Cucsat.G7857.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.GGTCAAAGGTGGCTAGGAGTGGCAGCTTCTTAGAACAATCCATCAATTTCCCAACGAACAAAACTTCACATCTCTCTCTCTCACAAAATCTCATGTATCGTAATTCGTAAAGCCATATAGATCTGCTGTCCACTACAAACAATTTATCCCTTAAATACAGATATTTTTGTTCTTGTCAATGGCAGCCTCTATGAAGCACGAACAGCAGCACGGAGAGAGTTGACTTTCCCTAGATTGAATTTGAACCCAAAAGATGGCTCACTGATTCGAATTCACAAACCCCACCAAATACCCCAAAACTCCCATTTCTTTCATCTCTCTTCTGAGAGCTGCAGCTTTTGGAGGAGGATTTGAGAGCGATGGCGATGGTTTAGGCGAGATTGGTGAGAAATTTCTTGTTGGGTATTCAAGAGTTGTAGCAATTGGAAGATTTTGAAGGGTCTGGAGAAATGGGGTTGGGTAATGGGTGCCAAGATGGAGTCAATACAAGGCCTCTGTTCTTGGTGATCTACGCGACTGTCATTGCCGGGATAGTGTTCTCATCGCTGTATGTATTTTCGGCGGTTTACTCGTCTTCAAATTCTGTTTCTGATTCCAGCTCCTGGTTTTCGTCTACTTCCTCTGAATTTACCAGTACGTGTTGTCTATTTCTTGTAGTGTAATTACACTTGACTTGATCATGTTCTTCTTATGTCACTGGGATGTATGGTAGATTGTGATTGATGATGTATAGAAATTTAGCTGATTTTCTTTCCTTCTTCGACCGCATTTCGATGGATTGGTTGACTTTATGTACTGTAAGCTAAGTTGGGTTTGCGCTTGATTGAGCCTAATCATTCAGTAATGATTTTGTTCAATTTTTATGTATCAACAATGGTGGGGTTGGAAACTCCTCTCTCTGACATTTTTGGCTAAACCCTTCTCAAAATAAACCATCAGATGCTAGTTATTGGGCTGTTACCCAACATTTTTGCTGTTCCAATCAACTTGTAAGATAAACGTTTGGTTTTGTTCATTCTTAAACTGGCCCTTCAATGCTTAATTTTGTCGTCTATTGAATTGTTGCATTGACTAATTTGTTGTATCCAATACAATATTAGCTGAAGTTTGATTTCCATAACCCAAGCCCGGTTCTCGTATATGCTTATGATGAAAAACATATTTTGGGTCTGGATGCAAGTTTTTTTTCTTTCCCTTGTGCAACTCCCTGTTCGTAATTTTATCACTAATTGGTATTGTCCTGTGTTCGGTTTGCTTTCTCTTTCTAGATTTCGATTCAACTCTTATCAAGGATCAAAGATCAGATGTGTCACAACCAAGTACAGGTCCCACTCCAGATTTCTCCAACACAGTTGTTCAAAACAAGGGGGAAAGGCCAATTTGGGAAGCTCCTAACACAAAAAATATGCCACCGCCAGAGGCTTTTAATCTAAGCAAGGAGCTAGTTCAGAAAAGGGCAAAAGATAACATAATAATAGTAACATTTGGTAACTATGCATTTATGGACTTCATCCTCAGTTGGGTTAAGCATTTGACAGATCTTGGTCTTACTAATCTTCTTGTTGGTAAGCTACTGAATTCTTATTAATATCATATTGAATGGCAACCTGCTGTCAGACTAATTAGTTTCTTTCCTTAGAATAGGAACTTGTTTGTGTACTTCATTAGTTTAAAAATATGTTTAGGAAGCTTGGGTGATTATTTCAGGTGCAATGGACACCAAACTGTTGGAAGCCTTGTATTGGAAAGGTATTCCAGTTTTTGACATGGGAAGCCATATGAGCACGGTAGATGTTGGCTGGGGATCACCTACATTTCATAAGATGGGAAGAGAAAAAGTGATTCTCATCGATTCAATTCTCCCATATGGTGTAGAGTTGTTAATGTGTGATACAGACATGGTGTGGTTAAAGGTAACTTTTGGAATTGTAATTTGGTTATTCCTTCACCATTAAGCGACATCTAATTTTTGGTTATACGTTCACTGGTTCACACTAACAACATTGACAATCTTTTGACTCATTATATTATGCCAAATTTGTTTTACTGAATACAATCTCCTCTGGTACTTACTGATAAAAACTGCCAGATCTCAATACTATAACAAGTATTTTAACTTGTCAAAACTTTTTGGATTTGTTTGGTTTATTAAAGCTTCGAATATTGATTTTATGTGGTAGAAAATTCTTGTTTTATTATTATTATTCAAATGTGGGTAGGGAGATCTTAGGGTAGGAGAAAAACAATTAGATTTTCTAGAGCTCAAAGTTCAGTTTATTTATTAAAATCCGTTGTTGGCTCATTTGAATATTTTTTAGTGCTATTATTTGAAAAATACTTACCTGATTAGTTGTTTTATGTAACAGAATCCACTCCCATATCTTGCTCGTTATCCTGCAGCAGATGTCTTAACTTCAAGTGATCAGGTTGTACCAACAGTGGTCGATGACAGGTTGGATAAATGGAACGAAGGTGAAGTATTAAATATTCTCTATTCTTCCATGACATTGATTCAACATTAATTAACTTTTCCTACGCTTAATAAAACTATGTACAAGCATGAATTTTCAATACTTTTAGGGCATGCCTCTTTGACCCCTGATTGATTATATCACAAGTTTTTAATTTTCTTCATCTTGAATCACCATTTAGGAATGGTTGTTTCACAGAAATTCTTTACAACAAGGTGTTTACGGTAATAGCTCCTTCTTGGAGCTGGATTATAATTCTGTTTTAAATTTTTTTCTTCACATGTGTTTGATGCAAGGATTAGAATGCACGTTGATATGTTTCGATATCCATAAATTGGAGGGTTTGACATTTGATATCTTTTATAAACACCCATAAAATATAAAAATATCATATATTACTCTCAATATGAATATAATTACATAATACTAATAAAAAGATTTAAACTAGTTTGAAATTAAACACAAGTTAATTATTAATTAATTTTTTGGTTCATTTACAGCGATTTTGATATATCTATGGAATTGAAATGCCAATATCGTTATAGATCTCTGTTATCATGAATCTTTATGAAATCAAGAGAACATAAGGACATTTCTTATTTGAAAATGTTGAAGTTCATTTGGATACTGCTCATGCCTATAAATTTGTAAGTTTTGCCATAATTGAACTGGTTCCATCCTCATGTCTTTAAAGACAGTTCAAACGTCATCATGGTATTGTTCTGTAGAAGTTTCAATCTTTATCTGAAGCACTATTTTTCTTTTTGGAATTTTGCTTCTTGAAATATTCTTTACTTGAATAGTCTACATTAAGTAGCATACAGTTTCTGACATTTCAATACTAAAGGGGCTAATGCTTTTGAAACAGTTACTGGTGCCTTGAATATTGGAATTTTCCACTGGCGGCCCACAGAAGCATCAAAAAAATTGGCAAAGGAGTGGAAGGAAATGCTCCTAGCTGATGACAAAATTTGGGATCAAAATGGCTTCAACGAACTTGTGCATAAGAAGTATGGACCATCTGTTGATGAAGATAGTGAACTCGTATATGCTTATGATGGCAATCTCAAGCTAGGAGTTCTGCCAGCAAGTATTTTCTGTAGTGGACACACCTACTTTGTCCAGGTAGGACCTCCACTGTTGTGTTTGGGTCTCGACACCCTATTATTATTATTCTCATCTAAACTTTGTTTTAGAGCATCTATTAGTGTTTGGGTCTCGACATCCTATTAATCATAAGACAAGCAATGTGAATGTATCCTCATCAATCTACTTAATGAGCTCACCATCAAATCACAATGGCAGGCGATGTATCAACAATTTAGATTGGAGCCATATGCAGTTCATACTACATTTCAGTATGCGGGTACTGAAGGAAAGCGCCATAGACTGCGTGAGGCCATGGTTTTCTTTGATCCTCCAGAGTACTTTGATGCACCAGGTAAATTTTTGTATGAGATTCTTGGATCATTCTTTTCAACTGCACATCAGTTTCCAAATCGTCTAAAAGGAATTGAAGAATTCAACGCATTCTTATTTTCTGTCCTCGCCTTTGAGTATTTTTATGTGCTGTTGTGATTATTCTTGTGTTACCTCTGTATGGGTCATAACAAAATCTCCTTGGAGTTGGAGTTTCTAGGAAAAATTTTCAAATTTATTTGCGGCCTCATGATCAATTGAATAGCCTTTCTCACTGTCAAAGATATTGTGTGACTTACTAATGCTTTACTTCTTGGGAAATTCTGCAGGAGGTTACCTTTCATTTAAGCCATCAATTCCTAAGAACTTAGTACTAGAAGGAGAGCATAACCTTGATACACACTTTACTCTTATTAACTACCAGGTTGTCTGTTATATAGTAATCCCAAGTTTTTATTGTATGATGCCCTGAAGTGTCCCACTTCTGAGTTTCTATTTGTTTTTTATGTTCAGATGAAACAAATAAGGACTGCGCTCGCTATTGCTTCATTATTGAATCGTACACTAGTAAGAACACTTTCTATAGACACACTTTCATTCAAATACGGTATAATGTAGAAAAGAGGAATATGTTTTGGTGAGAACAGATAGGAAAGAAAGAAGAAGACTGTCAATATCTCTTTCCCTCTCTCGAGGAACTTTTACATTATGTTCATGATCTAACCTACTAATTTCCAAGGAGATTTTGCCCACCCTGATGCTAGCTAAGCCTTTCAAGAGAAATGTTGATTTAGAATTCTGGTGACAATGAAGTCAAAGATAAAAGGGGACGATATGTAATTTAAACGTACTCATTAACTGGGAGAAATTCCTTTTACATGTCAACTAAGCAAAAAATATAGGAGGAATGAGTACTTAGTGGAATTATGTGTGTGTATAGTAAATTAAAACCACATTTGTGGATGCTCTTGTCTTTGCAAGCTACTTATGAAATTTTGTCTGTAATTTGTTCATTTTGTCTCACTCATCAACTCTAGATCATGCCTCCACTGTGGTGCCGGTTAGATAGGCTATGGTTTGGACATCCTGGAGTTCTACAAGGTTCTGTGACTCGACAACCTTTTATTTGCCCGTTGGACCATGTTTTCGAGGTACCTCCAAATTTTTTTATTAATTGAGACAATTAATATTGTCTTGATGAGCTTTCATCTATATATCTGATTCCAATTCTAATTGGATAAGTCAAGTACGCTGAGGATTTTGACTTTTATGGGGCACAGTAAAATTTATATGAGAATATTCATATTCAACTGATCTATTATGGAACCAAACATTCAACATAGGAATTAAATTGAAGTTATGCCACAAAGTCCGGGCTTTAACCTTTTGGGTCGAATCGAAACATGATGCTGAAGCTTTCTTTGTTTTTCTGGGGTTGGTAGGAAACTAGAGACCAGTAATGGACCCTCGGAAACCAATATGTAAAAAGTGATCGTATATTTACTTTTTAACTTGTAATATTCTTAACATTAAGAATTACTAAACTCAGTACGTAACAACATGAGCTTAGTTTGTACAAATGTAGGCGTATTTTTATTTATAAACAGTTTTTCTTCTGGAATTCAACAAATATGGAGACAGAATTTAACCTTTATTAGTATCTTACTCACCAAGCTATGGGACGATTGACGTCCTTTCCCTTTTTCAATACATTCAAGCTCTTTCTCTACCCCTTTTGACCAATGTGATGTCAACTACACCTGGTGGTGTCTAAGTTTGCAGTCAGTACCATACCAATTCAAGTACATTATCATCATAGGAATGGTCAGATTTTGTGCTTTAGCATATTTTTTATCTTTGAATTTTTTGAGACCATAATAACTTTAAGATGCCCAATTATCGTTTATTCATCTTGAGCCATAGATCCTAAATGAGGTGGAGAGGTACTCATGTGTACAGTCTGCCTTACATTTTCTGTAACATATGGATTAAAGTCATGCGTTTTGTCAAACAAAGAATGAACCAATATTGATTTTTATGTTTCTTCTTCATTTTTTGTGCCAAGCAGGTCAATGTGATGTTAAAAGAACTGCCAGAGGAAGAGTTTGGCCCAGGAATCGACTTTAGAGAGTATTCTTTCTTGGAAAATCCGTTGCTCCCGAAACAAGTTAGTATCACTTGGTATTAGAAACTGTCAATTTTGCTTAATTATAAGCATTTTCTGAGGAACTTTATATGTCTTTAGGTGAAAGAATCATGGCTTGATGTTCAGCTTTGTAAACAAGAAAGTGAAGGTTGTAGTGCATCAAATGATACAGTTTTACCAGGTGTCCTCAAATTTCCTAAGGGCAGCAATGAAGACACGGTAATTCACTCCCTAAAAAATTCACCCTAATTAAAAAAGATATTTGTAAGCTAGTAATATGAAGTTGCATTATGCATATTGGATATTACGAATCTTATACTTTCAACCATTTTCTTGGTGTTGCAAATCAATCATTGAGACTGGAAGTTAGAGTACTGTAGGTTTTAACTGCTATTGTGATTCTAGAACAACAGAACAGGAACATGTAGCCTGTAGATTATACATTTCATATTTTTCTGCAGCCTTAGAATAGGTTGTTTGTGTTTAGTTTGGTATATCTTTTGGAAATTTTTGGAGCCAACAATCGCTTGGGAATACAAAAACTTATCTTTATCAAAAAGGTTTGGATTTGTTAAGTTTAATTGAAAAGGCATGGAATAGGATGCTGCAATTGTGAATGTTTATCTGTTAGACTTGTTCTGGTTTCTAAGGATCTCCTGTTCCTTGTTGTATGATAGCTATATAAACCTGTAATAAGAACTCCATCTCTCCATTGGACTTGCTGTATGAGATTTTATGTTTTTCTTGTACAGTTCAAAGCAATATTTTCCACATTCAAGGATGTCAAGGTTATCCAGTTCTCTACAATGCAAGATGCCTTCCCTGGTTTCTCTGATAAGGTAACAAAACAACAACAAACCCCTTTGATTCATTTGACTAAACAGAGTTCATATCAAGTCTCATTACACATGAAATTACAATTTGATTAACAGAAAAGGGAAGAGAAGTTCAGGAACCGAGTCAAGCGTTACGTCGGCATATGGTGTTGTGTGGAGAATGCAGCTCCTGGCCACATATATTACGACATGTACTGGGATGAGAAACCCAATTGGAAACCACACCCGCCTCGAACACCCGAGGAAGATCGACCTCCTTTGTAAGGTTTAATGGTACGAGCATTTATTCAAATCTAGACGAAATGAATGACAATTTCTCAAGGTTGTTTTATTTTATTACTCATTGAGGAATTCAAACCGTAGGCTTAGTTGGGATTAATGGAGGTCGAAATCGAGTACTGGTATTATTGGAGGTCGAAGTCGAGGCTACCTTTTTAATTTATGTTCCCCCATGGATCACAGATTCACAATAGAGTCTAAGAATACAGATAGATTCAATTTAGTTCCCACTCTTTCTGAGTCATGTAAGATGGAAAAAGCTGTATCTGTAAGCTTACAAGGACGGATGATATATGTATGCTCTCCCAGTGAGGGGAAGTTTTGACTTTGTACACTCAAATAAAGAGAGGAAGTAAAATGCACAAT ATGCCACCGCCAGAGGCTTTTAATCTAAGCAAGGAGCTAGTTCAGAAAAGGGCAAAAGATAACATAATAATAGTAACATTTGGTAACTATGCATTTATGGACTTCATCCTCAGTTGGGTTAAGCATTTGACAGATCTTGGTCTTACTAATCTTCTTGTTGGTGCAATGGACACCAAACTGTTGGAAGCCTTGTATTGGAAAGGTATTCCAGTTTTTGACATGGGAAGCCATATGAGCACGGTAGATGTTGGCTGGGGATCACCTACATTTCATAAGATGGGAAGAGAAAAAGTGATTCTCATCGATTCAATTCTCCCATATGGTGTAGAGTTGTTAATGTGTGATACAGACATGGTGTGGTTAAAGAATCCACTCCCATATCTTGCTCGTTATCCTGCAGCAGATGTCTTAACTTCAAGTGATCAGGTTGTACCAACAGTGGTCGATGACAGGTTGGATAAATGGAACGAAGTTACTGGTGCCTTGAATATTGGAATTTTCCACTGGCGGCCCACAGAAGCATCAAAAAAATTGGCAAAGGAGTGGAAGGAAATGCTCCTAGCTGATGACAAAATTTGGGATCAAAATGGCTTCAACGAACTTGTGCATAAGAAGTATGGACCATCTGTTGATGAAGATAGTGAACTCGTATATGCTTATGATGGCAATCTCAAGCTAGGAGTTCTGCCAGCAAGTATTTTCTGTAGTGGACACACCTACTTTGTCCAGGCGATGTATCAACAATTTAGATTGGAGCCATATGCAGTTCATACTACATTTCAGTATGCGGGTACTGAAGGAAAGCGCCATAGACTGCGTGAGGCCATGGTTTTCTTTGATCCTCCAGAGTACTTTGATGCACCAGGAGGTTACCTTTCATTTAAGCCATCAATTCCTAAGAACTTAGTACTAGAAGGAGAGCATAACCTTGATACACACTTTACTCTTATTAACTACCAGATGAAACAAATAAGGACTGCGCTCGCTATTGCTTCATTATTGAATCGTACACTAATCATGCCTCCACTGTGGTGCCGGTTAGATAGGCTATGGTTTGGACATCCTGGAGTTCTACAAGGTTCTGTGACTCGACAACCTTTTATTTGCCCGTTGGACCATGTTTTCGAGGTCAATGTGATGTTAAAAGAACTGCCAGAGGAAGAGTTTGGCCCAGGAATCGACTTTAGAGAGTATTCTTTCTTGGAAAATCCGTTGCTCCCGAAACAAGTGAAAGAATCATGGCTTGATGTTCAGCTTTGTAAACAAGAAAGTGAAGGTTGTAGTGCATCAAATGATACAGTTTTACCAGGTGTCCTCAAATTTCCTAAGGGCAGCAATGAAGACACGTTCAAAGCAATATTTTCCACATTCAAGGATGTCAAGGTTATCCAGTTCTCTACAATGCAAGATGCCTTCCCTGGTTTCTCTGATAAGAAAAGGGAAGAGAAGTTCAGGAACCGAGTCAAGCGTTACGTCGGCATATGGTGTTGTGTGGAGAATGCAGCTCCTGGCCACATATATTACGACATGTACTGGGATGAGAAACCCAATTGGAAACCACACCCGCCTCGAACACCCGAGGAAGATCGACCTCCTTTGTAA MPPPEAFNLSKELVQKRAKDNIIIVTFGNYAFMDFILSWVKHLTDLGLTNLLVGAMDTKLLEALYWKGIPVFDMGSHMSTVDVGWGSPTFHKMGREKVILIDSILPYGVELLMCDTDMVWLKNPLPYLARYPAADVLTSSDQVVPTVVDDRLDKWNEVTGALNIGIFHWRPTEASKKLAKEWKEMLLADDKIWDQNGFNELVHKKYGPSVDEDSELVYAYDGNLKLGVLPASIFCSGHTYFVQAMYQQFRLEPYAVHTTFQYAGTEGKRHRLREAMVFFDPPEYFDAPGGYLSFKPSIPKNLVLEGEHNLDTHFTLINYQMKQIRTALAIASLLNRTLIMPPLWCRLDRLWFGHPGVLQGSVTRQPFICPLDHVFEVNVMLKELPEEEFGPGIDFREYSFLENPLLPKQVKESWLDVQLCKQESEGCSASNDTVLPGVLKFPKGSNEDTFKAIFSTFKDVKVIQFSTMQDAFPGFSDKKREEKFRNRVKRYVGIWCCVENAAPGHIYYDMYWDEKPNWKPHPPRTPEEDRPPL Homology
BLAST of Cucsat.G7857.T7 vs. ExPASy Swiss-Prot
Match: Q8VXZ5 (Arabinosyltransferase XEG113 OS=Arabidopsis thaliana OX=3702 GN=XEG113 PE=2 SV=1) HSP 1 Score: 957.6 bits (2474), Expect = 5.9e-278 Identity = 434/533 (81.43%), Postives = 489/533 (91.74%), Query Frame = 0
