Cmc03g0063461 (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.GTTAAGGGTAAAATAGTAAATTCAGCAAATAATTACTTAACCGCTCGTCTTCTACAAACACGTTCCATTAAAGCCCCCTACCCCCCCCCCCTCCCCCACTCTACCAAAAGCTCTCTTCCTTCCTCAGGTATTCCCCGCCGGCGACAAGTTCCGTCGACTCTCACTATTTCTCATTTGTCTTCCGCTGAGTTCGTACATCTACACTTCGCTTCAGTTTCGCTTTCAAGTATTATGATCATCCTCAACCTTTGTATTAGCTTTGCATTACATCTCTTTTGCTTTAGACAACTATATTTGATCATTTTCCTTTTAGTAACGTTTTCTGTGCTCCACTAAAAACTCAATTTCTTGTAGTGACTGTATGTTAGTTTATTTTCCTCTGAACCTCAGTTTTAAGGTTTTTTTTTAACTTTTGTGGATTTTTCTTCGATCAAAGATGGGCGCTGGAAGGAAGAAGCAGACCTTTGTAATGCAGGAAAAAGCCCTACCTCCTTGGACTTCCAATGGCAGCGTGACCTCTAGGAATCTCGGAAAGAGTAAATTGGCTGGAGTGATTTTCGGTTGCAAGCACAACACAATGCAAGAATGTCTTTCCAAACAATTGTTTGGTTTGCTTTCTAGTTCCTTCGCTGATCAACCTTATGTTTTTAAACAATCTAGTGTTATTATTTTTTTTTTCCTCCCATTTCCCTTATAACTGATGGATTCCAAATTGTTGAATAGGATTGCCGACTCCACATTTCTCTTATGTACGGAATATCAACCCCGGCTTGCCTCTGTTTCTCTTTAACTACAGTGACAGGAAGCTTCATGGTATATTTGAGGCTACTTGCAACGGTACTCTGAATATTAGTCCGTATGCTTGGACTGCTGATGGTATGGATTATACTCCATTTTCTGCACAGGTATTTTATTTGATACACTTGCTGTGCTGCAGATGCTTAGACTTGCATAAGATTGTTTGGTGTTCATAATATTAAGCATCACATTATTTTGTTGGTAAGGTTAAATTTAAGACACGGATGCAGTGTCACCCCTTGTTGGAAGATCAGTTTAGGCCTATCATTGCCGACAATTATTATCAGGCTAAGCTATTTTGGTTTGAGCTGGACCAAAGACAGACGAACAGGTTGATTGCTTTGTTTTCATCTTCACCGATTGTGGGGACTGTTTCCTCATCGGAGAGCTCGAGGAGTTTATTCGAAGCTTTGCAAACTATCAATCTAAGAGAAGACAACAACAATAGCAAGGCGTTTTCTTCAAACATGAATGTAGCTTGTCTAGATTCAAAGAAAAAGTGGAGCTCCTTGTTCCAGGGATCCCATACGGATGTGAGAGAGGATGGTGAAGATTGCCAGAAAATGACATCTGAATTGAACCTTTCTAATTCCAATAATTCATGCTATGAGTGGGAGGAACCTTTTTGTGCACCACATTCTTCTGAAGAGGAAAGTGACGCTTGTGAAGCTTTTACCAATGGTTCTGAAATACAAAGTGAAATTGAAGAACCTGCATTATTTACTTCATCTTGTTATGATGTCGAAGTTGAAGGTGAAGAGTATAAGTCAGCAGCTTTGCAGATGAATATTCCTTATTCAAATATTGAAGATGCAGCAGAAAATATGAAGGGAGATGCACTTTATGAAAGTGATGAAGAGAAATCATGGGAGGGTACTCCTGAGGAGGACATTGGATCTCATTTGAGTTCTGATTGTCGGCTTGTAGCTCAGGTACTTGGGCATCCCTTTTGGTCCCTTATTTGTTTTGGTCCCCAGGATATGTACCTGCCTATTATTTATTTATTTTACTTCCTCTGATCTATACATTATGGTTTTCAATTCACTAAAAAAGTTACTAGCCGAAGTTAGAGAGCTGATGTTGTTACATGGAAAACAAGTTCAAAAAATCAACCTAATGGAGCAGGAGTTGGTATGACTCATTTTACATGATGATGCTTTTTTTCTATTCAGATCTGTAATTGAATGCTCTCTTTAACTTGAGTTTGTAATGCGTTTACACCTCTTTCAAACTTTCATCTTCATGATTAACTAAATTGAGGCAGAATTGTTTTGCAACATAGGCTGGATCAAAAAATGAAATTCAAAGTTTAAGAAGCCGTTGTGAGATGATAGAAAGTGGTATGAATTTTAAGCAGAGTAGCATGGAGGGAACAGAGCTTCAGTCAATTAAAGAGCTTCCTGCAAACCTTGATGAATCTATATTGATAATGGGAGGCTTTGATGGTTCTTCTTGGTTATCAACCATGAATTGCTATTATCCTTCCAGGAATTCTATGGAATCTCTTCCGGCAATGAGGTTTATGCGTTCACTTGCCTCAACAGCTAAGTTAAATGGTGAAATTTATGTTCTTGGTGGTGTTAATGGAAGCGTGTGGTATGATACAGGTATATTTGTTTGAAGCTTCTACTATTAAATCAGTTCTTTATGTTGGGTTAACCCATGGTAATGATATTGCAGTTTTTTATTATTTGTAGTTGAGTCATATAATGTAACAAACCGTCAGTGGTTTAATCGACCTTCAATGAATCGAAAAAAGGGAAGTTTGGCTGGAATATCTTTAAACAATAAAATTTTTGCAATTGGTGGTGGAAACGGAGTTGAATGTCTCTCAGAAGTAGAAATGTTCGATTTAGATGCTGGAAGTTGGACCCTAACTTCATCCATGAGACAAGAGGTACCTTTTTGTCTTTTAGAATGTATCATCGCAAATGCAAGGTAGGGTTTTAAACTTCAACTTATACAAAATGTTACACGTACCTTAAACATTAAACTATTTGGTTATGATAATAGCTGGGAGAGTGTTGTTTAATCTAGGAAATGGTGTTGCAAAATTCAAGACATTTGTTCTTGACTTCTATTCTTTTGACAAATATGGAACCTTTTAACAGAGATCATGGATTTGGTCATTGTTGTTAGAGTTGTATTATTGGCAATTTTGTTTAAGATATTCATGGTGACTTCCAGTACGTGTTGGTTGGAATGTCTTAACTGTGCAGTTTCTATCTTCTTGTTATTATCTTGATGCTGATACTGAATTTTTTTTTAAGGAAACAAAACTTTTCATCAATGAAATGAAACGAGACTAATGCTCAAAGTACAACAAAACAGTATAAGTAAAAGGAAGCAAATACAACCAAAAAAATCCCATGACTAGACTTGTCCAAAAAGGTAAAGCTAAAAGAAATACGACCAAAAACGAAAAACAATTGGCTCTTGAAAAAAGACCTCTAAATCTGAAACTAAGAAAACCAACAACCATATGATGAGGCCAAATAGGAGACAATAGACCAAAGGAACTTGGAGAAGTGAGAAACTATCCAACAACTTTGACCACTTTATAAACGGCCACTCCCATTAAGCAAGAGCAATGACATCGAGTTGCCCATAGTAAAGGTCTGAATGTTCTGGCAAGTGTTGCTGAAAAGAAGATTCAGTTTTCCGTTTGAAGGACTTTATTTTACACATACAATTCTTCTAACTTTGGTCCAAATCTTCACCTAGATAAGCAATCTATTCTTGAAAATAAAACTTCAATAAAAGCTACTGAAATGTAGGAGAGGAAAACTTCGGAAAGAACTTGGAATGCCTTGAAAATAGTGATTCTTCAACAAATTAATACTACTGAAAGAACTCATGATGAGAAGATCGTCTGCCTTTCCACAACCCTCCACAAAGGACCATGAAAAGAAATTCTAATATGATCATACAAATAATCACCTATCCAAATAAGACTGGTAATTGAAGAACTTTACCGTGCTGTAAACCACAGGCTTCAATTGAAGAAGAAAATTTGGAAGGCACTTGAGATGAAGAAAGTGGAGAGAACCTTGCTTGAGCTGCTGTGCTAGATTAGACTCCTTACAGCTGAGACTTGCAACAAAGCATTAAGCTCTTCCCCACAATTCTCAATTATAGGTTTTTTCGCAACATCTTTTTCAATAAAATTAAAATCCAGCTCTTCACTACTAACACTTACCATCGAGTCGTTATCTGAGACATCTTGTTTAGGAGAACTAATAGAGCTCAACTGTTGCGGAACACTTGAGTGAAAGAAGCTTGAGAAACGGGAAGAGAAAAAGAAGAATATTTGACCTCTTGTGAGGGTTAAACTGGCTTTAGAGAGATCTTTTCCAATTCCAGTAATAGGGCTCTAGTAACAGCTTCTTCCAAATAGTTGTGATCTTGCAGATATTTTGTTCCCTTATTGGGAATATTTTGAGAGAATATTTTATTCGATTATGTTTTCTTTCTCTGTGAAGTTCAGAATATTTCATTAGGTTTTCTTGTTGCTTTCTGCTGCATATTTTAAATGGTCGTGGAGTTGGTTGCTAGGATTGACATGGTCGTGGAGTTGGTTGCTAGGATTGACGATTTTGAAAAGAAGAAAAAGGATATAATGGTTGCGTGTCTAATCACAGTGTGGTCTTCTTGGTGAAGGTTGTGTGTTTGCTTCTCTATTGTTTCTCATATAGAGAATTTTGATTTAGTTTGTATCTTGTTTGAGAGTGTTTCTCAGAGCCTAAGTTTTCTGAGTGGAGCGTGCTTCACTCAAAGGAAGATAAACTACTTGAGAATAGCTGGCTAGCACTTAGGGGGAGTCCAAGTGTCCTTAGGCTAATGTTCTAACTTCTAATATTTAGGAGCCTAAAAAAGATTGGGAGAGAGTCTCACATTTAGGGGTAGCCTAAATGAAATTTTAAGAAGTCAAGCTGTAATTGTCTATAGAACTGTTGTGTTTCAGATAAGTACAAATTTGTAATAACTTTACTTCATGTAGGTGGATTTCACTCAACTAGGTTACCATTTGTTGTGTTATTTCTGTATGTTTGTTTCCTGTCCTTATCTATGTTGAGTATCGTGTTACAACATTTGTATTAACATCTGTATCTGTGGTCTAAATAACCTGCGTAGTCTTATCATCAATTGTTTCTAGTGCTAGTGCTTTTTCCATTTTTAAAGGCAAGTATCCATTTTTATGGCATCTACTTTCTTGAGGCAGATTTCACCTTCTACTTCCTAGTCTTAAATTAGAAAGTTAGATTTTCAAATTTGTTTCGTTAACAAGGCAGCTTGATCTAACTGAAGCCCAACTTAACTAGAGATTTGCTCTTGCTGCTGGCGAACTCAATGGGATTCTCTATGCTGTTGGAGGGTTTGATGGGAAGAACTACTTGCAGTAAGTATATATTCATTTCAGTATCGGATACGCACAAACTAATTCTTTGTTGACCATTTTTAGCCTGAATCGACTCCATCTAGGTTGCATAATTTTCTTTCGAGATCCTTGTAGTTTTTCTTGGTATTTACTGAATCATGGATGATTTGAGGCATATTGTCATTCTCCCTTTCTCGACACTAATAATAAAACACCTTCTTTGTCTGGTTGCCCAAAACAGTGCATCGTAAAGAATAATAACGATGATGATGATATTTTACTAAAAACTAAAGTAATGACAATAATAAGAGTTCATGGAGGCTGGAGTTGCTAGAAATCCCATGAGTATGACTTTGAAATGATAGATATTTGCTCCCTCAGATCAGCAGAAATGTTTGACCCGCGAGAGAAATTATGGAGAGAAATTGCAAGTATGTCTACAAAGAGGGGATGCCATTGCTTGGCTGTACTCAACGAAAAGTTGTAAGTTTTTCTCCTCTCTTCACTTGATCCAACTACCTCATTACCTGAACTCATATTCGTTTCAAAAGTTAGATCAATTTTCAAGATGAAACATGAAGATTAAATATTTGTATCACAATTTGAAAAATATGAGTCTGTGTATGTATATAATTCATTCTCTTGTAAAAATGTAATTGTTGTAAGCATGTGATGAACACCCAATAAATAATCACAAAATAGAATATTTGAAAAAAAAAACTTAGTTTGAAGACTTTAACTTTCTTTGTGTATTCTTATTCACACTTGGATGCTTTACAATACAACATATCAATCCTATTTATAGGATTGTCTAGATCCATAACTTACCTTAACAATTAATTTCTTACTTAAATAATCTTGCCCACTATTCATCAATTAGTATATAACTTTTACATGTCTTAATCTTTCATGTAACTTATTTCAATTAAACATGCTTTAACTTTTCAACAATAATCATATGTCTAACATCGTTTGTTGATTATCTGATTTGAATTGAAAAGCTATTACCACTAACATTTTAGTTCATTATAACAAAATGATTTGTCATAAAACTACCATTTCAAAATATTTTGCAAACGTATTATTTCTTATACCATAACCTCCGAATTTGCTTTTGCAGATATGCAATAGGTGGATATAATGGAGATGACTTCATCCGTACCGTAGAGGTATTTGATCCTCGTCGCGGTGTGTGGACGATAACAGAACCCATGAATGAAACAAGGGGCTACTCTGCTGCTGCTGTTATTGGAGGACATACAATATATGTTTTTGGTGGTATGAAAAACAAAAAAATGGAGCTTTCGGAAACGGTATGTCATTTTAATTTGTTAAACACGTGGTAGAGTTAATTCAATGATTGAAAAACGAACTTTCTAAACCTTTTATTTTGCAGGTGGAGTGTTACAAAGAGGACCGAAGTTGGGAGTTAACCAACCTCACAGCATTTGGCAAAAGATGCTATTTCTCTGCCGTCGTATTATAATATGTTCAGGGTTATGTCACTGTCTCTGTCTTAATTGGAAGGTAAATAATGCACATAACAAAATGCGAACTGTTACTTGTTGTCGTGAATGGTTGTAAAGAAAAGTTGAGAGATGGGACTGTTTGCTTGGGCTTGCAGTTAATCATCCTTTCTTTGGTGGATATTCATAACTTATCGTCGTGTTTCTTAGTACTCACTTTATGCTTTATGTTTCAAGTCTACTTGGACAAATCTGTCTATTTTAACGTTTCAAGAAGGGTTTTTTAAGCATATTCTTGAAACTTGAGGACTAAACTAATTAATTTGAAATAT