTTTTCTTGAGAATTCATACTATTTTGCATGGTTACTGGGCTGGATTAGTCGATAGGTATGAAGAATGATTGAGAAGTATCACCCGGATTAGTGACGAAAGGTGGCCGTTGTGACGCATTTTGTCGGTTGCAACCTGTGGTAGCTATGGAGACTATCCAGTTGAAAGTTTTGAGTAGCATGGAGAGGGCTTTCAACTTTGCTGACAATCAAGTTCTCAAACTGTATGGATTTCGCCATAGGGGCCTTTTGAGCCCCAAATCAAGCGGATCAGGAATGAGACAGCCACTCCATTGGAGTCGGTTGATCAAAACGATATTCGGCGGCACGTTCTGCATCGAAGCAATGTGCCTCCAACCAAGTGA ATGGGAATAGACAATATCTCAGCTCAGAAGAGAACCGGCAATGGAGGGAATAGTTTACCCACCACTGCTGCCACCGCCAACGGCAGGAGAAGCCGTGGGGTTTCCGGAATTCCCCGTGGCCGTCAGATCCAGAAGACTTTCAATAATATCAAGATCACCATACTCTGTGGCTTCGTCACCATCCTTGTTCTTCGTGGCACCATCGGCATCGGCAACCTTGGTAGCTCTGAGGCTGACGCTGTGAATCAGAATATCATCGAAGAAACCAACCGGATCCTCGCTGAGATTCGATCGGACGGCGACCCCAACGACCCGGATGATCCTGCCGAGACCCAAATCAACCCTAATGTCACTTACACGCTCGGACCCAAGATTGCGAACTGGAATCAGGAACGAAAGGTTTGGCTCGATCAGAACCCAGAATTTCCCAATTATGTTAATAAAAGAGCTAGGATCTTGCTTGTTACTGGTTCTCCCCCTAAACCCTGCGATAACCCAATTGGGGATCATTATTTGTTGAAGTCAATCAAGAATAAAATTGACTATTGTAGGCTTCATGGGATTGAAATAGTATACAATATAGCTCATCTAGATAAGGAACTTGCTGGGTATTGGGCCAAATTGCCGTTGATCCGGCGATTGATGTTGTCCCACCCTGAAGTGGAGTGGATTTGGTGGATGGACAGTGATGCATTATTTACTGATATGGTGTTTGAGATTCCTCTGGAAAAATACGATAACTATAACTTGGTCGTTCATGGTTATCCTGATTTGATGTTCAACCAGAAATCCTGGATTGCACTCAACACAGGAAGCTTTTTGTTTAGGAATTGTCAGTGGTCTTTGGATTTGCTGGATGCTTGGGCTCCAATGGGACCGAAGGGTCCTATTCGAGAAGAGGCAGGGAAGATTTTGACTGCAAATTTGAAGGGAAGGCCAGCATTTGAGGCTGATGATCAATCAGCTTTGATATATTTATTGCTTTCTCAGAAAGATCAATGGATGGATAAGGTTTTTCTTGAGAATTCATACTATTTGCATGGTTACTGGGCTGGATTAGTCGATAGGTATGAAGAAATGATTGAGAAGTATCACCCGGGATTAGGTGACGAAAGGTGGCCGTTTGTGACGCATTTTGTCGGTTGCAAACCTTGTGGTAGCTATGGAGACTATCCAGTTGAAAAGTGTTTGAGTAGCATGGAGAGGGCTTTCAACTTTGCTGACAATCAAGTTCTCAAACTGTATGGATTTCGCCATAGGGGCCTTTTGAGCCCCAAAATCAAGCGGATCAGGAATGAGACAGCCACTCCATTGGAGTCGGTTGATCAAAACGATATTCGGCGGCACGTTCTGCATCGAACCAATGCACCTCCAACCAAAAGAGAACCGGAAGTGGAGGGAATAGTTTACCCACCACTGCTGCCACCGCCAACGGCAGGAGAGGCCGTTCTTTCCCAGGAATTCCCCGTGGCCGTCAGATCCAGAAGACTTTCAATAATATCAAGATCACCATACTCTGTGGCTTCCTTTGTTCTTCGTGGCACCATCGGCATCGGCAACCTTGGTAGCTCCGAGGCTGACGCTGTGAACCAGAATATCATCGAAGAAACCAACCGGATCCTCGCTGAGATTCGATCGGACGGCGACCCCAACGACCCGGATGATCCTGCCGAGACCCAAATCAACCCTAATGTCTCTTACACGCTCGGACCCAAGATTGCGAACTGGAATCAGGAACGACAGGTTTGGCTCGATCAGAACCCAGAATTTCCCAATTATGTTAATAGGAGAGCTAGGATCTTGCTTGTTACTGTTTCTCCCCCTAAACCCTGCGATAACCCAATTGGGGATCATTATTTGTTGAAGTCAATCAAGAATAAAATTGACTATTGTAGGCTTCATGGGATTGAAATAGTATACAATATAGCTCATCTAGATAAGGAACTTGCTGGGTATTGGGCCAAATTGCCGTTGATCCGGCGATTGATGTTGTCCCACCCTGAAGTGGAGTGGATTTGGTGGATGGACAGTGATGCATTATTTACTGATATGGTGTTTGAGATTCCTCTGGAAAAATACGATAACTATAACTTGGTCGTTCATGGTTATCCTGATTTGATGTTCAACCAGAAATCCTGGATTGCACTCAACACAGGAAGCTTTTTGTTTAGGAATTGTCAGTGGTCTTTGGATTTGCTGGATGCTTGGGCTCCAATGGGACCGAAGGGTCCTATTCGAGAAGAGGCAGGGAAGATTTTGACTGCAAATTTGAAGGGAAGGCCAGCATTTGAGGCTGATGATCAATCAGCTTTGATATATTTTTGCTTTTCATCAGAAAGTCAATGGATGGATAAGGGGCCTTTTGAGCCCCAAATCAAGCGGATCAGGAATGAGACAGCCACTCCATTGGAGTCGGTTGATCAAAACGATATTCGGCGGCACGTTCTGCATCGAAGCAATGTGCCTCCAACCAAGTGA ATGGGAATAGACAATATCTCAGCTCAGAAGAGAACCGGCAATGGAGGGAATAGTTTACCCACCACTGCTGCCACCGCCAACGGCAGGAGAAGCCGTGGGGTTTCCGGAATTCCCCGTGGCCGTCAGATCCAGAAGACTTTCAATAATATCAAGATCACCATACTCTGTGGCTTCGTCACCATCCTTGTTCTTCGTGGCACCATCGGCATCGGCAACCTTGGTAGCTCTGAGGCTGACGCTGTGAATCAGAATATCATCGAAGAAACCAACCGGATCCTCGCTGAGATTCGATCGGACGGCGACCCCAACGACCCGGATGATCCTGCCGAGACCCAAATCAACCCTAATGTCACTTACACGCTCGGACCCAAGATTGCGAACTGGAATCAGGAACGAAAGGTTTGGCTCGATCAGAACCCAGAATTTCCCAATTATGTTAATAAAAGAGCTAGGATCTTGCTTGTTACTGGTTCTCCCCCTAAACCCTGCGATAACCCAATTGGGGATCATTATTTGTTGAAGTCAATCAAGAATAAAATTGACTATTGTAGGCTTCATGGGATTGAAATAGTATACAATATAGCTCATCTAGATAAGGAACTTGCTGGGTATTGGGCCAAATTGCCGTTGATCCGGCGATTGATGTTGTCCCACCCTGAAGTGGAGTGGATTTGGTGGATGGACAGTGATGCATTATTTACTGATATGGTGTTTGAGATTCCTCTGGAAAAATACGATAACTATAACTTGGTCGTTCATGGTTATCCTGATTTGATGTTCAACCAGAAATCCTGGATTGCACTCAACACAGGAAGCTTTTTGTTTAGGAATTGTCAGTGGTCTTTGGATTTGCTGGATGCTTGGGCTCCAATGGGACCGAAGGGTCCTATTCGAGAAGAGGCAGGGAAGATTTTGACTGCAAATTTGAAGGGAAGGCCAGCATTTGAGGCTGATGATCAATCAGCTTTGATATATTTATTGCTTTCTCAGAAAGATCAATGGATGGATAAGGTTTTTCTTGAGAATTCATACTATTTGCATGGTTACTGGGCTGGATTAGTCGATAGGTATGAAGAAATGATTGAGAAGTATCACCCGGGATTAGGTGACGAAAGGTGGCCGTTTGTGACGCATTTTGTCGGTTGCAAACCTTGTGGTAGCTATGGAGACTATCCAGTTGAAAAGTGTTTGAGTAGCATGGAGAGGGCTTTCAACTTTGCTGACAATCAAGTTCTCAAACTGTATGGATTTCGCCATAGGGGCCTTTTGAGCCCCAAAATCAAGCGGATCAGGAATGAGACAGCCACTCCATTGGAGTCGGTTGATCAAAACGATATTCGGCGGCACGTTCTGCATCGAACCAATGCACCTCCAACCAAAAGAGAACCGGAAGTGGAGGGAATAGTTTACCCACCACTGCTGCCACCGCCAACGGCAGGAGAGGCCGTTCTTTCCCAGGAATTCCCCGTGGCCGTCAGATCCAGAAGACTTTCAATAATATCAAGATCACCATACTCTGTGGCTTCCTTTGTTCTTCGTGGCACCATCGGCATCGGCAACCTTGGTAGCTCCGAGGCTGACGCTGTGAACCAGAATATCATCGAAGAAACCAACCGGATCCTCGCTGAGATTCGATCGGACGGCGACCCCAACGACCCGGATGATCCTGCCGAGACCCAAATCAACCCTAATGTCTCTTACACGCTCGGACCCAAGATTGCGAACTGGAATCAGGAACGACAGGTTTGGCTCGATCAGAACCCAGAATTTCCCAATTATGTTAATAGGAGAGCTAGGATCTTGCTTGTTACTGTTTCTCCCCCTAAACCCTGCGATAACCCAATTGGGGATCATTATTTGTTGAAGTCAATCAAGAATAAAATTGACTATTGTAGGCTTCATGGGATTGAAATAGTATACAATATAGCTCATCTAGATAAGGAACTTGCTGGGTATTGGGCCAAATTGCCGTTGATCCGGCGATTGATGTTGTCCCACCCTGAAGTGGAGTGGATTTGGTGGATGGACAGTGATGCATTATTTACTGATATGGTGTTTGAGATTCCTCTGGAAAAATACGATAACTATAACTTGGTCGTTCATGGTTATCCTGATTTGATGTTCAACCAGAAATCCTGGATTGCACTCAACACAGGAAGCTTTTTGTTTAGGAATTGTCAGTGGTCTTTGGATTTGCTGGATGCTTGGGCTCCAATGGGACCGAAGGGTCCTATTCGAGAAGAGGCAGGGAAGATTTTGACTGCAAATTTGAAGGGAAGGCCAGCATTTGAGGCTGATGATCAATCAGCTTTGATATATTTTTGCTTTTCATCAGAAAGTCAATGGATGGATAAGGGGCCTTTTGAGCCCCAAATCAAGCGGATCAGGAATGAGACAGCCACTCCATTGGAGTCGGTTGATCAAAACGATATTCGGCGGCACGTTCTGCATCGAAGCAATGTGCCTCCAACCAAGTGA MGIDNISAQKRTGNGGNSLPTTAATANGRRSRGVSGIPRGRQIQKTFNNIKITILCGFVTILVLRGTIGIGNLGSSEADAVNQNIIEETNRILAEIRSDGDPNDPDDPAETQINPNVTYTLGPKIANWNQERKVWLDQNPEFPNYVNKRARILLVTGSPPKPCDNPIGDHYLLKSIKNKIDYCRLHGIEIVYNIAHLDKELAGYWAKLPLIRRLMLSHPEVEWIWWMDSDALFTDMVFEIPLEKYDNYNLVVHGYPDLMFNQKSWIALNTGSFLFRNCQWSLDLLDAWAPMGPKGPIREEAGKILTANLKGRPAFEADDQSALIYLLLSQKDQWMDKVFLENSYYLHGYWAGLVDRYEEMIEKYHPGLGDERWPFVTHFVGCKPCGSYGDYPVEKCLSSMERAFNFADNQVLKLYGFRHRGLLSPKIKRIRNETATPLESVDQNDIRRHVLHRTNAPPTKREPEVEGIVYPPLLPPPTAGEAVLSQEFPVAVRSRRLSIISRSPYSVASFVLRGTIGIGNLGSSEADAVNQNIIEETNRILAEIRSDGDPNDPDDPAETQINPNVSYTLGPKIANWNQERQVWLDQNPEFPNYVNRRARILLVTVSPPKPCDNPIGDHYLLKSIKNKIDYCRLHGIEIVYNIAHLDKELAGYWAKLPLIRRLMLSHPEVEWIWWMDSDALFTDMVFEIPLEKYDNYNLVVHGYPDLMFNQKSWIALNTGSFLFRNCQWSLDLLDAWAPMGPKGPIREEAGKILTANLKGRPAFEADDQSALIYFCFSSESQWMDKGPFEPQIKRIRNETATPLESVDQNDIRRHVLHRSNVPPTK Homology
BLAST of HG10008574 vs. NCBI nr
Match: XP_038879662.1 (probable xyloglucan 6-xylosyltransferase 5 [Benincasa hispida]) HSP 1 Score: 953.0 bits (2462), Expect = 1.7e-273 Identity = 452/459 (98.47%), Postives = 456/459 (99.35%), Query Frame = 0
BLAST of HG10008574 vs. NCBI nr
Match: XP_038879632.1 (probable xyloglucan 6-xylosyltransferase 5 [Benincasa hispida]) HSP 1 Score: 944.9 bits (2441), Expect = 4.7e-271 Identity = 448/460 (97.39%), Postives = 456/460 (99.13%), Query Frame = 0
BLAST of HG10008574 vs. NCBI nr
Match: XP_004138178.2 (LOW QUALITY PROTEIN: probable xyloglucan 6-xylosyltransferase 5 [Cucumis sativus]) HSP 1 Score: 943.0 bits (2436), Expect = 1.8e-270 Identity = 446/460 (96.96%), Postives = 453/460 (98.48%), Query Frame = 0
