MELO3C007852.2.1 (mRNA) Melon (DHL92) v3.6.1
The following sequences are available for this feature:
Legend: exonfive_prime_UTRCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATATCAACAATTAAATCTCTTCCCAAAACAAAACAAAAAATCAAATTTCACAACAGAAAAGAAAGAAAGAAAGACGAATTATAATGGAAGTAGCTCAAGTTCTTCACATGAATGGAGGAGCTGGAGATTTTAGCTATGCTAACAATTCCCTTCTTCAGGTAATTAATATTTAAAGTTATTCTTTATATTCGAATAATCTCTTTACATGTTTCGTTTCCCATTACTGTCAGAACCCAAAAGTTTAACTTTGTGATTTGTCGTCTAACAGTCGAAGGTGATATTGATGACGAAGCCGATTGTGGAGGAAGCGATAAACAACTTATATTGCTCCAATTTCCCAACAAATTTCACCATAGCCGATTTGGGATGTTCTTCAGGACCAAACACTTTAATGACAGTTTCTGAACTGATTAAAGTAGTGGAAAAAAATCGACAAAAACACAACAAAGAACCAATTGAATATCAAGTATTGTTAAATGACTTACCTGGAAATGACTTCAATACAATCTTCAAATCATTGCCTAATTTCCTTGAAAATTTGAAAATGGAAATTGGAGATCGTGACGTTGGGCCTTGTCTCTTTAATGGGGTGCCTGGTTCTTTCTATGGAAGACTATTTTCTTCAAAAAGTGTGAATTTTATTCATTCTTCATATAGTCTTCATTGGTTGTCTAAAGTTCCAGAAGGGTTAGAGGAAAATAAGAGAAATATTTATATGGTAAATACAAGCCCAAAGAGCGTGGTGGAGGCTTACTATAAACAATTTCAAGAGGATTTTGAATTGTTTTTGAAATGTAGGAGAGAAGAATTAGTGAAGGGAGGAAGTATGGTTTTAACACTTTTGGGAAGAAGAAGCCAAGATCCAACTAGTAAAGAGTGTTGTTACATTTGGGAGCTTTTGGCTATGGCTCTTAATGATATGGTCTCAGAGGTACTTCCTCTTTTTCTCTCTAAAATTATATTGCATGCAATATATAAATGATCTTATTATTATTTTTGTCTTTAACTTTGTTATATATTTTTCCAAAGTATCATGTTAAAATAATTGGATCTTGATTTCCATTTTACAAAAGAATATGTTGTTTGAGAATTAATAATTGGATCTTTCTTTTTTTTTTTTATTGGACAGGGAATTATAGAAGAGGAGAAATTAGAAAGTTTCAACATACCCAAGTACATGCCATCACCAACAGAAATGAGAATTGAGATCGAAAAAGAAGGATCTTTTGTGGTTAATCGCATTCAAGTTTCAAAAGTGGATTGGAATATTGTTTACAATGATAATACTAACAAGGATGATAATGGTGGGTATTATGTAGCCAAGTACATGAGAGCTGTGGCTGAGCCAATTCTTATAAGTCATTTTGGAGAAGCAATCATCGATGAATTATTCTTCAGATATGGACAAATCATTGTAGATCGAATGGCTAAGGAGAAACCCCAGTTTGTTAATCTCACTGTTTCTCTCACTAACATAAGGTAGCGATTGAAAATATAATCAATTTGTTAAGATAAGCTTAGCTCAACTTATATCTCTACGTTCCCAAAAATAAAATGTCACAAGTTCAAATCCTCTATCCAAATTGTACTTGGAAACATTTTCAAAAATTAATTGCTCAAATATTTTATCGTTAAATTACGTAGTCATTATTGTGTGTCTTAGTATGGTATATATGTATACGTACGTTAAGCTGACAAAAATGTGTTAAAGTCAGATTTTGCTTCAATTTTTTAATTAGTGTCAGTAATATTTTATTTGTGTTAGTAAACCCTAAATCCATGGAATGAATTTTCAACCGATCTAAAAAATATATTCATATTTGGAAAAGAAAATATAAAATCTTAAATAAAATTCTCTGGAATGTTGTTATATCTAAGACACCATTTGGGAGAAGGAAAGGAAAAGAAATGACTATATATTATTCTAACATTGTTCAATTTTAATTTTATCATATTGGACTTTACACTCAGACGAGTGTTATCTTAAGAGCTTTATTATGAAATGTGTTAAGTTTTCACTCCAAATATTATTAAAATTGATGTTTCTATTATGTGTTTCAATATATCTTCTTATATAAAAAACATATGTATGATACTAATCGACCAATGTTTGATACTAATCGGTCTATTTCCCTTTTGTTGTAATAAGTTACTATTTTTTGCAAAACTAGTTGTGAACAGTTGGACGAAACTTAATTATTAATCTGTCCAAATTTTTTTAAAAAAAGAAATTTATAAAGATTTTACACAGTTTTTTACACTAGAAATAGTGCACAAAAATAAAATCAGGAGTAAAAATTGCCATACTTATTTTAACATACAGTGAAATAATTTGATGAGTTTATAATCAAAATCAATACGCCATGCTGATTTTTTCCATCTTTGATACTATTTTAAGAGAGAAAAGACATTTATATTTGAAGTGAAGATGACGAAAGTACTACAAAACTACGTATCTAATATACATATTCTGGTGACAACCTACTACTAAACCATCGTTGTGTACTCTTTCTAGAAGGAAGAAAAAAGAAACACATACTTCATTTAAATCTGTTTGCCAATCATTTCAAAACACCATCTTTTAATTTGACACAAAAACGTGAAAAACTTTTTAATTTAGAAATTAAAGCAAAATAAGAGCCACACCTTCCACGATTTAAAGAAAGAATATATGTGAATAGATATAGAACTCAATATTCCATGTGGATGAGGTGATCATGGTGTCAGCTGGGGACCTAAAAATTTAAATAAAGGAGGATAGTAGGTGATATATCACTCACAACACAAATTTAAATATCATTGGAATGCTAGTTGAGATATTTCGATGTACTTTTTGATTCTTCGTTATGTATCGGATCTTAAAAGATACGAATTTTTAACATAGATGCAATGTAACTTCTTCATTAAAAAAAATATTTTTTCTTTTAACTTGAAATTAAAGAATGAAGTGACCGATAAATAATTCACCAAAACATTTCATGAATTGAAAAGTAGAGTGTTATTTCATTTCTAAAACCCACATCGATATAGATACATTAAACACATATTTTACTAAAACATTTTACAAAATAAGATTTCAATAACTTCAATATAATTCAACTTAATAATATATACAATATTTTCTTTCACGTGTTGTATTATTAATATAAAAAAGAAAAAAAAAACTTTGTTATTCATTATTGAGGAAACATTTTTAATGTATTGACTTATATTATATGAGAAGAGAGACTATTTTATTTGATGATGGTTTGATAAAAATAGTATTGAGAAAGGTTTGGATAAATTAAAACATATTAGGTATGTGAACATTAAAACAATCAAATATCATGGGATGAATGGTTATAGTTCATTCATATTATGATTTTTTTCTTCTTCATGGAGTACAATAATTTAGGGCATAGAGTCCAAAGATCTAACTACTTTTGTTTTTGGACTGCCAGATCGATCTTTTTCTTTCTTTTTGGAAAAAATGCAAGATATGTTTTATATTGGTTGAACATTCAAGTTCCCAGTTTATAAAAAATTGAAATTATTCAAATTTTATTATAACATAGTATTGTTTTTAGTAAAAATAAAAAACAAAAAACAAAAACAAATACACTATTTCACCACGTGATTCCTTTATTATTTTGTTTCTTAGATTGAATTAGAATTAAGGAGAGAATTTGGAACTCAGTATTTCAATCATTTTAAATTAATTTTATCGTCAACACAACTTAGTTAACTGACACTTATATATACCTTTGATCAAGAGTTGTTGGCAATACCTTTCTAAATAATAAATATAATAATAATTTTGATAACTCCATCGTAAAAAATAAACCACAATTTGATGGCCACGAGGTTTGAATGCTTCGATAAGTTTGATTCTTTAGCCTAATAATTGTTGGTACTAAAAAAAAATAAAGGAGAAATATATCTAAGTTGAATGGATTTTATTTTAAGACGCTTTGGTAGAAATTTCGTTTTAAACAAAAGGTTTAAAGTTATGATTCCGAAATAACTTAATTAAGTGAATAATTTATAACAAGATTTCGTTAACAAATTATCAAATCCTTATTTCATTATTGAGCATCTTGAAAATGTGACAATTCTTTCTCCTATTAAAGATTTGCTAAAGATATAATTATTTGATCAAATTGGTTAGTAGCTATCCAATTAAAAAGAGTCCTTGATCTTTAAGATGGTCACAATTTAAGTATAATTTGGTCTTATTTTCTATAACAATTCATTTCTCATTAGGATAAGTTTTTCCATATGTGATCCAGTCATCAAAAAGCAAGTAAGTTTGTATAATCTGTTTTGGTAATTTATCCATCTACTTCATCAAATCAATTTAAACACAAATATATATATTTTAAATCACATCATTGTCTTAATTACTGTTTCATATGACCAAATTAAAAGTTTAAAGTTAAAGTAATTAATCAATTTAAGCATGAGTATAGAAGATAAAACGACTAAAGGTTTTAGATATTAAAAAAATGAGTTCATAGATAATATAATGAGTATGAGACGTAGTAGGTTGATAGTGCATGTTGAGTGTGAACACATAACATAAAGATGGGCGGTGGTGAATGGATAAACCCTTCCATACTTCTTCTAAGTTGTAGACGAAGAGAAGATGTTTAATTTAATATCACATGTTAATTTATTTTATTCTATTTTTTGCATTCTCAAACCACTTAAAACTCTCCAACTATTTTAAAATATATAATCATTAGGGAGGAATTAAACATGATCATAAGTTATAAACAAATAATACAAAAAAAAAAAAAAAGTTATTTGGGTGTTAAAAAGATATATGGGGTTTTTTCTAAAATAATAATAAAAAACTAATTATCGTTCATAAAAAAATCATTAAATGTAAAAAATTTATTATATATAAAAGATAAATATGTTGTCTATTTTTTACAAAATTTTAAATATATATATAGAAAAATATAGATAGCTAAAAAAAAAAAAGCAAAATGTAACTAGAACAACGAGATTTTTCTTTTTATATTATGATAAAATAAGGGTAGAGAAATTCAAATCTCTAGCTACTTCATTTAAGAATGTGACGTTGAGTTCAACGAAAATAAACTCTAAATTTTCATAAATAAAAATGAATAGTTTTTTAGATTGTAAGAATTTTGATTTGAAATGATAACCATCTATTTTTCGACATGCATAATAGACTTAAAAATTTGTTTGAATAGAATTGGATAGTAAAGAGAATTTTATTCAGTTTCTCATCTTCTCATATTTCTCTATTTTTTTTTCTCAATTTATGTAGAAAAAATCTAGTGATTTTTTTTTTGTTGGGTACTTTGGTAGAATTTTAGGAGAAAATAATTTTTCAAGTCATTTTGAACTGTCATTTTAAATTAACATAACCAAATAAAACTAATAAATTATCGATTTTACTCATTTCAAATTCTATTTTTTTTTTTCTATTGTTAAGCATTTTTTTTAAAAAAAATGATTTGTCACATTGAAAGGAGAATTCCTTTTAATTAACATTGTCAATTTAGTATTATATTGGGTCTTATTTGATCTATAACAAACTCATTTCATATTATGGGATAAGTTTGTATGATTAGGTCATCTCAAGTTTGTATTAATTGTTTGGATTTGTCGATTATCCATTCCACTTGATCCCATTAATAATAAAAAAAATTCAATTTTTTAACTTAATCAATAAAATATATTTTAAATTGGAGTTTTTTAAAAAATATAATAACTGGGCAAAATATTTAACCCTACTAAAAACGGAAAAAATCGAAAGAAAAAGAAAAAATGAAAGATGGAAAGAAAAAGAAGAATAAAGAAAGAAAGACGATAGAAAAATTCTAGAGAAGAAGAAAAAAGGATGAAAGAACAAATCTCAAATACTTAAAAAAAAAATGGTAACATGATGAATTTGTTACACGAACCCGTAAATATTTTTAAAATCACATCACTATCTATGAATAAATATCAATGTTTTAGACAACAAAAACTTCGTTAAAATAATTTTAAGAGAAAGAGTAAATTAAATTGATAAATATTGCAAAGATAAAGACTGAAGATGACTTTATATTTATATCCAAAGTTGACGTTCACATAGTTAAGTGTGAACACATTAATGGGTGGACGTAAACGAAAGAACCTTTATAAAAATATCTCCACATCTTCACTACTTATTCCTTTTCTTCCTCTTTTTGCAACGAAAAAATAAATAAACAAACAAACAAACAAAAGAAAACTAACTAATAATTAAACTACTAAACTTCTACCAAATTCAAAATATAGAAAATTATTTTAAACCATAAAAATATTATGAATATTTATAAACATAATAAAATACACAACTTTTTCTGTAGTTTTGGGGGAATATCTAAACTAATAAATTTAAATAAAAGAATACAAAATAGAATTAAACTAAAATTAAACAATGTTATTTTATTTATACAAATTAGGAGCTAGAAAATTGGTGTTAAAGGTTTTCATGTGGCTAATAACGTGAATATAGGGTGATTAAAAAATATAATGTAACTTAAGTAGACTTGACTTGAGCATCCCAATGGCTCTATAAAAACGAGGACACATTTCCTCAATATAGCCACAGAAACCCCCTCCCAGAATATAGGATCTCTAGAGATTGAGACTAAGGAAAAATAATAATAACAATGGAAGTAGTTCAAGTTCTTCATATGAATGGAGGAGAAGGAGATTTTAGCTATGCTAGCAACTCCCTACTTCAGGTCCACATTTTATTTTTTTTTCTTTTTCTAGTGACTATAATGCAATTTTATTTTATTATGCATTCAAATGAGTTTGGAAGAATTAAGTTATGTTATGTGAGGGACGTACGTCATGTTGAATAATAATTTTGTTTGTTTGAAAAACAGTGGAAGGTGATATCGATGACGAAGCCGATTGTGGAGGAAGCGATAAACAATTTGTATTGTTCGAGTTTTCCGACTAGTTTGACGATAGCTGATTTGGGATGTTCTTCAGGACCCAACGCTTTGATGGCTGTTTCTGAACTGATTAAAGCAGTGGAAATAATCCGTCAAAAACTGAAGAAGAAACCAATTGAATATCAAGTATTGTTAAATGACTTACCAGGAAATGACTTCAATACAATCTTCAAATCATTGCCTAATTTCCTTAAAAATTTGAGAAGGGAAATTGGAGGTGATGTTGGGCCTTGCCTTTTTACGGGAGTTCCTGCTTCTTTTTATGGAAGGCTTTTTCCTAAGAAAAGTGTCCATTTTGTTCATTCTTCTTATAGTCTTCATTGGCTATCTAAGGTAAATATATATTAGTTTCGTTTTCCCTTTTTTCTTCTTCTTTTTTCATCATCAGAGATTGATAGAGAGCGGAAAACATTTTTTTAAAAAAAAATTATAGAGGTGATTATCACTTTACCAGGTGGGTAGATCGAGAGAAGTTTCTGTATTACATACATTATATACAAAATTTTAAAATTTTTGTTTGAATATGAATAATTTTAGATTTTATTTTCTTTTATTATTCCTATATTTTTAAAATATCTATTTTAGTTTCTCAACTTTTAAACAAAAAATATTTTTCATATTTGCTAGATTCTAATTCTTTTCCTTTAATATTCACTTGTTAAATGCTTGTCTCTAAGCTAGCTATATGAATTGCATGCATATATTAAAATTTGAGTAGTTTCCCTTAAGGTAAAAAAGTATATAGAAATGTCATTTAAAAAAAAAAGACAATAAAATTAAAGTAATAACCAAAATAACAGTTTTTTATAGGATTAAAACCAGATTTAAACCATAATTTTCTATTGAAACGTAAAAGCCTGTACATAGATTCTTTAGAGGGTATTTGGAACCTTAACTTGAAGTTGATTAAGTGGAGCTGTTATAACTGTACGGGCTCCATATATAACACGATACAGTAAATATCATTTAGAACTTAGTCAACTGAATCTCCCAAATTAATGCAACTGAATCTCCCAAATTAATGCGCCCTTACCTTCTCTAACTTCGTGTAGGTTCCTGAAGGGTTGGAGGAGAATAAAAGAAATATTTACATGACTGATAATAGCCCCAGGAGTGTTGCGAAGGCCTATTACAACCAATTCCAACAGGACTTGTCATTATTTCTCAAGTGTCGTGCACAAGAATTGGTGGATGGTGGTTGTATGATTTTGACATTGCTAGGAAGGAGAAGCCAAAACCCAGCTAGCAAAGAATGTTCTTACATTTGGGAGCTTTTGGGTCTAGCTCTTAACGACCTAGTCGATCAGGTAAACCATCGTCTCTAATCTCATATTTATCTTAATATGGTATCACAACAATAAAAGTACCCTTCAAATGATAATTATTACTCCAACCCTTACAACCTTTATAAGATACACAAGTTAAATTACTTTCTTTTTCAGGGAATCATAGAAGAGGAGAAATTGGAGAGTTTCCACATACCCAAATACATGCCATCACCAACAGAAATAAGGATTGAGGTTGCAAAAGAAGGATCTTTTGTGATTGATAGCATTAGAGTTTCAGAAGTGGATTGGAAAGTTTCGAATAATAATGAAGTGAACAAAGCAAAATCAGTTGATGAAAGTTTAAAGGGGAGTGGATACAATGTAGCAAAGTACATGAGGGCAGTGGCTGAACCAATTCTTATCAGTCATTTTGGAGAAGAAATTATGGATGAATTGTTCATCAGATACAGAGAAATCATTGCAGACCGTATGGCCAAAGAGACAACTCAATTTTTCAATGTCACTGTTTCCCTTACTAAACCAAAGTGATTATGGAAAATGACCTCAAATTCTGGTTGTTAATTAGGTCATGTTGGTAGTTAGTCGATATTTGATCGTTTTTGGTAACCATTTGTTTTTGTGTTTTTTTTTTTCAAAGATTAAGGCTATAAACATTTCTTTATGTGTTTTAAAAAATAGTATGCTAAAATTCCAAAAACAAAAACTTTTTTCTATCACTAAATAATTTCTCTGTCTTTTGTCATCTATTTTCTATAATGTTTTCTAAAAACCAGTCCCACGTTTTGACAACTAAGAAAAATGAAAGTGGTTTTTAAGAATTTTTCTTTTGAAATTTAGCTAAGATACTTTAATTAAAAAGGTCAGTCCGGGGGAGAAATTGAAAAAAAAAAACTTGATCTTTAAAAATAAAAAACAAAAAATAAATGGGTTACCAAATAGCTTAAATTATATATATCATGATGTCTATATATCTATTATAGTTGTGTGTATGCAAATGTTTGTTCTTCTATGTACTAAAATGAATGGAAAGACTTGTGGTTAAGAATTGTGGTGTCATTATTGGCCAAAAATGGAGATATCTCTTTCCTTGTTTCCTTCAAGTTTTAGTATTTATGTTATTTTCAGGTATGTGTAA ATATCAACAATTAAATCTCTTCCCAAAACAAAACAAAAAATCAAATTTCACAACAGAAAAGAAAGAAAGAAAGACGAATTATAATGGAAGTAGCTCAAGTTCTTCACATGAATGGAGGAGCTGGAGATTTTAGCTATGCTAACAATTCCCTTCTTCAGTCGAAGGTGATATTGATGACGAAGCCGATTGTGGAGGAAGCGATAAACAACTTATATTGCTCCAATTTCCCAACAAATTTCACCATAGCCGATTTGGGATGTTCTTCAGGACCAAACACTTTAATGACAGTTTCTGAACTGATTAAAGTAGTGGAAAAAAATCGACAAAAACACAACAAAGAACCAATTGAATATCAAGTATTGTTAAATGACTTACCTGGAAATGACTTCAATACAATCTTCAAATCATTGCCTAATTTCCTTGAAAATTTGAAAATGGAAATTGGAGATCGTGACGTTGGGCCTTGTCTCTTTAATGGGGTGCCTGGTTCTTTCTATGGAAGACTATTTTCTTCAAAAAGTGTGAATTTTATTCATTCTTCATATAGTCTTCATTGGTTGTCTAAAGTTCCAGAAGGGTTAGAGGAAAATAAGAGAAATATTTATATGGTAAATACAAGCCCAAAGAGCGTGGTGGAGGCTTACTATAAACAATTTCAAGAGGATTTTGAATTGTTTTTGAAATGTAGGAGAGAAGAATTAGTGAAGGGAGGAAGTATGGTTTTAACACTTTTGGGAAGAAGAAGCCAAGATCCAACTAGTAAAGAGTGTTGTTACATTTGGGAGCTTTTGGCTATGGCTCTTAATGATATGGTCTCAGAGGGAATTATAGAAGAGGAGAAATTAGAAAGTTTCAACATACCCAAGTACATGCCATCACCAACAGAAATGAGAATTGAGATCGAAAAAGAAGGATCTTTTGTGGTTAATCGCATTCAAGTTTCAAAAGTGGATTGGAATATTGTTTACAATGATAATACTAACAAGGATGATAATGGTGGGTATTATGTAGCCAAGTACATGAGAGCTGTGGCTGAGCCAATTCTTATAAGTCATTTTGGAGAAGCAATCATCGATGAATTATTCTTCAGATATGGACAAATCATTGTAGATCGAATGGCTAAGGAGAAACCCCAGTTTGTTAATCTCACTGTTTCTCTCACTAACATAAGAGGAAAAATAATAATAACAATGGAAGTAGTTCAAGTTCTTCATATGAATGGAGGAGAAGGAGATTTTAGCTATGCTAGCAACTCCCTACTTCAGTGGAAGGTGATATCGATGACGAAGCCGATTGTGGAGGAAGCGATAAACAATTTGTATTGTTCGAGTTTTCCGACTAGTTTGACGATAGCTGATTTGGGATGTTCTTCAGGACCCAACGCTTTGATGGCTGTTTCTGAACTGATTAAAGCAGTGGAAATAATCCGTCAAAAACTGAAGAAGAAACCAATTGAATATCAAGTATTGTTAAATGACTTACCAGGAAATGACTTCAATACAATCTTCAAATCATTGCCTAATTTCCTTAAAAATTTGAGAAGGGAAATTGGAGGTGATGTTGGGCCTTGCCTTTTTACGGGAGTTCCTGCTTCTTTTTATGGAAGGCTTTTTCCTAAGAAAAGTGTCCATTTTGTTCATTCTTCTTATAGTCTTCATTGGCTATCTAAGGTTCCTGAAGGGTTGGAGGAGAATAAAAGAAATATTTACATGACTGATAATAGCCCCAGGAGTGTTGCGAAGGCCTATTACAACCAATTCCAACAGGACTTGTCATTATTTCTCAAGTGTCGTGCACAAGAATTGGTGGATGGTGGTTGTATGATTTTGACATTGCTAGGAAGGAGAAGCCAAAACCCAGCTAGCAAAGAATGTTCTTACATTTGGGAGCTTTTGGGTCTAGCTCTTAACGACCTAGTCGATCAGGGAATCATAGAAGAGGAGAAATTGGAGAGTTTCCACATACCCAAATACATGCCATCACCAACAGAAATAAGGATTGAGGTTGCAAAAGAAGGATCTTTTGTGATTGATAGCATTAGAGTTTCAGAAGTGGATTGGAAAGTTTCGAATAATAATGAAGTGAACAAAGCAAAATCAGTTGATGAAAGTTTAAAGGGGAGTGGATACAATGTAGCAAAGTACATGAGGGCAGTGGCTGAACCAATTCTTATCAGTCATTTTGGAGAAGAAATTATGGATGAATTGTTCATCAGATACAGAGAAATCATTGCAGACCGTATGGCCAAAGAGACAACTCAATTTTTCAATGTCACTGTTTCCCTTACTAAACCAAAGTATGTGTAA ATGGAAGTAGCTCAAGTTCTTCACATGAATGGAGGAGCTGGAGATTTTAGCTATGCTAACAATTCCCTTCTTCAGTCGAAGGTGATATTGATGACGAAGCCGATTGTGGAGGAAGCGATAAACAACTTATATTGCTCCAATTTCCCAACAAATTTCACCATAGCCGATTTGGGATGTTCTTCAGGACCAAACACTTTAATGACAGTTTCTGAACTGATTAAAGTAGTGGAAAAAAATCGACAAAAACACAACAAAGAACCAATTGAATATCAAGTATTGTTAAATGACTTACCTGGAAATGACTTCAATACAATCTTCAAATCATTGCCTAATTTCCTTGAAAATTTGAAAATGGAAATTGGAGATCGTGACGTTGGGCCTTGTCTCTTTAATGGGGTGCCTGGTTCTTTCTATGGAAGACTATTTTCTTCAAAAAGTGTGAATTTTATTCATTCTTCATATAGTCTTCATTGGTTGTCTAAAGTTCCAGAAGGGTTAGAGGAAAATAAGAGAAATATTTATATGGTAAATACAAGCCCAAAGAGCGTGGTGGAGGCTTACTATAAACAATTTCAAGAGGATTTTGAATTGTTTTTGAAATGTAGGAGAGAAGAATTAGTGAAGGGAGGAAGTATGGTTTTAACACTTTTGGGAAGAAGAAGCCAAGATCCAACTAGTAAAGAGTGTTGTTACATTTGGGAGCTTTTGGCTATGGCTCTTAATGATATGGTCTCAGAGGGAATTATAGAAGAGGAGAAATTAGAAAGTTTCAACATACCCAAGTACATGCCATCACCAACAGAAATGAGAATTGAGATCGAAAAAGAAGGATCTTTTGTGGTTAATCGCATTCAAGTTTCAAAAGTGGATTGGAATATTGTTTACAATGATAATACTAACAAGGATGATAATGGTGGGTATTATGTAGCCAAGTACATGAGAGCTGTGGCTGAGCCAATTCTTATAAGTCATTTTGGAGAAGCAATCATCGATGAATTATTCTTCAGATATGGACAAATCATTGTAGATCGAATGGCTAAGGAGAAACCCCAGTTTGTTAATCTCACTGTTTCTCTCACTAACATAAGAGGAAAAATAATAATAACAATGGAAGTAGTTCAAGTTCTTCATATGAATGGAGGAGAAGGAGATTTTAGCTATGCTAGCAACTCCCTACTTCAGTGGAAGGTGATATCGATGACGAAGCCGATTGTGGAGGAAGCGATAAACAATTTGTATTGTTCGAGTTTTCCGACTAGTTTGACGATAGCTGATTTGGGATGTTCTTCAGGACCCAACGCTTTGATGGCTGTTTCTGAACTGATTAAAGCAGTGGAAATAATCCGTCAAAAACTGAAGAAGAAACCAATTGAATATCAAGTATTGTTAAATGACTTACCAGGAAATGACTTCAATACAATCTTCAAATCATTGCCTAATTTCCTTAAAAATTTGAGAAGGGAAATTGGAGGTGATGTTGGGCCTTGCCTTTTTACGGGAGTTCCTGCTTCTTTTTATGGAAGGCTTTTTCCTAAGAAAAGTGTCCATTTTGTTCATTCTTCTTATAGTCTTCATTGGCTATCTAAGGTTCCTGAAGGGTTGGAGGAGAATAAAAGAAATATTTACATGACTGATAATAGCCCCAGGAGTGTTGCGAAGGCCTATTACAACCAATTCCAACAGGACTTGTCATTATTTCTCAAGTGTCGTGCACAAGAATTGGTGGATGGTGGTTGTATGATTTTGACATTGCTAGGAAGGAGAAGCCAAAACCCAGCTAGCAAAGAATGTTCTTACATTTGGGAGCTTTTGGGTCTAGCTCTTAACGACCTAGTCGATCAGGGAATCATAGAAGAGGAGAAATTGGAGAGTTTCCACATACCCAAATACATGCCATCACCAACAGAAATAAGGATTGAGGTTGCAAAAGAAGGATCTTTTGTGATTGATAGCATTAGAGTTTCAGAAGTGGATTGGAAAGTTTCGAATAATAATGAAGTGAACAAAGCAAAATCAGTTGATGAAAGTTTAAAGGGGAGTGGATACAATGTAGCAAAGTACATGAGGGCAGTGGCTGAACCAATTCTTATCAGTCATTTTGGAGAAGAAATTATGGATGAATTGTTCATCAGATACAGAGAAATCATTGCAGACCGTATGGCCAAAGAGACAACTCAATTTTTCAATGTCACTGTTTCCCTTACTAAACCAAAGTATGTGTAA MEVAQVLHMNGGAGDFSYANNSLLQSKVILMTKPIVEEAINNLYCSNFPTNFTIADLGCSSGPNTLMTVSELIKVVEKNRQKHNKEPIEYQVLLNDLPGNDFNTIFKSLPNFLENLKMEIGDRDVGPCLFNGVPGSFYGRLFSSKSVNFIHSSYSLHWLSKVPEGLEENKRNIYMVNTSPKSVVEAYYKQFQEDFELFLKCRREELVKGGSMVLTLLGRRSQDPTSKECCYIWELLAMALNDMVSEGIIEEEKLESFNIPKYMPSPTEMRIEIEKEGSFVVNRIQVSKVDWNIVYNDNTNKDDNGGYYVAKYMRAVAEPILISHFGEAIIDELFFRYGQIIVDRMAKEKPQFVNLTVSLTNIRGKIIITMEVVQVLHMNGGEGDFSYASNSLLQWKVISMTKPIVEEAINNLYCSSFPTSLTIADLGCSSGPNALMAVSELIKAVEIIRQKLKKKPIEYQVLLNDLPGNDFNTIFKSLPNFLKNLRREIGGDVGPCLFTGVPASFYGRLFPKKSVHFVHSSYSLHWLSKVPEGLEENKRNIYMTDNSPRSVAKAYYNQFQQDLSLFLKCRAQELVDGGCMILTLLGRRSQNPASKECSYIWELLGLALNDLVDQGIIEEEKLESFHIPKYMPSPTEIRIEVAKEGSFVIDSIRVSEVDWKVSNNNEVNKAKSVDESLKGSGYNVAKYMRAVAEPILISHFGEEIMDELFIRYREIIADRMAKETTQFFNVTVSLTKPKYV
BLAST of MELO3C007852.2.1 vs. NCBI nr
Match: XP_008440756.2 (PREDICTED: uncharacterized protein LOC103485074 [Cucumis melo]) HSP 1 Score: 1481.5 bits (3834), Expect = 0.0e+00 Identity = 738/738 (100.00%), Postives = 738/738 (100.00%), Query Frame = 0
BLAST of MELO3C007852.2.1 vs. NCBI nr
Match: XP_011658495.1 (PREDICTED: uncharacterized protein LOC101206474 [Cucumis sativus]) HSP 1 Score: 1309.7 bits (3388), Expect = 0.0e+00 Identity = 661/739 (89.45%), Postives = 678/739 (91.75%), Query Frame = 0
BLAST of MELO3C007852.2.1 vs. NCBI nr
Match: OTG07008.1 (putative SAM dependent carboxyl methyltransferase [Helianthus annuus]) HSP 1 Score: 795.8 bits (2054), Expect = 1.2e-226 Identity = 416/757 (54.95%), Postives = 549/757 (72.52%), Query Frame = 0
