Cmc08g0228431 (gene) Melon (Charmono) v1.1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.TTTTTGAACTCCCTCCAAGGATTATTTTCTCTCAAACCACATTCTCTCTCTACCGAAAACGCAAATGCAAAGCATATTCTCTCTCTCCACCGAAAACGCAAACACAAAACACATTCTTTCTCTCTACCGAAAACGCAACTCGCCGGCGATTCCGCTCTAGCCACCCACCGATTCCACTACAGCCACCCGCCGATTCCACTACAGCCACCCGCCGCCGTCGATTCCACTCCAGCCACTGCCGTCAAATAAAGGGTTGCAACGCCGTCTACGTATTTGCTTCGCCGTTCGGTACTTCTCCTCCGGTACAAGATCTTCCGCCGTCCGGTGCTTTATTCCATTCGTGCTCTTTATCTTTTGTTCGTTTCCTTCACTCTCTTTTCTCCCGTTTGTATTTTTTTTCTGAAATTTGAGTTACTTGATTGCTATTTTAAGTGTGTATGCTTTGTAATCTTTGTATTCAAATTAAGTATGATTTGGGTGTACGAATTTGCTCAATATTTTTAGCTAATATTAAGGCTCTCATATTTTCCACTTTCTGATGCATATCAGTAGGCTAGATGAATACTTTCTTTTGATATCAGTTGGCTTCATTACCTGTGAAGGCTTTGGTTAACGGAGCTTCCATGTTTTATTATTATACTCAGTAAGCATTCGCTTCTTACTATGATTATCATGTTGCCTATCTTAAATTAAAGTACAGCAAATTAAACTTTTTATGTATTACTATTTTGTCTCTGATGAATTGTTCTAGTCATTACTTCTCGCTGTTTTGTTTATCAGAACAATTGAGTCAGTGATCGTTTTCTGTCACTTCATAAATTTACGTTAATTGCATTCCAAATTTCTGTACACGAAAGTAGAAAATAAACCAGTCAATGGAAATGTACCAAAATCAGTAGACCAAAGTAGGAACGAAATCAGTCAATGGAATGCATCTGAAATCAGTAGAAATAAATCAGTGAATCGAAAAGTAACGAAATCGGCGAATGGAAATCAGCCACAAAATGTATGAGATGTAACATAAGCATTCAGATGTATGTGCATACAGGTAAAGATCTACTCATCATCGGCTTGTGTTTGAAAATCCTACTCATAAGAATACCTCTCTACCATGCTCAATTTAGACCTATTGCTAGCCAAGACCAAGAAGCACCTGTTCTACATCATTAAACGACAACCCGAAATGCCAAGTTTAACACCGAGCGGGAAGGGGGTTAGATCGAGCGACAAGGAAAACATTTAACGAGAAAAACACATAAGCATGTTCACGGAGAACATGCAAAAAAAGAGAAAACTAAAAGGAGTTTGGAAGCAGTGCCGGTGGAGGGTTGCCTTCAACAAACCTACATTCGTTTTCGCGGAGTGAAAGAGACGGATGAGAGAGATGTAGATCGGCGTTGGGCATCATCATAGGAAACTCCTTTTCCATGGAAACGGGGAAATGGATTTTTTGGCAAAAAAATCCATATTGGCCAAACTTCCTGTCAACGAATTGACACAAAACGAAAATGGAAGAGAATAGGGAGAACAAGAAACCACAAAAATTGGAAGTGGAAGAAGAAGACGATCGAAAATTTCAACACGGATTGATCAAGAGTGAAACACGGGTTGAAGGGAAACAAATGGGAGGGGTTTTCGGCAAAGATAATCGACGAAAATTTCAACGAATCAATGCAAAATGAAAATGGAAGAGATTAGGGAGAAGAAGAAACCACATAAATTGAAAGTGGAAGAAGAAGAGAATTGAAAATTTCAACACTGATTGCGGGTAGAGTAAACACGAGTTGAAGGGAAAGAAATGGGAGAAGTTTTCGACAGAGTGGTTTTCGAATAGGGTAGGGATAAAATAGGGATTATGGAAACCCTAAAACTTGGGCCAAACGGGGGTTAGTGTTGGGATAAGCTAAGCCCACAATGATTACACTTAACCCTAAACAACCCCTCTGGATCTATCTAGCCAATAAAAAGGTAGAAAATCCTACTATAACGGGTAAATAGTTTAGCCTATTTTTCTATATTTAAAAAGCTGCTAATAAATATATATCAAATGAATTTTGAACTGAGACACGCAATTTTTACAATATTTCCAAGATGTCAAAGAGAAAAATTTGAGAAACCTACTTTGATTTATTTTTCAAGATATACCTACTTTAGAATTCTTTTTATCCATTGTAATGTTTATGATCTTCTGATTGTTCAGATTCACATTTCTATAAGAACTGACATTTTATGCAGTAAAGATTTTATCGACGATTTCGAGGTATAATTGCTTTTTTTTAACTTCCTCTCGCTTCATAATCTCACTGGAATTTTCTTTCAAGCAACGTTCATGATCAGAGAGTATTTTTGGGTTTTGACTTGTTACGAGTGAAATGTTATTTCCTGCTTTCACGTTCCATTTTCTATTCGGTTGACTAAATTGTGGTTTATTGAAGTTTATGGACTAAATTGTTACTAGACTAGATAAACTAAACCATACCTCTACGAAACTTTAAGGATCAAATCTGTTTGCCTTATGACTTCTTTCTTAAGTGTTTGTCGTTTGCTCGTTGGTCTTTTGCTGACTTTGGCTTAACGTTCATGTGTTCTCTAGCTTTGATTTCCTTTCTGGATATGGTTTGTTATGATTTTAAGTGTTTGCCTTTTGATGTCTCTTCGTTGTATCTCAATAGTATTGTCTTCTTTTGTTATTCTCAACTGCTTTATTCTCTTGAAGGCTAATGTATATTTTTAGGCCTTGGTCTCTTTTAAACTAGTATATATCTTAAACTAACATAACATAATGAGAATCATCTTTTTTTGACTACTTCAACACTAAAGTACATATAAGCAGTTTGATACAATAACCAAAAGAATGTTGTGGAAATATAAGTAATAAAACACAAAGCTAACAAAAATACTTGGACTCAACTTTTAGACTATACCTTTCTCTAACAACATTTTACTTCTCAATATCCAATGCATCCATACCAGCATAAATGAAGATAAAAATCTCTGCCACAAAAGATAATGTTGCAAAAGCATGGCTGTAAGTATCAATGAGTGATCACAAACAAATCAATTCTATAAATACTTCAGCATAAGATTTCAATTACAATAAAACTTGAAAATGAGGTTTCAAGCAAAAGAATAAACGTATCGTGGTATGAGTTTGGAACTATCATTCCCGTTATTCCAAGATGTGTAGTGAGACATGACAACCCCACAGAAGAAGACACTAAGAATACCACTAAGAAGAAACAACTGCAATAATAAACTATGAATATGTCATCACAAAGGAAATGGAATAAAAATTCATACAAGTAAAGATGATTATCCTTTTGACTTAACAACACATAAGGAGAAGACTTACTTCAACAATCTTATACGAGAGGTAGACCATCAAAATCATTGGAACAACTTCATAATCTGTAGGGTGCCTGAGATGTGTTATATAACATCTATATTAATAAGCCAAGCACACCTTGCAAGTAAATGTAATTAACTGCACGGAAGTATACTATTAGTGAATGTAACCCTTCACACGATCTCCTCAATGAGATCTTCAGATTGTTACAGGACAAGGGAAAGATAATATACATCCCTACATTTAGTCATTTGAACGATAAAAAGAAATTGAACAATATTCGTACCTGCCTAAGTATAGTTCGTTTATGATAAATGCACATAGCAGCCCAACCTCCAAAAAAGAAAATTAAAAAATATAAAGATATAACAAAAAATCAATGTAACCAAAGAGAAAACATAAATGAATAAAAAGAACAACAAATAAACGAACTTATTTTTAGACCATGAATATTAGAAGTTTCCATTTTAACTTACTTTATATAATTTAACAAACTATAAAAGTTCAATTGTTTTACAAATCTTCACTGAGGGGGCAGAGCAAAAACATATATACCTAAGAGAGCGGGAAAATTGTATACATTTTATATTCAATAATTCAATTGAATTTCAGTTGGAAAATCCTAACATAGCATTAGGTAAAGGATACTGTAGTAAAAGATTTAATCACCATAATGAGAATCTATCTTAATGAGAATCTATCTTTTTGTGTTTTAATATATACATATCTACGCACATTTGAGGAGTGCTTTACACATACACGCACGAGAGATAATGAGTGCCTAGACAAATTTTGCTCTCCTTGACTATTTTTGTTACTATTTCATGTTCAAGTCAATTCCATCCTATTCCAAAGAGATATTGATACATTTGAAGAGTTTTATAGGTTTTAGAAGTGCATCTTTATTGGTTGCAAATGCAACTCCAGAGAACTCTTAGTGGCAAGTTATAAGAAGCCAAACCTTTATTACTAAGCAATACCAATATTTAAGAGATGATGATTATCCTAAACACATAAAACTAAAAGCAATCTTGTATGACTAAACAAGTATGGAAAAAGTAGGTTAAGTTCATAGATATGATTCACCTTTTTAGTCTGTGTGCCAATTCCATAGGGACTACCTAGTCGGCTGTGTCAAATGTTAATCATCTCATTAGAACAGTAGAACAAGTTTTAAGAAAGGAAAACCAAACTCTGAAATGTTCTATAATGAGTGAAATTACATTAGTAATCTTGGGAAGATTTGACAATTTCCTTTCCTCGTGTAATGCTTGAATCAGCTCCTTCTTTTGTTTACGGTTTTCAGTACACAATTCCTATAGTAAAATCAATTGACATTTTAAAATTTAAAGTAAGCTATTTGCTGACAACAGAAAACTAAATAGTTTTAATAACATTACAGGGTTGAACACACGGAGCCTCCCATAGTAATAGAAATGGCTAAAGTGTCAACTTTGCAGTATTTTGATTGATTGGTGCATCTTGGTATGGTGCAGTTTTTGTATACCTAGGATACAGTTTGGTTGTGTTTTTGTTTTTTTCTTTTTTTTATAGAATAGGGTTTTGTCTACCGTAGCTAAGAGCTATATAGATGTCTGTAAAAGTTCCTTGGCTCCTGGATTATAGAAGACTTTGACAATCGCTTTTAAATTTGTTGAGCGGAAGTAACACTCATGAATGATGTTCTATTCTTGATCATAATTTTGAGCCTGAACTCTATGCGTGCCCATCATTTTAGTTGCTTGCCCACTCTCTCTCTCTGGTTGGGGATGGTGAAGTACCTCAATGCTGTTGGAAAGGGAGTGGTGAAGTACTTTGATGCTGTTGGAAAGGGAGTTTATAATTTGAAGGACCATAAGAAATATAGCTTCCGGATTTGGCTTTATGTATTTATTCATTTATTTGTTACTAGTTTTTGTTTTTTAGTAGTTCCATGTGAAACCAATTCATAATTGCTCAATTTATTTTTCATCAAGGATATTTAGATCAAGAAGTTGATTTATTTATGGGGAAAAAGTCAAGTTGTAACCTTAAACTTCATAGATTGAGTCTGTTGAAATTCTAAACTAGTAACTGTACCAATTAAATGCAATCAATTCTAGGCCCTTTGTTAGGATTTCATTTTAAAACCATAATTTTCATGTGTAAACCATTAAGTTGATCCTTTTTTAGGTTTCCGTTTTGCACAACTTAATTACATACAGGAACTAAGTGGGCAGTAGTGAGTAGTAATGACTTGCATTAATATGACCGCATTTTTTTTTTTTTTTAATTTTGTCTGCTTTCTCTAATGTTCTCTACTTATTTTGGAAGAACTACCCTTTATTTTTGGTAGATTTATGTATCAATTACTTGCTGTTATTGCCATTCTTGTTGTACTATTTTTCTTTTTCTTGTAAAGTTGCCTCCTTCCATATCTCCAAATACTTTTATTTACTTCCGAATACTTTTATTTACTTCATTAATTTTCTACTTCAATTCCTCCCAAGGCCAAACCATTCTTTTCTACCGTCATGTGTTACCCTTGAAGCCTCAAATTGATATTCCAAGAAACCACTTTCTTGCGATTCTTCCTTCCGCCCTCTGTACGACTATTCTTCCCCAGCGGCGGCACCTTCCGCTGCAGCAGCATCAGACAGACAACGGTGTCACATTTGGACGAGCAACGACGCTACAGTATGAGCGGCAGTATCTTTGAACGGCAGATTTTTCTGATTTCTACATGTTTGTTGGGTCGATTTTAGTTTGCTTATGAAAATTGTTGTCTATCGGGACTTCTCGAACTGTTGTGTGCTACAATTTTTCTTTTGATTTCTTGAATGTGTTTTTCAATTGAGGCGTTGTTCATCTGTATATCTCTTTAGTCTTTGCTGACATTACCTTGGTCTGTCCATTGGGGAACATGGAACGGAGCTTGCTCACTTGATGGTCATACTTTTTGAATGTAAGTTTTATTGTGTTTTTGAAGATTTGGAGTTCTTTCCTCGTTTGCTTGAAATATGACTTCAAGACCAGAACTACAAGCTCCTCCAGAAATATTCTACAACGATGCAGAGGCTCGAAAATATACTTCATCCTCGCGTATCATCGAAATTCAGGTATGCCTACCAGTGATCTTTGAATGATGCCCCTCCTAGTCTCAATTTTGTTCTTAGAAAGTGTCAGTAATATGGAATGCCTAGCTCAAAAGGGACAATCTAGTTATGGAAAAGGATTTGTCAGTGGCAAATTTAATTCAGGCTACTGACTTTTTTCCTGGCTTTTTGAACCAGAGTGCTGCGTCTTTTCGAATAATAGAAGTGGTTTCTCCATGCTATATGAGTTTTCTTATTTGTTTGTTGGTGTATGTTGAAGGCAAAAATCACAGATAGAGCATTGGAGCTTCTTACTTTGTCTGATGACGGAGTCCCCAGATTGCTTCTTGATATTGGTATCTGTCTTTCTCCATGTCCACATATACTATAACTCTTCAAATGTTAAAATTGAAAGCTTCAAGTTCATATGTCTTACAGACTTCTGAAATAGATAGTAAATCGTGGATGATGAGATGGACGTGAATAGTATCACAAACCGTTTCACTTTCTTGCTGCTTTTGCAGTTCTGTATGAAACTCTGGTCAAAAGTGGATAGAATGATTTGGTTTGTTCAAACAATGGATAATAAATATTTTGTTTTTTCATGTGTCCTATATGATGAATTTTATCATAATCTTCTATTTTTATTTCCATGCTTATATACATCCTTTTAGTGTCTTATGGATTATGGATAATGGATTCAGTGTGAATGATTCATTCAAGTCCATTTGACGTGGCCATAGACTACAGTGTACTATTGTGTTCATTAAAAGATGAGTGGACTTTTACCATGCTTTTCAGTTAGGATTCAGATTTCATATTCAATTTTGGTTTGTAGTTTCAAATTCTTGTATGCCTTCAAAAGGATTATTCTGAACATGTATGCTCTTTGAATACTTCAGGCTGTGGATCGGGTCTGAGTGGGGAAACATTGTCTGAGCATGGGCACCAGTGGATTGGTTTGGATATATCTCAATCAATGCTTAGTACGTGAATGATTTGAATTAATCTGAATATAATATAGTCGAATATATTATTTACTCCTAGGAACTTTGTTCACTATGCCTTATTTTTTTATTTTTTTTTTTAAAAATCAGATGTTGCATTGGAGCGGGAGACTGATGGTGAACTTTTACTTGGTGACATGGGTCAGGTATTTCATTCGTGATTGCAAGCTAACTAGTTTGCATTTTCCCCCTTTTCTAAGAAAACCTACTTTATTGTTAACGGTCAATTTATTTAAAAGAACGTTGTTATTCTGTAGTAAAAGTACAATCAAAACCTAATCACTACATGAGACGAAGGTTATCTTATTTTAATAAGAATCCTGAACCCGAATTTTTGCCTTCTGGCGCAGGGATTAGGAATTCGTCCTGGAGTTGTTGATGGGGCTATTAGCATCTCTGCGGTTCAGGTATAATACTCGGCTTTTGTTTGTGGTTATTGAGTGATCACCTATCACCGCAAGGTTGTTGTGGGGTCGAAGTTGCAAATTGTAATATTAGCATTATCTTGCCTCATCCTTTCTGGTTCTTTTATGATTGTATGACCAATCTATTAGCTTTGGAAGTTGTAGAGGTGAAGTGCAGTTCTTAACTTGGTGTTTATTTAAAATAAGTTGATTATTTGAGGAGCATGTCTCACTTTCACTTCGTTCTTACAGTTAGAAGTTCCTTCTAAGAATTACTTCTCTGAAATATATATATATATATATATATATATATATTTCCTAATCCTTGTTCAATGTACCTGTGAAGTCGAAGCTTCTGGACTTTGCCCTGCATTTATCTGACTAATTGATCTTCTATTTTTATTTATTTATTTATTTTATTTGTTATAATTTTACAGTGGTTGTGCAACGCTGACAAGTCCTCTCATAATCCTCGACTAAGATTGAAGTATGTGTTACAAATTTCTCACCATCAGCTTTAAGAATAAACTGCATGCTGCTTGAAATATTTGACAGATGGATGTGAAATGAAATACGTATTTACTAAGAATTTTTTGCTCAAATCATTTTAGGGCCTTCTTTGAATCGCTATACAAATGCTTAGCTAGGGGTGCAAGAGCAGTGTTGCAAGTTTATCCTGAAAATGTGCACCAGCGTGAGTTGATTCTAGGTTTTGCCATGCGAGCAGGATTTGCTGGTGGTGTCGTCGTTGATTACCCACACAGGTATGATTATGCTTGATATTTTTAATTAAACATGTATCCTAAAACCATTATTTAAAATTTTATCTACATTGCCTCTTGCTGATTTCAAGACAATATAATGGAGGATATAACTACCTTGAATAGGATCTGTTCTATAAGTTGTAACCATGTGAGTCCAAATGTCCAATACGAGGTTATATGCTAATTTTATTCTCAAAGCAAAAAAAGTTGCTAGATCAAGTGAAAAGCAAAGCAAGTGAAATCTTATTGTGAGTCTAGAAGGATATTCAGATGATGTTGATTATTGGTTTAGTTATTAGTTGTCAGTTATCTTTTAGGAATTTTGATGGATTGCTAACTCAGGATTGATATATACAATACACAGTGCGAGGAGTAGAAAAGAGTACCTAGTGCTGACTTGCGGTCCGCCATCAATTAGTACAACTGTTCCAAAGGGAAAAGATGGAGACTGTGAGAGCTGTTCTGATGATGATGTTGCTGAAGATGATGAAAATCAAACCGTATGTTTTCTTGCTGCCTATTCGCACAACATGATTTTCCTTTGATATATATGAATATCATCTGGTTTAGAGTTGAAAATGACTGTAAAATGCATCAATTGGATTGTAGGTTCGTATGGCAGCACCAAGGAAAAGGCAGAAAATCATGAAGAGAGGCAGAGGAAGAGAGTGGGTACTGAAGAAGAAGGAACAGATGAGAAGAAAAGGAAACATTGTCCCTCCTGACTCGAAATACACAGCCCGAAAACGCAAGGCTTGCTTTTGAATATTGCATTTTTCATTTTATTCTTGTGATTACTTAAGCTATTACATAAAAAGTTATAAGAATTATTGAGCTTTGATTGAATTTTTCCGTCCGTCTTCAAATTCAACCATATATATTATGTATATGGTGAATGGATTGAAGGCAGAGTGAAATTTTGTAGTATATGTTATCAGTTATATTATTGAGATTAGTTTTTATAATTCTGTTGTG TTTTTGAACTCCCTCCAAGGATTATTTTCTCTCAAACCACATTCTCTCTCTACCGAAAACGCAAATGCAAAGCATATTCTCTCTCTCCACCGAAAACGCAAACACAAAACACATTCTTTCTCTCTACCGAAAACGCAACTCGCCGGCGATTCCGCTCTAGCCACCCACCGATTCCACTACAGCCACCCGCCGATTCCACTACAGCCACCCGCCGCCGTCGATTCCACTCCAGCCACTGCCGTCAAATAAAGGGTTGCAACGCCGTCTACGTATTTGCTTCGCCGTTCGGTACTTCTCCTCCGTAGGCTAGATGAATACTTTCTTTTGATATCAGTTGGCTTCATTACCTGTGAAGGCTTTGGTTAACGGAGCTTCCATGTTTTATTATTATACTCAATTCACATTTCTATAAGAACTGACATTTTATGCAGTAAAGATTTTATCGACGATTTCGAGATTTGGAGTTCTTTCCTCGTTTGCTTGAAATATGACTTCAAGACCAGAACTACAAGCTCCTCCAGAAATATTCTACAACGATGCAGAGGCTCGAAAATATACTTCATCCTCGCGTATCATCGAAATTCAGGCAAAAATCACAGATAGAGCATTGGAGCTTCTTACTTTGTCTGATGACGGAGTCCCCAGATTGCTTCTTGATATTGGCTGTGGATCGGGTCTGAGTGGGGAAACATTGTCTGAGCATGGGCACCAGTGGATTGGTTTGGATATATCTCAATCAATGCTTAATGTTGCATTGGAGCGGGAGACTGATGGTGAACTTTTACTTGGTGACATGGGTCAGGGATTAGGAATTCGTCCTGGAGTTGTTGATGGGGCTATTAGCATCTCTGCGGTTCAGTGGTTGTGCAACGCTGACAAGTCCTCTCATAATCCTCGACTAAGATTGAAGGCCTTCTTTGAATCGCTATACAAATGCTTAGCTAGGGGTGCAAGAGCAGTGTTGCAAGTTTATCCTGAAAATGTGCACCAGCGTGAGTTGATTCTAGGTTTTGCCATGCGAGCAGGATTTGCTGGTGGTGTCGTCGTTGATTACCCACACAGTGCGAGGAGTAGAAAAGAGTACCTAGTGCTGACTTGCGGTCCGCCATCAATTAGTACAACTGTTCCAAAGGGAAAAGATGGAGACTGTGAGAGCTGTTCTGATGATGATGTTGCTGAAGATGATGAAAATCAAACCGTTCGTATGGCAGCACCAAGGAAAAGGCAGAAAATCATGAAGAGAGGCAGAGGAAGAGAGTGGGTACTGAAGAAGAAGGAACAGATGAGAAGAAAAGGAAACATTGTCCCTCCTGACTCGAAATACACAGCCCGAAAACGCAAGGCTTGCTTTTGAATATTGCATTTTTCATTTTATTCTTGTGATTACTTAAGCTATTACATAAAAAGTTATAAGAATTATTGAGCTTTGATTGAATTTTTCCGTCCGTCTTCAAATTCAACCATATATATTATGTATATGGTGAATGGATTGAAGGCAGAGTGAAATTTTGTAGTATATGTTATCAGTTATATTATTGAGATTAGTTTTTATAATTCTGTTGTG ATGACTTCAAGACCAGAACTACAAGCTCCTCCAGAAATATTCTACAACGATGCAGAGGCTCGAAAATATACTTCATCCTCGCGTATCATCGAAATTCAGGCAAAAATCACAGATAGAGCATTGGAGCTTCTTACTTTGTCTGATGACGGAGTCCCCAGATTGCTTCTTGATATTGGCTGTGGATCGGGTCTGAGTGGGGAAACATTGTCTGAGCATGGGCACCAGTGGATTGGTTTGGATATATCTCAATCAATGCTTAATGTTGCATTGGAGCGGGAGACTGATGGTGAACTTTTACTTGGTGACATGGGTCAGGGATTAGGAATTCGTCCTGGAGTTGTTGATGGGGCTATTAGCATCTCTGCGGTTCAGTGGTTGTGCAACGCTGACAAGTCCTCTCATAATCCTCGACTAAGATTGAAGGCCTTCTTTGAATCGCTATACAAATGCTTAGCTAGGGGTGCAAGAGCAGTGTTGCAAGTTTATCCTGAAAATGTGCACCAGCGTGAGTTGATTCTAGGTTTTGCCATGCGAGCAGGATTTGCTGGTGGTGTCGTCGTTGATTACCCACACAGTGCGAGGAGTAGAAAAGAGTACCTAGTGCTGACTTGCGGTCCGCCATCAATTAGTACAACTGTTCCAAAGGGAAAAGATGGAGACTGTGAGAGCTGTTCTGATGATGATGTTGCTGAAGATGATGAAAATCAAACCGTTCGTATGGCAGCACCAAGGAAAAGGCAGAAAATCATGAAGAGAGGCAGAGGAAGAGAGTGGGTACTGAAGAAGAAGGAACAGATGAGAAGAAAAGGAAACATTGTCCCTCCTGACTCGAAATACACAGCCCGAAAACGCAAGGCTTGCTTTTGA MTSRPELQAPPEIFYNDAEARKYTSSSRIIEIQAKITDRALELLTLSDDGVPRLLLDIGCGSGLSGETLSEHGHQWIGLDISQSMLNVALERETDGELLLGDMGQGLGIRPGVVDGAISISAVQWLCNADKSSHNPRLRLKAFFESLYKCLARGARAVLQVYPENVHQRELILGFAMRAGFAGGVVVDYPHSARSRKEYLVLTCGPPSISTTVPKGKDGDCESCSDDDVAEDDENQTVRMAAPRKRQKIMKRGRGREWVLKKKEQMRRKGNIVPPDSKYTARKRKACF Homology
BLAST of Cmc08g0228431 vs. NCBI nr
Match: XP_008442118.1 (PREDICTED: probable 18S rRNA (guanine-N(7))-methyltransferase [Cucumis melo] >XP_008442119.1 PREDICTED: probable 18S rRNA (guanine-N(7))-methyltransferase [Cucumis melo] >XP_008442121.1 PREDICTED: probable 18S rRNA (guanine-N(7))-methyltransferase [Cucumis melo] >XP_016899583.1 PREDICTED: probable 18S rRNA (guanine-N(7))-methyltransferase [Cucumis melo]) HSP 1 Score: 572.0 bits (1473), Expect = 2.9e-159 Identity = 285/288 (98.96%), Postives = 286/288 (99.31%), Query Frame = 0
BLAST of Cmc08g0228431 vs. NCBI nr
