HG10011768 (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.ATGCAATGCTCCTGCGTTTCCTGGTCCTCAAATCTGAAACTCGGACCTTCCTTTTCCAAATTGAAGCTATCATCAATTAACCAAGCAGAGACCACCGATTTTGCTGGAAGAATTTCTCTTCCTTCTCACGTGAAAGCCATCACCAGCACCTCCAACCCTTTCGTTAAGCACTGCGTCAAACTTCGCTTCAGTTCCTCTTATCGCCACTTCCATGGCTCCGTCATTGTCGTCGGAGCTACTCCAATAAGGTTCTCTCTTAATCAGTTACTTTGCCCTCAATTTTTCTGGGTTCTGTTCATGATTGTGTTCCTGATTGAAAAATTAAATTAGTCCACGCGGGGTTTTATTTTTTGAATTTTTTTGTCGTTAAATTTCACTAGCTCTCGAGCAAGGGGCTCTAAACCCTTGAATTTCTTTTGCAAATCAACCATATGGGTTAATAAATTCTCTAACATGGGTTATTAGTACTTCGTCTCTCATGCTATTTTTCGTCCATACTATTCTAATTGCCCATTTCAGTTTTGTGTCCGGTGCTTTTTTGGTGAATGTTTTGAAGAATTGAGTTCTTGGAATCAAATCCTGTGTAATAGCAAGTTTGTGACTTAATATTTTTGAAGCACCCTTAAGCTTTATCTAGAGTTGTATTTGATTGTGACTGTTCTCTAATTGAACTATGAAGTACTTTCTGTTTTTTGAACTTTGGAAACTCGCTGCTGATTTGTAAAATGATAAATTGTTGGAGCCATGTAAAATTTGTGCTTTCCTGCAAGAATTTCAGCATAAATTCTGTCTTCTAAAGTCATATTTTGTCCTTGTGGTTACTCCGTTTAATCTATAGGTTACTCTCTTCATGGTTGGCAAGGAAGAAAATCCTATTTCTCTGTTGTGTGGATGCTTCCACATATTGCAGTTCATTTCTAGCTAGAATTGTTGAAAGTTTATGTGTGGTCTACTGGTGGTCGTATCTACTTCAATCATTTCGTGATAGATGTAATTTGTATATTCTAGTTCACTGTTTTTGGACCATGACAAACTTTATAAAATGGTGTTCCCATGAGAAAATTTACTATTACTTACATGAGATTAGATCTCCCTCCCCTTAGGAGTTCTAATTATGTATTTTATCAGGTCATCTTTTGTGGTAAAATGTTTTGCTCAACTTCATTTGGTTTGTATGCACTGACATCTAATTTAAGTCTCTTACAGGGAAATTTGCAAGTTTCAAGAGTCTCTGCATGGGATAGCTTGTATATTGGAGTGCCTACTTCTGCTAGATGACGTTGAGGTTCCTGAAGGACTAATTGATATATCTGTTCGTATTGTGCGGGTGAGCCCAACTGTGATGAAAAAGCTTTCTGGCATGCAATCAACAGAATCTATTGATGCAATTGCCCTCATGAGAATACCTGCCAGTTTTTGTAGTGTAGATGGCAATGAGAAAGAAGTAGATTTTAAAAGATGTTTTCCATCTCCGCATCGAATATTAGTCCTTGAGGGAATCCAGGTATTCTTTCATTTGGAGTGGAGCGAAGTCTTGTAATTTGCTGCATCTAATTTTCCTGTCTTTAAGTTGTTGCAAAATACTATATAGTTATCATTTCCCCCACTTCTCTCCATCCTCACTACTAAGACGATTTTTCTACCTTGTGCTGCCACTAGTCCACTGTGGTATGTCACTGAACACATTTACATCGTAATAGTTTTTCTGGACTCACCTATAAAGAGTGAATGAGTGGTCGTCCTCTTAACCTATGGTGCTTTGATGATGACCTTTATGCTTAGCGTTTGATGTTATAAAGTACTCACCTATATCCATTAGTTAATATGAGATGTACAAGTTCATCTTTGCTTGTTGCAGGACCCAGGCAATCTTGGTACATTAATCAGGTCCGCTTTGGCCTTCAAATGGGTAAGGAAAAATTCCACAAATTATTATTATCCTTCATTCTTTGACCTTTTCCCCCTGAACATGGTGAGGGCAACCAGGCAGGTTATATCACATAGTGTTCTTTGGCTTTCTATTTTCATTAAATTTCTCCATGGAGAAATTCGTCTGTCATGTGTTAATGTATTTTATTTTATTTGGATTTGATTTAATTTTTTTATTATTTTTTTACTTTTGTTTCTGGAAAATACGTTCTATAGATTTAGATCTTCTCAATAAGTTTGAAGAACCCTTCTTTGAACTCCAAAATCCAAATGTCAATGAGTGCTGATAGAATACTTCACCTTTCTAGTGTGAAATTGTGATAGGCCTCCAATTGTAAAAGTGATGTAAGGATAAGATGAGGAGTAACAAAACGTGACAAAATGTTTGTTATGTGTTGGCCCTCTAGGAATATTGTTAGTTAGGGGACTTGCGGTGTGGAGGCCTTTTATAGACCCCTTTGCTGATAGGGGAGGGGATCTATTTGGCTATCATTTGTATTTGGGTACTCTTATGAGAATTGGGAGAGATAAGGGAGCTCTTGAATCTTCCCCACTACTTTTGATAAATAAGATTGATGCTAAGGCCTATCAATTTTGGTATCAAAGCATTCGTTTCTAGAATGGTAGGAAAAATGGAAGGAGTTATAATGTCGGAAGAGAAAATGATGGAGATAGGTGTAAGTAGTTGGAACTTGAGTGCAAGATGGATTCTAGATTCTTTGAAGCTGACGAGAGTTGGGTGGTTGCAGAGGAGAAGGTGGATCTCCAATTTACACTGTTATGGGAGAAGATGAAGGCGATCATGAATCGAATGGAAGGTTGGATGAATTTGAAGAGACGGTCAACTTCTTCAGAGAGGATTGATAAGTGGAAAAAAGTGATGGAATAAGAATCGATTGAGCTTGCGAGTGAAGGACAAGAGCAAAGTTCTTTGGATAAGGAAGGAATTCATGCTCATAGTAATCATGAGGTTCCTCTATTTAATATGCGATTGAGTAAATTATTGGTACCCATTTTTAAGGGGGAAGAGGAAGAAAACGCAGATGGATTGCTACTACGCATGGAGAGGTATTTTGTTGTAAATTGATTGTCAAAGAGAGACAAGTTGGATGCGACAGTGTTGTGCTTGCGTTGCATTGGTACGAGTAGGAAGAGGATCAAAACTCGGTAGGTAGTTTGGATGAGTTTTGAAAGCTTTTGTTGGAGCAATTTTGACTGTCTGGTCATGGAGATAAGTACGCACGGTTGATGAAACTGCAACAAGAATTCATTGTACACGAGTATTGCTGGAGATTTGAGTAGTAATTGGCCGGTTGGATATTTGTTAGCGATGGAGTCTTGGAGAGTAAGTTTGTTTGTGGGCTAAGCGAAGAAATCCAAAGTGAAATGAAAATGAAAACTAATGGGCTTGAAGGCCAAGATGATGATCGCCCAATTAAATGAGGATGACCATCTTGGTTCAACAAAAAAAGAACAAAAATACGAGTGTTACTAGCCCAAAAGTGAAAAGTGGATGGCGTATTCTAGGTCAGGTTCAAGTGGGAGTAGCTGGTCACCATCAAGCATGATTATTAGCAGCCCTAATCAAGGAATGGGGGGTTTCCACATCTTTAAGGCCGACGCGTGATTTCGTTACAAAAGCGAGGGCCACAACATTGGGTTTTGTTAGGCTTGTGGTTGTGTTTTGTGCGGCTTTTGCTCTAATTTCTTGGTTTCGTCTCCCTCTGTTTTGGGGGCTTCCTTTCGGATGTGTGTTTTTTGTGTTGTCCTGTGTTACGGTGTTGTGGGGTGGGCTAGTCTATTTTTGGCTAGTTTCTTTGTGGTGTTTGGGCCGTTAGGGGTTTGTGGTTTGGTTCCTTGTGTGTTTGGTTTGTGTGATCTGGCCTCAGGCTGTGGAGCTCTCCTTGTTTAATATATTATCTTTTCCCAACAAAAATAAAATAAAATTGGGGTGGTCTATGTAGGGCCAAAAGGATCTTGCCTCCTACCATGACCATTGCTAAATCCTCCCATAGCATTTACCTCACGAAGTGTCCCTTGATGGACATGAGGGCAAACATCAGCAATATGCCCTGTCATTGAACATAGGGGTGAGCAAACAAAACCAAAAATCAGACCAAGCCGACTGAAACGGACCAAACCGACATCGGTCGACCAATTTAGTCAAAGATTCAATCGGAGTCGGTTTTCTGCAAATAAAAAAAGCGAACGTTGCCAGTCGGAGTGGTCGGAAAAGCATAATTCCAACCGACCGACCAAATTTTTTAATTATTGAGTGTGATATTTTAAAGCAATCAGCCCTTAATATACGTGTAATCCACCTTGATTCACGTAAGGTGGTTTTACTTTTTGTAAAAATAATTATTACTTTTTCTAAAAGTAATTATTACTTCTCTTTTCTCTCCCCCCATGTACATTTCTTATCCTTTTCATTTTATTTATTTATTTTATTTCCCTTTTGAAAATTAAGTGTTAGTGCAACTTCTCTTCTCTTTCCAATTTCCTTTTTAATTTTATTTATTTTATTTCTCTCTCCTAAATTAAGTGTTCTATCTTCTCTCTATCTCATTTCCTTCTTTCTCAAGTGTTTGGTTTTCTTTGTATTTTTTCTTCTTCTTTTTCATCTCCTTATTTTCTTCATCTCCTTTTAGTTTTCTTCTTATCTATTGTTCTACCTTTCTTCCTCCTTGTTCTTTTATTCTTCCTTTCAGTCAACCCTTTCATTTCTCATTTTCTTTGCCGGAGACTAAAAACCGACAAAATCGCCTAACTGACCAGTCGGCTGGTCGGCCGGTGTGGTTGTCTTCTTCGAAACCGATAAAACGCTAATAGACCACTTTTCGGTGTCACTGCCGAAAGAACCAATAAAAAATAATTTATAATACCAAATCCTACTACACTACTACTATGATGACGTAGCAACAGTAGTAAGTTCGGGTCGATCCGCAGGGAAGCACGAAATATGTTTCGTTAAGCTAATTCTCTTGTTACAACGGTAAATTTGGGGGCGGGGGTTGTGATAGGGATTGCATGAAAGTAAAGGCAGGAATGTAAAAGCAGCGGGTAAATGTAACTTAGGATTGGAAAATTCTAGTTTCGAGAGCAAGAGGGGATCCTATGCAATTTCGATCATCGACCTTTGATGTATGCACGACGACGCTACAAACAGTTGAAATATTCGATTGAACATGCATTCGATTCATGTATGCACAACGAATTACTCAGCCTAACCAAAATCAATGACGCTACAGATAGCTGAAATATTCGATTAAACCGAGAAAGCACCCTAATTATTAATTAATACTTAATCAAATTAGATGCTCAATTAACTGGGTTCGATAGCGTCCATAGAAATCTCACATCTACTCTAATCAATTATTAATTAAACTAAATGGTTTTAGTCCTATTGGGTTTGATAGCGTCCATATAGAATTAAACCATTTGCATTAGGATTAAAGGTTCCATTGTGTGATTAATTAATTTGGTAGCCTAATTGATTAACCAAATTATCTTTGAACCTAGTTAAAACATGCATTCTAGGTTAGCCATAAAATGCTTGATTAACTATTTGTTACTTAGGGTGATTTAAGCCAGACGAAGAACCAAAGACATCAAACAAGTCTAAATCAATTAACGAGGGTGACATACATCTATAAAGAAATAGTCATTCACAAACATGCATCTAGAGATTCACGAAGATTCAAAGAAGACAAATAGATATGCATTCAATTCAATCACCAAAAATCTCAAGAAAATTACATAGGGTTCTTGCTCCCAAAACTAGAGAAATCCTTACCTCAACATCTCATGGACAAGAAGAAGAGGGGGAGCTCCAATCCATGATTACAACCCAAAAGAATGTAAAAATCTAACCTAAAAGTGCTGAAAAATAAAGGGAGAAGAAGAAATTTAAGGTTCAATCCGCCTCCATCAAAACCAACTGAAAAACCCTAAAAGTGAAGAGGGATATTTATAAAATCGCGATCGCACTGTGGCGCCAAGCCCTAAATTGCCTTCTATCTGTAGGGCAAAGCCACAACATCGGGGTGGCACTGCGGTGGTGTGCCTCTGATGCGCGTGTTCTTTTGTTTGCCCAAATTCGGAGAGCTGGCGTCACGGTGCTGCTGCGTATCCATGGCTTCTGGAAAAAAAAACGCAGTGCATGGTGCCGACCTAGCGCAGTTGTGCTAGCCTCTTAGGGAAAAATGGTCTTTTCACGTCCTTTGAAGCCTCAAGTCCTCGGTATCACTCCCAATAACTCCAAATCCACCTTGAATGGCCCGTAATGCTCCAAAATGCATGATATGCTCGAGAATCTACAAAATAGACATTTAAATACATTATACCTAACAAACAAGTGAGATTAGAGACATATAAATAGTTCTTTTTGAGAGCTATCAAATGCCGACTGATAGTAATTGATGTGTCGGTGGTCGGCGGCGATTTTAGCCCAAAACCGATGCTAACCGACCGATAATCACCCTTAATTGAATAGACTCCACACACTTTGGCCGGTTGAGCTCTATCCAATGCCACTTGTTTTATCAAAGAAGCCAAGTTAGATATTTGAGTACGTGATTCATTGACCTCGGCATTAGATGTGATGTTCCTTGGAGCTCTCGTCCTAAATTGTTGGGAATTGTTCGCCATCGTATAGATAAGCATTCTAGCTTCTGAGGGAGTCTTATTCACTAGTGCATAATTGATGGTGCTTCTGTCATGTGGTAACAACCCTTCATAGAAATATTAGATCAATAGTTGGTCAAAAATTTGGTGATGGGGAAAACTAGCACAAATTCTCTTAAACCTTTCTCAATATCCACAAAGTGTTTCCCCTGAGATCTGGGTGATGCCATAGATCTCCTTCCTTATACTAGCGTGGAGGTTGAGAAAAAACTTTTCTAGAAACTGCTTTTCCTGGTCGGTCCAAGTTGTGATGCTCCCCAATGGTAAATAATAGAGCCAGTCCTTTGCATCGTCCTTCAAGAAAAACGGGAAGGCTCTCATATTCAACTATTCTTCAATGACTCCATGGGGCCTCATATCGTCGCACACGATGTGAAATTCTTTCAAGTGTTTGTGTGGGGTTGTCTCCTGCACGACCATGAAAACTAGGCAGTAAATGAACTAATCTAGGTTTAAACTCAAATATATTTGTCGTTTGAGGGTATGTGATGCACAACGGCTGTTGAGTCGTGTCAGGAGCTGCTAGATCCCTCAGGGTATGCTCGAGTATGCTATAATAGTCTATTCTTTTTCCACCAACTCTTCTTGTTGTGTGTCTTCAATACGGATTTGTTTGTTTTGGGCCACCTGTGCTTTTGCCTCCCTCCTGAGTCTCCTTTTCTCTCTGTCAATCTCTGCAACAACATCAAAAGAAATCGTAAGAACGTACAAGAAATCATAAACCTTTTAATTGAGAAATTACTAGGTTTCCCGGCAACAATGCCAAATAAATTCCGTGCCTACTTAAATTTGTAATATGAGTAGTACAGGTCGATCCACAGAGAACTGATGAGTTTCTCAGATAGAATGCTTAAAGTCCCGAAGTAATCGGAGGAAAAGGGGGGGGGGGGGTGATTGATTATGCTTATGAATTTAGAAGTGCTTTGAATGTAAAAGTTGTTGAAAAGTCTAACTGTAGACAATTGTGAACGATTGAATGTTGAGAAAATACTGTTGATTAAAATGCCTGGCTCAGGGCTTTTTGAGGTTCCCCAAATTGTTTACTTGATCATCGAATCGTGAGACTAATTCCTATTTCTTGTCTAAGCCTAGCCAATATGTTTAATAATGCTAAACGATGTCCCAAGTACCTAATTAGTCAATATGATTAGATGAAACACATGCTAAACACTTGAGCTAACCGCATTAAGATTAATGGATTGTGCTAGGACGAATTTCCAATAGGTAATGCCTAATTGATCATCCAATATGATTCTCCTCTTGGTTAATTAATCAATGCTAATTGGATGGTTGTCGAACAATCTACAAGTTAATTTAACCTTTTGCTACTTTGTGATTTAGGGATTTATCAATCATGGATTAAGTTTAAATCTATAGTGATCGATCATATAAACTTCACTAGTTTGTCAGACAATCTCAAGAAAATACAATCATGAAGATTTTTAGCAAGATGAAAATCCGAAGACAAGATCAAAATTAGATGAATTGAGCAAAAATCTCACAAGTTCACATCAATGGGGAAAAATCGCTAAAACCCAAGCTAGTACTTACATATGTAGCCTATAATCATCTTCATAATCAATGGAGAATACAAAGAGTGCATTAAAATACAAGCCAAATTGAGAAAGAACAGAAGGTGAAATATTAGTGGGAGAATCGAGGAAATTAGAATATGATGACCCAGGCAGCTAAAAATGTATTTTAATTGTTGATGGTGCTGCTCGCAGCACTGCATCCCTATGGTCTAGTAATTGAAGCATTGCACACAGTACTGCAGCGCGCGTGTAGTTATCCGGTTTGCGATGGCATTGCAGTGTCATAGGATAGCGCTGCAGCGTTTTCTTCAGATGCATCCACTGTAAAGAGCGCCGCGGGGCACTGCCACGCTCATGCCTGGCGTTGCTTATGTTTATGGCGCCGCACGCAAGTGCTCAATGGCGCTACAGCACCAGCCCTCAAGGGTATTTTTGTAATTCTTCCCTTCTTTGTCCGATATATGCTTTAAGGCTCCCTTTTGGTCCATTTAAGCCCGATTTTTTCCCTATGGGTCCATTCTACCTTTTTTACGCCTGAGACCTATAAAATCATGAAATAAACATATAAAATCAAAGAACGAGTCTAAATTAAGTTTAGTGAGATAGCACGTTTTAGGTGCAATCAAGAAGCTCTTGAATCTTCTCCATTGGTGTTGATAAAAAAGATTAAGGCCAAGGCCTATCAGATTGCTGATAGGATTAGGTATGAGATATTATGTTTAAGAATGTGATCTTTTCTTAACTATATGATGAACCATTGCTGGTGTGTTTGCTGAAGTAATAGATCTCATATTCTTTTTTATGCATCCTTTTCCTATGGTGTGTTGTTTGGATAAAATCTTGAAACCTTTGAGCTTGTATCGGTGTGTTCTAAAATTTGTTATTAGGGTGTATCTTGGCTATTGTTTCGATTTTATATTCCTTATTAAAGAATTTTACTTTATTATAAAAGATAGATTCAAGAACTTTTAGAACTCCATTTTCTCACAAGCTTTTACATCCTCTGGTATATATTCGGTTATGTCCAACAGAATGGTGTTTTCCTGCTTCCTGGGTGTTGTGATCCATTCAACGAGAAGGCACTCCGAGCCTCACGAGGAGCATCTTTTCAGCTTCCAATAGTCTCTGGCACTTGGAATCATCTTGAGTTTCTAAAAAATGAATTCCAAATGAAAATGCTGGCTGGCCATCCCGAAAGCAATGAACCGAAACCTGTATCTGTCCTTTCGCAACAGTTTGCAAATTCTTTGAAAGATTTTCCATTGTGCTTGGTTTTGGGTTGTGAAGGGAGTGGTCTGTCTGAGAAATCCTGGCAGGTTTGTGAGCTTTTGAGTATTCCAATGGCGGGTGGTTTCGAGTCCCTCAATGTCTCAGTTGCAGGAGGAATTTTCTTGTACATGCTACAGGCTGAAAACCATAAACAAATTTGA ATGCAATGCTCCTGCGTTTCCTGGTCCTCAAATCTGAAACTCGGACCTTCCTTTTCCAAATTGAAGCTATCATCAATTAACCAAGCAGAGACCACCGATTTTGCTGGAAGAATTTCTCTTCCTTCTCACGTGAAAGCCATCACCAGCACCTCCAACCCTTTCGTTAAGCACTGCGTCAAACTTCGCTTCAGTTCCTCTTATCGCCACTTCCATGGCTCCGTCATTGTCGTCGGAGCTACTCCAATAAGGGAAATTTGCAAGTTTCAAGAGTCTCTGCATGGGATAGCTTGTATATTGGAGTGCCTACTTCTGCTAGATGACGTTGAGGTTCCTGAAGGACTAATTGATATATCTGTTCGTATTGTGCGGGTGAGCCCAACTGTGATGAAAAAGCTTTCTGGCATGCAATCAACAGAATCTATTGATGCAATTGCCCTCATGAGAATACCTGCCAGTTTTTGTAGTGTAGATGGCAATGAGAAAGAAGTAGATTTTAAAAGATGTTTTCCATCTCCGCATCGAATATTAGTCCTTGAGGGAATCCAGGACCCAGGCAATCTTGGTACATTAATCAGCTTTTACATCCTCTGGTATATATTCGGTTATGTCCAACAGAATGGTGTTTTCCTGCTTCCTGGGTGTTGTGATCCATTCAACGAGAAGGCACTCCGAGCCTCACGAGGAGCATCTTTTCAGCTTCCAATAGTCTCTGGCACTTGGAATCATCTTGAGTTTCTAAAAAATGAATTCCAAATGAAAATGCTGGCTGGCCATCCCGAAAGCAATGAACCGAAACCTGTATCTGTCCTTTCGCAACAGTTTGCAAATTCTTTGAAAGATTTTCCATTGTGCTTGGTTTTGGGTTGTGAAGGGAGTGGTCTGTCTGAGAAATCCTGGCAGGTTTGTGAGCTTTTGAGTATTCCAATGGCGGGTGGTTTCGAGTCCCTCAATGTCTCAGTTGCAGGAGGAATTTTCTTGTACATGCTACAGGCTGAAAACCATAAACAAATTTGA