HG10018398 (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.ATGGTCGAGAAAATGGTTCTCAATGATCAATATTCTGATGCAATTTCTTTACCTACCAATTCGATCAGGAAGAGGAAGTCACGGAGTAGACGGGATCGATCGACCGTGGCTGAGACTCTTGCTAAGTGGAAAGCTTATAACGAATGTTTTGATTCTTATAATGATGGAGGCAAGCCAACTCGTAAAGCTCCAGCAAAAGGGTCTAAGAAGGGATGTATGAAAGGTAAAGGAGGACCCTTAAATTCACATTGCAATTACAGAGGTGTGAGGCAGAGGACATGGGGCAAATGGGTTGCAGAGATTCGTGAACCCAACAGAGGGAGTAGGCTGTGGCTTGGTACTTTCCCCACTGCCATTGAAGCCGCTCTCGCCTACGACGAGGCTGCGAGGACGATGTATGGTCAAAGTGCTCGTTTAAACCTTCCCAAGATAAAAAACAGAGGGCAACTACAGGGGATTCTTTTGGAAGATTACTTGGGACTGCGTAACTCAGATTCTTCAACTGCTACTTCGACATGTTCTGAATCTATGACTACGACGTCGAACCAATCTGAGGTCTGCGTGCCCGAGGAGTTCGCAATGAGGCCACAACTTGTGCCCTCAAACATTAAGATTGAAGATGGGGAAGGTGAATCGAGGACCCGGGATCATGGTGATGACACTGCGACGCCGATGTGCTTAGAGAATCAAGTGAAACATGAGGATTGCCATGATCGGGCAGCTGTATTAGGGACTGAGTTTCCTAGTTTGGATCAGTTGCAGAGCTTTCAAATGGATGAAATGTTCAAGCCGAGGACCGGGAATCAGGCTGATCATCTGGCAATGCCAATGAGCTTAGAGAAGCAAGTGAAGGATGAAGATCTCGATGCTGTATATCGTGATCGGAGCAATGATCAAGCTGTCTTGTCAGAAGCTTGGATCTCTAGTCTAAATGATTTACCAAACTTTCAAATGGATGAAATGTTTGATGTGGAAGAGCTTCTAAGCCTGATAAGTAGTGACTACTCGTATGATCCAACAAGCATCTTGAAGGGCAATGCAGATGGCTATACTAACATGGCACCTTCACAAGTTAGCAATCTTGGGTCTGAGAAGCCGTCAAGTTGGTCATACCAATTCCAAAATCCCGATGCGAAGCTGCTCGGAAGTCTCCAACAGACGGAGCAAGCTTCGGCTGATGTCGACTACGGATTTGATTTCTTGAAGCAGGGGAGGGAGGAGGATCTGAATGCGGCAGCAGATGATTGTGTTAGATACCTGAACGAGATGGGTGATTTAGGTTTTTGAAGGGCATTTTTTGATGGACTAGGAGTAAAAAAAACCACAATAAAATTGCTGACCTCTCTATTTGTGTTTGTGTAAAATACATTAGTATTTGAAGCTGACAAATTCTCCATAGGTTTTAGTTTGGAGAATATGTGACGCTTTTCTGATATAAGCGAATCACATACCAAGTTATTTACAGCTACCTTTATTTAGATCTAACAATGTTCTTTCAATTAGTGTAATAAACGTTTGCCTGCATGGGGCTTCTTCATTACAAGGATCAATAATGAATCGTTTTGCTCTTGTGAATTTGTTTTTTGGTATTATTAGTTAATATACATGGTTAGAAAGTCCTTACTTGGTTAATAAGTTACTATTAGTTTTACCCTCTGTACTGTATATATAACACTTTTTTTATTAATGACTTTTGTGCCATTATTTATAATATGGTATAGAGCAATAACTTTGCTCTCTCCACGTTTTTCTTCGCCTTCGAGCGTTCTTCTTCTTCCTCCCCATTTGCAACCTAAATCTCTTAAGAGATAATACGATTGAAGCTACGAATCCTTCAAATTGCTGCGTCGCCCCTATTGTGATGCCTTCCTTCAAGATTTCTAGTATGCGTATTTCTTATATCACTTGAGTTTCTTCAATGATGAATAAGAACTTTTTCGTATACAAAATTTTCCCTCGAGGTCATCAGAATATTGATTCAAATTATTTTATCATTTTTGTACATGCTTATCATATCATTATAATTCAAAATTGTCGTTGGTCTTACTTTTCTAGTGCAATTTTGAGCACTTGGATAGCTATTTTCTCTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTGTCAAGACTTTTGTTGTTGATGAAACCGAAAAATTGCATTATCATTTGAATTGAATGTAGTGGATTTCTTCGTTTGTCTTTTATTTAATTTTTTCTTATCTTAGGGCAGATCCTCTCTAAATTGATTATTAGATTAATTAATAATAAATTTAGAAATCAGTGGTTCAAATTGTTCTTCGAATAAATTGACACCAAAAGAAGTCTTCTCTTTGAGGAAACAAATTTTTATTAAGAATGTACAAATATGACATCTTTTTTTTTTCTCTTTCAATACATATTCACTTTTCCTCACTCTCTAAATTTCTTTAACTAATTCTCATAGTTTTTTTTCTTCTTTTTTCATAACGTTAGAGTCCAATCTAAGTTCTTGAATCTATAACATCGTCTAGGATTTTTTTTTCTTTTACTTATATATTCTTATGTGAAGGTATTCGAGAATTCCTTAAAGTCTAAAGAAATGCTAGGATATTTTTAGAGTATTTTTCATGAGATATTTATTTACAATCTTCTAGATAAGTTTAGAAATTAGAGATGTCTAATACTTAACACTTAGTAGTCGGCAGATACTTCAAGAAATTTCTAAAATGGTTAGTGTTGCTTTCTACTTTAATAAATTTTAGTTCATTTTACTCATTAACCGAGTGACACATCTTTATCATTTGGATTCACAAAAACGATTCACTTTTTCAATATCATTTTAAAGTTTTTTTGCCTTCTAATTTGATTCATGTTATTAGCGAATTTGATATGATTAAAATACTTGCATCATTTTTTAACACAATTCATTCAAACGATTCAATGTACGCCAATTTTAATAAGTTTTCATACACTTCTCTAAGTTGTAAGATAAAATCATGTAAAAAGGTTTATTTACTTCGTTATCTTTTCTTATATATATCCTTTTTTTTTTTGTAGGTTGTACTAAGTTCGAAGATCTTCTAGTTTTAGGCTGTAAGATGAGGCCAAGAGGTTCATTTAATTTCCTTTCATTGGTTGTACTAGGTTTTCTAAGATGAGACCAAAAGGAGTGATTAATGTGGGCAAAATTTTCAATAGGCTAAAGCTAAAAAGTTGTCATTGAAGCTAATATTTGGGTCGGTTAGGTGTAAGATAGTTATCAAATTTAAGGGTGAAAGCGATGAGGATGCAAAGGTGCAATGTATGAAGATAGAACTAATTTTGCAAATTAATTGCTTTCTCCAATAAATTTGGATCTCTTAAAAAGGTAAAAGGCTCGATTCATTTCAAATTTTGATAATGTATAGTGATAATATTACTTTTATTTGTGTTTTATTTTGAAAATTTTTTACAGATAGTAAAAATGTCAAACTATTTATAGAAAATAGTAAAAAAATAAAATAAAATAAACATTGATAGACTTATATGAGCATCTATCATTTCTATCTTTATAGATCCTGATAGACTTCTATCAGTCTCTATCACAACTATCTAAAAATTTTACTATTTTGAATAGATAATTTCTTTACTTTTTTATTTTAAAATTTTTTCTTTATTTTCTATTATTTATTTTCATGAACAATACATTTTATTTAAAAGAATATTAAAGTTAGAAGGTTTTCAAAGTTAAAAGTTTCAAAATCTATGGGTATAATTGAAACTTATTCGAGAATTTAGAGATATCTTGAGTATAATTTAACATTTTTTACCATCTATTTTAAGAAAAATATTTTTAGAATCTAAACAATATTTTGAATACTAGAAAATGGTTAAAAAAAATGTTTTTGTTAAAGCTCATGAAGTTTGGTTAGAAGTATTTTAAAATGGTGGAATTTTGTTTATATTTTTAAAGTAAGCACAAGTATTATAAAAAACATCGAATGGATCCCAAATTTAAGATTTAAAAGATGAAGTTTTGGTATTTTACTTTGTAAATTATAGTATCATATAAATTGCAAATTGTTGTAAATTAAAATATCAAGTAAAGTGCAAATTGTTATTAATTAAGAATATTATTAGTCACTGCAGGAATTTATTTCTTTCCAACACCTAATCAATTGTATATGTTCTCGAAAGACCAATCATACTATCGAAGAAGACATGATCATTTTATAAAATCATAGTGGATGATTTTTAAATATATATTTAACATTAATTTCTTTCCAACGCAATTTGTTTACATTTTTCTTGCAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAACAATTTGCGTTGATAATTAATATCTTTAATAATTAAACAAATTGATATTTATTTTATTAAAAAGCAAGTTGATTTTTCTTAAGAAAATTAGAATTATCCTATGATTTTAAAAGTTCGAATGTAGTTTCTACATTAATAGTCTCCTATGGATAGAATTTTCTCAAATAATTTTTTTGAATCTAAATTATAATTATAAAATGTAGGACTAAATTCCACCACATTAACAATTTAATAAAATAAAAAAAGAAAGAAAAAATGGCGTAGGATCGGTTGTGTGGTATATAAAGGGAATGGAAAATGATTATTTTGCATGTTGCAAGGTTAGGTGGAGGCCGATTCAACGCAATTTCAGTTCAACGGCTTCTTCATCTTTATTGAATCTAGTCATATATTATAGTATTATACACTAATTAAATTAATTACTAGATCTTTTTGGTGGACTTGGTAAATATAAAATAGTCTCTATATTTCTCATCTCAACAATTGCCTACTTGATTTTTCTTTTAAATGACATTAACTTTTATCTTCCTCAACTTTGATTATATTATTGTAATTTCTTGATGTTAAGAATTTCAATAATAAATTGTTCTATAATTTTTTTTAGTACGGAATAAGTGAGGTAGGTAGATCTGAAATGTATTCTTAAATAATAGGTAGTATGCTTTTATTTTACTTATTTTTAATGTCATTAATAGTAAATAAAATTATCGATTTTTTACTACCATCGCACATGTAAACACACTTCTTAAAATAAAGACAAATGAAGTATATAGTAGAAAGTACCTAAAATGTCATTAGAATTATTTCATAAGTTTTTTTTTTTTTTTTTTTTTTTTATCAAAATGATATAATATTCATATTTAAAGTTTAGAGATTAAATTTATAATTTGATCTTATTTTACATAACGTGTTGTTATTAGTCCATGACTTTAAATATTGTAATACTTTTTAGATATGACCTTATAATTTTTTTTTTTTTTTAACTAAAGACGTTATATCTGAAGACAAAAATTCTAAACTAGAAATGTTAAGCATAAATTTAAATAGTGGTTAAAAGTGTTGTTTTTAGCAATTTTTAGATAAATAACTAAATAGTGGTTAAAAGTGTTGTTTTTAGCCATTTTTAGATAAAGAATTAATTATATAACTTAATTAAAATTATAAATAAAGTAATGAATTGAATTCCACCTTAGATTTTAGGTTCCATTATAAAAAATAATAATAATAAACTCTTTGTTGTAAATCAATAATCTCATGGAACTAGATGATACAATAATTAATTTTTAGAATATAGTATGATGGTAATTTACGAGTATTTATAAACTCAAAACAAAAACAAAAAGTATTATGAACTTAATAAATTTAAAAGTACCCTACGAAATATTATAGAAAAGCTGAACGAGTGATTAAAAAAATACACGGTTATGGAAATTACTATTCTAAAACAATGCATTTTACTAAGGACAAGATTATTATATAAATGCACCTCATTTTTGGACCGTTTGATGTACGAGAAAAAGAAAATTATGTACTTCAAATTTATATTTTGTAATTTTTAGGTGACATATTTTTAAAGAGTTAGTGATGAGTGATAATTTATCTAGAAAACCATTTCGTTTTTTATTGTTTGTTTTTAAAAATTAAGTATATTTCCTTCTATTTTTTTTACAATGATTTACATGTTTTTTAGTATAAGAGTTGAATTCTTAGCCAAAAAATAAAATTTACATGTTTTTTAGTATAAGAGTTGAATTCTTAGCCAAATTTAAAAAATAAAATACAAGTTTATAAAAAATACTAGATAAGAAAGCAAGACATTTAGAGGTAAGAGGAGTTTTATAGACTTAATTTTTTAAAACTAAAAACAAAAAGTCAAATAGTTACTATACGAGACTTTAATATTTTGCTAGAATTTTATAAATTCAAAAAAAAAAAGTAAAATATTTGTGACAAAATAAATCATTGTTGACTTAAACTTTCGATAAGTTGTTTTTTTCTCGTTTGATTAGTTCGACTATATATATATATATATAATATATATATATATAGTGAGAAATTTAAACTAAATCTTTTAATAGAGACTATAACACCCTAACAAGTTGATAAAAAAAAATCCACTATTAATAGAGAAAAAGCAATTAAAAGTCATCTCTCATGATAGATTCAATAGAGACTATAACATCCTAACAAGTTGATACAAAATTTTTTTTTAAAAAAAAAATCCACTATTAATAGGGAAGAGGAAATTAAAAGTCATCTCTCGTTATAGATTCTATACGAGAGATTGTAGGATCAATTTGCCTATAATCTATAGCTCTCTCTTTATAGAATTAAATTTATAAAAGTTGGTGGCTGATTAAGGTGCAAATTTATACTTTTTATTGTCTTTCTTAATTAACTGACCGGAAAATTAGAGAAAAAAAAGAGGAGTAGATGCTTTTAGAATACGGCAAACCTTAATCATAGCGCCTGCGTTTCCTTATTAATTAATTGCTTATTGTGATTATTAATTAAAAAGTATTATCTAATGATGAGAAATAATTGCAGAAGGACATTTATTAATTGAAGTTGCAAGTATTTTCTAACCCATTAAACAATCCAGTTTCGTGGAGACAATTTTAATACAAAGGAATCCTGGAAATACATTTTTCAAGGATTTAATTTAAAATATGAGTATTTTAAATAGATTTTAAATAGTTTAAATAAAAATGAGTTTTTTTTAAATTTTTTTTTTTCAAATCAATCCAAACGGACCTTAATCTCAAAGAAATTATTAGTAAAAAAAAACATTCCATAATTAAATTCCATTTCTATTTTTATAATATGTGGGAGCGACGAAATCGAATCTCTCACTTCAAGATTGATAGTAGAAGTACTATGCTAGTTGAGTTAGGTTTATTTTAGCAATTAAATCTTATTTTTATTAATATCTAATGACTACCCATTACTTCATCTCGATTTTTTTTTTTTTTTCAGTTTTCACATCAAACCTAGTTGAAGTCATATATATAACTACAAAAGGTATTTAGTTTAGTATTAAAACCATATCAATATTATTTTTAGTTGAAAGAGGATTTGAACTTTTAAATTTCTAATGGAAGGTTATATATACTTTATATTAGTTAAGTTATGCATATGTTAACTTGTGATATTAAATTTTTTATTATAATATAATTATTATTTATAAAATTACGTTGATCTTGTTGTTGAATAAAATAATGATTACAAACTTAGTTCGTGTATAATTAATATATATATATATATTTTCAAAAAAAAAAAAAGTGACCAAATAAGTTCCCAATGAAAAAATGAAAACATAAATCCTTATAGAGTTGTTTGAATTTATGTATGAAGTCTTCTTATTATTATTTTGCTAAACTACTATTTTGGTATCTATATTTTGAAGTTTGTTCAATTTTAGTCTCTGTATTTTCAATTATCCAATTTTAGTCTCGATACTTTTAATAAATCTCAAATTTGGTCCTTCAAAATTAAATTCTTACCGAAATTGGTTAAATAATAATAATAATTTTCATAAAAAAATATAATATGAATATATTTTCAAAATTTATAGTAAAAATGTGAATATATAGATACAAAAGGTTTTTAGAAAATCAACAAAACATTGAAGACTAAATTTAAGATTTATTGAAAGTACAATGACTAAAATTGAACAACGGAAAGTATATAGGATAAAATTGAATAAATTTCAAAGCATATGAACCAAAATGGTATTTTTTTTTTTAATTTCAAATCTTAAGCAAGTATTTTTGTTTAAATAAACCTTAAGCAAGTATTAAGTGCAATGTTATTATTCATTTATTTGTATTAACATGATTAACATTCTATTATCAATTGGAAAAGAAATGTCAAACTAAATGAAATTTAGAAATAGGCGAAGAGATAAAATACAATGTGTCTATAAAAAAATGTCAATAATGATAAACATTTTGAAATCTTAATTTTATGAACATTCTAATAGAAATGTCAATCCTGAAAAAGTCCAATTAATTAAAAAATCATGAAAATTATTTGACTAAAAAATACATTCTATGAATCTTATATATATTTATTCAACTATCTTATGTATAAATTAGTGAATTATGCACTTATTATTATATCAAATGTTAAATGGTACGAATTTCTATTAATTAACTTTTTGTATTCGTTATATCATCTAGACATTTTTATACTATATTTTAAAAATTGATAAATTATATTAATGCGATGATGAATATGACATAAATACATCCTGTATCAGGCTTCAATTCCTCACTCTTGTTTTAGATTGGTCAAGAATAATTTGAAAATTTGGGGGAAATGTCAATTTAAGAGAACAAATTGGTATATTTAATTTGGTAAAAGAAGGAAAAGTTAAAGGCAGCGACAAGAGAATGTACCTTCTCTGGTTCTAGAAAAGTCCTTAAACGTCGAGAATTTTATAATCATATAAATCGTGGGAATGGCAAAGTTGAGGTTTGAATTGGAAATAAGGTGGAATTTAATTTTGCACCGAGTCCAAACAAAGGGCTTGCAAGTTGCTAATCCCACTTGCAATTCTATGCAACTTTGCAACTGCTAAAATTAAGTTCTAATAACAGCAAATTTCAATTGTCATCACGCCGCCGTTAATCCCAAAAACCAATTCATTCCGCCGCCGTGCGCGGTCATCGACCACAAACATGCGGTGGCGTCGGACCAGTGCAGCTCCGTCGTGGTGCAGACCATCGACGCTCCGGTGGCCGTGGTATGGTCGTTGGTCCGGCGATTTGACAACCCACAGACGTACAAGCACTTTCTGAAGAGCTGCCGGATTGTCGACGGCGATGGCGAAACGGTTGGAACGGTGCGTGAGGTGCACGTGGTGTCAGGTCTGCCAGCGCTGTCGAGTAAAGAGCGGTTGGAGATTCTGGATGACGAAAAGCACGTGCTGAGCTTCAGCGTCTTAGGAGGGGACCACAGGCTGAAGAATTACCGGTCGGTGACGAGCTTACACGTGCCACCGGGAGGCGGAGGAACGGTGGTTGTTGAGTCGTACGTGGTGGACGTGCCGCCGGGAAATACAAAAGAAGAAACGTGCGTGTTCGTAAATACGATCGTGCGGTGCAATTTACAATCGTTGGCTCGATTATAA