BLAST of HG10008574 vs. NCBI nr
Match: KAA0057959.1 (putative xyloglucan 6-xylosyltransferase 5 [Cucumis melo var. makuwa]) HSP 1 Score: 938.7 bits (2425), Expect = 3.4e-269 Identity = 445/460 (96.74%), Postives = 451/460 (98.04%), Query Frame = 0
BLAST of HG10008574 vs. NCBI nr
Match: XP_004138179.2 (probable xyloglucan 6-xylosyltransferase 5 [Cucumis sativus] >KAE8652424.1 hypothetical protein Csa_013450 [Cucumis sativus]) HSP 1 Score: 937.9 bits (2423), Expect = 5.7e-269 Identity = 445/460 (96.74%), Postives = 451/460 (98.04%), Query Frame = 0
BLAST of HG10008574 vs. ExPASy Swiss-Prot
Match: Q9CA75 (Probable xyloglucan 6-xylosyltransferase 5 OS=Arabidopsis thaliana OX=3702 GN=XXT5 PE=1 SV=1) HSP 1 Score: 785.4 bits (2027), Expect = 6.2e-226 Identity = 367/448 (81.92%), Postives = 398/448 (88.84%), Query Frame = 0
BLAST of HG10008574 vs. ExPASy Swiss-Prot
Match: Q9LF80 (Probable xyloglucan 6-xylosyltransferase 3 OS=Arabidopsis thaliana OX=3702 GN=XXT3 PE=2 SV=1) HSP 1 Score: 763.5 bits (1970), Expect = 2.5e-219 Identity = 354/449 (78.84%), Postives = 401/449 (89.31%), Query Frame = 0
BLAST of HG10008574 vs. ExPASy Swiss-Prot
Match: Q9M9U0 (Xyloglucan 6-xylosyltransferase 4 OS=Arabidopsis thaliana OX=3702 GN=XXT4 PE=1 SV=1) HSP 1 Score: 679.1 bits (1751), Expect = 6.3e-194 Identity = 336/512 (65.62%), Postives = 381/512 (74.41%), Query Frame = 0
BLAST of HG10008574 vs. ExPASy Swiss-Prot
Match: B8AIZ4 (Probable glycosyltransferase 2 OS=Oryza sativa subsp. indica OX=39946 GN=GT2 PE=3 SV=1) HSP 1 Score: 642.5 bits (1656), Expect = 6.5e-183 Identity = 316/475 (66.53%), Postives = 369/475 (77.68%), Query Frame = 0
BLAST of HG10008574 vs. ExPASy Swiss-Prot
Match: Q6H765 (Probable glycosyltransferase 2 OS=Oryza sativa subsp. japonica OX=39947 GN=GT2 PE=2 SV=1) HSP 1 Score: 642.5 bits (1656), Expect = 6.5e-183 Identity = 316/475 (66.53%), Postives = 369/475 (77.68%), Query Frame = 0
BLAST of HG10008574 vs. ExPASy TrEMBL
Match: A0A0A0LRQ8 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_1G009930 PE=3 SV=1) HSP 1 Score: 947.6 bits (2448), Expect = 3.5e-272 Identity = 448/460 (97.39%), Postives = 454/460 (98.70%), Query Frame = 0
BLAST of HG10008574 vs. ExPASy TrEMBL
