IVF0012984 (gene) Melon (IVF77) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonCDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ATGAGAAGCGGTCGCTTGATGAAAGCGAAAAGGGTGAACAAAAATGAAAACGCTTTGTTCTGTACGACCGCCGACCATTAAGCTATTGAAGTTATCCTTGTTCTTTATAGAAAATCTTAGAAGATGGATGTTTCAACATTTACCATTCATTTTTCTTTGCAGGTGGTCCTAAACAAAAAGAAAGAATTTCAATGGCAAAGGGTTGTTCTTTTTCTAAGAATAGGTGCAATGAGGTATCTTAGGTTATGTTTCATTTCACTTGAATTCGTAATATGCTTTTCTACACTCTCATGAGTCATTCATTTAAGGAAAAGTGTTATATCTTTCCAATACACCCGTAGTTATTATTTATACACTTGCGTGGGTTGAGAAAGCATCTTCAAAATTATTGAGGATAGGCCATGATTATAGTTCAAGGAATTGGATCTTTCAACTTCAACATCCTCGTTATTAAGGCAATAACTTTGGTAGTATATGAATCCAAAACCTTTTTTATGTATTGAATATCAGGAAAGGTTTACAGCATCGTAGTTAAACAATATTATAATGTAATTGTTTCTTTTTCTAGAATAAGTGTTGAATGTTCTATCAAGTTTAGTCCAATTGGAATGTAAATAAGAGCAAGATTTTCTTCATTGCTGGGTAATGTTATGATGGAGAATATTATGATAGAATGGTTGCAATGGTTATTTTACTCTTTCCAGAGAACATGGTAGCATGGGCTTTTTCTTACCAGGTTGATTCAATTCTCATTTTGGTAGCTCCTCTCTTCTTCAATCTTGATCTCTATTATCACTTACTTGCATGCTTTAGATTTAATTGGCACTTTGCATAAGAAAACTAAAAGACTCTATGTTTTTTCCTATCTCAATCTGCTTGGGATGATGAACTTTTTTTTTTTTTTTTTTTTTTTATCTTGATTGCATTTTTGTTCTTTCAGTTCAATGATTTTGGTACTAATAGAGGACCGACAGCCAAGTATCTTAATCCAAGTTTTCTTACTTCTCCATTTTTTGCTTTCAGTGCAATGGAAGAATTGAAGCTTATAGGGAACTATCTGAAAGGTTCCCGTCCAATTTTGACATTTTCATCGAATTTTGATAAAGATGTCCTCTGGAAGCTTATGAAGGAAATGATTATTCAGGTACCAATGGCAAAGTTATAGAATTAAATGCGTATGCAAACATTTTCTACTTGCTACAAAATTTAATGCTAATTGTGGATAGCTTCCAAAAGTACAACCTCTCCTTGACACCCAAACAATGCATTGGATGTTGTCTTTCTTCTAAATGTTTGCTCGCCGCTCTTTTCCATGAAGTGGCAAATGAATGCAGAAAAATATTCTACTTTGTGTTAGGCAAAGACATTGGAAAGAGTTTTAGGAGTCTTGTGGTATTAATGGCAACTATTTATGATGATATTGGAAGTATATTAGTCATTAGTTTTTAAGAGGATTGTCAATGAATGGTTACGCTTTAAAGAAAGACTAAAATAAGAGCTTAGATTGGTACAAGTAAAGAAACAGTCCTCCTAACTTAAGATTTAATGACCAAGATTTCACTCAGAGAAAAAAAATAAGAAATGGGCCCTTAGGTGGCAGTGAGCTTCAGCTTTTAACTCCGTGAATGTTGAAGTGTTGCACATTTTTTAATTGACAGATTGGTAGATTAATGAGTTTTCTGAAAAGATATTTATTCCATAAACTATGTTTCTGATTGCAGTATTCTTAGTTGGCTTGAATCTTACTTGTCAGGATTTTATATATGCTCCTGTGTCTGTGTTATAAAACTAACATTCTAAATGTTCCTATAGAAATTCAAATCTTCTCCTAATCACAGTATGAATGTTAGTACAACGTTTACATTTTCAATGTGCAACCCTTTCATAGTTTCGTTTTATATGTGTAAGTGTTGAGATGATCTGACTAAAAAGTTTTAAAGATGAATTGTTGTTCTTTTTTACTAAAACTTGCAGAATTCTATTATAGGTTGTTGCTTCAAGAATTATTTGGTGAAACATACTATGAGGCTACGTGAAGTATTTAACACTCGTAAAGAAGTAATTATTGAGGGTTAGAACATAATTTAATGTTCTAGAGTCTTATAGTTAGTAATTTTATTTATCTTTGTAAATTGAAAGTAGTTTGTGGAGAGACATGAATAGTCATACTACTTGAAAATTATGTACATATATGACTTATTGTTGAAGAATGAAATTGTTGTTCGAGAGTTTATTTTGTTGACAAATTTGTCATTGTTGTTCATTAGAGAGTTTATTTTGTTGACGAATTTGTCTTTATTTAAATGAATGTAATACAGGAAATGGAAAATAAGAAATGTAAAAAGTGTCAAGTATACGACTTTACTTGACACGTAAACAGTGTCAAGTATACTATCTTACTTGACACGCAAACAGTATCAAGTATGATATCTTACTTGACACGTAAAAAGCGTCAAGTATGATATCTTACTGGATACGTAAAAAACGTCAAGTATGATATTTTAGTTGACACGAAAATGGCGTCAAGAAATATAATACTTAACGTTTTTTTAGTGTCAAGTAATAAGACTATACTTGACAGTCGATTACTTGACGCTTTTTAAAACGTCAAGTATAAGTTTACTTGACACTGTATCAACGTCAAGTAATCCAATTTTTGTAGTAGTGATCGTTTGTATTAACTATAAAGCGGGCTGCATCCAATCTGTTCCCAGAATAATGCGTTCAACCTTATTCATACACTATAGACTATTTGGTCTATATACTCAAATTTGATCCTCATTTATATCTCTACATTAAGTTTAAGTTCACACTAGATAGTATTGGGGCATTAGTTTATTGGATTTAAGATTATAGTATTTTATTTTCACCGATAAGTCATCAATAACCACTTTATTAAATAAAATATAATTTTAAACTATAAACTATGAGTTTTATGACATAAATTTCAATAAGGGTCAGGTAGGTTATCTTGTAAGATTAGTCGAGGTGCGCGACTCGGACACTAACGAATATTAAAAAGAATATATTTTAGTAGTTTTGTTCTATAAAGTTTAAATAATTTGTCAATTTTTCTATTTTTAAAAAAATTCATAAATTTTGATTTTTATCAAAATGAATGGAGTGAATATTACAATTTTCTTTCTCTTTATTTTCCAAAAAAGAATTACAAATAGTTCATATAGCTATTTATTGTTGATTTTTCTTGTAGTTGTGAATTAAATTTACTCTACATATAGTTATTCTCATTAAGACCTTGTTGAACAATAAGTCACTTTTCGTTTTTTGTTTTAGAAACTACTTTCATGTCCTTATTTTTTTTTACCATGGTTGCATTCTTTCTAAATAAAAAGGTAGAAATTCTAGATATATTTTATAAACAAAAACAAAAATTTTAAAGAGGGGGATTTTGGGCTAGATTCTTATTTTGATGTTTTTTGAATGGCATGGATTCTTTAACGTATAGCTGCCAAAAATATTGACAAGATTGTGATTAAAAATTTTCAAATATTTATTTTATTTTACATATATTAATATACCAATGATACTTTATCAAGTATCATGCATTTTAGCTTTGATCTCAAAATTTTGATTTGTATGGTATTCAAAAGATTTGTTCACAAATTTTATTAAAATTAAATCATTCCTACATGACGGATTTACCTTTAATTTTAAAATTATGATTTTTATGATTTTTTTTATAGGACATTTTAAAAAATATAACAGTAGGGTAAAATACAACTTATAGAACAATTTCGAAAATATAAAAAAAGTTCATAAGCCCACAATAGAAAATATCAAAAATACCTAGTCAACACGCGATTAATCGATTATGTGTGCATGAGCAGCTTTATTCTAAACGATCATGTACTAAAGTCTAAAAGAATGTATACGGTTGTTTAAGTCAGGATACACGATCATATAGTTCTTCTAAATGATGGGAAGAAAAAAAACTTCAATTTTAAACGATATCATGTCGATTATGGTAAATGATCGTATCTACACGATCGTGTAGTTATTTTTGAACAATGAAAAAAAGACTTCAAATCTAAACGATTGTGATCGTATTGATAATGGTAAATGATTATGTTGACAATGACAAATGATCGTTTAGATCATATTAAAAATGATATTTAAATGATATTGATAAAGTAGTTTTAAAAAAATATTATCGAAAACAATGAAGATGAAATAGAATATTTAGACAGAAATAAATCATTTAGAAATAAAAGAAAAAATTTAGAAGATGAGATGAAGAAATATGGGAAATTGCCAAAAATAGGTTAAAAAAGGAGGGTTAAATGACTTTTGGGATAGTTTTTGAAAATGAAGAGTTTTAGGACAATTTAGGTGTGAATGGACAAAATTGCCTTTTATTAAATTTCTCTTTCCCTTTCCTTTTCTTTTCTCTTCCACGTTCGCTTTTCTTTCTCTTTCGCGTAGAGTTTCCCTTTCCCTTCTCTTTCGCTTAGAACACTTGAGGTAAAAAAAAAATATTCCTTTTTGTTGGCTTTCGAAATTTTCCACTCTACTCCTACACTCTGCTCTTCAAAGATACTCCGATCGTTCGTCGCTTGCCGTTCGTCGGTCCTCTAGTGCATTTCGTCGCTTCTCCTTTTCGAACCATTCAATCAACTTTGAGCATTTTCTCTTATTTCAGTGAGTTTTATCTCTAAACTATTTTCAATTTATTTGCTGTAAGTGTTTGGTTTAGGTATTTGTTGTGAGTTTCATTCGTCTAGTTTAGACTTTTTTGGAATCGACTTATTTGCTGGAAATTAGTTTAGTCAAAGTTTGGTTTAGGTTCTTAGAAAGTTAAGTGGGTAGTGAAATGCATTGAAGTTAAATATAGTTGGCATTTTGCTCCTTTGTTTTTATCCCTTCTTTAACTCTGAATTGGTTGCCTCTTAGAAGTGCAATTGAAGCTCCTTTATTCAGTAGTGAGTTTTTTTTTTTATCTACAATGCTTTCTATCTATTGTGTATTGTCTTATATTGCGAGCAATTTTTCATGCCGCTATGGATGCTTCTCAAACCACTCTGGCTTTCACTTTGATCACTTTCTATCACCTAAACTATTGTTGGGTTTCTCTATAACTTCGAATTTTGAAATATTATGAATGATGTATTGGTCCACATAGCTCATGAGCATAATAAAAGGTTTAAAAAACTGCTCTATTTAATTTGAGGTAGTTTTTTTGTAAAAAGAAAGACTTAGATTAAGAGTTAAGTCTATTAATAAGATTTTAAATAGTTGAATGTGAGTTGATAATTTTAGATTTCATGCACTTTTGTTTGTTTGTACATGTATCTTGCACATATCTTGCACACATCTCGCACGTATCTCGCAGACATCTCGCACATTCCAAACTTTCATTATTTATTTCGAAATGAAATTGGTACCCCTGCAAATCCATTTGGAGTGATTCTATTGATGTTTGTTAAGTCTCTTAGGCTCTTATGGTTTATCTTGCATGTATCTCGCACCTTCCAAACTTTCACTATTTATTTCAACTTTCACCATGCTGTTATGACATGTTTAGTATTGTTGTTATGACATGTTTACTCAGTCTCTTATGCAATTATTATTTCATTTGTTCCATTTTGTTCAGGCTTCAATTATGACATCGACATCGACTGACAAACCCGTGTACAAGATTAATCTTTCCTATCATTTTTATGCCCTAGTAAGTTGTTTGTCTCATTTAGATAAGACAACACATAATATTAAGGTCAAACTCAAACCCGATCAATTAGTCTTATTTAGGAAAACAAAGTTTGGGCACTTTTTGGACCTAACTATTGTCTTTAATGGGCCACTCATCCACTACTTATTGTTAAGAGAGGTGGAAGATGAAGGTAAGAATTATATAAGTTTCTTACTAAGGGGCGTTGTTTGTACTTTTTGTAGGAGAGAGTTTAACATCATAACGGGTCTATTGGATCCTAAAGAGGAGTTTATTCAGTTGGTTGGGAATAGTAGATTGTTGGAGAAGTTTTTCAAAGACAAAGAGTGTATTTATGTTAGCGACTTAGAGGATATATTTTTGGAATACGAGGGTGATGACGATGATATTGTGAAATTAGCTTTAGTATACTTTATAGAGCTATCTTTGTAGGAAAAGATAAGCGAACCAAGGTCGACCAGAATTTTTTCAAGATTGCTAATGATTGGAATACATTTAATAATTATGATTGGGACAGGATTGTTTTTAGACGCACGTTAAGTGCCTTGAAAAGAGCCTTGGACATGCAATATGCCAAGGGAAAGAATAAATCAACTAAGACAAAATATACTATAAATGGATTTCCGCATGCATTATAGGTATGCTACTTCTTACTTCTTACTTCAAAACTTCCTAAACTTGTTTGTCAAATATGGAATAGGTTTGGGCATATGAGTCTATACCAACCATCATTGGATGTGGTGTAGATAAAGTAAATGATGATGCCATACCACGAATGCTGAGGTTGGTGTGCCAACAATCACCGAAGTCCCAAACTATATGCCAGATGTTTGACTCGCTAAGTAGCAAGCAATAGTAACTAACTTAAGGATCGCATGATTTTGTGCTTATTTCTTTGTCCTACATACATTTTCCTTTTCTCTTTATAGTTGATAATTAAGGCGGTCATTGAGATGACACTTGAAGAGGAGCAGTTGAAAATTGCTTCAGGTGAACTTTTTGAAAACCTCCGCTCATCTACCATTGTTCAGTCGAAGAATGGTGGTTCAAAAAGAGGAAGAGAAGTTGGTAATGATGAAGGTGACTTCAAAAAAAGTAAGAAACAAAAGTCGAAGTCTAAGATGAACAAGGCTATTCAGAATCTCCAAGATCGAGTAGCGGTTGTTGAAGGGCAACTTACTAGTCTAAAATCAGATATTGACGAATTGAAGGGCATGATGTCAACCATGTTGAAGCACATTGGACTTCGAAGAAAGGTTAGGAATCAAACTGTTAATTGTATTGAGTTTAGTTGTTTGATATTTGGTAATTACTCATACGTTAAGTTGCATGTTCTCGCTAATCTTGATGTTTACTTTCTATTGTTATCCACACTAATTCATTTTGAGCTTCCATAGGGTGACGAAGGAGACCGTAAGGGGTTTGAAGGCTTAGTAGATCATACACTAGAAAGTGAAGAAGTGGATAATGCTAAAACCGAAGATGTGGACACAGGCGGTACCCCTCATTGGTTGAGGATGCCAAAGGTGGATGACAAGTAATGGGGCGAAACATATTGAACTTAAAAAGAAGGTTTGGTTCCATGTTCTTGCTAATATTGATGTTTAATTTCTATCATTATCCATACTAATGCATTATGAGCTTCCATAGGGCGACGAAGATGTTCACATCGTCGATACCCCTCCTTGGTTGAGGATGCCAAACAAGGATGACATAAGTAATGTGGTGAAGTTTAATATTGAGTTAGAGAAGCTAATCGACGTATTGGAGAAGAAGGTTGAGATTGGTTTAGAGGAGTCAATAGATGTCGTTGAAGATGAAGTTGAAATTGAGGACACTGGGAAAAAACTTCAGACGTCACAGAGATAG ATGAGAAGCGGTCGCTTGATGAAAGCGAAAAGGGTGAACAAAAATGAAAACGCTTTGTTCTGTGGTCCTAAACAAAAAGAAAGAATTTCAATGGCAAAGGGTTGTTCTTTTTCTAAGAATAGGTGCAATGAGTTCAATGATTTTGGTACTAATAGAGGACCGACAGCCAAGTATCTTAATCCAAGTTTTCTTACTTCTCCATTTTTTGCTTTCAGTGCAATGGAAGAATTGAAGCTTATAGGGAACTATCTGAAAGGTTCCCGTCCAATTTTGACATTTTCATCGAATTTTGATAAAGATGTCCTCTGGAAGCTTATGAAGGAAATGATTATTCAGGTTTGGGCATATGAGTCTATACCAACCATCATTGGATGTGGTGTAGATAAAGTAAATGATGATGCCATACCACGAATGCTGAGGTTGTTGATAATTAAGGCGGTCATTGAGATGACACTTGAAGAGGAGCAGTTGAAAATTGCTTCAGGTGAACTTTTTGAAAACCTCCGCTCATCTACCATTGTTCAGTCGAAGAATGGTGGTTCAAAAAGAGGAAGAGAAGTTGGTAATGATGAAGGTGACTTCAAAAAAAGTAAGAAACAAAAGTCGAAGTCTAAGATGAACAAGGCTATTCAGAATCTCCAAGATCGAGTAGCGGTTGTTGAAGGGCAACTTACTAGTCTAAAATCAGATATTGACGAATTGAAGGGCATGATGTCAACCATGTTGAAGCACATTGGACTTCGAAGAAAGGGTGACGAAGGAGACCGTAAGGGGTTTGAAGGCTTAGTAGATCATACACTAGAAAGTGAAGAAGTGGATAATGCTAAAACCGAAGATGTGGACACAGGCGGTACCCCTCATTGGTTGAGGATGCCAAAGGGCGACGAAGATGTTCACATCGTCGATACCCCTCCTTGGTTGAGGATGCCAAACAAGGATGACATAAGTAATGTGGTGAAGTTTAATATTGAGTTAGAGAAGCTAATCGACGTATTGGAGAAGAAGGTTGAGATTGGTTTAGAGGAGTCAATAGATGTCGTTGAAGATGAAGTTGAAATTGAGGACACTGGGAAAAAACTTCAGACGTCACAGAGATAG