HG10010568 (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.ATGACTATGAACATATCGTTTCCGGATTTCGATTGTTACAAGGTCGCTCCGGTGTCTTTCTCTTCTCCCTGCGCCTGCCCTTTGCGTCCTTCGTCCTGTAAACCATTGCCTCTCCCTCCATCCTCATTGAAATTCAATCGCTTGCATTTTGTCTTACATGGCCAAAAGGGCCTGCTTAGAATTAACAAGAGAAGCGATTTGGAGAGACGACACATTGTGGCCGTGGCACATGCCGAGCCCCACCGGATTGACGGGAAAGAGCCCGAAGAGGTACGTTCGATTCTGTGATTGTAAGATTGGTACTTTACTTTGCTGTTCTATCTCTCTTTCAGTATATGAGTTTATTTTATTAGTTTGTTTATTGTAATTGTCTAAGGGGTGGAAGTAGAGGATTCAATTGGGTAATTTTGTTGATTTTGGTGCTAAATTGACTAGCATAAGGTAGCTCTTACATGGTGTGGAGAAGCATATTTGGTAGGTAAGGGTATTGGTTTATTAATTTTCTTGTTTCAATGTGGGAATTTGAGGCTTAACTAGTTAGGAAAGTGCTGGTCATTTCTGAAATGAATGGTTGCAATTAGGGGTAAGTCGTTGCATTGTTATTCAATTTGGAGAGGTTCAAGGTTCATTTATAATTTATATGTTGCTGCTCAGTTGGAATTGGTTCTCTTTCTAGGTTACTACACTTGGGGAATAAAAAGGTTTATGAATTTTGGCCACTTTGTGAGCTAGAGTACTATACACATACTTATAACTGCCTTCGTGGCTCAAATAATGGTTTTGTACCTAACCAAGTTTATGTTGTGAGCATTTCTTGTATTGAAGTAATTACTGAAAGAGTGGCCATCTTGTAGGAGGTTGAAGGAGGCCAACAGTTATCATTTCAAGAGGATCCAATCTCAGAACATCAACATAAAAAAAATCAATTGAAGAAACGCATCATTTTTGGGCTTGGCATTGGGATAACTGGTGGCCTTGTAGTATTGGCTGGAGGATGGGTATTCACTGTGGCTGTCGCTGCATGTACTTTTGTTGGTGCACGTGAGTATTTCGAATTGGTCAGGAGCCGTGGGATCACTGCAGGAATGACACCCCCACCTCGATATGTTTCACGAATTTGCTCAGTTATTTGTGCTTTCATGCCCATTCTTAGCTTGTACGACTAGTCTTCGTCTCAATATTTTTACTATTTCACAAATATAGGAAATTCTTTTTATAGGAAAATAATCATTAATTGCTTTTCAGTTTCATTTTGAATCTTTTACTCATTTTTTTTTGTTGTACTGGAGAAGATTGCAATAGTATTCACATTTCCTTGCCCCTTATACACTTTTCTTTGGGTAATCCTCATTATTTGAATTTAATATTGAAGAATGACAATGTAGATGATCTTATTAATCTACCACCTCACCACACTTGTGCTTAATTGAATTGCACATATTATTAATTTGTATTGGAACTATCCTTATTTGATGAAAAATTAGATATTATGAAATATTATTTCCTTGAAGTTTGAAACAATTGCAGGTTAAGATGGCTTAGTTAAATGGATTACAATTTTTTTAGCCCTATGGCTATTAAATTTATATGCCTCTATTATTATTTGAAATTTCATCTTCTATTTGATAGTGATAGCTGCTCCGCTGGTATAACGATGTCGGGGTGTCTTCTTCTAAGTTGATCCTTCAACCAATTCATTTTATGAATCCCCGCTGCAGAGACTACCAAGGTGTCGAGTTTGTGGTGGAAGGTCTTTAAAAGCTTGCCACTGGGGTTGTGTTGGGCAGCCAAGATCTATTGTTGGGAGTTGGTTAAAAGTCTTTGGGGGAAGCTTAATGTGTAATGGACTGAGCTTGAGTCAATAGGTGCTGCAAGGACATTTTTATTTTCTAGGATGGTCGAATGTTCCAGTGTCTTGACATTGTGAAAGGTGTTTTCACTATCTCCCTTTCTCTCATAGGGTTTGGAGATAGGTTAGGTTGGATCAATGGCGTTTATGGACTCTCCAACTTGAAAGGTAGGGAAGAGTTCTGGGACGAGTTAGGGAGTTTGTTTGGGTTATGTGGTTCTTGCTGGTGTTTGGCTGGGAATTTCAATGTGGTTAGTTGCCATTTTCAGAAATCAACTAGAGGTAGGATAACCTAATCTATGAGGCTTTTTAGTAGGTTTGTTAATGACTGGGGTCCCTATGATCCTCCATTGACAAATAGAAAGTTTACGTGGTCTAATTAGAGCATGTGTACTAGAATAGATAGATTCCTGGTTTTCAAAGGGTGGATGGACTCCTTCTCTAGAGTTCGACGATCTTTAGGTCCTAGACTCACCTTTGATCATTTTTTTTTTGAAAAGGAAACGAGTCTCTTCATTGATATAATGAATTAAGACTAAAGCTCTATGTACAAGATTGATACCAAAACAAGAGAAACAAGCAAACAAAGGATCAGTGAGTGCACTTGGACATCTCAACTAGGTTGACACCCCCTTAGCACTCTCATCATCTCCACCCGTAAATGACAGTCCATGGAACTATTCACCATTATCTAAGTACTCCTTTGATCATTGATCGACATGTTTAGACTATGGATTGCTGAAGTAGGGGCTAACCACTTTCAGATTTGGAAACATGTGGCTATTTCATCCATCTATTAGGCCGTCACTTTCCTTCTTGGTGAGCGGTGGAGGCCATTAGCAAATAGGAAGATTTTTGTTTTTCTGGGGAAGCTTCATCATTTAGAGGAGTTGTTAAAAGCTTGAATTTGTGAAGTTTTTGGTGACTTGAAGTGTAAGAAATAGGATTTACTAAATCACATATTTTGGATAGACTGAGAGAGGTTGGCCCTCTAAGTTCTAAGCAAAGTGAGGAAAGGGTGTCTCTGAAAGTTCATTTTGGAGAGGTGATTAAAAATGAGACAATCAGCTGAAGGCAGAAGGCTATGTTTAAGTGGGCTAATGAGGGTAATAACAGGACTACTTATTTTCATAGGATTGCAAGCGGGAGGACTCGAAATGCCATGGAGCCCCTTGTTAGCGAAGGTGGCAAAGCCTTGCAAGAGGATAAAGAGATTGAAGAGGAGGTTATCTTTTTTCTTTACTCTTTATGGTCGGACTATTTCTCCAAAACCCTTCCTTGTGGGTCTTGACTTGTCTCACATTGGCTAAAGATAGAGTTATGTTGGACTCCTTATTTCCTCTAGAAGAGATCAGGAGAGTAGTCTTTGGTTTTGACTGAAAAAAATCTCTAGGCACAGATGGTTTCAAATAGGCATTTTTTAGGACAATTGGGCTCGTAGAAAATACGACCACTGGGGGTGTCTTATGAGTTTTATGAAAGAGGAGTTATGGACAAAACTATGAATGAAACTTATGTTTGTCTGGTCCGTAAGAGGGAAGGCTGAAGAGGTCAAGGATTTTAGATCCATTAGTTTAATTACTAGTGTGTATAAATTTATGACCAAGGTCTTGGCGGACATGCTTAGGAAAGTCCTTTCGAAGATAATTTATGATTTTTAAGGAGCCTTTATTGTCAGTAGGCAAACATTGGACAAGGCTCTTATAGCCAATGAGGCCATTGAGGATTGTCGAAGCCGTAAGCAGAAGGGGTTTATTTTTAAAATTGATTTTGGAAAGGTTTACGATTATTTGGATTGAGATTTCTTGGACAGAGTCTTGACAAAGAAAGGTTTTGAGTATAGATGGAGATCATGGATTTGGAGTTGCATTTGGATGGTTAGGTATTCGATTTTCATCAATGGAAAACCCCGAGGCAGGATTAAAGCCACTCGAGGTCTATACAAGGTGACCCTGTCGCCCTTTCTTTTCTCCTGGTGGTAGACATTATAAGTAGGATTGTTTCTAGAGGAGAGAGGAGAAGGGTGTTGTTGAGGGTTTCCAGGTGGGTAAGGATTATATCTCTGTCTCATCTCTAGTTTGCCGATGACACCAACTTTTGTTTCGTAAAAGAGGAGTTTTTCCATCAACCTTAACCGGATTCTGTAGATCTTTGAATCAAATGTCTAGTTATTGATATTCAGTGTGACCACTCTAAGTAGGATTGTTTCAATGTGGGCTCTTTTATTATTTTATTTTATTTTATTTTTATGCCTTTGTAATCTTTCACTTTTTCTCAAAGCTCAATTTTTTATAATAAAAAAATAAATAATTTTCATCTGTAAACAAACACTAAGTTCTTATATTTATGCAGTTACTTTGGTCAGCTTGATGTTGCTATCACATTTTCTGCCTTCATTCTTGCAATTACGTTGCTTGTACAAAGAGGCAGTCCCCGATTTGCTCAACTGAGCAGTGCAATATTTGGGCTTTTTTACTGTGGCTACCTTCCTTGTTTCTGGGTCAAACTTCGTTGTGGTTTGGCCGTTCCAGCCATAAACACTGGTCAGTCATTTTTGCTATTACTTTTTTGGCTTCAAATTGTAAACACACATTGAATTATCTTGTGGACACCATCTTTGATATTTGATGTGAATCACCAATTAATGAAAAAGCACTTTGATGGAGCTAGAAGAAAAAAAAAATGTACTTATTATTGATTTTAATGGAAAGATATACTTTCTTACTAGATCATGCTCTTTGGCAGAAATAGGAGCAGGATGGCCATTTCTTCTTGGAGGCCGAGCTCATTGGACTGTTGGCCTTGTTGCAACCTTGATTTCTATGAGCAGTATAATTGCAGCTGATACATTTGCTTTTCTTGGTGGCAAGGTAAGTTCCTCGTCTATCTTCCATGATGCGTATGGTGCTTCATTGTAATTATCTTTTGGAAGTAAATAGTTGTTCTTCAGGCTAGTAAATGAGCTAAGTTATTGCGGAGGGTTGGACTATGGAACCCTTGATTGATTTGGGTGGAGAGAATTTTGAGGTTCACCAAATATATGATTAGAGAATATTGGTAGCTATTGTGAGTTTTGATGGAGAATCCATGTCATGGTATGGTGAGAAGAAACAATTACTAGCAAGATATAAAGAGCAATTAATCTTGAGATCTCTACCTCTGCAAGAAGGGAGGACTGTGGCAAAATCTAAAAAATTCTTGGAGATATTAGCCGGGTCACTACTAGTGTACTAGATTGCACAAAACCAACAATGTAATTCAGATAATGGAGTGGGTGCCGTGTAGGGATGGCAACAGGGTGGGGGCAGGGCCAGGGATGCACTCTCCATCCCCATCCCTGCCCTATTTGGCGATTGGGCCCCACAGGAAATAATCTATGTTTTCCATTTTTATTTCAAGCCCACAAATGAGTCTTCTACATATTTCAAGCCCACAAGTGAAGGGGAGTGTTAGATGATATAAATATTAAATTTACCTTTACCCATCAGCTTAAGCTTTTGGGTCAATGGGTGATTTAAGACTCATAGACTAAAAAGGTAAATTTTTCTATTTTGTCTTATTGAGAAACCAAATTTTATTGGGGAAAAAAAATGAAAGAATACAAGAGCAAACAAAAAAAGCCTAACTACCAACATGAGTATAGGTTAACTGGCATAAAGTATGTACCCAATCATGTGGTCAAATGTTCAAATTTTCCGCCTTGCATCTTTTTTTTTTTAATTTTTAATTTTTTATATAGATCCGTGAGTGTCCGGGCCAGCTTACGCGCACCTCGACTAATCTCACGGGACAACCCACCTGACCCTACAACATTTGGGTGTTAAGGAAACTCGTAGGAAATTAATTCCTAAGTAGGTGACCACCAGAGATTGAACCCCTGAGCTCTTAACCATTTATTGAGACTATGTCTCCTTTTTTACCACTAGTCCAGTCCATGATGGTTCCACCTTGCATACTATTGAACTAAAAAAAAAAAAAAGGAGCCGACTACAAAAAGGGGCTCTAATCCAACAAAATTAGACCTAATGGATAGTTACAAAATAACTTTGTAGCTGAAGCTTAGTGACCTAGCATTACTTAAAGATCTCTCCAACTAGGGACTTTATTAAAGCACTTCTCAAATCTGATGGTTTTGATGTAGCGTCTCAAGTCCCCCTCTCAACTGTGCAGCAAATGTTGATTTTGAATGAAAAAACTAGAGCAAGCGTGGACATTCGAAAGAGTACCATCATGACTCTTGGGGGATCTTAATCAAATGAAGGATCTATTTGATTGTGAAGCTTGGAAGGCCTCGATTATTTTTTCTTGAACAAATGAATACAAGGCTAGACTACATACCAATTTCAAGGAAAACAAAAGGAAGGAAATAACATGCAAGGAAACAATATATTTATCACCTAAGAAGCTTGAACATGAACATGGGATATGGATATGGGTAGGACATGACACGACACGACAGACACACAACACATCAATTTCTATAAATGTAGGATATAGGCACATTGGAGGTACATTTTTTTTTATGTATAGGCAAGACATAAATTTAGAGAGATTGGGCCAACCTCTCACGTGCTCTTCCGACGGCAAATCTTAATGATTCCCCTGATTATTGGTGCTGGAGTTTAGATTAGGATGGATTTTTTTTCATCAAAATCCATTTCCATTTTGTTATCTTCGATGGGAGATTTGGGCTGTAAAGATCTATACCGATCTATTTGGAAAGGAATTCACCTAAAATATTGAAATTCTTTATAGGGGAATGGAGGCGCATATGCATTAATACTCACGACACGACAAGCTTCAAATACGATCTTCTTGGATATCCATCTCACTAAACTGCTGTATCTTGTGCAAAGTCGATTGGGAATCTCATGATCATCTCTTCTCTTAAGTTTTCGTGCAAACAAACCAGAATTTTTTGGGACTTCATTCTTGTTGAGTTTGGGTGGTAGATCGCCTTCCCTGTAGCTGTTTGGTACATCCTCTCTCTTGTGTTCATTTGGTTATCCTTTCAAGTAGGAGAAGAAGATCCTCTAGCTGAACTTAACTTGGGTTTTTTTGTGGTCTATTTGGCTAGAGCGTAACTCTTGTATCTTCACAAATAAGGAACAAGCAGTGTTTTAAAAAGCCCTCATGGGCGTGTGCCTAAGCTTAAGGCGCTGGTCTTCAAGGCGCGGCTCACAAAATAAGGCACGCCTTAGGCGCGCGCCTTTTGTGAAGACGCAAGGCTCACAGCCCTAGGCCTTAGGGCTTTTTTATTATTTTTAAAGTATAGTAATAATTAGGGTTTTTCCTTCTTTATTAACTAAATAAATCAAATTTACTAAGCCTAAATTCTTAAATCGCCGATTGACCCAAAAACTTAAACTTATAGGTGAAGGCAAATTTATTTAATATCATCATGATGAAGAGCCAAACAAGTGGAAATAATATTAATTGGGGAGGAAACAATGTTGCAGGGGGTTGAACTCAGGACATCCTGAACCAACTTGCTCTGATACCATATTAAATCGCCGATTGACCCAAAAGTTTAAGCTTATAGGTGAAGACAAATTTATTTAATATCATCTAACATAAATGCAAAATTTCTTGTGTTTAGGGTCTTTTTTTTCCTTTCATTTTTCTACGTCAACTATGCTTTCTCTTCTTTATGCATTACTTTTATATATAGTGTGCCTCACAAAAAAAAGAAATGTTACTATTTATTAATTTCATTTTATCAATGAAATATTACTATTTCCTATAAAAAAAAGAAAAAGAAAAAAGATATGACACAAATTTAACATGAAAGAATTAAATGTGCTCATAACAGTTAGTAGTGTAGACTTCCCCCACAATTTATTTCTGTCTTTCAAATGAGTTTTTAAGCTTGGGTTAAATTTTAGGGCTGATCATCCTAAGATAAGTAATGGGATGGGTATTGGACGTATTATCCTGAGCAATGTTAGATGTTTCTTTTTAAATTCTCAATTGATCTTTTTTGGTTGGTACATCCGGCCGTTTCCATGCTTGTCCTTGACTGCATGAAGTTGAAAAAAAGTAAAAATAAAATAGGACACCCTTTTTCACGTGTCCGAAGCGTGTATGATGTAATTGTGTCCGGCACATGTTTGACACGAATATTCAGTCATAAAGAGAGTGCCTGTGCTTTCCTAGCTTAAAAATGGATTGAAATATAGGTGTGCAATATAATTTGACATAAGGAACTGTGTTAATTCCATTCAGAATCAATTTTCATAATAACAACTTGGAATGAAGATCTTTTTTGGCTCAAGGATAATAACGTGAGGCCATCAACCAATTGTGAAGGTGTCCTCTTGATAGGCGAAAAGGCAAATGTAACTCCCACCAGTTATGTCGGGGATTTTTTTTTTTTTTTTTTTGGGGGGTGGGAGGGGGTGGGGAAGTAGCATATTATATGTAGAAAGGAATAGGTTATCTTTTGCTTTCGTGTCATTAGTGTGAGTGGCATAAGGGAAGGGATCGAAGACTGACCTTGAATTGACTAAAAAACGTTTTCTAGTATTTGGGTGCATGTATCCTCCTCCTGGGACTGGGAGTACTATCCATATAGCTACGCATCTGATGTCATGTTATTTAGTAGGGTTGCTGCCTTGAGTAATAATTTAGCATTTTAATTTGTATTATTAACTACTATGTAACTATATTACATGCGCAGAAAACTACCAATTTTGCAACTTAATGAAATCTCGTGTCCTTGAGTGGAGATCTTATGATTTCTCAGTGCTTTCCTGCAGGCATTTGGTAAGACCCCGCTTACAAATATTAGTCCAAAAAAGACTTGGGAGGGAACTATTATGGGCTTGGCTGGTTGCATAGCTACATCTGTCATTCTATCAAAAATTCTTTGCTGGCCATCTTCTATGATTAGGTATGTAATTCTTTAATTGCAATTATCAAGTTTATGGCCATGATTTTCTATATTTGTTTTTTCTCTAGCCACTTTGACATTTACATTTAGGCCTACAAACACTTCCACCGGTATTTGGGTTTTTTTTAGTATATGATTGGCTGAGTTGGGATTAGAGTTAGTCGTTAGTGATGATCAACGAAGTTGGTCTCCAAAGGTGATCGTTAGAGTTGGCCACTGAAGGTAGTTGTGCGGAGGTGGTTGTTGAAGTTGATCGCTAGAGGTGGTATTTGTTGGAGGTGGTTGTCGGAGCATGTCACTGGAGTGAGGCAGTGGTTGTTGTTGAAGTTGGTCTCTGGCACCACTGGAAACATTAGGGAGAAATGGGTTGAGTTGGGGTGAGTTGGTAATAACCAACTTTACAACTAAGTTAGTAGACGAAACATTGAGTTTGAGATTTTTACCAACTCAAGTTGGTGAACCAAACATCCCCCTTATATTTAAAGTGAATTAATGAGGGTCTTCAATTTGTTCTTATAAATTTGTAAATATGAATTGATAAATAAAATTTAGGGAAAATATCCATTTATACTACTTTGATGGTTGTATCAATTAAAACCTTGAACTAATAATTGTATTAATTTAAACCCTAAAATTTTGTAATTGTATCAATTTTGACCCTCCAAATTTCATTCGAAACACAGTGTGAAACTTATGATCTGTATCAATTACACTCCTAAATTTTCACAAGCGAATCAATTTTGACTATTCATTATAATTACCTTTGAAAACCATCCATACATCAATCCTCACACGTGTGTAAACTTCTTCAAATGTTGGTTTCACAAAATGGGGGATTAGAATTGATGCATGGACGATTCTCATAGGAAAACTTGATTGAGAGTTTAAATTGATTCACTTATGAAAGTTTAGGAGTTTGATTGATACAATTATAACTCACGTGATATTTTCCCGAACAAAACGTAATATAGGGGGTAAATTGATACACTTACAAAGGTCAAAGTTTAAATTGATTCAATTATTAGTCCAAGGCGATACACTCCCAAAGTTCAGGAGTATAAATTGATAACTCCTAAAATTTTAGCAAGGGTATGATTTATTAAACAAAACGTACGTGTCATCCATGAGAGACTAAAAAGAAATTCAAATTCTCTTAAAAAACCAAATACAGATTTTTCATTTATGGAAAATCTGAATCAAACTGTCCAAAGGAAAACTATTAATATTCTTGATTACCATGGTAGTCTGTTTGCATATCTTGCTGTTGCCCCCAATTATATTCTGTAAATTATCTTGTGCCTTTAGTCTTATGCAGGTTATTTTTTGCAAGATTTTGTTTGGGGTTTGTAAGTGCATTATATATACCAAGTGAATTTGAACTTTGATGACTAGTTAATTTGATCCTATAGGGTTGGTGTTTTTAGTCCTTTGAATGTAGTTTCCCACTCTAATTGCTCATTATAAAACTGTTATATTCAACTGATGATCTTCATAGTTCCATAAAGTAACTGACATGTGTTTGGCATGTTTTATTGGACAGTGCAATAGCTTTTGGATTTCTGAATTTTTTGGGTTCTGTTTTTGGTGATCTTACCGAGTCAATGATAAAACGTGATGCTGGTGTCAAGGATTCTGGATCTTTAATCCCTGGACATGGTAAATTCCATTTTCTCATGGTCAACATCTATGATGTATTGAAATTTTATTTTGTGGTACAAGTTTAATATATCGAGCCATCGTTGACTTGCTTTCATATAGTTTTAAATAGTATTTTTAGCAAAGCTTTGACTGTCTCAACTTGGTTGGTTCATCTTATGGTCTTAGGTTTGTTGAAAGAAGTATGGGGGCTGATACATTTTAATCTCTCCCGTTAGGCTCATGAATTCAAATGTTTGGGTCCAATAATTTGTTATCACCAGAAGCTAGGGTTTCTCCTTTGGGGCTGGATCAATTAATGCTTCATTTTCTCTTTACTGCACAAAGAAGGCTGAGGGAACAATGGTTTTTTCCTTGTGAAGAGACGACATATTTTTATTCACAGAGATGTCTGAAAATGTTCCAACTGACCACCGATTGAAGTTTCATCAATCCTCTGATTTTAATGCTTTTGATTGA ATGACTATGAACATATCGTTTCCGGATTTCGATTGTTACAAGGTCGCTCCGGTGTCTTTCTCTTCTCCCTGCGCCTGCCCTTTGCGTCCTTCGTCCTGTAAACCATTGCCTCTCCCTCCATCCTCATTGAAATTCAATCGCTTGCATTTTGTCTTACATGGCCAAAAGGGCCTGCTTAGAATTAACAAGAGAAGCGATTTGGAGAGACGACACATTGTGGCCGTGGCACATGCCGAGCCCCACCGGATTGACGGGAAAGAGCCCGAAGAGGAGGTTGAAGGAGGCCAACAGTTATCATTTCAAGAGGATCCAATCTCAGAACATCAACATAAAAAAAATCAATTGAAGAAACGCATCATTTTTGGGCTTGGCATTGGGATAACTGGTGGCCTTGTAGTATTGGCTGGAGGATGGGTATTCACTGTGGCTGTCGCTGCATGTACTTTTGTTGGTGCACGGTTTGGAGATAGGTTAGGTTGGATCAATGGCGTTTATGGACTCTCCAACTTGAAAGGTAGGGAAGAGTTCTGGGACGAGTTAGGGAGTTTGTTTGGGTTATGTGGTTCTTGCTGGTGTTTGGCTGGGAATTTCAATGTGCTTGATGTTGCTATCACATTTTCTGCCTTCATTCTTGCAATTACGTTGCTTGTACAAAGAGGCAGTCCCCGATTTGCTCAACTGAGCAGTGCAATATTTGGGCTTTTTTACTGTGGCTACCTTCCTTGTTTCTGGGTCAAACTTCGTTGTGGTTTGGCCGTTCCAGCCATAAACACTGAAATAGGAGCAGGATGGCCATTTCTTCTTGGAGGCCGAGCTCATTGGACTGTTGGCCTTGTTGCAACCTTGATTTCTATGAGCAGTATAATTGCAGCTGATACATTTGCTTTTCTTGGTGGCAAGGCATTTGGTAAGACCCCGCTTACAAATATTAGTCCAAAAAAGACTTGGGAGGGAACTATTATGGGCTTGGCTGGTTGCATAGCTACATCTGTCATTCTATCAAAAATTCTTTGCTGGCCATCTTCTATGATTAGAGGTGGTATTTGTTGGAGGTGGTTGTCGGAGCATGTCACTGGAGTGAGGCAGTGGTTGTTGTTGAAGTTGGTCTCTGGCACCACTGGAAACATTAGGGAGAAATGGGTTGAGTTGGGTGCAATAGCTTTTGGATTTCTGAATTTTTTGGGTTCTGTTTTTGGTGATCTTACCGAGTCAATGATAAAACGTGATGCTGGTGTCAAGGATTCTGGATCTTTAATCCCTGGACATGAGATGTCTGAAAATGTTCCAACTGACCACCGATTGAAGTTTCATCAATCCTCTGATTTTAATGCTTTTGATTGA ATGACTATGAACATATCGTTTCCGGATTTCGATTGTTACAAGGTCGCTCCGGTGTCTTTCTCTTCTCCCTGCGCCTGCCCTTTGCGTCCTTCGTCCTGTAAACCATTGCCTCTCCCTCCATCCTCATTGAAATTCAATCGCTTGCATTTTGTCTTACATGGCCAAAAGGGCCTGCTTAGAATTAACAAGAGAAGCGATTTGGAGAGACGACACATTGTGGCCGTGGCACATGCCGAGCCCCACCGGATTGACGGGAAAGAGCCCGAAGAGGAGGTTGAAGGAGGCCAACAGTTATCATTTCAAGAGGATCCAATCTCAGAACATCAACATAAAAAAAATCAATTGAAGAAACGCATCATTTTTGGGCTTGGCATTGGGATAACTGGTGGCCTTGTAGTATTGGCTGGAGGATGGGTATTCACTGTGGCTGTCGCTGCATGTACTTTTGTTGGTGCACGGTTTGGAGATAGGTTAGGTTGGATCAATGGCGTTTATGGACTCTCCAACTTGAAAGGTAGGGAAGAGTTCTGGGACGAGTTAGGGAGTTTGTTTGGGTTATGTGGTTCTTGCTGGTGTTTGGCTGGGAATTTCAATGTGCTTGATGTTGCTATCACATTTTCTGCCTTCATTCTTGCAATTACGTTGCTTGTACAAAGAGGCAGTCCCCGATTTGCTCAACTGAGCAGTGCAATATTTGGGCTTTTTTACTGTGGCTACCTTCCTTGTTTCTGGGTCAAACTTCGTTGTGGTTTGGCCGTTCCAGCCATAAACACTGAAATAGGAGCAGGATGGCCATTTCTTCTTGGAGGCCGAGCTCATTGGACTGTTGGCCTTGTTGCAACCTTGATTTCTATGAGCAGTATAATTGCAGCTGATACATTTGCTTTTCTTGGTGGCAAGGCATTTGGTAAGACCCCGCTTACAAATATTAGTCCAAAAAAGACTTGGGAGGGAACTATTATGGGCTTGGCTGGTTGCATAGCTACATCTGTCATTCTATCAAAAATTCTTTGCTGGCCATCTTCTATGATTAGAGGTGGTATTTGTTGGAGGTGGTTGTCGGAGCATGTCACTGGAGTGAGGCAGTGGTTGTTGTTGAAGTTGGTCTCTGGCACCACTGGAAACATTAGGGAGAAATGGGTTGAGTTGGGTGCAATAGCTTTTGGATTTCTGAATTTTTTGGGTTCTGTTTTTGGTGATCTTACCGAGTCAATGATAAAACGTGATGCTGGTGTCAAGGATTCTGGATCTTTAATCCCTGGACATGAGATGTCTGAAAATGTTCCAACTGACCACCGATTGAAGTTTCATCAATCCTCTGATTTTAATGCTTTTGATTGA MTMNISFPDFDCYKVAPVSFSSPCACPLRPSSCKPLPLPPSSLKFNRLHFVLHGQKGLLRINKRSDLERRHIVAVAHAEPHRIDGKEPEEEVEGGQQLSFQEDPISEHQHKKNQLKKRIIFGLGIGITGGLVVLAGGWVFTVAVAACTFVGARFGDRLGWINGVYGLSNLKGREEFWDELGSLFGLCGSCWCLAGNFNVLDVAITFSAFILAITLLVQRGSPRFAQLSSAIFGLFYCGYLPCFWVKLRCGLAVPAINTEIGAGWPFLLGGRAHWTVGLVATLISMSSIIAADTFAFLGGKAFGKTPLTNISPKKTWEGTIMGLAGCIATSVILSKILCWPSSMIRGGICWRWLSEHVTGVRQWLLLKLVSGTTGNIREKWVELGAIAFGFLNFLGSVFGDLTESMIKRDAGVKDSGSLIPGHEMSENVPTDHRLKFHQSSDFNAFD Homology
BLAST of HG10010568 vs. NCBI nr
Match: XP_008458129.1 (PREDICTED: phosphatidate cytidylyltransferase 4, chloroplastic isoform X1 [Cucumis melo]) HSP 1 Score: 623.2 bits (1606), Expect = 1.7e-174 Identity = 337/488 (69.06%), Postives = 359/488 (73.57%), Query Frame = 0
BLAST of HG10010568 vs. NCBI nr
Match: XP_038874812.1 (phosphatidate cytidylyltransferase 4, chloroplastic isoform X2 [Benincasa hispida]) HSP 1 Score: 614.8 bits (1584), Expect = 6.0e-172 Identity = 325/424 (76.65%), Postives = 341/424 (80.42%), Query Frame = 0