ATGGTCGAGAAAATGGTTCTCAATGATCAATATTCTGATGCAATTTCTTTACCTACCAATTCGATCAGGAAGAGGAAGTCACGGAGTAGACGGGATCGATCGACCGTGGCTGAGACTCTTGCTAAGTGGAAAGCTTATAACGAATGTTTTGATTCTTATAATGATGGAGGCAAGCCAACTCGTAAAGCTCCAGCAAAAGGGTCTAAGAAGGGATGTATGAAAGGTAAAGGAGGACCCTTAAATTCACATTGCAATTACAGAGGTGTGAGGCAGAGGACATGGGGCAAATGGGTTGCAGAGATTCGTGAACCCAACAGAGGGAGTAGGCTGTGGCTTGGTACTTTCCCCACTGCCATTGAAGCCGCTCTCGCCTACGACGAGGCTGCGAGGACGATGTATGGTCAAAGTGCTCGTTTAAACCTTCCCAAGATAAAAAACAGAGGGCAACTACAGGGGATTCTTTTGGAAGATTACTTGGGACTGCGTAACTCAGATTCTTCAACTGCTACTTCGACATGTTCTGAATCTATGACTACGACGTCGAACCAATCTGAGGTCTGCGTGCCCGAGGAGTTCGCAATGAGGCCACAACTTGTGCCCTCAAACATTAAGATTGAAGATGGGGAAGGTGAATCGAGGACCCGGGATCATGGTGATGACACTGCGACGCCGATGTGCTTAGAGAATCAAGTGAAACATGAGGATTGCCATGATCGGGCAGCTGTATTAGGGACTGAGTTTCCTAGTTTGGATCAGTTGCAGAGCTTTCAAATGGATGAAATGTTCAAGCCGAGGACCGGGAATCAGGCTGATCATCTGGCAATGCCAATGAGCTTAGAGAAGCAAGTGAAGGATGAAGATCTCGATGCTGTATATCGTGATCGGAGCAATGATCAAGCTGTCTTGTCAGAAGCTTGGATCTCTAGTCTAAATGATTTACCAAACTTTCAAATGGATGAAATGTTTGATGTGGAAGAGCTTCTAAGCCTGATAAGTAGTGACTACTCGTATGATCCAACAAGCATCTTGAAGGGCAATGCAGATGGCTATACTAACATGGCACCTTCACAAGTTAGCAATCTTGGGTCTGAGAAGCCGTCAAGTTGGTCATACCAATTCCAAAATCCCGATGCGAAGCTGCTCGGAAGTCTCCAACAGACGGAGCAAGCTTCGGCTGATGTCGACTACGGATTTGATTTCTTGAAGCAGGGGAGGGAGGAGGATCTGAATGCGGCAGCAGATGATTGTGTTAGATACCTGAACGAGATGGCAAATTTCAATTGTCATCACGCCGCCGTTAATCCCAAAAACCAATTCATTCCGCCGCCGTGCGCGGTCATCGACCACAAACATGCGGTGGCGTCGGACCAGTGCAGCTCCGTCGTGGTGCAGACCATCGACGCTCCGGTGGCCGTGGTATGGTCGTTGGTCCGGCGATTTGACAACCCACAGACGTACAAGCACTTTCTGAAGAGCTGCCGGATTGTCGACGGCGATGGCGAAACGGTTGGAACGGTGCGTGAGGTGCACGTGGTGTCAGGTCTGCCAGCGCTGTCGAGTAAAGAGCGGTTGGAGATTCTGGATGACGAAAAGCACGTGCTGAGCTTCAGCGTCTTAGGAGGGGACCACAGGCTGAAGAATTACCGGTCGGTGACGAGCTTACACGTGCCACCGGGAGGCGGAGGAACGGTGGTTGTTGAGTCGTACGTGGTGGACGTGCCGCCGGGAAATACAAAAGAAGAAACGTGCGTGTTCGTAAATACGATCGTGCGGTGCAATTTACAATCGTTGGCTCGATTATAA ATGGTCGAGAAAATGGTTCTCAATGATCAATATTCTGATGCAATTTCTTTACCTACCAATTCGATCAGGAAGAGGAAGTCACGGAGTAGACGGGATCGATCGACCGTGGCTGAGACTCTTGCTAAGTGGAAAGCTTATAACGAATGTTTTGATTCTTATAATGATGGAGGCAAGCCAACTCGTAAAGCTCCAGCAAAAGGGTCTAAGAAGGGATGTATGAAAGGTAAAGGAGGACCCTTAAATTCACATTGCAATTACAGAGGTGTGAGGCAGAGGACATGGGGCAAATGGGTTGCAGAGATTCGTGAACCCAACAGAGGGAGTAGGCTGTGGCTTGGTACTTTCCCCACTGCCATTGAAGCCGCTCTCGCCTACGACGAGGCTGCGAGGACGATGTATGGTCAAAGTGCTCGTTTAAACCTTCCCAAGATAAAAAACAGAGGGCAACTACAGGGGATTCTTTTGGAAGATTACTTGGGACTGCGTAACTCAGATTCTTCAACTGCTACTTCGACATGTTCTGAATCTATGACTACGACGTCGAACCAATCTGAGGTCTGCGTGCCCGAGGAGTTCGCAATGAGGCCACAACTTGTGCCCTCAAACATTAAGATTGAAGATGGGGAAGGTGAATCGAGGACCCGGGATCATGGTGATGACACTGCGACGCCGATGTGCTTAGAGAATCAAGTGAAACATGAGGATTGCCATGATCGGGCAGCTGTATTAGGGACTGAGTTTCCTAGTTTGGATCAGTTGCAGAGCTTTCAAATGGATGAAATGTTCAAGCCGAGGACCGGGAATCAGGCTGATCATCTGGCAATGCCAATGAGCTTAGAGAAGCAAGTGAAGGATGAAGATCTCGATGCTGTATATCGTGATCGGAGCAATGATCAAGCTGTCTTGTCAGAAGCTTGGATCTCTAGTCTAAATGATTTACCAAACTTTCAAATGGATGAAATGTTTGATGTGGAAGAGCTTCTAAGCCTGATAAGTAGTGACTACTCGTATGATCCAACAAGCATCTTGAAGGGCAATGCAGATGGCTATACTAACATGGCACCTTCACAAGTTAGCAATCTTGGGTCTGAGAAGCCGTCAAGTTGGTCATACCAATTCCAAAATCCCGATGCGAAGCTGCTCGGAAGTCTCCAACAGACGGAGCAAGCTTCGGCTGATGTCGACTACGGATTTGATTTCTTGAAGCAGGGGAGGGAGGAGGATCTGAATGCGGCAGCAGATGATTGTGTTAGATACCTGAACGAGATGGCAAATTTCAATTGTCATCACGCCGCCGTTAATCCCAAAAACCAATTCATTCCGCCGCCGTGCGCGGTCATCGACCACAAACATGCGGTGGCGTCGGACCAGTGCAGCTCCGTCGTGGTGCAGACCATCGACGCTCCGGTGGCCGTGGTATGGTCGTTGGTCCGGCGATTTGACAACCCACAGACGTACAAGCACTTTCTGAAGAGCTGCCGGATTGTCGACGGCGATGGCGAAACGGTTGGAACGGTGCGTGAGGTGCACGTGGTGTCAGGTCTGCCAGCGCTGTCGAGTAAAGAGCGGTTGGAGATTCTGGATGACGAAAAGCACGTGCTGAGCTTCAGCGTCTTAGGAGGGGACCACAGGCTGAAGAATTACCGGTCGGTGACGAGCTTACACGTGCCACCGGGAGGCGGAGGAACGGTGGTTGTTGAGTCGTACGTGGTGGACGTGCCGCCGGGAAATACAAAAGAAGAAACGTGCGTGTTCGTAAATACGATCGTGCGGTGCAATTTACAATCGTTGGCTCGATTATAA MVEKMVLNDQYSDAISLPTNSIRKRKSRSRRDRSTVAETLAKWKAYNECFDSYNDGGKPTRKAPAKGSKKGCMKGKGGPLNSHCNYRGVRQRTWGKWVAEIREPNRGSRLWLGTFPTAIEAALAYDEAARTMYGQSARLNLPKIKNRGQLQGILLEDYLGLRNSDSSTATSTCSESMTTTSNQSEVCVPEEFAMRPQLVPSNIKIEDGEGESRTRDHGDDTATPMCLENQVKHEDCHDRAAVLGTEFPSLDQLQSFQMDEMFKPRTGNQADHLAMPMSLEKQVKDEDLDAVYRDRSNDQAVLSEAWISSLNDLPNFQMDEMFDVEELLSLISSDYSYDPTSILKGNADGYTNMAPSQVSNLGSEKPSSWSYQFQNPDAKLLGSLQQTEQASADVDYGFDFLKQGREEDLNAAADDCVRYLNEMANFNCHHAAVNPKNQFIPPPCAVIDHKHAVASDQCSSVVVQTIDAPVAVVWSLVRRFDNPQTYKHFLKSCRIVDGDGETVGTVREVHVVSGLPALSSKERLEILDDEKHVLSFSVLGGDHRLKNYRSVTSLHVPPGGGGTVVVESYVVDVPPGNTKEETCVFVNTIVRCNLQSLARL Homology
BLAST of HG10018398 vs. NCBI nr
Match: XP_038886635.1 (dehydration-responsive element-binding protein 2C-like isoform X1 [Benincasa hispida]) HSP 1 Score: 741.9 bits (1914), Expect = 4.4e-210 Identity = 375/425 (88.24%), Postives = 392/425 (92.24%), Query Frame = 0
BLAST of HG10018398 vs. NCBI nr
Match: XP_008441482.1 (PREDICTED: dehydration-responsive element-binding protein 2C isoform X1 [Cucumis melo] >KAA0055000.1 dehydration-responsive element-binding protein 2C isoform X1 [Cucumis melo var. makuwa]) HSP 1 Score: 714.1 bits (1842), Expect = 9.8e-202 Identity = 361/425 (84.94%), Postives = 385/425 (90.59%), Query Frame = 0
BLAST of HG10018398 vs. NCBI nr
