Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATGAATAATTCCAGAAGAAATGCTTTGCCACCTTCTCTCGTCGCTAATCTTCAGCAAGTTTTGACATCCAGGAAACATGTTGACGAAGAAGTTGAACAACAACAACAACAACAACAACAACAACCTTCCGAGTCCGGCAACGAGTTGACTCAGTCCACTGAACAGAATCAACGAGAAAGCGAACAAGAGGAAGTTCCGTGTTCTTCTACTTTTCCTGTCGGTGGTNGCAAGTTTTGACATCCAGGAAACATGTTGACGAAGAAGTTGAACAACAACAACAACAACAACAACAACCTTCCGAGTCCGGCAACGAGTTGACTCAGTCCACTGAACAGAATCAACGAGAAAGCGAACAAGAGGAAGTTCCGTGTTCTTCTACTTTTCCTGTCGGTGGCTGAACAGAATCAACGAGAAAGCGAACAAGAGGAAGTTCCGTGTTCTTCTACTTTTCCTGTCGGTGGTGATGATGAGGTTGAGTTTGATTCCGAAGAAATGAGCTCGAAACCGGTGATTTTGGTCACTAATGGCGACGGAATTGAGTCGCCTGGTCTTGTTTCTCTTGTTGATGCGTTTGTTCGTGATGGTCGCTTTGATGTTCACGTTTGTGCTCCTCAATTGTTAGTTCTATTTGAATCCTATTTTCTTTTCTGTTTTAATATAATTTTTTTTGGTGATTTTTGAGTACTTTATTTATTTATTTTTGTTAATTAATGATGGAATGGTTTGGTTTGCAGTGATAAATCTGCATCAGGTCATTCGTTGACGGTTCGCGAGTCGGTTGAGGTTACTTCTGCAGAAATGAGTGGCGCCACCGCTTTTGAAGTTTCCGGTAATCGTTGTATTTTTGTATGAACATTTGATTATTTGTGGAACTGTTGAAGAAATATATTTTAGTTATTGATTTTTTGTTAAATGTGCTGAACTTGAGCAAATGCTATGTCAAAAAGGGATTAATTAATTATGATTGATAATCCTAATTAGCTTTTGTTTACATTTGTTGTAGTTTATTAATGAGACTTTTGATGTTTACCTGCTTGTCAGTGGTGATGATATTTTTGACTATTGGAAATAAACTTTTAGCCTTTTTGTTGTGGATACCCTTTTCGTTTAAACTTTTAAGGTGCCTGATTTCCTCGTATGTTGTTGAGCTGATATATTTTGACATAATATCTTTGTGGATGATTCGGCTTAATGAACCTGTTGTGTTTATATGATACTTTTGAATTTAATCTCGTGTCGATTGGGTTTGTAAACTAGAGCCTGAGTCTTTTGCTTTAAACTTTGATCAGGTACACCTGCAGATTGTGTGTCATTAGCTTTATCTCAGGCATTGTTTTCTTGGTCAAAGCCTTTAATGGTATGTTTTCTAAAGAGTTGTGCACTTGATTTGATAATGGATTTTCTCATGTTAATGATATCTTAATGGAACTTTTAGGTATTAAGTGGAATCAATAGGGGATCAAGCTGTGGTCAAAACATGTAAGTATTTGTTGGATCCTTATCCAACATATTTCTGTGATTTTCCTTGGTTAATTTATTTTGCAGCGTACCATCAGGTCATTGAAATAAGATTTCCTTTAACATTTTTCTCTCCCGGCTTTGTCTGTCTTGTGTTCCGTATTTTCTCATCTGGTGGTCTTTCATATGCATGGTTAGGCTATATTCAGGGGCTATTGCTGGATCAAGAGAGGCGTTGATACATGGTGTACCATCGATTTGTATATCATTGGACTGGTATTAATCTTTCTTGTTGCTTTCTTTTATTTGGCAGTCTTCCTTTATTCGTTAATTCAAAATCAATTGTGATGCAGGAAAAAAGATGTAAGCTCTGACAATGATTTCAAGGATGCTGTTGAAATTTGCCTGCCGTTGCTTAATGCAACAATAAGAGACATTGAGAATGGCAGTTTCCCAAAAGGCTGCTTTCTTAATGTAGAAGTTCCAGTTTCTCCTTCCTCGAACAAGGTTTGTTGGTTTGGTATTTCTATACCACTCTTCTTTCTCCATTTTAGTGTTCTGTAACACTGGTGTAATTTAGATATTGACATTGCTGCCATGCATTGATGAAATTTAAGATTCCTCTTTTCGTCTTGTGATATTTGGATGGACTTCTAATTTCATTCCAGGCGTGAAAAGTTAACTCGTCTCAAGTGTCTTATATTTTTACGAGAGAAAGATTTGGGTTCAGAATAAATTAAATGTAACTAGCATATTTTTATCCCTTTGTTACTAGCCAGGTGTAGACCGTAGGAATTAAGATAAGTGTGGTTACTAGCTCTTTGTCTTCAGTTCTCCCACAACATGTAGAGTTTATCCTTTTGGGTAACTTCTTTTACTGGATTGTTCTTTTTAAGTTGTTATTTTACGTCCTGCAGTATTAAAGATACTAAAACATGGATGACAATCTGCTAAGTTTTGCAAATGTATGCCATTCCAGTAGATATGGTAGTTAATACTAACAAGATGTGTCCAAATCCCTTATGTATGATGGATGGATAGATGGATGGCTGGAAATAGCATCCACACGCGAATTGGGAGGGAATAGTTAAGTGCAAAATCATGTAGGACTCCCTTGCTTTCCTTGTTCTCGCTTTTCCCAACAGCCTCAACTCCCTACTCGAATTGTCGAAATTGGTTTTTTTGCTTACATTTTGACTATTAATAATCAAAGGGAATGGGAATAAGAGGATATCATTCCCTTTGTTATTGTTTGTTATGCCTATTTCTTCATTCCCTTAACCCTTTTTCATTATTGAGTTCACCCCAAAACCTTCTACACTCATTCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCNTCTAAGTCTCTACCGCCGCCGCAACCAGACCGTTCACCGCCAACCCACAACCAGACCACTACCATCTCTATCGCTGCCGCCAGACCGTTCACCGCCACCAGTGTCCACCGCCGTCAGACCATCCATCGGTGCGTGCAAAACCTTCCACAACCACTTCGGCTTCCTAGTCCGGAAGATCCACCACCTACCACCTCCGTCCATAGTCGCTCGAGCTTCACCCATTAATAGCGCCGCCGGAGTATGTTTGTGGTATGGAAGTTTGGAATTTCTGGGATTGTAACACTTCAATTTCTTTTGAAATTTATGCCGTACATTTCCCCCTTTGTTCAAGCACTAGCATCTTGAGGTTACAATTTCTTATATATTGACATTACCTGGGTTGTCGATTATGGTGAGCAATTACTATGACTGAAAATTATGATAGCAATAACTACTCTGTGAAATACTTCATTTTTGGGTATATGGACAGCATCTTTGTGTTGTTGGAGAAGAAGATAACCCAAACAATATTCTAAATCAAAGGGATTCATTCCCATTCTCTTTCTTTCCCTTTGTTGATTCCATTCCCTTTACCCTCTGCGAACCAAACGCCCCCTTAAATGTTCTATTGAATTACAAGTGAAATTAGGGTTACTCTGTACTAAGTTTGGTTTAAAAAGTGATTTTTATAGAATTATCTTTTGAAAATGTCTACCGATATAGAAAGATTTAGATAATTGTCAAATTTAACTAAAACGTTCCAGCTTTTGCAATGCCATTGGGAATACTATGCTGGTTTGGACGGTGCCTCTTATTTTTTCTTTTTTCTTTTATGTTAAGTTTTGTTCTTCTAATTTGTTTCAATCACAGCATGGTGCGACTTTGTAATTGTGAATTGTAGTTTCTACTCAAACCAATACCTTGATGTCTGTTCTATTACTTTGCCATTTCAGCGTCCAAGAAAAAGCATCACTAATGTCACCTGTATATCAGATCTGAGTTTATTGATTGATATCTAGTGGCTAGATTATAGCTTTTGCCCCAGTGTTGCATGTCATTTAGGGTAGGGTGTCTTTTATTTGGGAAAATTCAAAGCCACCTCACTTCATATAAATCTTGAAGCAGCGTATATCTTTTGTATCCCTCATCTTGTGATCAGACTTTCGACCCTGTCACCAAGTAAAACAGATCATCTATCTCGATTCTTTTATTTGGGCTGCCAAGGTAGTATAATCAGGAGGGAGCAAGAGTGTTAGACACATGTCGGGGCACAAAATTTGCATGAAATCAGTATCTAATTTCACGGGGCACAAACTTGGCATGAAAATTTCAAAAGTATTATTGTTTATCACATCGGTGTGGACCTGTAGTTTAAACACTGTTACAATTTGTAGTATTTAAGCCATATACTTTGTACGTATTGAAGTTGTGTTCATGTAAAATACAGTCTTGCTACGACTGAAACTATATTGATTAGTTTGTTTGCTTTTCTTGGCAGGGTTTTAGATTGACAAGGCAGAGCTTGTGGAGATCTAGTCTATCTTGGCGAGCCATATCATCGTACAAACATCCGTCTGCTATGAATATAATGGCCAGTCAGCAAAGCCTTGGTATTCAGCTTGCTCAGCTGGGGCGAGATGCCTCTGCCGCTGTGAGTACTGTTTTCTGAGATATTGCTTCGTTGCACATTGTTATCTATTACATTATACTAAAAAATTCCCGCCAAAACTCTTTTTTCATTTTTTTATTCACTTATTTGTTTCAATAACTTTTTATGGGAAAGATTCACTATATTTGACTAAAATTTTATTAGTCTTGAAAATTTGTCAAAATCTTTTGTACTCCATACTACTTTATTTTCAAACAATTCTTTGTTACTCTTTTTTTTTTTTAAAAATGATCAAATTATAATTTTATAATATCCGTGCTTGCACGAAACCTAATCTAGTGATGTTTAAACGTGAGTCCAATTATGGTAAATGTTACTTGTTTTCCAGGGTGCAGCACGCCGGCTGAATACAAATAGAAAGACTGTTGAGGTTGAATCCGTCGGGGTTGCAGGCAAACCAAAGACCAACCAAACAATTAGAAAACATTACCGCCTTGAGGTATGTTAATTGAAACTGTGTATTGTCTTCTTCAGCAAAAAGCTGTCCCATTACCCGGTTCTTGTTGCTCTTTTGCGCGCTTCTTACTCATTTTTGTCAACACTTTCTTTGCCTAATCTGCAGTTCTTGGACGAGGAGAAGGAAGATGCAGATGATGAATTAGATTTTAAAGCACTACAAAATGGATTTGTGAGTATATAATCCTCTTTGTTAATGATACTCTACACCACCTTTGATTTATTTGACAAAAAGATTTTGCATGCACAAGCTTTTACCTAGTTTTTTTGTAACTTTTACCTAGATTTTTGTAACTTTTAATATGTTTTGAATAACTTTTATATTATATATATATAAAAAAAAACTGATAGATAACATTTTAAAGGGTTAAATAATTAATTTTATACATCTTTAGTGATTTGAAGAAATAATTTTTATTAAAATGCAAAATTTTATCACTAAAAAATACGAAGTAGATAACTTTTAAGCATTTTTAGTTAACTTTTAAGATTTTGTGTTTACCCGATGAACATTGTGTATTTTGGATGGCAGGTTTCTGTTACGCCACTAGCTTTGTCTTCAGACCTTCATACGGAGATTCATTTATCCGTCTCAAATTGGCTATCGTCAGTCCTCGCAGAGGAACGATAATATTTCCTTTACTCAGTACCAGGGGAAGTATTTTTTATCGCACTTGCAGACGGGCTGTCAACATGGGTTTGTGCCTGTTTTCTTTTGCCTCCATTGATTTGAAGAAAGCACATATATTATTTGTTCATGTGCTGATCGACTTAAATAGTTTGGCGTGACTGCGTGAGTAATCTCTCTTTCTTTGGTAGGTATTTGAACTTTTTTGTCAACTGCGTTTTTACTCGTAAAAAACGATTTTATGAATTCTTTGTTGTACAGAGGTCCGTTGGACCTTTCTTCATATGGTTAAAAAAGAAGTAAAGAACAACTATAAATGGGAAATGTACGTCGATTCTTAACTTGTTTGTGTAATGTGGTTGTAAACTTGTAATGGTGCACCAGATCTGTGTTTGTGAATAGTAGTAATTACCTTGATTTGTGGAGTTTGTAACAGGGATTACCTGTAAATTTTGCAGCGACAAAAGACGTTACTATGTTTTTTGGGGTGATTTGTAACTTACCATACATTAAGTTACCAGTTTGTGCCTTCCATTTTCTGTTTTGATTGACATCGCA