
HG10015551 (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.ATGGCGTGGTGGAAGAATTTTCTTTCTTTCTTTTCTTTCCGCAGTTCCTCAAGTAGATTTCAGGTCTGTCCTTTCTCTAATAATTTCAAAAGGGTAATTTTCTTTTGCAAAAACTAGTTGAATTTTGCCTTTAATTCTTTCTTTTTTTGGACAGTTCTTTCAGGAATTAGATCCTGCAGCACATACAATAAAATCCCATGGAGCCAAAGTTGCAAAGAATCATTTACATGACTGGTTGATTCTTCTCCTTCTTGTTGTTATTGAAGTGATTTTAGTGGTAATTCATCCATTTTATCGCTATGTGGGAAAGGATATGATGACAGACCTTAAGTATCCCTTTAAAGATAATACAGTGCCTGTTTGGTCTGTTCCTGTAAGTTTTTCATGTCTTTCATGTCAATCACTTTAACTTTTGCAGCCAAAAAAGATTGATTTTTTCTCTGTTTTAAACAGAATTGGTTTCTGTTACATCCCTAAATCATAACATCTTTATTTATTTATTTCTACAGTTGTATGCTGTTATACTGCCTATTTTGATATTCTTGATCATCTACATACGGCGGAGAGACGTTTATGATTTGCACCATGCCGTTTTAGGTACTGTTTTTAGACAAACAAAGACAAGTTATAGCTTGTTTGGAATGAATTTCTAAGTGCTCTTGTTTCACTGATGGTCTGTGTTCGTTTATTCTTATGAATAGGCCTCTTATTTTCTGTATTGATCACTGCTATCATCACTGATGCCATTAAAAACGGTGTCGGTCGCCCTCGGCCGAACTTCTTTTGGCGTTGTTTTCCCAATGGAATAGAGGTACTAAACATTAAACAACCATTTTGTCCAAATTTATGATACTTCCTTAGCCTTAAGAGCTTGAAACAAAACATATATTCTTAGAGCTAGCCTTATAAAAGCGTGTCGATTTTTCTTATCGATTTAGGCATACGATCGAACGGGAAATGTGATATGTAATGGAAAAGAGAGCGAAATAAGGGAAGGACACAAGAGTTTCCCAAGTGGCCATACTTCATGTAAGCTGCAAAATACTTTGTTAATTTGATACTGAAGGAAATGGTTAGTGATATGATTTGATTAAGACATAAATTTTTGTTTTCTTTTCTTGTTTTTGTAGGGTCATTTGCAGGCTTAGGATTTCTTGCCTTTTACCTATCTGGAAAAATGCAAGCATTTGATAGGAAAGGACATGTTGCAAAATTATGCCTTGTGTTTCTCCCTTTGCTTGGTGCTGCACTTGTGGGAGTTTCTAGAGTTGATGATTATTGGCACCATTGGCAAGATGTTTTTGCTGGAGCTATTATAGGTTTGTGCCAAACATTTCAAACAATTGATTTACAGTAATGAGTTTAAGGATTTTTTATGTGTTATTGTGAATTTTAATGATTGTTTTTGTACTGTTTTTTTTTTTTTTTCTTATGACAGGATTGGTTGTTTCAGCCTTTTGCTACCTTCAATTCTTCCCTCCTCCCTACAATCACAACGGTAATAATTAAGTGCTTAAAAATACTTTTTTGGTAGTACTCGAAAAGTCATTCTAAATCATGAAAATTGCATTTAAGAGTATAAAATTAAATATTAAGTGATTAAAAGCATGTTTCGAAATTAGAAAGTGGTTATAAAATTAGAAAATGACAAAAGTGATTTTAACAATTTCAGAATCACTCCCAAACGTGTCATCTTTTGAACTTTTAAGATTTTGGCAAAGATAAGGATTTAAACCTCCCACTTCAAGAAAATAAATATATGTCAATTACTGCTAAATTATAGTCATGGTAGCTTCTTTTAGGTGGTTTAGATTTTAGGGCTTCATTGAGATTTTATCCGAATTCCATACTTGGTTTCTAAATCTACTCAATCAAGTGATTTTCTACTTTGTGAAGGGAAAAAACACTAATAGACATTGATAGACTTCTATTAGCATCTATTAATGATAGACTTTTATCAGCGTCCATCATAACTATCTAAAAATTTTACTATTTTGTGTAAATAATTTTTCTTATTTTTCTATTTTTAAAAATTCTCCTTTAATGAATTTATTTTCTAAAGTATTAATATTATTCTTATCGTATTGATTATGTGACCCAGAAGTGAAAGTTTCAAAAATGTCATTTAAATTTTTTCAATACTTTTAGATTTAGAAACAACGACTACCACACACATTCAAAAAGTCGTAAAAATATAATGTACAACTCTACTTTTCCATTAAATCTCTTATTTTAGATCACCAACACCAAACACACTTTTAGTTGTTGGTCACAAGCAAATTTTGACATTTATCACTAATAAAGAGTGGAATTGAAAAATATTAAAAAGTAAGGAAAACTTGATGAAAAACGTTTAACCGTGTAGTTATTGTTGATTGTATTGGTTATAGGATGGGGTCCATATGCTTACTTTAGAGCACAAGAAGAGTTTCATAGGAGCAATGGTAATGCAACTCAAGCTGTGGTCATAGTTGATGTGCCAATTGAAGAGGGACTGCCAAGACCAAATGGCAATAATAATACATATTTTGAGCCAACCCCTTTCCATAACCAAACCTATGACCATATGGAAATGGGGGCAAGACAGTAATTTTGTTTCTTCTTTCTTCTTCACTATGATGTGTATGTAGTTTGTCTAGCTTGTAGGGACCTTTTTCTTTGCTTTTGTTTGTCTAGACAACTTCCTCTTTTCATATGTATTTTTTTTTTTTTTGTGTGAATATATTATGTAGTAGAACTAGAAGTGATTGATATTTATGTTATAGAAACTCTTCATTTGTATTGTATATTTTGGTTTTTTGATGAACTTACTAAAAAAAAATTTGCAATTTTTAACGGTTTTCATCTTCATGAAATATTTGAATTCATAGCTAAATTCTAAAAATAATAAATGTCTTTTTAGTTTAGGTTAATTTAATTTTTTAAAATTTTCAAAGCTCATAACATCCCTAAAAATTATTAGATCAAATAACATAGAAAGTCATGGGTGAAAGTAATGTTTATGAGCTTAATTTTTAAAAACTATAAAAAAAGGTCTCGTTTGATAATGATTTTAATTTTTCGTTTTTAGTTTTTGAAATTTGTGCTTATTTCTACTCACATTTCAATTATGGTTTTCACCTTTTTTAAATAAACACCTAAGGACGAATGTCATGCAAATTACCACTGAGTTAAGCTCATCTTGGCAACAAATATGATTACTTAAACATATATTTAGTTATTGAGATTTGTGATTTTGCTAGCTTAATTAGGCATGTCTGGAGTAGTGATTTTAAAATGGCTAAAATCACTTTTGTCATTTTCAAAATCACCATGAAACATGTTTTTAATCCTTCAAAACTAATTTTGATGATTGAAAATTGTATTTAAAAGTATAAAATTGAAAACTAAATTACTTTTGAATGATTAAAAGTGTGTTCTCGAGTGATTTTAAAAATAACAAAAGTGATTTTAATTATTTTAAAATCACTCCAAAATATGACCTTACTATAAGAAAGACCGGGTCTTTTTTTCTCCCGGTTTGGGTGCATTCATTTTTCTCATTTTGTACTAAGAATTCTATTTTTCATAGTGTACTAATGAATGAAAATTGTTGTCTATTTTCTTCACAATTAAACATAAAATAAAAGGCAAACAACCTGCCTTTTTTGAAAATGAGATGTTGAGAGGAAATATTATTTGATTTGAATTTGGCAAAATTATAATAACACAAAAAGCACAAGAAGCCACAACATTCAAATGTCTTTTCTTCAAAGCAAATTGAGCAAATGGAATATGATCATACTAAAACAAGAACAAGCAAAGAATACTATGGAGACTTTGACCAAACCTCTTTTGAAAAGTTATTTTTCCCTTTAAATCATTTGAAAATAGAAGAAGAAATTAAAAAGTAAATCTTAATTCGTTATTTTGATAATTTCATATAAACCTAGACATGATTTAATAAAATAATGATTAAATTACATGTTTAGTCTCTGAAATTTGAAATTCATATCTATTTAGTGTATAAACTTTCAAAAGTATCAAATATTTCTTTAAAGTTTCAATTTTATGTCTAATAACTCCGAGCATATTCAAAATTCTTCAAAATTAATTGCTCCTCTTAAATATAAATTTGAATTTTATATTCAATAAAACTCTAAATTTTAAATTATGTGCCTAGTATATCTGTATATTTTTAAAAAAAATTAAAATTTTATAGATTAAATTTATAAATTTAAATGTTAAAAAACTAAATAAATGGAAACTTCAAAATTTAGAGTTAAATTTGTAATTTAACCTAAAATATTTTATAACGTTTAGTTTATGGAAAAAAAAAACAATACTGAAAAAACGGTACTATTGCACCTACACCTTTACAATCACTACAATAGCCAACCTTATCCTTAGCACATTCCTTAAAGCCTTTACTTTTTTTTTTTTTTTTTTTTCAAATAGAGAAAAATTAAATGAAGTTAAATTTCATTCTCCATTTACTTTCCTCTTCTATTTTTCTTTACCTCTTCCACTTAACATATTATTTTATAAAGCAACTTATATTTTTCAAAATATTTTTTCCACGTCATTATTTTTGTATTCATTTAATTTTGTTATTACTTATTAGACAACCTAAAAACATAACTAACTTTATCCATCAGAAAACTAGAATTTAGAATTTCCACTTCCAATGTGTTATTGAGCTTAAAAAAAAAAAATTATTATCCTCCTTTTTTTCCTTAAACTTTACTAAAATTCGACTAGACTTTATAATTAAAAAATATTTATAAGATTTATAATAAAATGAATATATTTAATCAACAACAAAGTGTCAATTCTTTTAAGCAAAGTTAAATGTATCTTTATTTTCCTTCCAATTCTCAAATTCAAAATTTATATTAATAAGATAAAAAATTTAAATATCGACTTGAGAACAATACAATCAGAACATATATTAGATAAGAGAATAACATCCAAATTGATATTAATTTTTTAGATAAATTATTTCTCTTATTATATAATAAGAGATGACTGTTAGCTGTATGAGGATAGTTATAGTTTAAGTTGTACTTAATCATTCCTCGTTCTTAATCAGTTTAGTTATCTTCCGATTCCACTTCAAATTATTGAATAAAAATGAGAAAAACATTAATATATAAAGGATTAGGAAGAAATGATGATTTAATTAAGGGTTGTTTTCAAATATAAAAAAATGAGTCGAACTATTTACAAATATAGAAAAATTTTATCGTCTATCACTAATAGACTGCGATAGAATTCTATCGTTTTCTATCGCTCAAGCGATAGAATTTATTTGCTTGAACGATAGAAAGCGATAGAATTTTATCCGATGATAGACAGTAAAAATTTTCTATATTTGTAAATAGTTTGATATTTTTTCTGTTTAGAGTAATTTCAATTTAATTAATATGGAAAATTAGTGGAGATTTATTTAATTATAAAAGTTGGTTTTGGTTTGGCTCGTAGTTCACACTTCCTCTTTAGCGCGACGCGGTTTTCTATTCAAATTCCAAAAGGGATTTGGTTTCTTCACCTTCTCTCCCTGCCTTTACCTTTCCTTTCCATTCTTCTTCTTCTTCCTCCTTCAAACTGGAATCCACTGGTAATTTCTCTGCTCTCAACCATTCTTCCTTCTCTGTTTATGGCGTTTTTTTTTGTCCCTTGTCTGTTATATGTTGCCTTTCTCTAATTACACTGTGGGCCAGCTCTTTCACTTCATCCCTGGAAAATGCGAAATGAAATGAAATGCGAACTCGCTCAATTACTCACTAAGTTCAGTCGTAAATTTTTTGTTATCTTTATCATTTTCTTCTTATTACTCCACGATGAAGTATTCCATTTCTTGTTCCTTGTATCTTGTTAGTTTCTGCGGCAGTTTGAATAAGTTCTGGTTCATTCTGGACCGGAATCAGGCGATTCGGTATGTTTCGGGTCTGATAACAACTCACGAGTTAGGGAGGCTTGGTGTTGAGTTTGGATGGTCATAGGATTGCATGTTCAGTTCGTTCTCTGCGTGCGTGTGTGTGTACGTTTAAATTACTAAACGAATTTCCATTAGAAGATTTGTCATCCATTTTCTTTATACAAAGCACACATTTACATTTTGCAGTAATCTCACTGTTATGCATGCTTTGGGTTATTCACGTCTTGTTTAGTATGAATAGTCTACTAGGGTTCTAATGTAGAATTTTTTTTTTTCGCCTTGCTTCATCCTTGGTCATTTTTACATCATTTGCGGCTTTTCTCTTGGAAAATTCCTCTTTGTGTTACATGACTTTTAGGATAAATGTCATGGTTATGGCTTTGTATCTGACCATACTTTTTATGAAGTTTAGTTTTTTGTGCATGAGAAGCGCCATGTACTGTACACTAATTCACTTTATCACGTGATTATTTCTTGTTGATAGTGCTTAAATTACTTCAATATGTTTTCTTAATCAATCCTTTTCATTTCCTCATGTTATCAGTTCACGGACAAAATGCCAGAAATTCAGTTGGGTACTCATACTGTGAGATCCCATGGAGCTCGTTTAGCAAGAGTCCATATGCATGATTGGTTAATCCTTGTGCTTCTTGTGGTGATAGAGGTTGTGTTAAACGTTATAGAACCATTTCATCGCTTTGTTGGACAGGAGATGATGACAGACCTGAAATACCCACTGCAAGATAATACTGTTCCCATTTGGGCAGTTCCAGTATGTTTGAAACTGGCATTTGCTAGTATTACAGTGAATTCTATGGCCACTTATTTTTCCTGACATTATTGTGAAATGTAAAAAAATAAGACTTTTCTTTCTTTTTTTCCTGTAACAGATAATTGCAATATTGATACCCTTTATTGTGTTTCTTATCTACTATTTCATTAGAAAGGATGTCTATGATCTCCACCATGCCATATTGGGTAGCTCTTCTTCCTCTCTCATTTTATAATCATTGGAAAGCCTTTAGCTCTGGATAACCTTGCCAAGCATAATATTTAATGATTGCTCATGCTTGATCAGGACTTCTGTTTGCTGTTTTAATAACTGGAGTAATGACTGATGCGATTAAGGATGGTGTTGGTAGGCCTCGTCCAGATTTCTACTGGCGCTGTTTCCCTGATGGCAAAGGGGTTTGTTTTTCATTTTTATATTCTCACTTGGTTTTCATATTTGTGCATATGAAAGCATCTTTCATGTTCCTATGCCCCCGTCCTTTTTAATATTGGCACTAATTATAAGATTTGTGCTTGATATGTGCAGGTGTTTGATCGAAACACAACTGGTGTTTTATGTACAGGAGATAAGAATGTTATTAAAGAAGGATATAAAAGTTTCCCGAGTGGGCATACGTCCTGTAAGATACACGTTTACTTCTGAATTATGTTATATGACTTTCTGTGACTGTCTATTTTTACCCTTTTTTCTAATAAATTTTTATTTACTTCAACAATGCGCATGCTACATAGAGTAGATTAGTAGATCCAATCTCTGTGCAAATGCAGTATGCTTGCCTGTTAATAATTTTCATTCAAAAGGGAATTTCAGCATGTTGCTAAGGGAACTCAATAGTAACCATTAATGGCTGTTGTATATTCTCTTGGCAACCAAAATCTGGAGAAATGAAAAGTATTAGTGTAAAGGAAATTTCTTACTTTAATCCCATATTCTGGTAGATGATTGAATAGAATTAGAGTTTTGTTTTTCTAAAATTACCAATCCAGTTGCAGATGGAAAATGGTGGCTGAAGCTTTAAAGTCCTATTACTCATTTCCCATTTTAATTGAAGTCTGAAAATGTTTTGGAATGAGAACACTTGACTCTGCAACTTTTTTCAAAGGTGCAATGTTAAGTCATTGATTAAGATTATAATATCCAAGCAAGAACTGTCAAGGCTTTGATTTTTTCACCATAAGATCTCAACTCACTCCGTGTTTTAGTGAGACTACATGTTTTAGGACAACATACATTAATCAGGGACTTGTAGTTAATAAGTTTTTGTACTTTCTTTCTATTTCATTTTCCTTATTGATCCCAGGCTTGGTCAATAATTCTTGTTGTGGATTAGTGCATGCAAATGCTTGTTTGTGACATATGCATTACCTTCGTCTTTTTTTTTCTCCTTTTTTGGTTATTTTCTCTCACTTGTGTTTCTTTTATGCTTATTAACGTAGAAAGCTGTCTATATGCAGGGTCTTTTGCTGGCCTTGGATTTCTTGCTTGGTATTTGTCTGGGAAAATAAGGGCATTTGACCAAAGGGGTCATGTTGCAAAACTCTGTATTGTGTTCCTACCCCTGCTTATTGCAGCTCTTGTTGCTGTCTCTCGAGTTGATGACTATTGGCATCACTGGCAAGACGTTTTTGCTGGAGGCCTTCTGGGTTAGTTAATCCAAAACCTTTTGCATTTGCTTTAACTTTCATTTATGCTCCTTTTGCTTTTTTCTTATCTGAACCTTTTTTTTGCAGGGCTGACAATTGCTTCATTCTGTTATCTGCAATTCTTTCCAGCACCTTATCACATTGATGGTATGGCCCACAATATCATTAAATGCTATTGCTATGCAAGTAGTTCTAATTTTGCATTGATGGAAGCAATAATTTGTCCGCAGTAAATTTATTATTTCTTTTGCCCAGTAATCATCTTTTTAACATTTCTTCCATGTGAGTTCTACTTTTGATTCTTTGACCGGTGCCTCAAGATCCATCTGGCATGGCCCAAAGTAGTTATTTTTTATTCTCTATTCTTTAACTTTATAACCTTGTTAACAGAAACATTGATTGGTTGGATGATTACATAATTGTTTCGACTAAATCTTCCTCTTGCAACATTAGGTAGCATTATAAAACTATAAATTTAGCTGGGATGTTAATCTAGATTTTTTTTTTCTTTCCCGACCAATAGCATTGAGTTGTTGGATCTGGACCTCATTAATCATCACATATTTTATTTGCCCAAATCCGAATTTTAAAGCAAGCATAGATTATTGATCTTTAATGTTGTTGACTGGAAGAAGTGGCCGTGAAATATAGTTGTTAAGATAAATGAATAAAATGACAGAATGATTTGTATAGATGTGCGCATATAGAAAAGACAGGATTTGTCTACTTTCTTTCTTTCATCGCTTGCCGCTAGTTTTACTTTTCCAATGTAATCTGGTTTGCGGTCCACACCCATATGAACATAAAAAGTTGCTTTGTAGTCAAATTTTATTGTAGTCAATTATGGCTTTAATGATTCAATAGTTGATTTTCGTTGACCTGAACATTGATTGTTGTAGTGCATTGTGATTAAACAATACTTGCATTTTAGATGATGTAACCATCCGATTCATATATTCCCGGAACTCAGTAATCTGTGGCTTGTTATGAAGGATCCTAAGCTTTCCCCACTGCCTTCGTTAGGATTATACCATTTTCTGTTCAGCCGACCCAAAACTTCTAAATTGTCATATCTGTAGTCAACTGTAATTTTCTTTATAATTCTGGTATAGCAATTGCTATACAAGTAGTCCTGATTCTTGAGCATTCATTTCATTCTTGAACTGACTGTTTTGTATTTTTACGCTGGATGTGCAGGTTGGGGACCTCATGCATACTTTCAAATGTTAGCAGAGTCTCGTAACGAAGTTCAAGCGTCATCTCCGAATGCCAATAATATTAACGCGCCGCTATCAGAAATAGAAAGTGTCTACATTCAACCTCAGCATGAAAAGAGATTCAATACACAGGACTCGAGCCCCATGCTGAACAGATAG