HG10004826 (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.ATGTTGACGCGACGAATTCCTTCTGTGGCAGTTTATCTTCCGCAAGCTCTGCCATGGCGTCGTGGACCTCCTCACTCTATCAACACCAGGATGGCGCTTGAGTTCCACTCCTTGCTTGCTTTCCCCACCAAAAGCTGTTTAGTTTCTTTTTGTTCTGCTTCTCATTTCACCTCTGAAGTTGTCGAACCAATTCATGCGGAAGAATCCTCGAAGCGCGTAAGATCATGAATTAATCCCTTCCTTAGAACTGAAGTAAAGCTATTGTTAAATCACACAGAATCCAAAGCTTAAGTTATTTTATATGCATTATTAACTATTTCCTTTGTGGGATTCAAAATCAGCAGAAACCCAATAAGTGATTAGCAGAGAAAATGACATAGATAGTTAGAGATAACACAAGACTGAACCGCTAAAGCTTAAAGCGAATATATATATATATATATATATTGGTTTTGAGATGAACCTCGCCCAAATGGGAATTTGGTCCAGAAACAAAATTTGAGATCTAATTTAAGAGTGGTGAACTTAAAGAGGCTTCATCTTAAAAGACAAGACATGTAGATGAGCTAATTGACTTTAATATGAACCCACGTTATCTAATATTTTTATATATATTCTTAACACTTATGTTTTGGCTCTCCATGTTGAAACCATTGTTCCACTTAGGCTACTTCTTTTCCTGACACCTCTGTTGGATTCAACTACTGGATTTATAATCTTTGTCTTACTTTGCACCAGATCAGAATTTAAGTTATAACAACTTTGTAAGTTGTAAAATGAAACTAGGTGGTGAATTCTGTCCGTTTTTCATGGTTTAAGATGTGTTGTATTTAAACTTTGACAGACATTCTTGTCTTTTGATCTACGTGATTGTAGGGACCCTTGAAACCTGGATTATATTTGGTTGGCACGCCAATTGGCAATCTTGAAGATATCACCCTACGGTACGAGATTTCGATAAAGAGCACGGACGTTATTATTTTTTCTTTTCAGCATATATATGTATACACTGGAAGCTTGAGAATCAGCACTGACAATTTGCTCTTTACTTTTCAATATGTACATATATAAACTCATAATTTGGAAATAGACATTATGTTTTGTGATATTTCTAGCTGACCCATTCCCTGGAGTAGGATGTTAAGTTCTTAAGTTTCAGGATCTTCTCCTTTATACTGGTCCATATTTGATGATGTCGTTCAGTTATTTTGAATAATCTGCCTATTTATCCCCATAAAATTCTATTATACAGTGCTCTACGTGTCTTAAAGTCAGCACACGTCATTCTTTCAGAGGATACAAGACACTCAGGAAAGTTGCTTCAGCATTTCAGCATTAGAACCCCTCTTGTGAGTTTGTTGAGGCATTTATTTGCCGACTTTTTAGTTTTCTTTTCATTCTCCATTTGTTCTGATGAAGACTTTTAGATTTCAGCTGAGTTTTCACAAATTCAACGAGTCTCAAAGAGAACAAACAGTGTTAAAGAGATTAAAAGAGGGTGAAATTGTTGCCCTAATCAGTGACGCAGGGACACCAGGCATTAGTGACCCTGGTACTGAGTTGGTGAGCATGCTCTAAACAATTTTAAATTTAGTTCTTCCATTATGGCTCTGTTAAGCATCTATCACTTTTATGATCTACATTTATTGGGCTCATTTTCAATGTGCTTTTGTAGATTGACCATTGGCAGTTCTTAAAAATTTTAGACTTGATAACTTAACCAATTAGTTTGAGAGGAAAAACTTGAGAGCAGAAACTTGAGAGGGAAAATGAAAAATCACACCGCTATGGAAAATTCAAAAAGGGAAATGGAGAATCAGAAGACTCGTAGGAAAATTCCTTTTAATCACTTTGAACCCATGCAGAGAAAGATAATAGAAAGGAAGTCACTTTAGAAGTTATCATTCAGAGAATCAAAACTATTTTTGAATGTACCACCATAGACTATAGTCATAGCCAAGGAAAAATACTAGATTGGAGGCATACATTTTCATATAGGCGTTCTCCTTAATATTTGAATGGTTTAATTATAGAAGATGGTATTGTTTTTTAGTTCAACAAGTGGGGCCGAAGAGTTTCGAACTGTTAGAATACGTCCTTAATTGTAATTATCTATGTATATTGTCTTTAATTGTAATTTCACATTGTCTAAATTAGGGTTTCTTATTCGCCTATATATATGTAACTCAAGTCTTATGGAATATACTTTTGAGAGATTCATTCTCTGAATTATAGACTACATGGTATCAAAGCCCTCTAGGGTTTCGAAATTTCGAACTTTCGTTTGACGGCAACAATCTCATAGAGTAAGGGTTTGGTATTTTGGTCATCGATTTCGAGTGGCCGTTTGTCGACACCACCCACCTCAGGAGAAGCGCCGCCATCTTCCGCAGCCGTCTGTCTTCGTCAGTCGCCGGGAACTGCCGCGCGTGAGGCGCGCCGCCTGTATCTTCAGACTCATCCGCCACGCGCCGGCGCGTGGGGGCGCGTGGGACATCCGGTTCCACGTCCGTCAGCTGGGTTCTTCTCGGTTTTGAGTTTTTGACCTGTCTATACCTTTGGTTCCATCAAAATCGTCTCGGGTGTGAGGTTATTTCGAAAATACCCTTTTTGCTCTTAGGGTTTGTGACTGTTTTGGTCCTTTTTGGGGCTGTTTTAGTTATACCGGGTCTTGGTTCACTGTTTTTTTGTTGCATCTACCCTATTTTCGAGATCTACAAGTTGTGTGGTGCGTTGTCATGGCTGAACCGACACATATGGTGGTGTCTAATGTACTTCCCTTATCATCCAAGATCACCGAACACAAGTTAAATGGATCTAATTACTATGAGTGGCGAAGAACGATTCAGTTTTACCTACTGAGTACTGATATGGATGATCATGTGACTGAGGATCCACCGAAAGATGATAAGAAAAAGGGTTGGCTTCGCGATGATGCTCGTCTTTATCTTCAGATTAAGAACTCCATTGAGAGTGAAGTCGTTGGCTTGGTGAATCATTGTAATTCGGTGAAGGAATTGTTAGAGTTCTTGGAATTTCTTTATTCGGGGAAAGAACACGTCCATCGAATGTTTGATGTTTGCATGCAGTTTTTTCGAGCCGAACAGAAGGCAGAATCTGTTACAAGCTATTTTATGAGATTTAAGAAGATAACTGCTGAACTTGCTTTATTATTACCTTTCACTGATATCAAAGTTCAACAAGCTCAATGAGAAAAGATGGCTGTTATGATATTTTTGAATGGGCTGTCACCTGAATTTGGCATGGCTAAAACACAGATTCTATCTGATTCTGACATTCCATCGCTAGACGACACCTTTAGTCGTGTTCTTCGTATTGAGAGTTCTCAATCTGGTTCGTCTGTATCAACCGAGCAGTGCTCTCATAAGCAAGAATGATCAACCCCGAGCTCCTTTAGGGATGCCTAACCATTTTCAGAAGCCTACCTATGATAGTCGAAAATCAGATTCTCAGGAGATCGTCTGTCATTATTGTCGTAAGCCAGGCCATCTGAAACGTGATTGTCGAAAGCTGCTGTATAAGACTCAGAGATCTTAGCATGCTCAGATAGCTTCCACCACAGATATGCTTGAGAAGTCTGTTACCATCTCTGCTGAAGACTTTGCTAAATTCCAAGTATTCCAGGAATCCCTACAGGCATCTTCTTCATCGACTCCTATTGCCACCATTGCTGAGACAGGTAATACAAAATGCCTCCTTACATCATCTACCAAATGGGTCATAGACTTTGGTGCCACTGCTCATATGACAGGTAATTCTAACTTGTTTTCTAGTCCTTTGTCCCCTACCTCATCCCCACTTGTTACCTTGGCAGATGGCTCCACCTCTTCTGTCCTTGGCTCCGGCACCGTTAATCTCACCTCTTCCCTCTCTTTATCTTCTGTGTTATATTTGCCTCAATTGTCTTTTAATTTAATCTCTATTAGCCAACTTACTCTTGACCTTAACTGTTTTGTCTCGTTCTTTCCTGGTTATTGCTTGTTTCAGGATCATGTGACGAAGAAGATTATTGGTAGAGGACATGAGTCAGGAGGCCTTTACATTTTCGACCACCAAATCCCGAAAGTTGTGGCTTGTCCTGGAGTTACATCCCTGTTTGAAGTTCATTGTCGTTTAGGTCATCCATCATTGTCTGTGTTGAAGAAACTTTATCCCGAATTTTGTTCTTTGTCTTCTTTAAATTGTGATTCGTGTCAGTTTGCTAAGTTTCATCGTCTTAGTTCTAGTCCTAGAGTCCATAAACGAGCTAGTGCTCCATTTGAGTTAGTTCACTCTGATATTTGGGGTCCTTGTCCTGTTGTGTCCCAAACTGGTTTTCGCTATTTTGTTACTTTTGTTGACGATTATACTCGTGTGACTTGGTTATATTTAATGAAAAATCGTTCTGAATTACTATCTCATTTTTGTGCTTTTCATGCTGAAATTCGAACTCAATTTGATGTCTCTATCAAAATTCTGCGCACTGATAATGCTGGTGAATATTTTTCTCATGTACTTGGGTCTTACTTACGTGATAATGACATCATTCATCAATTCTCGTGCCCTGACACTCCATCTCAAAATGGAGTTGCTAAAAGAAAAAACCGACACCTACTTGAAACAGCTCGAGCCCTATCCTTTCAAATGCATGTCCCTAAACATTTTTGGGCGGATGCTGTTTCCACCGCTTGCTTCCTGATTAATCGAATGCCTTCTTCTGTTCTCAGCGGTGAGATTCCCTATCGTGTTTTGTTTCCTACAAAACCTTTGTTTCCTATTGCTCCTAAGATATTTGGTTGTGTCTGTTTTGTTGGGGATGTTAGTCCCCTATCGTACTAAGTTAGATCCAAAATCTTTGAAATGCATATTCTTAGGCTATTCGCGTGTTCAAAAGGGTTATCGTTGTTATTCTCCTAATCTGAACAGATATCTTGTATCTCCTGATGTTACGTTTTTTGAAGATATACCCTTTAGTTCTTCACCGTCAAGTCCTTGTCAAGGGGAGGATGATGATTTTTTGATTTATGAGATTACCAAAGTTACCGTTCCTACACCGTCTCTTCCTCCGTCGTCTTCTGTCTCTCTTTCGTCTCCTCCACCTGTTACTCGAGTCTTCTCCAGACGGCCTCCTCAACAACCCACAGGAACATGTCCTCCACCTCTACCTTCTTCGACATCTGATCCAGGATCGAGTGATGATCTTCCTATTGCCCTTCGGAAAGGTAAGCACATTTGTACTTATCCTATTTCTTTATTTGTTTCGTATAACCAGTCGTCTCCTCCCACTTATTCCTTTCTTACATCTCTTGATTCTACCTCTATTCCTAACTCTGTTCATGAAGCTTTATCTCATCCTGGGTGGCGTAGTGCAATGATTGAGGAGATGACTGCTTTGGATGACAATGGTACTTGGGATTTAGTGTCTCCACCGGCAAGCAAGAAGGCAATTGGGTGTAAATGGGTGTTTGCTATCAAATTCAATCCTGACGGCACAGTGGCGCGTCTGAAAGCTCGCCTTGTTGCCAAGGGTTATGCCCAAATCTATGGGACTGATTATTCTGATACTTTTTCTCCTGTTGCCAAATTGACTTCCATTCGATTGTTTCTTTCCATGGCTGCTACTCACAAGTGGTATTTGCATCAACTTGATATTAAGAATGTTTTTCTACATAGTGATCTTCAAGAAGAAGTTTATATGGAGCACCCACCTGGGTTTGTTGCTCAGGGGGAGAGTGGTAAAGTGTGTTGACTTCGAAAATCTTTGTATGGATTGAAACAGAGCCCTCGTGCATGGTTTGGTAAGTTTAGTCAAGCCCTTGAATGTTTTGGTATGAAGAAAAGTACGTCTGATCATTCTGTATTTTATCGACGATCAGAGCATGGTATTACTTTGCTAGTTGTGTATGTTGATGATATTGTTATCACTGGCAATGATGTATCAGGTATATCCTCTCTTAAAACTTTTCTTCAGGGTTAGTTTCATACTAAAAATTTGGGAGTGTTAAAATACTTCTTGGGTATTGAAGTAATGAGGAGCAAGAAAGGTATTTATCTATCATAACGAAAATATTTACTTGATTTGTTGTCTGAGACTGGAAAACTAGGAGTCAAACCATGTAGCACTCCAATGATACCAAATTTGCTACTTGCCAAAGAAGGTGAATTGTTTAAAGACCCTGAGAGATATAGAAGACTAGTCGGGAAGTTGAACTATTTAACAGTGACACGACCAGACATTGCTTATGCTGTGAGTATAGTGAGTCAGTTTATGTCTTCTCCTACAGTAGATCATTGGGCTACAGTAGAACAAATTTTATGTTATCTGAAAGCTGCACCTGGACGTGGGATCTTATATAAAGATCATGGCCACACAAGGGTTGAGTGTTTTTCAGATGCAGAGTGGGCTGGATCTCGAGAAGATAGGAGATCGACGACTGGATATTGTGTTTTTGTTGGAGGAAACTTAGTGTCGTGGAAAAGTAAGAAACAAAATGTAGTTTCACGTTCGAGTGCAGAGTCAGAATATAGAGCTATGACACAATCTGTGTGTGAGATAATGTGGATACATCAGCTTTTATCTGAGATGGGCTTTAGCGTTACCGTGCCAACTAAATTATGGTGTGATAATCAAGCTGCTATGCACATTGCATCCAACCCAGTGTTTCATGAACGAACTAAACATATTGAAGTGGACTGTCATTTCATTCGTGAGAAAATACAAGAAGGAGTGATATCTACAGGATATGTGAAGACTGGAGAACAGTTGGGAGATATTCTTACCAAAGCTGTGAATGGAGCAAGAATAAATTATCTATGTAACAAGCTGCGCATGATTGATATATTTGCTCCAGCTTGAGGGGGAGTGTTAGAATACGTCCTTAATTGTAATTATCTATGTATATTGTCCTTAATTGTAATTTCACATTGTCTAGATTAGGGTTTCTTATTCGCCTATATATATGTAACTCAAGTCTTATGGAATATACTTTTGAGAGATTCATTCTCTGAATTATAGACTACACGAACCTTTGACCTCTTGGCATATGCCTTTAACTAGTTGAGATGTGCTAAAGTTGGCAATTATGGAAGGTGGCATTAATATAATTGTACCATGTGAATACAGGTTAGATTATGTGTCAGTGAAAATATACCCGTTGTTCCTGTTCCTGGGCCCTCTGCTGTTGTTGCTGCTATTTCTGCCTCTGGCTTATCAACTGATGAGTTTACATTTGGTAAATTTCGTCCTGGTACTTATAGTTGTGCTTTGACTGCGGGGGCATCTTTCTTTGAGCTTTTTTTGCCCTTTGTTGCCTTTAGGCTCGCTACAGTTTCTCAATATGTGTAATGTGCAGTTGGATTTGTTCCTAAGCATGCTGCATCTAGAAGAGAGAGGCTGATGGTTTCAGCAAATGAGGAGGCAACTCAAATATTCTATGTTCCTCCGCACAAACTCAAGCAGTTTCTTGAGGAAACTTCACCATTATTTGGTGAATCAAGGTATTTCGTATATGTCCATCTCCAATCTACTGTACTGATATTTCTCTCAGAGTAATTTATCAGTCCAGTTGCACTTCCACTATCTGCTTCAATCTATTTAATTTATTATCTAATGACGTCTGATTTGGAACCTTTGAGGGAATTGATTATCTTAAGATATTTCATTCATCATGATTATCTTAATTAGACCATTCTATTTCATGTATGTTCAAGTTGTGTTAGGAAAAGCCGAAAAGGTGGTGATGTATTTGGCTTGTTCTAGTGTTTGAAGCTAATAAATAAACTCACTCATTCTGCAGTTAAGCTTGTATCATGCATTATCCTGTTATGTTTTATCAGAGTCATCAAGGATTTGTTATACATTGTATATAGAAGCTTGTGTGTGTTTCTTTCTATGACTGTGGTTAAAGGTTGTGTAATATTGTTATGTGCTTCTAGTTACATATGTGGCTGTTTGGAAATGATTCTAAATTGGTTAAAATTACTTTTGTTAGGTTCAAAACCACTCCAAAACATGCTGATAATATTGAAAATCAATGATTATACCATATCTGGGATCGTGTTTAAAAGTGGAAAATCAAACATTAAATTTATTTTAAATGATGAAAGACATATTCAAAAGTAATTAATGATGACAAAAGTGATTTTATCAATTTCAAAATTACTCCCAAACAGGCCCATAATCAAAACTCATATTGTGATCCAAATTGCTTTAGTGGAGGAGCAGACTCACCTTCTGTTATCGGCCAGTTTGCTTATTGCCAACTTGGTGAATATTTTTGTTTCTGTTGCTGTTTTGCAGGCGATGTGTTATAGCTCGTGAAATGACCAAGATACATGAGGAGGTAACTTTCTTCCTCACTCTGTTTTTTGCTATTTTAGTTGGTAGGGTTCTCAATACTTCTGCTCTGCTTACTTGGTGAGTGGCAAGCACAATGTTGCATTTGACCAAAATTTCAATTACCTTGTATGATGCTATTCTACCAATTTCTTCTGCACTCTGTCGAGTTCCTAGCTGTTGGACTTCCAATTAGGGGTGAACACAAATACACTGAAAATCGATCTGACCGACTAGTGTGGGCATCGGTTGGTGTCAGTTTTTTTTTTTAAAAAAAAGTCGGTCGGTCGGTCGGTCGAAAAGTAGGGGGAAAACCCCACCTGATCGATATAATTATATAATATTTTATTAGTTTTTTCAGTTTTATTATTTTTTTAAAACAAAATAAAACCCCAGCCCACATCTCTCTTTTAGACTTTCTCTAAATTGGCCCTCATGCGGATGAAACAGAAATACCATTAAAAAAAATAAAAATAAGAGAGAGAGAACCAACAAAACCGACCGCTGATTGGTCGGCTGCCACACAAAGGAGCATGCAAGTCGGTTTTGGGGCCGGTTTTCCCCCAAAATTGACACCGACCAACCGATGTACACCCCTACTTCTAATGATGAGTTTATAAATTTTAGCATCAAAATAATAGTAAAAGTAAATAAAAAAGTTAACTCGGTATGGTAACATAAGGAGCATGCACAGTTCGATTTAGCTAATCTGTTTTAACTTAGACACTCCAACACTTATTGGATACAAATTGGACACTTTTTATCACAATCAATAGATATGTATTAGACACTAATTGTTCAAAGTTAATGAGTCCAACATTTGTTAGACACGTATTATATGTGGGAATACATAGTTGTTATTCGTGCTTGAATATTGTAATTTGTAGCAATGTAATTTCAATGGTTTCCAATAATGAATTTCACAATGTTGACGTGTCATTTAGTATTAAGCATGATGATTGCAACAGTTTTGGCGGGGTACCCTGGCTGAAGCTAAAGAATTCTTCTCGCTGCACCAAACCAAGGGTGAAATTACGCTGCTGATTGAAGGAAAGCTAAATTCTGAAGTCGAAACTCCATCAGAATCACAGTTGGAAAAGGAGTTGGAAGAATTGATCTCCAGTGGGCATAGGCTTTCTATGGTAATGACTTGAATTGGACTATAGGATGAAGACAATTTTATGAATAGTAATGCATTTTCAGAGGCTTGGTATCATTCTCTCACTACTGGACAAAGAGGAGTGTCTTCGTCTTTGAACTTTCATGTTTGTTCTAGTTTAGTCTCCTTGACATGACTTCAAAGTTTTAATGTTTTTACTATCATGTCATCGTGGTGGCATTTATAGAAGTTATATGCATTGGTTGAGGTGGGTTTCAAGAGGCAGATACTAGGTAGCAGTGACCAAAATGATTATTTTGTTAAAATTCAAAGATAATTTTGAAAGGCCAGGAAAGAAAATAGAATAAATCTTAGAATTTTAGAGATGAAAACAAACTTTGAACCGTAAAAATATTGTAGTCCCTGAATTCTGACAAAACTTTATTTTCATGAAGGCTGTCAAATTGGTTGCTTGCAAAACATCAGCAAGTAGGAAAACTGTCTATTCAATTGCATTGCGAAGATTCGGGAATCAACTTGGAGCGGAGAAGGATTCTTGTAAATAA ATGTTGACGCGACGAATTCCTTCTGTGGCAGTTTATCTTCCGCAAGCTCTGCCATGGCGTCGTGGACCTCCTCACTCTATCAACACCAGGATGGCGCTTGAGTTCCACTCCTTGCTTGCTTTCCCCACCAAAAGCTGTTTAGTTTCTTTTTGTTCTGCTTCTCATTTCACCTCTGAAGTTGTCGAACCAATTCATGCGGAAGAATCCTCGAAGCGCGGACCCTTGAAACCTGGATTATATTTGGTTGGCACGCCAATTGGCAATCTTGAAGATATCACCCTACGTGCTCTACGTGTCTTAAAGTCAGCACACGTCATTCTTTCAGAGGATACAAGACACTCAGGAAAGTTGCTTCAGCATTTCAGCATTAGAACCCCTCTTCTGAGTTTTCACAAATTCAACGAGTCTCAAAGAGAACAAACAGTGTTAAAGAGATTAAAAGAGGGTGAAATTGTTGCCCTAATCAGTGACGCAGGGACACCAGGCATTAGTGACCCTGGTACTGAGTTGGTTAGATTATGTGTCAGTGAAAATATACCCGTTGTTCCTGTTCCTGGGCCCTCTGCTGTTGTTGCTGCTATTTCTGCCTCTGGCTTATCAACTGATGAGTTTACATTTGGTAAATTTCGTCCTGTTGGATTTGTTCCTAAGCATGCTGCATCTAGAAGAGAGAGGCTGATGGTTTCAGCAAATGAGGAGGCAACTCAAATATTCTATGTTCCTCCGCACAAACTCAAGCAGTTTCTTGAGGAAACTTCACCATTATTTGGTGAATCAAGGCGATGTGTTATAGCTCGTGAAATGACCAAGATACATGAGGAGTTTTGGCGGGGTACCCTGGCTGAAGCTAAAGAATTCTTCTCGCTGCACCAAACCAAGGGTGAAATTACGCTGCTGATTGAAGGAAAGCTAAATTCTGAAGTCGAAACTCCATCAGAATCACAGTTGGAAAAGGAGTTGGAAGAATTGATCTCCAGTGGGCATAGGCTTTCTATGGCTGTCAAATTGGTTGCTTGCAAAACATCAGCAAGTAGGAAAACTGTCTATTCAATTGCATTGCGAAGATTCGGGAATCAACTTGGAGCGGAGAAGGATTCTTGTAAATAA ATGTTGACGCGACGAATTCCTTCTGTGGCAGTTTATCTTCCGCAAGCTCTGCCATGGCGTCGTGGACCTCCTCACTCTATCAACACCAGGATGGCGCTTGAGTTCCACTCCTTGCTTGCTTTCCCCACCAAAAGCTGTTTAGTTTCTTTTTGTTCTGCTTCTCATTTCACCTCTGAAGTTGTCGAACCAATTCATGCGGAAGAATCCTCGAAGCGCGGACCCTTGAAACCTGGATTATATTTGGTTGGCACGCCAATTGGCAATCTTGAAGATATCACCCTACGTGCTCTACGTGTCTTAAAGTCAGCACACGTCATTCTTTCAGAGGATACAAGACACTCAGGAAAGTTGCTTCAGCATTTCAGCATTAGAACCCCTCTTCTGAGTTTTCACAAATTCAACGAGTCTCAAAGAGAACAAACAGTGTTAAAGAGATTAAAAGAGGGTGAAATTGTTGCCCTAATCAGTGACGCAGGGACACCAGGCATTAGTGACCCTGGTACTGAGTTGGTTAGATTATGTGTCAGTGAAAATATACCCGTTGTTCCTGTTCCTGGGCCCTCTGCTGTTGTTGCTGCTATTTCTGCCTCTGGCTTATCAACTGATGAGTTTACATTTGGTAAATTTCGTCCTGTTGGATTTGTTCCTAAGCATGCTGCATCTAGAAGAGAGAGGCTGATGGTTTCAGCAAATGAGGAGGCAACTCAAATATTCTATGTTCCTCCGCACAAACTCAAGCAGTTTCTTGAGGAAACTTCACCATTATTTGGTGAATCAAGGCGATGTGTTATAGCTCGTGAAATGACCAAGATACATGAGGAGTTTTGGCGGGGTACCCTGGCTGAAGCTAAAGAATTCTTCTCGCTGCACCAAACCAAGGGTGAAATTACGCTGCTGATTGAAGGAAAGCTAAATTCTGAAGTCGAAACTCCATCAGAATCACAGTTGGAAAAGGAGTTGGAAGAATTGATCTCCAGTGGGCATAGGCTTTCTATGGCTGTCAAATTGGTTGCTTGCAAAACATCAGCAAGTAGGAAAACTGTCTATTCAATTGCATTGCGAAGATTCGGGAATCAACTTGGAGCGGAGAAGGATTCTTGTAAATAA MLTRRIPSVAVYLPQALPWRRGPPHSINTRMALEFHSLLAFPTKSCLVSFCSASHFTSEVVEPIHAEESSKRGPLKPGLYLVGTPIGNLEDITLRALRVLKSAHVILSEDTRHSGKLLQHFSIRTPLLSFHKFNESQREQTVLKRLKEGEIVALISDAGTPGISDPGTELVRLCVSENIPVVPVPGPSAVVAAISASGLSTDEFTFGKFRPVGFVPKHAASRRERLMVSANEEATQIFYVPPHKLKQFLEETSPLFGESRRCVIAREMTKIHEEFWRGTLAEAKEFFSLHQTKGEITLLIEGKLNSEVETPSESQLEKELEELISSGHRLSMAVKLVACKTSASRKTVYSIALRRFGNQLGAEKDSCK Homology
BLAST of HG10004826 vs. NCBI nr
Match: XP_038886193.1 (ribosomal RNA small subunit methyltransferase I [Benincasa hispida]) HSP 1 Score: 651.7 bits (1680), Expect = 3.7e-183 Identity = 338/368 (91.85%), Postives = 344/368 (93.48%), Query Frame = 0