BLAST of Cucsat.G7857.T7 vs. ExPASy Swiss-Prot
Match: F4I6V0 (Beta-arabinofuranosyltransferase RAY1 OS=Arabidopsis thaliana OX=3702 GN=RAY1 PE=2 SV=1) HSP 1 Score: 74.7 bits (182), Expect = 3.5e-12 Identity = 43/153 (28.10%), Postives = 76/153 (49.67%), Query Frame = 0
BLAST of Cucsat.G7857.T7 vs. ExPASy Swiss-Prot
Match: Q9FXA7 (UDP-D-xylose:L-fucose alpha-1,3-D-xylosyltransferase 3 OS=Arabidopsis thaliana OX=3702 GN=RGXT3 PE=1 SV=1) HSP 1 Score: 59.7 bits (143), Expect = 1.2e-07 Identity = 74/306 (24.18%), Postives = 121/306 (39.54%), Query Frame = 0
BLAST of Cucsat.G7857.T7 vs. ExPASy Swiss-Prot
Match: Q9LN62 (Arabinosyltransferase RRA3 OS=Arabidopsis thaliana OX=3702 GN=RRA3 PE=2 SV=1) HSP 1 Score: 57.4 bits (137), Expect = 5.8e-07 Identity = 61/218 (27.98%), Postives = 96/218 (44.04%), Query Frame = 0
BLAST of Cucsat.G7857.T7 vs. ExPASy Swiss-Prot
Match: Q9C9Q5 (Arabinosyltransferase RRA2 OS=Arabidopsis thaliana OX=3702 GN=RRA2 PE=2 SV=1) HSP 1 Score: 53.9 bits (128), Expect = 6.4e-06 Identity = 58/212 (27.36%), Postives = 90/212 (42.45%), Query Frame = 0
BLAST of Cucsat.G7857.T7 vs. NCBI nr
Match: XP_004142646.1 (arabinosyltransferase XEG113 [Cucumis sativus] >XP_031740342.1 arabinosyltransferase XEG113 [Cucumis sativus] >KGN54526.1 hypothetical protein Csa_012220 [Cucumis sativus]) HSP 1 Score: 1123 bits (2904), Expect = 0.0 Identity = 533/533 (100.00%), Postives = 533/533 (100.00%), Query Frame = 0
BLAST of Cucsat.G7857.T7 vs. NCBI nr
Match: XP_008444233.1 (PREDICTED: arabinosyltransferase XEG113 [Cucumis melo] >KAA0052240.1 arabinosyltransferase [Cucumis melo var. makuwa] >TYK01803.1 arabinosyltransferase [Cucumis melo var. makuwa]) HSP 1 Score: 1105 bits (2858), Expect = 0.0 Identity = 522/533 (97.94%), Postives = 528/533 (99.06%), Query Frame = 0
BLAST of Cucsat.G7857.T7 vs. NCBI nr
Match: XP_038898700.1 (arabinosyltransferase XEG113 [Benincasa hispida]) HSP 1 Score: 1080 bits (2794), Expect = 0.0 Identity = 509/533 (95.50%), Postives = 521/533 (97.75%), Query Frame = 0
