Spg000057 (gene) Sponge gourd (cylindrica) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: CDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATGCAGACCCAACATTCCCTGCAGAATCGGTTTAGAAGTTGGTGCGCAATGGGAGGGGACCAGCTACGCCTTTATTTCCGTTATGCTTTTGTCATATAAATAGTCTCTTTTGTAATAATCGTTTTAGGTTTTACTTTGGTAAATAGCTGAAAGCTATAGGAGAAAGGAGAGATTACCGGCCCTCTCGAATTGGCCGGGAGCTTTTGTAATCGTTTAGCTCTTTCTCTGATTATCAATACAACTTGTGAGGCAAAAATTTTAAACACCTGCTAGAACAAAAAACTACACTTCTAAACAACATATTCAACTACACCACCATACTACAACACAACAAAACTCCACAGAACAAGCTGCGAGTTAGGTCTCGCATTATCAACTACTATCTAACCAAGAACACGAGTTTAACAAAGCTTGTAACATTAGCTCATTCAATACAAACTTAATTATTATTAACTAAATGAATAGATAGAGTTCTTTAAAACAAACACAACTAGACCTAGAGTTTAACAAGAATGATCAGAACTGAACCTAACAGGACAACAACTGTCCAACCAAGTTAAGCAACAAGCTATCCAGCATGAAAATAAAATGGAAAACAGCGCAGACTAGCTATGGTCCTTCCTCATATGCCTCCTCTGCATCACCATGGTCCACGCAGTCCTCATAACCTGCAAAATCTGGTAGTTGGTATCAGAGCGGAGTTGTTCCTGTAGACTGGCCTAGGAAATCTAGGTTGTTTGGGTGTCTAGGGTTATGGTCTTCCTCGTTTCTCCTCTCCATCACCAGGTACGTTGGTCTGTTTGTGATATTATTATGTTGCCTGTATGTTCGAATTATCTGTTGGCATGATTATTTTTTTATTTACTTGGTTGTTTTGCATAGTTATTGTTGCTTGCTTGCATCCTTATTGTGTGACTTGGTTGCCTTGTCTGAGCATGTTGTTTTCCTATAATTGCTTTATTATATGGTAGCTAGGCTTAGGGTGCTCCCGTTAGGTGGTTAGTTAGCTTGTTTTGATTGCATGATAGTAGGATTAGGTTGCCACCTAGTTTTAGGTTAGAGCTTTAGTCCCGGTTGCTATCTATTCTTTGACCTTAGCACCGTCTTCCCAGTCGATGACTTGTGGTCGTGGACCTAGAATCCCAGCTAATAGGCAAGAGAATCAGGCGGGTGATATCAATGCTCAGCAAGGGGCCGATCCTCTGATTCCCCCTTTGCAGGAAGTTAATCCCCCGATTCCTCCTATTCAGCCCGGAGTTGACCTTCCGCCCCCTCCTCCTCCTTCGGCCCCTCCTACAGCTCCTATGTTGATCACTCTGGAAGCCCTCCAGACCATGTTCGATAACATGGCCCAGAGAAATGCCAGGCCACCGCGGAACCATAATTGGGTACCTGAGAACGCAGAGGAATCCCAGTTCATTAGAGACTTCAAGCGCTATGGGCCTCCCTTTTTTGACGGGCAATCCGAGAATCCTGTGGCAGCAGAGCAGTGGGTCGCTGATTTAGAGGCACTGTTTGACCTCATGAGCTGTAATGATCCCCTGAAGATAGAGGAACCGTCTTCATGCTCAAGGATGACGCTCGCACGTGGTGGAAGTCTGTGGCAGCTGTCGAAGAGCATGCTAATCAGCCGATTTCATGGGAAAGGTTCAAAGACCTGTTGTACGATTATTACTTCCCGGAGACAGTCAAAGATGACAAAGAAGCTGGGTTCCTCCATTTGACCTAGGGAAGTATAACCGTAGTGCAATATGAGAGGAAGTTCACTGCGTTGTCTCGCTTCGCTCCTGACCTTGTCAGCACACCGAAAAGGAAGATCAAGAGATTCATAAAGGGCCTCCGTGAGGAAACTCGTGGTTCTGTGGCCCTGAGCAGACCCATGACTTTCGTTGAAGCGCTCTCAGGCGCGTTGATCATAGATAAGAATGTGGCAAGGAAGATGCAACCTCGCTGGGGAGAAGCTTCATCGTCTGGTGTTAAAAGGAAGCCTCCTCCCATGCCCGCACGTCTGTCGACCAAGGCCCCTCGTCAGCAGCAGAGGCCAGCTCCTGTCGTCCCTGTGTGCGCTACGTGCAATAGGTGCCATTCTGGTCAATGCTGGACAGGTGATAAGGTCTGTTTCAATTGCGGTAAAGAAGGACATTATGCCAGGCAGTGTCCCACTAAAGGCGAAGCAAATGCTGAGAAGCCAGCCCTTAAGGCCCCACCAGTGCAAGCTCAAGGTGGAAATCAGAGGGCGCGTGTCTTTGCCCTCACGAAAGAAGAAACAGATGATGAGGATGTCGTGGTTACAGGTACGTTCACTCTAACCTTGTCTTGTGTGTGATTGCATGGTTGTGAATCTTATTCTTGTCACTGGTTGCTTCAGGAATTATTTTGGTTCTGAGTGTCCCCGCCTTTGTTTTGTTTGATTCGGGGTCAAGTCATTCATTTATTTCTTCAGTGTTTGTTAGCCAAGCAAATCTTGAGTTAGAACCGTTAGGTTATCTTCTTTCGGTATCTACACCCTCCGGCTCTGTTTTGCTTGCTCAACAAGTAGTCAAGTTCGGAGTAGTCTCGATTGCAGGTCAGACCCTTGAAGCGAGGTTAATCCAATTGGATATGCACGACTTCGATGTAATCTTGGACATGGACTGGTTGGCTAGCAATAAAGCCACCATTCATTGTGCTAAGAAGGAGGTGCATCTCAAATTGCCCTCAGGCCAAGGGTTTAAGTTTAAGGGATCGAAGAGCGGAAGTCCTAAGGTAGTTTCTGCCTTAAAAGCCAAGCTGCAGCATGGAGCTTGGGCGTACTTGACAAGTGTGGTGGATGTTTCTAAGGAATCGCCTAGTTTGGACTCTGTCCCTATTGTTAAAGAGTTCCTAGATGTCTTTCCGGAAGATCTCCCTAGGCTACCTCCAACTTGAGAAGTGGACTTCTGTATAGACCTTCTTCCTGGGACAACACCATTGTCTACACCTTATACGATGACACCAGCTGAGCTCAAGGAACTCAAAGTGCAGCTTGAGGAGCTGTTGGATAATGGGTTTATTCGTCCCAGCGTTTCCCCTTGGGGTGCTTCGGTCTTGTTCGTCAGGAAGAAAGATGGTTCAATGAGGCTCTGCTTTGACTATCGGGAGTTAAATAAGGTGACTGTGAAGAACAAATACCCCCTCCCTCGTATTGATGATCTCTTTGATCAGCTTCAGGGAGCCAGGGTGTTCTCGAAGATCGATTTGTGTTCTGGTTACCATCAACTGAGGATTAAGGAAGCCGACATCCCTAAGACTGTCTTCAGGACCAAGTATGGCCATTACGAATTCACTATGATGTCTTTTGGACTTACCAATGCTCCTGCAGCCTTCATGGATCTCATGAATCGTGTGTTCAAAAGCTTCCTGGACTCGTTTGTGATAGTTTTCATTGATGACATCTTGATCTATTCTAAGAGCAAGAGTCAGCACGAGCAGCACCCCAGGCAGGTTCTGGAAGCCTTGAGGAGCAATGAACTCTATGCTAAATTCTCAAAGTGTGAGTTTTGGCTGGATGAAGTTGCTTTTCTCAGCCATGTGGTTACCATGGATGGTATTGCAGTTGATCCGTCTAAAGTGGAAGCAGTGCGTAGTTGGCCCATACCCAACACAGTGACTGAAATCCGAAGTTTTCTTGGGTTAGCAGGCTACTATCGAAAGTTTGTCCACGACTTCTCAAGCCTTGCAGCACCGTTGACTCTGTTGACTTGTAAGACTGCGACCTTTACCTGGAGTGAGGATTGTGAAAAGAGTTTCCAGGAGTTGAAGGATCGGTTGACCACTGCCCCAGTGCTAACCATCCCTGATGAATTCGGGGGAATGGTGGTGTACAGTGATGTGTAAGGTTTCCCTTACAAAGAACAAGTTTGAAACAAGGAAGATCTTTTTACTGAATATTTCAACCAATTTGAGAGGGTTGAATTCTCTCTAGACAAGACTTACAACTGAACTTTTTCATGCCTTCATCCTTCCCTTATCCCTTCTTAAATAGACTCCTGACTTGCTGTGTTATTATGACTACATGACCATTGACATTCCCTAAACCAACTGCAAGTGAAGTTCATGTTCTTCCATGGTCGGGCTGTAGATCACTATGTCATCGAGATAAACCACCACAAATTTGTCGAGATACTCGTGGAACACTTGGTTCATTAGTGTGCAAAAGGTGGCCGGAGCATTTGTCAGGTCGAATGGCATGACTAAGAACTCGAAGGCCCTGTACCTTGTGACACACGTTGTCTTAGGTTCATCTCCTTCGGCGATGCGCACTTGGTAGTATCCCGACCTGAGATCTAATTTCGAGAAATACTTTGCCGCGTGTAGACGATCAAACCAGTTGGTGATAATGGGTAGTGGATACTTGTTGCGCACCGTGAGCTTGTTGAGGGCTCGGTAGTCAATGCATAACCGCAGGCTGTCGTCTTTCTTTTTCTGGAACAACACTGGGGCCCCATATGGAGCCTTCGTGGGTCTAATGAACCCAACATTTAGTAACTCATCTAACTGTTTCCGCAGCTTGGCTAACTCATGCGGTAGGCATTTTTAGCGGGCGGTCTCGCTCCTGGTAACAGTTCGATTTCGTGATCTATCCCCCGCCGTGGAGGTAGGGTCCTGGGCAGACTGTCTGGCATTACATCACGATACTTGTCCAACACACGTTGGATCTCACTGGGGACTAGTGCTTCCACATTTTCGTTTTCTGTCATTGGGATGGCCATGAATGTGGGTTCGTCGTGTGTAAGGCCTTTCTTTAACTGGAGGGCTGATATATAAAATATCTAAAATACTATCAGTATCTATCTATATATATAAATGTTAGGCTAAATTATAAAAAATACCCCTAAACTGTTGTGTTTGTTTCAAAAATGCCCCTGAACTTTAAAAAGTTTAAAAAATACCCTTGAACTTTAAAAAGTTTCAAAAATACCCTTGAACTTTGAAAAATGTTTAAAAAATACCTTTGCCGTTAATTTTGGATGAAAACTGTTAAAGTTTTAGTTTCAAAAATACCCTTGAACTTTAAAAAAAAATTCAAAAATACCTGTATTGAAAAATGTTTTTTTTCCTTCTCCTACCATAAATTAATTCTTCCTTCGTGAAAATTAATGAGAAACTTTACTTATTTTTCATGTATTTATAATCTATGAGCTTTTCTTATCTTTCAACACATCCCAATAACTTGACTAGATTTTCGTGTTGAAACTTCAATATAACTTTTGTTTTGTTCTTCAAATTCTACATGTGCTTGACTTTATTTGTTGGTAGTCTTTTCAATATTATTTCCTCACCAACCATTACCCATTAGCTTTCTCTATATTCATTTTATGAAAAATAAATGAAACTATTGTTGTATACGGGTTCTAACAATTCTTAAATGTTAATAAGAACAAAATCATATATAAAACTTTTGATTAATTAATCTTATAAATTGGACCAAACCCACAGTCTTAATGTTATGTAATAAGTATAAGTACAATCAAATTTAACCGTACTGAAAAAACCTTAACTCATATATTTTATGAAATCGAAAGCATTTAAGTTATTTTATTGAAATTGATTATAATATTTAATTTCTTTTCTTTTGTGAAACAATCACAACATTATTCAACTTTTAAAACAAATTCATTATAATATATTATAATATAATATATAATAGCACAAAAAGATATATCACGTGCAATACACGTTTTAAAGACTAGTAAGCTAAAAAGGAAGAAAAAGAGAGTTCATCAAACGTAAAATATTAGTTTTTTTTTTAAAAAAAGAAAAAGAAAAAGAAAGTGCATTTAGGTAATTTTGGCACACAAAACCCTAATTGGGTGGATTTGGAATATCCCATTCTGCGACCCAAAAACCTTCCGTCCAGTCATCACTCTCTCTTAATCCTCTCACAGTAGCCGCTTCGCTCCTTCGTGGGTAACTCCTTCCCCATGTCTCTCTCTATCCCCCTCTAATTCCATGTTTCTCTTGTTGTGATGTTTCTGAGATTTACAGGAATTGGTTCAAGTATATGTACTTCATGCCTTGAAATACTAGATACGTTGTAGTTCTATTTGTCTTGTTCATGTGAGTTTTATCTACTTAGTTGTCATTTAGAATGTAAATGGTTTTAGAATTGTATTTGAGAAGGGTCTTGTGGGGATTCAATTTGAACCTGGTGCACTGCTATGAAATTTGGGGGATTTTCCCCTTTTTTTCTTGTTACAAAAATACCTTTCATGAATTCTTATTCACATACGATATCTTTCACTCGTGAATATAGCGACCAAAAGAATCTGAACTTTTAAGACTCATCTCTCATGCGAAAGTTTCAACTCTTAAGTGATAGAGTTCTTTCCTCACTCAGGCTGTAGAGATCTGTAGTTGGGATGGGTTAATGCTTCCTTATTTATTTATTTATTTATGATTTCTTGATGTTATTTATTCTTATTGTATTTACTGTTTATTTTGTGTATGTCGTCATTGATGATTGGTACAAGTTATTAATGAAATATGTGGATAAGTAATAAGATAGTAATTAAAGGTTTAAATTGAAAATTAATAAATTAAAGGTTTTATTACAAGTTTAGCCCACAATTTGGTCCCTGAACTTTAAAAAGTTTCTAATAGGTCCCTGAACTTTTAATTTTGTGTCCCGCCATCACTCACTTTTATACTTGCAGAGTAGCCGCTTCCTCCACGCCCTTTGTCACTCTCTCGTTCTGCGGTTGGAACTTACGAATCTGCTGGTGTAAAGCAGGTATATTTGCAGCTATTGAAGATGCCCAAGTCGAAGCGTGATAGACCAGGTCCGTTTCAATCACTTCCAACATATTCATGCCATGTTTCCACAAGAAGTTGAATCCTACAAAACTCTTTGGATTTTAATAACCTAGATAGCTATCTACTATTGGATTTTAACTCAGGTCCCCAAACTTGTTTGGTTTCAAGTTTAATTGTGTGTTAGTATGTTTTTAATATGGAGTAACGACTCAAGTATTTCAGTTTTGTAAGGTTCCTCGGAGCAAATGTTTTTTATAAGGTAGCTTGATGCCTTTTTTTACTCTTTGTCAATGATAAACTGTGATAGGAGTGGTAGCAAGATAGTGTGAGCCTTCTAATTTGATGGAAAAACCATTTTAGTATAAGGTGTTGTCAAGAGCTGGCCAAGGTGAAAGGTTCCATCTGTATTCAAAATGTAGAGCTTACAACCTAGGGAACATGATGTCTAAAGTTCCTGTATTATTAACTGAGATTAATTTCTAGATAAGAATTGAAACAATATTTAGTAGGCTAATGAATGTTGTTAGCTCTACAACCTAGGGAACATGATGTCTAAAGTTCCCGTATTTATTAACTGAGATTAATTTCTAGATAAGAATTGAAACAATATTTAGTAGGCTAATGAATGTTGTTTAACAGAAACCAAGCAACAGTAAACCTAGGAGAACTTAATAACTCTCTTTAACATAGAAAGATGCTAAAATTTGTTCTTTTAATTCAAGGTTCTTGTTAAATTATGGGTTAGTTAATAAGGTAGTTTCTTTTCAAAAGTTTTGTCTGAGGCAATTTAAGAATTTAAAGGACTTGTGGTGCTAGTATTCATTGTCAAACTTGTGTGGGAAAACTTAAAGGAAAGAGGAAAAATATGAACAACTTAGTCCATTGCAGATTAGTGTTTTGACTGACTTTTCGGTGGGATAAATGCAGTTACTTTATCAAAAACCAAGAAGAAAGGAAGGGAACATAAGAAATCAATGGTGGATCTGATCAGGCAGGCTGTGGAAAATTACAACTCAATTTATGTTTTCACTGTTGAGAACATGCGAAACCTCAAGTTCAAGGAACTCAGGGAGCAGCTAAAGTCAACTAGCAGGCAAGTTGTATTTTCTTACTTTATTATATATTTGCTGCATCATTTCAAATATTGATTAGTGATGAGAATGTTACTTCCTTTATGTTGTTTGGTTGGCTTCTGGGAAGCATGGGGAAAGATGAAAATAATGAATAGCATGTTTTAGGAGAAAAGATGATAATATGCGGTTGCCCTTGCGACTGAAAACAATAGTTTTAGCAGGTTACCATAACTAACAGAATTGCTGTATGACACTCAATTTAGCATTTGTTTCTACGATTGCAGACCAGCCTTCTCCTTGTTTTAAAAAGTGTCACTGAAAAAAGGGTTTACAACCTTCATTACCTCGTGCTTAGTGTGGTCTCACCTGGGGCTGCAGCTTGTGTAGATTTGTACTCTTTCATAACATGTGTTCTCTATTCTTTTTCCTTTTTCATCATTGTTATGAAAATTATATTACCTGACCTTTGAAATATTTTTAGCTGTACCTGTACATTATTGTATTAGGCCTCTGATGCTTGTTGCTATTTTTAAATTGTAGAAATGTTTAATGAGGCTAATCGGGATATTCTAGTTATGAAGCTTGTTTAGTGCAATTTTTGAAATGATGCGGCAGTTGAGTGGCATTTTGAGATATCATGCATAACCTCTCTATTTCTCTAATGAAATGATGTGACCTGACCTGACCTGACTGAATAGATTATGTGGGTTCCAAAATTTATTATTATTATTTTTTTCCAATGGATAGATTGTTTTTTGGAGCAAACAAAGTCATGCAGGTTTCTCTTGGTCGAACTGCTTCTGATGAGATTCGACCAGGCCTTTACAAGGTTTCTAAGGTGAATCTCTTTTTCCACATTGCATATAGTTTGAGTGTTCCTTTTCTGTAGCCGTTGGGAAGTAACATCCACTCTTCAATTTTTCAGCTTCTGCAGGGAAATACTGGACTTTGTTTCACAAACTTACCAAAAGAAGAGGTTGAGAGGTAAACCAGACATAGTCTATTTTTAACATTGGCAAGCTCTGCCAAAAGTGATAAATTGTATAGTTGCTATTTCCTTTGTCAATTTAAATACCACAGTATTTAAATTTAATTCACTATGCATTCTGTTTTTAGTTTAGTAATTGAAGTATCCGATAAATTGTGCTCATAAATTTCCATATTTATGAATGCAAAATTCTGAAATTTTCATTTGGGAAAGACGTTAAAATGAAAAAAAAAAATTTGTCTTTGGTGTTGAAAAGGAAGGAATAGAAAAGAAAAAGTTAATCTTTGAAGTCGAAGTTGAAAACAAAAATTGAAATTGGTATGTCTTCAAAGTCAAAACAACAATTTTCCAACTTCATAATATCGCATAGTTATGACTATTTTTCTGTGCCAAATTCAATAAAAATTTACAATCTGGATTATGATTACAGTTTTGCAACCCAACCCCCAACCCAAAACAGAAACAAAAGAAGATTGTTATTGTCAGTAGTAAGATTCTCTTAATGGGTTGTTGACATTTCAATTCTATAAGAAGGGACTTTCAGAATTCGTAAAATGCTTAAAAGGAAATGCTCGGGTATTTGCTGTTTTACAATAATGCTTGGTTTAATTTTTAATGTTTTGTTATACAGGTTATTTAATGAGTATGTGGATTATGATTATGCAAGGACTGGAAGTGCAGCCACAGAAAAGGTTTCTGCCCCTTCGAACACATGACATTTATTTAGTTTTCTTTTATAATAAACTGATTTTTATTTTTCATGGTTCTAAAACTGATTGCACTTTTTGAGTGTAATGAATAATGATTCAACAAAAAGGTCTAGTATCATCTTATATCATGTGTTATAATATGCATGAACTTGGTGGTTGGTTGCTTTATTGAAGTTTTAATGATATTAGGTTGAGCTTAAGGAAGGTCCTCTGGAGCAGTTTAGCCATGAGATGGAGCCTTCTCTACGGAAGTTGGGTTTGCCTGTTCGTTTGAATAAGGGTCAGTAAATACACACATTGTGCTTGCAAGCCCTACTTATTACTTATAGTAAATAAAATGTTGGTTATAAATCAGAATTGTTGAGGAATTGCAGGTGTGGTGGAACTTGTATCAGACTACGTTGTATGTGAGGAGGGCAAGTCTCTATCACCGGAGTCAGCTGGCATACTGGTTTGTATCATGTCATGACTTTCTCTTTCCTCAAATATGTATTGAATTTGATTTGACTTGTAAACGAGGTTCGATAGGCTTGTTTCTTGGTTTGTTATTTTGAGAATCAGATGTGTTGGTGGAAGTAGCATTTTTTGTTGCTTCCAATTCCCATCTCAAATTAAGAATTAAGGGTGTGTTTGGAGATGCTTTTAGAATAAGTACTTTTAGAAAAGCACTCTTGTTATAGGCACTTAAGTAATTATAGGCATTTTATATTTTGGGGGATGACTGAGATGTTTGATTTGATATGGTTGCAGCGTGCGTTGGGGATAAGGATGGCAACTTTTCGGCTGAATTTGGTGTGCAGATGGAGCCCTGGTGACTATGAACTTTATATTGATGGACCAGATAATTCTGACGTTGAATCCGCCTAAAATCTCCAACACAGGAAATCTCATTATTTACTACTTACCAATTAGGATAATATATATGAATGAATGCCCCTCCTCCGTAGGATTCAATGCCATAATATGAATGGCATTGGGACTTGTGGTTTTGTTTTTGTAGATTATTTTAGAAATTCTCAATTTTGTTGTGTTTAGTGAGGATAGACGAGTATTATTGTGAGTTGGTAGCTTTTCATTTGTATTATTATCTGATGCGTTTGGCTTTACATTCAAAGAAGATAGTACTTTATGAAATTCTAACAATTTTGGGTATGTGATACAAGAATTGTTGAATGTACAATATAATTAATATGGAATAATGGCAAAATTATTGAAGGCGGGTGCAAAGAAATCACTGGAGATGAGGGCTGTAGCACAAGGGTTGAAGGTGATTGTATAAGACCTTCATGGAATCCCACATCGACCTCACAGGAGTGCAAGTGGGCTAGAATAGTTTGGTTATGGTTTGGCGAACAAGGCTATGGAATGCATCCTCCCAAGTAATAGAAGATATTGCTTGTTCTGATTACACTGTTTAGTTTTGCTTTGTGGTTCTGTTCTTTATAGTTTATACATTGAAAAGAAAAAGTATACTAGAAATATTCACTCGGTGAAAATGCATCTTTGTGTCTG ATGCAGACCCAACATTCCCTGCAGAATCGGTTTAGAAGTTGGTGCGCAATGGGAGGGGACCAGCTACGCCTTTATTTCCGTTATGCTTTTAGCGGAGTTGTTCCTGTAGACTGGCCTAGGAAATCTAGGTTGTTTGGGTGTCTAGGGTTATGGTCTTCCTCGTTTCTCCTCTCCATCACCAGGCTTAGGGTGCTCCCGTTAGGTGCACCGTCTTCCCAGTCGATGACTTGTGGTCGTGGACCTAGAATCCCAGCTAATAGGCAAGAGAATCAGGCGGGTGATATCAATGCTCAGCAAGGGGCCGATCCTCTGATTCCCCCTTTGCAGGAAGTTAATCCCCCGATTCCTCCTATTCAGCCCGGAGTTGACCTTCCGCCCCCTCCTCCTCCTTCGGCCCCTCCTACAGCTCCTATTAGCCGCTTCGCTCCTTCGTGGCCGCTTCCTCCACGCCCTTTGTCACTCTCTCGTTCTGCGGTTGGAACTTACGAATCTGCTGGTGTAAAGCAGGTATATTTGCAGCTATTGAAGATGCCCAAGTCGAAGCGTGATAGACCAGTTACTTTATCAAAAACCAAGAAGAAAGGAAGGGAACATAAGAAATCAATGGTGGATCTGATCAGGCAGGCTGTGGAAAATTACAACTCAATTTATGTTTTCACTGTTGAGAACATGCGAAACCTCAAGTTCAAGGAACTCAGGGAGCAGCTAAAGTCAACTAGCAGGCAAACCAGCCTTCTCCTTGTTTTAAAAAGTGTCACTGAAAAAAGGGTTTACAACCTTCATTACCTCGTGCTTAGTGTGGTCTCACCTGGGGCTGCAGCTTGTGTAGATTTGTACTCTTTCATAACATATTATGTGGGTTCCAAAATTTATTATTATTATTTTTTTCCAATGGATAGATTGTTTTTTGGAGCAAACAAAGTCATGCAGGTTTCTCTTGGTCGAACTGCTTCTGATGAGATTCGACCAGGCCTTTACAAGGTTTCTAAGCTTCTGCAGGGAAATACTGGACTTTGTTTCACAAACTTACCAAAAGAAGAGGTTGAGAGGTTATTTAATGAGTATGTGGATTATGATTATGCAAGGACTGGAAGTGCAGCCACAGAAAAGGTTGAGCTTAAGGAAGGTCCTCTGGAGCAGTTTAGCCATGAGATGGAGCCTTCTCTACGGAAGTTGGGTTTGCCTGTTCGTTTGAATAAGGGTGTGGTGGAACTTGTATCAGACTACGTTGTATGTGAGGAGGGCAAGTCTCTATCACCGGAGTCAGCTGGCATACTGCGTGCGTTGGGGATAAGGATGGCAACTTTTCGGCTGAATTTGGTGTGCAGATGGAGCCCTGGTGACTATGAACTTTATATTGATGGACCAGATAATTCTGACGTTGAATCCGCCTAA ATGCAGACCCAACATTCCCTGCAGAATCGGTTTAGAAGTTGGTGCGCAATGGGAGGGGACCAGCTACGCCTTTATTTCCGTTATGCTTTTAGCGGAGTTGTTCCTGTAGACTGGCCTAGGAAATCTAGGTTGTTTGGGTGTCTAGGGTTATGGTCTTCCTCGTTTCTCCTCTCCATCACCAGGCTTAGGGTGCTCCCGTTAGGTGCACCGTCTTCCCAGTCGATGACTTGTGGTCGTGGACCTAGAATCCCAGCTAATAGGCAAGAGAATCAGGCGGGTGATATCAATGCTCAGCAAGGGGCCGATCCTCTGATTCCCCCTTTGCAGGAAGTTAATCCCCCGATTCCTCCTATTCAGCCCGGAGTTGACCTTCCGCCCCCTCCTCCTCCTTCGGCCCCTCCTACAGCTCCTATTAGCCGCTTCGCTCCTTCGTGGCCGCTTCCTCCACGCCCTTTGTCACTCTCTCGTTCTGCGGTTGGAACTTACGAATCTGCTGGTGTAAAGCAGGTATATTTGCAGCTATTGAAGATGCCCAAGTCGAAGCGTGATAGACCAGTTACTTTATCAAAAACCAAGAAGAAAGGAAGGGAACATAAGAAATCAATGGTGGATCTGATCAGGCAGGCTGTGGAAAATTACAACTCAATTTATGTTTTCACTGTTGAGAACATGCGAAACCTCAAGTTCAAGGAACTCAGGGAGCAGCTAAAGTCAACTAGCAGGCAAACCAGCCTTCTCCTTGTTTTAAAAAGTGTCACTGAAAAAAGGGTTTACAACCTTCATTACCTCGTGCTTAGTGTGGTCTCACCTGGGGCTGCAGCTTGTGTAGATTTGTACTCTTTCATAACATATTATGTGGGTTCCAAAATTTATTATTATTATTTTTTTCCAATGGATAGATTGTTTTTTGGAGCAAACAAAGTCATGCAGGTTTCTCTTGGTCGAACTGCTTCTGATGAGATTCGACCAGGCCTTTACAAGGTTTCTAAGCTTCTGCAGGGAAATACTGGACTTTGTTTCACAAACTTACCAAAAGAAGAGGTTGAGAGGTTATTTAATGAGTATGTGGATTATGATTATGCAAGGACTGGAAGTGCAGCCACAGAAAAGGTTGAGCTTAAGGAAGGTCCTCTGGAGCAGTTTAGCCATGAGATGGAGCCTTCTCTACGGAAGTTGGGTTTGCCTGTTCGTTTGAATAAGGGTGTGGTGGAACTTGTATCAGACTACGTTGTATGTGAGGAGGGCAAGTCTCTATCACCGGAGTCAGCTGGCATACTGCGTGCGTTGGGGATAAGGATGGCAACTTTTCGGCTGAATTTGGTGTGCAGATGGAGCCCTGGTGACTATGAACTTTATATTGATGGACCAGATAATTCTGACGTTGAATCCGCCTAA MQTQHSLQNRFRSWCAMGGDQLRLYFRYAFSGVVPVDWPRKSRLFGCLGLWSSSFLLSITRLRVLPLGAPSSQSMTCGRGPRIPANRQENQAGDINAQQGADPLIPPLQEVNPPIPPIQPGVDLPPPPPPSAPPTAPISRFAPSWPLPPRPLSLSRSAVGTYESAGVKQVYLQLLKMPKSKRDRPVTLSKTKKKGREHKKSMVDLIRQAVENYNSIYVFTVENMRNLKFKELREQLKSTSRQTSLLLVLKSVTEKRVYNLHYLVLSVVSPGAAACVDLYSFITYYVGSKIYYYYFFPMDRLFFGANKVMQVSLGRTASDEIRPGLYKVSKLLQGNTGLCFTNLPKEEVERLFNEYVDYDYARTGSAATEKVELKEGPLEQFSHEMEPSLRKLGLPVRLNKGVVELVSDYVVCEEGKSLSPESAGILRALGIRMATFRLNLVCRWSPGDYELYIDGPDNSDVESA Homology
BLAST of Spg000057 vs. NCBI nr
