MELO3C019135T2 (mRNA) Melon (DHL92) v3.5.1
The following sequences are available for this feature:
Legend: CDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGTTGCGAGTAAGCTATTGTGAAGAAACTTCTTCTGACGAATACTAGTTAGTTAGTTCTTTAGAAAATTAGTTCACAAATTTCTTATGCTCAGGATCTTCCTTGGCGTGGTTCTGGTGTTGCAATCCCCATGTTCTCTGTTAGATCAGACGATGATCTTGGAGTTGGCGAGTTTCTTGACTTGAAATTACTTGTAGACTGGGCTGTGGAGTCTGGTCTCCATTTAGTTCAACTTCTACCTGTTAATGATACATCCGTTCATGGAATGTGGTGGGACTCGTATCCTTACAGGTAGGATGCTGTTTAAATGCTGGATCTAAGGTCAACTCGTCCAATTTTCACTATTTTACTGGTGATAGTAAATAGATTGAAAAGCATGTGTGGTTGCACTTGAATTCGTTCAACCTGCTATTTTTATCTGTCTTTAGTTTTCATTTGCTTCACAGCATCTGGATTCTTTTAACATCTACCAATAAAAATGTATGGTTTTTCAATTTTCTTAGAGCCTGAAGAATGAGACTAGTATCCATTGTTACCGTGCTGATATTTTATTGAATATAATAATTGTGTGTTATTACATCAAGAAAAAAGGGAGATAAATACAAGGGACCTTTGTGGTAATAAGGAAACAAATAAAATCAAATAATATATTCCTAATAATAAACAAGAGATTTTACACATTAATACCCTCCCTCAATCCCTCAAACTCAAGGTGGTAGAGTAGCTGTCAGCTTGAGTTTGGTAAGTAACTGATTGAAGCGGGTAGATGGTAAAGCTTTGGTAAAGATATCTGCTGGTTGCTCAGTGGTGGAGACAGATCGCAGAAGAAGTGTGTTGCTCAAGAGATGATGACGAATGAAGTGACAGTCATTTTCGATGTGCTTTGTACGCTCATGGAAAACATCATTGTGGGCAATTTGGATGGCACTACGATTGTCACAATGAAGGAGGATGGGACCCTGCTGGGGAACCCCCATATCAGCAAGAAGCCAATGAAGCCATAGGAGTTCAGCGTTAGCATCAGCAAGAGCACGATATTCTGATTCAGTACTAGAACGAGAGACAACTCTTTGTTTCTTACTACGCCAAGAAATGAGAGAATCTCTTAAATAGAAACAGTAACCTGTTGTAGAACATTGATCGGTAGGGTCCCTAGCCCAATCTGCATCAGAGTAGCCAGACAACACGAGGGAGGATTGAGAAGAAAACTGAAGTTCATGCCCCAAGGTTCCCTTGATATAGCGAAGAATACGTAACACGGTGGTAAAATAAGTGGTTCTAGGAGCAGCCATAAACTGACTGACAATATGAACAACATATGCAATGTCTGGACGATTCACTGTTAGATAGATGAGATTGCCAAAAAGTTGTCGATATAGACTCATATCTTCAAGAGGAACACCATCATAAGGGATCAAATCAAATGAACATTGGGACTTAAAGGTGTCGAAGCTGTGTTGGAGTCAGTGATTCTTGAGTGAACTAAAAGATTTGAGGCATATTTGGCTTGAGATAATAAATACCCGTCTGAGCGCCGAGAGACTTCAAGGCCAAGAAAGTAGTTGAGAGACCCAAGGTCTTTCATCTCAAAATGTTGACCAAGATAATGTTGGAGATCGGATGTGGCCTGTGGATCATTACCAGTAATAATCATGTCATCAACATAGAGAAGAAGAAGAACAATACCCTGGGTTGTATGGCGAGTAAAGAGCGCAGTGTCATGAGGGCTAGAAGTAAATCCAAGTTGAGTGATGGTAGAGCTAAATGTGGCAAACCAAGCCTGTAGAGCCTGTTTCAGACCATATAATGCTCGACGAAGGAGGCACACCTTGTGAGGAGGAGGAGAAGTACTAGAAGGTGGCTTCATATAGACTTCTTCAAAAAGAGTCCCATTAAGGAAAGTATTTTTTACATCCATCTGAAGAAGAGGCCATTGCTTGGCAGCAACAGTAGCTAACAAACTTCGAACAGACGTCATCCGAGCCACAGGAGCATATATTTCTTCATAGTCAATACCATATTCTTGGGAATATCCTTTTGCAACAAGACGAACTTTATAACGCTCAATAGTACTATCAGAGTGAGTCTTGATTTTGTAGATCCACTTGCAGCTAATAAGTCTTTTACCATGAGGTAAGTCAACATAGTCCCAAAGTGTGTGTCTGTTCAAGAGCCTGTAATTCATCATTATCGCTTTCTGCCATAAAGCGTCAGTACTAGCCTCTTGATAAGAGGTAGGTTCAACAAGGAAAACAATAGTGAAAAAAAATTAGTGATAATCTTGGAGATGGATAGGAGGTTTCCTTACCTGAGTAGAATGACGAAGAGGGGTGTTTGGAGTAGGTTCAAGACCATCATCGGAGACGGACGACTAGTTTAGGGTTTGCAGGAGTAGGTGCAGATTGAGCAAGCTTGGTATCAGGAGTGGACTCAAAAAGAGGAAAAAGTTCAACAGATGTATTGGTGAAGAAAGGTTGAGGACTAGAGAAAGAGGAGTGGAAGGATGACAAGCGAGAGAACATAGTATGCTCCCAAAATGTGACATGGCGAGATATACGAAGTCTATTGGAAAGAGGATCTCAACAACGAAAACAACAGAGGTGAGCACGTGGTTCAAGTTTAGTGTGTTCATGTTCAGGAGAACAAAGCAAGCACAACCAAAGACTTTAGGTTAGAGTAGTTGAGAGGGGTACCATATAGTCTTTCAAATGGAGAGATGTTCTGAAGAACAGAGAAAGGAAGACGATTAATGGTATAGACGGATGTAAGCACTACTTCACCCCAAAATTCTCAAGACATGAGACAGAAAGAAGAAGAGCACGTACTGAGTTAAGAATGCGGCGATGTTTGCGCTCAACACGTCCATTTTGTTGAGAGGTGTGGGGGTAGGAGCGCTGAACAAGAGTGCCCTGTTGTGAGAGAAAAGATAGAAGAGTGGAGTCTTTATACTCCAAGGTATTATCAGCGTGGAAGGTTTTGATAGGACAAGAGAATTGGTTGTGAATCATGTTAGCAAACTCAATATAAGTGCAAGATAATTCGGAGCAGTGTTTGAGAAAATAAATCCATGTAAATCGAGAGAAATCATCAATGTTATTTAAAACATAATAGCGATAGCCATGGACAGTGGTAGTAGGGGCAGGACCCCAAATGTCATAATGGATTAAATCAAAAGGTTTTATCACATATAGAAGTGGATTGTGAAAAAGACAAAGCAGGTTGCTTAGCAAGTTTGAAATTTAAACAATTAAAAGGGACAAACTTGGGAACATTATTTAAATTGTTAACGGAAATTAAATGACAGTTTTTCAGGAGAAGCATGACCAAGACGAAGATGCCACTGATATGTATCAGAGTCGGTGACAGGAGCAGAAATGGATGAAGGAGGAGGAACCTGAAGTGATAAGAGCTCAAACAATCTTTCTACTTTGCGACCCGTCCCAATCGTCTGTCCCGTCTGTAGATCCTGAACTTGACAACCATTGGAAGAAAAAGAAACAGTTAAGCCAAGATCACACAGTTGACCAACAAACACTAGATTAAAGGTTAAGTTTGGGACACAATAAGTATGGGGAAGACTCAAATTGGGGGTATTAATGGTGCCAATGTGAGAATGTGAGAATGTGAGAGATGTTAATACAATTGCCATCAGCAGCATAAATCAGAGCTAAAGATTTAGCAGGACTAGAAGTGTTCATAAGGGAATAATTAGATGTCATATGATTGCAATAGGCAGAGTCAAGAAGCCATCGATTACTTGGTGTGACGGCAAGTGCAGAGGAAGATGATGAAATTAATTGATTTAATAGGCTCTGAAGATCACTTATCTGAAAATGGGGAGGTGGAATTATCTGAAGCAGCAGCAATAACAAAGGAGGTACCAAGTTTAGCAAAGTTCTTTGCTTTTGTAGGATAGCTTCGAGGTCGAGGTTGTTTTATGGGACAATGATCCAGAATATGACCTAGCTTATGGCAGTATCTGCATTCTATTTTAGGACAATTAATAGATTTGTGACCAGTGAGCTCACAACATCAAAATATTTGAAGAGATTGATGCCAAGATGTTTTTCTTCAAATAATATCTCTTGGATAGCTGCATCCAATGAGGGCAAGGGACTGCGGAGTAGTAAGACAGCCCTAACAAATTCATATTCTGGACGTAATCCCATAAGGACTTTAATAAGACGAAGATGATATTTACGGATTTTAGCTTGATCAAGTTGAGTCCAGATAGGTTGAAGCACTGCTAGATATTCATTAACAGATTGACCAACTTCTTGATTGAGATTGACAAGACTACTGTACAACTGATAGTAATGAGCTAATCCGACAGATTTAAACCGTGTAAACAAAAAATCCCATAACTCCTTAGCATTTTCGAAAGCATCAAATTGTGTATGGATAGCATGGATTGATGTGTTACTAAGCCAGGTGATAATCTAATGATTTTTGTTGTCCCATTCTTCAAGGCTTTTGATAAATTTGCTATCATAAGTCCCATTCTTCAGGTGATAATCTAAATTTCCTTGTCTTGTTTGGTTGGTTTGGTAATATCGCCAGTGACAATATGTCATAATTTCCCCGTCCAATTAAAAAACTTTTCATTTGATTTGCCTATGTAATATAATTAGAGCCATCAAGAATCGTGCTAATTGGACGGGCAATTTCACTTTTCTCTATCCAAACGAAGCAGATGGAGAATGGGGGCGGCGGATGGGTTTCATGGAGGCCAGAGAACATAGAACTGAGATCGGAGATCGGAGAGTGCAACCGACGAGGAAACAAGGACGTTGGAGAGTGCAGCGGAGACAGACGAAGAGCGTCAGTGAATCAGAAGACGTCGTCGGCGAGTTTCACGGTAGGGGAAGCGGCGGTGGCTGAACAGTAGACGTAGGTTAAAGCTCTGATACCATGTCCTGATATTTTATTGAATATAATAATTGTGTGTTATTACATCAAGGAAATAAATACAAGGGACTTTTGCGGTAATAAGGAAACAAATAAAATTAAATAATATATTCCTAATTACAAGAGATTTTACACATTAATAGTTATACTTTCCCTCTCTAGAAAGTTCCAACATAGCTGACATGAGCAGATTTAGGTGGGGCTAGAGTTGTCTTTTGAATATGTATGCATAAAGTGTATGTGTATGTATTGTCTTTCAAATCCTTTTAAAAAAATTGTGGTTATATGTAAATGTAATATATTGGTATATTTTGTTTTAAAACTGAATTAAACAAAATGATTAATGTTATTTGGATTTTTTTTGAAATTTTGATGGGCCACGACATTTTAAAAATATTTTGCAAATTACATAGCATTTTTTTTCTTCCAAAAGATAATTACAAATTGAACTGTTCTTTTTTTTTTTTTTGACACAATGTTACTGTTTTTCTAAACTTTAAATCATCAGTGACATAAATAGTGGTAACTAATAAAGTTTTATTTTATGTGATAATCACTTATTAACACAAATCAATGATTACTCTTAGATATTGATTAAGTACAATCATAACAATCAGTGATCAAGCTTTACATTGAATAATTGTTACCACTAGTTTACATAAGTTATTATTATTAAATACAAACACAATTTGTGTTGTGCATTTCTGTCTGTCTGTATTTTTATAACTTAGTTTGTTGGCTGTCAGCCGTATTTCTTAAGTTTGGCCCTTCAAAGTATGCTAAATGTGCAACTGTTAAGTGCTTCGTATTTTTCTTTGTTACCTTTGTCAGTTTACTTCAACTTCTATGATCAGAATTACTTACCAACCTTAGCTTTTATCTAGAGAATTTATGGTTCATTACATTAATTTATGCCGTAGTGATTATTTAATTGGTCCTTTGCAGTTCACTTTCCGTCTTTGCCCTGCATCCATTGTACTTGAGAGTCCAAGCACTTTCAGATAATATTCCAGAGGATATCAAGGTATACTTTTTTTCTTTTGTTAGAACTATTTCATGTTTTGCTAATTACTCTGTTATCCTTACCTATTAACTTATATAGTTCTTGTTCTTTTACAACTTTTCTTTTCTTTCGGGGTGTGTGGGGGTCTTTGCAGCTGGAGATTCAAAAGGAAAAAGTTGAACTGGATGGAAAGGTAGTTCTCATGCTTAGTTTATATTGTTTTGTGCTTGCTTGTAACAGTACTAGGAGACAGAACACCATTCTAATTAGTCATTCATATCCTTGGTATTTTCATTACTTTTTGTTTACAGAGTTATGAGTTAAAAAAATTGGTTATCAAATCCTGAATTTTCATCTGCTCTCCTTTTGTGGATTGTTTGTTAAAGAAAGATTATGGCGGAAATTAAAATGCTTGCTTGGTCTATAATTATGTTATGCTACAGTCAAGTTACACGTTCGATTCTGGGATATATGCAGGATGTGGATTATGAGGCTACTATGGCTGCTAAGCTTACACTTGCACAGAAAATTTTTGCTCGAGAGAAAGATTCAATACTGAATTCCAGTTCCTTTCAGAAGTATCTTTCTGAAAACGAGGTTTGAAGTTTGCTTTTCTCCTGAAAAATTTACGTAGTAGTGATGAAACTGAAACCATAGTTTTGACACTTCTTCCTATTATAATTAATATATTGATACTGATGAATATTAGGTGGATATCACATCCATTGAACGTCATATTTTATTTGTATATTCTGCCAACAGTTTATAACTTTATGATACTGTGCTCATCCCTATGTGATTTACTTAAAGGAATGGCTAAAACCCTATGCCGCATTCTGTTTTCTGCGAGACTTCTTTGAAACATCGGATCACAGCCAATGGGGTCGTTTCTCTCAATTTTCAAAAGACAAGGTGATGTTTCTTAATATGTACAACCTCCCAAGGAATTAAATTCATCTTACTTCTTAGCATGTATTCTAAGTAGATTACTGGCTGTTGTTCTTTCACAGCTTGAGAAGCTTATCTCAAAGGACAGCTTGCATTATGATGTCATCTGCTTCCACTATTATATTCAATATCATTTGCACCAACAGGTACTTAAAGTCATTAATTATAAGTTCCATTAATTGTTTCTGCTGTTAAATGAGATGGAAGAGGACTTTTGTATCTTCATTGTTTGGCGACATTGTTAAATGACAGTTGTTGGAGGCAGCAAATTATGGAAGAAAGAAAGGAGTGATATTGAAAGGTGATCTTCCGATTGGCGTCGATAGGAACAGTGTAGACACCTGGGTTTACCCTACTTTATTCCGCATGAACACGTCAACCGGAGCACCTCCAGATTACTTTGACAAAAATGGACAAAATTGGGGATTTCCAACATACAACTGGGAGGAGATGTCAAAAGATAACTATGCTTGGTGGCGTGCTCGTTTAACTCAGGTTTTGCTAAAGTTCCGAAACCTTTTATTGTATGTCCTTAACCTTTGTTGGCCTTGCTGTTAACCTTATGCATATCTAACTTTCATGCTTGAATTGTAGATGTCAAACTACTTCACAGCTTACAGAATTGATCATATATTGGGTTTCTTCCGAATTTGGGAGCTTCCAGAGCATGCTATGACTGGTTTAGTTGGAAAATTCCGCCCTTCTATTCCATTAAGCCAGGTACGTTTAGTTATTCTAGGCCCGTTTGATAACATGTTTCTTGTTCCTTGTCTATCATTCCTTGTTTGAGAACTAGAAACGAGACTATGTTTGATAACCATTTCTATTTCTTGCTTCTTGAAAAAATGAAACAAAAACAGAAATTTGTTTGATAATTATTTCTTATTTCTCATTTCTTGTGTTATTTTTCATAATGTTTTTACTTTTTTAGTTTAAATATAATTTAGTTATGCAAAAAATAAAAAAATGTAGAATTCATTAAAATATAAAAAGAATAATTATAAAACATTAACATTATCAAATACACATAAATCCCATTACAAAATTTATAACTATAATATAATAGATTTAATCATATGTTTAAAATTTAATTGGAAATATTATTTCTCATTCAATTCATTTGTCTTAAATGGTGTTAATTAAAATTTAACTCAATTATATTATTATGTAAATGTCGAGGTTGTAAATTATTTAAGATAACCAAAGTGAATATTTTAGTGAAAAAATGTATATAATGTAAAATTATAACTAATTTAGAAGGAACTAAAAATAATAAATTTAAATTTAAAATAACATATAAACATCTGTTTCAAAATTTTAAATTTTAAATTTTTAAGAAATAAACATATTAAACATTTAAATTTGGATGTTCAAAATAATATATAAATTTAAATATTGAACATTTTAAAATTCAAAATTAAATTAAAGATGTAAATACGAAATAGAAAAGAAAATTAAATACTAAATATGAAATTTGAAAATCAAATAATACATAAATCTAAACATTAAAAAATTTAAAGAATAATTTACATAAATGTAACAAAACCCAAAAATATTTACGGTATGTGTAACGAAAAAATTAAAGCCCACGAAGCCACCGTTGTATTTTCATAAATTCTAGATTTGTTTTTAAATATTGCGATTCATCACTTTTTTTCTTTTTTCTTTGCGATTTATTCATCTTCTCTTCATATTATTACTTCTCCTTCTTCATATTCCCACTTCTTCTTGTTCTTGATTTTTTCATTTCCTCTTCCAAAATTTCTTCCTTCTTCGTCATCTCTTATCTTCTTTTTTCTTCTTGGTACAAGATCTAAACGATATTGATACAGGATTTAAATGATCGTGTACAGATATTTAAACGATCTTGTACCAATATTTAAACGATCTTATACTAATATTTAAACAATCTTGGTACAAGATCATGTACCAAAATAGATCGTGTACCAAGATTGTTTAGATTTGGTACAAGATGGTTTACCAAGCTTTGAATCATTGTATACCAATATCTAAACGATCTTGGTAGAAGATCGTGTACCAATATCGTTTAGATTTTATACAAGATCGTTTAAATTTGGTACAAGATCATGTACCATGATTGTTTTACCAAAATGTAAACGATCGTGTATCCAATATCTGAACGATCATGTACCAAGCTTTTTGTGTGCTCGTGTGGCTGATTAATTTTGGGTATTTTTGTTATTTCACGTTGTGGGCTTGTGAGCTTTTTCTGTCCTCAAATTTGTTCTCCAGAGTGTAAATATTTTCGCGTTTTGTTCTATTTTTTGAAAAATCTCCAAATTTAAAATTCAAAATTGAATTAAACATATAAATATGACAAATAAAAGAGAAAGGAAAAAGGATTAAACATATATGGAAAATTAATAAGGAAGAAAAAATAAAATAAATTAAGAAATACAAAACATATAAATATGAAAGATAATTATGAAAAGTTAATAAAAGGAAAAAATTGAATACAGAGTCATTAATGTTGGGAGGTGAACTCTAAGACTTGGAGGGAAAAAATTGTTTTCAAGTTCCTTGGGACCAATGAGCCAACTAACAATTTTAAGAAAAAAGGGAATCTAGTCGAATAAAATAGGAACAGAACTAGAAAGAACGAGGAGAAACTGTTTTACATAGTTTCAATTTTTGTCTAATTTTTAGAAACGTTCCTTAAAACTTGGGAACGAGAAAGGAAATGGTTATCAAACACATCTATTTCTTGAAAAATGAGAAACAGAAACAGGAAACAGAAAATAGGTACGTTATCAAACGGACCCTTTAGAAGCAAACATTTATATTTTTAATGTGAATGGTTTTCCAAAATTTTGTTTGAATAATTATTTTTCCACAGGAAGAGCTCGAAAGAGAGGGAATATGGGACTTTGATCGCTTGAGTCGTCCATATATCAAGGCTGAGTTTTTACAGGTTGCTATGCGATGAATCGACTTAGCAATCTTGAAAAGCATTATTTGATTCTAATGACCTGAAGTACGGTTTACCTTTTCTTTTTCCAGGATAAATTTGGAGCTGCATGGGGGTTTATTGCGTCACACTTTCTGAATGAATATCAGAAGAACTTTTATGAG ATGTTGCGAGATCTTCCTTGGCGTGGTTCTGGTGTTGCAATCCCCATGTTCTCTGTTAGATCAGACGATGATCTTGGAGTTGGCGAGTTTCTTGACTTGAAATTACTTGTAGACTGGGCTGTGGAGTCTGGTCTCCATTTAGTTCAACTTCTACCTGTTAATGATACATCCGTTCATGGAATGTGGTGGGACTCGTATCCTTACAGTTCACTTTCCGTCTTTGCCCTGCATCCATTGTACTTGAGAGTCCAAGCACTTTCAGATAATATTCCAGAGGATATCAAGCTGGAGATTCAAAAGGAAAAAGTTGAACTGGATGGAAAGGATGTGGATTATGAGGCTACTATGGCTGCTAAGCTTACACTTGCACAGAAAATTTTTGCTCGAGAGAAAGATTCAATACTGAATTCCAGTTCCTTTCAGAAGTATCTTTCTGAAAACGAGGAATGGCTAAAACCCTATGCCGCATTCTGTTTTCTGCGAGACTTCTTTGAAACATCGGATCACAGCCAATGGGGTCGTTTCTCTCAATTTTCAAAAGACAAGCTTGAGAAGCTTATCTCAAAGGACAGCTTGCATTATGATGTCATCTGCTTCCACTATTATATTCAATATCATTTGCACCAACAGTTGTTGGAGGCAGCAAATTATGGAAGAAAGAAAGGAGTGATATTGAAAGGTGATCTTCCGATTGGCGTCGATAGGAACAGTGTAGACACCTGGGTTTACCCTACTTTATTCCGCATGAACACGTCAACCGGAGCACCTCCAGATTACTTTGACAAAAATGGACAAAATTGGGGATTTCCAACATACAACTGGGAGGAGATGTCAAAAGATAACTATGCTTGGTGGCGTGCTCGTTTAACTCAGATGTCAAACTACTTCACAGCTTACAGAATTGATCATATATTGGGTTTCTTCCGAATTTGGGAGCTTCCAGAGCATGCTATGACTGGTTTAGTTGGAAAATTCCGCCCTTCTATTCCATTAAGCCAGGAAGAGCTCGAAAGAGAGGGAATATGGGACTTTGATCGCTTGAGTCGTCCATATATCAAGGCTGAGTTTTTACAGGATAAATTTGGAGCTGCATGGGGGTTTATTGCGTCACACTTTCTGAATGAATATCAGAAGAACTTTTATGAG ATGTTGCGAGATCTTCCTTGGCGTGGTTCTGGTGTTGCAATCCCCATGTTCTCTGTTAGATCAGACGATGATCTTGGAGTTGGCGAGTTTCTTGACTTGAAATTACTTGTAGACTGGGCTGTGGAGTCTGGTCTCCATTTAGTTCAACTTCTACCTGTTAATGATACATCCGTTCATGGAATGTGGTGGGACTCGTATCCTTACAGTTCACTTTCCGTCTTTGCCCTGCATCCATTGTACTTGAGAGTCCAAGCACTTTCAGATAATATTCCAGAGGATATCAAGCTGGAGATTCAAAAGGAAAAAGTTGAACTGGATGGAAAGGATGTGGATTATGAGGCTACTATGGCTGCTAAGCTTACACTTGCACAGAAAATTTTTGCTCGAGAGAAAGATTCAATACTGAATTCCAGTTCCTTTCAGAAGTATCTTTCTGAAAACGAGGAATGGCTAAAACCCTATGCCGCATTCTGTTTTCTGCGAGACTTCTTTGAAACATCGGATCACAGCCAATGGGGTCGTTTCTCTCAATTTTCAAAAGACAAGCTTGAGAAGCTTATCTCAAAGGACAGCTTGCATTATGATGTCATCTGCTTCCACTATTATATTCAATATCATTTGCACCAACAGTTGTTGGAGGCAGCAAATTATGGAAGAAAGAAAGGAGTGATATTGAAAGGTGATCTTCCGATTGGCGTCGATAGGAACAGTGTAGACACCTGGGTTTACCCTACTTTATTCCGCATGAACACGTCAACCGGAGCACCTCCAGATTACTTTGACAAAAATGGACAAAATTGGGGATTTCCAACATACAACTGGGAGGAGATGTCAAAAGATAACTATGCTTGGTGGCGTGCTCGTTTAACTCAGATGTCAAACTACTTCACAGCTTACAGAATTGATCATATATTGGGTTTCTTCCGAATTTGGGAGCTTCCAGAGCATGCTATGACTGGTTTAGTTGGAAAATTCCGCCCTTCTATTCCATTAAGCCAGGAAGAGCTCGAAAGAGAGGGAATATGGGACTTTGATCGCTTGAGTCGTCCATATATCAAGGCTGAGTTTTTACAGGATAAATTTGGAGCTGCATGGGGGTTTATTGCGTCACACTTTCTGAATGAATATCAGAAGAACTTTTATGAG MLRDLPWRGSGVAIPMFSVRSDDDLGVGEFLDLKLLVDWAVESGLHLVQLLPVNDTSVHGMWWDSYPYSSLSVFALHPLYLRVQALSDNIPEDIKLEIQKEKVELDGKDVDYEATMAAKLTLAQKIFAREKDSILNSSSFQKYLSENEEWLKPYAAFCFLRDFFETSDHSQWGRFSQFSKDKLEKLISKDSLHYDVICFHYYIQYHLHQQLLEAANYGRKKGVILKGDLPIGVDRNSVDTWVYPTLFRMNTSTGAPPDYFDKNGQNWGFPTYNWEEMSKDNYAWWRARLTQMSNYFTAYRIDHILGFFRIWELPEHAMTGLVGKFRPSIPLSQEELEREGIWDFDRLSRPYIKAEFLQDKFGAAWGFIASHFLNEYQKNFYE
BLAST of MELO3C019135T2 vs. Swiss-Prot
Match: DPE2_ARATH (4-alpha-glucanotransferase DPE2 OS=Arabidopsis thaliana GN=DPE2 PE=1 SV=1) HSP 1 Score: 678.7 bits (1750), Expect = 3.7e-194 Identity = 317/382 (82.98%), Postives = 343/382 (89.79%), Query Frame = 1
BLAST of MELO3C019135T2 vs. Swiss-Prot
