HG10003884 (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.ATGGCGGAGGAATTACAGGACAACGATGCTCCAAACGAAGAAGCCGTGGATGTTGCTGTTGATATAGAGACGAAGATTCATAACGCTATGCGCTCTTGCTTCTCTCACATCAAGGAACAAGCCGAGTGAGCTTTTCTCTCTCACTTTCTCCTCATTTTCCGTTACCGTAATTCGTCTGTGTGGACTTGTGAAGCTTGTGCTGTAGTTTGTGTTCTTTTCGAGGAATTTCTCTTATTCTCTGTCATTTTTGGTGTTTTTGTTTTCAATTGCTGATAATGATGCCGTAATGTTTATCCTGCACCTGCCAAAATGCTTATTAGACCACCTCTAGGTGATTTTTTGTTCATATTTTTCTCTATCTTGGTAATATTTTCCTCGTTTAGTTTAATTATGTGTATGTATGTTTTGGGAGTTATGCAAGTTTTCGAACCTGTACTGTCAGCTGCGTTTCTTTTCTCTAAGTTCACGGTGGTTCTAGGGTTTCTTTTGGGCACGGCAATCTGTAAAAGGGAGGTGAATTTTATATCTCGTTCCATTCTTCTCGGTATGGTTAAATGTTTGGGCGGTTGTATTAAGCGGCTTTTAGTGTTTGGTATCAAATTGTAGGTTCGCGTCTAAACACAAGACAAGAGTAACGTTCACGTCACTTTCTTGCATGTAGATGCACGTGTGTAGCAACAGAACCTTTACATTTATTTGTGATTGTTAATTTTTGAATTGACATAATCTTATTGTTCCATTTCATTTTCTTTCTCTTTCATGCTCACTGGGGAAACATTATTGAATTAGGCCTTCACAATTTGGCTGCCTTTTATTAACCTGTTGGATGCCCTCTAATAACCACTAGATACTAAATTCTTGATGTTTTTGTAGTTTATCTCTCATACATCCAACAATTTTAACTGCTAGCCATGTTGTGGTGGTCTCCTAAATAATTTCTCGTCACTTGTAGTTGGTTTGGAAACCAATTTCATATCAGTTGCTGAATTTTGTTCTCAAAGCTAATTTTAATAACCATGGATGGGCGGCTGATGAAAATTTAAGTTATTTCTATAGTATTACATTGCAAATTCAGTGTAGGTACTCGAACCTACCATTTTTAGGAGGTAGAGATTACTTAACACTGAGCTCTACTTAACAATAACAATAAATTTGTTCTCTCTCACATCACCTTTCACAAGTCACGAGTACAACCCCATGAATTGAAAGAATCATATTCAACTGTTTCTGAACGCCACCAAGGACTCAAAAACAGGTCATCTAAGAAAGCAAGAGGGAAGGGGTTTTAAAATCAGTTACCAAACGTAATTTCACTTTTCTGTTTTCTCATAAGCACAAAACATGTTTGAAATGTCTCCCAAACAAGAATTTGGACTGACTTTTTGTTTCCTTGTGCACTTGCGTATTTTGTGCTCTTGACAAGTATTTTTGTGCGATTGATCTAAAATCAGCTGGAATTTGAACATCTGGTATAGAGCAATTGTCTTGACTGCAGGTTGTGTAAAATTATCAACATTGTGAGTGGATTCAAATAAACTTTTTTTTCTTTCTTTTAAACATACCTTCAGAAGATGGTGCGTCTTTATTTCAAGGATAAGGCACAAGGATGTTGCTCTGCTTCCTGCATTTGAAATTTTTTGCACTTTTCTATCAACTTATAAGAGCTGTTGATATCACACACAACGGCGGGAGATTATTATGGGGCTCAAGATACACGTCCTTGTATAAAAATCTTACAACATTGTTAACCACCATTATGTAGAGACTGGTTAAAAAGTTTGGATAATGTGAAAGTATAAGTGTATGACCTTACTAATTACTGGCAGCAGCATAACTGGAAGATTTGCCTCATTATAAGTTTTTTCAGTTACAAGAAATTTTATTTATTACTTTATTCTTAGACCTTAATTATAAGAGTAATGAAAAACATTGATACCTTTATCCAATCTTCTATTTATTTGTCTGTTTTTGGTTACAGCTCTTTAACTTTTGAGGGGGTTAGAAGATTGTTAGAGAAGGACTTGTGTATGGAGATGTATACTTTAGATGTGCACAAAAGATATGTCAAGCAGTGTTTGGAGAAGGTAATGTTTTCTTCTTTCTCTATATGTGACATCTTTCTTTTCTTGGAGGTGGCATCCTATTTCTGTTATGCCTTCTGCTCAATTATATCATGTTCGGTTTTATTTTTGATATTTGTGGTGACATCTGATAAGTTCTTATATTTTAACGAAAAATGACAATTGAAAGAGTAGAAGAGCCTCAAGGAAAAAGTGCGTTTTATCTTTTCTTTTGTTAATATACTGTTTTATTAGAAGCTGAAGTCAAGTTGACAAAGATATATAATAAGAATGTAGACCTAAGAAATGCATTCTTGTAGGTTTATTGATAGAGTATCAGGATAATCCTCCCTTCCCCGATGAAAACGTTATATGCATACCATGACATCAACTTATTAATCCAGACTAATGAATCCATAAATCACAGAAGGAACCTATATCTTTTTGGCGTGAATATTGGATCACCTTCGTCAAATTAGCCCATTCATCTGCTTCTTGATCATTCAACCTCTTCATGGGTACCCTCCTCAAAAACTTATGAACATGATATCTTACACCAGTCTAGTCACTAGCATGTTACTCAACATGTGAATCTTCTATTTATAAAATTGAGTAAGTTTGCTGAACTCTATTGGGATTTCCTGTTGCTTCCATGTGTGTGAATTTGAAGGTAGAACAATTAATTGGTGGCATCCAACTTAAGCCTATCGTTTGGGTAGTGGCTATGAAAGCCACACTCGGGAAGATGTGGAATGAGAAAAATTCTAGAATTTTGGAGAGAGGAGGGTGAGACTGGGTGCAGTTTGGGACATCACTCATTTTTTGGCCTTTGCTTGGTGTACTCTCTTTGTCTCTATCTTGTTCTACAATTATACTCTTTGGTTAAAACATGAACTCAGGTCTCTCTTTGTAAGCCTTGGTGGCTCCTTTTGTATCTATTTAATATATGCTTAAAAGAAGTTCATTTCTTATTGAAGGAATATGGTCATAATTGAAAGTAATATGCTCCAAGTACTTTCTGAGGTGCCTTTGAAATTTAGAGTTCTCAATTTCTTGATCACAATGTTATTCTAATTTCTAGTTATTTCAGCACTCGGATGAAAATTTAGTTTGGACACCTAACATCATTCTTGAATTGAGTTTTTTATTTCCTTCTGTATCCTAGTGCATAGAAACTGCTTTGAAAGACAATGTATCCAAGGATTCTGAGGAGACTGGGAGAAAAAATGTAAATAAAGAAGAAGCAGCTGAGTCACCTGAAGGGCATCAGTCCAAGAAAGTTGTAAAGGAACCTTGCTTGGAAGATGAGGAAAACATGGAAGACTCTCCAGATATGGGCCTCATAGGACGTAACACAAAAAATGTTGAATCTGATGGAATCAAAGGAATCAAAGACAAAGATGACAAAGATATTCCTAGTGAGAGTAGAATAACAAAAGCTATTATAGAAAGAATTTCTTATCTTAAAGCTAATTCGGAGTAAGTTATTATTATTTTCTCCATTATGGATCACCGTAATGCTATGAGTTTTCATTCGTTTATGTTATATTTGTCTATGTACCTTTTCCTGTATTTTGATCCTTGTTGCTTTCTTAAAGCCCAAAATTGGTATGGAAGAGCATCATAATGGAGCCATATGTTTCTAGAAATTTATAATGTATTGTTTTACTTCTGGTTCACAAAAAACATTGTGGAATTGAAAAGAGTAATAGAGTAATTTTTTCAACTTTCAAGGATGGGTATCAGAAATGTTAATCAAGTACTCATAACTGAGGCTGTGGAAGCTGTGCAGCCTATTGAAGATGATGCAGCCGTAGGGCCTTTCCAACAAAGGGAAGGTAAGGCATATGTACAAGAAGAGGAATTTGATGACCTCTTCGATTATGAGGTTAGAGAGCAGACCCCAAAAGAGAGTTCTTTAGAGGGGCAGGAAGACTCTAGTGCAGCTGAAGAGGTGGAGGAGGTAGTCAGGCAACTGAAAAGGTGACTCCAAAGAGGGTCTCTAGATCGGCAAGAAAGAGACAAGCCAAGGAAAAAAAGGAGAGGTCAGAGGTGAAGAGGCCCAAAATGAGAAACACCTCAAGAATTGTGATTACGTCATCCAGTGATGAAGTTGAGGAAGAGGAGGAGTTGGCTAAGAAGAGGGAAATTCTGAGGAGAAGGGAAATCTTTGAAGAGAATGGGTTCTCCAACAAAGCAGGAGAGCTGCCACCATTCATTACTTCTGTGGTGGCTTACTATGAGTGGGAGTCCCTGTGCAGGCAACCCTTGCCCACCAGTATTGCACTTGTGAGGGAGTTCTACCTCGGGATGCAGCCCGAGAGAAGCATCTCCATCGTTCGGGGGGTGGAAGTGGATTTTTCTGCTAGCACAATTAACTCCCTCTACTTGGTGTCGGACGAGCACGAGGAGGAAAGCTTTATGTGAATGTATGCTCCATCTGATGAGCAGATAGAGGATGCCTTGAGGATGGTGGGCACAAAAGGTGCTGCGTGGGTGATTTCATCAACTGGATGCCGCACCCTTCGGCCTGGGGACATTAAAGATAAGTTGGCTATCTGGTTGTACTTTATCAAGCATCGGGTAATGCCAACAACACGTGACACAACCATTTCCTTGGAAAGAGTCATGCTTTTCTACAGCATAAGGAGGATCCTCCCCATTAACTTAGGAGGAATCATTAGGCAGGAAATGGTGGAATGTGGCCCCAAGACGAGAGGGCGCTTGTTCTTCCCCTCCCTTATAGGCCAGTTATGTGCTGAGGTAGGTGTCGTGGTTGATGCTACTGAGGAATGTTGCAAGGTCAAGCTAGCAATCGATCTTGGTTTGATCAAGAGACTTCAAGAAAATATTGCTACCAGGAAGAGCAGGTCCTCAGCTTCAAAGTTGCCCTCAATGTCCTCCCCTCCATCGAGGACGCTTCCTCCTGTGATGATGCAAACTCCTATCAATGATGCCACATTCTCCTCGCCAGAACTAAACTTTGAAACTCCAATTCCAGATCATCAGACTCCTGTTTCTGCTCTTGCCTCAACTTGCCAAGTACCTTCTTCTGCTGCTCTTGCCACTATGGCTGGTGATGTGCCCGCAACTCCCTCTCAACAGCCATGTGGTGCCAATGCCCCTTCTATGCACGCCACCACTGTGGTGGGTTATATGGCTGAAAGACTTGAGAAATTTACGGCACAGTCACGTGCTTATTGGGCATATGCCAAAGAGAGAGATGATGCCTTCAAAAGATTCCTCAGCTCCGCCAAGCTTGACTATTATCCTGCAGTTCCTTCGTTTCCCGATCACATTCTTCATGACCCCAAGGATGAAGAACAAGGCAATGAAGTTGACGATGATGCTCCAGCTCATATCTAGGAGAGTATCATGTTCCTTCTCTTGTTCTTCATTTTCTATCTTAGAATTTGTGCTGATCTTAATTTGCTTTAGTTTCTTTTATTTTAGGTTCAGTTAGGTTTTGGCTTTTGAATAGGTTAGTTTTTGTTTTCTCTGCTGGAAATAAAATTTGTTTGACTGATGTTGATTTATGATAGTCTTGAGCATGCTTGTCTTGGTTTGTTGTGCAAAGTAGTTCTTAATGATGACATCTAGAGCATATCTTGCTTTCAACCCCAAAAGGATACAAAACCAAGAGTTTTATTTTGTCTATATGTACAAAATTTCCTTAGACTAGTTTCCTGCATGTTCCACTAGTTTAGCACACTAGGAGCGCCTAGCGTTACATGTTGCAGCCTAACTTTTGACCCATTTTATTTAGTTCTCTTCCTTAGTCTATGAGGACATTGCTTATTTTAGGTTGGGGGGAGAACTTTCACACATTCTATGTATCAAAGTAAGCTTCTGTTGTAGGAATGTAGTATATGCTATGTGCTACGCTGATTAAAAAAAGAAAGAAAGAAAGAAAAGAAGAAGAAAAAAAAAACTAAAATGACACTTCTCCTTTCCAAATTAACTAAAGTAGCCGATCATGACGCCCATGCTTTCTTTTGTAGCGGGTGTACATAAAGGTCTCGAAAACCGATCCGACTGATCGAATTAAGGTCAGTTGATTGGTTCTAGGGGTCGGTCGGTCGGTGTTAGTTTTGGGAGTCTCGGTTTTCTCCCAAAACCGACACCGATCGACGGTCGAAATTTTCAATATTTTCATGGTCGGGTTTCTCCCAAAATCGACTCTGACCGGCTTTTATACACCCGTAGAGGGAAGTGAGTGGTACCTAACGTGTGAGCCTTGCCCGTAGTCAGATGATCCGCATGACACCTGTGTGGGTAAGCTGGAACGAAAGTAAGGATGACATTGAGGATATGTCCTAGGCAAGAAAAAGGAAAAAGAAAATAACAAAGGAATAAAGGCCTAGCAAAAGTTCAAGTTTGGGGAAAGAGAGTTTTGTACTTCATATTAGATATGGTGTATTGCAAAGATGTAACTTGTTAGAGATCTCACTAGGTTCAATGACTAGTAGCTAGGTTAGTTGGGCATGAATAGGTAGATAGTTAAGGGATGTTGAGCCATTGGTCAAGTGAAACTCTTGTGAGGATTCTTTGGGAGCTTGTCACGTACTTATAAGGTCTAACATCCACCGGCCTGCCCCTTCCTTCAAAGTAATCCGATGATCCACCTCCATTTTTGGGGGTAATGTAGGTGGCCATTCAAAAATTGATTCCAATACATCTAGCAATGATTGGATTATCCTCGGAGTCTCATTAGATTTTGCTTGCTCCGATTGGCTTTGCTGTAGGTTTTGCTCCTCGGTTGCGATTGGTTGTTTGTAGTTCAACCAAAAAACCTTGATCCTCCTCAGAGCAAGCTCATGCCAACATCTTGAGAGAAAGCTCTGCTTTAGTCAAGGTCGGATCTCCTTTAATAGTTACCATATTCTCTTTCGAGGTGAATATCATAGTAAGGGCAGCCTAATTGACCCCCATAAATCCTATTGTTCTCAGCCATTGCATTCCCAATATCACGTCAACATTTTCCAAATCCAGAGGCAAAAGTCTTCTACAATTGACAACTCCGGTAGACTCACGTCAACCTTTACCTCTAATTGTCGTAAGTACCCCATAGTTAGAAGTCTCCATAATCAGAATATTTAGTTTCTCTTCTCTTTGCTTATGAATGGAGTTATGTGTAGCACCACAATCCATTACCACAACAACTTGTCTTCCCTTACCTCTCCTTTTCTTTTACTTTCATGGTTCTAGGAGCAAAAAACTCAAAACTGTTTGGCAATTTCGTCCACCTCTTGGGGTTTATTTTTCAGTTGCTATCTTCCAAACTTGCCAATTCAAACTCAGTTTCATCTTCCTCGTTCACTACGAACACTCTTAGCTTTCGTACTTCACAATTCTTGCAGTGATGGCCAATAAAGAATTCATCATAGCGAAAACACATTCCGTTTTCTTGTGTTGCCTGGTATTCTACATTATACAAACATTTCATGGGCACAGCCTTCCATTGAGTTTCGTGTCACTGTGCGAGTTATCAAAGGGTCTAAAGCCTTATTAAACAAGAGGCCATTGAGAAACATACTCTCCAAGACATCTTTAGCACCATTAGGCAACTAAGCAGTACTATTAAAAAACCTGCCTAAATTCGGCCACATCACCTTCTTGTTTTATCTTTAGAGATCAAACCATCGAACGTCTTGTGTAGGACAGAATCGTTCAAATAATGGGCCTTCAAGTCCGCCGAGGTGTCGAACTTACGACGATTGTTAGCCCATTGATACCAGTCGACTACATCTTTCTCAAAATGCACTATCGAAACTTTAATCTTTTCCGAATCTGTCATTTCTTGTCTTTCAGAATGCCTCTTTGCCCCAAAGCATGAGTTAGGATTTTCTTAAAAAAAAACCTAGCATCTCCAAGCTTTCCCTTATCCTTGATTGAAGTGGAATCTTCCTCTTCAATGATTTCTGTTTTCCTCTTAACGAAATTTCACGCACCTCGACTGTAAGTCTTTCCAAACATTTGTTCATATTTTGAAGCACATCTTTAATGCTTGATACTTCCTTCTCTGTTCCTTCCATTCTTTCTTCAAGTTATTTTGAGCCATTTTCCATGTTCTCTTTGGGATTAACATGCTCTGATACCAATTTGCAAGGTGTCTCTTACAAATTACTCAAAGAATCTTCCAAGCAAACCAAATAGTTCCAGATAACACAATTCAATGATATTCAAAAACTCAACTAAATGATAGTTTCAGAATTATAAGATAAAAGCAATCAAAGATGAACAAGAAAATGAAAATAAGCAAAGAATGTGATAACTTGGTTACTCGAGAGAATTGATACTCTCCCCCTCAAGCATTCAACTTCTACTCAAAACCTGAAAACTCTTCCCTCCTGCCAAACCCCTTTGGTGGTCCCCACCAGGCACACGCCACAACCACGTTTCTCTAACCAACTGAATTATGTGAAAGTTTCTTTTTGCTCTCCCTTTCATAGATATGAATAATCAGAGGTTTTATAGATAAACAATCAGAGGATTGCTCATGCTAGTTTCTTAATTTCCGAAATTACTATTGGGTTTTCCATTAATTCCCTATATTAATTAATTGATGCAAGAAAATGGTAAGTCTACCCTCCATTAAGAAGGTTAAATATAAGAACTCTTGTTAATTAATGGGAAACAATAGGCTTTCTGGAGTCAACTTTGAGGATCACCCCATAGTAATTTTTAATTCTCACCTCATCTAGTCCTTTTACAATAAGGATCACATCCAAATATGTGACTATCAACAATGATACGTAGGGGGATTTTAATATCAAATTTTTGTCATCAAAACACTTTAATTCTGGGAATGCATCAAAGTATTGATGGCCACCCTTAGGATTTAATATCCTATCGGTTTTCTTGGAAACTAAATGTATTTAATTAGGGTTTGTCCTGTGAGAACAAGACAAATGTCGAAAAAAAGGATTGAGTACACTACATGTAATTTTTCAATACATTGTACTGTTAGGGTTAGAAGACTCAAGTTTTATAGGGTTTCGGGTACACTACATGTACTCTATCATAATACTATTTTGTTTTGGGATGTGATGAGGGTGCTATGGGTGTGTCAACCTAATTGAGATAGTCGGTGCATGATCCCTAGTATTAGACTATTAATATTCGTATTTACTTAGTCTTTTTCTAATTCGAGCAATAGTCTCTTTTCATTTCATTAATGAAAAGTGTTGTTTCTGTTTATAAAAAAAGACTCAAATTTGATAGCATACTTAAAATGGTTTTGTTTGTTTCTTTTTTTTTTTTTTAATACTGACCTGTATCTTTTTTTTTTCCCTTTCTGATTATGGATATTGCAGGAACAAATGCTCCTCATAGTTCTACACTGGAAGTTCCAATATTTTGGTTCATTCATACAGAACCCTTATTAGTTGACAAACATTATCAGGCAAAGGCACTCTCCGACATGGTTATTGTAGTACAGTCGGAGATTTCATCCTGGGAAAGCCATTTGCAGTACAATGGGAAATCACTTATATGGGATATGAGGTTAGTTCAAGCATCTTTAGTTGCCTTGTGACCCTTATGATGTTTGGACTTTGAAAACATGATGGAATTGTATAACTTCCAGAGTTGCTGGTTTCCCATCATTCTAGGTGCTGGGCTCATCTGAATGAATTATTACTTGCCTTGGGTCGGGTGTCAAGTGCACGTCATTTTACTACCCATTTTCCTATTTTCTCCCCTTTCTGTAGAATCTGTCTCTGTCCCTCTCTCATTCTATCTCTATATTTATTTATTTTAATGAATAACGGAACTTTCATTGTGAAAAAATGAAAGAATACATGGACATAGGGTATCGGTTGGTCTACATCGATTTTGGGATTAAACTAGTGTCGACCACTCAAATGTTGGTTTCCAGCAGTCGATTGGAGTTGGTTTCGAAGAGGCTATGTATGTTGATTGACCAACCACATCGACGATCAGTCGGTTTTAGCTGGTTTTGTGAATCTTGAAAACTCAGGAAGAACAAACTAAAAAGAAAGAACGAAGAAAAGGAGAAGAAAAGGAGAAGAAAAAAGGACAGAACAAGAAGAAAATAAGGAGGAGGAAAGAGGGAGAAATGGAGGAGAATAACCTTGAGAAAGATTTATTTATTATTTTTTTCCCATAATAATTGTACAAACCTTGGGAAGGGCAACAAAGAGGTCAATATATTAGTCTATTGTTTTTATTGGTCAAATGATCCATTAATCAAGATGGAAATTTATAGTCAGAAAAGGGGAGCAAAATGTAATTTGTGTTTTATTCTATTTTGAAACAGAAAACTAATAATATAATCCTTTTGCTAACCCATGCATAATGCAATTAGTTTAGGGCTTTTAGGCAACTCTCGACTACAAGGTCGGTCAGATGTTCAAATTTCCCACATGTGGTTGAACTAAAAAAAAAAATTATAATCTTTTACTTCTCTATTTGGATCAATATGTATGATTGTGTGCTTGGATAATAAATACAAAATGCTCTCTGTAACTTATGGCATTCTGTAGAAACCTTAAGTTGTTGAAGGTAAACATGTAGAACCCAAACTTGTTGGTAATCATCAGTGACAGTGGTGACACCATATAAGTGGTAAACATGTGGACGACATTTCAATACGATTATCTCAGGAGTGCTGCTTGCTTCAAAATTTGCTTTTCTTTTCTGTTTTGAACCCTTTTTTGTAAATGAAATGTGATAAAATTAGTATGAAGGGCTTCATTTTCAATATATGTGGTTCACCACTTGTTTTAGCTGTTAACATTAAAGGCTCCTGTCATCAGAAATTATCTTAGAATATTAATTGTTTATTTCTTCTTATACTTTTCAATACGTAGGAAGCCAATTGAAGCTGCTCTTTTTGCTACTGCAGAACATCTTTCCGGTCTGCTCCCTCTTCATCCTGCAGACAGGTACCATAGTGAAATCCTTTGGGTTGGAGTGATGTAG