IVF0013597 (gene) Melon (IVF77) 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.CACATGTGTGTATTTGAGTGACGATGTACAAAAAGTTGAAGCCTACAGTGTAAACTGAAACTTTAATTTCTAGAAAGGGAAGAATAACACTCCCAATAAATAGATCATCCTTTAGCCCGCAAAAGTATTTCAACTACGTACGCTCCAATTTTCCTTCTTCTTTCTTCATCTCTCACACTGTAAGCTTTCCTTCTTCCATTTCTTCTCTTCAATTTTTCTTTCTATCTTTGACACTGAACCACAGATTCCACAGTTTTCTTCATTACCATGGATGCAGTGCTGTGGTCCGCAATCCTAAGGATCCGTGATCTCTCACATTTCCACTCTCTCTCCATTTCTTCTTGCTTTATTTGTGTAGATGCTGAACCTACGTACCAGTCCGTCAGAGCAACAACACACGAAACCGTGATTGATGTAATATCCTTTCCCTCTCTTTTCGCCTTTTTTTTTTTTTTAATTCCTCAATGTTCCAGCGTTGTTTTTTTTTTTTTTTTTTTTATGCTCCTGTGATTGTTATGAGTTTGATTTTCGTTTCTGTTGGAAGGATTTCGATATTCGATATGATTCTTAAATCTCTCTATCTCTATGTTTGGTTGTTTCCTGATGCGTTACGTTGGGAATATAAGTTTTTCTGAGAATTTAGTCTTCGAATAATGGTATTCTGCTTCATTAATGGAGTTCAGGATGTTTATGGTTACTGTATAGTGTATGTGCCTTTTTGTGTAAATGCATTATCGTTTTCGCGAGTAGTCTCTTGTGCTGAGACGTCTGTGTGCATTTGTTGTACTTTTTTCCTCGAGCGTTTCGCTCTTGCACATTTGTGAGACTTCGATTAGCTTTTGGATGTTTTTCTTTGTATAGATATGTTGTAATTTCCATTTGAAACGAGTTTATGGTTTGAAGATGTTTGAGTTTTTGCCGATGAGCAGTGATATAAGAAGAAACATGCCAAGCGAGCTATGGTTTGCACTGCCGACGATTTACAAGAATGGAAGGACTTCCCTAAGGGTCTGAGGGTTCTTCTTCTTGATAGGGACAGTTGCTCAGCGACCGAGATAAGATCAAAACTTGAGGAAATGGAGTATGTTGGTGAGACATTTCAAAATATCTTTTTGTTAGAAATTCTCTTTCTTTAAAATCGATGTTTCTTTGCTGTCTTTTTCAAGATTCAACTATGTTTTCTTTACTCACGCTCTAAAGAAACTATCTTAAGGTACTTGATTGCTTGAGGAGATATGCATTCTCTTTTCTAGAATCCACCTTTGGATGCTAATTACATGTATAACTTAGCCCTCTTTCTTTTTTGGCTTGGTTATGATTTGAGGCTCGAACTTTTATCCATCCATGTTCCTTTTGGTTGGAAATTTGATTTTGGACCTTAAACTTTAAGTATACTGCATATTTAGTATTTATTGAAAAAATGATCATGAGTGAGATGACATCACGTTGTCAATAAATTAGTTATACATCTTTATTGTAGGGAGTACATATGGAATATAATTATGCTCGAGGACTAAAGTTGAAATTCTAAAGAAATAATAAAAAAATAGAGAATAGAGACCAAAGTAGTACATTAATGAAAGTTCAAGTACCAAAACTATGTTTAATATTTTTTTATTAAAAAATGTTACTATAGCTGGAATTATGAACAGATTGAAAATGCACTTATTTCTACTCAACGACTATAGAGTTTCACTATTTTTTTCGCAAAATGTGTATTTCCAAATATTATTAACTTGTTGAAATCTGATTTGGTACACTGATCCCATTTTCAGGTTCTCCATTCCTTTAAGAAGTTTCCTTTTTTACTTTCTTTTGTACTTCTGTGCGTTGAGAAGTTTCACTTGTCATACTGCAGTTTATTCCTGCACTGATGAAAAGGAAGCTTTGTCAGCAATTTTGAACACACCGGGAAACTTCCATGTTGCGATTCTGGAGGTATGGCTAATGACTTTCTGAACGGAATTATACATTTAGGCCCTAAGCTGACTCCTCTGGTATGTTTACTTGATAATATTCACTGTCTTGTTTAAGTTCTTGGATCCATCTTTGGTCACAGGTTTGTGCAAGAAATTACGATGAGATTTTTAAGTTGCTTGGAGCTTCCAAGGACTTGCCTATAATAAGTAAGTTAACAACAAAAACTGTTTAAAATATCTATCTCGGAACAAAAGGTCAAAGGTCCAAATCTCACCCTTATGCTGTTGTACTACTTAAAAAAAGCAAAGCTAGGTTCTCAGAATAAACAAGACAGGTTTAACAACTTCTTTCAACTAATTTTTGGGTTTCTGACCTGCCACTGAGATTATGTTTTTCTTTGGCGCAGTGACTTCAGATGTTCATTGCTTAAGTACCATGATGAAGTGCATTGCAGTAAGGATTCTAGTCTAATCTCTCTTTAAATGGCCTCTGTCTTTGGTAATTCCAAAACTGGACATTAGTTTAGCTCGGGCCTTTCAAGTTTCTTCGGGACTGGTTACTTTGTATAGATTGACTGATTGCAGAAAGCTTTCCCCTATCATGTGTGTGTTCTCCAATAGTTGATTCTCATAACTATGGTTTTGCATTAATGTCTATGCATCTAGATTTACAATTCACGTTCAGCTTGGTGCAGTTGAGTTCTTGCTGAAACCGCTCTCAGAGGACAAACTCAGGAATATCTGGCAGCATGTTATTCACAAGGTATTGTTCAGTTCTAGCAAAAATTGTGATATGCAAAAAAAAAACACAGAATTATATTGACAAATGTATTGACCGGCAATATTTTGAGAAGGCGTATTCCAATACTTCAAAGCCGGGTGAAGAATCCGTAGCATCCTTGATGCAACTCCAATTAGAGAATGAAGACAAGAATGGAGTTCCGGAAGACATGGAAATTCTTTCTTGGATTCAGGACATTGTGTGGGAGCAACCAGAAGGAAGTGATGATAAGTCTCAACTGAACCTTGGAGCATCTAGGCAAGGTAGCTGGGAAAGCGGAGATCAAATGAACTGTTCAATGGAAACAGATTGCAAGGACAAGGACGTGCAGTCTAAATTCGTCGAAACTACTTCACATGATTTAGTTTGTGAAGGCCCCATTCAGGAGGGCCAACCTCAATTATCTGACAAGGTAATGGTCAAAGAAGACAAGAACTATGCAGTTTGTTTAATGATGGCAGCGAGTAACGTTTATCATCCCTTTGCAGAAAAAATTTGGTGTCGAGAGTGATCCTTTAGCTGCTGAGAACTCAATCCAAGGAACTGGTGTGAACCAATCTGCTGGATCCAAAGCGAAGAAAACAAAGGTAAAATTATCCGACACAAAGGTAATATTAATGTTACGTTTAATGAGGAGTGTCTTTTGTGTGCATATATTAAGTTCCTGCATCTGGAATTTCTTTGTATCCACGCAGCGATTTTTTTGTGAAAGTGTGTTTCTTATTCAAGAATGTCACTCATCTAGATAAAAATTTAAACACATGAAATAGGCAAAATGTTGAAGTCGCTTTTATGAAAACTGCTTACAAAAGAATCCAGTGTAACTTTTACACCTCCATGCCAAAGTCGAGTTATCATTTGACTGTGGTGACCACACACACACACCCACAAATTTATGTGGATGACAACTTAATGTTGTAGGGTCATTGATTGTTTGCTTGTGTATAAACTAGCCAAGTATATCATGAATGTTAAAAGAAAAAAAAACTTCCTATTTACAGGCTAAGAAGCATGGACACGGACATGGACACGTTTTATGTTTATGTCCTTTATATCTTTGGTTAAAAAAATAGTTTCCCTTTTCTTTAAGCATATAGGTGAGTTGGAATTTAAGTTGGGGTCCAACATAAAAGGTTGGATAGTTGTTTTTCAAAAAAGTGTCCCAGGCAGGTTCAAGAAGTGTCCCAAGCATGTTCCACACGTCTGAAACTAAAAATAAACCATGGAAATTTGTGTATCTGACACGAACATCATCCAGCCTCAAATGACTCGTTTGTGCTTCGTAGTTTACGAGATTCTGAATGGTATATGGTTTATTAGGTGGACTGGACCCCAGAGCTACACAGAAAATTTGTTCAAGCAGTTGAACAGTTAGGGATAGATCATGCAATTCCTTCCAAAATACTTGAGCTTATGAAAGTTGAAGGTTTGACAAGGCACAACATTGCAAGTCATCTCCAGGTGGCCACCTGACTTTGCTCTCTTCCATATTCTAAAAATTCTTCACCTCCTAATTTCTTTGTTAATTACTTGCCAAATTGACACCTTTTCTTTCTTTTTTTTTCTTTTTTTAATTTTGTTTAAGCAGAAGTATAGAATGCAAAAGAAACATGTGATGCAGAGAGAAGAAAATACAAGGTGGTCACATTATCCAAGAAGTACATTACAAACCAATCACTTGAAACCTATAATGGCTTACCCTTCTTATCATCCAAACTGTGGAATATCAGTGTCTGCTGTTTATCCAACATGGAGACAGACCAATGACCGTCCACCTAATATCCACGTCTGTGGTCCGTTTGGTTATCGCCATTGGCCACAACCTGGAATTCAAGCCCTGGAATTCCTATGCACGGGTAACGTTTTCTTGTTCTTTGAGTTCACTATCAAATAATGGGTCTAGTCCCAAACAACCACATTAAATACGTTGTAGTTCTTTGCATAAAACGCAAAAAGAGAATGTTTAGGAATGAATTTCATGGAATTAAAATTGCTTTTGTCATTGTTAAAATTACTTTTCTTAAAAAAAAAAGTTGAAAATTATTTTTGGAAAAATCTAAAATCACAATAATTTTTTAAAAAATAATTAATCCCTTTTCTGAGTAAAATTATCTCACTTATTTTTCGATATTTTCTAAAAGTAAAAAATATTTTTTTAGTAATTATTAATGTAGTAATTCCAAAAGCATTTTCTAAACCAAACAGAATAATTCAAAATCAACTTTAAATATATGGAAATTACTTTTAATAGGTTGGAACCAAAGTTCAATAGGACTGTATGAAAATAAATTGAATTATTATATTATGATTTGAGCGTTTGTCAAACATCAACATTTTATAGAAAGTGATCTTGTCGATCACTAAAGTAATGTTCTAGACATACTTAGGACTAACAGTAAGATTTCTCGCTTTCAAATGGTAGGTACTTAAAGAATAAGAAACAAAAACAAATTTTTGGATACATCTATTTTGTTTTATTTTCAAAACTTGTACAAATTTATTTCTTTTAATGTAAATTATAGACTTATTGTTTTGTTACAAACTTTTTAAAGCTACTATTCCTCACAAGAACAAACGAAATAATAGAATGACTTGTAAAAAAACAAACAAACAAGTGGTCTAAGAAGTGTGAACTCTTTGGTGTGGACCTACTCATGTCCTCTAGCATGTATCAGATATTTGGACACTTTATGGTTGAATACTAGAAACTAATTTCACAAACATGTAAATGCATGAATTCATTGACTTTGAATTTTATTCTTCCATGAAGGTTGATATGTTTTAAAAAAGACGTACTATTGTAGATGGAAAAATTGTTAAAAATACTTGCTAAATATAGCAAAATTTAAAATTATATCAATGATGGACATCAACAAAAATCTACGCACTGATATAAATTCTTATCAATATCTACTGAAATAAAATTTTGCTATATTTTGTAAGTACTCATTTTTTTTTTTAATTTAAAAATCTCCCTTCAAAGAATGTATAGTTTAATAAACATAGCATTGTCATATCCGTTGAACTATTTGTTGTAGGTGCAAGCTGATACATGGGGTTGCCCTGTGATGCCGCCTTCTCATGCTCCATATTTTTCATATCCTCAGGTGAGAAATATGGACTTCTTTTTTTCTTTTTTTCTTTTTACCTAGAGGTAAACTGAGATTTAACCTTCCTTATTTATTTAATTATGGCTGCTCTTTTTTGGCTATTTTGCAGCTTGTATCAGCATCACAACACAATATGCATACAGTAAATAAGAGCTATGGCATGCCTCAGGGTTTATTTGATCTTCAACCAGTAATATACCTCCTTTTCTTTTGCGTTATGTGATTATTCGTTTTGATCTAATCTAAAAATCTTTATCTTTAAAAAAAGAAAAATACATTTTGTCTGTTACTCAAAATTATTTTTGAAAAGTTTTCACAGTTTATTATTTTAAACCGACTTTGTAAAAAAAAAAAGTAAAAAAAGAATTCTCAAAAACCTTTTTTATTTTTAGTTTAAATAATTTAGTTTGTTTTTAAAAATATCAATAAAAAGGTGAATAACAAAACAATAAACTTTATAGATAAGATTAGAAAAAACGTAATAGTTATCAAAGCCAAAAACTTCCATTTATCGTTTTTAAATTGGTTTGTTAACTTGCTTAGTTATTTTTTAAAAATTAAATTATAAAAACTACTTTCATACTTCTATTGTGTTTCCTTGTAATAAAAAAATCAAATGAAATTTTGTTTTTGTTTTTAATATTTGGCTAAACTTCTAACTATTTATACCGATACTTACACGTAACAAAAAAAATTACGATTGTTTTAAAAGAAAAATCAAATAATTATCCAATGGAGTTTATGAGATGTGATTTAAATAACTAATAAATTGATTAATTGTTTTTGGTAGGATGAGGAGGTGGTTGACAAGATTGTAAAAGAGGCAATGAGGGAGCCATGGTCACCCCTTCCATTAGGGCTTAAGCCTCCTTCTACAGAGAGTGTTCTCACAGAGCTTTCTAAGCAAGGAATCTCCACCGTCCCTCCTCAAATCGACGGCTCCAGATCACCCTGATTTTAACCATGTTTGTTAAACAATATTACTTCTTTTGGAAGGGAATAACAGTAATTTATTTAGATAAAAATATTGTTTTAAATTGCATTTTTTTTATCACTAGAGTTTGAAATTAACGTCTTTTTGATCCATTTTTAA CACATGTGTGTATTTGAGTGACGATGTACAAAAAGTTGAAGCCTACAGTGTAAACTGAAACTTTAATTTCTAGAAAGGGAAGAATAACACTCCCAATAAATAGATCATCCTTTAGCCCGCAAAAGTATTTCAACTACGTACGCTCCAATTTTCCTTCTTCTTTCTTCATCTCTCACACTTTTTCTTCATTACCATGGATGCAGTGCTGTGGTCCGCAATCCTAAGGATCCGTGATCTCTCACATTTCCACTCTCTCTCCATTTCTTCTTGCTTTATTTGTGTAGATGCTGAACCTACGTACCAGTCCGTCAGAGCAACAACACACGAAACCGTGATTGATTGATATAAGAAGAAACATGCCAAGCGAGCTATGGTTTGCACTGCCGACGATTTACAAGAATGGAAGGACTTCCCTAAGGGTCTGAGGGTTCTTCTTCTTGATAGGGACAGTTGCTCAGCGACCGAGATAAGATCAAAACTTGAGGAAATGGAGTATGTTGTTTATTCCTGCACTGATGAAAAGGAAGCTTTGTCAGCAATTTTGAACACACCGGGAAACTTCCATGTTGCGATTCTGGAGGTTTGTGCAAGAAATTACGATGAGATTTTTAAGTTGCTTGGAGCTTCCAAGGACTTGCCTATAATAATGACTTCAGATGTTCATTGCTTAAGTACCATGATGAAGTGCATTGCACTTGGTGCAGTTGAGTTCTTGCTGAAACCGCTCTCAGAGGACAAACTCAGGAATATCTGGCAGCATGTTATTCACAAGGCGTATTCCAATACTTCAAAGCCGGGTGAAGAATCCGTAGCATCCTTGATGCAACTCCAATTAGAGAATGAAGACAAGAATGGAGTTCCGGAAGACATGGAAATTCTTTCTTGGATTCAGGACATTGTGTGGGAGCAACCAGAAGGAAGTGATGATAAGTCTCAACTGAACCTTGGAGCATCTAGGCAAGGTAGCTGGGAAAGCGGAGATCAAATGAACTGTTCAATGGAAACAGATTGCAAGGACAAGGACGTGCAGTCTAAATTCGTCGAAACTACTTCACATGATTTAGTTTGTGAAGGCCCCATTCAGGAGGGCCAACCTCAATTATCTGACAAGAAAAAATTTGGTGTCGAGAGTGATCCTTTAGCTGCTGAGAACTCAATCCAAGGAACTGGTGTGAACCAATCTGCTGGATCCAAAGCGAAGAAAACAAAGGTGGACTGGACCCCAGAGCTACACAGAAAATTTGTTCAAGCAGTTGAACAGTTAGGGATAGATCATGCAATTCCTTCCAAAATACTTGAGCTTATGAAAGTTGAAGGTTTGACAAGGCACAACATTGCAAGTCATCTCCAGAAGTATAGAATGCAAAAGAAACATGTGATGCAGAGAGAAGAAAATACAAGGTGGTCACATTATCCAAGAAGTACATTACAAACCAATCACTTGAAACCTATAATGGCTTACCCTTCTTATCATCCAAACTGTGGAATATCAGTGTCTGCTGTTTATCCAACATGGAGACAGACCAATGACCGTCCACCTAATATCCACGTCTGTGGTCCGTTTGGTTATCGCCATTGGCCACAACCTGGAATTCAAGCCCTGGAATTCCTATGCACGGGTAACGTTTTCTTGTTCTTTGAGTTCACTATCAAATAATGGGTCTAGTCCCAAACAACCACATTAAATACGTTGTAGTTCTTTGCATAAAACGCAAAAAGAGAATGTTTAGGAATGAATTTCATGGAATTAAAATTGCTTTTGTCATTGTTAAAATTACTTTTCTTAAAAAAAAAAGTTGAAAATTATTTTTGGAAAAATCTAAAATCACAATAATTTTTTAAAAAATAATTAATCCCTTTTCTGAGTAAAATTATCTCACTTATTTTTCGATATTTTCTAAAAGTAAAAAATATTTTTTTAGTAATTATTAATGTAGTAATTCCAAAAGCATTTTCTAAACCAAACAGAATAATTCAAAATCAACTTTAAATATATGGAAATTACTTTTAATAGGTTGGAACCAAAGTTCAATAGGACTGTATGAAAATAAATTGAATTATTATATTATGATTTGAGCGTTTGTCAAACATCAACATTTTATAGAAAGTGATCTTGTCGATCACTAAAGTAATGTTCTAGACATACTTAGGACTAACAGTAAGATTTCTCGCTTTCAAATGGTAGGTACTTAAAGAATAAGAAACAAAAACAAATTTTTGGATACATCTATTTTGTTTTATTTTCAAAACTTGTACAAATTTATTTCTTTTAATGTAAATTATAGACTTATTGTTTTGTTACAAACTTTTTAAAGCTACTATTCCTCACAAGAACAAACGAAATAATAGAATGACTTGTAAAAAAACAAACAAACAAGTGGTCTAAGAAGTGTGAACTCTTTGGTGTGGACCTACTCATGTCCTCTAGCATGTATCAGATATTTGGACACTTTATGGTTGAATACTAGAAACTAATTTCACAAACATGTAAATGCATGAATTCATTGACTTTGAATTTTATTCTTCCATGAAGGTTGATATGTTTTAAAAAAGACGTACTATTGTAGATGGAAAAATTGTTAAAAATACTTGCTAAATATAGCAAAATTTAAAATTATATCAATGATGGACATCAACAAAAATCTACGCACTGATATAAATTCTTATCAATATCTACTGAAATAAAATTTTGCTATATTTTGTAAGTACTCATTTTTTTTTTTAATTTAAAAATCTCCCTTCAAAGAATGTATAGTTTAATAAACATAGCATTGTCATATCCGTTGAACTATTTGTTGTAGGTGCAAGCTGATACATGGGGTTGCCCTGTGATGCCGCCTTCTCATGCTCCATATTTTTCATATCCTCAGCTTGTATCAGCATCACAACACAATATGCATACAGTAAATAAGAGCTATGGCATGCCTCAGGGTTTATTTGATCTTCAACCAGATGAGGAGGTGGTTGACAAGATTGTAAAAGAGGCAATGAGGGAGCCATGGTCACCCCTTCCATTAGGGCTTAAGCCTCCTTCTACAGAGAGTGTTCTCACAGAGCTTTCTAAGCAAGGAATCTCCACCGTCCCTCCTCAAATCGACGGCTCCAGATCACCCTGATTTTAACCATGTTTGTTAAACAATATTACTTCTTTTGGAAGGGAATAACAGTAATTTATTTAGATAAAAATATTGTTTTAAATTGCATTTTTTTTATCACTAGAGTTTGAAATTAACGTCTTTTTGATCCATTTTTAA ATGGTTTGCACTGCCGACGATTTACAAGAATGGAAGGACTTCCCTAAGGGTCTGAGGGTTCTTCTTCTTGATAGGGACAGTTGCTCAGCGACCGAGATAAGATCAAAACTTGAGGAAATGGAGTATGTTGTTTATTCCTGCACTGATGAAAAGGAAGCTTTGTCAGCAATTTTGAACACACCGGGAAACTTCCATGTTGCGATTCTGGAGGTTTGTGCAAGAAATTACGATGAGATTTTTAAGTTGCTTGGAGCTTCCAAGGACTTGCCTATAATAATGACTTCAGATGTTCATTGCTTAAGTACCATGATGAAGTGCATTGCACTTGGTGCAGTTGAGTTCTTGCTGAAACCGCTCTCAGAGGACAAACTCAGGAATATCTGGCAGCATGTTATTCACAAGGCGTATTCCAATACTTCAAAGCCGGGTGAAGAATCCGTAGCATCCTTGATGCAACTCCAATTAGAGAATGAAGACAAGAATGGAGTTCCGGAAGACATGGAAATTCTTTCTTGGATTCAGGACATTGTGTGGGAGCAACCAGAAGGAAGTGATGATAAGTCTCAACTGAACCTTGGAGCATCTAGGCAAGGTAGCTGGGAAAGCGGAGATCAAATGAACTGTTCAATGGAAACAGATTGCAAGGACAAGGACGTGCAGTCTAAATTCGTCGAAACTACTTCACATGATTTAGTTTGTGAAGGCCCCATTCAGGAGGGCCAACCTCAATTATCTGACAAGAAAAAATTTGGTGTCGAGAGTGATCCTTTAGCTGCTGAGAACTCAATCCAAGGAACTGGTGTGAACCAATCTGCTGGATCCAAAGCGAAGAAAACAAAGGTGGACTGGACCCCAGAGCTACACAGAAAATTTGTTCAAGCAGTTGAACAGTTAGGGATAGATCATGCAATTCCTTCCAAAATACTTGAGCTTATGAAAGTTGAAGGTTTGACAAGGCACAACATTGCAAGTCATCTCCAGAAGTATAGAATGCAAAAGAAACATGTGATGCAGAGAGAAGAAAATACAAGGTGGTCACATTATCCAAGAAGTACATTACAAACCAATCACTTGAAACCTATAATGGCTTACCCTTCTTATCATCCAAACTGTGGAATATCAGTGTCTGCTGTTTATCCAACATGGAGACAGACCAATGACCGTCCACCTAATATCCACGTCTGTGGTCCGTTTGGTTATCGCCATTGGCCACAACCTGGAATTCAAGCCCTGGAATTCCTATGCACGGGTAACGTTTTCTTGTTCTTTGAGTTCACTATCAAATAA MVCTADDLQEWKDFPKGLRVLLLDRDSCSATEIRSKLEEMEYVVYSCTDEKEALSAILNTPGNFHVAILEVCARNYDEIFKLLGASKDLPIIMTSDVHCLSTMMKCIALGAVEFLLKPLSEDKLRNIWQHVIHKAYSNTSKPGEESVASLMQLQLENEDKNGVPEDMEILSWIQDIVWEQPEGSDDKSQLNLGASRQGSWESGDQMNCSMETDCKDKDVQSKFVETTSHDLVCEGPIQEGQPQLSDKKKFGVESDPLAAENSIQGTGVNQSAGSKAKKTKVDWTPELHRKFVQAVEQLGIDHAIPSKILELMKVEGLTRHNIASHLQKYRMQKKHVMQREENTRWSHYPRSTLQTNHLKPIMAYPSYHPNCGISVSAVYPTWRQTNDRPPNIHVCGPFGYRHWPQPGIQALEFLCTGNVFLFFEFTIK Homology
BLAST of IVF0013597 vs. ExPASy Swiss-Prot
Match: Q6LA43 (Two-component response regulator-like APRR2 OS=Arabidopsis thaliana OX=3702 GN=APRR2 PE=2 SV=2) HSP 1 Score: 282.3 bits (721), Expect = 8.9e-75 Identity = 185/449 (41.20%), Postives = 261/449 (58.13%), Query Frame = 0
BLAST of IVF0013597 vs. ExPASy Swiss-Prot
Match: A2XE31 (Two-component response regulator ORR21 OS=Oryza sativa subsp. indica OX=39946 GN=RR21 PE=3 SV=1) HSP 1 Score: 136.7 bits (343), Expect = 6.0e-31 Identity = 100/328 (30.49%), Postives = 153/328 (46.65%), Query Frame = 0
BLAST of IVF0013597 vs. ExPASy Swiss-Prot
Match: Q8H7S7 (Two-component response regulator ORR21 OS=Oryza sativa subsp. japonica OX=39947 GN=RR21 PE=2 SV=1) HSP 1 Score: 136.7 bits (343), Expect = 6.0e-31 Identity = 100/328 (30.49%), Postives = 153/328 (46.65%), Query Frame = 0
BLAST of IVF0013597 vs. ExPASy Swiss-Prot
Match: Q940D0 (Two-component response regulator ARR1 OS=Arabidopsis thaliana OX=3702 GN=ARR1 PE=1 SV=2) HSP 1 Score: 133.3 bits (334), Expect = 6.7e-30 Identity = 106/321 (33.02%), Postives = 147/321 (45.79%), Query Frame = 0