BLAST of HG10010568 vs. NCBI nr
Match: XP_038874811.1 (phosphatidate cytidylyltransferase 4, chloroplastic isoform X1 [Benincasa hispida]) HSP 1 Score: 614.8 bits (1584), Expect = 6.0e-172 Identity = 325/424 (76.65%), Postives = 341/424 (80.42%), Query Frame = 0
BLAST of HG10010568 vs. NCBI nr
Match: XP_008458130.1 (PREDICTED: phosphatidate cytidylyltransferase 4, chloroplastic isoform X2 [Cucumis melo]) HSP 1 Score: 606.3 bits (1562), Expect = 2.1e-169 Identity = 319/423 (75.41%), Postives = 340/423 (80.38%), Query Frame = 0
BLAST of HG10010568 vs. NCBI nr
Match: XP_023547717.1 (phosphatidate cytidylyltransferase 4, chloroplastic [Cucurbita pepo subsp. pepo]) HSP 1 Score: 589.0 bits (1517), Expect = 3.5e-164 Identity = 313/422 (74.17%), Postives = 330/422 (78.20%), Query Frame = 0
BLAST of HG10010568 vs. ExPASy Swiss-Prot
Match: Q94A03 (Phosphatidate cytidylyltransferase 4, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=CDS4 PE=1 SV=1) HSP 1 Score: 352.1 bits (902), Expect = 9.5e-96 Identity = 206/403 (51.12%), Postives = 252/403 (62.53%), Query Frame = 0
BLAST of HG10010568 vs. ExPASy Swiss-Prot
Match: Q9M001 (Phosphatidate cytidylyltransferase 5, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=CDS5 PE=1 SV=1) HSP 1 Score: 345.9 bits (886), Expect = 6.8e-94 Identity = 203/414 (49.03%), Postives = 252/414 (60.87%), Query Frame = 0
BLAST of HG10010568 vs. ExPASy Swiss-Prot
Match: P73548 (Phosphatidate cytidylyltransferase OS=Synechocystis sp. (strain PCC 6803 / Kazusa) OX=1111708 GN=cdsA PE=3 SV=1) HSP 1 Score: 125.6 bits (314), Expect = 1.4e-27 Identity = 93/303 (30.69%), Postives = 145/303 (47.85%), Query Frame = 0
BLAST of HG10010568 vs. ExPASy Swiss-Prot
Match: P63759 (Phosphatidate cytidylyltransferase OS=Mycobacterium bovis (strain ATCC BAA-935 / AF2122/97) OX=233413 GN=cdsA PE=3 SV=1) HSP 1 Score: 77.8 bits (190), Expect = 3.5e-13 Identity = 93/344 (27.03%), Postives = 133/344 (38.66%), Query Frame = 0
BLAST of HG10010568 vs. ExPASy Swiss-Prot
Match: P9WPF6 (Phosphatidate cytidylyltransferase OS=Mycobacterium tuberculosis (strain CDC 1551 / Oshkosh) OX=83331 GN=cdsA PE=3 SV=2) HSP 1 Score: 77.8 bits (190), Expect = 3.5e-13 Identity = 93/344 (27.03%), Postives = 133/344 (38.66%), Query Frame = 0
BLAST of HG10010568 vs. ExPASy TrEMBL