BLAST of Cucsat.G7857.T7 vs. NCBI nr
Match: XP_022140507.1 (arabinosyltransferase XEG113 [Momordica charantia]) HSP 1 Score: 1058 bits (2736), Expect = 0.0 Identity = 495/533 (92.87%), Postives = 516/533 (96.81%), Query Frame = 0
BLAST of Cucsat.G7857.T7 vs. NCBI nr
Match: KAG6591863.1 (Arabinosyltransferase, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 1044 bits (2699), Expect = 0.0 Identity = 488/533 (91.56%), Postives = 512/533 (96.06%), Query Frame = 0
BLAST of Cucsat.G7857.T7 vs. ExPASy TrEMBL
Match: A0A0A0L348 (Nucleotid_trans domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_4G358640 PE=4 SV=1) HSP 1 Score: 1123 bits (2904), Expect = 0.0 Identity = 533/533 (100.00%), Postives = 533/533 (100.00%), Query Frame = 0
BLAST of Cucsat.G7857.T7 vs. ExPASy TrEMBL
Match: A0A5A7UAL7 (Arabinosyltransferase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold113G00360 PE=4 SV=1) HSP 1 Score: 1105 bits (2858), Expect = 0.0 Identity = 522/533 (97.94%), Postives = 528/533 (99.06%), Query Frame = 0
BLAST of Cucsat.G7857.T7 vs. ExPASy TrEMBL
Match: A0A1S3BAN6 (arabinosyltransferase XEG113 OS=Cucumis melo OX=3656 GN=LOC103487624 PE=4 SV=1) HSP 1 Score: 1105 bits (2858), Expect = 0.0 Identity = 522/533 (97.94%), Postives = 528/533 (99.06%), Query Frame = 0
BLAST of Cucsat.G7857.T7 vs. ExPASy TrEMBL
Match: A0A6J1CH62 (arabinosyltransferase XEG113 OS=Momordica charantia OX=3673 GN=LOC111011153 PE=4 SV=1) HSP 1 Score: 1058 bits (2736), Expect = 0.0 Identity = 495/533 (92.87%), Postives = 516/533 (96.81%), Query Frame = 0
BLAST of Cucsat.G7857.T7 vs. ExPASy TrEMBL
Match: A0A6J1FFS8 (arabinosyltransferase XEG113-like OS=Cucurbita moschata OX=3662 GN=LOC111443543 PE=4 SV=1) HSP 1 Score: 1044 bits (2699), Expect = 0.0 Identity = 487/533 (91.37%), Postives = 512/533 (96.06%), 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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