
HG10015159 (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.ATGCCAAGTTTTGTTTTGGAATTGTAAACTCATGTGGATGTTTCCAAATATGGAATTGACGGGAAATGAAATGATTGAAACTTATTTGTGAGAAGACACTTTATAGTGTTTTAACATTCCTTTGTGTGCTACACTCATATGACTTGACATTTAACCACATATGCTGGGCTACTTCAACTATGCATTTTTCCTACTCTGTATTTGAAAGTACTGAATGACTGATAGCTTGATTGTATGAAAGTATTGAATGATTGAAAGTTCTGATAGATTGAAAGTATTGACCGATTGAAGCTTTGTATTTGAAAGTATTGAAAGATTAGTGTTATAGAAAGTATGAAAGTTATGTTTATTTAAGGTGTTGAAAGTTTATTCAAATGTTTTGGTTTTGTTGAAACTTGAAAGACTTTTTGTAAGTTTTAGCTTGAAACGTTTAGTTTTGAAAGCTTAATTGCTTGAAAGATTTTGATTTTGTAAGTACCATTTGTTGCAAGGTTTTGATCGAAAGTTTTGCAATGATCTGTATTTTTATTTACGAAAGTTTGATAATGAATTTCAAAGCTTGATATGAGAGTTGCTTATTAAGTATTTTTGTACTCATATTTGTTTTCAGATGACAGATCAGGTTATAGTTCACAGTGCAGTGAAGTTTGGCGTTCTGGCATAGGACATCAATGGATGGTTATCTTAGGATTTGATAGTTTGACATAGAAATTGTTTGTAATAATTTGCTTCCCCTGATTGTGTAAGTTGTAAAAGTTTATAATTGTAATGTTTCCACATTATTGTTTTAATAACCGTATTGGAAAATACGAGCTGTTACATTAGTAGTTTCTCCTCCAGTAATTGAAGCCATTCAAAGTTTGCTTATTGAAGCTATGTAAGTTCTTTATTCTTTCACATTCAATTTTTGATATCATAATCATATTTTATTTCAAGTCGATTCTATGATTTGGGCAAAAATCTTGAAGTTACTCTTTGGGCAATTTGTCGTGGTGTAGACTTAGCATCTTCGCGTACATGCTTGTTATAGATGACTTCAAACTAACATGTCTGACAAACATAGTTTAGCATAGTCATTTTTTCATGTTGAGCGACATTCCAGGAGCCTAATTGTCACTTGAGTTATTCTTTTGTTTGTGTTCCATTTTTCAGGAGTCCTGTGAAGTTGACCCTTCGGTGTCCTTCTAAGGTAGGCCAAGTTACAGTTGACCCAGATCCTGATTTTAGCTTTGATGATTTGCGAATGGAACTTCATTCCTTGGAGGAGAAGCTAAAGATGTCCACGATGCCTTTCAAGAAAACATGTTCACGGTATCATAGATTTTTATATCTGAAATAAACATAATGAATTTGTGCATGCTTCTTGTTTCTTTGTTAAAGAATTTTTGGTTTATAACTTAATAGAGACTTCCCTGTCATAAAGACTATGAAGAGAAGCTCCAAGCCTTTTGTAATGGGCGTGTATGAGGATGAACTAAATGAAATATTTAGTGATGAAGTGGTTCGTGACCCAAGTTCAAATGCCAAGCGCTTCAATTGTGATGGAATTTTTCTTAGGTATTTTATTCTTCTGCCGTTTCCGATTGTCTTTGTTTCTTCTTTTAAAAGTTTAATTTTTTTTTTAATGAATATTTGTGCGTAATCTTCCCTATATTTTCTATGTGAAACTTAAAATGAATATTTGTTCATGTTTTAAACTTTTCTTCGTCATGTGATGTGCAAAATTATTATGCTATTATATTATGATTAAACTATTACATATTTGGTTTTCTGCCATGAAATTTTAAGATTTTTCTTGCCTTCTCTAGTGATAGTGAAGATTCTGATGATGAATCAACTCTTGAAGCACAAGCTTATCTGCAGGAGGACGTGGATTTAGTGGAAAGTTCTTTAGCTCAGCTAACACATGATCATATGCTTAATATAAAGGTATTTTAGGGAGTATATAATTTATATTTGTTTCTTTTATTGAGGTCTACACTTATTTTAGCATCTAAATATGAATGCAACACATATATAATTTCTCATGACATTTCATGTCCGTCCCTCATATCACTAATCATAACTTTTTCAATTAGTTTGTTATTTTGCTTTAGTTGTTGCTTGGTTTAGTAGATACTAGCTAATACTTTGGAAGAGAAGCTTTTGTAAAAGAATTACTTTGATTTTGAATAATGATCTTTCTTTGATAATTCTTGGAGTTCTAGATGCTGTATTGCACCATTTAAGATACTGTGGATGAGATGTATGTGAAATTAGTTAAACTGGTGTTTTTTTGATACAAAAACTCATGAGTTATATGGTTTTAATTTGGATGTTGTCATTGCTGTATTCTCGTTTAGTCTGAGACTTAAAACTTATGAGATATTTGAAATTATGAAGAACTTTTAATTTCAACCATTGAGTGATGAAGTAGATGTAAATTTATCAAATCTTCCATTTTGCTGATGTTTTTCTAAATTGGTTTATAAACAGGAGCAAATCAGGAACCAACTCGGAAGGTTGGAGACTGACCTTACTACTTTAAATGAAAAGTCAAGTGCTGCAATCTCTCAAATTGAGAAATACTATGAGGCAAGACGAGAAGCTGACCGGAGACTTGATACTCAATATCAACGTGAGATGTATGCTTTTCTATTAGTTTTGTTTGGTCATCTTTCTTAATTAAAATTTAGGAAATCATTTTCTGTGACATACCTTTATTTAATCTTTCACAAACTTCTTTTATTAAGAAAAGATTAGTATGCCATATATTCTCTATTGGTATAGTTATGTTCACTTATGTTCACCAAGAAGAAGCTGAAGGCACTTTTATAATTGTAGAATAAAAGTTTATGCATTGAATTCCACTAATGTATTTCTTGTGTTTCTCCTCTTTCTAACAGTGAACACCCCCCCCCCCCCCCCCCCCCCCTCCTCCTCCTCCTCCCCCCAAGTAGCTGAATTGTATTCAACCATTCCAACCTTGAATTGCAACTTTTTTCTCCATGCTTGAACCTAACCAACTAGATTTTTCAAATCATTTTGTACAATTTATAATTTTCTTAAAAATGTTCTATACCTAGCCACTTATGAATGACTGTGTAGAAGCCCCCACTAACAATGTAATTTTACTTGGTGCTTATCCTTTACCTCTACTTTTAGTGCTGAAGGCCTTGATAAGTACTTGACAACTGTTCAACATCATCACGAACAAATATCACAAAGAGAAGAAAGAAAAATAAGAAGTGATGCAGCTTTTGAGGAAGCCAAAAGAAAGGAGAAGGCCATTCTAGAAGATAAAAAGCGTCAAGAAAAGGTTAAAGCAGAAGCCGAGGTTTGTTGCCAGCTATTTGAAACTGATGAATGTTTTTTCTTGTTTGTTTGTTTATTTTTATTTGTTTCCTTTTTTATTTTTATTTTTATAAGTGCGTTGGTCATTTTACTGGTACAGATGGCTTCGATGTAAAATTAAAGCAATTGTTTCTTGGGTAGTTAGCTTGCAATCAATTCTATTGACATTCTAACTCTATCAACCTTCCTTTGATTCAATATGAGGATCATTGATCAATAATCCACCTTTTTTTTTTTACTTTTTAGATTAGATAATATTATCAGGGAGTTAATTCCATCTTCCAATGGTAAAAAACACAAGAAATTACAGGACCTAACTATATAAGTGTTTTGAATAGCATGGGCAGTTAAGCTTTTTGGGACAACCCACCTTTAAAGCGAGGTGCCAAAGACCACTTATTTATAATCAAACCTCTTATTTCTTGAACTTTTCATAATCTTATTCTCATAATCTTATTTATATTGTTGAGAGTACATTGCCCAAAGAGAGTAAGAGTTCTCATTTGGGAAATTAGCCATTCTTGTCTCAACATCATGGATTGGCTACAAAAGAGACGTCCATGGATAAGCCTCTCTCCCTCTTGCTGCTGCCTTTATCAGAATGATCATGAATCTCAAAGTCACATTTTCATCCACTGCCTGTTAGCTGCTAATATATGGGGTGAATTACTTTCCGGCTTTGGTTGGTCTATAGCACCTCCGTGGAGATCAATGGATTGGTTAAAAATGATGCTGAATGTATGCCCTTTCAAAAATACCAAGGGTCTATGGACAAATATGGTCATTGCCATTTTGTGGAAGTTATGGGATGAAAGGAATGCTCGGCTGTTCAAAGGCAAAGATAGATCCTCTAAGGAAATCTTAGATCTACCAATCTTCTTCTTCTTCTTCTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTCCTGTGTAAAGATTCATATCCCTTTAACAGTTTTAGTTTAAATTTCCCCTTTTGTACCTCTTTGGATTATTTCATTCAATCAATGAAATTGTTTCTTATCCAGAAAAAGAATAATATTATTTATATTCATATATAAAAGTTGTATTCACATTTTTCTAGGTACTTGACAAAAAACAGGTCTTTGATGTTGTTTTTTCACCTTGCTCTGAAGCCTCGAAGGATTGTTGCACTTTACTGCATCTCACACATCTAAAAACACTTGTGCAGGCAAAAGCCAAAGCTGAGGAGGCAATGAAAGCTGCCATAGAAGCAGAGAGGAGAGTAATGAAAGAAGCAACTGAAAGGGAAGCCGCTGAAAACTTAAAAAAAGTTGATGCCGTACAAGTGCAAGAAACTATGGTTGGGGTGCTAACTACCAAACCAGTAAACTCAGTCGGCCAACCTAAAGAAACTGCTCTGGATAGAACACATGTGTCAAGATCACCAGGTGATTTTCAGTATGAATGTGACGATGGCTTTTCTGTTTTTGTAAAAAAATGATATACTTAAAATTATGACTCTTTATATTTCTTTTTCCATTCTATCTGGATGTTTTCATGTTCATTTCTCTTTATCCAGAAGATAGATATCCATATGATTTTTTGTGTGTGGTCTGCCAACTTACTTGATATCAGGGTTTCATCTAATATGGAATTTTTTGGGGCAATCTCATGGCAGATAGCATGGTTAGAGCCTCAAAAAGTGCTTTGACTTTAGAGCCGGAGAGACTACAAAAACTTAGGGAGGTAGAGGAGGGAAACCAAGCATTGAGATTGAGTTCAAATAAGGTATGGCATCAACAAATAGTTTGAAAGCTTATTATTTTATCGGTTCTATATGCAACAGATATTGCTAGGCATGGATATTTCATTTTTACGTGGAATGCAACATACTGCTTAGGTTAGCATATGATAATAAACATTGGTTACCATGTGAATGAATGTATCTCTCAGCCTTTCTTTTTTTAAACCCCATCTTAGAATTATGTCACTTTTATTAATCAAATGTGGAAAGGTTTCGTTCTATGACTTAAATTTCTAAGGATCGATTATCTTCTCTCTAAGATTTGTGACATGATATCTTTGAGTATTTGGATATTGATCTCATTGTAATACTATAAATGCCTGTCTTTTCGTCTTAACAGGATTTTAGCACCTATGAAAGGCATATTGCTAGGCTAATCAAACAAATAGGGGGGACAAAAGAGAATGTCAGGTATGAGCATTCTTAGATTTTATTTTATAAAAAAATAGAGTTCTTAGATTCTACATCTGAAAAAGAGTTCTTTGGTTTTTGTATGGCTACTTTTCAATTGAAACTGTTTTGATAGAGCACTTTTGTTTTTCATGTGCATTTCTTTTTGCAACTGGCAGGCTTCTTTGTTAGCATTTATTTGGTCATGTTCCTGTCACAGGCTGCATTGATGTTATTGCTATCTACAGTGTTTAGTTTGACCATGACTATTTTGTGAAAGGTTTCTGTCTATGCTAGTATTTTAATGAAATATGTTTCTAAAATTTAAAGTTGAATCTATTAGATTAGAGCTTATTTGTACAATTGTATTGACTCTTGGGTCTGAACTTTGAAGTTTGAACTATACTTTGATCCTAGAGCCAGCAATCATGGAAATATTACATGAAGCTTTAGTTTCTCTTAGTGGAACAACTTTGTGATTGTAGCATTAAGCAATATATTTGAAATATATTTAAGGTTACATTTTTTTTGTCACTGGTGCTTTATAAATAGGCAACATTTTTTGTATTTGTATTCTCTAAAGCATATTGATTGTTTGTTTTATGCGCTATCTGATTCAGAACAAAAACTAGTGAAATTCTCAAGATTTTCATGGCTCCTCTTTGTCCGCAAACGATTAGCATTGCAGCATTTGCAAAGAAGGTAATACCATCTCATTAACTAGTTGATTTTCCTTAAAAAAAAACTAGTTGATCATGCATCTTGCTTTTATGTTACTCATTATGGTAGTTAAGTAGTTGATTACATGTAGAATAAGCGTTGTGCCCAGATGTAGTGGCTTCTTGCATCAACAATTCTAAGTAATAATATGTTAAGAGTTCCTTTTTTTTTCTTTTTTTTTTTTTTTAAATTTTCTTTTATGGAATCAATAACCTTCATTGAGAAAAAAAAAATTAAAGAATAGTTTAAGAGTTCTTGAAGTACAGATTCTTATAAAAAAGGTTCTGGAAGCACAAATGTTGATGGTCCAGGGGCAAGCCCTGTTATAAATTTACATGGGGATTTATAACCCAAAAAAAAAAAAAATGTACACGGTGATTAGAACCTACTTGGATCTGGTAGTAAGAAAGTTTTCATTTATACCTCCTTGTAGAATCTGTTTAAAGTATCATATTTATGTAGGTCATAGTCATACCACTTATGGAAGGGCCTTGTGTTTGACAGTTGTATAAAAGAGTGGAAAACAAGTGGTTTCTTTAGTTATGTTTTAATTTAAATGTGGTTATGCATGTCGAATTTAATACTCAAATAGGCATGCTATGTGTAGTACCTAACTAGACCACTGTTGCTTTTCTTTTCAATTGATGATAACTATAAGACATGCATGGAATTACTAAGCATCTTTGGTCGTCTCTCTCATTACACAATAGCTGTCGTCTCTCTCATTACTCAATAGCTAACTTTATTTTCAGATATCCGTTCTTGTATTACTTTTAGCTATCATGCAGTTGGATCTTGTTCTCTCTCTCTCTCCTTTTTTTTTTTTTTTTTTTTGTTGTTTTGAACAAGAGTTGGATCTTGTTCTTGAAAATTTTCTTCATGTAATTGGCCAAGTGCCTCGAAGCTTCTAACTTCCTTTTGATATTTCAGATCGTTTCTCAATGTGAAAGTCCACATGATGCATTTGCACTCAGTCATGTTATTGTTCTTGTTACCTCACAGGTACTGCACTGGCCATGTTATTGTTCTTGTACCTATATATTTTTTTTTGTTCCTTTTTCCTGAATGTCTTAAACCATATTTTACTATTAAAACCCCTGCATATAATGTCATGCGTGTGATGTAAAAATCAAGGGCCAAGTAAGTTCTGACTCCAAATTACGTCCCCAAACCTATCACAAGTGGCTTAGGCAACATTGGTAAGAGCGCATCTCCTAAACACACACATCGCCACTTAGTACACACACAAGAAATCACTCAAAGGGGAAGAAGCAAAGAACCAATATTGATGGTTAAGCATTTGGATGGGGCCAAAGTCAAAATTGTTATAACTCTTCACAAGTTTGATGACCAATCAAACTTGAAATGTTTCTAAGGAATATGCAACCGAAGCTAGGATTCAACATGCTCTCCTTTTAGAGCAAAGAGAGAAACTTTCCCCATTTTTAATTTTCATCAAAGTGTCTAATTTCTTGAAATTTACAAAAAAGGTCTTTAAATAGTCTTTTGTGGTTGATAACATAAAGGAACGAAACACAATTAAACTAAACCCTAAACACACCATAAAAACACCACCCCTAAATTGAAGCTCTTGTGTTTGGCGTCTTCATGTTGTCTTGGAGCTCCTTCGTCTACTTTTTCTCCTCCCCCGTGAACCACTCCAAAATGTTGAAGTGGAGATCTCTTTCTTCTGTGGGTGGCTCTAGTGGCATCAGTATGATCTTAAGCCATATCAGACGACTGCCCCATCTCTTTTAATCTTCTGTTGGAATTGGATAATCGTATTCAAAGTCCACTGTGGATTTAATTTTTTTTTTCTTTTCTTTCTTTTGTTGATAACTGGGAATAAAAGCTCTGCTCCCCTATATTTGGGGCACCTATGCCCGTCTAAGGCTCGGACCCCGAGACATAAAGGGTTTTTGGTATTTAAGCTCACCCAAAGGTTCGATATCAATTGATATTATAGTATAACTTAAAATATTTTCATAATTAACGGTAGAATAGTCCTGTATAGTTGAATGCTTATTTCTAAAAAAAAATAGGTTTATTTTCTTGGTTGGACCTCAGAATTGATTATATTTATTGAATTTGTTGCCTACTAGTAAGTGATAGGTGTAACAAGGCATTGTTTTCATTGTGTGTGTGTGTGTGTTTTTCATAATTTTGTATTTTCTAATACTTTTTTATACAGTAACTATTGTATGCTAAGGCTGGCGAATTGTGTTAACCAGGTCCCAAGTGCTATGGTACTTGTTCTTGCAGAGTTCCATCAAGCTTGCATCTACACAGTTCCGAAGCACATACAATACTCAGCGGTTAGTTCTTTCCGACTACTTAGATCGTCTTAATCTCTAACCATTGTTGATATGGTAGTTACCCTACAGCTTCATCGTTCTGCCTTCTCTTTGATGGCAGTTTGCTGTGTTCTTAATGAATGGAGTCTTGATTGACTATGATATTTTCTCTTGCCAAATATTTTGGGCCTTGCGTGATTGCATTTTAATATCTTAACACCGAAAATTTCATAGAAGAATCAGTATCTTGCTTGTGAATGCATTTCTTTTAATTTAATCTAGAAAAAGATTCTTTTAGCAAATTTTCGTGCTTTACTAGTTTCCAGGCTTTAGTGATCAGTCTCCTACAGCATGAAGTGTTGTATCGGAATTTGCTACTGTCCAATACATGTAAAATTAAGTTTGGAACAATTTGTGCTTCATGTGTCTAAAACATGGTAAGAAGAAAAATATATAATGTTGTTGCAAGTTAATGAGGAAAAATTTGTTTCTTTGAACCTTATTCCGACATCCAAGCAGATTAATCCTCCATAACTTGTTTAGGTTTCGAGATGGACAAATTCCACCTATTCATAGAAATTTGCTCATTTCAAAATTTAAACAACATTTGGATCAATACAAATAGTCTAGTGCGCTTATGCTGTAAATTTATTATGTTTATTTTTTTATTTATGTGATTACTCACTTGCATATTGTATAATTTTCACATATATTGCCATAGGCTGCATTTGAATCCAAAGAGTCATATTACAAAACTATTGGATTTCGAGAGGTCAATGGAAAATTGGAGAGTGCTGAGGATTATTTGATGCGGATAGAAGCATACGTGAAACTATATGGGGCATTGATTCAGGTTTGTCCCTTCTAATAGCTCGGGAAGTACCTTGAAATATTTCATCTTGTTGCTTATTATTTTAGAGATGTATATAATTGAGCTACTTTCATTATCTAGTTATACCCATGTTCAACAATTATGATATTAGTAATCTTTCTATAAAAGCAACTTATAAAAATGGATTTGGCAGACAGAAGTTCCTGGTGTTCGCAACTTACATGGTCTTGAGGAAGGTTGGGCATGGCTGGCAAGATTTCTAAATGCAGTTCCCCCTAATATATATACTGCAGCCTCGCTCAATGCATTCTTAAATGTAAGTTGAATAGAAGTTTAATTACTGAGAATTAAGCTGAAAAAAATCATGGTTTGACCACATTTGTATCATATAGGTAGCAGGCTTTGCACTGTTTAGAAAATATAAATCCCAGTTCAGGAAGCTTCTGAACATCATCTCTGACAACTTCTTGAGTGCACTAAGAGGAAAAGAGAACACAAATTTGAATCGGATAATACTGGACATTGAATCCTATTTGGAAGATCGGAAATTTCTTCAAGAACCAGAAGGAAGGGTCTTGGTGGGGGGTTCCTTGGCGTCCTGGGATGCGTTTCCAGAGCCAGATTACAAGCAAGATTCATACGGCCATTCAAGTAATTCATATTTTTATTGA ATGCCAAGTTTTGTTTTGGAATTGAGTCCTGTGAAGTTGACCCTTCGGTGTCCTTCTAAGGTAGGCCAAGTTACAGTTGACCCAGATCCTGATTTTAGCTTTGATGATTTGCGAATGGAACTTCATTCCTTGGAGGAGAAGCTAAAGATGTCCACGATGCCTTTCAAGAAAACATGTTCACGAGACTTCCCTGTCATAAAGACTATGAAGAGAAGCTCCAAGCCTTTTGTAATGGGCGTGTATGAGGATGAACTAAATGAAATATTTAGTGATGAAGTGGTTCGTGACCCAAGTTCAAATGCCAAGCGCTTCAATTGTGATGGAATTTTTCTTAGTGATAGTGAAGATTCTGATGATGAATCAACTCTTGAAGCACAAGCTTATCTGCAGGAGGACGTGGATTTAGTGGAAAGTTCTTTAGCTCAGCTAACACATGATCATATGCTTAATATAAAGGAGCAAATCAGGAACCAACTCGGAAGGTTGGAGACTGACCTTACTACTTTAAATGAAAAGTCAAGTGCTGCAATCTCTCAAATTGAGAAATACTATGAGGCAAGACGAGAAGCTGACCGGAGACTTGATACTCAATATCAACGTGAGATTGCTGAAGGCCTTGATAAGTACTTGACAACTGTTCAACATCATCACGAACAAATATCACAAAGAGAAGAAAGAAAAATAAGAAGTGATGCAGCTTTTGAGGAAGCCAAAAGAAAGGAGAAGGCCATTCTAGAAGATAAAAAGCGTCAAGAAAAGGTTAAAGCAGAAGCCGAGGCAAAAGCCAAAGCTGAGGAGGCAATGAAAGCTGCCATAGAAGCAGAGAGGAGAGTAATGAAAGAAGCAACTGAAAGGGAAGCCGCTGAAAACTTAAAAAAAGTTGATGCCGTACAAGTGCAAGAAACTATGGTTGGGGTGCTAACTACCAAACCAGTAAACTCAGTCGGCCAACCTAAAGAAACTGCTCTGGATAGAACACATGTGTCAAGATCACCAGATAGCATGGTTAGAGCCTCAAAAAGTGCTTTGACTTTAGAGCCGGAGAGACTACAAAAACTTAGGGAGGTAGAGGAGGGAAACCAAGCATTGAGATTGAGTTCAAATAAGGATTTTAGCACCTATGAAAGGCATATTGCTAGGCTAATCAAACAAATAGGGGGGACAAAAGAGAATGTCAGAACAAAAACTAGTGAAATTCTCAAGATTTTCATGGCTCCTCTTTGTCCGCAAACGATTAGCATTGCAGCATTTGCAAAGAAGATCGTTTCTCAATGTGAAAGTCCACATGATGCATTTGCACTCAGTCATGTTATTGTTCTTGTTACCTCACAGGTCCCAAGTGCTATGGTACTTGTTCTTGCAGAGTTCCATCAAGCTTGCATCTACACAGTTCCGAAGCACATACAATACTCAGCGGCTGCATTTGAATCCAAAGAGTCATATTACAAAACTATTGGATTTCGAGAGGTCAATGGAAAATTGGAGAGTGCTGAGGATTATTTGATGCGGATAGAAGCATACGTGAAACTATATGGGGCATTGATTCAGACAGAAGTTCCTGGTGTTCGCAACTTACATGGTCTTGAGGAAGGTTGGGCATGGCTGGCAAGATTTCTAAATGCAGTTCCCCCTAATATATATACTGCAGCCTCGCTCAATGCATTCTTAAATGTAGCAGGCTTTGCACTGTTTAGAAAATATAAATCCCAGTTCAGGAAGCTTCTGAACATCATCTCTGACAACTTCTTGAGTGCACTAAGAGGAAAAGAGAACACAAATTTGAATCGGATAATACTGGACATTGAATCCTATTTGGAAGATCGGAAATTTCTTCAAGAACCAGAAGGAAGGGTCTTGGTGGGGGGTTCCTTGGCGTCCTGGGATGCGTTTCCAGAGCCAGATTACAAGCAAGATTCATACGGCCATTCAAGTAATTCATATTTTTATTGA