Cucsat.G5026.T2 (mRNA) Cucumber (B10) v3
Overview
Sequences
The following sequences are available for this feature:
Legend: exonpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATTTACAAAATTATTTTATAAAAAGAAATCTAAATATCTCTTTTTCCTCTTCATTCTCTGTTCTTATTCGAACCGCGAAACGTTTATTCACGACGAACACAAAATCCCTGCACTAGCGGCAACTCCTTTTCCTCTTCTCCTTTGGAATCCATGGCGGTTCCGAAGGTTATCAGCCTAACGATTTTTCTATCTTTAATTGTCTTCTCCGTCGCAGCGGACGCGATCGTCGACGGAGACGACGTAAGTGAAGTTGTGAGAGAGGATGGCTCTGATTCTTCCGTGCTTAAGATCGAATTGGAAAAACTTAATTCTAAGATCCGAGAGCTTGGTTAGTTCTTTTCTTTTTAGTTTTTCTTAATTTCTTGTGCATTTGAGTTGGTTTGGTTGTAGGAAGATGTGGTGAATGAAGTATTAGTGCGAACTTTTTTGTTTTCTTGACGCAAAATTAATTAGGAATGTATTGGAATTTTTTTATTTCTTTGTTGGTTGTTTCATTTCTCTTTTCTGCCGAATTGATGGTGTTTCAAGTTGAAATGATTTTTCCGAAGCCGTATGGATTCTAGAAATAAGAAAACGTTTCCTGTGATTAAATGAAACTCCGCCATTTTCTTTATATCTCTGGAAACAGGTTGTGATGACAGAGTTTCCTGTGATTGAAGCGTTTTCCTATTTCTGCAGAGGTCCTTATCGATGGAAAAGCACGGGAGTTGGAGAAAAAGGATTATCTTATATCTCAGAAGGAAGAAATATTTAGGGATAAGTCAGATAGAGTTTCATTTCTTGAAAGCGAGATAGAATCTCTCCAGGTTGGCTCTCATATGTTTCTTGACTGAAAAACCGTACTAATGCATGTATCGTCATGATGTTTAGATATTTAATAAAGTTGAATTGGTGATTTAATTGGGAAGAAAACAACAACAAAGGTTTGAACACTGAGCCTCTCAGCCGAAAGCTAAATTTAATATGATATTTGATGTCCCTCACTTGTGGACTTCAAATACGAATAAAGTGAAAATTAATATTAATTGGGGAGTAAACAACAACTCAGTCTCTTGAACACGGAGAGGTCTGAACCACTGGACCACTTGCTCTTGTACCATCTTAAATCACGAATTCAATTCAAAAGGTTAACCAAATTTAGATATTACAATTCAATTCAAAAGGTTAACCAAATTTAATATAATATCTAACAATAATTATAGAGATTAATTTTCTTATACTGTTACTGCCTCGTGTAATGTGACCTTTACTCCACTATATTCTCTTTTTGGGTATTGTGAATTTTTATGCTATTGTAATTCTTCTTTTGAGTAGAGAGAAGGGAAATTACATGCTGAGGAAACAATTGCAAAGGCTCATTCACGTGCTGGTGAATTAGAGAAGCAGGTAAATACGGCATAGAAATCTTGAACAGGATGACCATTGCAACTGTGGTATGCACTCAATCCGTCCGTCTTTGTATATCTTTTCAGGTCAATGAACTTAAGAAGGAACTAGATGCTCAAAACAGGGAGAAAAATACTCTGGAAGTGCGATCAAATGAAGCCCAGAAGAAGATGGATAAGATTATTTCAAAACTGGAGAAAGTAAGTGGAGTGCATTTGTGGAAACATGTGTGTTGGAATTGGCAGCCTCATTGCTGTTCACAGTTCATGGGGATGACCTGTTTTAGTTTTTCCTTAGTTCTGTCTGTTCTTATTGTTTTGATTTTAATTTTGTTTTTTGCGTTTTGTTTACAGCTTCAGAACACTAATGAAGAACAGAAGAGCAAAATTCAGAAACTCCAACGTGCACTTAAAGTGGCTGAGGTACTTTATATGGTTGTGCTGCTACTGACGTGCATTTTATGGAATCTGATTGTTTCTGTCTTAGCAATTTTCTTGTATATTCTCAGGAAGAAATGATAAAAGCGAAGTTTGAGGTCACTTCAAAGACTGAAAAGTTGATGGAGGTAAAAAGCTTATAAATAATTTATTATGGTCTATCATCATGCAAGTGAATTCCAGTACCTTGTGCATCCTTCTGTGTAGCCAAATAATTCTTGAACTATGTGCTTCCATTGCCGGAAGGGCTTCCCACCTCAATAAAACTTCTCATTTAGATTCTGGCTCTGGGTGAGGTTTAAGTGGTTATTAAAGATAAATATTTATTGTCTCAATATTATCATTTAAATTCCATGCAAAAACTGGTTCTGGAGCTCCTTTGTGAGTTTATGTTTATAGTTTCTTATGAAGCATAGAATTTGACGAGGTAAGTTTACCTTGAGGCAGGTACATGTAGATGATTGTTTATGTTGTTTATAAACTACATTAAAACAGTGATTACATTAGAAATGTCCATGAGTTCTTGAAGCTTTGCCAGGAAGATGGGGATATTTCATAAATACGATGTAGTTTATTCTAATTTTTTGGACGTTGGAATTTTTTCCGAGGATGTGAATTGTGAAGTTCCACAGTCCCCCCCCCCCCCCCAAAAAAAAAAAATAAATAAAATAAAACTCACTCAAGGCATTGAGCAGAACCAAATTTTATGCAGGAGATTCTCTTGAAATTGGGGAATACCTTTTCATATGGTCCAGAGGCTTCTCTTGATTTTTCACTTGCATGGGCGTACCCCTGCAAATTATAAAGTCTTAAGAAAAAGAAAAAAAAACTCAATTTGCTGAATAACCGTGCTATGTGCAAGTGTATGGAGAAAGAAGGGGAGTGAACGAGGGAGTGAAGAGGGAATCTTGGATAAACAAGTAAGATTGAGAAGATGGATGAGTCTTAAGAGATGGGAACGAGAAGAAGGTGGATTTGGATGTCTATGGGTGGCGTGGGGGAGGTTGAATAGAGATCTATGGGAGATGGGAGGGGAAAGAGGCTGAAGAGAGATTTAGAATCGGTGAAGAACAAAGGTAATGGAGAAGGAGAAAGGTGGGGAGTGAAAGTGAGACATTGAAGAGGTGGGGTAGGAGAAGGATTTGGAAGAAAACTAAGAAAGTGAGTTTAATGACAAATAACAATGAAATGACTTACGAAGAAAACAAATAATATTAGATAAAAGAGCTTAGAGCCACATATGCATAGGCATATCAGTTCTTGACAAGTTCATCTTGCTCTTTGTTAGCGTTACTTTGTCACAATGTTTAGGTTAAACTAGTTTCTTGGCATTTGAGCACAAAACAGAATTCTAACATGTGATGGAGTCATCTTATGACTGAAATGACACTTAGCTAAATAAAATTTACACAATTCATTATCAGGTCCACGGTGCATGGCTACCACCATGGCTTGCTTCATTCTGGGACGTGCATGCAAAGCCTACAATAAATACGGTGGTGCAGAAGGTACTATTTTCTGTTTTCTTGAGGTTATTTGTTGATACACCGTGAAATGATTTTTCTTGCATCTTATCATCACCATTCCTTGGCTTGCTAGCGTTCCCATTTTCTTTCAAGTTCATCAACCTTCAGTGAAAAGTTGGTTTCTATCATCTGTACACCGTCTTGTTCAAGAAAAAGTTCGTCAACTTCTTATTATTGTCTTCCTTTTTTAATTGGTTGCAGGTGTGGGAGGGAAAGATGCATGTGGAGAATTGGTTGGGACCCCACGTAGAACCAATTAAATCTGTGAGATAATTTTTTTAATTTCTGCTTGTTTATTTTCTTGACATATAAGCATAGGTTAGTAGCTTCAGATCACATTAGGAGAAGTATTAAAAAATCTTCGATGTATATTCTATACATCTTCTTGAACGTTCTTCAAATAATGTAACAACTATATAATGTCTTTATCTAAAAAATTGTCACATATCAAGGCTTGGTTTAAATTTTAATATTGATTTTTGTTTGCTTGTTGCAATGACTAACTTCTCTTTTTATTTCTTTACTTTTTTCATATGCTAAACAGATGTTGGGTAAAGAAGTAATACGCTGTTTTTTACATGGAGAAATTATTTTAGATTCAATTTTGAAAAGCGATTTACTTTGTTTCAATGCTCGATCAGAATGCTTTGTTTCTGTTAAATACTCAGTACATTACAGAAACAATTTGTAAACTTTATAATGACGGTTGATTTGAAAGAGAAAAAATGACTGTGCTTGTATTGTAACATTTTTTAGTACTTCTTAAGACTGCAAATTTAATACTTTGGAAGGTTTACACAATTAACTTACAGATTTGACTTTTGAGTAAAATTCATTTTTTTGGAAATTAATGGCCATATTTAATCTAAAGGTAAAAAAACATTGTGGTTATCGGGTGAGCCTACTAATATTTTTGTAGGCATTAGATATTTGAATGAACTTGTTTACTTGTTGCCAATTGCAGAAGTGGATCCCTGCCATGCACGAACAGTGGTTGGTGGTGAAAACCAATTCTGAACCACATTGGCAATTGTTATGTAAAAGAAGTTCAGAAGCTTACAAGGCTTCAAAACAAGCTGTGATTCCACATTTAATAGGAGCACAAGAGTTTGGCTATCCCTACTTTCAGGTATAAAACTTGCAGTTTGTTAATTTGCTTTCTTCCTGCCCTGTATCACTGTTCTGGTTTTATTTATTTTTTCTTCTCTCAATTTCTTTTTAATCTTTTTTCTCTCTTCCCTCCTTTTTGATGTGGTTAGAAAGTAAAAATGGTCTGCAAACCATATGTTGATCATGTTGCTACCATAATGAAACCTCATGTTGACAAAGTTCGAGTAGCCTTAAATCCATACACAAAGGATGTTGTGCATGCTTGTGGAAATTTTATGCAATCTGCTACTACACATCGTCAGAAGGTACAGCTTTTTTCTGAGTTTAGTTTATTTCTATTTCGGAAACAGATAAAACGGAAAAAATCCAATAAGGTCTAATACTCAGTGTTAGTTAACTGCGGTAAACTTGTCCAAGTATGAGAGCAGAACGTTATATAACATTTTTCATCTTCTGTTGCTTTTTATCATAAATTATTAGCCTGGCGTACCACTTCTTACTGTGTTGGAAGCTACTAGAAGGAGAATTCTCCTTTTGTCCAGAATCAAAACATAAACAATTTACTCTGAAGTATGAAGTTCTTAATTCAGTCCTTTATACTTCTATTATTTTTTTATGCTTACTCAGGTTAAATCCACCATCCAAGAAGTGCTCAACAGGCATGACATTACAAGACCGGTTGCTACTACAGAGTTCGAGTGGCTTTTGGTTAGTATTATTCTAGAAAGTATGACCTTGTTAAAAGACGATATGCAGATTTTCAGTTTAAAAACCTGTGAAGTTTTGTCGCCCTTATACTTGCAAAAAGAATAAACGGTCTCTGTTGAATATTTTTAATTTTTAAATTATTTTATGAGGACATTATACACATATCAAGTCTGTATTGAGTCTAGAAACCAGTTGTTTAAATAATATTTTAAATACAAAAAGGTCAATGGCAAGGACCAGAATTTTTAATGGAAGTCTAGTACCAAAACTATATTTTTTTAGTATAACAACCGAAATGACACAGTAGTGGAAGTGTGAAAATTCAGGGCTAAAACATGCTTTGAACATAGATTTTCATATTATTTTACTAAAATTTTGAACTCCTATTGACTCTCAAATCTCAATCCAGGATTCCGCATTATTGGTCTTACCTGTGTTAATATTGTTCCATCTTTGCTCTTGCTGTGGCGGCATATCCCGGTATGACTTTTTATTTTCTTTTCTTCCCATTTCTTTACAGTATGGAAGTGTGCTCTTTTTTCCCTATAGAGTAGACACTTGAGGGTATAATATATCTTTGTGCAGTAAAAAGAAGAGGACATCTGTTCGGGGTGCCAACACCAACCATGTACGTCGTAAGGCCAAAAAGGGAAATTCAGGGAAGTGAAATGTAACATCATTTGCTGGTCCTCTGTTGTAGACGAAATTTTAAAGGTCGGGTTTATCTTTAACATTTATGTTCAGAATAAATAAATGAACTGCTGTTACTATATTTATGATACTCTGAAGTGGTATATGTTAAAATCTTATGCGGATAATGCACCTTCCCTTAATTGGTTGGTTCTCTTGGCCATCCAACTGTTGATTTAGCGTTTTGGCGGTGGTGAAGGCTGCCTAACCGTTTTAACTTGTCGTGCTTTGCATGACATGCCAGTCTTCTCCTGCCACAGGGCACTGCTTAAATACTTGTCACAGCTCATTGAATCAACCCAGTAAATCAAGTTAAATACGTTAGTTCTATTAGCTGCACCACCGAATGCTATCTGGGACATAATTCAACTCACTTTTCATGCTACAGCTATGAAAAACAGGAGTTTTAATTCAGGCCATTGTGTAACAACCTTTTTGCACTAAAAGTCTCTTCATGCTATCTTCCCTTGGATAGATGCTTGTGAAACCACTTCCTATTACTCCAAGCTTCCACTAACTAGACTATTAGAGCTCGAATAGCAGAACCACCATAGTGGTATTGCAAAGACTTGTCATCTTCATATGAAAAGACTAGATAAGGTTGATAGAGTATAATTGTTTGGTTTTCTGCACTCTGTCCATCTCCCTATTAATAGTCCAAGAGAGAGTACTTAAGAAAAATGGGGGAAAAAAAAAAGCCAAGAAAGGCCTAAGTAATAGCTAACTTAAAGATGCTAATCTATATAAGCTGTGTTCTGCCCCTTAAGGCCGTGACCCACAAAGGCCTTAGAGAACACTACAATTTTTCGTATAGGAATTAGAAGATGGCTTATTTTGCACCTTGTCCTTTAAATGAAAGTACCTTTCACTGAGTTGCACATTTGGTTTTCAATTATTCTGTTATAAAGTATATTGATACTGTTGATTGTGATAGTTTGCTCAAGAAGTAGGAAATGAGGAAAACCAGAATGCGATGCTTGATTTTATAAATATTTTCGTTGATGTACTTCAAAACTTAACGTTGTCATTACTATCCTGAGGGTAACTCATTGTTGATACTATTTTGCATGCATCCATGTAAATATATTTCGATATTTTTTTGCAGATGGACAGCACACCTTTGGCTTGCCAAATTCTCTAGAAACCTGGAACTGAAAGGTCTGATATTTTTCGAAGCTCTAACAGTTTCATCTCCTTTGTTAGCCACGATCATCACACACACGCTGCTAAAAAAAATACCCAAGAAGTTTAGAAGTTGAAGTTATACTCTGTTTTTCATGTTTTTTGACTGATACCGGAGCTGTACCAAGTTTTTGTTCGATGTGTTGTAAAATAGTCGCGAAGTTAAAAATAAATTATTTCAATTTCCCATCTCTTGTTACCCTTCACTGCTCAATTCTACTTTCTCTGTGATGTTAGCAGCAGCTTGAATGAAACTTTGCAGCTGAAGTGTCTTTCAGCTGAAATCACGGTACGTAGCAGTTACTTTCAAGGTCAAATCTATGAGATTATAGGTATTAAGTAATCGAAAAAGAGCTGTTTGACTGCTTACTGATACAAGTAGACTCCAATTTCGGAGTTGAAACGGCACACATCAACAAAAGAAAAAAAGAAAAAGGTGGTTTCGTGAAACGTGCAACAAAGGGAGAAGTAAGAACTATCTCTATGCATATATTTGGCTATGATCAGCTGCTTCATTTTACCAGGTAGGCCAGTAATTCTCTAGGTCCATGCAATGATCCATGTTCATAAATCTGTTGCTATGTCCGCTGGCATTGTTGTTGATCTCCGCTCCATAGGCAGTCTCAGGAGTGATCGTACTTGCCATCATGGATGAAGCAATATCCTGACCAATTGTCATTGTTGTTGCCACTGGTGGAGGCGGCACTTGTCGCAAAACTGGTTGTGATATTCCTCCTCCAAGGTTCAAGTTCAACCCAGATATTGTAAAGCAACCTCCTGTATTTGGATAGTTAAACTGGGGCTGCATTGATAAATTGATACCTTGGGTCGATCCTCCATTGCTGCCACCACTGCCACCAGTTCTCAAAACTCGGTTAAGCTCAGCCAGCTCTGTGCTGGTTATGTAGTTTCTTCCATAGCCGTACTGAGTGGCAGAAGGGTCCCCGAGCTGCATGATGGGTGGTGGAAGAAGAGAAGAGGGAATTTCAAGGTTGACATAAGGATTCACTGCTCTTGATTGGTTCGGAGGATACTTTTTAGCCCCAGGACTCTTTTGAAATACTCGGCAAACCACCCATTCGTCCTGTGTTCAATATGAAAACCAATGAAAAAAATGACCCTTCATAACGTTTTTTAAAATTACACAGAATAACATATTTTTATCTTTCAAAAATCAATTTTAACAAAGTGGCAATTGCGTATAAAAGT ATGGCGGTTCCGAAGGTTATCAGCCTAACGATTTTTCTATCTTTAATTGTCTTCTCCGTCGCAGCGGACGCGATCGTCGACGGAGACGACGTAAGTGAAGTTGTGAGAGAGGATGGCTCTGATTCTTCCGTGCTTAAGATCGAATTGGAAAAACTTAATTCTAAGATCCGAGAGCTTGAGGTCCTTATCGATGGAAAAGCACGGGAGTTGGAGAAAAAGGATTATCTTATATCTCAGAAGGAAGAAATATTTAGGGATAAGTCAGATAGAGTTTCATTTCTTGAAAGCGAGATAGAATCTCTCCAGAGAGAAGGGAAATTACATGCTGAGGAAACAATTGCAAAGGCTCATTCACGTGCTGGTGAATTAGAGAAGCAGGTCAATGAACTTAAGAAGGAACTAGATGCTCAAAACAGGGAGAAAAATACTCTGGAAGTGCGATCAAATGAAGCCCAGAAGAAGATGGATAAGATTATTTCAAAACTGGAGAAACTTCAGAACACTAATGAAGAACAGAAGAGCAAAATTCAGAAACTCCAACGTGCACTTAAAGTGGCTGAGGAAGAAATGATAAAAGCGAAGTTTGAGGTCACTTCAAAGACTGAAAAGTTGATGGAGGTCCACGGTGCATGGCTACCACCATGGCTTGCTTCATTCTGGGACGTGCATGCAAAGCCTACAATAAATACGGTGGTGCAGAAGGTGTGGGAGGGAAAGATGCATGTGGAGAATTGGTTGGGACCCCACGTAGAACCAATTAAATCTAAGTGGATCCCTGCCATGCACGAACAGTGGTTGGTGGTGAAAACCAATTCTGAACCACATTGGCAATTGTTATGTAAAAGAAGTTCAGAAGCTTACAAGGCTTCAAAACAAGCTGTGATTCCACATTTAATAGGAGCACAAGAGTTTGGCTATCCCTACTTTCAGAAAGTAAAAATGGTCTGCAAACCATATGTTGATCATGTTGCTACCATAATGAAACCTCATGTTGACAAAGTTCGAGTAGCCTTAAATCCATACACAAAGGATGTTGTGCATGCTTGTGGAAATTTTATGCAATCTGCTACTACACATCGTCAGAAGGTTAAATCCACCATCCAAGAAGTGCTCAACAGGCATGACATTACAAGACCGGTTGCTACTACAGAGTTCGAGTGGCTTTTGGATTCCGCATTATTGGTCTTACCTGTGTTAATATTGTTCCATCTTTGCTCTTGCTGTGGCGGCATATCCCGTAAAAAGAAGAGGACATCTGTTCGGGGTGCCAACACCAACCATGTACGTCGTAAGGCCAAAAAGGGAAATTCAGGGAAGTGA MAVPKVISLTIFLSLIVFSVAADAIVDGDDVSEVVREDGSDSSVLKIELEKLNSKIRELEVLIDGKARELEKKDYLISQKEEIFRDKSDRVSFLESEIESLQREGKLHAEETIAKAHSRAGELEKQVNELKKELDAQNREKNTLEVRSNEAQKKMDKIISKLEKLQNTNEEQKSKIQKLQRALKVAEEEMIKAKFEVTSKTEKLMEVHGAWLPPWLASFWDVHAKPTINTVVQKVWEGKMHVENWLGPHVEPIKSKWIPAMHEQWLVVKTNSEPHWQLLCKRSSEAYKASKQAVIPHLIGAQEFGYPYFQKVKMVCKPYVDHVATIMKPHVDKVRVALNPYTKDVVHACGNFMQSATTHRQKVKSTIQEVLNRHDITRPVATTEFEWLLDSALLVLPVLILFHLCSCCGGISRKKKRTSVRGANTNHVRRKAKKGNSGK Homology