GTTAAGGGTAAAATAGTAAATTCAGCAAATAATTACTTAACCGCTCGTCTTCTACAAACACGTTCCATTAAAGCCCCCTACCCCCCCCCCCTCCCCCACTCTACCAAAAGCTCTCTTCCTTCCTCAGGTATTCCCCGCCGGCGACAAGTTCCGTCGACTCTCACTATTTCTCATTTGTCTTCCGCTGAGTTCGTACATCTACACTTCGCTTCAGTTTCGCTTTCAAATGGGCGCTGGAAGGAAGAAGCAGACCTTTGTAATGCAGGAAAAAGCCCTACCTCCTTGGACTTCCAATGGCAGCGTGACCTCTAGGAATCTCGGAAAGAGTAAATTGGCTGGAGTGATTTTCGGTTGCAAGCACAACACAATGCAAGAATGTCTTTCCAAACAATTGTTTGGATTGCCGACTCCACATTTCTCTTATGTACGGAATATCAACCCCGGCTTGCCTCTGTTTCTCTTTAACTACAGTGACAGGAAGCTTCATGGTATATTTGAGGCTACTTGCAACGGTACTCTGAATATTAGTCCGTATGCTTGGACTGCTGATGGTATGGATTATACTCCATTTTCTGCACAGGTTAAATTTAAGACACGGATGCAGTGTCACCCCTTGTTGGAAGATCAGTTTAGGCCTATCATTGCCGACAATTATTATCAGGCTAAGCTATTTTGGTTTGAGCTGGACCAAAGACAGACGAACAGGTTGATTGCTTTGTTTTCATCTTCACCGATTGTGGGGACTGTTTCCTCATCGGAGAGCTCGAGGAGTTTATTCGAAGCTTTGCAAACTATCAATCTAAGAGAAGACAACAACAATAGCAAGGCGTTTTCTTCAAACATGAATGTAGCTTGTCTAGATTCAAAGAAAAAGTGGAGCTCCTTGTTCCAGGGATCCCATACGGATGTGAGAGAGGATGGTGAAGATTGCCAGAAAATGACATCTGAATTGAACCTTTCTAATTCCAATAATTCATGCTATGAGTGGGAGGAACCTTTTTGTGCACCACATTCTTCTGAAGAGGAAAGTGACGCTTGTGAAGCTTTTACCAATGGTTCTGAAATACAAAGTGAAATTGAAGAACCTGCATTATTTACTTCATCTTGTTATGATGTCGAAGTTGAAGGTGAAGAGTATAAGTCAGCAGCTTTGCAGATGAATATTCCTTATTCAAATATTGAAGATGCAGCAGAAAATATGAAGGGAGATGCACTTTATGAAAGTGATGAAGAGAAATCATGGGAGGGTACTCCTGAGGAGGACATTGGATCTCATTTGAGTTCTGATTGTCGGCTTGTAGCTCAGTTACTAGCCGAAGTTAGAGAGCTGATGTTGTTACATGGAAAACAAGTTCAAAAAATCAACCTAATGGAGCAGGAGTTGGCTGGATCAAAAAATGAAATTCAAAGTTTAAGAAGCCGTTGTGAGATGATAGAAAGTGGTATGAATTTTAAGCAGAGTAGCATGGAGGGAACAGAGCTTCAGTCAATTAAAGAGCTTCCTGCAAACCTTGATGAATCTATATTGATAATGGGAGGCTTTGATGGTTCTTCTTGGTTATCAACCATGAATTGCTATTATCCTTCCAGGAATTCTATGGAATCTCTTCCGGCAATGAGGTTTATGCGTTCACTTGCCTCAACAGCTAAGTTAAATGGTGAAATTTATGTTCTTGGTGGTGTTAATGGAAGCGTGTGGTATGATACAGTTGAGTCATATAATGTAACAAACCGTCAGTGGTTTAATCGACCTTCAATGAATCGAAAAAAGGGAAGTTTGGCTGGAATATCTTTAAACAATAAAATTTTTGCAATTGGTGGTGGAAACGGAGTTGAATGTCTCTCAGAAGTAGAAATGTTCGATTTAGATGCTGGAAGTTGGACCCTAACTTCATCCATGAGACAAGAGAGATTTGCTCTTGCTGCTGGCGAACTCAATGGGATTCTCTATGCTGTTGGAGGGTTTGATGGGAAGAACTACTTGCAATCAGCAGAAATGTTTGACCCGCGAGAGAAATTATGGAGAGAAATTGCAAGTATGTCTACAAAGAGGGGATGCCATTGCTTGGCTGTACTCAACGAAAAGTTATATGCAATAGGTGGATATAATGGAGATGACTTCATCCGTACCGTAGAGGTATTTGATCCTCGTCGCGGTGTGTGGACGATAACAGAACCCATGAATGAAACAAGGGGCTACTCTGCTGCTGCTGTTATTGGAGGACATACAATATATGTTTTTGGTGGTATGAAAAACAAAAAAATGGAGCTTTCGGAAACGGTGGAGTGTTACAAAGAGGACCGAAGTTGGGAGTTAACCAACCTCACAGCATTTGGCAAAAGATGCTATTTCTCTGCCGTCGTATTATAATATGTTCAGGGTTATGTCACTGTCTCTGTCTTAATTGGAAGGTAAATAATGCACATAACAAAATGCGAACTGTTACTTGTTGTCGTGAATGGTTGTAAAGAAAAGTTGAGAGATGGGACTGTTTGCTTGGGCTTGCAGTTAATCATCCTTTCTTTGGTGGATATTCATAACTTATCGTCGTGTTTCTTAGTACTCACTTTATGCTTTATGTTTCAAGTCTACTTGGACAAATCTGTCTATTTTAACGTTTCAAGAAGGGTTTTTTAAGCATATTCTTGAAACTTGAGGACTAAACTAATTAATTTGAAATAT ATGCAGGAAAAAGCCCTACCTCCTTGGACTTCCAATGGCAGCGTGACCTCTAGGAATCTCGGAAAGAGTAAATTGGCTGGAGTGATTTTCGGTTGCAAGCACAACACAATGCAAGAATGTCTTTCCAAACAATTGTTTGGATTGCCGACTCCACATTTCTCTTATGTACGGAATATCAACCCCGGCTTGCCTCTGTTTCTCTTTAACTACAGTGACAGGAAGCTTCATGGTATATTTGAGGCTACTTGCAACGGTACTCTGAATATTAGTCCGTATGCTTGGACTGCTGATGGTATGGATTATACTCCATTTTCTGCACAGGTTAAATTTAAGACACGGATGCAGTGTCACCCCTTGTTGGAAGATCAGTTTAGGCCTATCATTGCCGACAATTATTATCAGGCTAAGCTATTTTGGTTTGAGCTGGACCAAAGACAGACGAACAGGTTGATTGCTTTGTTTTCATCTTCACCGATTGTGGGGACTGTTTCCTCATCGGAGAGCTCGAGGAGTTTATTCGAAGCTTTGCAAACTATCAATCTAAGAGAAGACAACAACAATAGCAAGGCGTTTTCTTCAAACATGAATGTAGCTTGTCTAGATTCAAAGAAAAAGTGGAGCTCCTTGTTCCAGGGATCCCATACGGATGTGAGAGAGGATGGTGAAGATTGCCAGAAAATGACATCTGAATTGAACCTTTCTAATTCCAATAATTCATGCTATGAGTGGGAGGAACCTTTTTGTGCACCACATTCTTCTGAAGAGGAAAGTGACGCTTGTGAAGCTTTTACCAATGGTTCTGAAATACAAAGTGAAATTGAAGAACCTGCATTATTTACTTCATCTTGTTATGATGTCGAAGTTGAAGGTGAAGAGTATAAGTCAGCAGCTTTGCAGATGAATATTCCTTATTCAAATATTGAAGATGCAGCAGAAAATATGAAGGGAGATGCACTTTATGAAAGTGATGAAGAGAAATCATGGGAGGGTACTCCTGAGGAGGACATTGGATCTCATTTGAGTTCTGATTGTCGGCTTGTAGCTCAGTTACTAGCCGAAGTTAGAGAGCTGATGTTGTTACATGGAAAACAAGTTCAAAAAATCAACCTAATGGAGCAGGAGTTGGCTGGATCAAAAAATGAAATTCAAAGTTTAAGAAGCCGTTGTGAGATGATAGAAAGTGGTATGAATTTTAAGCAGAGTAGCATGGAGGGAACAGAGCTTCAGTCAATTAAAGAGCTTCCTGCAAACCTTGATGAATCTATATTGATAATGGGAGGCTTTGATGGTTCTTCTTGGTTATCAACCATGAATTGCTATTATCCTTCCAGGAATTCTATGGAATCTCTTCCGGCAATGAGGTTTATGCGTTCACTTGCCTCAACAGCTAAGTTAAATGGTGAAATTTATGTTCTTGGTGGTGTTAATGGAAGCGTGTGGTATGATACAGTTGAGTCATATAATGTAACAAACCGTCAGTGGTTTAATCGACCTTCAATGAATCGAAAAAAGGGAAGTTTGGCTGGAATATCTTTAAACAATAAAATTTTTGCAATTGGTGGTGGAAACGGAGTTGAATGTCTCTCAGAAGTAGAAATGTTCGATTTAGATGCTGGAAGTTGGACCCTAACTTCATCCATGAGACAAGAGAGATTTGCTCTTGCTGCTGGCGAACTCAATGGGATTCTCTATGCTGTTGGAGGGTTTGATGGGAAGAACTACTTGCAATCAGCAGAAATGTTTGACCCGCGAGAGAAATTATGGAGAGAAATTGCAAGTATGTCTACAAAGAGGGGATGCCATTGCTTGGCTGTACTCAACGAAAAGTTATATGCAATAGGTGGATATAATGGAGATGACTTCATCCGTACCGTAGAGGTATTTGATCCTCGTCGCGGTGTGTGGACGATAACAGAACCCATGAATGAAACAAGGGGCTACTCTGCTGCTGCTGTTATTGGAGGACATACAATATATGTTTTTGGTGGTATGAAAAACAAAAAAATGGAGCTTTCGGAAACGGTGGAGTGTTACAAAGAGGACCGAAGTTGGGAGTTAACCAACCTCACAGCATTTGGCAAAAGATGCTATTTCTCTGCCGTCGTATTATAA MQEKALPPWTSNGSVTSRNLGKSKLAGVIFGCKHNTMQECLSKQLFGLPTPHFSYVRNINPGLPLFLFNYSDRKLHGIFEATCNGTLNISPYAWTADGMDYTPFSAQVKFKTRMQCHPLLEDQFRPIIADNYYQAKLFWFELDQRQTNRLIALFSSSPIVGTVSSSESSRSLFEALQTINLREDNNNSKAFSSNMNVACLDSKKKWSSLFQGSHTDVREDGEDCQKMTSELNLSNSNNSCYEWEEPFCAPHSSEEESDACEAFTNGSEIQSEIEEPALFTSSCYDVEVEGEEYKSAALQMNIPYSNIEDAAENMKGDALYESDEEKSWEGTPEEDIGSHLSSDCRLVAQLLAEVRELMLLHGKQVQKINLMEQELAGSKNEIQSLRSRCEMIESGMNFKQSSMEGTELQSIKELPANLDESILIMGGFDGSSWLSTMNCYYPSRNSMESLPAMRFMRSLASTAKLNGEIYVLGGVNGSVWYDTVESYNVTNRQWFNRPSMNRKKGSLAGISLNNKIFAIGGGNGVECLSEVEMFDLDAGSWTLTSSMRQERFALAAGELNGILYAVGGFDGKNYLQSAEMFDPREKLWREIASMSTKRGCHCLAVLNEKLYAIGGYNGDDFIRTVEVFDPRRGVWTITEPMNETRGYSAAAVIGGHTIYVFGGMKNKKMELSETVECYKEDRSWELTNLTAFGKRCYFSAVVL Homology
BLAST of Cmc03g0063461 vs. NCBI nr
Match: XP_008441487.1 (PREDICTED: ring canal kelch homolog isoform X1 [Cucumis melo] >KAA0054992.1 ring canal kelch-like protein isoform X1 [Cucumis melo var. makuwa]) HSP 1 Score: 1407.1 bits (3641), Expect = 0.0e+00 Identity = 695/703 (98.86%), Postives = 697/703 (99.15%), Query Frame = 0
BLAST of Cmc03g0063461 vs. NCBI nr
Match: XP_008441488.1 (PREDICTED: uncharacterized protein LOC103485594 isoform X2 [Cucumis melo]) HSP 1 Score: 1351.7 bits (3497), Expect = 0.0e+00 Identity = 671/703 (95.45%), Postives = 673/703 (95.73%), Query Frame = 0
BLAST of Cmc03g0063461 vs. NCBI nr
Match: XP_016899395.1 (PREDICTED: uncharacterized protein LOC103485594 isoform X3 [Cucumis melo]) HSP 1 Score: 1143.3 bits (2956), Expect = 0.0e+00 Identity = 569/576 (98.78%), Postives = 571/576 (99.13%), Query Frame = 0
BLAST of Cmc03g0063461 vs. NCBI nr
Match: XP_016899396.1 (PREDICTED: uncharacterized protein LOC103485594 isoform X4 [Cucumis melo]) HSP 1 Score: 1142.5 bits (2954), Expect = 0.0e+00 Identity = 568/578 (98.27%), Postives = 572/578 (98.96%), Query Frame = 0
BLAST of Cmc03g0063461 vs. NCBI nr