Match: XP_022933518.1 (mRNA turnover protein 4 homolog [Cucurbita moschata] >KAG6588508.1 mRNA turnover protein 4-like protein, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 413.7 bits (1062), Expect = 2.1e-111 Identity = 219/288 (76.04%), Postives = 226/288 (78.47%), Query Frame = 0
BLAST of Spg000057 vs. NCBI nr
Match: XP_023529350.1 (mRNA turnover protein 4 homolog [Cucurbita pepo subsp. pepo]) HSP 1 Score: 412.1 bits (1058), Expect = 6.1e-111 Identity = 218/288 (75.69%), Postives = 226/288 (78.47%), Query Frame = 0
BLAST of Spg000057 vs. NCBI nr
Match: XP_038902849.1 (mRNA turnover protein 4 homolog [Benincasa hispida]) HSP 1 Score: 411.4 bits (1056), Expect = 1.0e-110 Identity = 219/288 (76.04%), Postives = 228/288 (79.17%), Query Frame = 0
BLAST of Spg000057 vs. NCBI nr
Match: XP_022969955.1 (mRNA turnover protein 4 homolog [Cucurbita maxima]) HSP 1 Score: 410.6 bits (1054), Expect = 1.8e-110 Identity = 218/288 (75.69%), Postives = 225/288 (78.12%), Query Frame = 0
BLAST of Spg000057 vs. NCBI nr
Match: XP_022157470.1 (mRNA turnover protein 4 homolog [Momordica charantia]) HSP 1 Score: 405.6 bits (1041), Expect = 5.8e-109 Identity = 215/288 (74.65%), Postives = 224/288 (77.78%), Query Frame = 0
BLAST of Spg000057 vs. ExPASy Swiss-Prot
Match: A4FV84 (mRNA turnover protein 4 homolog OS=Bos taurus OX=9913 GN=MRTO4 PE=2 SV=1) HSP 1 Score: 197.6 bits (501), Expect = 3.1e-49 Identity = 109/268 (40.67%), Postives = 148/268 (55.22%), Query Frame = 0
BLAST of Spg000057 vs. ExPASy Swiss-Prot
Match: Q9UKD2 (mRNA turnover protein 4 homolog OS=Homo sapiens OX=9606 GN=MRTO4 PE=1 SV=2) HSP 1 Score: 193.4 bits (490), Expect = 5.9e-48 Identity = 107/268 (39.93%), Postives = 145/268 (54.10%), Query Frame = 0
BLAST of Spg000057 vs. ExPASy Swiss-Prot
Match: Q9D0I8 (mRNA turnover protein 4 homolog OS=Mus musculus OX=10090 GN=Mrto4 PE=1 SV=1) HSP 1 Score: 192.6 bits (488), Expect = 1.0e-47 Identity = 108/268 (40.30%), Postives = 146/268 (54.48%), Query Frame = 0
BLAST of Spg000057 vs. ExPASy Swiss-Prot
Match: Q86HD3 (Ribosome assembly factor mrt4 OS=Dictyostelium discoideum OX=44689 GN=mrt4 PE=3 SV=1) HSP 1 Score: 144.1 bits (362), Expect = 4.1e-33 Identity = 85/275 (30.91%), Postives = 133/275 (48.36%), Query Frame = 0
BLAST of Spg000057 vs. ExPASy Swiss-Prot
Match: Q7S302 (Ribosome assembly factor mrt4 OS=Neurospora crassa (strain ATCC 24698 / 74-OR23-1A / CBS 708.71 / DSM 1257 / FGSC 987) OX=367110 GN=mrt4 PE=3 SV=1) HSP 1 Score: 132.9 bits (333), Expect = 9.4e-30 Identity = 87/293 (29.69%), Postives = 128/293 (43.69%), Query Frame = 0