BLAST of Cucsat.G5026.T2 vs. NCBI nr
Match: XP_004138781.1 (uncharacterized protein LOC101209922 [Cucumis sativus] >KGN62843.1 hypothetical protein Csa_022511 [Cucumis sativus]) HSP 1 Score: 832 bits (2148), Expect = 2.73e-303 Identity = 434/439 (98.86%), Postives = 437/439 (99.54%), Query Frame = 0
BLAST of Cucsat.G5026.T2 vs. NCBI nr
Match: XP_008445053.1 (PREDICTED: uncharacterized protein LOC103488208 isoform X1 [Cucumis melo]) HSP 1 Score: 760 bits (1962), Expect = 5.74e-275 Identity = 408/439 (92.94%), Postives = 416/439 (94.76%), Query Frame = 0
BLAST of Cucsat.G5026.T2 vs. NCBI nr
Match: XP_008445055.1 (PREDICTED: uncharacterized protein LOC103488208 isoform X2 [Cucumis melo]) HSP 1 Score: 715 bits (1846), Expect = 1.31e-257 Identity = 389/439 (88.61%), Postives = 397/439 (90.43%), Query Frame = 0
BLAST of Cucsat.G5026.T2 vs. NCBI nr
Match: XP_038885413.1 (uncharacterized protein LOC120075810 [Benincasa hispida]) HSP 1 Score: 695 bits (1793), Expect = 3.24e-249 Identity = 372/440 (84.55%), Postives = 401/440 (91.14%), Query Frame = 0
BLAST of Cucsat.G5026.T2 vs. NCBI nr
Match: XP_022131562.1 (uncharacterized protein LOC111004713 isoform X1 [Momordica charantia]) HSP 1 Score: 622 bits (1604), Expect = 1.94e-220 Identity = 326/439 (74.26%), Postives = 381/439 (86.79%), Query Frame = 0
BLAST of Cucsat.G5026.T2 vs. ExPASy TrEMBL
Match: A0A0A0LM09 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_2G376800 PE=4 SV=1) HSP 1 Score: 832 bits (2148), Expect = 1.32e-303 Identity = 434/439 (98.86%), Postives = 437/439 (99.54%), Query Frame = 0
BLAST of Cucsat.G5026.T2 vs. ExPASy TrEMBL
Match: A0A1S3BCM5 (uncharacterized protein LOC103488208 isoform X1 OS=Cucumis melo OX=3656 GN=LOC103488208 PE=4 SV=1) HSP 1 Score: 760 bits (1962), Expect = 2.78e-275 Identity = 408/439 (92.94%), Postives = 416/439 (94.76%), Query Frame = 0