ATGAATAATTCCAGAAGAAATGCTTTGCCACCTTCTCTCGTCGCTAATCTTCAGCAAGTTTTGACATCCAGGAAACATGTTGACGAAGAAGTTGAACAACAACAACAACAACAACAACAACAACCTTCCGAGTCCGGCAACGAGTTGACTCAGTCCACTGAACAGAATCAACGAGAAAGCGAACAAGAGGAAGTTCCGTGTTCTTCTACTTTTCCTGTCGGTGGTNGCAAAATCAACGAGAAAGCGAACAAGAGGAAGTTCCGTGTTCTTCTACTTTTCCTGTCGGTGGCTGAACAGAATCAACGAGAAAGCGAACAAGAGGAAGTTCCGTGTTCTTCTACTTTTCCTGTCGGTGGTGATGATGAGGTTGAGTTTGATTCCGAAGAAATGAGCTCGAAACCGGTGATTTTGGTCACTAATGGCGACGGAATTGAGTCGCCTGGTCTTGTTTCTCTTGTTGATGCGTTTGTTCGTGATGGTCGCTTTGATGTTCACGTTTGTGCTCCTCAATTTGATAAATCTGCATCAGGTCATTCGTTGACGGTTCGCGAGTCGGTTGAGGTTACTTCTGCAGAAATGAGTGGCGCCACCGCTTTTGAAGTTTCCGGTACACCTGCAGATTGTGTGTCATTAGCTTTATCTCAGGCATTGTTTTCTTGGTCAAAGCCTTTAATGGTATTAAGTGGAATCAATAGGGGATCAAGCTGTGGTCAAAACATGCTATATTCAGGGGCTATTGCTGGATCAAGAGAGGCGTTGATACATGGTGTACCATCGATTTGTATATCATTGGACTGGAAAAAAGATGTAAGCTCTGACAATGATTTCAAGGATGCTGTTGAAATTTGCCTGCCGTTGCTTAATGCAACAATAAGAGACATTGAGAATGGCAGTTTCCCAAAAGGCTGCTTTCTTAATGTAGAAGTTCCAGTTTCTCCTTCCTCGAACAAGGGTTTTAGATTGACAAGGCAGAGCTTGTGGAGATCTAGTCTATCTTGGCGAGCCATATCATCGTACAAACATCCGTCTGCTATGAATATAATGGCCAGTCAGCAAAGCCTTGGTATTCAGCTTGCTCAGCTGGGGCGAGATGCCTCTGCCGCTGGTGCAGCACGCCGGCTGAATACAAATAGAAAGACTGTTGAGGTTGAATCCGTCGGGGTTGCAGGCAAACCAAAGACCAACCAAACAATTAGAAAACATTACCGCCTTGAGTTCTTGGACGAGGAGAAGGAAGATGCAGATGATGAATTAGATTTTAAAGCACTACAAAATGGATTTGTTTCTGTTACGCCACTAGCTTTGTCTTCAGACCTTCATACGGAGATTCATTTATCCGTCTCAAATTGGCTATCGTCAGTCCTCGCAGAGGAACGATAATATTTCCTTTACTCAGTACCAGGGGAAGTATTTTTTATCGCACTTGCAGACGGGCTGTCAACATGGGTTTGTGCCTGTTTTCTTTTGCCTCCATTGATTTGAAGAAAGCACATATATTATTTGTTCATGTGCTGATCGACTTAAATAGTTTGGCGTGACTGCGTGAGTAATCTCTCTTTCTTTGGTAGGTATTTGAACTTTTTTGTCAACTGCGTTTTTACTCGTAAAAAACGATTTTATGAATTCTTTGTTGTACAGAGGTCCGTTGGACCTTTCTTCATATGGTTAAAAAAGAAGTAAAGAACAACTATAAATGGGAAATGTACGTCGATTCTTAACTTGTTTGTGTAATGTGGTTGTAAACTTGTAATGGTGCACCAGATCTGTGTTTGTGAATAGTAGTAATTACCTTGATTTGTGGAGTTTGTAACAGGGATTACCTGTAAATTTTGCAGCGACAAAAGACGTTACTATGTTTTTTGGGGTGATTTGTAACTTACCATACATTAAGTTACCAGTTTGTGCCTTCCATTTTCTGTTTTGATTGACATCGCA ATGAATAATTCCAGAAGAAATGCTTTGCCACCTTCTCTCGTCGCTAATCTTCAGCAAGTTTTGACATCCAGGAAACATGTTGACGAAGAAGTTGAACAACAACAACAACAACAACAACAACAACCTTCCGAGTCCGGCAACGAGTTGACTCAGTCCACTGAACAGAATCAACGAGAAAGCGAACAAGAGGAAGTTCCGTGTTCTTCTACTTTTCCTGTCGGTGGTNGCAAAATCAACGAGAAAGCGAACAAGAGGAAGTTCCGTGTTCTTCTACTTTTCCTGTCGGTGGCTGAACAGAATCAACGAGAAAGCGAACAAGAGGAAGTTCCGTGTTCTTCTACTTTTCCTGTCGGTGGTGATGATGAGGTTGAGTTTGATTCCGAAGAAATGAGCTCGAAACCGGTGATTTTGGTCACTAATGGCGACGGAATTGAGTCGCCTGGTCTTGTTTCTCTTGTTGATGCGTTTGTTCGTGATGGTCGCTTTGATGTTCACGTTTGTGCTCCTCAATTTGATAAATCTGCATCAGGTCATTCGTTGACGGTTCGCGAGTCGGTTGAGGTTACTTCTGCAGAAATGAGTGGCGCCACCGCTTTTGAAGTTTCCGGTACACCTGCAGATTGTGTGTCATTAGCTTTATCTCAGGCATTGTTTTCTTGGTCAAAGCCTTTAATGGTATTAAGTGGAATCAATAGGGGATCAAGCTGTGGTCAAAACATGCTATATTCAGGGGCTATTGCTGGATCAAGAGAGGCGTTGATACATGGTGTACCATCGATTTGTATATCATTGGACTGGAAAAAAGATGTAAGCTCTGACAATGATTTCAAGGATGCTGTTGAAATTTGCCTGCCGTTGCTTAATGCAACAATAAGAGACATTGAGAATGGCAGTTTCCCAAAAGGCTGCTTTCTTAATGTAGAAGTTCCAGTTTCTCCTTCCTCGAACAAGGGTTTTAGATTGACAAGGCAGAGCTTGTGGAGATCTAGTCTATCTTGGCGAGCCATATCATCGTACAAACATCCGTCTGCTATGAATATAATGGCCAGTCAGCAAAGCCTTGGTATTCAGCTTGCTCAGCTGGGGCGAGATGCCTCTGCCGCTGGTGCAGCACGCCGGCTGAATACAAATAGAAAGACTGTTGAGGTTGAATCCGTCGGGGTTGCAGGCAAACCAAAGACCAACCAAACAATTAGAAAACATTACCGCCTTGAGTTCTTGGACGAGGAGAAGGAAGATGCAGATGATGAATTAGATTTTAAAGCACTACAAAATGGATTTGTTTCTGTTACGCCACTAGCTTTGTCTTCAGACCTTCATACGGAGATTCATTTATCCGTCTCAAATTGGCTATCGTCAGTCCTCGCAGAGGAACGATAA MNNSRRNALPPSLVANLQQVLTSRKHVDEEVEQQQQQQQQQPSESGNELTQSTEQNQRESEQEEVPCSSTFPVGGXKINEKANKRKFRVLLLFLSVAEQNQRESEQEEVPCSSTFPVGGDDEVEFDSEEMSSKPVILVTNGDGIESPGLVSLVDAFVRDGRFDVHVCAPQFDKSASGHSLTVRESVEVTSAEMSGATAFEVSGTPADCVSLALSQALFSWSKPLMVLSGINRGSSCGQNMLYSGAIAGSREALIHGVPSICISLDWKKDVSSDNDFKDAVEICLPLLNATIRDIENGSFPKGCFLNVEVPVSPSSNKGFRLTRQSLWRSSLSWRAISSYKHPSAMNIMASQQSLGIQLAQLGRDASAAGAARRLNTNRKTVEVESVGVAGKPKTNQTIRKHYRLEFLDEEKEDADDELDFKALQNGFVSVTPLALSSDLHTEIHLSVSNWLSSVLAEER 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:
The following three_prime_UTR feature(s) are a part of this mRNA:
Homology
BLAST of Spo20201.1 vs. NCBI nr
Match: gi|902160593|gb|KNA06463.1| (hypothetical protein SOVF_180840 [Spinacia oleracea]) HSP 1 Score: 748.4 bits (1931), Expect = 7.300e-213 Identity = 404/459 (88.02%), Postives = 406/459 (88.45%), Query Frame = 1
BLAST of Spo20201.1 vs. NCBI nr
Match: gi|731369351|ref|XP_010696523.1| (PREDICTED: uncharacterized protein LOC104909039 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 577.8 bits (1488), Expect = 1.700e-161 Identity = 296/362 (81.77%), Postives = 324/362 (89.50%), Query Frame = 1
BLAST of Spo20201.1 vs. NCBI nr
