Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDSexon Hold the cursor over a type above to highlight its positions in the sequence below.ATGAACTCGAACGAGCTAGGACCGGACAATTTTGGAGACATGTACGGCTCTGTTCTCTTCACCTTATTTTCACTTATTTCAGGTCTGATAAGATAAAATAAGGGCCAATAAGATAAGATAAGTTCAGAGCCAATAAGATAAGATAAGATAAGTTCAGGGTCAATAAGATAAGATAAGATAAGTTCAGGGCCAATAAGATAAGGTGAGGTAAATATTACATAAAGTAATACTATAAATTTCAATAAGATAAGGGTCAATAAGATAAGATAAGATAAGATAAGATAAGATAAGGGTCAATAAGATAAGATAAGATAAGGGTCAATAAGTTCAGATAAGATAAGATAAGATAAGATAAGGGTTAATAAGATAAGATAAAATAAGATAAGTTCAGGGCCAATAAGATAAGATAAGATAAGTGAAATTCAGGTGAAGAGAACACTACCGTAAATAGTCACCAATTCCAAATTTCCAATAGCACTTCTTATAGTTTGATCATCTCACTAAAGAGGGGGTTTTCTTTGGAAAGGAGTAAAAGAAAAGAGGACCAGTACATGATAAAAGATTAATAAAGGTTGTCAAGGTCAGATCGTTCAATCGTAAGATTAATAATTAATGGAGAAAGTGATGAAATTTCTACAATGCGTTACAAAATTGCTATTTCAAGTATTAATATACTTCATATTGGTTATGTCTTGATGAGTGAACCGATGCTATTTCAAGTATTAATATACTTCATATTGGTTATGTCTTGATGAGTGAACCGTAAGATTGTCTACTAATGTTTAGACTTGGTAATTTGATATAATGTCACATCGGGTCAAGTGGATTACATGTCTATTTTGATTTCGATTTCAATTCAAATCATTTCCCGATTTTGGAATAACTTTCGGACATCATTTCTAGTCAATTGAATAGTGTAATCGAATCCGGGTCAGTTTTATCAGGTTCACTAATGATAGGCGTAGCAAACACCAATTAGACCAATTTCTATTTACCCAACTGAAAAACACCTTATTTCAATAATGCCTAAATAAGAAGGTTTTAGAAAACAGAAAGAGTATGTAAATAGTTATCATTGTCATAAACCCTTAGGGGATGATTGGTATGCAAATTTTTAGAGTTGGAAACGGATTCAGATAACCGTTTACGTTATACTCCGTAAGTTATTTCGTATTTGGTTTGGAATATGCGGTAACCGGAGAGGTAATTTATTCCCCTACTTCGTTACTGCTCTAAAGCCCACGGTAACAATTACCGTTTCCCCTCAATTACAGAATACACACCGCCTCCTTGCTCTCTTCCTCTCCTTCGTTCTTCTCTCACCCCTCTCTGTTCTTTGAGCTTAATTCAAATTCGATTGAATCTCACAAGATTTCAACGTTTCTGTAAGTTTCCTACTTGTATTTTTTTATAATTTATGATTTTTCTTCTTTAAATCTAATTTTCGAATTTAATCAACCCCAATTTTTAATTTGGCTGTTGTGCTTCATCTGTGTTCTTATTATCATCTATAATTTTCTGGTCTTTGTTTATTATCGATGTTTCCGTTGATAATTGTTCATGTAATGTTAAATTTTTAAGTGAAATTTCACTATTTTATTGGGTTGTTCGAAAATTTTCTATATTGCATGCCACATGTTCGATAAAATGCTCAAAAGAGTTTGATATTTTTTTTTTGAAGAAGTTGTAGTTGACAATGTTCACGAAAGAGATAATCAATGAACCGAAAAGTGTTACAAGCAGGAAATGACAATCAAATGCAGGAAATGGCCATCATAGAATAGCATAAAACCCAGTGAGGTTGAGGTGGAATATTATTCTCAGCCTTTTTAACCGCCATTTTTATCTTTANGGTTGAGGTGGAATATTATTCTCAGCCTTTTTAACCGCCATTTTTATCTTTAATATGCAATGTATCATGTAGCTTATCTCAAACATCAGACCACTACTTTTGATATGGTTTATGGAATTGAGTAGAAATTTCAGCATTTCTGATTTGTTGTTTTATGCAATGTCGATTATTGATGATAAATTTCTTCTGGCTTTGTTTAGATTTTGTAAGTGGGTGTGAAATTGTTGTTGAATGTGTAAAACAGTTCAAATTTAGCTGCAAATTTCTGGAAAGTTGATTTTTTTGCTTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTATTACGGGTTTTATTTGTGGTTAATTTGTATTAGTTTCAATTTTATATAATTTCTTCTTTTATATCGTAAAGGTATAGATGTAGAATACACTACAAAATATATCTCTTTCCTTATTACTTACCAAACATTAAGTAAAAAAATCGTACATAAGTGATTCATTTCATTTCCATTCCACTCCCTTTCCAACATTGATACCAAACACCCCCTTAATCTCAGAGGAAGTCTTTGTCACAAGTGACTTGTGTCCATATTGGACACAAGTGAGTACCAATACAGAATTTGGAGTACCAATACAGAATATGTTAGCACCAATACAAATTATGTGAATACCAATAATAACACATATGACTTATATTGGTGGTATTTCTAAGCAATTTTGCATTTTGGTACTGACATATTATGTATTGGTACTCAAGATGATTGTATTTGGATCACTTGTGTCCATGTGGACACAAGTCACTTGAGGTTTAGAAACCCTCCTTAATCTCTCCCTCCAAAACCCTAACTTTTCTGTTCTTGTAGCTGAAGAACAAGAAAATGGCAGAATCAACCCAAAAATCAGATAAACAAAACCCAGTTAATGTTATAAACAATAATAATGGTGTTGTCAATAACAAGAAGAAACGCAAAGAGGTTGCTCCCTTCGGAAATTACAGGAATTACTACGGCTATCGTGTAAGTTTTCTCAACCCTCTCTTCTAGTCTTCTCCCCCCCCNGTTATAAACAATAATAATGGTGTTGTCAATAACAAGAAGAAACGCAAAGAGGTTGCTCCCTTCGGAAATTACAGGAATTACTACGGCTATCGTGTAAGTTTTCTCAACCCTCTCTTCTAGTCTTCTCCCCCCCCCCCTTTTTTTTTGTAAAATTAAGGGTTTTTCTGATGAATTAATATTCCATAGGCAAATTTATATATGTAAACTGATACCCAGATGCTAGATTTTATTTTATTTTTCCGTAAGAAGCTGATGTTTTAATGAACAGTTTCTTACCCAAAAAATTGGAATTTTCTGACTATTGTAGTTCGTTAAATTTGGCTGTTTTTAACAAATTGGGTTAAAAAGTATCTGGGATTCTGTTTGTCTCTAGCACTAGGAACTTTTTCTTGTTAATGAAATTTCAGTGATGCTTGTTCTTTGCGGAGTGTCTCTGCTTAGATTTTACTGTGATTGAATGATCAATCTCTTTGTAGAAGGGAACCTTTTTACCTTTTTGGTTGAATTGTTGCTAAGATGTGTCCTTGATGATGTTGCCACTCTTCATGGTAATTGAGTTAAATAGTGTGATTTGAATGCGGGATTGCCGGGAAAGTCACACAAAGATTCAAGATTCAAGATTCAAGCATTTTTTGCATAAACATATAATTACTGTTGTTCACTGGTACTACCGTACTACGTATAGTAAAGCACAGAGAAGGGAAGTGGGGAGGGGGTATGAAATCCGACCTTTAGGGAGACAAACTTCTAAGTGATTATATCCTTAATCTTTTTACAGCCTACATTATTGAATTATTCATTGAGAAATCTAGCCTAATCCAGCTTGAACATGTTGTTTCGTGTTTTGTGTTCTGGTGATCACATCAAGCATGGGATGAGTTAATTTCCAAGTGCAGACTTCATTGATGTTTATATGTCCTAGTTAGGGGAATTTCATTTCCATGCCTATATTGAATCAAGATGATTAGCAACTAGGAAGGCGCCGTGCTGCGATCCAACTGAAATATTAATTTAAGAAACCTCTGTCTAGGGGTGGTTGTATGTATATTGATTGTCTTTGCTGTTTCTTTCTTGAAAAAGTAGTCTAGCTGGGTGGATTTTAATTTGAATTTCCATTTTCTGAGATTTTGCAATTGAGATTCAGTGATGAATCAGGTTGGTCATGATGTTGAGGAAGATCCACGTTTCAAAGTATTCAAGAAGGAGTGGTTTGAAGGCAAAGATTGTCTTGACATCGGATGCAACAGTGGATTGATAACCATTAATATTGGTAAAGATCAGTACATTTAGGTTCCAAATTTAGCATGCAAATTTTCACTTCTGATATTTCTTTTAATTCATTTGTGTTCTGCAGCAAAGAAGTTTTACTGTAGGACTATCCTTGGCATCGACATTGATAAGGGTATGTGTCCAAGACTCCAAACTAGCTTTAGTATCTATCAAGGACAGAATAATATTTCTCAATTCTGATACTCATCATAATACGTTATTTGACTGTCTTCCTGTTCTGAGGTGACAAAAGACATCAATAAGCTAGCATTCAAATATTTTTTTATGGCTTGTGTCCTGGTGGTAACTTTTTTTGGCTTGAGATTTTGGTCGTAGGCCTTAGGTCAGAAAAACTTGTGCTTGTGCACACAAATTTCGCTTGCATTTTTTCACAAGAGCAGAAACTTTTGTTGACAATCTTGACTTTTAACACAGATAGTTTGGCTGCAATGATGTGAGGTGCAATGATCTTTTTGACAAGGTACTTGTGTTCTCTTCACCTGTTCACTGACTATTATGTCACCAATAATGGGAGTTGATCGTGATTGATGACAAAGTTCCTGTTAATTGTTGTGAGTTGTAAAACTTTAGTTGGATTGTTGCTAATCTCATAGCTACATCAAATTAGGCAAATATCCTATAAGACAATAAAGCTATTGGTTTTTACAATGTTTTTAGCTGCAAATATCATGATCTCAATATCTTGAGGCACACAGTTTCACTAAATTGCACCATGTTCAACCAGCATGAATGGTTGTCACCTCCTCAACTTACATAATTACATCTTAGGTAGATTCTATTATCAACAATAATGATACTGCCGCACCTTGTGTTAGGCTGTGTTGTTGATTGAGAAAGACTCTTGGTGATATATTGGCTGCCTTGAGTCTGAAGTTGTCTACTGGAGATTTTGGTTTTTATGAGAGTATTTTTGGAGATGTTATACATTAATGGGTCTTTTTCATTAGTTGCGTGCTAAATGTTTTTCTTCTCCTGCTCTTTGCTCCAAAAGTATATCATCTTCACCTTTCAGCAGATTCTGTTTTTCACCACTGTGTTTCCTTAGTTCTTGCAGCCTTTACTGCATTTGTACTCTTTGCAGTTCCTGTGTCATTGCTCATCATCCTTCCCTCCAACCACCTGCATGTAGTTAATACAGTCTAGTCATTTACATCCCATGTTACCTGGACTCGGATATCCAAGTGTCCAAGTGTCCGACGCGGCTATTTTGTGAAAATTTGCATGATTTTGGTCCAAAATGAAGTGTCCAAGCGTCCATATCCATGTCCAAGTGTCGATGATCCGACACGGGTATTTGAGGTAAAATGAAGAGTCATACCCAGAGCTTAAATCAAGCTCTGATTCTAATCATAGTGACTTGGCTATTACTCTCCTACTTTATTGAATATTCAAGCCTGGTAATTATTTTACAAACATGTTTGCTTTTCTAATGAGTAGTCTTCATTAGTCTCATTCACATGCCCACTTCAGTTTTTCTCTTCCCTTTTTTCTCGTTCCTTGTACTCTTTTTTACTCCAAATTTACATCAAACCCACATTTCTAACTTGCAATATGCAAAAAACAGATATATTTCTGAGACAAATTGAGACTTACTCTCATATCATTTGTCACATGTACATTATGCTTGAGATGTTATCATTTGGTAGGTAGTACCAATGTTTTTCTTTTTATTACGCAAGGAAAAGAGTTATGATTGGAAAGAAAATAAGATATCTTGATTGCCCCCGCCCCCCTTCCTTTTTTTCCGCTGGTGGCATATGGGGGCTAAGTGTAACACCCCAAAATTTGGGCCTTTCAATGTAATAAAATCCTCGTTTTATTGAAAAAACGGCCGTCCAAACCTTGGGAGTATTACATAGCATCCATTTCCGTTGGAAAATGAATGTGATATACTGATATAACATGCAACATAAAATTAGCCCCCTGATTATTATTAACTAAATGGTCTAAATTTAGTGAACATTATTACCACCAAAATTAAGGAAAAGTCCAACAAGATAATAAACTTGAAAGTTGTCTGGCTAAGTGATCTATTCTAGCGTTCATCCTCACTTGAGTCGTTGCCCATTACCAACCTGCAAAATATATAAGAAAAGAGAGAGAAACAAAATCAGAAAAATCAGAAAAACTGAGAATTATGACTCTATCCCGTAAAATAAATAATTTTGTTTAAAAAACGTATTAAACTTGCACGTTAGAATAAATCACTTAGCTAGACAATTTTCAAGTTTATTATCTTGTTTGACTTTTCCTTAATCTAGGTTGTAATAACGTTCACTAAATTTAGACCATTTAGTTAATAATAATCATGGGGTTAATTTTATGTTAAATTGCATTCATTTTCGAAAGGAAATGGAGGCTATGTAATACTCCCGGGGTTTGGACGGCCGTTTTCTCAAATAAAATGAGGATTTTCTTACATTGGAAGGCCCAAATTTTGGGGGTGTTACACTAAGTGGTTAGGCTAGTGGACGTCTGCCAATCTATTAACATTAAACCATTCAAAAACTATGATCAAAGGAGCATTTTTCCAAGAACTACTGAAAATGTTTTCTATTTGTGGTATTTTCTTAATAAAAAGGTTTTATTTGCGGCTTGAATTATCAAATCAGGGTCTGCATCTTAGATCAGGTTTGTGTACATATAGTGAAGTAGATGTTGTGGATGTCTTAATCAGTCATGATATGTTTCAAAGACTTGATTCAGTAAGGTTTATCAGTGTGATAGAATTAAGAAGTGCAGCTGCTGAATTCCCAGAGCTTTGCGATTCTCAATTGGTTATAATTGATTAACGTACAATTTTTACGCTTTGCAGATCGAATAAATGATGCTTTGTGGCGCATTCGGAAAACTATAAGAGAAGAGAAGGCTGGAAATGGAATAGTTGTGCCGAGCAAGTCAAAGGTTGTTAAGGTTATGAATGAATCGGAAGGTGATAAAACCTGTTCCACAAGTGCAAAGGATGATGAGACTGAGACTTCCTCTGCGGAAAGAAATCTTCTTGACGTTGTGTCTTTTCGGTCTGAAAATTTTGTCACAAGTTGGAGCTCGCTTCCACTCAAACACTACGATACCATTGTTTGGTAAGCTTGTTCTCTAAGTATTACGATAGATTATTTGGTAAGCTGGTCAATGGAATATGGATAAGCTAAGCTAGAGAAACACATACACTTCCTTTATTTACCCCCGTCTCCTAAAAAGATTCACTTATCCTAATTGGAGTGATAAGTGAATAACACCAGGAGATTGATTATGTGAACACTAAACTTCTGTTGTTTCCATGAAGTGGTTGTTCTGCCCCTGTAGTAGTAATTGGTTCTTTCATTATATATGTAATCTGCAGTTTGAGCGTGACAAAATGGGTTCATTTGAACTGGGGTGATGAAGGATTAATATCATTATTTGCAAAGTTTTGGAGACTCCTTAATCCGGTATGTGTTTGTGCATTGTCTTCCAATATTTTGGGCTGTTATGCTAATGAGTAATGACTAATAGATATTGTTGAATGGAACTTTGTTATGAGCAGGGTGGCATTCTTGTCTTGGAGCCTCAACCATGGGATTCTTATTACAAAAATCGTCTTACAACCGAGGTGTGATATTTTAGAATTATTTCAATATTGTTCTTACATCCCTGACGGCAATTCAAGCTTGAGTTTTCTGGACTTTAGAATTCAACATTCACATTCATATCTTGTTGATTCAGCTATTAAAACGGCCTCTTCTGCTGCTACTTTCAGAGATATCTGGATATATTATTATATGAATTTGTTAATTCTTCTGAATTTTGGTGGATTTTACGGTTATATCATGAAACTAATCTGCTTGTTTGATATGGTGCTTGGTTATGTATGATAGCATTTCAATATTACGTATCTCCAATACACAGATAAAGCCTAACTACTTTTTTGGTTGCAGATGACGCAGATGAATTACAAACATATAGTACATAGACCTGATTTCTTCCAGGAGATGCTTCTTGATAAGGTCTTTAGCCGATCCTCAATATAATATTGTGAATTTGACTCTAATATATCAGTTTCATAGTTTTGATCATTGTCTAATTCCTGTTTATAAATTGGTGGCAGATTGGATTCAGGACTGTTGAACAAGCAACAACGAGTGTATCAGGGGCAACATTGGGTTTTGATAGACCTGTTTTAGTTTTCCGTAAATGA ATGAACTCGAACGAGCTAGGACCGGACAATTTTGGAGACATGTACGGCTCTGTTCTCTTCACCTTATTTTCACTTATTTCAGATTTCAACGTTTCTCTGAAGAACAAGAAAATGGCAGAATCAACCCAAAAATCAGATAAACAAAACCCAGTTAATGTTATAAACAATAATAATGGTGTTGTCAATAACAAGAAGAAACGCAAAGAGGTTGCTCCCTTCGGAAATTACAGGAATTACTACGGCTATCGTAAGAAACGCAAAGAGGTTGCTCCCTTCGGAAATTACAGGAATTACTACGGCTATCGTGTTGGTCATGATGTTGAGGAAGATCCACGTTTCAAAGTATTCAAGAAGGAGTGGTTTGAAGGCAAAGATTGTCTTGACATCGGATGCAACAGTGGATTGATAACCATTAATATTGCAAAGAAGTTTTACTGTAGGACTATCCTTGGCATCGACATTGATAAGGATCGAATAAATGATGCTTTGTGGCGCATTCGGAAAACTATAAGAGAAGAGAAGGCTGGAAATGGAATAGTTGTGCCGAGCAAGTCAAAGGTTGTTAAGGTTATGAATGAATCGGAAGGTGATAAAACCTGTTCCACAAGTGCAAAGGATGATGAGACTGAGACTTCCTCTGCGGAAAGAAATCTTCTTGACGTTGTGTCTTTTCGGTCTGAAAATTTTGTCACAAGTTGGAGCTCGCTTCCACTCAAACACTACGATACCATTGTTTGTTTGAGCGTGACAAAATGGGTTCATTTGAACTGGGGTGATGAAGGATTAATATCATTATTTGCAAAGTTTTGGAGACTCCTTAATCCGGGTGGCATTCTTGTCTTGGAGCCTCAACCATGGGATTCTTATTACAAAAATCGTCTTACAACCGAGATGACGCAGATGAATTACAAACATATAGTACATAGACCTGATTTCTTCCAGGAGATGCTTCTTGATAAGATTGGATTCAGGACTGTTGAACAAGCAACAACGAGTGTATCAGGGGCAACATTGGGTTTTGATAGACCTGTTTTAGTTTTCCGTAAATGA ATGAACTCGAACGAGCTAGGACCGGACAATTTTGGAGACATGTACGGCTCTGTTCTCTTCACCTTATTTTCACTTATTTCAGATTTCAACGTTTCTCTGAAGAACAAGAAAATGGCAGAATCAACCCAAAAATCAGATAAACAAAACCCAGTTAATGTTATAAACAATAATAATGGTGTTGTCAATAACAAGAAGAAACGCAAAGAGGTTGCTCCCTTCGGAAATTACAGGAATTACTACGGCTATCGTAAGAAACGCAAAGAGGTTGCTCCCTTCGGAAATTACAGGAATTACTACGGCTATCGTGTTGGTCATGATGTTGAGGAAGATCCACGTTTCAAAGTATTCAAGAAGGAGTGGTTTGAAGGCAAAGATTGTCTTGACATCGGATGCAACAGTGGATTGATAACCATTAATATTGCAAAGAAGTTTTACTGTAGGACTATCCTTGGCATCGACATTGATAAGGATCGAATAAATGATGCTTTGTGGCGCATTCGGAAAACTATAAGAGAAGAGAAGGCTGGAAATGGAATAGTTGTGCCGAGCAAGTCAAAGGTTGTTAAGGTTATGAATGAATCGGAAGGTGATAAAACCTGTTCCACAAGTGCAAAGGATGATGAGACTGAGACTTCCTCTGCGGAAAGAAATCTTCTTGACGTTGTGTCTTTTCGGTCTGAAAATTTTGTCACAAGTTGGAGCTCGCTTCCACTCAAACACTACGATACCATTGTTTGTTTGAGCGTGACAAAATGGGTTCATTTGAACTGGGGTGATGAAGGATTAATATCATTATTTGCAAAGTTTTGGAGACTCCTTAATCCGGGTGGCATTCTTGTCTTGGAGCCTCAACCATGGGATTCTTATTACAAAAATCGTCTTACAACCGAGATGACGCAGATGAATTACAAACATATAGTACATAGACCTGATTTCTTCCAGGAGATGCTTCTTGATAAGATTGGATTCAGGACTGTTGAACAAGCAACAACGAGTGTATCAGGGGCAACATTGGGTTTTGATAGACCTGTTTTAGTTTTCCGTAAATGA MNSNELGPDNFGDMYGSVLFTLFSLISDFNVSLKNKKMAESTQKSDKQNPVNVINNNNGVVNNKKKRKEVAPFGNYRNYYGYRKKRKEVAPFGNYRNYYGYRVGHDVEEDPRFKVFKKEWFEGKDCLDIGCNSGLITINIAKKFYCRTILGIDIDKDRINDALWRIRKTIREEKAGNGIVVPSKSKVVKVMNESEGDKTCSTSAKDDETETSSAERNLLDVVSFRSENFVTSWSSLPLKHYDTIVCLSVTKWVHLNWGDEGLISLFAKFWRLLNPGGILVLEPQPWDSYYKNRLTTEMTQMNYKHIVHRPDFFQEMLLDKIGFRTVEQATTSVSGATLGFDRPVLVFRK Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo10433.1 vs. NCBI nr
Match: gi|902235795|gb|KNA24091.1| (hypothetical protein SOVF_019090 [Spinacia oleracea]) HSP 1 Score: 583.9 bits (1504), Expect = 1.800e-163 Identity = 291/312 (93.27%), Postives = 293/312 (93.91%), Query Frame = 1
