Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGGGAGCTGCAGAGAGGAAGAAGTGGCTATTTGCACTATTCTCCGCTTTGTTAGTCTCTCTCCTCCTCTTCCTCACAGCTATCTCAGGACTCAACGCCTCATATGCTTTCACTTCCTGGAGCAACAGGCCCACAGCACTCCCGAACCGCGGACCGCAGTTTCCACCGTCCTTCGCTTACTACCTTTACGGCGGACCGGGAGATAAGGAGCAAATTTTCCGGCTATTGCTGGCCGTCTACCACCCACGGAATTGGTATTTGTTGCACCTCTCAGCCGAGGCATCGACAGAGGAGAGAGAATGGCTGGTTGCTGCGCTGAGGTCGGTGCCGGCGATTCAGGCTTTCGAGAATGTGGAAGTGATTGGGAAACCTATATGGTTGACTTACATGGGAGCTACTAATATAGCAGCTACGCTTCGAGCAGCTGCTGTGTTGTTGAAGCTGGATGATGGGTGGGATTGGTTTATTACTTTGAGTGCTTCTGATTATCCTTTGCTTACCCAGGATGGTATGTGATTTTTTTTGGTAATTATCTATTTGTGGAAATACTTGCTAACTTGATGATATTTATTATTATTTCCTTTTGTGGGTTTATACGAGGGAGGTATCTTGGCTGAATTTGACTTGCTTTTTCTGGCTGTTTCTGTACAGTGCTAAATAGTTAATATTGTTTGCCTTAATTTGAGTAATTGATTTACTCTTGATTTAGTCATGTTTGGAGACCTTTACTTGATATGACCTGAGATATTTTGGGTTGACTGTGTAATTATGTTACGTTTCAATGCGAGAGAAATATTGATGTCAGTCGGGGCACACAGTGTTTCCTGATTCGTTTTAAGGTTACTAACATTGTCTATGTAGGCAGGCGTAGTAAGTTTGGGGAAGTTTTTAGTTGTGGCCCATTATCTTTTTTGTTTGATGAGATACTTTATTAACCGAATCTGTTGATAAAAAATAATTTTACAGTGCGTAAATTTGTGTGATGATCATTGGATGACTGTATTTGTGGTTCACGGCTGATAAAGGCAGTTATATATACTGTCTTGATGTTGCACTGTGGAGTAGGTTGTCAATAACAGAAGTATTCATATTCATGTCAAACTAATAGAGTCAAAGAGAACTAGATCTTTAGGGAATGTAAAAAATATGGGTGGTCACTTGGTATTTGAAAGAAATCATGAAAGGTTTCACCGTTCCTATGAACATGCTTTTATATTCGGAAGTGTAGGCTGATGGGCTTGGCTTATTTTATTACTCCTCAGTGCTGAAAAGTTAATTCTCGTTTGCACTTGAAATGATGAATAATTGTCATCTCTAGCCAGGACACTGCTCTTAGACTTTCTTGCACAAGCATGACATCTCTTAAGATAGGTGGTAGCTGGTATTGACCCCCGCCCCCCTCCCCGCAGATCAATTGAATTCTTGTAAAACCATTGTGTTTAGATGACGGTGGGCTTGTGGCTGCACAAGAAAGATAATTTTGAAAAACACGTTCTTTATGACACATTATCCCCCGATCTTAGAAAGTGAGTTAGTAATAATTCAGATGCTGATGACTGCTCACCATATTGTCTTCTCAGTTATTTTAGAGATGTAGGTCTTCTCGGGTTCAGGTGGGTTTGTATGAAAGGAAGTTGCAACTTGCAAATGTACTTCCTTGATGTTTGTTGTTATAGAACTTGGGTGTTGACCCATTACAAGTTTACAACTTCACCAGCTTGCCTCATCCTCTGAGATGAACGCTGTGCTTGCCTAGGGTTATTGCACCTTTTTACCTTGGGTTACATGAGGCCTTATTCAGACTGAAGAATTCATCAACAAAGGCAACTAAAAATGTTAGAGATAAATAAATATTCCTGTTTTCCTTACATTGAAAACATGTTTGGTGATATGCAAAGAATTTTTGACCTGTAGATTTTCATATTTTAGATTCCTCATGACAGAGGCTGTGAAAGTTGAGGTGGGAGCTATTTTGAGGCATCAATGAGTAGCCATATGCACGTATTGAGATTTGAGAATCTATGTTGGCGCTCTAGAGTCCAACATCAATGTTCCTCCCGTTATGGTGTATTTTGTTGAGGAAGAAATAAAAGGAAATGCTTCCACATCATTACTTTTTTTTTGCTACATCAGATTCTGTCCGTTTTGAAATAATAGTTACACTTGCTTTTTCACGGTCTCCAAATCTTTTGACCATTAATATATTTAATTATGTATTTGGACGAGTTATAATAACATGATAATTATTAAATTACTCATTGAGACGATTAACAAGACCCCAAAGATAATATTTTGATGTTTGTATAAGCGGCAATATCTGGTCAAAGATTTCAAAGTTCGACCTCAAAATGAAAAGTGTAACAATTATTTCAAAACGGAGGAGGTACCTTCTAGAAAATTGTTCTGAACGTTTCTTTGCTAGGAGAAGCATCTGGTTTTTAATTTATCCTCGGGGGCTTTGGGGCCTGAGAGGTGGGGTTAGTTGGAGATATGGAAATGCTGCCGAAGTTATGTGGTTAGGGAAATTAAGCGAGAAAGGGGGAAGAACTTTTCAGTTGCAGGATTGAAAAGGTTTTAATTTTTTTTGGGGGGTTGGATATTGTCTTCGGTCCTTTAGGCTTCTTGAGTCATAAAAGGCCTTGGAGTGTAGGATTTGATATTCTTCAATGCCCATGAAGCATGCTTAGTAGATTTGTTGAACTGTTAATTGAGTTGGGTTTAGATGAGCTGTTATATTGAGTTGGATTTTGTTGACCTTGATGAATTTGAGGGTTTAATGAGGCATTGCACGTTGCTTGTGTCTACTGTAAAGTGAGGGGAAAAAAGAAAGCAATGGCCTATAAATGCTCAGCTTTTGGACGCTTTAGGTACTTTGCCCTTAGTAGTTAGTTGTGATACTGTAGAGTGGCTTATATTGGGATTTGTGGATACCTCCATTAGGGTTAGAAGTAAAAGTTACATTCATGCTTCATGGATGAGACCTGATCCTCGATAGATTTCTATATACCTGCAAAATTTTCTCAGTAATAGCTGAAATAGAGCAATAGCCAAATATGGTTTAGGCAAAGATATTTGAAATTTCTTTACATTTTGGCAAGGCAATAATAGGTGGCAGAGTTGAATCTTCTTTTGATTGCTGCCAATTTTTGTACTACCTCGGTTTTTTTCTACTCACTTGGTGTAGATTTGCTATGGGATATTTGGAAAAGGTGGGTGGGTTTAAGGCATGAGAGAGTGTTTGCCAAAAATGGAATAAATTGAGTTTATGGTTGTGTATAGCAGTATAGGGTATCAAACTACTCGATACTGTATCAGCCAAATTGCAAATTTTAGATTTTTTTTTATAAGAAAAGAGATTAGATTATATTAACAGTAGGATGCCTGTCAGTTTTTTTATATTAACAGTAGAAAAAAGAAGAGCAAACAATGAGGACAAGGCTGTCCTCTTATCTAGAAAGCAAAATTACCGATTGCCCCAATTTCTTTGTACCTCCCCTTTCGAGTAAGTCTTGGAAGCCCCACTGGCCTTAGCCCATGAAGATGCTAAAAATGTTACTTTGCCCCACAATAACTCAGAAGGTAACGAAACTCGGGAACAGACCCTCGCGTTTCTGTCCAACTACACACACCACATAATTGCCATGAAAGCATTGTGCCACAACAATCACTTCTCCTTACCCTTACCAGACCCCTAAAGCAAATTTCCAGCCAATCCAATATCTTTGAAGGGCAAACCGAAGTTTCCCCATGAACTGCAGTTAATCTCCTCCAAAGGTAACATGCCATATCATAATGTAAGAAAACATGTGAACATGGCTCACTATTAGCACGGACAAACATCCACCAAATCTGACCTACGCTTTTGTAGCATGTCATTAGTATTAATTCTCCCTAACGCCAATGTCCACACAAAGCCCTTACCTTAAGAGGTACCTTCACCTTTCAGATGAGATTTGCTACTGTAAAAGCTGGAAACTTAGGTGGTCTGTTTGAGTTGATGCTTTGTGTATAGAGTATAAAACTACTATATACTGTATCAGCCAAATTGCAAACTTTAGTATTAGTAGTTTGTTGATTGGTTTTTTAATAGTTCTTGCTTTGTGTTAATTCAAAACACCAATTTATATGGGACAAGAAAACATAAAATTAAATAAATAAAGAAACTAGTTTGGCGTTGTGTATGACTTGTTACCGATACTTAATCCACAACAACAAAATAACGGCTGAACCTTACTGATGCTTTCTTGCAGATCTAGTGGTCATTTTATTTTTGTTAAGTTATTACTGGCTTATTGTGTCTGAAATTCTGAATGCGTTCAGAATTTCCCTTAATTTTGTGACGGGGGCAAGAGTGTGGTGGGGAAGTGGGGGGATGCAGGGATGAAGAAGAAAGAACCGGAAAAGGTCAGGGGAGAAGTTGGATTAAGATAAGGGGCTGTTTGGTTCACCTAAAAGAAAGGGAAAAGAATCAAGAAAGAGAAATACAAGGAAAAGAATCAAGAAAGGGACATTGAAAAAAGTGTTTGGTTCATATCTCCCAAGTCCCAACTCCTTTCTTGCAGGCAGCATTTCCACCCTCTTCAATCATCATGTACAAAGCTAACTACTACTTGTATAAAATATATTGCCTAATGCCTACCATTTTCCTCCATCTCCATTCTCCACCCTTTCCATTTTTCGCCACTGCTATCTTCTTCATCGCCAACATCTTCCATCATCCGACTTTGGTGGCTGGATTTGACCATAGAAGCTCTAGATCGAGAGCTTTAATAGTCGGATTTGACCATAGAAGCTCTAGATCGAGAGCTTCAATAGTCGAATTTGATCACCTAAAGATCATTTCGTTATCTCACTGTCCTCATCAAAGAACTTGCAGGTTTGAAGCTTTATTCAATTTTTTTCTTGGGTTAGTTTGGTATTTGTTTTTATGGTGTTGCTGGTGGCGAATTATGGGGGCAGAGTAAGGTGAGTAGTTTTGTGGGGTCAGGTGCCGTGGTGGTGTGGCTGTGGAAGTCTGGTTCAGGTTGTTACTGACTTGGGGTGGGGAGTGGAGTAGGGTTAAGAAGGTGAGTGGTGGTGGGATTGGGTCATTTGGTGGTCGCCACTGCGGTGCCGCCATGGAGGGGTCATGGACGCCGGGTAACCGTAAATGGGCTGAAGGCCGGTGGGAGTTCAGTTGGTTGGTGGTGTTAGGGCTGAGATGTGAAAGCTCAAGTTGCGGAATCCAAGTACCAAGAAGGGTGTGGGGATTGTGATAAAACCAAAGTTGGGGAACTTGAAACAGAAATGTGGGGTAAGGGAATGATAAAAAATTTCATCCAAACAGTCAATCCCTTGGTGACTGTTTGGTTGGAAATTTTTATCCTTCCCTTTCCCTTTTCTGATTCCACCCATCCGAACGCCCCCTAAGTTTATCCTCTGCAGTGTGTCATAGGTCACATATCTTGTCTCTTCTATTTGTATTCCATTTACTCTATCAAGTGAACAATTAGTAACTGTCCATTAAAAGACCATGTACAGAAGAGAGCATTTGCACTCCCGGGTCAGAAGACTCAGAACTCAGGGGCAAGGCTGCTAAATGGTAACGTGCTAACGTCTTATTCCGGGCTTCTACCGCTCTGGGTGATTTTGATGTTATGGTATGCCAGTCACTTGGTTGACCTGCCTAGGCTGGGTGCTGTTGTATCATCAGCAATCATCAGAAGTTTGAAGTGAAGAGAACTATGCTCTTCATGTCTTACATTACACTTGATTCTTTTACTTCCCTCTACCCCTCTCGCCTTTTCATGGCTCCTCCACCCTCCTCTCCCCCTTGGCCCCTTCATGCGGGCGCTTCCCCTCCAGATTTTGTCTCTCCCTGCCCCGGGATAATTCGCTCTTATGTGTTGGCGGCCATTTTTTTTTATAGTTATGAACTTATGACAGCTATGCTTTCTGCGGATTTCAACATATGCTTGTATGATGACTTGATGAATACTTTTGAGTTTTGACTAAGCTGCTGCATTTCGTACTTGAGCTAAAAAATGCTGGTTTTAGTATCCATATTTAGTTATGATTCATTTCCTTTGTTGATGCTGATAAAAGTCTGTTTACCTATTTACTTCAGACTTGGCTCATGTATTCTCATCAACTAGAAGAGACCTCAATTTCATTGATCACACCAGTGAGCTCGGTTGGAAAGAGTAGGCAAACCCTTTCATCAACTTAAGCAATCATTTGCGGCAAATAAATCTGATTGTACTCACACCGGGGGTGTCTTTTCCCCCCAAACATTAAATTTTGCAGGCAGCAAAGAGTTCAGCCTATCATCGTGGACCCTTCAATATACTTAGCCAGAAGAAGTCAGATATTTACTGCAACGCAGAAGCGACCTACACCTGCTGCTTTCAAAGTTTTTACAGGCAACTCTTCTAACCATCCTCCGCTGTTGTAGAATGTAGAGTGAATACAAACACTTGTTATGTTGATAACGATCATTTGCTCTTTTGCAGGTTCTCCCTGGATTATGTTGAGCCAGCCCTTTTTGAAATTTTGTCTCTTTGGTTGGGATAATCTGCCGCGCACCATCTTAATGTATTTTAATAATGCAATGTTACCTCAGGAAGGCTATTTTCATTCAGTCATTTGCAATTCACCGGAGTTCAGAAACACAACTATTAACAATGATTTAAGATACATGATATGGGATAGTCCTCCAAAAATGCAGCCTCACTTTCTGACTGTATCAGATTTTGATCAGATGATACAAAGTGGAGCTGCTTTTGCACGACGATTCAAAAAGGATGACCCAGTATTGACGATGATTGACGAGAAAATACTTCACCGGAAACATAACAGAGTTGCTCCAGGGTCATGGTGTTCTGGCCGTGATAGTTGGTTTACTGATGCTTGTGCCCAGTGGGGTGATATCAACTCTTTGAAACCCGGTCTACAAGCAAAAAGGTTTGCAGATTCTATGACAAACTATATTGATGACCTTAATTCACAGTCTACCCAATGCAAATGA