Match: gi|720019381|ref|XP_010262068.1| (PREDICTED: uncharacterized protein LOC104600684 [Nelumbo nucifera]) HSP 1 Score: 463.8 bits (1192), Expect = 3.600e-127 Identity = 228/363 (62.81%), Postives = 294/363 (80.99%), Query Frame = 1
BLAST of Spo20201.1 vs. NCBI nr
Match: gi|645244077|ref|XP_008228273.1| (PREDICTED: uncharacterized protein LOC103327688 [Prunus mume]) HSP 1 Score: 448.4 bits (1152), Expect = 1.600e-122 Identity = 228/360 (63.33%), Postives = 289/360 (80.28%), Query Frame = 1
BLAST of Spo20201.1 vs. NCBI nr
Match: gi|823239924|ref|XP_012452602.1| (PREDICTED: uncharacterized protein LOC105774602 [Gossypium raimondii]) HSP 1 Score: 446.0 bits (1146), Expect = 7.700e-122 Identity = 212/328 (64.63%), Postives = 275/328 (83.84%), Query Frame = 1
BLAST of Spo20201.1 vs. UniProtKB/TrEMBL
Match: A0A0K9QIE4_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_180840 PE=3 SV=1) HSP 1 Score: 748.4 bits (1931), Expect = 5.100e-213 Identity = 404/459 (88.02%), Postives = 406/459 (88.45%), Query Frame = 1
BLAST of Spo20201.1 vs. UniProtKB/TrEMBL
Match: A0A0J8E164_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_8g199160 PE=3 SV=1) HSP 1 Score: 577.8 bits (1488), Expect = 1.200e-161 Identity = 296/362 (81.77%), Postives = 324/362 (89.50%), Query Frame = 1
BLAST of Spo20201.1 vs. UniProtKB/TrEMBL
Match: A0A0D2SPH9_GOSRA (Uncharacterized protein OS=Gossypium raimondii GN=B456_010G084200 PE=3 SV=1) HSP 1 Score: 446.0 bits (1146), Expect = 5.400e-122 Identity = 212/328 (64.63%), Postives = 275/328 (83.84%), Query Frame = 1
BLAST of Spo20201.1 vs. UniProtKB/TrEMBL
Match: D7TZV8_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_09s0002g01650 PE=3 SV=1) HSP 1 Score: 443.7 bits (1140), Expect = 2.700e-121 Identity = 231/368 (62.77%), Postives = 291/368 (79.08%), Query Frame = 1
BLAST of Spo20201.1 vs. UniProtKB/TrEMBL
Match: A0A151SHN6_CAJCA (5'-nucleotidase surE OS=Cajanus cajan GN=KK1_000497 PE=3 SV=1) HSP 1 Score: 442.6 bits (1137), Expect = 5.900e-121 Identity = 218/363 (60.06%), Postives = 288/363 (79.34%), Query Frame = 1
BLAST of Spo20201.1 vs. ExPASy Swiss-Prot