Match: DPE2_ORYSJ (4-alpha-glucanotransferase DPE2 OS=Oryza sativa subsp. japonica GN=DPE2 PE=2 SV=1) HSP 1 Score: 669.1 bits (1725), Expect = 2.9e-191 Identity = 310/381 (81.36%), Postives = 346/381 (90.81%), Query Frame = 1
BLAST of MELO3C019135T2 vs. Swiss-Prot
Match: MALQ_CHLPN (4-alpha-glucanotransferase OS=Chlamydia pneumoniae GN=malQ PE=3 SV=1) HSP 1 Score: 209.1 bits (531), Expect = 8.3e-53 Identity = 107/304 (35.20%), Postives = 167/304 (54.93%), Query Frame = 1
BLAST of MELO3C019135T2 vs. Swiss-Prot
Match: MALQ_CHLMU (4-alpha-glucanotransferase OS=Chlamydia muridarum (strain MoPn / Nigg) GN=malQ PE=3 SV=1) HSP 1 Score: 199.1 bits (505), Expect = 8.5e-50 Identity = 105/325 (32.31%), Postives = 170/325 (52.31%), Query Frame = 1
BLAST of MELO3C019135T2 vs. Swiss-Prot
Match: MALQ_CHLTR (4-alpha-glucanotransferase OS=Chlamydia trachomatis (strain D/UW-3/Cx) GN=malQ PE=3 SV=1) HSP 1 Score: 198.7 bits (504), Expect = 1.1e-49 Identity = 102/324 (31.48%), Postives = 169/324 (52.16%), Query Frame = 1
BLAST of MELO3C019135T2 vs. TrEMBL
Match: A0A0A0L0U4_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_4G420150 PE=4 SV=1) HSP 1 Score: 793.1 bits (2047), Expect = 1.5e-226 Identity = 377/382 (98.69%), Postives = 380/382 (99.48%), Query Frame = 1
BLAST of MELO3C019135T2 vs. TrEMBL
Match: M5VXC0_PRUPE (Uncharacterized protein OS=Prunus persica GN=PRUPE_ppa000782mg PE=4 SV=1) HSP 1 Score: 724.2 bits (1868), Expect = 8.5e-206 Identity = 337/382 (88.22%), Postives = 362/382 (94.76%), Query Frame = 1
BLAST of MELO3C019135T2 vs. TrEMBL
Match: B9SCF0_RICCO (4-alpha-glucanotransferase, putative OS=Ricinus communis GN=RCOM_1271340 PE=4 SV=1) HSP 1 Score: 703.4 bits (1814), Expect = 1.6e-199 Identity = 325/382 (85.08%), Postives = 355/382 (92.93%), Query Frame = 1
BLAST of MELO3C019135T2 vs. TrEMBL
Match: B9HDT4_POPTR (4-alpha-glucanotransferase-related family protein OS=Populus trichocarpa GN=POPTR_0006s03020g PE=4 SV=2) HSP 1 Score: 698.4 bits (1801), Expect = 5.0e-198 Identity = 322/382 (84.29%), Postives = 356/382 (93.19%), Query Frame = 1
BLAST of MELO3C019135T2 vs. TrEMBL