BLAST of Cucsat.G5026.T2 vs. ExPASy TrEMBL
Match: A0A1S3BBB1 (uncharacterized protein LOC103488208 isoform X2 OS=Cucumis melo OX=3656 GN=LOC103488208 PE=4 SV=1) HSP 1 Score: 715 bits (1846), Expect = 6.35e-258 Identity = 389/439 (88.61%), Postives = 397/439 (90.43%), Query Frame = 0
BLAST of Cucsat.G5026.T2 vs. ExPASy TrEMBL
Match: A0A6J1BRC7 (uncharacterized protein LOC111004713 isoform X1 OS=Momordica charantia OX=3673 GN=LOC111004713 PE=4 SV=1) HSP 1 Score: 622 bits (1604), Expect = 9.39e-221 Identity = 326/439 (74.26%), Postives = 381/439 (86.79%), Query Frame = 0
BLAST of Cucsat.G5026.T2 vs. ExPASy TrEMBL
Match: A0A6J1GIV2 (myosin-2-like isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111454574 PE=4 SV=1) HSP 1 Score: 540 bits (1390), Expect = 4.28e-189 Identity = 305/440 (69.32%), Postives = 338/440 (76.82%), Query Frame = 0
BLAST of Cucsat.G5026.T2 vs. TAIR 10
Match: AT4G31340.1 (myosin heavy chain-related ) HSP 1 Score: 352.8 bits (904), Expect = 3.9e-97 Identity = 198/450 (44.00%), Postives = 295/450 (65.56%), Query Frame = 0
BLAST of Cucsat.G5026.T2 vs. TAIR 10
Match: AT4G31340.2 (myosin heavy chain-related ) HSP 1 Score: 351.7 bits (901), Expect = 8.7e-97 Identity = 189/417 (45.32%), Postives = 278/417 (66.67%), Query Frame = 0
BLAST of Cucsat.G5026.T2 vs. TAIR 10
Match: AT2G24420.1 (DNA repair ATPase-related ) HSP 1 Score: 349.4 bits (895), Expect = 4.3e-96 Identity = 201/454 (44.27%), Postives = 296/454 (65.20%), Query Frame = 0
BLAST of Cucsat.G5026.T2 vs. TAIR 10
Match: AT2G24420.2 (DNA repair ATPase-related ) HSP 1 Score: 349.4 bits (895), Expect = 4.3e-96 Identity = 201/454 (44.27%), Postives = 296/454 (65.20%), Query Frame = 0
BLAST of Cucsat.G5026.T2 vs. TAIR 10
Match: AT4G30090.1 (null ) HSP 1 Score: 144.4 bits (363), Expect = 2.1e-34 Identity = 123/426 (28.87%), Postives = 198/426 (46.48%), 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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