Match: SURE_MOOTA (5'-nucleotidase SurE OS=Moorella thermoacetica (strain ATCC 39073) GN=surE PE=3 SV=1) HSP 1 Score: 115.2 bits (287), Expect = 1.900e-24 Identity = 74/192 (38.54%), Postives = 107/192 (55.73%), Query Frame = 1
BLAST of Spo20201.1 vs. ExPASy Swiss-Prot
Match: SURE_SULNB (5'-nucleotidase SurE OS=Sulfurovum sp. (strain NBC37-1) GN=surE PE=3 SV=1) HSP 1 Score: 114.8 bits (286), Expect = 2.500e-24 Identity = 75/197 (38.07%), Postives = 113/197 (57.36%), Query Frame = 1
BLAST of Spo20201.1 vs. ExPASy Swiss-Prot
Match: SURE_DESAA (5'-nucleotidase SurE OS=Desulfatibacillum alkenivorans (strain AK-01) GN=surE PE=3 SV=1) HSP 1 Score: 114.8 bits (286), Expect = 2.500e-24 Identity = 75/195 (38.46%), Postives = 105/195 (53.85%), Query Frame = 1
BLAST of Spo20201.1 vs. ExPASy Swiss-Prot
Match: SURE_THEEB (5'-nucleotidase SurE OS=Thermosynechococcus elongatus (strain BP-1) GN=surE PE=3 SV=1) HSP 1 Score: 113.2 bits (282), Expect = 7.400e-24 Identity = 79/197 (40.10%), Postives = 110/197 (55.84%), Query Frame = 1
BLAST of Spo20201.1 vs. ExPASy Swiss-Prot
Match: SURE_FLAPJ (5'-nucleotidase SurE OS=Flavobacterium psychrophilum (strain JIP02/86 / ATCC 49511) GN=surE PE=3 SV=1) HSP 1 Score: 111.7 bits (278), Expect = 2.200e-23 Identity = 75/211 (35.55%), Postives = 111/211 (52.61%), Query Frame = 1
BLAST of Spo20201.1 vs. TAIR (Arabidopsis)
Match: AT1G72880.2 (Survival protein SurE-like phosphatase/nucleotidase) HSP 1 Score: 417.2 bits (1071), Expect = 1.400e-116 Identity = 212/358 (59.22%), Postives = 272/358 (75.98%), Query Frame = 1
BLAST of Spo20201.1 vs. TAIR (Arabidopsis)
Match: AT4G14930.1 (Survival protein SurE-like phosphatase/nucleotidase) HSP 1 Score: 201.8 bits (512), Expect = 8.900e-52 Identity = 119/335 (35.52%), Postives = 177/335 (52.84%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo20201.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo20201.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo20201.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo20201.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 2
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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