PI0021248 (gene) Melon (PI 482460) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.CGATTTTGTCATCCGATACGACGTCGTTTCGCTGTACAACTTGGGTTAGTGACCATCCACAAGGTATCGACTATCAACTGGAGGTAGCTCGGACGAGGTGGCTTCTGGGAAGCCATGGGGCGCGTTAACAACAAAACCAAGGCATCGGCGTCGGGAGCCGCCGGGAAATCAGAAAATCGACGGATGAGCAACGCCGACCGTTCGGCGTACTTCGCTAGGAGAGAGGCGGCGAAGATATTGCGGCGTGTTCTCGAGGGAGACGCTCAACGTCGAGCCATAGCCTCCATCAAATCACTCGTCTATGCTCCATCTGTTCGGAATAAGAAGGGCACATTCGCTCTTGTTTGCAAGACTCTCAAATGTAAGTTCTGAACAAAGATTTTTTTTCGCGCAACGAATGTTGGAAGTGTCTTTCAAACGGATTCTCGTGTAGATGTCAATAGGAATATTGACTTTAGTTGAGCATCTTGCTCTGCGTTTGGATATTAGACTATTAATATTGTTATGCAACAGTTTTTACCCCTGCAACTTCGGACTAAATGCATAACATAACAAGGATTATATGGAAAATTGGAATTCCATCTATTTGATATGAATGATTTTTTGACAAGCTAGATAATTACTAGTTACCTTCTCTCGGTCCTCTGGTGATATTTGCAGTGGTGTAGCATAATTATAAGGTTCATTTTGTAGCTCTCTGAATTCTTCTGCTTTTGTTGTGTTGTTAGTCCTCCCTGTAATCAAGGATGTACTTGAGGCTGCTGATTTATTGAGCAACAAATGGAAGGTACTCTTGCATTTTCTTTATAGCTGCTCTAGGATTTGGTCTGATGACAGTTGTTCTCTTACCATGATAGTCTGTAATTCATTTGTTTCTCAAGTTCTGGCTAATTCTGTCCGGATAGTTTTCTTACTCACTCCAAACATGCCGTAACACTAACCCGATATTGTTGCAGAGGCAGAAGGAATTGATTTATGTCATCATGTACGATATCCTCCTGGGCCAGGTATGTGAAACATCTTACCTCAAGACGACTTCGGTTTATCCTTTAAAAGGTCGACTCTGAAAATGCTTTACGATAGTTGAACAAGGGAGAGGACTATTTATTGTTGTTTAAATTCCGTATCGACTATCAGGACATTTTAAAAGTTATTTACTTCAAACCAATTTTGTCTATTTCCAATAATCTACATATGGGTGTAATTTGCCAGCATGAAGATAGCTCAACTAACACAAGACACACTCTTGATCAAGAGGTTAAATGTTTAAATCTACACCCCAAATTAATTGTTTTACTAAAAATATATGAGTGTTGTTTTGAGTTTGAACTAATTTCTTTATCATCAAGAGTTACTGCCTACTGAATCCGGTGGGAGTTTGGAGGCAAGATCATGTAGTTCGCAAATGAACGATTTTTTTCCTTTGTTGAGAGGTTTAGACTTTAGAGTAAGCTTTCAGTAGAAAATACTTAGATAAGTTATTGTTACAAGAAAGTGTTAATGAATATGCAGAAGCTTCTGCTACCGTGTACTGAGACTGCTGTAGCTTGCTATTTAACATTTGGTGATGATTGGTATATTTTGTGGAAACTGTGCGTAGAAAACTCATTTAGCTGGCGATGCAGAGAAGTTTCTCATGCGGCAGGAAGGTGCTTTACAATCTGCTGTTACACAGCTTTTGTCAAAGAAAAAAGCAAACAATATTGAAGATTTAATAGCTCGTGGTGATGATGATCCTGGTGAGAGTTCTGTATAAGCCTGTTCTGTGCTGGTTTCTACTAACTTAGTTATTAAGCCTACTCAGTTATGAAGAGATAATCATCAATTCAGGTGTTTCAAGGCCCCGTTTTATTCGCGTGAATACTTTGAAGATGGATGTTCACACAGCAATAAAAGAATTAGGCAAAAGATATGCAGTGAGTTCCAACATCTATCCTAATTATTATTGATGTGTATGCCAGTAGATTAGAGTTCAATAGCCACGACGGTGTTTGAATCCAGGACCAGGGATTTCACAGCTCAATCCGCCCAAATTGCAAATGACTAAACTTCAATAGCCACAACGGGATTATCTTCACGTATAGCACACTTCATCAATTTTGTAAATGATCAATTGTTCTAAGTGCCTCCTAGCCTCGTTAGTCCTAAAAAATTCATAATATGGATGTAGGGATAGAATTTGTTCTGAGTTTTGTTATCGGTAAGGATTGTATTCCATTACGGCACTCGAGAAGAATTCCTAAATGGTGCTGGTTATCATTTCAAACAGGTTCAGAAGGATGACATGGTTCCTGATCTCTTGAAACTTCCTCCTCGCAGTGACTTGCATGATCATCCTCTGGTTGCAGATGGAAGTATCTTCTTGCAAGCAAGTATCTAGTTTTATTCAGTCCATTGCCAAGAAGCAAATATTTAAGGCCAAAGGTAGCTGTTCTTTCTTTTTATTGTATAACAAGAGAGTATTAATGTTTGTAGGGGAAGGCTAGTTCCATGGTTGCAGTAGCCCTTGATCCCAAGCCAGGATGGGAAGTAAGATCATATCTACCTGTATTTACTATAATTACTCTGGTGTTAATAGTTTCCATTTTAATGGTTCGTATTATTGAAGGTCCTTGATGCATGTTCAGCTCCGGGTAACAAAACTGTCCACCTTGCCTCTCTCATGAATGGAAAAGGAAGGATCATTGCATGTGAATTGAATGAAAGCAGGGTCAAACGCTTACAACATACTATCAAACTATCTGGCGCTTCTAGTATCCTTCGTGGATAGTTTTGTCTGCCTGTGTTGTTGATACCATATAGCAACTCTGTATCTATCTGGAATCTTACGTTAGATTATTTTCTCTATTTGGAGTAGTCGCCTTGCACGCGAGCCTGCCATTTTAATGGGTTGAAGACTGACGAGTAAGGCGATGATCTCATTTATGCCATTACCAGCTATTGTCCTAACTTACACGTTACCTTGATTAACCTTAACGGTGCAAGATATAGACGTTTTGCATGGGGATTTCCTCAATCTTAATCCAAAAGATCCTTCATTATCCAAAGTAAGTTCTGTTCAGCTCCACAGTGATCATCTTTTCTTCATAAATAATTAAAGCTACTGCATGCAACTATAATCAGAGTTATCCCCTTCGTTTTAGAAAAAAAAAAATCCTGACCTCTTAGATGGGTTGGATCAGCCAATCCCATTGCCTCAGAACGATGGAAGTAATAGCCGTAGCCATCATTGCTTAGAGATTAGAATGCTTTGCGATTTCTACTTTGCTTGGGTTGGTAGACAAAAGCCTAATCTTTTGCCACAGCGTACTGATGTTCAGCCGGAAAATGTTATGTTCTTGATGTCATCCACTTTTGATATTTTAAGGTCCGTGCCATTCTTTTGGATCCTTCCTGCTCTGGATCTGGAACTGCGGCTGTCAGATTAGATCATTTGCTCCCGTCACATGTTGAAGGTAATTCCTTGCCTTGTCTTAATTGCAACATCCATAATCCATTATCTCCTGTATCTTCTTCTGGTTATTGATTGCTACCTCCATCATATCGTCATGAATTTTGCAGGGACAACCTCTGGAGATGACCTTGAACGACTAAACAAACTCGCTGCCTTTCAGAGAAAGGCTCTCGCACATGCATTTTCCTGTGAGTTACATCCCGTTGTGCATTTCTTTTTCTTTCTCCTTTTCCTCTTTTTATTTTTTATTGTTTATTTTTTGGGTAATAGAGCTAAGAACAAAAAAGATTTAATATATTGAAGAACATTAGAAAATATCCGCATGTTCTTAATGTTCGAAAGGTTAAAGACTCTACCCTGTCCTTTCCTTCCTCGCCTCTCAGCCTCAACTTCGTCTCCTACAATATGTTTGTGATATTTTACTCTAACCGTTCAAAATAAACATTACATTGCCTGATCCTTGAACGTCCCTTGATAATTGAAATCCACACTACCGATGTCATCTCATTGCAGTTCCAGCCGTAGAGAGAATTGTTTACAGCACTTGCTCCATTCATCAAATTGAAAATGAAGATGTCGTCCAATCACTATTACCTCTTGCTGAATCACATGGTTTTCAACTAGATACTCCGTTCCCACAGTGGCAGCGACGAGGTCTCCCAGTGTTTGCCGGCGGTAAATATCAACGGATTATTTGTATTTTTAAAACTCACCCTCTTCAATTTAGCTATAACTTTATTGCACAATTAAACATTCTAGATTGTTTTCTCATTATGCAGCTAACCACTTACTCCGAACCGATCCTGTTGAAGACAAAGAAGGGTTCTTCATAGCTCTATTTAAGAAGAAGCAGAACACAACAAACCCATTTCCCCGAAGTTCAAATAGAGATAAAAGCTCAAGATATCGTGGCGGAAATGTCTGTAACAATCGGGCTGTAGCATGCCCTCCTACTAAGATCTCCAAACAGTTGTTGTATCAGTATGCACTTTCGACAAGGACACGATGGAGAAAGAACCACTCCGTCAAAAACTAGATCGATAACTTGATTATTTCCAAAACCAAACATAGTAGAATCAATGGTTGGCTTTCAGTTTCAAGTAAAAGGACTTCATTGATCTGATAGCAATGTGTCGTATAACCTTTCCAGTGCAACGCAGAGCTTTTAAATTGGTGAGGATATTCCACCACAGGCGCTTTTGGAACCAGTTGGAACGATTGGCGATATAAAAATACCTCATCCTTCCTCATCTCTCCTCAGGTTGGTAGAAGTTACATTACTATTCGACTCTTAGCTTTTCATTGTTATCTTTTAAGCTTAGAATATTGCTTTGCGGCTGATTGATTAATTGTTGCATATTTTTATACGACACCAACCCCAGAAAAGGAGGGGGGAAAGTTATATTATATAACAGCAGAGGTAGAGATTTCTGATAAAATCTTAATATATTCATTAACATAAACCTTCAACACACATTACACATTTGACCTCCACATAACAGTCATTACAACAGAAAACGCCACCGAAAAAGAAAAAGAAAAAAAGTAAAAAAAAACACCTTGTGCCATATTCTGAAAACTCATGATCCAAAGATTGGAAGTAGGAATCCCCGATAGTCCTAGCCCCATCAATTGACCTTGACCTCAACGATCTTGGGCTTCTTAGGCTGAGGTGGTGGCAACTTTTGCACAGTCACAGTGAGCACACCATCCTGACAAACCGCCGATATGGCATCAATGTTAGCATTTTCCGGCAACACAAATTTCCTCATTAACTTGCCAACTCTCCTCTCCATTCTCACATACTTAGCTCCTTCTTTCTCCTCCTCCCTCTTCCTCTCCCCACTTATCAGTAGCACATTGTCATCCTCAACCTGAACCTTGATGTCACCGACCTTTAACCCCGGCATGTCAACGACGAAAACATAGGAATTCGGATACTCCTTGACGTCGGCTGGAGTGGCTGCCATAGCCTTGGCGTCCCGAACGTAAGTCCTGGTGGGTGTGCTGAAGGACTTATCGGCGTCGTCGGCGAGGTCCATCACGTGCTGGAGGGTGGAGAAGATTGGTGAGTCTAGTCCCATGATTCTGAGATCCATTTTTCTCTTGATAGGTGGAGAAATTTTAGTCTTTAACGAAGTAGAGTGCTTGTAAGAAAGGAAATTTTGGTTATAGAAGATGTTCTTGTAAATGGAAGAGCTGATTTTTGTTGTGGCGAATGGCGAAAGGTTGGTTGGGTTTTATAGATATTGTGAATGAGTTTAGGAATGGGAGGAGGAATTTTCTGGAAGTGTTGAGAGAAGAGTTGGAAGGAGGTTCCAGGAGCTTCTGTCGCATTCCTCGTATGAGTTCTGGAAGTTGATGGAGGACCAAATGACAATATTGTCCTTCTCATTTGAGAATATTACGGAGAGAAGGAAACTTAGAAGAGAACTTTTAATTTGTTTTTCTAATAATAGTTCTTTTTTTTTTTTTTTTATTCCTTCGGGAGAGAGAGTTTTTAAATTTTTGTGAATTTTTTAACTTTAATTTTCAATTTCTTCACATTGAAATCTGAACTTTAATGAAAATGTGTATTTGTAATCTCTACCCGCCATTTTACCACTTATTAATTCACTGAGAAGTGTTAAAAAATTTATTTTAAATTTCAAAGTTAATATATCATTTTGATACTCTATTTCAGCTTCTATATTTTAAAATTTTAATGAGTTAATTGTAAAAATACATTATATAGCAAAATATTACCTGGACTAAAATTCAATCGAAAGTAATCACTAACTTTTAAACATTTTGAGATAGAAGCCTATATTAAAAAATAATTAACTTTATTTTCCTTTTCAATTATCATTCAAATATAAAATTTTAAATACATTTATCTTAAATCTTTCAACTTTCAAACAAAATAAATAATTTAAAACCATTTCTTATATAATTTAAAATTATTTCTTTGACTGTCTGAAATCCAAACTAAAGGTAAAAATAGAGTTTAAAGTGGTCTTTTAACATTAATTTTATATGTTGAGTCTTAGAAAAAAAATATTGAACTCTCCATATGTGTGTGAAAGAGGTTATAGTATTAACCTTTTTGACAAATTTTTATAAGCCATAAAAATTAGAAATTTGGTAGGCTAAAATCATGTAATATGATTGGCATATACACTCCTTTTAAGGTCGTAGATTACATATCTCATCACACCAAATTAAACAGTCAAAGTGAGTTGGTTCTTCATAATTAATTAATGATTGATTGGTTCTGTTTTCCAAAATAAGAAACTTTAGTAAATAGAGTTTTATTTCTTTAATCAATCAACAAAAGTTCATATCTATTAAAAATTTATTGTAATAAAAAATAGTATAACAATAGAAGTAATAGAATTAGACTTTTTTCCAATTACAATTAGACCTTTCTAATCATTCTCACAAATAGCATATTTGCATAAGATCTTCCTATTTCATATTTAATATTTATCGTACTAAAAACGATAAAATAATACGAGTAAACTGCCATAAAATATAGAAGTTGATAAAAACCTTAAAAAATTGACAACTCTAAACTGCCATAAAATATACTGTAAACTAACATGATAGACACGTTCTATAATGTAGTATTCATTGTATGTACATACCCATACTAAACTCAAAGGCTAAAGTTCCTTAACATCTAAGGCAACAAACCAAAATACACACACAAACCTAAAAACAACAAAAAGGGCAAAAAAAAAAAAAAAAAAAAAAAAGAGAATAGAAAAATAACGTGACAGAGCATCATTACTATTACATTACAGAACAAAACCCAAAAACCAATCCTCACGCCACACGAACTTCAATATTCTTAGCCTTTTTGGGCTCTGGCGGTGGCTTCTTCTCCACCGTGACCGATAGCACTCCGTCCTGGTACGCCGCCGACACTTTGTCGGTGTCGGCGGTTTCCGGCAGCTCAAATTTCTTCAAATATTTTCCAAACCTCCTCTCCATTCTCACAAATTTCCCTTCCTTAACCTTTTCACTTTCCCTCTTCCTCTCGCCGCTCACAACCAATTGGCTCTCCTCTATTTTCACTTTTATTTGGTCTGATTTCAGGCCAGGCATGTCGATGGTGAATTGGTAAGAGTTTGGATATTCCACCACGTCTGCCGGAGTTGCTGCCATCGCCTTTGCGTCCCTCAGGTACGCTCGTGATGGCGCGTGGTGGCTGCTCTGCCCAGGCTCGTCGGAGACGTCCAGAAGGTCGTGGAGGGCGTTTAGAAATGATGGGTCGAATCCCATTTTGGCTACGTCCATTTTTTGTGTTTATTGTGGAATGGGTTTTGATGTGTGTATATATATAATATAAGGGTTAATTTGATTTTTCATTCTTTTGGAATTAAA CGATTTTGTCATCCGATACGACGTCGTTTCGCTGTACAACTTGGGTTAGTGACCATCCACAAGGTATCGACTATCAACTGGAGGTAGCTCGGACGAGGTGGCTTCTGGGAAGCCATGGGGCGCGTTAACAACAAAACCAAGGCATCGGCGTCGGGAGCCGCCGGGAAATCAGAAAATCGACGGATGAGCAACGCCGACCGTTCGGCGTACTTCGCTAGGAGAGAGGCGGCGAAGATATTGCGGCGTGTTCTCGAGGGAGACGCTCAACGTCGAGCCATAGCCTCCATCAAATCACTCGTCTATGCTCCATCTGTTCGGAATAAGAAGGGCACATTCGCTCTTGTTTGCAAGACTCTCAAATTCCTCCCTGTAATCAAGGATGTACTTGAGGCTGCTGATTTATTGAGCAACAAATGGAAGAGGCAGAAGGAATTGATTTATGTCATCATGTACGATATCCTCCTGGGCCAGAAAACTCATTTAGCTGGCGATGCAGAGAAGTTTCTCATGCGGCAGGAAGGTGCTTTACAATCTGCTGTTACACAGCTTTTGTCAAAGAAAAAAGCAAACAATATTGAAGATTTAATAGCTCGTGGTGATGATGATCCTGGTGTTTCAAGGCCCCGTTTTATTCGCGTGAATACTTTGAAGATGGATGTTCACACAGCAATAAAAGAATTAGGCAAAAGATATGCAGTTCAGAAGGATGACATGGTTCCTGATCTCTTGAAACTTCCTCCTCGCAGTGACTTGCATGATCATCCTCTGGTTGCAGATGGAAGTATCTTCTTGCAAGGGAAGGCTAGTTCCATGGTTGCAGTAGCCCTTGATCCCAAGCCAGGATGGGAAGTCCTTGATGCATGTTCAGCTCCGGGTAACAAAACTGTCCACCTTGCCTCTCTCATGAATGGAAAAGGAAGGATCATTGCATGTGAATTGAATGAAAGCAGGGTCAAACGCTTACAACATACTATCAAACTATCTGGCGCTTCTAATATAGACGTTTTGCATGGGGATTTCCTCAATCTTAATCCAAAAGATCCTTCATTATCCAAAGTCCGTGCCATTCTTTTGGATCCTTCCTGCTCTGGATCTGGAACTGCGGCTGTCAGATTAGATCATTTGCTCCCGTCACATGTTGAAGGGACAACCTCTGGAGATGACCTTGAACGACTAAACAAACTCGCTGCCTTTCAGAGAAAGGCTCTCGCACATGCATTTTCCTTTCCAGCCGTAGAGAGAATTGTTTACAGCACTTGCTCCATTCATCAAATTGAAAATGAAGATGTCGTCCAATCACTATTACCTCTTGCTGAATCACATGGTTTTCAACTAGATACTCCGTTCCCACAGTGGCAGCGACGAGGTCTCCCAGTGTTTGCCGGCGCTAACCACTTACTCCGAACCGATCCTGTTGAAGACAAAGAAGGGTTCTTCATAGCTCTATTTAAGAAGAAGCAGAACACAACAAACCCATTTCCCCGAAGTTCAAATAGAGATAAAAGCTCAAGATATCGTGGCGGAAATGTCTGTAACAATCGGGCTGTAGCATGCCCTCCTACTAAGATCTCCAAACAGTTGTTGTATCAGTATGCACTTTCGACAAGGACACGATGGAGAAAGAACCACTCCGTCAAAAACTAGATCGATAACTTGATTATTTCCAAAACCAAACATAGTAGAATCAATGGTTGGCTTTCAGTTTCAAGTAAAAGGACTTCATTGATCTGATAGCAATGTGTCGTATAACCTTTCCAGTGCAACGCAGAGCTTTTAAATTGGTGAGGATATTCCACCACAGGCGCTTTTGGAACCAGTTGGAACGATTGGCGATATAAAAATACCTCATCCTTCCTCATCTCTCCTCAGGCCAGGCATGTCGATGGTGAATTGGTAAGAGTTTGGATATTCCACCACGTCTGCCGGAGTTGCTGCCATCGCCTTTGCGTCCCTCAGGTACGCTCGTGATGGCGCGTGGTGGCTGCTCTGCCCAGGCTCGTCGGAGACGTCCAGAAGGTCGTGGAGGGCGTTTAGAAATGATGGGTCGAATCCCATTTTGGCTACGTCCATTTTTTGTGTTTATTGTGGAATGGGTTTTGATGTGTGTATATATATAATATAAGGGTTAATTTGATTTTTCATTCTTTTGGAATTAAA ATGGGGCGCGTTAACAACAAAACCAAGGCATCGGCGTCGGGAGCCGCCGGGAAATCAGAAAATCGACGGATGAGCAACGCCGACCGTTCGGCGTACTTCGCTAGGAGAGAGGCGGCGAAGATATTGCGGCGTGTTCTCGAGGGAGACGCTCAACGTCGAGCCATAGCCTCCATCAAATCACTCGTCTATGCTCCATCTGTTCGGAATAAGAAGGGCACATTCGCTCTTGTTTGCAAGACTCTCAAATTCCTCCCTGTAATCAAGGATGTACTTGAGGCTGCTGATTTATTGAGCAACAAATGGAAGAGGCAGAAGGAATTGATTTATGTCATCATGTACGATATCCTCCTGGGCCAGAAAACTCATTTAGCTGGCGATGCAGAGAAGTTTCTCATGCGGCAGGAAGGTGCTTTACAATCTGCTGTTACACAGCTTTTGTCAAAGAAAAAAGCAAACAATATTGAAGATTTAATAGCTCGTGGTGATGATGATCCTGGTGTTTCAAGGCCCCGTTTTATTCGCGTGAATACTTTGAAGATGGATGTTCACACAGCAATAAAAGAATTAGGCAAAAGATATGCAGTTCAGAAGGATGACATGGTTCCTGATCTCTTGAAACTTCCTCCTCGCAGTGACTTGCATGATCATCCTCTGGTTGCAGATGGAAGTATCTTCTTGCAAGGGAAGGCTAGTTCCATGGTTGCAGTAGCCCTTGATCCCAAGCCAGGATGGGAAGTCCTTGATGCATGTTCAGCTCCGGGTAACAAAACTGTCCACCTTGCCTCTCTCATGAATGGAAAAGGAAGGATCATTGCATGTGAATTGAATGAAAGCAGGGTCAAACGCTTACAACATACTATCAAACTATCTGGCGCTTCTAATATAGACGTTTTGCATGGGGATTTCCTCAATCTTAATCCAAAAGATCCTTCATTATCCAAAGTCCGTGCCATTCTTTTGGATCCTTCCTGCTCTGGATCTGGAACTGCGGCTGTCAGATTAGATCATTTGCTCCCGTCACATGTTGAAGGGACAACCTCTGGAGATGACCTTGAACGACTAAACAAACTCGCTGCCTTTCAGAGAAAGGCTCTCGCACATGCATTTTCCTTTCCAGCCGTAGAGAGAATTGTTTACAGCACTTGCTCCATTCATCAAATTGAAAATGAAGATGTCGTCCAATCACTATTACCTCTTGCTGAATCACATGGTTTTCAACTAGATACTCCGTTCCCACAGTGGCAGCGACGAGGTCTCCCAGTGTTTGCCGGCGCTAACCACTTACTCCGAACCGATCCTGTTGAAGACAAAGAAGGGTTCTTCATAGCTCTATTTAAGAAGAAGCAGAACACAACAAACCCATTTCCCCGAAGTTCAAATAGAGATAAAAGCTCAAGATATCGTGGCGGAAATGTCTGTAACAATCGGGCTGTAGCATGCCCTCCTACTAAGATCTCCAAACAGTTGTTGTATCAGTATGCACTTTCGACAAGGACACGATGGAGAAAGAACCACTCCGTCAAAAACTAG MGRVNNKTKASASGAAGKSENRRMSNADRSAYFARREAAKILRRVLEGDAQRRAIASIKSLVYAPSVRNKKGTFALVCKTLKFLPVIKDVLEAADLLSNKWKRQKELIYVIMYDILLGQKTHLAGDAEKFLMRQEGALQSAVTQLLSKKKANNIEDLIARGDDDPGVSRPRFIRVNTLKMDVHTAIKELGKRYAVQKDDMVPDLLKLPPRSDLHDHPLVADGSIFLQGKASSMVAVALDPKPGWEVLDACSAPGNKTVHLASLMNGKGRIIACELNESRVKRLQHTIKLSGASNIDVLHGDFLNLNPKDPSLSKVRAILLDPSCSGSGTAAVRLDHLLPSHVEGTTSGDDLERLNKLAAFQRKALAHAFSFPAVERIVYSTCSIHQIENEDVVQSLLPLAESHGFQLDTPFPQWQRRGLPVFAGANHLLRTDPVEDKEGFFIALFKKKQNTTNPFPRSSNRDKSSRYRGGNVCNNRAVACPPTKISKQLLYQYALSTRTRWRKNHSVKN Homology
BLAST of PI0021248 vs. ExPASy Swiss-Prot
Match: Q8GYE8 (25S rRNA (cytosine-C(5))-methyltransferase NSUN5 OS=Arabidopsis thaliana OX=3702 GN=NSUN5 PE=1 SV=1) HSP 1 Score: 600.5 bits (1547), Expect = 1.8e-170 Identity = 300/433 (69.28%), Postives = 355/433 (81.99%), Query Frame = 0
BLAST of PI0021248 vs. ExPASy Swiss-Prot
Match: Q8K4F6 (28S rRNA (cytosine-C(5))-methyltransferase OS=Mus musculus OX=10090 GN=Nsun5 PE=1 SV=2) HSP 1 Score: 268.9 bits (686), Expect = 1.2e-70 Identity = 170/441 (38.55%), Postives = 246/441 (55.78%), Query Frame = 0
BLAST of PI0021248 vs. ExPASy Swiss-Prot
Match: Q96P11 (28S rRNA (cytosine-C(5))-methyltransferase OS=Homo sapiens OX=9606 GN=NSUN5 PE=1 SV=2) HSP 1 Score: 265.0 bits (676), Expect = 1.7e-69 Identity = 165/425 (38.82%), Postives = 239/425 (56.24%), Query Frame = 0
BLAST of PI0021248 vs. ExPASy Swiss-Prot
Match: O14039 (25S rRNA (cytosine-C(5))-methyltransferase rcm1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) OX=284812 GN=rcm1 PE=3 SV=3) HSP 1 Score: 216.1 bits (549), Expect = 9.3e-55 Identity = 144/433 (33.26%), Postives = 226/433 (52.19%), Query Frame = 0
BLAST of PI0021248 vs. ExPASy Swiss-Prot