ATGCAATGCTCCTGCGTTTCCTGGTCCTCAAATCTGAAACTCGGACCTTCCTTTTCCAAATTGAAGCTATCATCAATTAACCAAGCAGAGACCACCGATTTTGCTGGAAGAATTTCTCTTCCTTCTCACGTGAAAGCCATCACCAGCACCTCCAACCCTTTCGTTAAGCACTGCGTCAAACTTCGCTTCAGTTCCTCTTATCGCCACTTCCATGGCTCCGTCATTGTCGTCGGAGCTACTCCAATAAGGGAAATTTGCAAGTTTCAAGAGTCTCTGCATGGGATAGCTTGTATATTGGAGTGCCTACTTCTGCTAGATGACGTTGAGGTTCCTGAAGGACTAATTGATATATCTGTTCGTATTGTGCGGGTGAGCCCAACTGTGATGAAAAAGCTTTCTGGCATGCAATCAACAGAATCTATTGATGCAATTGCCCTCATGAGAATACCTGCCAGTTTTTGTAGTGTAGATGGCAATGAGAAAGAAGTAGATTTTAAAAGATGTTTTCCATCTCCGCATCGAATATTAGTCCTTGAGGGAATCCAGGACCCAGGCAATCTTGGTACATTAATCAGCTTTTACATCCTCTGGTATATATTCGGTTATGTCCAACAGAATGGTGTTTTCCTGCTTCCTGGGTGTTGTGATCCATTCAACGAGAAGGCACTCCGAGCCTCACGAGGAGCATCTTTTCAGCTTCCAATAGTCTCTGGCACTTGGAATCATCTTGAGTTTCTAAAAAATGAATTCCAAATGAAAATGCTGGCTGGCCATCCCGAAAGCAATGAACCGAAACCTGTATCTGTCCTTTCGCAACAGTTTGCAAATTCTTTGAAAGATTTTCCATTGTGCTTGGTTTTGGGTTGTGAAGGGAGTGGTCTGTCTGAGAAATCCTGGCAGGTTTGTGAGCTTTTGAGTATTCCAATGGCGGGTGGTTTCGAGTCCCTCAATGTCTCAGTTGCAGGAGGAATTTTCTTGTACATGCTACAGGCTGAAAACCATAAACAAATTTGA MQCSCVSWSSNLKLGPSFSKLKLSSINQAETTDFAGRISLPSHVKAITSTSNPFVKHCVKLRFSSSYRHFHGSVIVVGATPIREICKFQESLHGIACILECLLLLDDVEVPEGLIDISVRIVRVSPTVMKKLSGMQSTESIDAIALMRIPASFCSVDGNEKEVDFKRCFPSPHRILVLEGIQDPGNLGTLISFYILWYIFGYVQQNGVFLLPGCCDPFNEKALRASRGASFQLPIVSGTWNHLEFLKNEFQMKMLAGHPESNEPKPVSVLSQQFANSLKDFPLCLVLGCEGSGLSEKSWQVCELLSIPMAGGFESLNVSVAGGIFLYMLQAENHKQI Homology
BLAST of HG10011768 vs. NCBI nr
Match: XP_038904874.1 (uncharacterized tRNA/rRNA methyltransferase slr1673 [Benincasa hispida]) HSP 1 Score: 604.0 bits (1556), Expect = 8.0e-169 Identity = 298/337 (88.43%), Postives = 313/337 (92.88%), Query Frame = 0
BLAST of HG10011768 vs. NCBI nr
Match: XP_011650605.1 (uncharacterized protein LOC101218901 isoform X2 [Cucumis sativus] >KAE8650203.1 hypothetical protein Csa_010011 [Cucumis sativus]) HSP 1 Score: 582.0 bits (1499), Expect = 3.3e-162 Identity = 287/332 (86.45%), Postives = 302/332 (90.96%), Query Frame = 0