ATGGCGTGGTGGAAGAATTTTCTTTCTTTCTTTTCTTTCCGCAGTTCCTCAAGTAGATTTCAGTTCTTTCAGGAATTAGATCCTGCAGCACATACAATAAAATCCCATGGAGCCAAAGTTGCAAAGAATCATTTACATGACTGGTTGATTCTTCTCCTTCTTGTTGTTATTGAAGTGATTTTAGTGGTAATTCATCCATTTTATCGCTATGTGGGAAAGGATATGATGACAGACCTTAAGTATCCCTTTAAAGATAATACAGTGCCTGTTTGGTCTGTTCCTTTGTATGCTGTTATACTGCCTATTTTGATATTCTTGATCATCTACATACGGCGGAGAGACGTTTATGATTTGCACCATGCCGTTTTAGGCCTCTTATTTTCTGTATTGATCACTGCTATCATCACTGATGCCATTAAAAACGGTGTCGGTCGCCCTCGGCCGAACTTCTTTTGGCGTTGTTTTCCCAATGGAATAGAGGCATACGATCGAACGGGAAATGTGATATGTAATGGAAAAGAGAGCGAAATAAGGGAAGGACACAAGAGTTTCCCAAGTGGCCATACTTCATGGTCATTTGCAGGCTTAGGATTTCTTGCCTTTTACCTATCTGGAAAAATGCAAGCATTTGATAGGAAAGGACATGTTGCAAAATTATGCCTTGTGTTTCTCCCTTTGCTTGGTGCTGCACTTGTGGGAGTTTCTAGAGTTGATGATTATTGGCACCATTGGCAAGATGTTTTTGCTGGAGCTATTATAGGATTGGTTGTTTCAGCCTTTTGCTACCTTCAATTCTTCCCTCCTCCCTACAATCACAACGGATGGGGTCCATATGCTTACTTTAGAGCACAAGAAGAGTTTCATAGGAGCAATGGTAATGCAACTCAAGCTGTGGTCATAGTTGATGTGCCAATTGAAGAGGGACTGCCAAGACCAAATGGCAATAATAATACATATTTTGAGCCAACCCCTTTCCATAACCAAACCTATGACCATATGGAAATGGGGGCAAGACATTCACACTTCCTCTTTAGCGCGACGCGGTTTTCTATTCAAATTCCAAAAGGGATTTGGTTTCTTCACCTTCTCTCCCTGCCTTTACCTTTCCTTTCCATTCTTCTTCTTCTTCCTCCTTCAAACTGGAATCCACTGTTCACGGACAAAATGCCAGAAATTCAGTTGGGTACTCATACTGTGAGATCCCATGGAGCTCGTTTAGCAAGAGTCCATATGCATGATTGGTTAATCCTTGTGCTTCTTGTGGTGATAGAGGTTGTGTTAAACGTTATAGAACCATTTCATCGCTTTGTTGGACAGGAGATGATGACAGACCTGAAATACCCACTGCAAGATAATACTGTTCCCATTTGGGCAGTTCCAATAATTGCAATATTGATACCCTTTATTGTGTTTCTTATCTACTATTTCATTAGAAAGGATGTCTATGATCTCCACCATGCCATATTGGGACTTCTGTTTGCTGTTTTAATAACTGGAGTAATGACTGATGCGATTAAGGATGGTGTTGGTAGGCCTCGTCCAGATTTCTACTGGCGCTGTTTCCCTGATGGCAAAGGGGTGTTTGATCGAAACACAACTGGTGTTTTATGTACAGGAGATAAGAATGTTATTAAAGAAGGATATAAAAGTTTCCCGAGTGGGCATACGTCCTGGTCTTTTGCTGGCCTTGGATTTCTTGCTTGGTATTTGTCTGGGAAAATAAGGGCATTTGACCAAAGGGGTCATGTTGCAAAACTCTGTATTGTGTTCCTACCCCTGCTTATTGCAGCTCTTGTTGCTGTCTCTCGAGTTGATGACTATTGGCATCACTGGCAAGACGTTTTTGCTGGAGGCCTTCTGGGGCTGACAATTGCTTCATTCTGTTATCTGCAATTCTTTCCAGCACCTTATCACATTGATGGTTGGGGACCTCATGCATACTTTCAAATGTTAGCAGAGTCTCGTAACGAAGTTCAAGCGTCATCTCCGAATGCCAATAATATTAACGCGCCGCTATCAGAAATAGAAAGTGTCTACATTCAACCTCAGCATGAAAAGAGATTCAATACACAGGACTCGAGCCCCATGCTGAACAGATAG ATGGCGTGGTGGAAGAATTTTCTTTCTTTCTTTTCTTTCCGCAGTTCCTCAAGTAGATTTCAGTTCTTTCAGGAATTAGATCCTGCAGCACATACAATAAAATCCCATGGAGCCAAAGTTGCAAAGAATCATTTACATGACTGGTTGATTCTTCTCCTTCTTGTTGTTATTGAAGTGATTTTAGTGGTAATTCATCCATTTTATCGCTATGTGGGAAAGGATATGATGACAGACCTTAAGTATCCCTTTAAAGATAATACAGTGCCTGTTTGGTCTGTTCCTTTGTATGCTGTTATACTGCCTATTTTGATATTCTTGATCATCTACATACGGCGGAGAGACGTTTATGATTTGCACCATGCCGTTTTAGGCCTCTTATTTTCTGTATTGATCACTGCTATCATCACTGATGCCATTAAAAACGGTGTCGGTCGCCCTCGGCCGAACTTCTTTTGGCGTTGTTTTCCCAATGGAATAGAGGCATACGATCGAACGGGAAATGTGATATGTAATGGAAAAGAGAGCGAAATAAGGGAAGGACACAAGAGTTTCCCAAGTGGCCATACTTCATGGTCATTTGCAGGCTTAGGATTTCTTGCCTTTTACCTATCTGGAAAAATGCAAGCATTTGATAGGAAAGGACATGTTGCAAAATTATGCCTTGTGTTTCTCCCTTTGCTTGGTGCTGCACTTGTGGGAGTTTCTAGAGTTGATGATTATTGGCACCATTGGCAAGATGTTTTTGCTGGAGCTATTATAGGATTGGTTGTTTCAGCCTTTTGCTACCTTCAATTCTTCCCTCCTCCCTACAATCACAACGGATGGGGTCCATATGCTTACTTTAGAGCACAAGAAGAGTTTCATAGGAGCAATGGTAATGCAACTCAAGCTGTGGTCATAGTTGATGTGCCAATTGAAGAGGGACTGCCAAGACCAAATGGCAATAATAATACATATTTTGAGCCAACCCCTTTCCATAACCAAACCTATGACCATATGGAAATGGGGGCAAGACATTCACACTTCCTCTTTAGCGCGACGCGGTTTTCTATTCAAATTCCAAAAGGGATTTGGTTTCTTCACCTTCTCTCCCTGCCTTTACCTTTCCTTTCCATTCTTCTTCTTCTTCCTCCTTCAAACTGGAATCCACTGTTCACGGACAAAATGCCAGAAATTCAGTTGGGTACTCATACTGTGAGATCCCATGGAGCTCGTTTAGCAAGAGTCCATATGCATGATTGGTTAATCCTTGTGCTTCTTGTGGTGATAGAGGTTGTGTTAAACGTTATAGAACCATTTCATCGCTTTGTTGGACAGGAGATGATGACAGACCTGAAATACCCACTGCAAGATAATACTGTTCCCATTTGGGCAGTTCCAATAATTGCAATATTGATACCCTTTATTGTGTTTCTTATCTACTATTTCATTAGAAAGGATGTCTATGATCTCCACCATGCCATATTGGGACTTCTGTTTGCTGTTTTAATAACTGGAGTAATGACTGATGCGATTAAGGATGGTGTTGGTAGGCCTCGTCCAGATTTCTACTGGCGCTGTTTCCCTGATGGCAAAGGGGTGTTTGATCGAAACACAACTGGTGTTTTATGTACAGGAGATAAGAATGTTATTAAAGAAGGATATAAAAGTTTCCCGAGTGGGCATACGTCCTGGTCTTTTGCTGGCCTTGGATTTCTTGCTTGGTATTTGTCTGGGAAAATAAGGGCATTTGACCAAAGGGGTCATGTTGCAAAACTCTGTATTGTGTTCCTACCCCTGCTTATTGCAGCTCTTGTTGCTGTCTCTCGAGTTGATGACTATTGGCATCACTGGCAAGACGTTTTTGCTGGAGGCCTTCTGGGGCTGACAATTGCTTCATTCTGTTATCTGCAATTCTTTCCAGCACCTTATCACATTGATGGTTGGGGACCTCATGCATACTTTCAAATGTTAGCAGAGTCTCGTAACGAAGTTCAAGCGTCATCTCCGAATGCCAATAATATTAACGCGCCGCTATCAGAAATAGAAAGTGTCTACATTCAACCTCAGCATGAAAAGAGATTCAATACACAGGACTCGAGCCCCATGCTGAACAGATAG MAWWKNFLSFFSFRSSSSRFQFFQELDPAAHTIKSHGAKVAKNHLHDWLILLLLVVIEVILVVIHPFYRYVGKDMMTDLKYPFKDNTVPVWSVPLYAVILPILIFLIIYIRRRDVYDLHHAVLGLLFSVLITAIITDAIKNGVGRPRPNFFWRCFPNGIEAYDRTGNVICNGKESEIREGHKSFPSGHTSWSFAGLGFLAFYLSGKMQAFDRKGHVAKLCLVFLPLLGAALVGVSRVDDYWHHWQDVFAGAIIGLVVSAFCYLQFFPPPYNHNGWGPYAYFRAQEEFHRSNGNATQAVVIVDVPIEEGLPRPNGNNNTYFEPTPFHNQTYDHMEMGARHSHFLFSATRFSIQIPKGIWFLHLLSLPLPFLSILLLLPPSNWNPLFTDKMPEIQLGTHTVRSHGARLARVHMHDWLILVLLVVIEVVLNVIEPFHRFVGQEMMTDLKYPLQDNTVPIWAVPIIAILIPFIVFLIYYFIRKDVYDLHHAILGLLFAVLITGVMTDAIKDGVGRPRPDFYWRCFPDGKGVFDRNTTGVLCTGDKNVIKEGYKSFPSGHTSWSFAGLGFLAWYLSGKIRAFDQRGHVAKLCIVFLPLLIAALVAVSRVDDYWHHWQDVFAGGLLGLTIASFCYLQFFPAPYHIDGWGPHAYFQMLAESRNEVQASSPNANNINAPLSEIESVYIQPQHEKRFNTQDSSPMLNR Homology
BLAST of HG10015551 vs. NCBI nr