BLAST of Spg000057 vs. ExPASy TrEMBL
Match: A0A6J1F4Z2 (Ribosome assembly factor mrt4 OS=Cucurbita moschata OX=3662 GN=LOC111440919 PE=3 SV=1) HSP 1 Score: 413.7 bits (1062), Expect = 1.0e-111 Identity = 219/288 (76.04%), Postives = 226/288 (78.47%), Query Frame = 0
BLAST of Spg000057 vs. ExPASy TrEMBL
Match: A0A6J1I1E2 (Ribosome assembly factor mrt4 OS=Cucurbita maxima OX=3661 GN=LOC111468997 PE=3 SV=1) HSP 1 Score: 410.6 bits (1054), Expect = 8.7e-111 Identity = 218/288 (75.69%), Postives = 225/288 (78.12%), Query Frame = 0
BLAST of Spg000057 vs. ExPASy TrEMBL
Match: A0A6J1DT71 (Ribosome assembly factor mrt4 OS=Momordica charantia OX=3673 GN=LOC111024162 PE=3 SV=1) HSP 1 Score: 405.6 bits (1041), Expect = 2.8e-109 Identity = 215/288 (74.65%), Postives = 224/288 (77.78%), Query Frame = 0
BLAST of Spg000057 vs. ExPASy TrEMBL
Match: A0A6P4AGB2 (Ribosome assembly factor mrt4 OS=Ziziphus jujuba OX=326968 GN=LOC107427781 PE=3 SV=1) HSP 1 Score: 351.7 bits (901), Expect = 4.8e-93 Identity = 184/288 (63.89%), Postives = 210/288 (72.92%), Query Frame = 0
BLAST of Spg000057 vs. ExPASy TrEMBL
Match: A0A498JEA3 (Ribosome assembly factor mrt4 OS=Malus domestica OX=3750 GN=DVH24_033280 PE=3 SV=1) HSP 1 Score: 347.1 bits (889), Expect = 1.2e-91 Identity = 184/295 (62.37%), Postives = 220/295 (74.58%), Query Frame = 0
BLAST of Spg000057 vs. TAIR 10
Match: AT1G25260.1 (Ribosomal protein L10 family protein ) HSP 1 Score: 297.0 bits (759), Expect = 2.7e-80 Identity = 160/294 (54.42%), Postives = 195/294 (66.33%), Query Frame = 0
BLAST of Spg000057 vs. TAIR 10
Match: AT3G11250.1 (Ribosomal protein L10 family protein ) HSP 1 Score: 57.8 bits (138), Expect = 2.7e-08 Identity = 39/142 (27.46%), Postives = 68/142 (47.89%), Query Frame = 0
BLAST of Spg000057 vs. TAIR 10
Match: AT3G09200.1 (Ribosomal protein L10 family protein ) HSP 1 Score: 57.4 bits (137), Expect = 3.6e-08 Identity = 39/142 (27.46%), Postives = 68/142 (47.89%), Query Frame = 0
BLAST of Spg000057 vs. TAIR 10
Match: AT3G09200.2 (Ribosomal protein L10 family protein ) HSP 1 Score: 53.5 bits (127), Expect = 5.2e-07 Identity = 35/112 (31.25%), Postives = 56/112 (50.00%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Sponge gourd (cylindrica) 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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