Match: A0A0S3RWT9_PHAAN (Uncharacterized protein OS=Vigna angularis var. angularis GN=Vigan.04G256900 PE=4 SV=1) HSP 1 Score: 695.7 bits (1794), Expect = 3.2e-197 Identity = 322/382 (84.29%), Postives = 351/382 (91.88%), Query Frame = 1
BLAST of MELO3C019135T2 vs. TAIR10
Match: AT2G40840.1 (AT2G40840.1 disproportionating enzyme 2) HSP 1 Score: 678.7 bits (1750), Expect = 2.1e-195 Identity = 317/382 (82.98%), Postives = 343/382 (89.79%), Query Frame = 1
BLAST of MELO3C019135T2 vs. TAIR10
Match: AT5G64860.1 (AT5G64860.1 disproportionating enzyme) HSP 1 Score: 109.0 bits (271), Expect = 6.5e-24 Identity = 85/332 (25.60%), Postives = 133/332 (40.06%), Query Frame = 1
BLAST of MELO3C019135T2 vs. NCBI nr
Match: gi|659111465|ref|XP_008455750.1| (PREDICTED: 4-alpha-glucanotransferase DPE2 [Cucumis melo]) HSP 1 Score: 800.8 bits (2067), Expect = 1.0e-228 Identity = 382/382 (100.00%), Postives = 382/382 (100.00%), Query Frame = 1
BLAST of MELO3C019135T2 vs. NCBI nr
Match: gi|449453145|ref|XP_004144319.1| (PREDICTED: 4-alpha-glucanotransferase DPE2 [Cucumis sativus]) HSP 1 Score: 793.1 bits (2047), Expect = 2.1e-226 Identity = 377/382 (98.69%), Postives = 380/382 (99.48%), Query Frame = 1
BLAST of MELO3C019135T2 vs. NCBI nr
Match: gi|700199516|gb|KGN54674.1| (hypothetical protein Csa_4G420150 [Cucumis sativus]) HSP 1 Score: 793.1 bits (2047), Expect = 2.1e-226 Identity = 377/382 (98.69%), Postives = 380/382 (99.48%), Query Frame = 1
BLAST of MELO3C019135T2 vs. NCBI nr
Match: gi|595821811|ref|XP_007204878.1| (hypothetical protein PRUPE_ppa000782mg [Prunus persica]) HSP 1 Score: 724.2 bits (1868), Expect = 1.2e-205 Identity = 337/382 (88.22%), Postives = 362/382 (94.76%), Query Frame = 1
BLAST of MELO3C019135T2 vs. NCBI nr
Match: gi|645278114|ref|XP_008244084.1| (PREDICTED: 4-alpha-glucanotransferase DPE2 [Prunus mume]) HSP 1 Score: 718.0 bits (1852), Expect = 8.7e-204 Identity = 333/382 (87.17%), Postives = 361/382 (94.50%), Query Frame = 1
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 CDS feature(s) are a part of this mRNA:
The following polypeptide feature(s) derives from this mRNA:
Analysis Name: InterPro Annotations of melon
Date Performed: 2016-09-28
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