Sgr019027 (gene) Monk fruit (Qingpiguo) 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.TTATGTGATGAAGACTGAGCAAAGCATTCCTCTTTGTAGTTGTTTATTGCTGGGGTCATTTATATTCTACCCTATATTTGGTTCTTGCCTCGATGGCACTTCGCACTCTAGTGAGGTCAGCCCTTGTAATTTATGTTTCTTGACTCATTATCTTTTTCAATTATTAGATTTAATGTGTAATCTATGATACTGCATGTATGGTTGTTTTATATGCTATATTTATTCTGGTATATCTCACTATCTTCTGTCGTTAACAAAGAGCTGTTACTTGTTGGGTTTAGGGTAAAATTGTGCTATTAGTTTTTATATCTTTCATTGTTAGTGAACGAACTCTTGCTCCATCTAGCTGTTATATAAAGGTTGTTATCTTTCTTCTTTATCATCATTTTTTAAATAATGGATTTTTTTCTTTCTCGAATTGTAGATTTTAGACATAAAAAGTAGGAAGGATGCATGTTGAACCAGATCAAAGCTATTTAGAAAACGGGTTTGGATTCTATCATGGGTACATTGCGAGTTGAGAAAGGATTTACTTCATCTCATGTTGTTAAGCTTCTTGAATGCAACTTGCATGTTAGTATAAACCATCAAGGTTGCATTTATTTAGGCCGATTGGTAGCAGCTACCCAAAGTCAGTGAGGTTTGTATATTTTAAAGTTGTAAACGCTTTGGTTAATTGTTGTTTCCTTCTTAGCCGGTTTATATAAGTTTGCAGCTAGATGGGATGAGTGCAAGTTTTGCATCTATCATTATGTGCAGCTCAGTTACCTTTTTTTTTTTTTTTTTGAGAGAGGAAACAAGCAGTTCATATCATTGATGAATGAAATAATACAAAAGGAGGGATAAATCTCAAGAGCCCAAAAATGGAGTTACAAAAAGATCTTCCATTTGGCCAAAAGTATTTACGACTATAATCTGAAAATGGTTGCTTGCATTTACACCTGTAAAGAGCCACAAAGAGAACAGAATTCAAAAAGGAGTCAAAAGGTTCTTTGGAATCGTTGAAGATGCAGTTGTTCCCTCTTAAGCCATATCTTCCAAAAGAAAGCCCTTACTAAATTAAGCCGCAAAGGTTGCTTCTCCTCTTTAAATGGATGCCCAGTAAAAATAAATGTAAGGAAATCAGCCATATGTGTTGGAAGCGCCGTGGACTACTTGAAGTTGCTGACATTAAATTCCAGAAATTCTGAGCAAATGGGCAGAGGACGAAAAGGTGTGTTTGAGATTCATTGTTCTTGCGGCACATGGAACACCCGTTACGTTTATGAATTTGAATGCTGCACTTGCGCCCCTAGTTCATGATTGGATTGAGTGGATGGACATTGGGGTTTCTGATATGGGATTTTGTGTTCTTATTTTTCTTTTTGGCTACAACAATATCCCATACTATTCTGGAGTAATGCAAGAATTGTGGACAGATGGGAATCTATAATAACTTGGAACAAAGGTGGACCAAATGGATCTTTTTGCCTTATATGGCCTTCCGGTAGAAAATTAAATATCTTCTTTAATTAATGAACATGAAATGAAGCTTAAAGATAGAAGGGATGAACTAAATCCCACTTTAAACCTCTACCAACTTTTCTATGGATTAAGGGTTTTGTATCTAAAAAAGGTTGTCCCTAACTTTTATTGAAATATATGTAATCTTGACTCATTATCCTGTCCTCTTTGGTTCATTTGTCGCCAAATTTTTGCTGAGGTTTGAAGTGAAGTTGTTTTGCTGGTAGTGAGTTTTGTGCTGGTATAATGGTCGTTGCCAAGTATATGTTAAGCTTTTAGCTGGCCTACTTTTGGTAGTTTTGTTTCGGTTTGCTTTGTAACTATTATAGGGTGGCTTTTCAATCAGGCTAAGAACCTATTTCAGACTGAATAGAATCTCATTGGAATTGCTGTTGTAAGCATTCATTTCTCAGATAACTTTGCACCCTCTTTGTTTCTGAATTGTGACATTAATAAACATTAAAAAATGTGATTTATCTTTTCCTCTGTATGTGAATGGAGCTGAGTTCAACTACTGCACAAGTGTTTGCTATTATTTGATGGATCTGTGTTGGTGGAAAAGAGCATCATAAATGTTCTGAAGACACCAAACTAGTTCATCTTGACAAGATAATTTTGTATTCCAAATCTTACTCTTGTACTTCAATTTGTCAGGTTGGAAGATATATTATGGAATCTTATTATGATAAACATGAAAGCTTTATTGATTCACTTTTTGATGATTTCCTTACTCAAGAGCTTCCTGCCAACATATGTGAACTTCTACCATGTGATCTAAATACTGTGCTAAGTCTCTCAGTTCTGTGGAAGATTAAGGGTGAAGGTTCTCATCGTCAACTTTCATCAACCGTCAAGTTCAACATCGAAAAAACCATATCTCAGTTTCCCCCTCACCATTGTAAGATTATTATCATTGAACGACTGCCCTCGGGAGTTTTTGCCGACCCATTTGAATTGGAACATCTTCTTCATCGTGCTGGTAAAACATGAGCTAATATCTCTTGGTTTCTTTTCATAATTGTCCATTTCTTAACCTAAGCAAGTGGCATTGCTGTCATTGTCTGTTTGATAGGTTCAACTTTTTGCTGCTTATTATATTTTTCTTCTTTTGGCAGTATTTAGCGATGTAGCTGTTTTTGGAGATAGAAATTTGGAATTGCCTTCAGTCCTCTCCAACCTCTCTGTTGTGGAGGTCCACAAGGACGTTGGTCTCAATATCTTGTCACGCAACAAGAAATTGCTTGATTTCTCCATTAATCTGCCTTTGCATTCACGATATCCGGTAAGCATGAAAAATCTTTATTTTAGTTCCTAAACTTTAAAAAATCATTTTGGTTTTTGACATTATCTTCTTGTTAATTTTTTAACAAATAGGTAACATGACTTTCAAATATGTATTAACATCCTGATGTGGGCATGCATTAAAGCCACGAAGGGTGATTGAGGTGGGTATTTAGTGGGTGAATTGAGGTGGGTATTGAGTGGGTGGATATTAGGTTGTTGAATAATAATAATGACCAAAATGATTGTTTTTTTAAAGTTTAAAGACTAAAATAGATATTTTGAAAATTTAGTGACTAAAATAGAATAAAACTGAAAGTATAGGGACTAAAGTAGACATTTTCAACATTCAAAGATTAAAATGGAGTAGTCTCGAAAGTTTTAGGACCAAAATGAGATAATTTGAAATCTTGGATGGAACTTGACAAGTTCTTACTGTAAACTACCATTCACATCCTACAAGTGATAGCAAATAAATTTTGTTGCTGTTTGCAGCCATTGGATGAAACCGGTTATGTGCAAGTTAGATTGAAGGCTCCGGACTTGTTTTTGCAGTGTAGCATGCAGGAAAGGCCACATAATTGGAGTTGTTTATTTAAGTTGCAGAGCGACGACGCCGAGGCAGACCTTACATGGTCGATACCAGCAGGTAAACGATCGAATGGCGGAGTTGTAAGTGTTGCGACCTTTATTTCTGCTTTGTTATCAGTAGTATCAATAGTATTTTCTACACAAGCTAGACTGGGCAAAGGTTTGAAGCAATGTTAATTGGTTGTAACATTTTCTTCACTTCCATATTATGTTAAGTTTTGGCTCAAGAAACCTGAATATTATAAGCCTAAGATCTTTTGAAAAATAATGCTTCTAATTTTGGTAATAGGAATTAAAGAAATAGGGAAAAAGATGAAAGATACAACTATTACATAGGTTATGAAGAAGTGTTTTTATTTTTCCCATCAAAACCTTCTTATGAGGTTTCTAATATAATAAGGTTTAAATTCTATTTTGATTCATGAATATCTAAGTTTATTTTATTTTAGTCTATACTTTTAAAATGTCATTTTAGTATATGAACTTTTTAAAATAACTATTTTAGTTCATAAACTTTTAGAATGTCCATTTTAATTTTTGAACTTTTTTAAAAATAACTATTTTAGTTCTTGAACGTTCAAGATGTTAAGTCTTTGATCTTTTAAAAAATAACTATTTTAGTTTTTTGTTATTATTTTGTCCTTGATATTGGTACACCTAAGGCTCGTTTCATTCAACTTATGTGATTCAAATACATGCTCATGATAGTATGTAAATACATATACTCAAAGTTATGATATTCATTTATGAAAGTAAAATAACTGTAATGACCAAAATAGTTACTTTTTTTATGTTTAGATATTAAAATAAACATTTAAAAAATTTTGGCATCAAAGTGAAATAAACTTGATAATTTAAAACTAACATAGACCATCTAAAAGTTCAAGACCAAAATAGAATAATTTTGAGATTTAAACTAAATAATGATCATATCTACAAGTTTTATTTTCACCACATGGGACAATGTAAGCTAATGATATTGAGGGAGAGGGGGTTTACTTTGTCTTCGTGGAAATGTTCGTCCTTTTTTCTTATTTGTTTATGTTTAAATGGAATTAATATTAGAATTAGTTACTTTAGAGATTCTAGTTTCAGATAAATTCTCAATTTTTCTTCTTATAAAATAAGATCTACATAAAAATAATATCTTATGTTTTATTTATGAATAACCAATAAAACAATTTTAATGGATTTAGATTTCAAAACTGAAATAGGCCAATTCAATATATTTAGTTTTCAAAAATAATATTGAAGAAACATACAATAATGATACATTACACTTTTGGTCTTCGAATATTTATTGTTTGTTTATTTAGTTCCTAGATTTTTAAATCTTTTGATTTAAGTATCAACTTTTGTGAAATAATTATAGATGGCCTCTCTACTAACAAAAAGTTGACCCCAAGCTATGTAATTCGGTGACATGACAATGTTTATGTGTCTTACAAGTTAGCATGACAAATTTATCACTTAACCAAATCTAAATGGCAAATTTAAACCAAAATCAGACAAAAGCAAGTCCCATGTAGGTTTAAAACCTGTTGCCCCCTTGTTTCACTCTTTTCCTAGTTATTCTTCTTTCCTTTCTTCTCCTTCAATTTTGGGCACGGATTTGATCGTAAAGCAACACATTAAGTAGAGGCATAAAGTGTTGATTAATTTGATGGATAATGTGTTGGCGTTTTTGTATCGCAAAGGAAAGTAGTTCGAATATGAGTACGGTGGTTTCTTTGTGTGGATTATGAGCAACTATTGAAAGCTTCATAAGCAAAAGCAAATCTAGAATAAAAGGTTTTGGCGATACGCTACTTATATGGTGATTAAGAAAATATCATTTATTGGATTGATTTAGTCAACGTGACATTTTGGTTGAAATTAATTGTAAGGAAGGGCAACATATTGTTTTTTTTTTTTTGCTTGACATGAGTGACCTAAGAGATGTGTACAATTTTTTATTTTTTTTTAGTTCAACAATTGCAGGTGTGGGAGATTTAATCATCGATCTTTGGGATGATAATAAATGTCTTATTTACTGAGCTATGCTCATATTGGCAAGAAAAATGTAGACTTGGGAAGCAACTTCTTAATTTATAAAGGGTTTATTGGCTTCTAATTATAATATTTGTGGAATTTATATTGTATATATGGGAGTTTAATTAATTTTAAACAAATTTGGATTCTTTTCTTGTAATGAAAATTAGGATGGAAAGTCCATATTTGTTTCTATAGATTGTTGGGCCTATTCTTTTTGGATGAGGAAGTTATATAAACTTTAACACATATAATTCTTATAAATACGTTGATTGTATATGTAAGATAGGGTCGATCATTACAAAAAATGGCTTGATCGTGGGGGCAGAGGTTTACTGACATTTTCAGTCTCTATCGAGTAACAATGGGTTTAAGGTGTATAGAGACACCTTGTCCTTGTAGGTTTCTTTGTTTGGTTATCTATTTTTTAAAAACGTGCTCAAAATCTAAGCAAAATTTTAAAAACTAAAAAAAGTAGTACTTAAAAACTTGTTTTTTTTTTTTTTAAATTTGGTTAAAAATTCATATGTGTTTTTCTTAAGGTGAAAAACATACCAAAAACATTGTGAAGAAGCAAATATAATTTTTAAAAACAAAAAATTAAAAACGAAATCGTTATCAAAGAGGGCTTTAATTTGTGCATTTTTGAGTATGATAGATTTTGGTCTTTTCCCACTGTACACCATAATGCAAAATCCTTTTTTTGGCTAGTGATAGTTTTGTACAAGTTAAATTACAAATTTAGTCTCTAAACTTTGATAATTGTATCTGTTTAGCTTCTTTTGATTCTAATAAATTTTTGTCATAAACCCTTAATCAAATGTTGATGTGATATGCTGATTGGATTAACAAATAATAATTTAACAACGTGACATAAAGATTAGGCCAACTTGAAAAATAAGGACAGACGAGCAGAGAATGCAATTTAAATTGAATTTCTTAGCCCACCCGCCCTTATTTTATTTGATTAGCTTACTTCTTGTGCCACTCGTTGCCACATTGTGTCTAGTCATCACTCATTGGCCTAATTAATGTGATATGTTAATATTTAGGTAATCTTGTTAATGGTAAGGACTAATTGGACTCGATTGAAAATTTAGAGATTAATTAAAAAATTTTAAGTTCAGGGACTATATAGATACAAGCATCAATGTTTAAAGATTAAATTTGTAATTTAACTATCTTAAACATTCTTTGGCCCTTTTTTTTATAATAATAATTTTCCTTATTCAAAGCTTACTTGTTAATAACTCTATTTTTAGAAATAGAAAACTATGACAAAAATTGCATGTTTTTGGCTTGCAATTGTCTTAAAACCATTTAGGGTTGTAAAGCGATTCGGTTTGGATTTTAAAAAAAAAAAAAAAAAGATTTTTTTGGCAAAACTAATGTTGAATCAACATGACGGTTTATGAAAATTTCAGAACTTATGCTGAATTTTTTTTTTTATCGAATCGAACCAAATTGATTGAAATCAATAAAATTTATCCAAACTGAACTAATCAATTATTTTTTAATTTTATAGCATAAAAATCAAACTGACCAATAAAACAAGTTCAAATCTATTGAGCTGACCTGATTTAGTTGGTTTCGTTGGTATTAACTTGCATTCCTAAAAATACATGGACATTACGCTTGAACAAAAGAAAACAAATAGAAGCCAAATCTTGAGGTATAGGAAATGAGCTTGTCCATTATTTATTTTTAATAATAAATATAGGTAAATGAATTATTAAATTATATTTCAAGTAATTAAATAGTAATTTATTTTCAAAAAGCACCAACAGAGAATTAAATAGTATAAATAAACAATATATTCACAATCCCAAATTGCTTGCTTCTAATTCAATATTACAAACCAATTTGTTAATTAAATAATACTTATGGCAAAAAAATAAAAAATGAATCATTAAAATAATCATATGTAAACAAAATAATTCATTGTCAAAATTTGGATACAAAATTTGTTTCTATTCAATATATTCTCTACTAAAATTTACTCATTTCTTAACGAAATAATATGTAAATATATTACTTAAGAAATAAATAATTATTTTTAAAAAGAACTTAAGAAATAAATAACCATAATTTATTTAACAAATACATAAGTTTCCAATTTTACTTTTTTTTTTTTTTGAAAGGCATCCAATTTTACTTTTACCACTTACCAACTTACAAACCAAATATATATTATACAAATTTAGTCTTATGGACCAATTAAATATAGGTTACACAACTCATATATTATGTAAATATGTTTATTTACGATGATTAATAAATTTGGTTTCATGTTCATTCCTATTATAATAATTATTATTCACATTCGAATTATTTTATCATTTATTCCTCTAATATAATTTATTTTAAAATTTTAGAGTGTGTTTAAAATATTTTATATTCTCTTTGATTCTCACTATAACATTTTAAATTTTGGAATGATTTATATACCATCAAATATTCTCGTTCGAATTTTTTTTTTCTCGAATACTCTGGCAGGAGAGTCTCTCAACTTATGGCTGAATTTTAGGACTTTTGGGAATCCTGCCTACTCCTTCGTTTCCAAGGTTTTTTTTTTTCAATGAATTTGATGAGCTTCTTAAGGGATGGCAGAAGTTGAGTCTGACATCTGAAAGGATGAGGTGACGGTAGATCTGAGAGTAGTGTTGTTGAGAGAACACAGTAAACGGCTGGACCTCTGGCGGGTGGGAAATCGATTTTGTGTCATATTATAGGAACACAATGGTCATTGTGTGGAAGTTGGATAGTGACACTGTTGAAAATATTGGGAGAAACCTTTTCCTCTTTTTCTTTCGTCGAGTAGTGGATAGGAATAGGGTTTTCAAATTGGGGCCTTGGTTTTTTGATAAATTCTTGATGGTGTTGGAAAGCCAAGCGATATGGTGAAACTTGAAGAACTGAAATTCAATAAGGTGGCTTCTGGACTTATTTTTATGGTTTTCCTTTGGCTTGTAGGAACAACGCAATGGCCTGTGTTTAAGCAATGCAGTTGGACCTTTTGAAGATGTTGATTGTGGCCTGGATTAATTCTATTGGGGGGAGAGTCTTCGAGTTCGTGTTCTTTGATATTTCAAAGCCCCTTCGGAGGGGGATTAAGATAAATATTGATGGACCTATAGGAGTTGTTGGATCCCAATGAAGTTCGAGAAATCATCGAAGAAGTTTCAATACGGGACTTGGCTTCGTTTTTAAGGAAGTGTGAAGACTATTGCAAATCATAAAATTTGGGAGAGCAAAGGATGAGACTCTACTGTTGGTTTCTGATCAAGAATAGGGGTGGAGTGTGTTGGGTGGGAAAGATGGTTTGAATGGCGACTAGAGGGGATCGAAGAAAGGTCTGTTACAGGTAGCAGTCGGTGAAGGAACTACAGTGGCCACAATGTAGATGTCAATGAGGTGGGCGTGCTTGGTGGAAATTTTAATGAAAGTGAGAAATAGTGGAGGCGTTTTTCGAATTGAATAAGGCAGATAATGAGGAATTAGTGATTAAGTAGTTATCACATTTAATTCCAGAAAAGAATATTCAGTTGACATGGAAAAGAATGAGAGGGAATCTGCAATTTTGGTTGGTGTCTCAAAACTAGATTTGAAAACTGTGCGGTAGCAGTGGGCCAAGGGATTTTGAGTGGGCCAGATTCTTCTTCTAAGGCCTCACTGACAGATCACAGATTGGAGGAATTCAGGCTTTAG TTATGTGATGAAGACTGAGCAAAGCATTCCTCTTTGTAGTTGTTTATTGCTGGGGTCATTTATATTCTACCCTATATTTGGTTCTTGCCTCGATGGCACTTCGCACTCTAGTGAGGTTGGAAGATATATTATGGAATCTTATTATGATAAACATGAAAGCTTTATTGATTCACTTTTTGATGATTTCCTTACTCAAGAGCTTCCTGCCAACATATGTGAACTTCTACCATGTGATCTAAATACTGTGCTAAGTCTCTCAGTTCTGTGGAAGATTAAGGGTGAAGGTTCTCATCGTCAACTTTCATCAACCGTCAAGTTCAACATCGAAAAAACCATATCTCAGTTTCCCCCTCACCATTGTAAGATTATTATCATTGAACGACTGCCCTCGGGAGTTTTTGCCGACCCATTTGAATTGGAACATCTTCTTCATCGTGCTGTATTTAGCGATGTAGCTGTTTTTGGAGATAGAAATTTGGAATTGCCTTCAGTCCTCTCCAACCTCTCTGTTGTGGAGGTCCACAAGGACGTTGGTCTCAATATCTTGTCACGCAACAAGAAATTGCTTGATTTCTCCATTAATCTGCCTTTGCATTCACGATATCCGCCATTGGATGAAACCGGTTATGTGCAAGTTAGATTGAAGGCTCCGGACTTGTTTTTGCAGTGTAGCATGCAGGAAAGGCCACATAATTGGAGTTGTTTATTTAAGTTGCAGAGCGACGACGCCGAGGCAGACCTTACATGGTCGATACCAGCAGGGGTGGAGTGTGTTGGGTGGGAAAGATGGTTTGAATGGCGACTAGAGGGGATCGAAGAAAGATTTGAAAACTGTGCGGTAGCAGTGGGCCAAGGGATTTTGAGTGGGCCAGATTCTTCTTCTAAGGCCTCACTGACAGATCACAGATTGGAGGAATTCAGGCTTTAG