Match: Q9NAA7 (26S rRNA (cytosine-C(5))-methyltransferase nsun-5 OS=Caenorhabditis elegans OX=6239 GN=nsun-5 PE=1 SV=2) HSP 1 Score: 197.2 bits (500), Expect = 4.5e-49 Identity = 137/446 (30.72%), Postives = 216/446 (48.43%), Query Frame = 0
BLAST of PI0021248 vs. ExPASy TrEMBL
Match: A0A0A0L2U2 (SAM_MT_RSMB_NOP domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_4G646330 PE=3 SV=1) HSP 1 Score: 948.3 bits (2450), Expect = 1.3e-272 Identity = 477/509 (93.71%), Postives = 496/509 (97.45%), Query Frame = 0
BLAST of PI0021248 vs. ExPASy TrEMBL
Match: A0A5D3D9A2 (Putative 28S rRNA (Cytosine-C(5))-methyltransferase isoform X1 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold134G001930 PE=3 SV=1) HSP 1 Score: 944.5 bits (2440), Expect = 1.8e-271 Identity = 480/509 (94.30%), Postives = 491/509 (96.46%), Query Frame = 0
BLAST of PI0021248 vs. ExPASy TrEMBL
Match: A0A1S3BUJ8 (probable 28S rRNA (Cytosine-C(5))-methyltransferase isoform X1 OS=Cucumis melo OX=3656 GN=LOC103493685 PE=3 SV=1) HSP 1 Score: 944.5 bits (2440), Expect = 1.8e-271 Identity = 480/509 (94.30%), Postives = 491/509 (96.46%), Query Frame = 0
BLAST of PI0021248 vs. ExPASy TrEMBL
Match: A0A1S3BVF0 (probable 28S rRNA (Cytosine-C(5))-methyltransferase isoform X2 OS=Cucumis melo OX=3656 GN=LOC103493685 PE=3 SV=1) HSP 1 Score: 939.1 bits (2426), Expect = 7.7e-270 Identity = 479/509 (94.11%), Postives = 490/509 (96.27%), Query Frame = 0
BLAST of PI0021248 vs. ExPASy TrEMBL
Match: A0A6J1F919 (probable 28S rRNA (Cytosine-C(5))-methyltransferase OS=Cucurbita moschata OX=3662 GN=LOC111443222 PE=3 SV=1) HSP 1 Score: 865.9 bits (2236), Expect = 8.3e-248 Identity = 445/506 (87.94%), Postives = 474/506 (93.68%), Query Frame = 0
BLAST of PI0021248 vs. NCBI nr
Match: XP_004141333.2 (probable 28S rRNA (cytosine-C(5))-methyltransferase [Cucumis sativus]) HSP 1 Score: 948.3 bits (2450), Expect = 2.6e-272 Identity = 477/509 (93.71%), Postives = 496/509 (97.45%), Query Frame = 0
BLAST of PI0021248 vs. NCBI nr
Match: KAE8649915.1 (hypothetical protein Csa_012918 [Cucumis sativus]) HSP 1 Score: 948.3 bits (2450), Expect = 2.6e-272 Identity = 477/509 (93.71%), Postives = 496/509 (97.45%), Query Frame = 0
BLAST of PI0021248 vs. NCBI nr