ATGCCAAGTTTTGTTTTGGAATTGAGTCCTGTGAAGTTGACCCTTCGGTGTCCTTCTAAGGTAGGCCAAGTTACAGTTGACCCAGATCCTGATTTTAGCTTTGATGATTTGCGAATGGAACTTCATTCCTTGGAGGAGAAGCTAAAGATGTCCACGATGCCTTTCAAGAAAACATGTTCACGAGACTTCCCTGTCATAAAGACTATGAAGAGAAGCTCCAAGCCTTTTGTAATGGGCGTGTATGAGGATGAACTAAATGAAATATTTAGTGATGAAGTGGTTCGTGACCCAAGTTCAAATGCCAAGCGCTTCAATTGTGATGGAATTTTTCTTAGTGATAGTGAAGATTCTGATGATGAATCAACTCTTGAAGCACAAGCTTATCTGCAGGAGGACGTGGATTTAGTGGAAAGTTCTTTAGCTCAGCTAACACATGATCATATGCTTAATATAAAGGAGCAAATCAGGAACCAACTCGGAAGGTTGGAGACTGACCTTACTACTTTAAATGAAAAGTCAAGTGCTGCAATCTCTCAAATTGAGAAATACTATGAGGCAAGACGAGAAGCTGACCGGAGACTTGATACTCAATATCAACGTGAGATTGCTGAAGGCCTTGATAAGTACTTGACAACTGTTCAACATCATCACGAACAAATATCACAAAGAGAAGAAAGAAAAATAAGAAGTGATGCAGCTTTTGAGGAAGCCAAAAGAAAGGAGAAGGCCATTCTAGAAGATAAAAAGCGTCAAGAAAAGGTTAAAGCAGAAGCCGAGGCAAAAGCCAAAGCTGAGGAGGCAATGAAAGCTGCCATAGAAGCAGAGAGGAGAGTAATGAAAGAAGCAACTGAAAGGGAAGCCGCTGAAAACTTAAAAAAAGTTGATGCCGTACAAGTGCAAGAAACTATGGTTGGGGTGCTAACTACCAAACCAGTAAACTCAGTCGGCCAACCTAAAGAAACTGCTCTGGATAGAACACATGTGTCAAGATCACCAGATAGCATGGTTAGAGCCTCAAAAAGTGCTTTGACTTTAGAGCCGGAGAGACTACAAAAACTTAGGGAGGTAGAGGAGGGAAACCAAGCATTGAGATTGAGTTCAAATAAGGATTTTAGCACCTATGAAAGGCATATTGCTAGGCTAATCAAACAAATAGGGGGGACAAAAGAGAATGTCAGAACAAAAACTAGTGAAATTCTCAAGATTTTCATGGCTCCTCTTTGTCCGCAAACGATTAGCATTGCAGCATTTGCAAAGAAGATCGTTTCTCAATGTGAAAGTCCACATGATGCATTTGCACTCAGTCATGTTATTGTTCTTGTTACCTCACAGGTCCCAAGTGCTATGGTACTTGTTCTTGCAGAGTTCCATCAAGCTTGCATCTACACAGTTCCGAAGCACATACAATACTCAGCGGCTGCATTTGAATCCAAAGAGTCATATTACAAAACTATTGGATTTCGAGAGGTCAATGGAAAATTGGAGAGTGCTGAGGATTATTTGATGCGGATAGAAGCATACGTGAAACTATATGGGGCATTGATTCAGACAGAAGTTCCTGGTGTTCGCAACTTACATGGTCTTGAGGAAGGTTGGGCATGGCTGGCAAGATTTCTAAATGCAGTTCCCCCTAATATATATACTGCAGCCTCGCTCAATGCATTCTTAAATGTAGCAGGCTTTGCACTGTTTAGAAAATATAAATCCCAGTTCAGGAAGCTTCTGAACATCATCTCTGACAACTTCTTGAGTGCACTAAGAGGAAAAGAGAACACAAATTTGAATCGGATAATACTGGACATTGAATCCTATTTGGAAGATCGGAAATTTCTTCAAGAACCAGAAGGAAGGGTCTTGGTGGGGGGTTCCTTGGCGTCCTGGGATGCGTTTCCAGAGCCAGATTACAAGCAAGATTCATACGGCCATTCAAGTAATTCATATTTTTATTGA MPSFVLELSPVKLTLRCPSKVGQVTVDPDPDFSFDDLRMELHSLEEKLKMSTMPFKKTCSRDFPVIKTMKRSSKPFVMGVYEDELNEIFSDEVVRDPSSNAKRFNCDGIFLSDSEDSDDESTLEAQAYLQEDVDLVESSLAQLTHDHMLNIKEQIRNQLGRLETDLTTLNEKSSAAISQIEKYYEARREADRRLDTQYQREIAEGLDKYLTTVQHHHEQISQREERKIRSDAAFEEAKRKEKAILEDKKRQEKVKAEAEAKAKAEEAMKAAIEAERRVMKEATEREAAENLKKVDAVQVQETMVGVLTTKPVNSVGQPKETALDRTHVSRSPDSMVRASKSALTLEPERLQKLREVEEGNQALRLSSNKDFSTYERHIARLIKQIGGTKENVRTKTSEILKIFMAPLCPQTISIAAFAKKIVSQCESPHDAFALSHVIVLVTSQVPSAMVLVLAEFHQACIYTVPKHIQYSAAAFESKESYYKTIGFREVNGKLESAEDYLMRIEAYVKLYGALIQTEVPGVRNLHGLEEGWAWLARFLNAVPPNIYTAASLNAFLNVAGFALFRKYKSQFRKLLNIISDNFLSALRGKENTNLNRIILDIESYLEDRKFLQEPEGRVLVGGSLASWDAFPEPDYKQDSYGHSSNSYFY Homology