BLAST of HG10011768 vs. NCBI nr
Match: XP_008450171.1 (PREDICTED: uncharacterized tRNA/rRNA methyltransferase YsgA isoform X1 [Cucumis melo] >KAA0060378.1 putative tRNA/rRNA methyltransferase YsgA isoform X1 [Cucumis melo var. makuwa] >TYK22118.1 putative tRNA/rRNA methyltransferase YsgA isoform X1 [Cucumis melo var. makuwa]) HSP 1 Score: 579.3 bits (1492), Expect = 2.1e-161 Identity = 289/332 (87.05%), Postives = 302/332 (90.96%), Query Frame = 0
BLAST of HG10011768 vs. NCBI nr
Match: XP_031739071.1 (uncharacterized protein LOC101218901 isoform X1 [Cucumis sativus]) HSP 1 Score: 576.6 bits (1485), Expect = 1.4e-160 Identity = 287/335 (85.67%), Postives = 302/335 (90.15%), Query Frame = 0
BLAST of HG10011768 vs. NCBI nr
Match: XP_022136373.1 (uncharacterized protein LOC111008099 [Momordica charantia]) HSP 1 Score: 572.0 bits (1473), Expect = 3.4e-159 Identity = 288/337 (85.46%), Postives = 303/337 (89.91%), Query Frame = 0
BLAST of HG10011768 vs. ExPASy Swiss-Prot
Match: P74261 (Uncharacterized tRNA/rRNA methyltransferase slr1673 OS=Synechocystis sp. (strain PCC 6803 / Kazusa) OX=1111708 GN=slr1673 PE=3 SV=1) HSP 1 Score: 77.8 bits (190), Expect = 2.6e-13 Identity = 82/293 (27.99%), Postives = 130/293 (44.37%), Query Frame = 0
BLAST of HG10011768 vs. ExPASy Swiss-Prot
Match: Q9VW14 (rRNA methyltransferase 3, mitochondrial OS=Drosophila melanogaster OX=7227 GN=CG14100 PE=2 SV=1) HSP 1 Score: 65.9 bits (159), Expect = 1.0e-09 Identity = 72/280 (25.71%), Postives = 127/280 (45.36%), Query Frame = 0
BLAST of HG10011768 vs. ExPASy Swiss-Prot
Match: Q8Y016 (23S rRNA (guanosine-2'-O-)-methyltransferase RlmB OS=Ralstonia solanacearum (strain GMI1000) OX=267608 GN=rlmB PE=3 SV=1) HSP 1 Score: 63.2 bits (152), Expect = 6.7e-09 Identity = 46/157 (29.30%), Postives = 74/157 (47.13%), Query Frame = 0
BLAST of HG10011768 vs. ExPASy Swiss-Prot
Match: Q6IN84 (rRNA methyltransferase 1, mitochondrial OS=Homo sapiens OX=9606 GN=MRM1 PE=1 SV=1) HSP 1 Score: 62.8 bits (151), Expect = 8.7e-09 Identity = 51/163 (31.29%), Postives = 75/163 (46.01%), Query Frame = 0