BLAST of MELO3C007852.2.1 vs. NCBI nr
Match: KVH92363.1 (SAM dependent carboxyl methyltransferase [Cynara cardunculus var. scolymus]) HSP 1 Score: 699.5 bits (1804), Expect = 1.2e-197 Identity = 374/745 (50.20%), Postives = 491/745 (65.91%), Query Frame = 0
BLAST of MELO3C007852.2.1 vs. NCBI nr
Match: KGN48856.1 (hypothetical protein Csa_6G504380 [Cucumis sativus]) HSP 1 Score: 694.5 bits (1791), Expect = 3.9e-196 Identity = 343/364 (94.23%), Postives = 352/364 (96.70%), Query Frame = 0
BLAST of MELO3C007852.2.1 vs. TAIR10
Match: AT1G19640.1 (jasmonic acid carboxyl methyltransferase) HSP 1 Score: 306.6 bits (784), Expect = 4.1e-83 Identity = 171/385 (44.42%), Postives = 233/385 (60.52%), Query Frame = 0
BLAST of MELO3C007852.2.1 vs. TAIR10
Match: AT3G21950.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein) HSP 1 Score: 305.1 bits (780), Expect = 1.2e-82 Identity = 163/369 (44.17%), Postives = 231/369 (62.60%), Query Frame = 0
BLAST of MELO3C007852.2.1 vs. TAIR10
Match: AT5G04370.2 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein) HSP 1 Score: 304.3 bits (778), Expect = 2.1e-82 Identity = 162/370 (43.78%), Postives = 233/370 (62.97%), Query Frame = 0
BLAST of MELO3C007852.2.1 vs. TAIR10
Match: AT5G38020.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein) HSP 1 Score: 300.4 bits (768), Expect = 3.0e-81 Identity = 163/369 (44.17%), Postives = 230/369 (62.33%), Query Frame = 0
BLAST of MELO3C007852.2.1 vs. TAIR10
Match: AT3G11480.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein) HSP 1 Score: 299.7 bits (766), Expect = 5.1e-81 Identity = 165/392 (42.09%), Postives = 239/392 (60.97%), Query Frame = 0
BLAST of MELO3C007852.2.1 vs. Swiss-Prot
Match: sp|Q9SPV4|SAMT_CLABR (Salicylate carboxymethyltransferase OS=Clarkia breweri OX=36903 GN=SAMT PE=1 SV=1) HSP 1 Score: 424.1 bits (1089), Expect = 3.2e-117 Identity = 218/363 (60.06%), Postives = 270/363 (74.38%), Query Frame = 0
BLAST of MELO3C007852.2.1 vs. Swiss-Prot
Match: sp|Q9SBK6|JMT_BRARP (Jasmonate O-methyltransferase OS=Brassica rapa subsp. pekinensis OX=51351 GN=JMT PE=1 SV=1) HSP 1 Score: 323.2 bits (827), Expect = 7.7e-87 Identity = 174/393 (44.27%), Postives = 245/393 (62.34%), Query Frame = 0
BLAST of MELO3C007852.2.1 vs. Swiss-Prot
Match: sp|Q9AR07|JMT_ARATH (Jasmonate O-methyltransferase OS=Arabidopsis thaliana OX=3702 GN=JMT PE=1 SV=3) HSP 1 Score: 306.6 bits (784), Expect = 7.5e-82 Identity = 171/385 (44.42%), Postives = 233/385 (60.52%), Query Frame = 0
BLAST of MELO3C007852.2.1 vs. Swiss-Prot