ATGGGAGCTGCAGAGAGGAAGAAGTGGCTATTTGCACTATTCTCCGCTTTGTTAGTCTCTCTCCTCCTCTTCCTCACAGCTATCTCAGGACTCAACGCCTCATATGCTTTCACTTCCTGGAGCAACAGGCCCACAGCACTCCCGAACCGCGGACCGCAGTTTCCACCGTCCTTCGCTTACTACCTTTACGGCGGACCGGGAGATAAGGAGCAAATTTTCCGGCTATTGCTGGCCGTCTACCACCCACGGAATTGGTATTTGTTGCACCTCTCAGCCGAGGCATCGACAGAGGAGAGAGAATGGCTGGTTGCTGCGCTGAGGTCGGTGCCGGCGATTCAGGCTTTCGAGAATGTGGAAGTGATTGGGAAACCTATATGGTTGACTTACATGGGAGCTACTAATATAGCAGCTACGCTTCGAGCAGCTGCTGTGTTGTTGAAGCTGGATGATGGGTGGGATTGGTTTATTACTTTGAGTGCTTCTGATTATCCTTTGCTTACCCAGGATGACTTGGCTCATGTATTCTCATCAACTAGAAGAGACCTCAATTTCATTGATCACACCAGTGAGCTCGGTTGGAAAGAGCAGCAAAGAGTTCAGCCTATCATCGTGGACCCTTCAATATACTTAGCCAGAAGAAGTCAGATATTTACTGCAACGCAGAAGCGACCTACACCTGCTGCTTTCAAAGTTTTTACAGGTTCTCCCTGGATTATGTTGAGCCAGCCCTTTTTGAAATTTTGTCTCTTTGGTTGGGATAATCTGCCGCGCACCATCTTAATGTATTTTAATAATGCAATGTTACCTCAGGAAGGCTATTTTCATTCAGTCATTTGCAATTCACCGGAGTTCAGAAACACAACTATTAACAATGATTTAAGATACATGATATGGGATAGTCCTCCAAAAATGCAGCCTCACTTTCTGACTGTATCAGATTTTGATCAGATGATACAAAGTGGAGCTGCTTTTGCACGACGATTCAAAAAGGATGACCCAGTATTGACGATGATTGACGAGAAAATACTTCACCGGAAACATAACAGAGTTGCTCCAGGGTCATGGTGTTCTGGCCGTGATAGTTGGTTTACTGATGCTTGTGCCCAGTGGGGTGATATCAACTCTTTGAAACCCGGTCTACAAGCAAAAAGGTTTGCAGATTCTATGACAAACTATATTGATGACCTTAATTCACAGTCTACCCAATGCAAATGA ATGGGAGCTGCAGAGAGGAAGAAGTGGCTATTTGCACTATTCTCCGCTTTGTTAGTCTCTCTCCTCCTCTTCCTCACAGCTATCTCAGGACTCAACGCCTCATATGCTTTCACTTCCTGGAGCAACAGGCCCACAGCACTCCCGAACCGCGGACCGCAGTTTCCACCGTCCTTCGCTTACTACCTTTACGGCGGACCGGGAGATAAGGAGCAAATTTTCCGGCTATTGCTGGCCGTCTACCACCCACGGAATTGGTATTTGTTGCACCTCTCAGCCGAGGCATCGACAGAGGAGAGAGAATGGCTGGTTGCTGCGCTGAGGTCGGTGCCGGCGATTCAGGCTTTCGAGAATGTGGAAGTGATTGGGAAACCTATATGGTTGACTTACATGGGAGCTACTAATATAGCAGCTACGCTTCGAGCAGCTGCTGTGTTGTTGAAGCTGGATGATGGGTGGGATTGGTTTATTACTTTGAGTGCTTCTGATTATCCTTTGCTTACCCAGGATGACTTGGCTCATGTATTCTCATCAACTAGAAGAGACCTCAATTTCATTGATCACACCAGTGAGCTCGGTTGGAAAGAGCAGCAAAGAGTTCAGCCTATCATCGTGGACCCTTCAATATACTTAGCCAGAAGAAGTCAGATATTTACTGCAACGCAGAAGCGACCTACACCTGCTGCTTTCAAAGTTTTTACAGGTTCTCCCTGGATTATGTTGAGCCAGCCCTTTTTGAAATTTTGTCTCTTTGGTTGGGATAATCTGCCGCGCACCATCTTAATGTATTTTAATAATGCAATGTTACCTCAGGAAGGCTATTTTCATTCAGTCATTTGCAATTCACCGGAGTTCAGAAACACAACTATTAACAATGATTTAAGATACATGATATGGGATAGTCCTCCAAAAATGCAGCCTCACTTTCTGACTGTATCAGATTTTGATCAGATGATACAAAGTGGAGCTGCTTTTGCACGACGATTCAAAAAGGATGACCCAGTATTGACGATGATTGACGAGAAAATACTTCACCGGAAACATAACAGAGTTGCTCCAGGGTCATGGTGTTCTGGCCGTGATAGTTGGTTTACTGATGCTTGTGCCCAGTGGGGTGATATCAACTCTTTGAAACCCGGTCTACAAGCAAAAAGGTTTGCAGATTCTATGACAAACTATATTGATGACCTTAATTCACAGTCTACCCAATGCAAATGA MGAAERKKWLFALFSALLVSLLLFLTAISGLNASYAFTSWSNRPTALPNRGPQFPPSFAYYLYGGPGDKEQIFRLLLAVYHPRNWYLLHLSAEASTEEREWLVAALRSVPAIQAFENVEVIGKPIWLTYMGATNIAATLRAAAVLLKLDDGWDWFITLSASDYPLLTQDDLAHVFSSTRRDLNFIDHTSELGWKEQQRVQPIIVDPSIYLARRSQIFTATQKRPTPAAFKVFTGSPWIMLSQPFLKFCLFGWDNLPRTILMYFNNAMLPQEGYFHSVICNSPEFRNTTINNDLRYMIWDSPPKMQPHFLTVSDFDQMIQSGAAFARRFKKDDPVLTMIDEKILHRKHNRVAPGSWCSGRDSWFTDACAQWGDINSLKPGLQAKRFADSMTNYIDDLNSQSTQCK Relationships
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from this mRNA:
The following exon feature(s) are a part of this mRNA:
The following CDS feature(s) are a part of this mRNA:
Homology
BLAST of Spo23187.1 vs. NCBI nr
Match: gi|902210884|gb|KNA16561.1| (hypothetical protein SOVF_088060 [Spinacia oleracea]) HSP 1 Score: 838.6 bits (2165), Expect = 4.700e-240 Identity = 404/404 (100.00%), Postives = 404/404 (100.00%), Query Frame = 1
BLAST of Spo23187.1 vs. NCBI nr
Match: gi|731340989|ref|XP_010681688.1| (PREDICTED: xylosyltransferase 1 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 761.9 bits (1966), Expect = 5.600e-217 Identity = 361/405 (89.14%), Postives = 385/405 (95.06%), Query Frame = 1
BLAST of Spo23187.1 vs. NCBI nr
Match: gi|225424176|ref|XP_002284096.1| (PREDICTED: xylosyltransferase 1 [Vitis vinifera]) HSP 1 Score: 599.0 bits (1543), Expect = 6.300e-168 Identity = 279/398 (70.10%), Postives = 335/398 (84.17%), Query Frame = 1
BLAST of Spo23187.1 vs. NCBI nr
Match: gi|1009155127|ref|XP_015895544.1| (PREDICTED: beta-glucuronosyltransferase GlcAT14A [Ziziphus jujuba]) HSP 1 Score: 595.5 bits (1534), Expect = 6.900e-167 Identity = 284/405 (70.12%), Postives = 335/405 (82.72%), Query Frame = 1
BLAST of Spo23187.1 vs. NCBI nr
Match: gi|658064525|ref|XP_008368205.1| (PREDICTED: xylosyltransferase 1-like [Malus domestica]) HSP 1 Score: 585.5 bits (1508), Expect = 7.200e-164 Identity = 278/404 (68.81%), Postives = 333/404 (82.43%), Query Frame = 1