BLAST of HG10011768 vs. ExPASy Swiss-Prot
Match: A4QNL8 (rRNA methyltransferase 3, mitochondrial OS=Xenopus tropicalis OX=8364 GN=mrm3 PE=2 SV=1) HSP 1 Score: 60.1 bits (144), Expect = 5.6e-08 Identity = 56/201 (27.86%), Postives = 81/201 (40.30%), Query Frame = 0
BLAST of HG10011768 vs. ExPASy TrEMBL
Match: A0A5D3DF85 (Putative tRNA/rRNA methyltransferase YsgA isoform X1 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold318G001150 PE=4 SV=1) HSP 1 Score: 579.3 bits (1492), Expect = 1.0e-161 Identity = 289/332 (87.05%), Postives = 302/332 (90.96%), Query Frame = 0
BLAST of HG10011768 vs. ExPASy TrEMBL
Match: A0A1S3BNM2 (uncharacterized tRNA/rRNA methyltransferase YsgA isoform X1 OS=Cucumis melo OX=3656 GN=LOC103491842 PE=4 SV=1) HSP 1 Score: 579.3 bits (1492), Expect = 1.0e-161 Identity = 289/332 (87.05%), Postives = 302/332 (90.96%), Query Frame = 0
BLAST of HG10011768 vs. ExPASy TrEMBL
Match: A0A6J1C7F0 (uncharacterized protein LOC111008099 OS=Momordica charantia OX=3673 GN=LOC111008099 PE=4 SV=1) HSP 1 Score: 572.0 bits (1473), Expect = 1.6e-159 Identity = 288/337 (85.46%), Postives = 303/337 (89.91%), Query Frame = 0
BLAST of HG10011768 vs. ExPASy TrEMBL
Match: A0A6J1FNI0 (uncharacterized protein LOC111447061 OS=Cucurbita moschata OX=3662 GN=LOC111447061 PE=4 SV=1) HSP 1 Score: 553.5 bits (1425), Expect = 6.0e-154 Identity = 279/335 (83.28%), Postives = 295/335 (88.06%), Query Frame = 0
BLAST of HG10011768 vs. ExPASy TrEMBL
Match: A0A6J1JVY6 (uncharacterized protein LOC111488367 OS=Cucurbita maxima OX=3661 GN=LOC111488367 PE=4 SV=1) HSP 1 Score: 549.3 bits (1414), Expect = 1.1e-152 Identity = 278/337 (82.49%), Postives = 293/337 (86.94%), Query Frame = 0
BLAST of HG10011768 vs. TAIR 10
Match: AT4G38020.1 (tRNA/rRNA methyltransferase (SpoU) family protein ) HSP 1 Score: 388.3 bits (996), Expect = 6.4e-108 Identity = 194/299 (64.88%), Postives = 238/299 (79.60%), 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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