Match: sp|Q6XMI3|BSMT1_ARATH (Salicylate/benzoate carboxyl methyltransferase OS=Arabidopsis thaliana OX=3702 GN=BSMT1 PE=1 SV=1) HSP 1 Score: 299.7 bits (766), Expect = 9.1e-80 Identity = 165/392 (42.09%), Postives = 239/392 (60.97%), Query Frame = 0
BLAST of MELO3C007852.2.1 vs. Swiss-Prot
Match: sp|Q9FYZ9|BAMT_ANTMA (Benzoate carboxyl methyltransferase OS=Antirrhinum majus OX=4151 GN=BAMT PE=1 SV=1) HSP 1 Score: 289.7 bits (740), Expect = 9.5e-77 Identity = 163/369 (44.17%), Postives = 232/369 (62.87%), Query Frame = 0
BLAST of MELO3C007852.2.1 vs. TrEMBL
Match: tr|A0A1S3B1F0|A0A1S3B1F0_CUCME (uncharacterized protein LOC103485074 OS=Cucumis melo OX=3656 GN=LOC103485074 PE=4 SV=1) HSP 1 Score: 1481.5 bits (3834), Expect = 0.0e+00 Identity = 738/738 (100.00%), Postives = 738/738 (100.00%), Query Frame = 0
BLAST of MELO3C007852.2.1 vs. TrEMBL
Match: tr|A0A251T7D7|A0A251T7D7_HELAN (Putative SAM dependent carboxyl methyltransferase OS=Helianthus annuus OX=4232 GN=HannXRQ_Chr11g0325521 PE=4 SV=1) HSP 1 Score: 795.8 bits (2054), Expect = 8.2e-227 Identity = 416/757 (54.95%), Postives = 549/757 (72.52%), Query Frame = 0
BLAST of MELO3C007852.2.1 vs. TrEMBL
Match: tr|A0A103XKM2|A0A103XKM2_CYNCS (SAM dependent carboxyl methyltransferase OS=Cynara cardunculus var. scolymus OX=59895 GN=Ccrd_005591 PE=4 SV=1) HSP 1 Score: 699.5 bits (1804), Expect = 8.0e-198 Identity = 374/745 (50.20%), Postives = 491/745 (65.91%), Query Frame = 0
BLAST of MELO3C007852.2.1 vs. TrEMBL
Match: tr|A0A0A0KM89|A0A0A0KM89_CUCSA (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_6G504380 PE=4 SV=1) HSP 1 Score: 694.5 bits (1791), Expect = 2.6e-196 Identity = 343/364 (94.23%), Postives = 352/364 (96.70%), Query Frame = 0
BLAST of MELO3C007852.2.1 vs. TrEMBL
Match: tr|A0A175YGM2|A0A175YGM2_DAUCA (Uncharacterized protein OS=Daucus carota subsp. sativus OX=79200 GN=DCAR_030212 PE=4 SV=1) HSP 1 Score: 610.9 bits (1574), Expect = 3.7e-171 Identity = 330/744 (44.35%), Postives = 458/744 (61.56%), Query Frame = 0
The following BLAST results are available for this feature:
The following terms have been associated with this mRNA:
GO Assignments
This mRNA is annotated with the following GO terms.
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from this mRNA:
The following exon feature(s) are a part of this mRNA:
The following five_prime_UTR feature(s) are a part of this mRNA:
The following CDS feature(s) are a part of this mRNA:
Analysis Name: InterPro Annotations of melon v3.6.1
Date Performed: 2018-09-25
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