Match: KAG7032059.1 (Lipid phosphate phosphatase 2 [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 1113.2 bits (2878), Expect = 0.0e+00 Identity = 557/699 (79.69%), Postives = 578/699 (82.69%), Query Frame = 0
BLAST of HG10015551 vs. NCBI nr
Match: KAG6573934.1 (Lipid phosphate phosphatase 2, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 1058.5 bits (2736), Expect = 2.5e-305 Identity = 535/688 (77.76%), Postives = 575/688 (83.58%), Query Frame = 0
BLAST of HG10015551 vs. NCBI nr
Match: QCE08575.1 (phosphatidate phosphatase [Vigna unguiculata]) HSP 1 Score: 954.9 bits (2467), Expect = 3.8e-274 Identity = 459/698 (65.76%), Postives = 550/698 (78.80%), Query Frame = 0
BLAST of HG10015551 vs. NCBI nr
Match: TKY50892.1 (Lipid phosphate phosphatase 2 [Spatholobus suberectus]) HSP 1 Score: 951.0 bits (2457), Expect = 5.5e-273 Identity = 454/693 (65.51%), Postives = 540/693 (77.92%), Query Frame = 0
BLAST of HG10015551 vs. NCBI nr
Match: KGN52646.2 (hypothetical protein Csa_008315 [Cucumis sativus]) HSP 1 Score: 941.4 bits (2432), Expect = 4.4e-270 Identity = 472/561 (84.14%), Postives = 488/561 (86.99%), Query Frame = 0
BLAST of HG10015551 vs. ExPASy Swiss-Prot
Match: Q9XI60 (Lipid phosphate phosphatase 2 OS=Arabidopsis thaliana OX=3702 GN=LPP2 PE=2 SV=1) HSP 1 Score: 481.5 bits (1238), Expect = 1.6e-134 Identity = 220/290 (75.86%), Postives = 255/290 (87.93%), Query Frame = 0
BLAST of HG10015551 vs. ExPASy Swiss-Prot
Match: Q8LFD1 (Putative lipid phosphate phosphatase 3, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=LPP3 PE=2 SV=1) HSP 1 Score: 432.6 bits (1111), Expect = 8.7e-120 Identity = 195/282 (69.15%), Postives = 236/282 (83.69%), Query Frame = 0
BLAST of HG10015551 vs. ExPASy Swiss-Prot
Match: Q9ZU49 (Lipid phosphate phosphatase 1 OS=Arabidopsis thaliana OX=3702 GN=LPP1 PE=2 SV=2) HSP 1 Score: 422.2 bits (1084), Expect = 1.2e-116 Identity = 188/280 (67.14%), Postives = 233/280 (83.21%), Query Frame = 0
BLAST of HG10015551 vs. ExPASy Swiss-Prot
Match: Q0WNG6 (Probable lipid phosphate phosphatase 4 OS=Arabidopsis thaliana OX=3702 GN=LPP4 PE=2 SV=1) HSP 1 Score: 400.6 bits (1028), Expect = 3.7e-110 Identity = 175/265 (66.04%), Postives = 225/265 (84.91%), Query Frame = 0
BLAST of HG10015551 vs. ExPASy Swiss-Prot
Match: Q8NEB5 (Phospholipid phosphatase 5 OS=Homo sapiens OX=9606 GN=PLPP5 PE=1 SV=2) HSP 1 Score: 174.5 bits (441), Expect = 4.3e-42 Identity = 92/214 (42.99%), Postives = 130/214 (60.75%), Query Frame = 0
BLAST of HG10015551 vs. ExPASy TrEMBL