BLAST of Spo23187.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RAN9_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_088060 PE=4 SV=1) HSP 1 Score: 838.6 bits (2165), Expect = 3.300e-240 Identity = 404/404 (100.00%), Postives = 404/404 (100.00%), Query Frame = 1
BLAST of Spo23187.1 vs. UniProtKB/TrEMBL
Match: A0A0J8C311_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_6g142830 PE=4 SV=1) HSP 1 Score: 761.9 bits (1966), Expect = 3.900e-217 Identity = 361/405 (89.14%), Postives = 385/405 (95.06%), Query Frame = 1
BLAST of Spo23187.1 vs. UniProtKB/TrEMBL
Match: D7T8V4_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_01s0011g04680 PE=4 SV=1) HSP 1 Score: 599.0 bits (1543), Expect = 4.400e-168 Identity = 279/398 (70.10%), Postives = 335/398 (84.17%), Query Frame = 1
BLAST of Spo23187.1 vs. UniProtKB/TrEMBL
Match: A0A061EF50_THECC (Core-2/I-branching beta-1,6-N-acetylglucosaminyltransferase family protein isoform 1 OS=Theobroma cacao GN=TCM_010822 PE=4 SV=1) HSP 1 Score: 577.8 bits (1488), Expect = 1.000e-161 Identity = 276/404 (68.32%), Postives = 329/404 (81.44%), Query Frame = 1
BLAST of Spo23187.1 vs. UniProtKB/TrEMBL
Match: M5XRI5_PRUPE (Uncharacterized protein OS=Prunus persica GN=PRUPE_ppa006761mg PE=4 SV=1) HSP 1 Score: 577.8 bits (1488), Expect = 1.000e-161 Identity = 271/404 (67.08%), Postives = 334/404 (82.67%), Query Frame = 1
BLAST of Spo23187.1 vs. ExPASy Swiss-Prot
Match: GT14A_ARATH (Beta-glucuronosyltransferase GlcAT14A OS=Arabidopsis thaliana GN=GLCAT14A PE=2 SV=1) HSP 1 Score: 399.4 bits (1025), Expect = 4.600e-110 Identity = 193/420 (45.95%), Postives = 272/420 (64.76%), Query Frame = 1
BLAST of Spo23187.1 vs. ExPASy Swiss-Prot
Match: GT14B_ARATH (Beta-glucuronosyltransferase GlcAT14B OS=Arabidopsis thaliana GN=GLCAT14B PE=2 SV=1) HSP 1 Score: 390.2 bits (1001), Expect = 2.800e-107 Identity = 190/415 (45.78%), Postives = 259/415 (62.41%), Query Frame = 1
BLAST of Spo23187.1 vs. ExPASy Swiss-Prot
Match: GT14C_ARATH (Beta-glucuronosyltransferase GlcAT14C OS=Arabidopsis thaliana GN=GLCAT14C PE=2 SV=1) HSP 1 Score: 320.1 bits (819), Expect = 3.500e-86 Identity = 162/349 (46.42%), Postives = 224/349 (64.18%), Query Frame = 1
BLAST of Spo23187.1 vs. ExPASy Swiss-Prot