TTATGTGATGAAGACTGAGCAAAGCATTCCTCTTTGTAGTTGTTTATTGCTGGGGTCATTTATATTCTACCCTATATTTGGTTCTTGCCTCGATGGCACTTCGCACTCTAGTGAGGTTGGAAGATATATTATGGAATCTTATTATGATAAACATGAAAGCTTTATTGATTCACTTTTTGATGATTTCCTTACTCAAGAGCTTCCTGCCAACATATGTGAACTTCTACCATGTGATCTAAATACTGTGCTAAGTCTCTCAGTTCTGTGGAAGATTAAGGGTGAAGGTTCTCATCGTCAACTTTCATCAACCGTCAAGTTCAACATCGAAAAAACCATATCTCAGTTTCCCCCTCACCATTGTAAGATTATTATCATTGAACGACTGCCCTCGGGAGTTTTTGCCGACCCATTTGAATTGGAACATCTTCTTCATCGTGCTGTATTTAGCGATGTAGCTGTTTTTGGAGATAGAAATTTGGAATTGCCTTCAGTCCTCTCCAACCTCTCTGTTGTGGAGGTCCACAAGGACGTTGGTCTCAATATCTTGTCACGCAACAAGAAATTGCTTGATTTCTCCATTAATCTGCCTTTGCATTCACGATATCCGCCATTGGATGAAACCGGTTATGTGCAAGTTAGATTGAAGGCTCCGGACTTGTTTTTGCAGTGTAGCATGCAGGAAAGGCCACATAATTGGAGTTGTTTATTTAAGTTGCAGAGCGACGACGCCGAGGCAGACCTTACATGGTCGATACCAGCAGGGGTGGAGTGTGTTGGGTGGGAAAGATGGTTTGAATGGCGACTAGAGGGGATCGAAGAAAGATTTGAAAACTGTGCGGTAGCAGTGGGCCAAGGGATTTTGAGTGGGCCAGATTCTTCTTCTAAGGCCTCACTGACAGATCACAGATTGGAGGAATTCAGGCTTTAG YVMKTEQSIPLCSCLLLGSFIFYPIFGSCLDGTSHSSEVGRYIMESYYDKHESFIDSLFDDFLTQELPANICELLPCDLNTVLSLSVLWKIKGEGSHRQLSSTVKFNIEKTISQFPPHHCKIIIIERLPSGVFADPFELEHLLHRAVFSDVAVFGDRNLELPSVLSNLSVVEVHKDVGLNILSRNKKLLDFSINLPLHSRYPPLDETGYVQVRLKAPDLFLQCSMQERPHNWSCLFKLQSDDAEADLTWSIPAGVECVGWERWFEWRLEGIEERFENCAVAVGQGILSGPDSSSKASLTDHRLEEFRL Homology
BLAST of Sgr019027 vs. NCBI nr
Match: KAG6595617.1 (Phosphatidylinositol-glycan biosynthesis class X protein, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 441.8 bits (1135), Expect = 4.8e-120 Identity = 215/254 (84.65%), Postives = 232/254 (91.34%), Query Frame = 0
BLAST of Sgr019027 vs. NCBI nr
Match: XP_023518489.1 (phosphatidylinositol-glycan biosynthesis class X protein isoform X1 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 440.7 bits (1132), Expect = 1.1e-119 Identity = 214/253 (84.58%), Postives = 232/253 (91.70%), Query Frame = 0
BLAST of Sgr019027 vs. NCBI nr
Match: XP_022924982.1 (uncharacterized protein LOC111432368 isoform X1 [Cucurbita moschata]) HSP 1 Score: 440.7 bits (1132), Expect = 1.1e-119 Identity = 214/253 (84.58%), Postives = 232/253 (91.70%), Query Frame = 0
