Cucsat.G873.T7 (mRNA) Cucumber (B10) v3
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.GAAGTATAAATAATCAAAGAAGGAGACTTCGGTTATTTTATTTCGAAAAAAAATAAAAAATCCAAATACGAAGCGAAACCGAAAAAAACCAAAAATAATTGTCTACGGAGCTGAGAGAGAGAGAGAGAGAGCGACAGTGAGACAGTAGAACTCCGACGACTTTCTCTGTTCGATGCTTCAATCCATTACAGAAGCTTTGAAATTTAGTAAGTTTCAGCTTCTCACGCATGTACTCTTCTCTTTTAGGGCTTTTGTGTTGCTTCAAACTTCTCAATTTTAAGGGTTTCCTGCTGTAAAATGTTCTGGATTTCTAGGATTAGGGTTTCAGGTGTTCCTGTGCTTATATTGTATTTTCTTTTTGGATTTTGAGTGATTTAAGTCTCCGTAGCTGTTTTTTTTGTCTGTGGCTTTCAGCTCTAAGCCTGAATTCTTTGTGTCGATTTTGTTTTACTTTTGTGGAATGAATGTCATGCATGATGCATCCTTATGTACTCCACACTGTTGGAATTTCTTATTTGAATTGAAGATAGCAGTGATGCTTTTGCTGCTTATGGTCTTTTTTTTTTTTTTTCGTCTAGTGTAACTACTGTGCGTTATTGTCTTTTTGTTGGTTCGAGTTTGTGTCACTGTCTTTTTTTAATTTTCTGTGTATTTCCGAACAATTTCAAATGCTATTAGATTTGATCATTTGAACTGATTCTTTTAGTACTTATGTTCAGATTTGAAGTGAATTATTTGTTATGATTTAGTTAAAATTGTATGGAATCAAAGATGGATCCGGATCTTGTATTCATTCACAAATTTATTTAGGTTCTATTACCAATGGGGTGTTCTCAAAGCTTAGGAATTTGGTGGGAATCAGTCTTTTAGTCCATATCTTTTACTTTTTTTTAAAAAAATATATCTTTGATTGGAGATTTTGAATATGAGAACATTGAAAATATGTAATTTCTATTTTCAAACTTTTCACGTCTTAAATCACAGAATACCAATACAATGACTATATTGTCTGTCATAAGTAAACCTTCTAAATATGAATTCATTGAATTCAAGTGAACTTAAGAGCATGAAATTGAATCTGGTTCGGATACCAAACAAACGTTTCATGGTTTGCCTATACCTTACAAGTCATCCTTAAACCACACTTTATCTCCACATGTAAACCCATCGTTGGCTTATTCTGATATGAATACCAGATAGAGAATGTGCCACATTGCCATTATGATAACAACTTGTAATGATACCCATGGTTTATGAGATTCAATTCAATTGTAGAGGTCAAATTGGAACAAAAAACATTTCATCCAGAAAAAAAAAAGAAAAAAGAAAAAAAACAAGAAGAAGAAACCTAAAAGCGCCCCTAACTTTTAAAAATAGTAGGGATCAATTTACACTTAAACCAATTTTATTCCACAATAGTTTAATTGAATTCACTTAAAATGGAATATAATGTTCATTCCACAATAGACCTACCCTTTTGTACTTCTGTTTGGAGAATTATTATAAAGAGCTGGGTGTCCTCAAGAGCAATAGCATTAGTTCCAACAAACTGGAAATGTATTTCAGTTTCACTTTCCATAGTACATTTTCTTCGACATGATATTTGCCTTTTCTTGTTTAGCATTCATATTGAATGGTAATATATTTCTATATCTTTTGTCATTTATTCATGTGAGTAGGTGAGGATGTGCACGTGAAGAGACTGGCTTTCTATAGATTTAAATTTGAGCTAAATTGATCATGGGTGCAGAAGACACAGCAAAAATTACTGTTGAAAATACAAAAGATGAAGCCAAAGGAGAAGATTTAAAAACAAATACAGTTGAGACTGTGACTGTGGAAAATGGAAACAGTAAAGAAGATAAAATGAAAAACAGTGTTGAAACCGTGGAAAATGGAACAAATGAAGATGACAAAATGAAAAATACCATTGAGACTGTGACAAATGGAACCAATGAACTGGAGAAAATCAACGAGATTGTGCCTAAGGGGGAGGAAAATGGAGTGAAAGAAACAGAAATTGAGAAGGGTGTTGTTGAGGCAGAGGTCACGAAAATGGGAGAAGAACCTAAAATCAAGGAAGATAAGGAAAGCAATGCAGAAAACGTGAAGGATGAAAAGGAGGAAGCTAAAATTCAGGCAATGGACGAAGATGCGAATCCAAATGCTAAGAACGATGAACAAAATGTGGATATCAAAGATGCAGACAGTGTAGATGTCAAAGATGACAAGAATGAGATTGCCAAAGATGGAGAAATTGAGGGTGCCAAAGATGAAGAAATGGAGGATGCCAAAGATGAAGAAATGGAGGATGCCAAAGATGAAGTAACTGAGAGTGGCAAAGATGAAGTAACTGAGGATGCCAAAGATGAAGTAACTGAGGATGCCAAAGATGAAGTAACTGAGGATGCCAAAGATGAAGTAACTGAGGATGCCAAAGATGAAGTAACTGAGGATGCCAAAGATGAAGGAACTGAGGATGCCAAAGATGAAGTAACTGAGGATGCCAAAGATGAAGGAACTGAGGATGCCAAAGATGAAGGAACTGAGGATGCCAAAGATGTAATTGATGATGCCAAAGATGGGGTAGAGAAGGTTGACAGCCATATGGAAGAGGATGACAAGGAAATGAAGGATAAAGATCCCAACGAAGAAAAAACAAAAAAAGGAAGAAGGAGAAAGGGTGCTATTAAATCAAAAGGAAACAAAGAAGAGGATGAAAAGGAGGAGGCAGAGATCAGGACTCCCATTGTTGATCGCCCTGTACGTGAGCGTAAATCAGTTGAAAGGTTGGTGGCATCTATAGAAAGATATGCTGTGAAGGAATTCCATATCGAGAAGGTATTATATATGCATATTTCTTTTCTAGACTGTTTAGTGTGCTTTCTAGGTATTTGAGTCTACTTCTTTTTGTTGGAAACTGCAGGGTCGTGGTACTCCACTTAAAGATATACCCAATGGTATGTGCAATTGGAAACCATCTTCCACTTTGTTGTTGTGCTTCCCATTTTGCTTTATATAATTTCTCCAACATGTTTATGATGGTCTATTGTTTATTTTGGTTTGGCATTCCCTTTATTTGTTGCTCAGATTTCTTTTAAGAATAATTGTTAAGTCACCATCTTTAGCAGATCCATTATTTTTTCCTTTTTATCAACCTAAAGAGAAAGGTTATCTTTCTAAATGTATGAGGACAGTTTCTTTTCCCCTTATTCATTTTTTTTAGATATTTTTATGCGTTAGATTGTTTTCTGAAATTACAACTGAAGTTATGAGGCAGTGCAAACTACAAAAATGTTCTGTTTCAAGTCACAATTTGTCTTGCTTCTTGCATATGCTACTTATTTACTGATAGATGAATAACGAATAATATATATACGTTAATGCACTCTGAGAAAGAAGCCCTTTTGTTTTAGTGGCATTCAAATTATCAAGGAAGAAGACAGATGACATCTTCAGGCTGCTTCATACAATTCTATTTGGAAGGAGAGGAAAGGTAACTAATGATTTAGTGGTTTTCTCATAGGTTAATCATCTAGTTCCATGGTGAGTAATTCCTGAAGGTACACATGCATGCTATGAGCAGTACCATTTGGTGTTTCTGATGTTCTGGTTTACAACTTCTCAGTGATGTACTTTAGGCGTACTTGCATCTAAATCTATGTGACTTCCTTCTTTCCTACCTTTCCTCCAGGCATTTCAGATTAAGAGCAACATATCCAGGTTTTCAGGTTTTGTGTGGCATGGAGATGAGGTAAAAAAATTGTATGTGCTACCAGTATGAAATATTTTTTTTAACTAGGAGCCATCAGTAATTATCAGGATTAGAAGTTTCAGTTTCTCATTTTTTTTGTTTTCGTAAAATAAGATTTCTCAGGAATTTTTTGTTGATACAAATTACATCATCTTTGCAGGAGAAACAAAAGAATAAAATCAAAGAAAAATTTGACAAATGTAATAAAGAGAAATTATTGGAATTTTGTGATGTGCTAGATATTCCTGTTGTGAAGGCCACCACAAGGAAGGTATGTCCAATTATCTTTGTTGCTGTACTTGCATCCCAAGGGCTAGTCTGCATTTGGGATGGTTTTCTTCTGTACGATGTTCGTAGATAGTATTGAGTGAAAATTTCAAATCTAATAAGTCCTCAAATCGTAATATTCAAACATGAACAGTTTTTAAATTTTGCATCCTAAAAATGAGGATTTAATTCAAATGGGATCCATTGTTTTCTAATATCATCTGCAGTCATCACTTATTGTTCATATACGGAACGTTTGTTCCATAATTAGCCTCGGTTATTTATTGAGTAGTCTAGGAATTTCTTTCTATTGGACCCATGCTGTAAAGTGTAAAAGAATCTTTCAGGAAAAGTGATTTAGTGGGAGTGGTTTAGGTTATGGTTCAAAGTTTGACAATCACCAACCTTTTTTTTCTTCTCTTTTTCTTAAACCTTGCCGGTTACTAAGATACTTGTATGCCAATTGAGTTGGGGGGGGGGTTATACCAGGTCCTAGGATCTGTAAGTTCATTATTCAACTATTCACTATACTTGGGCATTATGGCCTTTTGTAATTATCTGTTAGTTCTTATCATCTTAAAATGGGGGTTTTATTATTTTTTAAAGGTTTAATTGGGGTATAGTTTGGGGTTGTTTTCTTATTAAAAGACTATTCACGTCTATAATTTCTTTAATGACAACTGACAAGAACAACTTTGTTTTATTAAGCATGAGGCCATCCATGAAAAAAATTGAAGAAAAAGAAATTGATCCAACTTTTACAGCTGACCAATAATGCTTTTATTGATTTAGTTTAAAAACATTGCACATTAACTCACTAATTTAAAACTGTAGACTAATGAATAAACTCTAGAATAAATTAAAGTAAATGATTTCTTGTGTCATTGCTAGATGGAAAGATTTTGTTGGCATTGTTCTTATAAATGGTATTTGGGGAAGGGAATGTTGGGGAGATTTTTAACATTGAAACTCAGAAGGTCTTGTTTTCTTTTTCAAACATAGAATGCATGTATAGAATATATTTTTTCCATTGCATAAGTTTGATGTTAATTTTTTAACTTGTTTCAGGAAGATATTATTGGCAAGCTCATAGAATTTTTAATAGCTCCTCATTCTACAACTACTGTCCTCCTTGCTGAAAAAGAAAAGGTTTCACCCCTCCTGGTTGCAAAAGAACTTAATCTTCGCAATTGAATGCTTCCTTTATATTTACTCAAGTCTGGATCTAGTTCTTTAATTTTCCTGTGGTTAATCGCAGTCGAGCAAGGGTAAAAAGCGTAAACGAGCAGTGAAAGGAGGAATATCAACTCCTGGAGACAGTGGCTCAAAAAGTTCAGCAAAGGTGGCATTCTTATCTCTCTAAGAGTGCAGTTGGTGAATTATTTCTTGGCCTTGTTTATACCAAATTCCAATCACACCTGCTCTGTCCATTTCTGGATCTAGGTTTTGTTTTAACACTTTCCTGTTATGCCTTTGTCTTCCATAGAAGGTAGATATATCAAGTTCAGGTTAATTGATGGTGCATTTTGTTTTTATGATGCTTGAGGAAATTGTGAGTTATGTTGGCTTCATGAAAGGATATTTTCTTGTTCTTTTTTTTATTGTTTTCCTAAAAGAAAACTATTTGTTTTGGTCAGTGTCCTCGCATTCCAATATTTATGAAAATTGTTGCCGTTATGAATTCTTAGGTCTCACTCTTCTAGATTGGGGATCCCTTTGTTATGGAGTTTTTAAATTATTATTATTATTTATTATTTAATATTTTCTTGGTGGTGGCGTTTTAATGCCATGGGACTTGTGAGTGATGTAGAATGTGTTGTGTGCGTGAATGTGGGTCTCATTTTGTATTAGCAAACACAATAAAGTCCTTTAGATGCTTATTGTTTCTAAACCAAATAGATGTCTGTTTAGGGAAGGGCATACAATAGGTCTTTAAGAGAGTACCTTTGACTGCCTCTGAGGAAAGACGGGAGAATACTTGCCTCCTCGCACAGTGCTTGGAGTTCTGTCTTTTCTTATCTAGTTTATATTGATAAAAGAGGCCTCTCGACCTTTCTTTACTGACCACAACTCTAAATCTTTAGTTTGGGATAGTTGATCTAGTAGTAAAAGATTTCTGATAGCTTAACTACGTTATTTTATTTCTGGGTTGACTCTAGAGTTGTAGAAAAAGGGGGAATAGTGCAAGATCTGAGATGACAAAAGATTCAAGCGATGAAGATGATGAGTCAGAAGAAGAGAAGGAAGCAGAAGAAGAGAAGGAAGCAGAAGAAGAGAAGGATGCAGAAGAAGACAATGACAAGGAGAATGAGAATGAGAATGGAACCACAGAAAAATCTGATGATGAAGTGTCAGAGCAGCCAGAAAGTGAAGATATCAATGACCCAACTGATGAATCTGAGGAAGAAAGACCCAGATCAAGTACAAAAAGTTCATCAAAAAGGAAACGATCTGTGGGAAAAGCAAGAAGCAAGAAAGTTGCAGGTTCCAATAAATCTGAATCAGCAAAATCTTCAGCAAAGAAGTCATCAGCAAGTCGTGCTAAGGTTGATGATAATGATGCTAGTCCAAAGGTATTCTCTAGGAAGAAGAATAGTGAGAAAGAGAGCAAGGCCTCTACACCAACAAAATCTGCTAACAAGGAGAAACCTGGTATCTTTCATGTCTCATTGCCTCTTCTTTTCTTTTTATTTTGTTCCATTTTTTGCCTGGGATATATAAATAAAAAAAAATTGTTGCTTTTCATTATTATTCTTCTGAAATCCAATTTTTTTTGTATTATATAATCTGTTTGGGACCCTAAAGAGATTATGGAGACTGCGATCTACACTGCATTATTTATTTATACCCATGGTCTATGTTTTAGGGAAAAAGGTTGTGAAAGGGAAAGATAATAAGACCAAGGAGGAGAAAACAAGGCCAAGTGATGATGAGCTCAGGGAAGCAATATGTGAAATTCTTAAAGTAGTTGACTTTACGACGGTAAGTATCAAATTTATCCATACCAATCAACTAAGTTTAGCTGGCAATCTCATTTCTATACTTGATAGTTGTAAATCTGCATGGTTTTCTGGCTATTGGATTTCATTCATTCGCTTCTATCGGTTATAGAACTGCTATCATATGTTTTCAAGTTTTAACAGTCACTTCATCTCTTCTCAAGTGGATGGTTGACGGTTGGGATTAAATATATGCATATCTGAGCTTTTAGATTCTTTCTTCTGTTAATGCCAACTGATGATAACTTTTAACAGTCGTAGTAGAGTACATGCATATTCACTGGTTTGTATTTAGTGTTCTGCAATAAGCAGCACCAAAAGGCCTAATGATGCTTCCAAAATGTGGTTGATAAGGCAACAGTTGTTCTTGACATTAGATGAATAGCCTAATGTTTGGAGAAAGACAAGAAAATGAGTTAGGGATTGAATACACAATAGTTTCTATATGTTGGAAAATGGCCTTCATCTTACCTTAGGGACTATTTGGCCTGCTTACTTCTTAAGTTGGTGTAAACAACTCAACTTCAGTAGTGTTACTATTGAACTTGCAGTATCAAGTAACTCAATCTTCTCTTATTTATTTATTTATTATTGTTTTTTCACATTTATCAAGGAATTCAATCTTTCCTTCCATCTTGACTTTTCACATTTACGAAATAACTCCATCTTATTTTTTTAATTTACTTTTTGCAATTATTGAGGAACTCAATCTTTACAACTCTACACCTTAAACACAAACTTACTAACTCCAACATATTAACCCATGGCTTATTATCTCCACCTAGTGGGCCAAAACCCCACCCCCATAGTTTTTGTAACCCTGTTGAAAAATATTACATTTCATGCTTGCTTTGAATGGCAGTGTCGGTCAATTACCTTTTGCAATTGCCAAATGACTCGTTTGTTATTTGTATAATGCAGGCCACCTTCACGGACATTCTGAAGCAGCTTGGTACGTTTCTTACCTATTAGCATATTTTGTGGTTTGTTGAGTTTACAATTTACATGTGCTGCTTTTCATCCTCACGGGAGGTCTCGATTGTTTAGCTTCTTGTTTGCCACCAATTGAGATATCTAACAATAAATAGTACAAATAATTGGACTTTCTCTAGAGAATCTCAATAAATCTGTTTGGTTTTGAATTATGTTTTGGAGAGTCGTTCTAAACTAATACATTTTTCTGAAAGAAAGCGAAATGCATTAATTTTTAACACAGTAGCATTTTTTTTGTTAAAAAAACAATTCATTTGAAGGATGCTGAAAACCATTTCCAACCACATCCTACAACAAAAATGGTAGCTCTAATCTGCTTTTGGTATCTCAGCTCGGCAATTCAAGATGGATCTCACCACACAAAAGTCATCGATAAAACTCATGATCCAAGAAGAGCTGACAAAACTGGCAGACGAAGCAGAAGACGAAGAAGACGGAGGCGATGCTGAGAAGGATGGTAAACAGGGAGCATCAGGTAAAGAGGTGGAAACTTGAGTCCAAGAGTGTTGGCCCTGGGATTTGTCTAACAATATATTGAAAAATCCGTCAAAAAATGAGTCATGTTGTAAAGGTGGATGTAATTTATTTGTTTTTATGATAATCATGTTTACTGCTAATGAAAAGGTTAGTGTTTTTATTAGAAAACAAGGTTAGTTGTTACTTTATATAGGTGTTGCAAATATTGCACCTTCTTTTTATACTGACATATAAAATCTGTTGGGAATAATAATTCCATGAATATATATACTGACCATTAAGGAAGTGGAAGTGGAAGTGGAAGTGGAAGTGGAAGTGGAAGTGGAAGTGGAAGTGGAAGTGGAAGTGGAAGTGGAAGGGGTTGCTTAGCCTTCAGG ATGGGTGCAGAAGACACAGCAAAAATTACTGTTGAAAATACAAAAGATGAAGCCAAAGGAGAAGATTTAAAAACAAATACAGTTGAGACTGTGACTGTGGAAAATGGAAACAGTAAAGAAGATAAAATGAAAAACAGTGTTGAAACCGTGGAAAATGGAACAAATGAAGATGACAAAATGAAAAATACCATTGAGACTGTGACAAATGGAACCAATGAACTGGAGAAAATCAACGAGATTGTGCCTAAGGGGGAGGAAAATGGAGTGAAAGAAACAGAAATTGAGAAGGGTGTTGTTGAGGCAGAGGTCACGAAAATGGGAGAAGAACCTAAAATCAAGGAAGATAAGGAAAGCAATGCAGAAAACGTGAAGGATGAAAAGGAGGAAGCTAAAATTCAGGCAATGGACGAAGATGCGAATCCAAATGCTAAGAACGATGAACAAAATGTGGATATCAAAGATGCAGACAGTGTAGATGTCAAAGATGACAAGAATGAGATTGCCAAAGATGGAGAAATTGAGGGTGCCAAAGATGAAGAAATGGAGGATGCCAAAGATGAAGAAATGGAGGATGCCAAAGATGAAGTAACTGAGAGTGGCAAAGATGAAGTAACTGAGGATGCCAAAGATGAAGTAACTGAGGATGCCAAAGATGAAGTAACTGAGGATGCCAAAGATGAAGTAACTGAGGATGCCAAAGATGAAGTAACTGAGGATGCCAAAGATGAAGGAACTGAGGATGCCAAAGATGAAGTAACTGAGGATGCCAAAGATGAAGGAACTGAGGATGCCAAAGATGAAGGAACTGAGGATGCCAAAGATGTAATTGATGATGCCAAAGATGGGGTAGAGAAGGTTGACAGCCATATGGAAGAGGATGACAAGGAAATGAAGGATAAAGATCCCAACGAAGAAAAAACAAAAAAAGGAAGAAGGAGAAAGGGTGCTATTAAATCAAAAGGAAACAAAGAAGAGGATGAAAAGGAGGAGGCAGAGATCAGGACTCCCATTGTTGATCGCCCTGTACGTGAGCGTAAATCAGTTGAAAGGTTGGTGGCATCTATAGAAAGATATGCTGTGAAGGAATTCCATATCGAGAAGGGTCGTGGTACTCCACTTAAAGATATACCCAATGGTATGTGCAATTGGAAACCATCTTCCACTTTGTTGTTGTGCTTCCCATTTTGCTTTATATAA MGAEDTAKITVENTKDEAKGEDLKTNTVETVTVENGNSKEDKMKNSVETVENGTNEDDKMKNTIETVTNGTNELEKINEIVPKGEENGVKETEIEKGVVEAEVTKMGEEPKIKEDKESNAENVKDEKEEAKIQAMDEDANPNAKNDEQNVDIKDADSVDVKDDKNEIAKDGEIEGAKDEEMEDAKDEEMEDAKDEVTESGKDEVTEDAKDEVTEDAKDEVTEDAKDEVTEDAKDEVTEDAKDEGTEDAKDEVTEDAKDEGTEDAKDEGTEDAKDVIDDAKDGVEKVDSHMEEDDKEMKDKDPNEEKTKKGRRRKGAIKSKGNKEEDEKEEAEIRTPIVDRPVRERKSVERLVASIERYAVKEFHIEKGRGTPLKDIPNGMCNWKPSSTLLLCFPFCFI Homology
BLAST of Cucsat.G873.T7 vs. NCBI nr
Match: XP_031737665.1 (midasin isoform X2 [Cucumis sativus] >KGN56039.2 hypothetical protein Csa_009671 [Cucumis sativus]) HSP 1 Score: 641 bits (1653), Expect = 2.10e-223 Identity = 378/378 (100.00%), Postives = 378/378 (100.00%), Query Frame = 0
BLAST of Cucsat.G873.T7 vs. NCBI nr
Match: XP_031737664.1 (midasin isoform X1 [Cucumis sativus]) HSP 1 Score: 633 bits (1633), Expect = 2.91e-220 Identity = 374/374 (100.00%), Postives = 374/374 (100.00%), Query Frame = 0
BLAST of Cucsat.G873.T7 vs. NCBI nr
Match: XP_016900597.1 (PREDICTED: uncharacterized protein DDB_G0283697 [Cucumis melo]) HSP 1 Score: 442 bits (1137), Expect = 2.08e-146 Identity = 285/379 (75.20%), Postives = 301/379 (79.42%), Query Frame = 0
BLAST of Cucsat.G873.T7 vs. NCBI nr
Match: KAG7028298.1 (Protein DEK, partial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 385 bits (989), Expect = 1.26e-123 Identity = 267/387 (68.99%), Postives = 298/387 (77.00%), Query Frame = 0
BLAST of Cucsat.G873.T7 vs. NCBI nr
Match: XP_023540424.1 (uncharacterized protein LOC111800804 isoform X1 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 383 bits (983), Expect = 8.05e-123 Identity = 267/382 (69.90%), Postives = 296/382 (77.49%), Query Frame = 0
BLAST of Cucsat.G873.T7 vs. ExPASy TrEMBL
Match: A0A0A0L628 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_3G047780 PE=4 SV=1) HSP 1 Score: 466 bits (1199), Expect = 7.96e-160 Identity = 289/378 (76.46%), Postives = 290/378 (76.72%), Query Frame = 0
BLAST of Cucsat.G873.T7 vs. ExPASy TrEMBL
Match: A0A1S4DX94 (uncharacterized protein DDB_G0283697 OS=Cucumis melo OX=3656 GN=LOC103491024 PE=4 SV=1) HSP 1 Score: 442 bits (1137), Expect = 1.01e-146 Identity = 285/379 (75.20%), Postives = 301/379 (79.42%), Query Frame = 0