Match: XP_008441765.1 (PREDICTED: probable 18S rRNA (guanine-N(7))-methyltransferase [Cucumis melo] >KAA0051380.1 putative 18S rRNA (guanine-N(7))-methyltransferase [Cucumis melo var. makuwa] >TYK23843.1 putative 18S rRNA (guanine-N(7))-methyltransferase [Cucumis melo var. makuwa]) HSP 1 Score: 559.3 bits (1440), Expect = 1.9e-155 Identity = 279/288 (96.88%), Postives = 282/288 (97.92%), Query Frame = 0
BLAST of Cmc08g0228431 vs. NCBI nr
Match: XP_004150640.1 (18S rRNA (guanine-N(7))-methyltransferase RID2 isoform X1 [Cucumis sativus] >KGN50577.1 hypothetical protein Csa_021466 [Cucumis sativus]) HSP 1 Score: 557.0 bits (1434), Expect = 9.6e-155 Identity = 279/288 (96.88%), Postives = 282/288 (97.92%), Query Frame = 0
BLAST of Cmc08g0228431 vs. NCBI nr
Match: KAG7029924.1 (putative 18S rRNA (guanine-N(7))-methyltransferase, partial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 546.6 bits (1407), Expect = 1.3e-151 Identity = 272/288 (94.44%), Postives = 280/288 (97.22%), Query Frame = 0
BLAST of Cmc08g0228431 vs. NCBI nr
Match: KAG6598963.1 (18S rRNA (guanine-N(7))-methyltransferase RID2, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 546.6 bits (1407), Expect = 1.3e-151 Identity = 272/288 (94.44%), Postives = 280/288 (97.22%), Query Frame = 0
BLAST of Cmc08g0228431 vs. ExPASy Swiss-Prot
Match: Q9LVD0 (18S rRNA (guanine-N(7))-methyltransferase RID2 OS=Arabidopsis thaliana OX=3702 GN=RID2 PE=1 SV=1) HSP 1 Score: 408.3 bits (1048), Expect = 7.2e-113 Identity = 204/291 (70.10%), Postives = 246/291 (84.54%), Query Frame = 0
BLAST of Cmc08g0228431 vs. ExPASy Swiss-Prot
Match: Q9CY21 (Probable 18S rRNA (guanine-N(7))-methyltransferase OS=Mus musculus OX=10090 GN=Bud23 PE=1 SV=1) HSP 1 Score: 300.4 bits (768), Expect = 2.1e-80 Identity = 161/285 (56.49%), Postives = 199/285 (69.82%), Query Frame = 0
BLAST of Cmc08g0228431 vs. ExPASy Swiss-Prot
Match: Q58DP0 (Probable 18S rRNA (guanine-N(7))-methyltransferase OS=Bos taurus OX=9913 GN=BUD23 PE=2 SV=1) HSP 1 Score: 287.3 bits (734), Expect = 1.9e-76 Identity = 154/288 (53.47%), Postives = 199/288 (69.10%), Query Frame = 0
BLAST of Cmc08g0228431 vs. ExPASy Swiss-Prot
Match: O43709 (Probable 18S rRNA (guanine-N(7))-methyltransferase OS=Homo sapiens OX=9606 GN=BUD23 PE=1 SV=2) HSP 1 Score: 282.3 bits (721), Expect = 6.0e-75 Identity = 152/285 (53.33%), Postives = 199/285 (69.82%), Query Frame = 0