ATGAGAAGCGGTCGCTTGATGAAAGCGAAAAGGGTGAACAAAAATGAAAACGCTTTGTTCTGTGGTCCTAAACAAAAAGAAAGAATTTCAATGGCAAAGGGTTGTTCTTTTTCTAAGAATAGGTGCAATGAGTTCAATGATTTTGGTACTAATAGAGGACCGACAGCCAAGTATCTTAATCCAAGTTTTCTTACTTCTCCATTTTTTGCTTTCAGTGCAATGGAAGAATTGAAGCTTATAGGGAACTATCTGAAAGGTTCCCGTCCAATTTTGACATTTTCATCGAATTTTGATAAAGATGTCCTCTGGAAGCTTATGAAGGAAATGATTATTCAGGTTTGGGCATATGAGTCTATACCAACCATCATTGGATGTGGTGTAGATAAAGTAAATGATGATGCCATACCACGAATGCTGAGGTTGTTGATAATTAAGGCGGTCATTGAGATGACACTTGAAGAGGAGCAGTTGAAAATTGCTTCAGGTGAACTTTTTGAAAACCTCCGCTCATCTACCATTGTTCAGTCGAAGAATGGTGGTTCAAAAAGAGGAAGAGAAGTTGGTAATGATGAAGGTGACTTCAAAAAAAGTAAGAAACAAAAGTCGAAGTCTAAGATGAACAAGGCTATTCAGAATCTCCAAGATCGAGTAGCGGTTGTTGAAGGGCAACTTACTAGTCTAAAATCAGATATTGACGAATTGAAGGGCATGATGTCAACCATGTTGAAGCACATTGGACTTCGAAGAAAGGGTGACGAAGGAGACCGTAAGGGGTTTGAAGGCTTAGTAGATCATACACTAGAAAGTGAAGAAGTGGATAATGCTAAAACCGAAGATGTGGACACAGGCGGTACCCCTCATTGGTTGAGGATGCCAAAGGGCGACGAAGATGTTCACATCGTCGATACCCCTCCTTGGTTGAGGATGCCAAACAAGGATGACATAAGTAATGTGGTGAAGTTTAATATTGAGTTAGAGAAGCTAATCGACGTATTGGAGAAGAAGGTTGAGATTGGTTTAGAGGAGTCAATAGATGTCGTTGAAGATGAAGTTGAAATTGAGGACACTGGGAAAAAACTTCAGACGTCACAGAGATAG MRSGRLMKAKRVNKNENALFCGPKQKERISMAKGCSFSKNRCNEFNDFGTNRGPTAKYLNPSFLTSPFFAFSAMEELKLIGNYLKGSRPILTFSSNFDKDVLWKLMKEMIIQVWAYESIPTIIGCGVDKVNDDAIPRMLRLLIIKAVIEMTLEEEQLKIASGELFENLRSSTIVQSKNGGSKRGREVGNDEGDFKKSKKQKSKSKMNKAIQNLQDRVAVVEGQLTSLKSDIDELKGMMSTMLKHIGLRRKGDEGDRKGFEGLVDHTLESEEVDNAKTEDVDTGGTPHWLRMPKGDEDVHIVDTPPWLRMPNKDDISNVVKFNIELEKLIDVLEKKVEIGLEESIDVVEDEVEIEDTGKKLQTSQR Homology
BLAST of IVF0012984 vs. ExPASy Swiss-Prot
Match: Q9C928 (Ribosome biogenesis protein BRX1 homolog 2 OS=Arabidopsis thaliana OX=3702 GN=BRIX1-2 PE=2 SV=1) HSP 1 Score: 74.7 bits (182), Expect = 2.4e-12 Identity = 37/62 (59.68%), Postives = 45/62 (72.58%), Query Frame = 0
BLAST of IVF0012984 vs. ExPASy Swiss-Prot