Match: XYLT1_RAT (Xylosyltransferase 1 (Fragment) OS=Rattus norvegicus GN=Xylt1 PE=2 SV=1) HSP 1 Score: 102.1 bits (253), Expect = 1.500e-20 Identity = 68/251 (27.09%), Postives = 125/251 (49.80%), Query Frame = 1
BLAST of Spo23187.1 vs. ExPASy Swiss-Prot
Match: XYLT1_MOUSE (Xylosyltransferase 1 OS=Mus musculus GN=Xylt1 PE=2 SV=1) HSP 1 Score: 101.3 bits (251), Expect = 2.600e-20 Identity = 69/251 (27.49%), Postives = 124/251 (49.40%), Query Frame = 1
BLAST of Spo23187.1 vs. TAIR (Arabidopsis)
Match: AT1G71070.1 (Core-2/I-branching beta-1,6-N-acetylglucosaminyltransferase family protein) HSP 1 Score: 542.3 bits (1396), Expect = 2.500e-154 Identity = 253/405 (62.47%), Postives = 323/405 (79.75%), Query Frame = 1
BLAST of Spo23187.1 vs. TAIR (Arabidopsis)
Match: AT5G39990.1 (Core-2/I-branching beta-1,6-N-acetylglucosaminyltransferase family protein) HSP 1 Score: 399.4 bits (1025), Expect = 2.600e-111 Identity = 193/420 (45.95%), Postives = 272/420 (64.76%), Query Frame = 1
BLAST of Spo23187.1 vs. TAIR (Arabidopsis)
Match: AT5G15050.1 (Core-2/I-branching beta-1,6-N-acetylglucosaminyltransferase family protein) HSP 1 Score: 390.2 bits (1001), Expect = 1.600e-108 Identity = 190/415 (45.78%), Postives = 259/415 (62.41%), Query Frame = 1
BLAST of Spo23187.1 vs. TAIR (Arabidopsis)
Match: AT3G15350.1 (Core-2/I-branching beta-1,6-N-acetylglucosaminyltransferase family protein) HSP 1 Score: 370.2 bits (949), Expect = 1.700e-102 Identity = 185/424 (43.63%), Postives = 267/424 (62.97%), Query Frame = 1
BLAST of Spo23187.1 vs. TAIR (Arabidopsis)
Match: AT1G03520.1 (Core-2/I-branching beta-1,6-N-acetylglucosaminyltransferase family protein) HSP 1 Score: 362.5 bits (929), Expect = 3.500e-100 Identity = 180/400 (45.00%), Postives = 253/400 (63.25%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo23187.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo23187.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo23187.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo23187.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 5
InterPro
Analysis Name: InterPro Annotations of S. oleracea
Date Performed: 2018-06-29
GO Annotation
GO Assignments
This mRNA is annotated with the following GO terms.
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