Match: XP_038885976.1 (uncharacterized protein LOC120076281 [Benincasa hispida]) HSP 1 Score: 1081.6 bits (2796), Expect = 0.0e+00 Identity = 551/675 (81.63%), Postives = 592/675 (87.70%), Query Frame = 0
BLAST of Cmc03g0063461 vs. ExPASy Swiss-Prot
Match: P59280 (Kelch-like protein 8 OS=Mus musculus OX=10090 GN=Klhl8 PE=2 SV=2) HSP 1 Score: 165.2 bits (417), Expect = 2.6e-39 Identity = 79/236 (33.47%), Postives = 126/236 (53.39%), Query Frame = 0
BLAST of Cmc03g0063461 vs. ExPASy Swiss-Prot
Match: Q96PQ7 (Kelch-like protein 5 OS=Homo sapiens OX=9606 GN=KLHL5 PE=1 SV=3) HSP 1 Score: 163.3 bits (412), Expect = 9.9e-39 Identity = 80/232 (34.48%), Postives = 124/232 (53.45%), Query Frame = 0
BLAST of Cmc03g0063461 vs. ExPASy Swiss-Prot
Match: Q9P2G9 (Kelch-like protein 8 OS=Homo sapiens OX=9606 GN=KLHL8 PE=1 SV=4) HSP 1 Score: 162.2 bits (409), Expect = 2.2e-38 Identity = 77/236 (32.63%), Postives = 127/236 (53.81%), Query Frame = 0
BLAST of Cmc03g0063461 vs. ExPASy Swiss-Prot
Match: Q8JZP3 (Kelch-like protein 2 OS=Mus musculus OX=10090 GN=Klhl2 PE=1 SV=1) HSP 1 Score: 159.5 bits (402), Expect = 1.4e-37 Identity = 81/235 (34.47%), Postives = 129/235 (54.89%), Query Frame = 0
BLAST of Cmc03g0063461 vs. ExPASy Swiss-Prot
Match: F1LZF0 (Kelch-like protein 2 OS=Rattus norvegicus OX=10116 GN=Klhl2 PE=1 SV=3) HSP 1 Score: 159.5 bits (402), Expect = 1.4e-37 Identity = 81/235 (34.47%), Postives = 129/235 (54.89%), Query Frame = 0
BLAST of Cmc03g0063461 vs. ExPASy TrEMBL
Match: A0A5A7UGQ1 (Ring canal kelch-like protein isoform X1 OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold43052G001400 PE=4 SV=1) HSP 1 Score: 1407.1 bits (3641), Expect = 0.0e+00 Identity = 695/703 (98.86%), Postives = 697/703 (99.15%), Query Frame = 0
BLAST of Cmc03g0063461 vs. ExPASy TrEMBL
Match: A0A1S3B4B6 (ring canal kelch homolog isoform X1 OS=Cucumis melo OX=3656 GN=LOC103485594 PE=4 SV=1) HSP 1 Score: 1407.1 bits (3641), Expect = 0.0e+00 Identity = 695/703 (98.86%), Postives = 697/703 (99.15%), Query Frame = 0
BLAST of Cmc03g0063461 vs. ExPASy TrEMBL
Match: A0A1S3B344 (uncharacterized protein LOC103485594 isoform X2 OS=Cucumis melo OX=3656 GN=LOC103485594 PE=4 SV=1) HSP 1 Score: 1351.7 bits (3497), Expect = 0.0e+00 Identity = 671/703 (95.45%), Postives = 673/703 (95.73%), Query Frame = 0
BLAST of Cmc03g0063461 vs. ExPASy TrEMBL