Match: Q9LE16 (Ribosome biogenesis protein BRX1 homolog 1 OS=Arabidopsis thaliana OX=3702 GN=BRIX1-1 PE=2 SV=1) HSP 1 Score: 70.1 bits (170), Expect = 5.9e-11 Identity = 34/62 (54.84%), Postives = 43/62 (69.35%), Query Frame = 0
BLAST of IVF0012984 vs. ExPASy Swiss-Prot
Match: Q9VZE6 (Ribosome biogenesis protein BRX1 homolog OS=Drosophila melanogaster OX=7227 GN=CG11583 PE=2 SV=2) HSP 1 Score: 52.4 bits (124), Expect = 1.3e-05 Identity = 27/63 (42.86%), Postives = 40/63 (63.49%), Query Frame = 0
BLAST of IVF0012984 vs. ExPASy Swiss-Prot
Match: Q8UVY2 (Ribosome biogenesis protein BRX1 homolog OS=Xenopus laevis OX=8355 GN=brix1 PE=2 SV=1) HSP 1 Score: 52.0 bits (123), Expect = 1.7e-05 Identity = 26/62 (41.94%), Postives = 40/62 (64.52%), Query Frame = 0
BLAST of IVF0012984 vs. ExPASy Swiss-Prot
Match: Q3SZZ0 (Ribosome biogenesis protein BRX1 homolog OS=Bos taurus OX=9913 GN=BRIX1 PE=2 SV=1) HSP 1 Score: 50.8 bits (120), Expect = 3.7e-05 Identity = 26/63 (41.27%), Postives = 41/63 (65.08%), Query Frame = 0
BLAST of IVF0012984 vs. ExPASy TrEMBL
Match: A0A5A7SKN8 (Uncharacterized protein OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold139G004150 PE=4 SV=1) HSP 1 Score: 485.3 bits (1248), Expect = 2.2e-133 Identity = 253/255 (99.22%), Postives = 255/255 (100.00%), Query Frame = 0
BLAST of IVF0012984 vs. ExPASy TrEMBL
Match: A0A5D3BZM9 (Uncharacterized protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold409G00740 PE=4 SV=1) HSP 1 Score: 411.8 bits (1057), Expect = 3.1e-111 Identity = 216/216 (100.00%), Postives = 216/216 (100.00%), Query Frame = 0
BLAST of IVF0012984 vs. ExPASy TrEMBL
Match: A0A5D3BZA5 (Ubiquitin-like-specific protease ESD4 isoform X2 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold409G00660 PE=4 SV=1) HSP 1 Score: 404.8 bits (1039), Expect = 3.7e-109 Identity = 224/265 (84.53%), Postives = 229/265 (86.42%), Query Frame = 0
BLAST of IVF0012984 vs. ExPASy TrEMBL
Match: A0A5A7SLM8 (Ubiquitin-like-specific protease ESD4 isoform X2 OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold139G004230 PE=4 SV=1) HSP 1 Score: 404.8 bits (1039), Expect = 3.7e-109 Identity = 224/265 (84.53%), Postives = 229/265 (86.42%), Query Frame = 0
