
Spg033338 (gene) Sponge gourd (cylindrica) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: CDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATGCTCAAAGAACCTTTCGTTGATTCCACAGAGCGACAAACAAAACCCAATAATCGGAATGGAATATCCATAAATGGAGTCTCTTCAGACCTTCCCAGATACTCTTCAATTCCACTAGACGAAAATTTCTCTCTATTGGGTTTTCGATTGCTTGCTTTGTTACCCAACTTTACAAATTTATCAGACAGCTAAAATTCTTCCTTTTCCAAAAACCCCAACTCAGACACTGCACCTACTATATTATATGCTGGCAAACTCCTTTTCATAATGACCACCACTTCTCTTTCTATAAATCTCTCTCTTTCTCCTCCTCCCTTTTCCTCTGCCGCTGCCGTTGCAACCACCACTTCCTTCTATGAAGCCCCCTCTTCTTTGAGATTCCCACATTTTAGATCTTCAACTTCAAACCCCAGAAGTTTGTTTTGTGAAATTTCTCGATTTCGTTGCTTGGAGGGGTTGGAGAGGAATAGGGGAAGTGGGATTTTCAGTGTTAAGGCTAACAAAATGACTATTGCTGAAGTTAGGCCTGAAGATGGCGAGGAAGACTGCCCTCCCTTGCTTGACCCTGAAACTAATTCCAAACCTCGTCGTATTGCTCTCTTTGTTGAGCCTTCTCCCTTTGCGTGAGTCTTTCTATGCTTAATCAATTTGTGATTTCTGGTGTTGGGTTTCTGTTGGCCTTGTGTATTTGTTGCCCATCTTCTATTTTACGGTTTTCATATAACTTTCAAGTTTAAGTTACTTGGAATCGAATACTTAGCTTATCTTATGATTTTGCTTCAACTGCTCTTTCTTTTTCCCCATTGTACTTTGTGTCTTACACGGCTTAGTTGCATCTAAGGGTTGCTATATGCTTGATGTCAAATGAGAGGTTACTTTGGATCTCATTCTTGGGCTTCCTTTTTAAGCATCTTCTTGAAGGGGTTACTTCTAACTTTATTGACTCAGCTTTTGGATCCTGTGGATGAACATTTAGTTTCATAACTGCTTAGCTGATAGCTATGTTGTATCAGATGTGCAAGACTGTTTCTTTGTTGCAGTAATTTTACTTTTACCAGAACAATTAGCTGCATTGATCTATACTTGAATCATTGTTTCTCTATCCATGGATCTGTTTGTTTACAGATATCTTTGTTATTACATTGGACTTGTAGAACAGTCTTGAATGTCATGAAAACCTTAACTTTTATTATTAGTTGTTCTTGCACTGACATTCTGCCAAATTTTGGAACTAGTCCCCATTTCTCGTGTATTGTGTTACAACTTTTGAATTTCCTAGTGTCGCATTTTTTCTTATGGCTCAAAGAAATTGTTGTTTGTTGAGGCTGAATATCGTAAACGGATTCTTGTCAATTGCTTGGATGCCATTGGATATCAATCTGGGTAGTTATTTTGACAAATGCAGTTGAGAATTCTCACTTACCAGTCAACATCTTAATATGTCTTTTCATCTGAAACTTTTCTTGATGGACATATATATATATACACAATATATATAATAAGAAATGTTGTTGGAATTAGAGATGAAATGTACTGGCATGGTTTGAACAGTACGGCCTAACATATTGTGATTTGTGAACTAGGCAGATAATTTCTTATTCTTCTTTATATCATTGACTTCATCCTGCTGATACTTATCATTGAATCATTGCATTGTTGGTTTTACAGATATGTGTCGGGATACAAAAATCGCTTCCAGAACTTCATTCGCTATCTACGTGAAATGGGCGATGAGGTTCAATTGTATCCCCTTCCTACTTTCTGTTTTAGCACATTGACATGCATTTTTAACCAATCTTAAATTCTTTAATGCAACAAGCTTGACTGTGTTCTACTTAATAAGTTTTTTGCTCTGTGTTAGGATACAAAGTAAGCAATTCATATGGAAAAAAAAAAGAAAAAAATGTGTGAATAGTTTAGCAATAGACAACTTGACTTATTTATTTATTATTACTTTTTTTTTTTTAATAAATTACTTAGGTTATGGTTGTTACAACTCATGAAGGCGTACCAAAGGAGTTTTACGGTGCGAAATTAATTGGATCACGAAGGTAAGTTAGGTACTTCATGTCAGATGATAACATTTAATAACCTATGACCTTCTCTAGTCCCCTCTCATATTGCTTCTTATCTCAGTTTTTTTTCCCTTTCATAAAGTTCATAATATTAAGCCTTCAGTTTCAGCAGAAATTTCTACCTATTACTCAAATTATCTTTTAACTATTGGCAGCTTTCCATGCCCTTGGTATCAGAAGGTGCCCCTTTCTCTAGCACTTAGTCCAAGAATAATTTCAGAAGTTGCTCGGTTCAAACCCGACATCATACACGCTTCATCACCCGGGATAATGGCAAGTGTCGATATCATCCCATTGTATTTTGAAGTTCTTAAATTTTGCAAGCAGATTGACCATTTTGAAACTGTATTCTAGGTGTTTGGAGCTCTGATTATTGCTAAACTATTAAGTGTACCGCTAGTTATGTCTTATCATACTCATGTACCAGTGTAAGTTATTTTCTTATCCTTTTGGGGACTTTTTCCCCTTGGACGTATTTCAATCTACTATCATCTACCAATTTCAAACATTGGAGAGACAAGAACAGTTACATTCGAGATGATATTGTTGTCGATTATATTCGATACTACATTTATTCAAAAAAAAAAAATATTAGATACTACATTACCATAATCTGTCTTTTTTGATGTGCAGATACATTCCAAGATATACATTTAGTTGGTTGGTTAAACCCATGTGGCTCGTTATAAGTACGTGAAGATTTATTCTATTCCATCATATCAATATGAATGTTAAGGATCACTATTTAGAATTCAGTCTTTCTTTTTAGAATTCCTCCATAGAGCGGCTGATCTTACCTTGGTTCCATCTGCTGCCATTGGCAAGGATCTTGAAGCTGAAAGAGTGACAGCAGGTGATTTGAAATAGTGCATGAACAACAAATGATAGATTTTCTTTTATCATATTCTAGTCTATGAAAGTGGTAGATTCATTTGACATCTTTTTTTGTTTTATTTACCTTAGACCATATATTCACAAGCAAGTTATAGCATTGTTATTTACTCTATTTCTCATTCTTTGCAGCTAACAAGATTCGACTTTGGAATAAGGGTGTAGATTCTGTTAGCTTTCATCCTTGCTTCCGCTCTCATGAAATGAGATTGAGACTTAGGTAAGATGCCATCATATATATTTCTTAAATCATGTAACTTCAAAGATTATCTCCTTTAACACGGTTCGTTTTTGTCCAACAGCGGCGGCGAGCCTGAGAAACCACTGATAGTTCATGTTGGAAGACTTGGAGTTGAGAAGAGCTTGGATTTCCTCAAAAGGTATTGATTTCGATTAGTAGAAATTTCGAAAATATGGTTAGCTTCCTTGGCCTTCTCTGCTTAGATATTATTGTTTAACACTAACATATAATGTTTAGAGTTTGGATGAGGTTGGAGTTTACAAAATGATTAAGAAAAAGTGGCTGCCTGAGTGTGCTCAGATTTCATTAATTAGATAAGGATGAAGTTTTAAATGATTGAGCTTTGACGATAACTTTTTTTTTATTATTATTAGAAATAACAACATTTATATAAATGAAGTGATTAGAAAAGTTGAGGACGAAATGTAATCCTCATAGAGAAACAAGTACAAAAACCATAGAAAATTTTGTTCAAAGGGAGATTTCTTCAACGGGCTTGGTTTCTGTCTTTTGTCATGCCCAAAATCACTTTTGTCATACCTAAAATCACTAAAAATGGAATTTTGGCCCTTCCAAGATGCCTCCGAAACATACCCTTTGTATGACCTACTTTTGTTTTTGGATTTTTCTGTATCTCTTAATGAAAGTGCTTATATATATACTAAAAGGGAAAAAGAGAGTCTCCTGAGAGTGAATTCCAAAGGAATTAACTCCATACCTACCTTCAAAAGCAGAAACACCAAAAACAAAACAATAATAAGGAAGCTCCACCATCACTAGTAGAAAGGCGTTTCCTTTTGCAGAATTTGTCTCAATATTCAAAGTCAAAACCATTTGAGGATTTAGATTGTAGGACGATTCTCGAACTATTTAATGATCCTTCTTACCTTCATCTCTATTCTCAAAAGAAATTGCAAAAGGCTTTTTTAGTTCTTTTAACAAAGTTCGGTACTCGGAGGATGATAGAGAGGAAGGTTCTCTAAAGTAGAATACTAAGGCTCCATTTGATAACCATTTGATTTTTGTAAATTATGTTTATTTTCTCCCAATTTCCTTACGATGGTTTTCATCTTTGTTAAGAAAACATTTGAATTCTTAGTCAAATTCCAAAAACAAAAACACATTTTTGAAAATTACTTTTTTAAGTTTTCAAAACTTGACTTGGTTTTTTAAAATGTGAGGAGAACCTAGATAACAAAACAAAGAAGCTTGTAGGTGAAAGTAGTGTTTATAAACTTAATTTTCAAAAACCAAAAGATTATCAAACGAGGTCTAAAATATTAAAATTACTATTTTTCTTATGTGTATGCTATAAGAATGAAAGTTGAGAATTGAGTATAAATTGTGCTTCCACCTCTCATATCACACACTTCCTTCCACCTTTGAATATGTTATGATCCTCATAAAATATGTAGCTTTACATATGTTGCTAAAAATAAAATATGCAGCGTTACATATATTCATGTCTTGCAAACATTAACATCTGTTTCCACAATATGATAGGATCATGGATAGGCTCCCTGACGCTAGAATTGCGATCGTTGGAGATGGACCGTACAGGTACCTGTTCTAGAATTTGAAAGCTGTAATGAGATTATTATCTAAATTTGTTGAATCAGCTTAAGAGAATGTACTTATCTTAGCCTGAGCCTAACTCAACTAGATAAGACATAACCCTGTCCCTCGACCTGAGATGTTCAAATCCCCTCACTCAACATATTTTTGAACTCAGAAACAGATTGTACTTATCTTAAACTGGTAGACCTACCAGACTATCACAGCCACTCTTTAGCATATCTTGAACTAAATCATTCTGAAAAACCAAATGCTAGAGTGGGGAACTCTTCTTTTGATCATGACATCATTGTTGGTCTAAATGTACAAGTCTCTGATGCTATACTGAAGGTGGAACAAACAACTTCTCTTTTGCTTAATCTATGTTGAACAGTGACAGTTAATTAAAATCATGGACAGAATTGATTTATGCTTTGTTTGTAAATGTTTGATGTATTTTCTTTCATGGCAGGGAGGAGCTAGAAAAGATGTTCACTGGCATGCCTGCAGTATTTACAGGCATGTTATCAGGGGAAGAGCTATCTCAGGCTTATGCCAGTGGCGACGTGTTCGTAATGCCTTCCGAATCGGAGACATTGGGACTTGTCGTGTTGGAGGCTATGTCCTCTGGGATCCCCGTGATCGGAGCTCGTGCTGGTGGAGTTCCAGACATAATCCCTCCCGAACAAGACGGTAAAATCGGCCACCTTTACACCCCAGGAGACATCGACGACTGCTTAAGTAAGCTCAAGCCTCTGTTGGAAAATCGCGAACTGAGGGAAACAATGGGGAAAGCAGCTCGCAAGGAGATGGAGAAATACGATTGGAAAGCCGCAACTCGAGTAATCCGTAACGAACAATACAATGCTGCCATATGGTTCTGGCGCAAGAAAAGAGCTCAGTTTCTAAGACCATTCCAATGGCTGTTTAAACGAATTTTTTCATCCCCAGAAGTTAGTTATCAGTGAAATGCTTCAGACCTGTTCTCTATATTTCTACCAGCCTGGTTTCATTAGCAGAAGATGGTTCCCATTTTCCAACGAGTGAACATCCGTGTGATTGTTTGTTATAATATACATTCATTGTGTATATATTCATTAAACCAGAAGGAAAAAAAAAAAAAAAAACTGGTCAACTTTGTAGTTCATATCGTGATTAATCCATCATGTAGACTATTGGTTCCATTTGTACCCATAATGCAAAATTTAAAACTTTCAAGTGTTTCAACATTTCCC ATGCTCAAAGAACCTTTCGTTGATTCCACAGAGCGACAAACAAAACCCAATAATCGGAATGGAATATCCATAAATGGAGTCTCTTCAGACCTTCCCAGATACTCTTCAATTCCACTAGACGAAAATTTCTCTCTATTGGACACTGCACCTACTATATTATATGCTGGCAAACTCCTTTTCATAATGACCACCACTTCTCTTTCTATAAATCTCTCTCTTTCTCCTCCTCCCTTTTCCTCTGCCGCTGCCGTTGCAACCACCACTTCCTTCTATGAAGCCCCCTCTTCTTTGAGATTCCCACATTTTAGATCTTCAACTTCAAACCCCAGAAGTTTGTTTTGTGAAATTTCTCGATTTCGTTGCTTGGAGGGGTTGGAGAGGAATAGGGGAAGTGGGATTTTCAGTGTTAAGGCTAACAAAATGACTATTGCTGAAGTTAGGCCTGAAGATGGCGAGGAAGACTGCCCTCCCTTGCTTGACCCTGAAACTAATTCCAAACCTCGTCGTATTGCTCTCTTTGTTGAGCCTTCTCCCTTTGCATATGTGTCGGGATACAAAAATCGCTTCCAGAACTTCATTCGCTATCTACGTGAAATGGGCGATGAGGTTATGGTTGTTACAACTCATGAAGGCGTACCAAAGGAGTTTTACGGTGCGAAATTAATTGGATCACGAAGATACATTCCAAGATATACATTTAGTTGGTTGGTTAAACCCATGTGGCTCGTTATAAAATTCCTCCATAGAGCGGCTGATCTTACCTTGGTTCCATCTGCTGCCATTGGCAAGGATCTTGAAGCTGAAAGAGTGACAGCAGCTAACAAGATTCGACTTTGGAATAAGGGTGTAGATTCTGTTAGCTTTCATCCTTGCTTCCGCTCTCATGAAATGAGATTGAGACTTAGCGGCGGCGAGCCTGAGAAACCACTGATAGTTCATGTTGGAAGACTTGGAGTTGAGAAGAGCTTGGATTTCCTCAAAAGGATCATGGATAGGCTCCCTGACGCTAGAATTGCGATCGTTGGAGATGGACCGTACAGGGAGGAGCTAGAAAAGATGTTCACTGGCATGCCTGCAGTATTTACAGGCATGTTATCAGGGGAAGAGCTATCTCAGGCTTATGCCAGTGGCGACGTGTTCGTAATGCCTTCCGAATCGGAGACATTGGGACTTGTCGTGTTGGAGGCTATGTCCTCTGGGATCCCCGTGATCGGAGCTCGTGCTGGTGGAGTTCCAGACATAATCCCTCCCGAACAAGACGGTAAAATCGGCCACCTTTACACCCCAGGAGACATCGACGACTGCTTAAGTAAGCTCAAGCCTCTGTTGGAAAATCGCGAACTGAGGGAAACAATGGGGAAAGCAGCTCGCAAGGAGATGGAGAAATACGATTGGAAAGCCGCAACTCGAGTAATCCGTAACGAACAATACAATGCTGCCATATGGTTCTGGCGCAAGAAAAGAGCTCAGTTTCTAAGACCATTCCAATGGCTGTTTAAACGAATTTTTTCATCCCCAGAAGTTAGTTATCAGTGA ATGCTCAAAGAACCTTTCGTTGATTCCACAGAGCGACAAACAAAACCCAATAATCGGAATGGAATATCCATAAATGGAGTCTCTTCAGACCTTCCCAGATACTCTTCAATTCCACTAGACGAAAATTTCTCTCTATTGGACACTGCACCTACTATATTATATGCTGGCAAACTCCTTTTCATAATGACCACCACTTCTCTTTCTATAAATCTCTCTCTTTCTCCTCCTCCCTTTTCCTCTGCCGCTGCCGTTGCAACCACCACTTCCTTCTATGAAGCCCCCTCTTCTTTGAGATTCCCACATTTTAGATCTTCAACTTCAAACCCCAGAAGTTTGTTTTGTGAAATTTCTCGATTTCGTTGCTTGGAGGGGTTGGAGAGGAATAGGGGAAGTGGGATTTTCAGTGTTAAGGCTAACAAAATGACTATTGCTGAAGTTAGGCCTGAAGATGGCGAGGAAGACTGCCCTCCCTTGCTTGACCCTGAAACTAATTCCAAACCTCGTCGTATTGCTCTCTTTGTTGAGCCTTCTCCCTTTGCATATGTGTCGGGATACAAAAATCGCTTCCAGAACTTCATTCGCTATCTACGTGAAATGGGCGATGAGGTTATGGTTGTTACAACTCATGAAGGCGTACCAAAGGAGTTTTACGGTGCGAAATTAATTGGATCACGAAGATACATTCCAAGATATACATTTAGTTGGTTGGTTAAACCCATGTGGCTCGTTATAAAATTCCTCCATAGAGCGGCTGATCTTACCTTGGTTCCATCTGCTGCCATTGGCAAGGATCTTGAAGCTGAAAGAGTGACAGCAGCTAACAAGATTCGACTTTGGAATAAGGGTGTAGATTCTGTTAGCTTTCATCCTTGCTTCCGCTCTCATGAAATGAGATTGAGACTTAGCGGCGGCGAGCCTGAGAAACCACTGATAGTTCATGTTGGAAGACTTGGAGTTGAGAAGAGCTTGGATTTCCTCAAAAGGATCATGGATAGGCTCCCTGACGCTAGAATTGCGATCGTTGGAGATGGACCGTACAGGGAGGAGCTAGAAAAGATGTTCACTGGCATGCCTGCAGTATTTACAGGCATGTTATCAGGGGAAGAGCTATCTCAGGCTTATGCCAGTGGCGACGTGTTCGTAATGCCTTCCGAATCGGAGACATTGGGACTTGTCGTGTTGGAGGCTATGTCCTCTGGGATCCCCGTGATCGGAGCTCGTGCTGGTGGAGTTCCAGACATAATCCCTCCCGAACAAGACGGTAAAATCGGCCACCTTTACACCCCAGGAGACATCGACGACTGCTTAAGTAAGCTCAAGCCTCTGTTGGAAAATCGCGAACTGAGGGAAACAATGGGGAAAGCAGCTCGCAAGGAGATGGAGAAATACGATTGGAAAGCCGCAACTCGAGTAATCCGTAACGAACAATACAATGCTGCCATATGGTTCTGGCGCAAGAAAAGAGCTCAGTTTCTAAGACCATTCCAATGGCTGTTTAAACGAATTTTTTCATCCCCAGAAGTTAGTTATCAGTGA MLKEPFVDSTERQTKPNNRNGISINGVSSDLPRYSSIPLDENFSLLDTAPTILYAGKLLFIMTTTSLSINLSLSPPPFSSAAAVATTTSFYEAPSSLRFPHFRSSTSNPRSLFCEISRFRCLEGLERNRGSGIFSVKANKMTIAEVRPEDGEEDCPPLLDPETNSKPRRIALFVEPSPFAYVSGYKNRFQNFIRYLREMGDEVMVVTTHEGVPKEFYGAKLIGSRRYIPRYTFSWLVKPMWLVIKFLHRAADLTLVPSAAIGKDLEAERVTAANKIRLWNKGVDSVSFHPCFRSHEMRLRLSGGEPEKPLIVHVGRLGVEKSLDFLKRIMDRLPDARIAIVGDGPYREELEKMFTGMPAVFTGMLSGEELSQAYASGDVFVMPSESETLGLVVLEAMSSGIPVIGARAGGVPDIIPPEQDGKIGHLYTPGDIDDCLSKLKPLLENRELRETMGKAARKEMEKYDWKAATRVIRNEQYNAAIWFWRKKRAQFLRPFQWLFKRIFSSPEVSYQ Homology
BLAST of Spg033338 vs. NCBI nr
Match: XP_038904694.1 (sulfoquinovosyl transferase SQD2 [Benincasa hispida]) HSP 1 Score: 827.4 bits (2136), Expect = 6.8e-236 Identity = 425/514 (82.68%), Postives = 437/514 (85.02%), Query Frame = 0
BLAST of Spg033338 vs. NCBI nr
Match: XP_008442461.1 (PREDICTED: sulfoquinovosyl transferase SQD2 [Cucumis melo]) HSP 1 Score: 823.9 bits (2127), Expect = 7.5e-235 Identity = 424/514 (82.49%), Postives = 435/514 (84.63%), Query Frame = 0
BLAST of Spg033338 vs. NCBI nr
Match: XP_004137727.1 (sulfoquinovosyl transferase SQD2 [Cucumis sativus]) HSP 1 Score: 819.3 bits (2115), Expect = 1.8e-233 Identity = 421/515 (81.75%), Postives = 435/515 (84.47%), Query Frame = 0
BLAST of Spg033338 vs. NCBI nr
Match: KGN59044.2 (hypothetical protein Csa_002616 [Cucumis sativus]) HSP 1 Score: 818.9 bits (2114), Expect = 2.4e-233 Identity = 421/514 (81.91%), Postives = 434/514 (84.44%), Query Frame = 0
BLAST of Spg033338 vs. NCBI nr