BLAST of Spo10433.1 vs. NCBI nr
Match: gi|731353852|ref|XP_010688274.1| (PREDICTED: probable RNA methyltransferase At5g51130 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 430.6 bits (1106), Expect = 2.500e-117 Identity = 219/312 (70.19%), Postives = 251/312 (80.45%), Query Frame = 1
BLAST of Spo10433.1 vs. NCBI nr
Match: gi|225445152|ref|XP_002284033.1| (PREDICTED: probable RNA methyltransferase At5g51130 [Vitis vinifera]) HSP 1 Score: 345.5 bits (885), Expect = 1.100e-91 Identity = 163/273 (59.71%), Postives = 209/273 (76.56%), Query Frame = 1
BLAST of Spo10433.1 vs. NCBI nr
Match: gi|567180895|ref|XP_006402012.1| (hypothetical protein EUTSA_v10014188mg [Eutrema salsugineum]) HSP 1 Score: 338.6 bits (867), Expect = 1.300e-89 Identity = 176/316 (55.70%), Postives = 224/316 (70.89%), Query Frame = 1
BLAST of Spo10433.1 vs. NCBI nr
Match: gi|595820717|ref|XP_007204701.1| (hypothetical protein PRUPE_ppa009557mg [Prunus persica]) HSP 1 Score: 333.6 bits (854), Expect = 4.200e-88 Identity = 163/289 (56.40%), Postives = 212/289 (73.36%), Query Frame = 1
BLAST of Spo10433.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RX58_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_019090 PE=4 SV=1) HSP 1 Score: 583.9 bits (1504), Expect = 1.300e-163 Identity = 291/312 (93.27%), Postives = 293/312 (93.91%), Query Frame = 1
BLAST of Spo10433.1 vs. UniProtKB/TrEMBL
Match: A0A0J8EJJ6_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_8g197020 PE=4 SV=1) HSP 1 Score: 430.6 bits (1106), Expect = 1.800e-117 Identity = 219/312 (70.19%), Postives = 251/312 (80.45%), Query Frame = 1
BLAST of Spo10433.1 vs. UniProtKB/TrEMBL
Match: D7TBJ3_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_11s0016g03450 PE=4 SV=1) HSP 1 Score: 345.5 bits (885), Expect = 7.500e-92 Identity = 163/273 (59.71%), Postives = 209/273 (76.56%), Query Frame = 1
BLAST of Spo10433.1 vs. UniProtKB/TrEMBL
Match: V4KZQ6_EUTSA (Uncharacterized protein OS=Eutrema salsugineum GN=EUTSA_v10014188mg PE=4 SV=1) HSP 1 Score: 338.6 bits (867), Expect = 9.200e-90 Identity = 176/316 (55.70%), Postives = 224/316 (70.89%), Query Frame = 1
BLAST of Spo10433.1 vs. UniProtKB/TrEMBL