Match: A0A1S3C789 (phosphatidate cytidylyltransferase 4, chloroplastic isoform X1 OS=Cucumis melo OX=3656 GN=LOC103497657 PE=4 SV=1) HSP 1 Score: 623.2 bits (1606), Expect = 8.2e-175 Identity = 337/488 (69.06%), Postives = 359/488 (73.57%), Query Frame = 0
BLAST of HG10010568 vs. ExPASy TrEMBL
Match: A0A1S3C734 (Phosphatidate cytidylyltransferase OS=Cucumis melo OX=3656 GN=LOC103497657 PE=3 SV=1) HSP 1 Score: 606.3 bits (1562), Expect = 1.0e-169 Identity = 319/423 (75.41%), Postives = 340/423 (80.38%), Query Frame = 0
BLAST of HG10010568 vs. ExPASy TrEMBL
Match: A0A6J1H4I2 (Phosphatidate cytidylyltransferase OS=Cucurbita moschata OX=3662 GN=LOC111460415 PE=3 SV=1) HSP 1 Score: 586.6 bits (1511), Expect = 8.5e-164 Identity = 311/422 (73.70%), Postives = 330/422 (78.20%), Query Frame = 0
BLAST of HG10010568 vs. ExPASy TrEMBL
Match: A0A0A0KFQ2 (Phosphatidate cytidylyltransferase OS=Cucumis sativus OX=3659 GN=Csa_6G109620 PE=3 SV=1) HSP 1 Score: 583.6 bits (1503), Expect = 7.2e-163 Identity = 310/423 (73.29%), Postives = 339/423 (80.14%), Query Frame = 0
BLAST of HG10010568 vs. ExPASy TrEMBL
Match: A0A6J1KW88 (Phosphatidate cytidylyltransferase OS=Cucurbita maxima OX=3661 GN=LOC111499269 PE=3 SV=1) HSP 1 Score: 583.2 bits (1502), Expect = 9.4e-163 Identity = 310/422 (73.46%), Postives = 328/422 (77.73%), Query Frame = 0
BLAST of HG10010568 vs. TAIR 10
Match: AT2G45150.1 (cytidinediphosphate diacylglycerol synthase 4 ) HSP 1 Score: 352.1 bits (902), Expect = 6.8e-97 Identity = 206/403 (51.12%), Postives = 252/403 (62.53%), Query Frame = 0
BLAST of HG10010568 vs. TAIR 10
Match: AT2G45150.3 (cytidinediphosphate diacylglycerol synthase 4 ) HSP 1 Score: 350.9 bits (899), Expect = 1.5e-96 Identity = 205/403 (50.87%), Postives = 250/403 (62.03%), Query Frame = 0
BLAST of HG10010568 vs. TAIR 10
Match: AT3G60620.1 (cytidinediphosphate diacylglycerol synthase 5 ) HSP 1 Score: 345.9 bits (886), Expect = 4.8e-95 Identity = 203/414 (49.03%), Postives = 252/414 (60.87%), Query Frame = 0
BLAST of HG10010568 vs. TAIR 10
Match: AT2G45150.2 (cytidinediphosphate diacylglycerol synthase 4 ) HSP 1 Score: 231.5 bits (589), Expect = 1.3e-60 Identity = 141/281 (50.18%), Postives = 178/281 (63.35%), Query Frame = 0
BLAST of HG10010568 vs. TAIR 10
Match: AT4G22340.1 (cytidinediphosphate diacylglycerol synthase 2 ) HSP 1 Score: 60.8 bits (146), Expect = 3.1e-09 Identity = 47/160 (29.38%), Postives = 72/160 (45.00%), 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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