Match: KAA0044155.1 (sulfoquinovosyl transferase SQD2 [Cucumis melo var. makuwa]) HSP 1 Score: 812.8 bits (2098), Expect = 1.7e-231 Identity = 424/543 (78.08%), Postives = 435/543 (80.11%), Query Frame = 0
BLAST of Spg033338 vs. ExPASy Swiss-Prot
Match: Q8S4F6 (Sulfoquinovosyl transferase SQD2 OS=Arabidopsis thaliana OX=3702 GN=SQD2 PE=1 SV=1) HSP 1 Score: 568.9 bits (1465), Expect = 5.7e-161 Identity = 301/511 (58.90%), Postives = 356/511 (69.67%), Query Frame = 0
BLAST of Spg033338 vs. ExPASy Swiss-Prot
Match: Q8NT41 (GDP-mannose-dependent alpha-mannosyltransferase OS=Corynebacterium glutamicum (strain ATCC 13032 / DSM 20300 / BCRC 11384 / JCM 1318 / LMG 3730 / NCIMB 10025) OX=196627 GN=mgtA PE=1 SV=1) HSP 1 Score: 118.2 bits (295), Expect = 2.7e-25 Identity = 88/241 (36.51%), Postives = 121/241 (50.21%), Query Frame = 0
BLAST of Spg033338 vs. ExPASy Swiss-Prot
Match: P9WMY4 (GDP-mannose-dependent alpha-mannosyltransferase OS=Mycobacterium tuberculosis (strain CDC 1551 / Oshkosh) OX=83331 GN=mgtA PE=3 SV=1) HSP 1 Score: 117.9 bits (294), Expect = 3.5e-25 Identity = 79/192 (41.15%), Postives = 104/192 (54.17%), Query Frame = 0
BLAST of Spg033338 vs. ExPASy Swiss-Prot
Match: P9WMY5 (GDP-mannose-dependent alpha-mannosyltransferase OS=Mycobacterium tuberculosis (strain ATCC 25618 / H37Rv) OX=83332 GN=mgtA PE=1 SV=1) HSP 1 Score: 117.9 bits (294), Expect = 3.5e-25 Identity = 79/192 (41.15%), Postives = 104/192 (54.17%), Query Frame = 0
BLAST of Spg033338 vs. ExPASy Swiss-Prot
Match: A0QRG8 (GDP-mannose-dependent alpha-mannosyltransferase OS=Mycolicibacterium smegmatis (strain ATCC 700084 / mc(2)155) OX=246196 GN=mgtA PE=3 SV=1) HSP 1 Score: 116.3 bits (290), Expect = 1.0e-24 Identity = 73/181 (40.33%), Postives = 100/181 (55.25%), Query Frame = 0
BLAST of Spg033338 vs. ExPASy TrEMBL
Match: A0A1S3B6D3 (sulfoquinovosyl transferase SQD2 OS=Cucumis melo OX=3656 GN=LOC103486318 PE=4 SV=1) HSP 1 Score: 823.9 bits (2127), Expect = 3.6e-235 Identity = 424/514 (82.49%), Postives = 435/514 (84.63%), Query Frame = 0
BLAST of Spg033338 vs. ExPASy TrEMBL
Match: A0A0A0LAA5 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_3G732460 PE=4 SV=1) HSP 1 Score: 819.3 bits (2115), Expect = 8.9e-234 Identity = 421/515 (81.75%), Postives = 435/515 (84.47%), Query Frame = 0