Match: M5WGI8_PRUPE (Uncharacterized protein OS=Prunus persica GN=PRUPE_ppa009557mg PE=4 SV=1) HSP 1 Score: 333.6 bits (854), Expect = 3.000e-88 Identity = 163/289 (56.40%), Postives = 212/289 (73.36%), Query Frame = 1
BLAST of Spo10433.1 vs. ExPASy Swiss-Prot
Match: BIN3D_ARATH (Probable RNA methyltransferase At5g51130 OS=Arabidopsis thaliana GN=At5g51130 PE=2 SV=1) HSP 1 Score: 327.0 bits (837), Expect = 2.500e-88 Identity = 173/321 (53.89%), Postives = 220/321 (68.54%), Query Frame = 1
BLAST of Spo10433.1 vs. ExPASy Swiss-Prot
Match: MEPCE_HUMAN (7SK snRNA methylphosphate capping enzyme OS=Homo sapiens GN=MEPCE PE=1 SV=1) HSP 1 Score: 167.9 bits (424), Expect = 1.900e-40 Identity = 105/284 (36.97%), Postives = 142/284 (50.00%), Query Frame = 1
BLAST of Spo10433.1 vs. ExPASy Swiss-Prot
Match: MEPCE_MOUSE (7SK snRNA methylphosphate capping enzyme OS=Mus musculus GN=Mepce PE=1 SV=2) HSP 1 Score: 167.5 bits (423), Expect = 2.500e-40 Identity = 104/284 (36.62%), Postives = 145/284 (51.06%), Query Frame = 1
BLAST of Spo10433.1 vs. ExPASy Swiss-Prot
Match: MEPCE_DANRE (7SK snRNA methylphosphate capping enzyme OS=Danio rerio GN=mepce PE=3 SV=2) HSP 1 Score: 164.9 bits (416), Expect = 1.600e-39 Identity = 116/335 (34.63%), Postives = 165/335 (49.25%), Query Frame = 1
BLAST of Spo10433.1 vs. ExPASy Swiss-Prot
Match: BIN3D_CAEEL (Probable RNA methyltransferase Y17G7B.18 OS=Caenorhabditis elegans GN=Y17G7B.18 PE=3 SV=1) HSP 1 Score: 163.3 bits (412), Expect = 4.700e-39 Identity = 105/318 (33.02%), Postives = 162/318 (50.94%), Query Frame = 1
BLAST of Spo10433.1 vs. TAIR (Arabidopsis)
Match: AT5G51130.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein) HSP 1 Score: 327.0 bits (837), Expect = 1.400e-89 Identity = 173/321 (53.89%), Postives = 220/321 (68.54%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo10433.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo10433.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo10433.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo10433.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 1
InterPro
Analysis Name: InterPro Annotations of S. oleracea
Date Performed: 2018-06-29
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
RNA-Seq Expression
Co-expression
|