BLAST of Cucsat.G873.T7 vs. ExPASy TrEMBL
Match: A0A6J1GGD3 (uncharacterized protein LOC111453959 isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111453959 PE=4 SV=1) HSP 1 Score: 371 bits (953), Expect = 7.74e-119 Identity = 255/379 (67.28%), Postives = 288/379 (75.99%), Query Frame = 0
BLAST of Cucsat.G873.T7 vs. ExPASy TrEMBL
Match: A0A6J1L1U2 (uncharacterized protein LOC111498349 isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111498349 PE=4 SV=1) HSP 1 Score: 368 bits (945), Expect = 1.01e-117 Identity = 255/379 (67.28%), Postives = 284/379 (74.93%), Query Frame = 0
BLAST of Cucsat.G873.T7 vs. ExPASy TrEMBL
Match: A0A6J1GHE7 (uncharacterized protein LOC111453959 isoform X2 OS=Cucurbita moschata OX=3662 GN=LOC111453959 PE=4 SV=1) HSP 1 Score: 353 bits (907), Expect = 3.52e-112 Identity = 240/379 (63.32%), Postives = 273/379 (72.03%), Query Frame = 0
BLAST of Cucsat.G873.T7 vs. TAIR 10
Match: AT4G26630.1 (DEK domain-containing chromatin associated protein ) HSP 1 Score: 79.7 bits (195), Expect = 5.8e-15 Identity = 136/378 (35.98%), Postives = 196/378 (51.85%), Query Frame = 0
BLAST of Cucsat.G873.T7 vs. TAIR 10
Match: AT4G26630.2 (DEK domain-containing chromatin associated protein ) HSP 1 Score: 79.7 bits (195), Expect = 5.8e-15 Identity = 136/378 (35.98%), Postives = 196/378 (51.85%), Query Frame = 0
BLAST of Cucsat.G873.T7 vs. TAIR 10
Match: AT5G55660.1 (DEK domain-containing chromatin associated protein ) HSP 1 Score: 68.9 bits (167), Expect = 1.0e-11 Identity = 123/371 (33.15%), Postives = 198/371 (53.37%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Cucumber (B10) v3
Date Performed: 2021-10-25
Relationships
This mRNA is a part of the following gene feature(s):
The following exon feature(s) are a part of this mRNA:
The following CDS feature(s) are a part of this mRNA:
The following polypeptide feature(s) derives from this mRNA:
GO Annotation
GO Assignments
This mRNA is annotated with the following GO terms.
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