BLAST of HG10004826 vs. NCBI nr
Match: XP_022951884.1 (uncharacterized protein LOC111454620 [Cucurbita moschata]) HSP 1 Score: 646.7 bits (1667), Expect = 1.2e-181 Identity = 331/368 (89.95%), Postives = 348/368 (94.57%), Query Frame = 0
BLAST of HG10004826 vs. NCBI nr
Match: XP_023538391.1 (uncharacterized protein LOC111799188 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 644.0 bits (1660), Expect = 7.6e-181 Identity = 328/368 (89.13%), Postives = 347/368 (94.29%), Query Frame = 0
BLAST of HG10004826 vs. NCBI nr
Match: KAG6585572.1 (hypothetical protein SDJN03_18305, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 643.3 bits (1658), Expect = 1.3e-180 Identity = 329/368 (89.40%), Postives = 347/368 (94.29%), Query Frame = 0
BLAST of HG10004826 vs. NCBI nr
Match: XP_023002398.1 (uncharacterized protein LOC111496252 [Cucurbita maxima]) HSP 1 Score: 643.3 bits (1658), Expect = 1.3e-180 Identity = 328/368 (89.13%), Postives = 347/368 (94.29%), Query Frame = 0
BLAST of HG10004826 vs. ExPASy Swiss-Prot
Match: P74038 (Ribosomal RNA small subunit methyltransferase I OS=Synechocystis sp. (strain PCC 6803 / Kazusa) OX=1111708 GN=rsmI PE=3 SV=1) HSP 1 Score: 231.9 bits (590), Expect = 1.2e-59 Identity = 124/275 (45.09%), Postives = 171/275 (62.18%), Query Frame = 0
BLAST of HG10004826 vs. ExPASy Swiss-Prot
Match: Q9KGL2 (Ribosomal RNA small subunit methyltransferase I OS=Bacillus halodurans (strain ATCC BAA-125 / DSM 18197 / FERM 7344 / JCM 9153 / C-125) OX=272558 GN=rsmI PE=3 SV=1) HSP 1 Score: 210.7 bits (535), Expect = 2.8e-53 Identity = 124/290 (42.76%), Postives = 171/290 (58.97%), Query Frame = 0
BLAST of HG10004826 vs. ExPASy Swiss-Prot
Match: P45298 (Ribosomal RNA small subunit methyltransferase I OS=Haemophilus influenzae (strain ATCC 51907 / DSM 11121 / KW20 / Rd) OX=71421 GN=rsmI PE=3 SV=1) HSP 1 Score: 198.7 bits (504), Expect = 1.1e-49 Identity = 114/277 (41.16%), Postives = 160/277 (57.76%), Query Frame = 0
BLAST of HG10004826 vs. ExPASy Swiss-Prot
Match: Q9CN04 (Ribosomal RNA small subunit methyltransferase I OS=Pasteurella multocida (strain Pm70) OX=272843 GN=rsmI PE=3 SV=1) HSP 1 Score: 196.1 bits (497), Expect = 7.2e-49 Identity = 113/280 (40.36%), Postives = 161/280 (57.50%), Query Frame = 0