BLAST of Sgr019027 vs. NCBI nr
Match: KAG7027590.1 (Phosphatidylinositol-glycan biosynthesis class X protein [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 440.3 bits (1131), Expect = 1.4e-119 Identity = 214/253 (84.58%), Postives = 231/253 (91.30%), Query Frame = 0
BLAST of Sgr019027 vs. NCBI nr
Match: XP_022156040.1 (phosphatidylinositol-glycan biosynthesis class X protein isoform X2 [Momordica charantia]) HSP 1 Score: 431.8 bits (1109), Expect = 5.0e-117 Identity = 210/255 (82.35%), Postives = 227/255 (89.02%), Query Frame = 0
BLAST of Sgr019027 vs. ExPASy Swiss-Prot
Match: Q8TBF5 (Phosphatidylinositol-glycan biosynthesis class X protein OS=Homo sapiens OX=9606 GN=PIGX PE=2 SV=3) HSP 1 Score: 65.5 bits (158), Expect = 1.2e-09 Identity = 42/135 (31.11%), Postives = 69/135 (51.11%), Query Frame = 0
BLAST of Sgr019027 vs. ExPASy Swiss-Prot
Match: Q60GF7 (Phosphatidylinositol-glycan biosynthesis class X protein OS=Rattus norvegicus OX=10116 GN=Pigx PE=1 SV=2) HSP 1 Score: 61.6 bits (148), Expect = 1.8e-08 Identity = 42/135 (31.11%), Postives = 66/135 (48.89%), Query Frame = 0
BLAST of Sgr019027 vs. ExPASy TrEMBL
Match: A0A6J1EAJ2 (uncharacterized protein LOC111432368 isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111432368 PE=3 SV=1) HSP 1 Score: 440.7 bits (1132), Expect = 5.2e-120 Identity = 214/253 (84.58%), Postives = 232/253 (91.70%), Query Frame = 0
BLAST of Sgr019027 vs. ExPASy TrEMBL
Match: A0A6J1DS28 (phosphatidylinositol-glycan biosynthesis class X protein isoform X1 OS=Momordica charantia OX=3673 GN=LOC111023009 PE=3 SV=1) HSP 1 Score: 431.8 bits (1109), Expect = 2.4e-117 Identity = 210/255 (82.35%), Postives = 227/255 (89.02%), Query Frame = 0
BLAST of Sgr019027 vs. ExPASy TrEMBL
Match: A0A6J1DP69 (phosphatidylinositol-glycan biosynthesis class X protein isoform X2 OS=Momordica charantia OX=3673 GN=LOC111023009 PE=3 SV=1) HSP 1 Score: 431.8 bits (1109), Expect = 2.4e-117 Identity = 210/255 (82.35%), Postives = 227/255 (89.02%), Query Frame = 0