Match: XP_008452764.1 (PREDICTED: probable 28S rRNA (cytosine-C(5))-methyltransferase isoform X1 [Cucumis melo] >KAA0064520.1 putative 28S rRNA (cytosine-C(5))-methyltransferase isoform X1 [Cucumis melo var. makuwa] >TYK20070.1 putative 28S rRNA (cytosine-C(5))-methyltransferase isoform X1 [Cucumis melo var. makuwa]) HSP 1 Score: 944.5 bits (2440), Expect = 3.8e-271 Identity = 480/509 (94.30%), Postives = 491/509 (96.46%), Query Frame = 0
BLAST of PI0021248 vs. NCBI nr
Match: XP_008452765.1 (PREDICTED: probable 28S rRNA (cytosine-C(5))-methyltransferase isoform X2 [Cucumis melo]) HSP 1 Score: 939.1 bits (2426), Expect = 1.6e-269 Identity = 479/509 (94.11%), Postives = 490/509 (96.27%), Query Frame = 0
BLAST of PI0021248 vs. NCBI nr
Match: XP_038898181.1 (28S rRNA (cytosine-C(5))-methyltransferase-like isoform X4 [Benincasa hispida]) HSP 1 Score: 927.5 bits (2396), Expect = 4.8e-266 Identity = 471/509 (92.53%), Postives = 486/509 (95.48%), Query Frame = 0
BLAST of PI0021248 vs. TAIR 10
Match: AT5G26180.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 600.5 bits (1547), Expect = 1.2e-171 Identity = 300/433 (69.28%), Postives = 355/433 (81.99%), Query Frame = 0
BLAST of PI0021248 vs. TAIR 10
Match: AT5G26180.2 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 600.5 bits (1547), Expect = 1.2e-171 Identity = 300/433 (69.28%), Postives = 355/433 (81.99%), Query Frame = 0
BLAST of PI0021248 vs. TAIR 10
Match: AT3G13180.1 (NOL1/NOP2/sun family protein / antitermination NusB domain-containing protein ) HSP 1 Score: 83.2 bits (204), Expect = 6.7e-16 Identity = 55/181 (30.39%), Postives = 90/181 (49.72%), Query Frame = 0
BLAST of PI0021248 vs. TAIR 10
Match: AT1G06560.1 (NOL1/NOP2/sun family protein ) HSP 1 Score: 64.3 bits (155), Expect = 3.2e-10 Identity = 30/67 (44.78%), Postives = 45/67 (67.16%), Query Frame = 0
BLAST of PI0021248 vs. TAIR 10
Match: AT4G40000.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 57.4 bits (137), Expect = 3.9e-08 Identity = 53/199 (26.63%), Postives = 84/199 (42.21%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (PI 482460) v1
Date Performed: 2021-10-25
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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