BLAST of IVF0012984 vs. ExPASy TrEMBL
Match: A0A5A7T996 (Ulp1-like peptidase OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold270G00480 PE=3 SV=1) HSP 1 Score: 377.5 bits (968), Expect = 6.4e-101 Identity = 213/287 (74.22%), Postives = 228/287 (79.44%), Query Frame = 0
BLAST of IVF0012984 vs. NCBI nr
Match: KAA0031642.1 (uncharacterized protein E6C27_scaffold139G004150 [Cucumis melo var. makuwa]) HSP 1 Score: 484 bits (1245), Expect = 5.55e-170 Identity = 253/255 (99.22%), Postives = 255/255 (100.00%), Query Frame = 0
BLAST of IVF0012984 vs. NCBI nr
Match: TYK04468.1 (uncharacterized protein E5676_scaffold409G00740 [Cucumis melo var. makuwa]) HSP 1 Score: 411 bits (1057), Expect = 5.49e-142 Identity = 216/216 (100.00%), Postives = 216/216 (100.00%), Query Frame = 0
BLAST of IVF0012984 vs. NCBI nr
Match: KAA0031650.1 (ubiquitin-like-specific protease ESD4 isoform X2 [Cucumis melo var. makuwa]) HSP 1 Score: 403 bits (1035), Expect = 3.07e-136 Identity = 224/265 (84.53%), Postives = 229/265 (86.42%), Query Frame = 0
BLAST of IVF0012984 vs. NCBI nr
Match: TYK04460.1 (ubiquitin-like-specific protease ESD4 isoform X2 [Cucumis melo var. makuwa]) HSP 1 Score: 403 bits (1035), Expect = 1.66e-135 Identity = 224/265 (84.53%), Postives = 229/265 (86.42%), Query Frame = 0
BLAST of IVF0012984 vs. NCBI nr
Match: KAA0063171.1 (uncharacterized protein E6C27_scaffold381G00570 [Cucumis melo var. makuwa]) HSP 1 Score: 365 bits (937), Expect = 2.12e-121 Identity = 216/308 (70.13%), Postives = 233/308 (75.65%), Query Frame = 0
BLAST of IVF0012984 vs. TAIR 10
Match: AT1G52930.1 (Ribosomal RNA processing Brix domain protein ) HSP 1 Score: 74.7 bits (182), Expect = 1.7e-13 Identity = 37/62 (59.68%), Postives = 45/62 (72.58%), Query Frame = 0
BLAST of IVF0012984 vs. TAIR 10
Match: AT3G15460.1 (Ribosomal RNA processing Brix domain protein ) HSP 1 Score: 70.1 bits (170), Expect = 4.2e-12 Identity = 34/62 (54.84%), Postives = 43/62 (69.35%), 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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