BLAST of Sgr019027 vs. ExPASy TrEMBL
Match: A0A6J1HRK4 (phosphatidylinositol-glycan biosynthesis class X protein OS=Cucurbita maxima OX=3661 GN=LOC111466072 PE=3 SV=1) HSP 1 Score: 429.9 bits (1104), Expect = 9.2e-117 Identity = 207/253 (81.82%), Postives = 231/253 (91.30%), Query Frame = 0
BLAST of Sgr019027 vs. ExPASy TrEMBL
Match: A0A1S3B562 (phosphatidylinositol-glycan biosynthesis class X protein isoform X1 OS=Cucumis melo OX=3656 GN=LOC103486129 PE=3 SV=1) HSP 1 Score: 418.3 bits (1074), Expect = 2.8e-113 Identity = 200/253 (79.05%), Postives = 224/253 (88.54%), Query Frame = 0
BLAST of Sgr019027 vs. TAIR 10
Match: AT5G46850.1 (unknown protein; Has 1807 Blast hits to 1807 proteins in 277 species: Archae - 0; Bacteria - 0; Metazoa - 736; Fungi - 347; Plants - 385; Viruses - 0; Other Eukaryotes - 339 (source: NCBI BLink). ) HSP 1 Score: 156.8 bits (395), Expect = 2.9e-38 Identity = 99/222 (44.59%), Postives = 130/222 (58.56%), Query Frame = 0
BLAST of Sgr019027 vs. TAIR 10
Match: AT5G46850.2 (FUNCTIONS IN: molecular_function unknown; INVOLVED IN: GPI anchor biosynthetic process; LOCATED IN: endoplasmic reticulum membrane; EXPRESSED IN: 22 plant structures; EXPRESSED DURING: 13 growth stages; CONTAINS InterPro DOMAIN/s: PIG-X/PBN1 (InterPro:IPR013233). ) HSP 1 Score: 156.8 bits (395), Expect = 2.9e-38 Identity = 99/222 (44.59%), Postives = 130/222 (58.56%), Query Frame = 0
BLAST of Sgr019027 vs. TAIR 10
Match: AT5G46850.3 (FUNCTIONS IN: molecular_function unknown; INVOLVED IN: GPI anchor biosynthetic process; LOCATED IN: endomembrane system, endoplasmic reticulum membrane; EXPRESSED IN: 22 plant structures; EXPRESSED DURING: 13 growth stages; CONTAINS InterPro DOMAIN/s: PIG-X/PBN1 (InterPro:IPR013233). ) HSP 1 Score: 156.8 bits (395), Expect = 2.9e-38 Identity = 99/222 (44.59%), Postives = 130/222 (58.56%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Monk fruit (Qingpiguo) v1
Date Performed: 2022-08-01
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.
|