ATGGCGGAGGAATTACAGGACAACGATGCTCCAAACGAAGAAGCCGTGGATGTTGCTGTTGATATAGAGACGAAGATTCATAACGCTATGCGCTCTTGCTTCTCTCACATCAAGGAACAAGCCGACTCTTTAACTTTTGAGGGGGTTAGAAGATTGTTAGAGAAGGACTTGTGTATGGAGATGTATACTTTAGATGTGCACAAAAGATATGTCAAGCAGTGTTTGGAGAAGTGCATAGAAACTGCTTTGAAAGACAATGTATCCAAGGATTCTGAGGAGACTGGGAGAAAAAATGTAAATAAAGAAGAAGCAGCTGAGTCACCTGAAGGGCATCAGTCCAAGAAAGTTGTAAAGGAACCTTGCTTGGAAGATGAGGAAAACATGGAAGACTCTCCAGATATGGGCCTCATAGGACGTAACACAAAAAATGTTGAATCTGATGGAATCAAAGGAATCAAAGACAAAGATGACAAAGATATTCCTAGTGAGAGTAGAATAACAAAAGCTATTATAGAAAGAATTTCTTATCTTAAAGCTAATTCGGAGATGGGTATCAGAAATGTTAATCAAGTACTCATAACTGAGGCTGTGGAAGCTGTGCAGCCTATTGAAGATGATGCAGCCGTAGGGCCTTTCCAACAAAGGGAAGGAACAAATGCTCCTCATAGTTCTACACTGGAAGTTCCAATATTTTGGTTCATTCATACAGAACCCTTATTAGTTGACAAACATTATCAGGCAAAGGCACTCTCCGACATGGTTATTGTAGTACAGTCGGAGATTTCATCCTGGGAAAGCCATTTGCAGTACAATGGGAAATCACTTATATGGGATATGAGGAAGCCAATTGAAGCTGCTCTTTTTGCTACTGCAGAACATCTTTCCGGTCTGCTCCCTCTTCATCCTGCAGACAGGTACCATAGTGAAATCCTTTGGGTTGGAGTGATGTAG ATGGCGGAGGAATTACAGGACAACGATGCTCCAAACGAAGAAGCCGTGGATGTTGCTGTTGATATAGAGACGAAGATTCATAACGCTATGCGCTCTTGCTTCTCTCACATCAAGGAACAAGCCGACTCTTTAACTTTTGAGGGGGTTAGAAGATTGTTAGAGAAGGACTTGTGTATGGAGATGTATACTTTAGATGTGCACAAAAGATATGTCAAGCAGTGTTTGGAGAAGTGCATAGAAACTGCTTTGAAAGACAATGTATCCAAGGATTCTGAGGAGACTGGGAGAAAAAATGTAAATAAAGAAGAAGCAGCTGAGTCACCTGAAGGGCATCAGTCCAAGAAAGTTGTAAAGGAACCTTGCTTGGAAGATGAGGAAAACATGGAAGACTCTCCAGATATGGGCCTCATAGGACGTAACACAAAAAATGTTGAATCTGATGGAATCAAAGGAATCAAAGACAAAGATGACAAAGATATTCCTAGTGAGAGTAGAATAACAAAAGCTATTATAGAAAGAATTTCTTATCTTAAAGCTAATTCGGAGATGGGTATCAGAAATGTTAATCAAGTACTCATAACTGAGGCTGTGGAAGCTGTGCAGCCTATTGAAGATGATGCAGCCGTAGGGCCTTTCCAACAAAGGGAAGGAACAAATGCTCCTCATAGTTCTACACTGGAAGTTCCAATATTTTGGTTCATTCATACAGAACCCTTATTAGTTGACAAACATTATCAGGCAAAGGCACTCTCCGACATGGTTATTGTAGTACAGTCGGAGATTTCATCCTGGGAAAGCCATTTGCAGTACAATGGGAAATCACTTATATGGGATATGAGGAAGCCAATTGAAGCTGCTCTTTTTGCTACTGCAGAACATCTTTCCGGTCTGCTCCCTCTTCATCCTGCAGACAGGTACCATAGTGAAATCCTTTGGGTTGGAGTGATGTAG MAEELQDNDAPNEEAVDVAVDIETKIHNAMRSCFSHIKEQADSLTFEGVRRLLEKDLCMEMYTLDVHKRYVKQCLEKCIETALKDNVSKDSEETGRKNVNKEEAAESPEGHQSKKVVKEPCLEDEENMEDSPDMGLIGRNTKNVESDGIKGIKDKDDKDIPSESRITKAIIERISYLKANSEMGIRNVNQVLITEAVEAVQPIEDDAAVGPFQQREGTNAPHSSTLEVPIFWFIHTEPLLVDKHYQAKALSDMVIVVQSEISSWESHLQYNGKSLIWDMRKPIEAALFATAEHLSGLLPLHPADRYHSEILWVGVM Homology
BLAST of HG10003884 vs. NCBI nr
Match: XP_004145363.1 (DNA ligase 1 isoform X1 [Cucumis sativus]) HSP 1 Score: 281.6 bits (719), Expect = 8.5e-72 Identity = 151/183 (82.51%), Postives = 159/183 (86.89%), Query Frame = 0
BLAST of HG10003884 vs. NCBI nr