BLAST of IVF0013597 vs. ExPASy Swiss-Prot
Match: Q9ZWJ9 (Two-component response regulator ARR2 OS=Arabidopsis thaliana OX=3702 GN=ARR2 PE=1 SV=1) HSP 1 Score: 131.7 bits (330), Expect = 1.9e-29 Identity = 97/321 (30.22%), Postives = 139/321 (43.30%), Query Frame = 0
BLAST of IVF0013597 vs. ExPASy TrEMBL
Match: A0A1S3CRG6 (two-component response regulator-like APRR2 isoform X4 OS=Cucumis melo OX=3656 GN=LOC103503507 PE=4 SV=1) HSP 1 Score: 842.0 bits (2174), Expect = 1.1e-240 Identity = 409/409 (100.00%), Postives = 409/409 (100.00%), Query Frame = 0
BLAST of IVF0013597 vs. ExPASy TrEMBL
Match: A0A5A7TAZ7 (Two-component response regulator-like APRR2 isoform X4 OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold92G00620 PE=4 SV=1) HSP 1 Score: 837.4 bits (2162), Expect = 2.6e-239 Identity = 409/410 (99.76%), Postives = 409/410 (99.76%), Query Frame = 0
BLAST of IVF0013597 vs. ExPASy TrEMBL
Match: A0A1S3CQD1 (two-component response regulator-like APRR2 isoform X3 OS=Cucumis melo OX=3656 GN=LOC103503507 PE=4 SV=1) HSP 1 Score: 837.4 bits (2162), Expect = 2.6e-239 Identity = 409/410 (99.76%), Postives = 409/410 (99.76%), Query Frame = 0
BLAST of IVF0013597 vs. ExPASy TrEMBL
Match: A0A1S3CQ07 (two-component response regulator-like APRR2 isoform X2 OS=Cucumis melo OX=3656 GN=LOC103503507 PE=4 SV=1) HSP 1 Score: 835.1 bits (2156), Expect = 1.3e-238 Identity = 409/416 (98.32%), Postives = 409/416 (98.32%), Query Frame = 0
BLAST of IVF0013597 vs. ExPASy TrEMBL
Match: A0A1S3CQ22 (two-component response regulator-like APRR2 isoform X1 OS=Cucumis melo OX=3656 GN=LOC103503507 PE=4 SV=1) HSP 1 Score: 830.5 bits (2144), Expect = 3.2e-237 Identity = 409/417 (98.08%), Postives = 409/417 (98.08%), Query Frame = 0
BLAST of IVF0013597 vs. NCBI nr
Match: XP_008465934.1 (PREDICTED: two-component response regulator-like APRR2 isoform X4 [Cucumis melo]) HSP 1 Score: 841 bits (2172), Expect = 8.16e-306 Identity = 409/409 (100.00%), Postives = 409/409 (100.00%), Query Frame = 0
BLAST of IVF0013597 vs. NCBI nr
Match: XP_008465933.1 (PREDICTED: two-component response regulator-like APRR2 isoform X3 [Cucumis melo]) HSP 1 Score: 836 bits (2160), Expect = 5.70e-304 Identity = 409/410 (99.76%), Postives = 409/410 (99.76%), Query Frame = 0
BLAST of IVF0013597 vs. NCBI nr
Match: KAA0038535.1 (two-component response regulator-like APRR2 isoform X4 [Cucumis melo var. makuwa]) HSP 1 Score: 836 bits (2160), Expect = 5.70e-304 Identity = 409/410 (99.76%), Postives = 409/410 (99.76%), Query Frame = 0
BLAST of IVF0013597 vs. NCBI nr
Match: XP_008465932.1 (PREDICTED: two-component response regulator-like APRR2 isoform X2 [Cucumis melo]) HSP 1 Score: 834 bits (2154), Expect = 5.85e-303 Identity = 409/416 (98.32%), Postives = 409/416 (98.32%), Query Frame = 0
BLAST of IVF0013597 vs. NCBI nr
Match: XP_008465931.1 (PREDICTED: two-component response regulator-like APRR2 isoform X1 [Cucumis melo]) HSP 1 Score: 829 bits (2142), Expect = 4.09e-301 Identity = 409/417 (98.08%), Postives = 409/417 (98.08%), Query Frame = 0
BLAST of IVF0013597 vs. TAIR 10
Match: AT4G18020.1 (CheY-like two-component responsive regulator family protein ) HSP 1 Score: 282.3 bits (721), Expect = 6.3e-76 Identity = 185/449 (41.20%), Postives = 261/449 (58.13%), Query Frame = 0
BLAST of IVF0013597 vs. TAIR 10
Match: AT4G18020.2 (CheY-like two-component responsive regulator family protein ) HSP 1 Score: 282.3 bits (721), Expect = 6.3e-76 Identity = 185/449 (41.20%), Postives = 261/449 (58.13%), Query Frame = 0
BLAST of IVF0013597 vs. TAIR 10
Match: AT4G18020.3 (CheY-like two-component responsive regulator family protein ) HSP 1 Score: 282.3 bits (721), Expect = 6.3e-76 Identity = 185/449 (41.20%), Postives = 261/449 (58.13%), Query Frame = 0
BLAST of IVF0013597 vs. TAIR 10
Match: AT4G18020.4 (CheY-like two-component responsive regulator family protein ) HSP 1 Score: 282.3 bits (721), Expect = 6.3e-76 Identity = 185/449 (41.20%), Postives = 261/449 (58.13%), Query Frame = 0
BLAST of IVF0013597 vs. TAIR 10
Match: AT4G18020.5 (CheY-like two-component responsive regulator family protein ) HSP 1 Score: 282.3 bits (721), Expect = 6.3e-76 Identity = 185/449 (41.20%), Postives = 261/449 (58.13%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (IVF77) 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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