BLAST of HG10015159 vs. NCBI nr
Match: XP_038892151.1 (protein GLE1 [Benincasa hispida] >XP_038892153.1 protein GLE1 [Benincasa hispida] >XP_038892154.1 protein GLE1 [Benincasa hispida]) HSP 1 Score: 1124.8 bits (2908), Expect = 0.0e+00 Identity = 593/642 (92.37%), Postives = 614/642 (95.64%), Query Frame = 0
BLAST of HG10015159 vs. NCBI nr
Match: KAA0034248.1 (protein GLE1 [Cucumis melo var. makuwa] >TYK15672.1 protein GLE1 [Cucumis melo var. makuwa]) HSP 1 Score: 1094.7 bits (2830), Expect = 0.0e+00 Identity = 574/641 (89.55%), Postives = 606/641 (94.54%), Query Frame = 0
BLAST of HG10015159 vs. NCBI nr
Match: XP_008446132.1 (PREDICTED: protein GLE1 [Cucumis melo] >XP_008446133.1 PREDICTED: protein GLE1 [Cucumis melo] >XP_016900272.1 PREDICTED: protein GLE1 [Cucumis melo]) HSP 1 Score: 1094.7 bits (2830), Expect = 0.0e+00 Identity = 574/641 (89.55%), Postives = 606/641 (94.54%), Query Frame = 0
BLAST of HG10015159 vs. NCBI nr
Match: XP_004135501.1 (protein GLE1 [Cucumis sativus] >XP_031741160.1 protein GLE1 [Cucumis sativus] >KGN51729.1 hypothetical protein Csa_009352 [Cucumis sativus]) HSP 1 Score: 1085.5 bits (2806), Expect = 0.0e+00 Identity = 568/641 (88.61%), Postives = 607/641 (94.70%), Query Frame = 0
BLAST of HG10015159 vs. NCBI nr
Match: XP_023544608.1 (protein GLE1 isoform X1 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 995.3 bits (2572), Expect = 2.4e-286 Identity = 538/645 (83.41%), Postives = 580/645 (89.92%), Query Frame = 0
BLAST of HG10015159 vs. ExPASy Swiss-Prot
Match: Q0WPZ7 (Protein GLE1 OS=Arabidopsis thaliana OX=3702 GN=GLE1 PE=1 SV=1) HSP 1 Score: 419.1 bits (1076), Expect = 9.2e-116 Identity = 275/651 (42.24%), Postives = 399/651 (61.29%), Query Frame = 0
BLAST of HG10015159 vs. ExPASy Swiss-Prot
Match: Q3ZBK7 (Nucleoporin GLE1 OS=Bos taurus OX=9913 GN=GLE1 PE=2 SV=1) HSP 1 Score: 94.4 bits (233), Expect = 5.2e-18 Identity = 72/232 (31.03%), Postives = 118/232 (50.86%), Query Frame = 0
BLAST of HG10015159 vs. ExPASy Swiss-Prot
Match: Q53GS7 (Nucleoporin GLE1 OS=Homo sapiens OX=9606 GN=GLE1 PE=1 SV=2) HSP 1 Score: 91.7 bits (226), Expect = 3.4e-17 Identity = 68/224 (30.36%), Postives = 114/224 (50.89%), Query Frame = 0
BLAST of HG10015159 vs. ExPASy Swiss-Prot