Match: A0A1S4DUJ9 (uncharacterized protein LOC103485594 isoform X3 OS=Cucumis melo OX=3656 GN=LOC103485594 PE=4 SV=1) HSP 1 Score: 1143.3 bits (2956), Expect = 0.0e+00 Identity = 569/576 (98.78%), Postives = 571/576 (99.13%), Query Frame = 0
BLAST of Cmc03g0063461 vs. ExPASy TrEMBL
Match: A0A1S4DTS8 (uncharacterized protein LOC103485594 isoform X4 OS=Cucumis melo OX=3656 GN=LOC103485594 PE=4 SV=1) HSP 1 Score: 1142.5 bits (2954), Expect = 0.0e+00 Identity = 568/578 (98.27%), Postives = 572/578 (98.96%), Query Frame = 0
BLAST of Cmc03g0063461 vs. TAIR 10
Match: AT5G01660.1 (CONTAINS InterPro DOMAIN/s: Galactose oxidase/kelch, beta-propeller (InterPro:IPR011043), Kelch repeat type 1 (InterPro:IPR006652), Development/cell death domain (InterPro:IPR013989), Kelch related (InterPro:IPR013089), Kelch-type beta propeller (InterPro:IPR015915); BEST Arabidopsis thaliana protein match is: DCD (Development and Cell Death) domain protein (TAIR:AT3G11000.1); Has 16133 Blast hits to 7053 proteins in 482 species: Archae - 40; Bacteria - 1227; Metazoa - 10756; Fungi - 311; Plants - 1896; Viruses - 673; Other Eukaryotes - 1230 (source: NCBI BLink). ) HSP 1 Score: 491.5 bits (1264), Expect = 1.1e-138 Identity = 287/704 (40.77%), Postives = 403/704 (57.24%), Query Frame = 0
BLAST of Cmc03g0063461 vs. TAIR 10
Match: AT3G11000.1 (DCD (Development and Cell Death) domain protein ) HSP 1 Score: 188.0 bits (476), Expect = 2.7e-47 Identity = 97/213 (45.54%), Postives = 131/213 (61.50%), Query Frame = 0
BLAST of Cmc03g0063461 vs. TAIR 10
Match: AT3G11000.2 (DCD (Development and Cell Death) domain protein ) HSP 1 Score: 188.0 bits (476), Expect = 2.7e-47 Identity = 97/213 (45.54%), Postives = 131/213 (61.50%), Query Frame = 0
BLAST of Cmc03g0063461 vs. TAIR 10
Match: AT2G35140.1 (DCD (Development and Cell Death) domain protein ) HSP 1 Score: 113.2 bits (282), Expect = 8.3e-25 Identity = 54/133 (40.60%), Postives = 80/133 (60.15%), Query Frame = 0
BLAST of Cmc03g0063461 vs. TAIR 10
Match: AT2G35140.2 (DCD (Development and Cell Death) domain protein ) HSP 1 Score: 113.2 bits (282), Expect = 8.3e-25 Identity = 54/133 (40.60%), Postives = 80/133 (60.15%), 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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