Match: XP_038886636.1 (dehydration-responsive element-binding protein 2C-like isoform X2 [Benincasa hispida]) HSP 1 Score: 713.8 bits (1841), Expect = 1.3e-201 Identity = 360/403 (89.33%), Postives = 374/403 (92.80%), Query Frame = 0
BLAST of HG10018398 vs. NCBI nr
Match: XP_011656418.1 (dehydration-responsive element-binding protein 2C isoform X1 [Cucumis sativus] >KAE8646571.1 hypothetical protein Csa_004870 [Cucumis sativus]) HSP 1 Score: 693.3 bits (1788), Expect = 1.8e-195 Identity = 352/425 (82.82%), Postives = 380/425 (89.41%), Query Frame = 0
BLAST of HG10018398 vs. NCBI nr
Match: XP_008441483.1 (PREDICTED: dehydration-responsive element-binding protein 2C isoform X2 [Cucumis melo]) HSP 1 Score: 680.2 bits (1754), Expect = 1.6e-191 Identity = 342/403 (84.86%), Postives = 365/403 (90.57%), Query Frame = 0
BLAST of HG10018398 vs. ExPASy Swiss-Prot
Match: O80920 (Abscisic acid receptor PYL4 OS=Arabidopsis thaliana OX=3702 GN=PYL4 PE=1 SV=1) HSP 1 Score: 233.8 bits (595), Expect = 5.1e-60 Identity = 110/152 (72.37%), Postives = 129/152 (84.87%), Query Frame = 0
BLAST of HG10018398 vs. ExPASy Swiss-Prot
Match: Q9FLB1 (Abscisic acid receptor PYL5 OS=Arabidopsis thaliana OX=3702 GN=PYL5 PE=1 SV=1) HSP 1 Score: 218.8 bits (556), Expect = 1.7e-55 Identity = 110/158 (69.62%), Postives = 126/158 (79.75%), Query Frame = 0
BLAST of HG10018398 vs. ExPASy Swiss-Prot
Match: Q8LFR2 (Dehydration-responsive element-binding protein 2C OS=Arabidopsis thaliana OX=3702 GN=DREB2C PE=2 SV=2) HSP 1 Score: 209.5 bits (532), Expect = 1.0e-52 Identity = 152/396 (38.38%), Postives = 201/396 (50.76%), Query Frame = 0
BLAST of HG10018398 vs. ExPASy Swiss-Prot
Match: Q8S8E3 (Abscisic acid receptor PYL6 OS=Arabidopsis thaliana OX=3702 GN=PYL6 PE=1 SV=1) HSP 1 Score: 209.1 bits (531), Expect = 1.3e-52 Identity = 103/163 (63.19%), Postives = 124/163 (76.07%), Query Frame = 0
BLAST of HG10018398 vs. ExPASy Swiss-Prot
Match: O82132 (Dehydration-responsive element-binding protein 2A OS=Arabidopsis thaliana OX=3702 GN=DREB2A PE=1 SV=1) HSP 1 Score: 191.0 bits (484), Expect = 3.8e-47 Identity = 145/366 (39.62%), Postives = 188/366 (51.37%), Query Frame = 0
BLAST of HG10018398 vs. ExPASy TrEMBL
Match: A0A5A7UIC1 (Dehydration-responsive element-binding protein 2C isoform X1 OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold43052G001510 PE=4 SV=1) HSP 1 Score: 714.1 bits (1842), Expect = 4.7e-202 Identity = 361/425 (84.94%), Postives = 385/425 (90.59%), Query Frame = 0