BLAST of Spg033338 vs. ExPASy TrEMBL
Match: A0A5A7TRY6 (Sulfoquinovosyl transferase SQD2 OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold236G005090 PE=4 SV=1) HSP 1 Score: 812.8 bits (2098), Expect = 8.3e-232 Identity = 424/543 (78.08%), Postives = 435/543 (80.11%), Query Frame = 0
BLAST of Spg033338 vs. ExPASy TrEMBL
Match: A0A6J1CW02 (sulfoquinovosyl transferase SQD2 OS=Momordica charantia OX=3673 GN=LOC111015087 PE=4 SV=1) HSP 1 Score: 778.9 bits (2010), Expect = 1.3e-221 Identity = 413/521 (79.27%), Postives = 425/521 (81.57%), Query Frame = 0
BLAST of Spg033338 vs. ExPASy TrEMBL
Match: A0A6J1F0Z0 (sulfoquinovosyl transferase SQD2-like OS=Cucurbita moschata OX=3662 GN=LOC111441391 PE=4 SV=1) HSP 1 Score: 775.0 bits (2000), Expect = 1.9e-220 Identity = 405/514 (78.79%), Postives = 417/514 (81.13%), Query Frame = 0
BLAST of Spg033338 vs. TAIR 10
Match: AT5G01220.1 (sulfoquinovosyldiacylglycerol 2 ) HSP 1 Score: 568.9 bits (1465), Expect = 4.0e-162 Identity = 301/511 (58.90%), Postives = 356/511 (69.67%), Query Frame = 0
BLAST of Spg033338 vs. TAIR 10
Match: AT3G45100.1 (UDP-Glycosyltransferase superfamily protein ) HSP 1 Score: 53.5 bits (127), Expect = 5.7e-07 Identity = 32/116 (27.59%), Postives = 53/116 (45.69%), Query Frame = 0
BLAST of Spg033338 vs. TAIR 10
Match: AT3G45100.2 (UDP-Glycosyltransferase superfamily protein ) HSP 1 Score: 53.5 bits (127), Expect = 5.7e-07 Identity = 32/116 (27.59%), Postives = 53/116 (45.69%), Query Frame = 0
BLAST of Spg033338 vs. TAIR 10
Match: AT1G52420.1 (UDP-Glycosyltransferase superfamily protein ) HSP 1 Score: 47.0 bits (110), Expect = 5.3e-05 Identity = 30/95 (31.58%), Postives = 50/95 (52.63%), Query Frame = 0
BLAST of Spg033338 vs. TAIR 10
Match: AT3G15940.1 (UDP-Glycosyltransferase superfamily protein ) HSP 1 Score: 45.4 bits (106), Expect = 1.6e-04 Identity = 31/95 (32.63%), Postives = 49/95 (51.58%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Sponge gourd (cylindrica) v1
Date Performed: 2022-08-01 Position : 0 Zoom : x 1
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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