Match: A0A0A0KR90 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_5G610470 PE=3 SV=1) HSP 1 Score: 1272.3 bits (3291), Expect = 0.0e+00 Identity = 630/714 (88.24%), Postives = 648/714 (90.76%), Query Frame = 0
BLAST of HG10015551 vs. ExPASy TrEMBL
Match: A0A4D6N8V2 (Phosphatidate phosphatase OS=Vigna unguiculata OX=3917 GN=DEO72_LG9g3604 PE=3 SV=1) HSP 1 Score: 954.9 bits (2467), Expect = 1.9e-274 Identity = 459/698 (65.76%), Postives = 550/698 (78.80%), Query Frame = 0
BLAST of HG10015551 vs. ExPASy TrEMBL
Match: A0A445BER2 (Uncharacterized protein OS=Arachis hypogaea OX=3818 GN=Ahy_A09g042097 PE=3 SV=1) HSP 1 Score: 909.1 bits (2348), Expect = 1.2e-260 Identity = 434/702 (61.82%), Postives = 539/702 (76.78%), Query Frame = 0
BLAST of HG10015551 vs. ExPASy TrEMBL
Match: A0A445BEQ8 (Uncharacterized protein OS=Arachis hypogaea OX=3818 GN=Ahy_A09g042097 PE=3 SV=1) HSP 1 Score: 896.3 bits (2315), Expect = 7.8e-257 Identity = 431/702 (61.40%), Postives = 534/702 (76.07%), Query Frame = 0
BLAST of HG10015551 vs. ExPASy TrEMBL
Match: A0A5J5AFR3 (Uncharacterized protein OS=Nyssa sinensis OX=561372 GN=F0562_034097 PE=3 SV=1) HSP 1 Score: 882.1 bits (2278), Expect = 1.5e-252 Identity = 434/674 (64.39%), Postives = 520/674 (77.15%), Query Frame = 0
BLAST of HG10015551 vs. TAIR 10
Match: AT1G15080.1 (lipid phosphate phosphatase 2 ) HSP 1 Score: 481.5 bits (1238), Expect = 1.2e-135 Identity = 220/290 (75.86%), Postives = 255/290 (87.93%), Query Frame = 0
BLAST of HG10015551 vs. TAIR 10
Match: AT3G02600.2 (lipid phosphate phosphatase 3 ) HSP 1 Score: 433.3 bits (1113), Expect = 3.6e-121 Identity = 194/275 (70.55%), Postives = 233/275 (84.73%), Query Frame = 0
BLAST of HG10015551 vs. TAIR 10
Match: AT3G02600.3 (lipid phosphate phosphatase 3 ) HSP 1 Score: 433.3 bits (1113), Expect = 3.6e-121 Identity = 194/275 (70.55%), Postives = 233/275 (84.73%), Query Frame = 0
BLAST of HG10015551 vs. TAIR 10
Match: AT3G02600.4 (lipid phosphate phosphatase 3 ) HSP 1 Score: 433.3 bits (1113), Expect = 3.6e-121 Identity = 194/275 (70.55%), Postives = 233/275 (84.73%), Query Frame = 0
BLAST of HG10015551 vs. TAIR 10
Match: AT3G02600.5 (lipid phosphate phosphatase 3 ) HSP 1 Score: 433.3 bits (1113), Expect = 3.6e-121 Identity = 194/275 (70.55%), Postives = 233/275 (84.73%), 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 Position : 0 Zoom : x 1
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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