BLAST of HG10004826 vs. ExPASy Swiss-Prot
Match: Q9HVZ3 (Ribosomal RNA small subunit methyltransferase I OS=Pseudomonas aeruginosa (strain ATCC 15692 / DSM 22644 / CIP 104116 / JCM 14847 / LMG 12228 / 1C / PRS 101 / PAO1) OX=208964 GN=rsmI PE=3 SV=1) HSP 1 Score: 196.1 bits (497), Expect = 7.2e-49 Identity = 122/281 (43.42%), Postives = 166/281 (59.07%), Query Frame = 0
BLAST of HG10004826 vs. ExPASy TrEMBL
Match: A0A6J1GK22 (uncharacterized protein LOC111454620 OS=Cucurbita moschata OX=3662 GN=LOC111454620 PE=3 SV=1) HSP 1 Score: 646.7 bits (1667), Expect = 5.7e-182 Identity = 331/368 (89.95%), Postives = 348/368 (94.57%), Query Frame = 0
BLAST of HG10004826 vs. ExPASy TrEMBL
Match: A0A6J1KTF7 (uncharacterized protein LOC111496252 OS=Cucurbita maxima OX=3661 GN=LOC111496252 PE=3 SV=1) HSP 1 Score: 643.3 bits (1658), Expect = 6.3e-181 Identity = 328/368 (89.13%), Postives = 347/368 (94.29%), Query Frame = 0
BLAST of HG10004826 vs. ExPASy TrEMBL
Match: A0A0A0LRJ7 (TP_methylase domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_2G362440 PE=3 SV=1) HSP 1 Score: 636.3 bits (1640), Expect = 7.7e-179 Identity = 335/370 (90.54%), Postives = 342/370 (92.43%), Query Frame = 0
BLAST of HG10004826 vs. ExPASy TrEMBL
Match: A0A1S3BBU6 (ribosomal RNA small subunit methyltransferase I OS=Cucumis melo OX=3656 GN=LOC103488001 PE=3 SV=1) HSP 1 Score: 634.0 bits (1634), Expect = 3.8e-178 Identity = 331/370 (89.46%), Postives = 344/370 (92.97%), Query Frame = 0
BLAST of HG10004826 vs. ExPASy TrEMBL
Match: A0A6J1CS92 (uncharacterized protein LOC111014109 OS=Momordica charantia OX=3673 GN=LOC111014109 PE=3 SV=1) HSP 1 Score: 606.7 bits (1563), Expect = 6.5e-170 Identity = 312/368 (84.78%), Postives = 336/368 (91.30%), Query Frame = 0
BLAST of HG10004826 vs. TAIR 10
Match: AT1G45110.1 (Tetrapyrrole (Corrin/Porphyrin) Methylases ) HSP 1 Score: 436.4 bits (1121), Expect = 2.2e-122 Identity = 220/318 (69.18%), Postives = 265/318 (83.33%), 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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