Match: Q5RAS2 (Nucleoporin GLE1 OS=Pongo abelii OX=9601 GN=GLE1 PE=2 SV=1) HSP 1 Score: 91.7 bits (226), Expect = 3.4e-17 Identity = 68/224 (30.36%), Postives = 114/224 (50.89%), Query Frame = 0
BLAST of HG10015159 vs. ExPASy Swiss-Prot
Match: Q6DRB1 (Nucleoporin GLE1 OS=Danio rerio OX=7955 GN=gle1 PE=2 SV=2) HSP 1 Score: 85.5 bits (210), Expect = 2.4e-15 Identity = 113/408 (27.70%), Postives = 180/408 (44.12%), Query Frame = 0
BLAST of HG10015159 vs. ExPASy TrEMBL
Match: A0A1S3BEB8 (protein GLE1 OS=Cucumis melo OX=3656 GN=LOC103488947 PE=3 SV=1) HSP 1 Score: 1094.7 bits (2830), Expect = 0.0e+00 Identity = 574/641 (89.55%), Postives = 606/641 (94.54%), Query Frame = 0
BLAST of HG10015159 vs. ExPASy TrEMBL
Match: A0A5A7SUC8 (Protein GLE1 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold35G001690 PE=3 SV=1) HSP 1 Score: 1094.7 bits (2830), Expect = 0.0e+00 Identity = 574/641 (89.55%), Postives = 606/641 (94.54%), Query Frame = 0
BLAST of HG10015159 vs. ExPASy TrEMBL
Match: A0A0A0KS46 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_5G593410 PE=3 SV=1) HSP 1 Score: 1085.5 bits (2806), Expect = 0.0e+00 Identity = 568/641 (88.61%), Postives = 607/641 (94.70%), Query Frame = 0
BLAST of HG10015159 vs. ExPASy TrEMBL
Match: A0A6J1GYI2 (protein GLE1 isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111458652 PE=3 SV=1) HSP 1 Score: 988.8 bits (2555), Expect = 1.1e-284 Identity = 536/645 (83.10%), Postives = 577/645 (89.46%), Query Frame = 0
BLAST of HG10015159 vs. ExPASy TrEMBL
Match: A0A6J1K7Y4 (protein GLE1 isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111492491 PE=3 SV=1) HSP 1 Score: 985.3 bits (2546), Expect = 1.2e-283 Identity = 535/645 (82.95%), Postives = 576/645 (89.30%), Query Frame = 0
BLAST of HG10015159 vs. TAIR 10
Match: AT1G13120.1 (null ) HSP 1 Score: 419.1 bits (1076), Expect = 6.6e-117 Identity = 275/651 (42.24%), Postives = 399/651 (61.29%), Query Frame = 0
BLAST of HG10015159 vs. TAIR 10
Match: AT4G05523.1 (BEST Arabidopsis thaliana protein match is: embryo defective 1745 (TAIR:AT1G13120.1); Has 30201 Blast hits to 17322 proteins in 780 species: Archae - 12; Bacteria - 1396; Metazoa - 17338; Fungi - 3422; Plants - 5037; Viruses - 0; Other Eukaryotes - 2996 (source: NCBI BLink). ) HSP 1 Score: 94.4 bits (233), Expect = 3.7e-19 Identity = 71/213 (33.33%), Postives = 107/213 (50.23%), 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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