Match: XP_011649194.1 (DNA ligase 1 isoform X2 [Cucumis sativus] >KAE8651851.1 hypothetical protein Csa_006536 [Cucumis sativus]) HSP 1 Score: 281.6 bits (719), Expect = 8.5e-72 Identity = 151/183 (82.51%), Postives = 159/183 (86.89%), Query Frame = 0
BLAST of HG10003884 vs. NCBI nr
Match: XP_038884710.1 (glutamic acid-rich protein isoform X2 [Benincasa hispida]) HSP 1 Score: 272.7 bits (696), Expect = 4.0e-69 Identity = 150/183 (81.97%), Postives = 159/183 (86.89%), Query Frame = 0
BLAST of HG10003884 vs. NCBI nr
Match: XP_038884709.1 (glutamic acid-rich protein isoform X1 [Benincasa hispida]) HSP 1 Score: 272.7 bits (696), Expect = 4.0e-69 Identity = 150/183 (81.97%), Postives = 159/183 (86.89%), Query Frame = 0
BLAST of HG10003884 vs. NCBI nr
Match: XP_022939456.1 (DNA ligase 1-like isoform X1 [Cucurbita moschata]) HSP 1 Score: 260.0 bits (663), Expect = 2.7e-65 Identity = 142/183 (77.60%), Postives = 152/183 (83.06%), Query Frame = 0
BLAST of HG10003884 vs. ExPASy TrEMBL
Match: A0A0A0LIS6 (CHZ domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_2G232480 PE=4 SV=1) HSP 1 Score: 281.6 bits (719), Expect = 4.1e-72 Identity = 151/183 (82.51%), Postives = 159/183 (86.89%), Query Frame = 0
BLAST of HG10003884 vs. ExPASy TrEMBL
Match: A0A6J1FGV2 (glutamic acid-rich protein-like isoform X2 OS=Cucurbita moschata OX=3662 GN=LOC111445354 PE=4 SV=1) HSP 1 Score: 260.0 bits (663), Expect = 1.3e-65 Identity = 142/183 (77.60%), Postives = 152/183 (83.06%), Query Frame = 0
BLAST of HG10003884 vs. ExPASy TrEMBL
Match: A0A6J1FFY5 (DNA ligase 1-like isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111445354 PE=4 SV=1) HSP 1 Score: 260.0 bits (663), Expect = 1.3e-65 Identity = 142/183 (77.60%), Postives = 152/183 (83.06%), Query Frame = 0
BLAST of HG10003884 vs. ExPASy TrEMBL
Match: A0A6J1JTY1 (glutamic acid-rich protein-like isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111489718 PE=4 SV=1) HSP 1 Score: 253.8 bits (647), Expect = 9.2e-64 Identity = 138/183 (75.41%), Postives = 149/183 (81.42%), Query Frame = 0
BLAST of HG10003884 vs. ExPASy TrEMBL
Match: A0A6J1K3E3 (glutamic acid-rich protein-like isoform X2 OS=Cucurbita maxima OX=3661 GN=LOC111489718 PE=4 SV=1) HSP 1 Score: 253.8 bits (647), Expect = 9.2e-64 Identity = 138/183 (75.41%), Postives = 149/183 (81.42%), Query Frame = 0