BLAST of Cmc08g0228431 vs. ExPASy Swiss-Prot
Match: Q55DA6 (Probable 18S rRNA (guanine-N(7))-methyltransferase OS=Dictyostelium discoideum OX=44689 GN=DDB_G0269722 PE=3 SV=1) HSP 1 Score: 274.6 bits (701), Expect = 1.2e-72 Identity = 137/287 (47.74%), Postives = 201/287 (70.03%), Query Frame = 0
BLAST of Cmc08g0228431 vs. ExPASy TrEMBL
Match: A0A1S4DUE0 (probable 18S rRNA (Guanine-N(7))-methyltransferase OS=Cucumis melo OX=3656 GN=LOC103486075 PE=3 SV=1) HSP 1 Score: 572.0 bits (1473), Expect = 1.4e-159 Identity = 285/288 (98.96%), Postives = 286/288 (99.31%), Query Frame = 0
BLAST of Cmc08g0228431 vs. ExPASy TrEMBL
Match: A0A5A7U884 (Putative 18S rRNA (Guanine-N(7))-methyltransferase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold419G00070 PE=3 SV=1) HSP 1 Score: 559.3 bits (1440), Expect = 9.4e-156 Identity = 279/288 (96.88%), Postives = 282/288 (97.92%), Query Frame = 0
BLAST of Cmc08g0228431 vs. ExPASy TrEMBL
Match: A0A1S3B4Y4 (probable 18S rRNA (Guanine-N(7))-methyltransferase OS=Cucumis melo OX=3656 GN=LOC103485823 PE=3 SV=1) HSP 1 Score: 559.3 bits (1440), Expect = 9.4e-156 Identity = 279/288 (96.88%), Postives = 282/288 (97.92%), Query Frame = 0
BLAST of Cmc08g0228431 vs. ExPASy TrEMBL
Match: A0A0A0KQB5 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_5G184280 PE=3 SV=1) HSP 1 Score: 557.0 bits (1434), Expect = 4.6e-155 Identity = 279/288 (96.88%), Postives = 282/288 (97.92%), Query Frame = 0
BLAST of Cmc08g0228431 vs. ExPASy TrEMBL
Match: A0A6J1EYX4 (18S rRNA (Guanine-N(7))-methyltransferase RID2 OS=Cucurbita moschata OX=3662 GN=LOC111439941 PE=3 SV=1) HSP 1 Score: 546.6 bits (1407), Expect = 6.3e-152 Identity = 272/288 (94.44%), Postives = 280/288 (97.22%), Query Frame = 0
BLAST of Cmc08g0228431 vs. TAIR 10
Match: AT5G57280.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 408.3 bits (1048), Expect = 5.1e-114 Identity = 204/291 (70.10%), Postives = 246/291 (84.54%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (Charmono) v1.1
Date Performed: 2022-10-13
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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