Match: A0A5A7UWS2 (Putative xyloglucan 6-xylosyltransferase 5 OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold274G002620 PE=3 SV=1) HSP 1 Score: 938.7 bits (2425), Expect = 1.6e-269 Identity = 445/460 (96.74%), Postives = 451/460 (98.04%), Query Frame = 0
BLAST of HG10008574 vs. ExPASy TrEMBL
Match: A0A0A0LP65 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_1G010930 PE=3 SV=1) HSP 1 Score: 937.6 bits (2422), Expect = 3.6e-269 Identity = 444/460 (96.52%), Postives = 451/460 (98.04%), Query Frame = 0
BLAST of HG10008574 vs. ExPASy TrEMBL
Match: A0A6J1EZG2 (probable xyloglucan 6-xylosyltransferase 5 OS=Cucurbita moschata OX=3662 GN=LOC111440960 PE=3 SV=1) HSP 1 Score: 936.8 bits (2420), Expect = 6.2e-269 Identity = 444/460 (96.52%), Postives = 452/460 (98.26%), Query Frame = 0
BLAST of HG10008574 vs. ExPASy TrEMBL
Match: A0A5A7US32 (Putative xyloglucan 6-xylosyltransferase 5 OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold274G002630 PE=3 SV=1) HSP 1 Score: 935.6 bits (2417), Expect = 1.4e-268 Identity = 444/460 (96.52%), Postives = 450/460 (97.83%), Query Frame = 0
BLAST of HG10008574 vs. TAIR 10
Match: AT1G74380.1 (xyloglucan xylosyltransferase 5 ) HSP 1 Score: 785.4 bits (2027), Expect = 4.4e-227 Identity = 367/448 (81.92%), Postives = 398/448 (88.84%), Query Frame = 0
BLAST of HG10008574 vs. TAIR 10
Match: AT5G07720.1 (Galactosyl transferase GMA12/MNN10 family protein ) HSP 1 Score: 763.5 bits (1970), Expect = 1.8e-220 Identity = 354/449 (78.84%), Postives = 401/449 (89.31%), Query Frame = 0
BLAST of HG10008574 vs. TAIR 10
Match: AT1G18690.1 (Galactosyl transferase GMA12/MNN10 family protein ) HSP 1 Score: 679.1 bits (1751), Expect = 4.5e-195 Identity = 336/512 (65.62%), Postives = 381/512 (74.41%), Query Frame = 0
BLAST of HG10008574 vs. TAIR 10
Match: AT4G02500.1 (UDP-xylosyltransferase 2 ) HSP 1 Score: 575.1 bits (1481), Expect = 9.1e-164 Identity = 262/437 (59.95%), Postives = 332/437 (75.97%), Query Frame = 0
BLAST of HG10008574 vs. TAIR 10
Match: AT3G62720.1 (xylosyltransferase 1 ) HSP 1 Score: 554.3 bits (1427), Expect = 1.7e-157 Identity = 257/436 (58.94%), Postives = 331/436 (75.92%), 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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