BLAST of HG10003884 vs. TAIR 10
Match: AT5G58100.1 (unknown protein; INVOLVED IN: pollen exine formation; EXPRESSED IN: 19 plant structures; EXPRESSED DURING: 8 growth stages; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT3G28720.1); 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: 133.7 bits (335), Expect = 2.7e-31 Identity = 59/86 (68.60%), Postives = 74/86 (86.05%), Query Frame = 0
BLAST of HG10003884 vs. TAIR 10
Match: AT4G08310.1 (FUNCTIONS IN: molecular_function unknown; INVOLVED IN: biological_process unknown; LOCATED IN: cellular_component unknown; EXPRESSED IN: 25 plant structures; EXPRESSED DURING: 13 growth stages; CONTAINS InterPro DOMAIN/s: Histone chaperone domain CHZ (InterPro:IPR019098); BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT1G44780.2); Has 53711 Blast hits to 33687 proteins in 1618 species: Archae - 142; Bacteria - 4400; Metazoa - 24303; Fungi - 6688; Plants - 2484; Viruses - 449; Other Eukaryotes - 15245 (source: NCBI BLink). ) HSP 1 Score: 109.0 bits (271), Expect = 7.1e-24 Identity = 72/164 (43.90%), Postives = 107/164 (65.24%), Query Frame = 0
BLAST of HG10003884 vs. TAIR 10
Match: AT1G44780.1 (CONTAINS InterPro DOMAIN/s: Histone chaperone domain CHZ (InterPro:IPR019098); BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT4G08310.1); Has 18105 Blast hits to 11200 proteins in 808 species: Archae - 37; Bacteria - 1195; Metazoa - 7724; Fungi - 1727; Plants - 674; Viruses - 183; Other Eukaryotes - 6565 (source: NCBI BLink). ) HSP 1 Score: 78.2 bits (191), Expect = 1.3e-14 Identity = 63/183 (34.43%), Postives = 99/183 (54.10%), Query Frame = 0
BLAST of HG10003884 vs. TAIR 10
Match: AT1G44780.2 (INVOLVED IN: biological_process unknown; LOCATED IN: cellular_component unknown; EXPRESSED IN: 20 plant structures; EXPRESSED DURING: 9 growth stages; CONTAINS InterPro DOMAIN/s: Histone chaperone domain CHZ (InterPro:IPR019098); BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT4G08310.1); 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: 78.2 bits (191), Expect = 1.3e-14 Identity = 63/183 (34.43%), Postives = 99/183 (54.10%), 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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