BLAST of HG10018398 vs. ExPASy TrEMBL
Match: A0A1S3B4B1 (dehydration-responsive element-binding protein 2C isoform X1 OS=Cucumis melo OX=3656 GN=LOC103485590 PE=4 SV=1) HSP 1 Score: 714.1 bits (1842), Expect = 4.7e-202 Identity = 361/425 (84.94%), Postives = 385/425 (90.59%), Query Frame = 0
BLAST of HG10018398 vs. ExPASy TrEMBL
Match: A0A1S3B339 (dehydration-responsive element-binding protein 2C isoform X2 OS=Cucumis melo OX=3656 GN=LOC103485590 PE=4 SV=1) HSP 1 Score: 680.2 bits (1754), Expect = 7.6e-192 Identity = 342/403 (84.86%), Postives = 365/403 (90.57%), Query Frame = 0
BLAST of HG10018398 vs. ExPASy TrEMBL
Match: A0A0A0KBP3 (Dehydration-responsive element-binding protein 2C OS=Cucumis sativus OX=3659 GN=Csa_6G012810 PE=4 SV=1) HSP 1 Score: 659.4 bits (1700), Expect = 1.4e-185 Identity = 333/403 (82.63%), Postives = 360/403 (89.33%), Query Frame = 0
BLAST of HG10018398 vs. ExPASy TrEMBL
Match: A0A6J1FL95 (dehydration-responsive element-binding protein 2C-like isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111445007 PE=4 SV=1) HSP 1 Score: 608.2 bits (1567), Expect = 3.7e-170 Identity = 325/425 (76.47%), Postives = 350/425 (82.35%), Query Frame = 0
BLAST of HG10018398 vs. TAIR 10
Match: AT2G38310.1 (PYR1-like 4 ) HSP 1 Score: 233.8 bits (595), Expect = 3.6e-61 Identity = 110/152 (72.37%), Postives = 129/152 (84.87%), Query Frame = 0
BLAST of HG10018398 vs. TAIR 10
Match: AT5G05440.1 (Polyketide cyclase/dehydrase and lipid transport superfamily protein ) HSP 1 Score: 218.8 bits (556), Expect = 1.2e-56 Identity = 110/158 (69.62%), Postives = 126/158 (79.75%), Query Frame = 0
BLAST of HG10018398 vs. TAIR 10
Match: AT2G40340.1 (Integrase-type DNA-binding superfamily protein ) HSP 1 Score: 209.5 bits (532), Expect = 7.3e-54 Identity = 152/396 (38.38%), Postives = 201/396 (50.76%), Query Frame = 0
BLAST of HG10018398 vs. TAIR 10
Match: AT2G40330.1 (PYR1-like 6 ) HSP 1 Score: 209.1 bits (531), Expect = 9.5e-54 Identity = 103/163 (63.19%), Postives = 124/163 (76.07%), Query Frame = 0
BLAST of HG10018398 vs. TAIR 10
Match: AT5G05410.1 (DRE-binding protein 2A ) HSP 1 Score: 191.0 bits (484), Expect = 2.7e-48 Identity = 145/366 (39.62%), Postives = 188/366 (51.37%), 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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