Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ACGGGCCACACCCTCACACATCAACGAGCTTGGCCAAGGCCCTAGATCGAAGGCAAGAGTGCAAGACGCGGCGCGTTGGCATCTCATATCTCAATAATCGTCCTCAACGCCTGGCATCATCCCCAATTTCAAGCTTTCATCTTTGCGTTGTGATGATGTGCAACAGCTTGTTCCCTTTGGCTTCTACCCCACTTAATCTTTCAAGGTAACTTTCTTTCTCTCCTTCTTAGATTTGATTAAGGAAATGAATTGATGTTTTTGGATCTCTTTTTTTGCTTAATTCTCTGGATTATGTATTCACTAAAGCTTTGAACTTCTGGATGCTAGTTCAGTATAAGTGCAGAGTGATTGGGAAATGGGGTTTAATTTTTTGTGTGACTGATTGTATTTAGTTTGAAATTCTTGAATAATTTCGTTTAAGTGTGTACTGATTTTTGTTAGAATTTGAGATTTGAGCTGTCACATCCATTTAGCTAGGGTTTATGTGTGTGTACTGTGTATTCTCTTTGTTTAGCCTTATTGAAACTCTTTTTCTATCCTTTATGACGAAAGAAAAATTGGGACAGTTGAGGAATCTCTAGAGACACGGGAAAACGGAGTCTTTGTCTAAAGAAATGCGTTTTGAGGCTAGGCGTGATCAGCAACCTTCCAATAGTCTCATTTTCGTTGTTGAAAGTGGCATCCGTAGCTAAACGAGCTCTTGATACTTTGGTGTTATACTAGTATATTAGGCAGGGGTATATCTAATAGGGGAACAGGCTCTCTGGTGGAATGTTGCCTCTTGAATCTTTAATAAACTGTACATTATTTAGTGTTGGTTCTCCTTAGAAAAATTATGTCTCCCTCTAGGTAAATGGAATAGCGGTCAAGTAGGGGTAGATCTATTGTAATAGTCAGATTAGTCACACGATCTATTTTCCTGAATTATGTCTATTCATATTGCATCACGGTTTCATCGGTGTAGGCATTGCATGCTCTTTCCATGTTTTTAACCTTGTATGGTGAGGCTTGGGTTGTAAGTTTTGGTTACTTTGTGAATCGTGTTTTGTCATTTGTTATTAAGGGGATTGCAAACTATGCACAATTGAGCAACTAACTGTGAAGTGATGTGGACTAAAATTTTTAGATAATGGTAGGCTATTGAAACTGCCAAACCATATTTTTTTAATGCTCTCTTCAGGTAAGACCGTGAACGGCGCCCTATTTTGCTTGATCTTAGTTTGACTTGCACTCAGATTTCCCTTCATTTCTTCTATACTTTCAAGTTTTAACAGTTTCAAATCTATATAAGTGCTTGATTTTTTTTTTTATTTACTTTGTGCTCTGAAATTTTGGTTTTAATGTTAAAGATCCTTTTTGCTAGTTACTTGATGTGAGATTATGTTCCAAGACTTTGAAGCATCCAAACCTCATTTTTCTGTTAATATAAGTCAAACCATTCAACTACTCTTTGTAATCTTGTTTCAGGTAATGATATTTGGTCGCATAGAATCTTGGAGAGTTTCTTATCAAATACTGCGGGAATTGCACTCACCTCCTCTCATATCTGTTTGCAAGTGTTACTCCACAGTGTCTAATAAGATGAAGGATATTAGAGTCGGCCACCCTTCTGTTTTCTCGACTGCTGAATCTGATAGAGAAACTCGGGATCAACCATCTGAATTGACAAGTAAGGATAGATTTTCATCGAATCATGTTCAGTATACCCCTGAAATCGAGAAGACGTATGTCCATCAGGTTTATGATGCAATTGCTCCCCACTTTAGTTCAACCAGATTTGCTAAATGGCCAAAGGTTGCATCGTTTTTAGATTCCTTGCCACAAGGATCTCTTGTCCTGGATGCAGGATGTGGAAATGGGAAATACTTAGGTTTCAATCCCAAATGTGTTTCCGTAGGATGTGATATAAGTCCAGCTTTAATCAGTATATGTGCAGAGAGAGGGCATGAAGCATTGGTTGCTGATGCTGTAATTTTGCCTTATAGAAGTGGTTTTGGTGATGCAGCAATCTCTATTGCTGTGTTACATCACCTGAGTACTGAAAGTAGGAGGCGAAAAGCCATTGAAGAACTGGTTCGAGTTGTTAGGAAGGGAGGTTTGGTGTTAGTAACAGTTTGGGCTGTGGAGCAAGAGGATCCAGGTTTGTTGAGTAAATGGACTCCATTGTCCCGTAGGTACCTGGATGAGTGGATTGGACCCGGTAGTCCTCGTGTGCATAGCTCCAGGTCATTTAATTTACAAAGCATTCCTGAAAGCGAGAATGGATCTCAAGAGTCATGCACAGTCTCTAATGAGTCCCTTGGTGAAAAGCTGGATAGAACAATGAAGTTAAATGACCAAGAAAACGACACATCAACTACCTCGATTGGTGATAAATGTAACGAAAACCAAGAGTATTTTGTTCCATGGCATTTACCTTATCATCGAGCTGAAATTAGTGGTTCTTCTGCTTCTGCTGTTGCAAATGGTCTGGCAAGAAAAGATGACAAAAAGGGTGCTGTGGTATATAACCGATATTATCATGTGTTTAGTGAGGGTGAACTTGAAAGGTAATATACAGTTTCCTTGATATGATCCTTGCCTTTGGTTTTATTACTTTTCTGTCTTGAACATAATGTGTTATAGGTAGCTGTATTGTTACCCATCCTCTAGGATGCATCATGCATTTTTCTGTCTAGAATCGGAGTAGTACCACAAACAGGGTGAAACAAGCCCCTAACTGAAATTGACTCTGCTTGACAATTGTGTAAAATAACTTAGCGAAGACGGGTAAATGTATCTTAAAAAGTTGCTTGTGGAGTAGGTTAATATTAAGTACAAAGTTACCAGTTGAGTACTTGAGTGTTGAGTGAATGTCAAAAGACACAAGTTGACTTTAAGTTACTTAGCTTGTAGCTCTCGTCATTTCCCTTCCCAAGTCTTAGATGAATCTTGACCATCAATAAATGAGACATTTGACTTGTAGGAAAATTTGCCTATTACTACCTTGGTTAGTACTTAGTAGTCACTTTGTCAGTTAGTACCTCAAAAAAAAGTAGTAATTTACTACCCACTATACCTTCACATGATTACTATTGCTACCCAAGTCAGGATTCCTGCCAAATTGGCTTGAATATGACATCATAAAATTGTTTAAGTTGATTTTAAATAATCCTTATTCTTCTTCCAAGCCTTATTCCCATTCGGTTCATGTCCAGAAGAAGTGACTTTGTTTTGGCCGCCACGAACCTACCGCAACCCAAGTCCCCACCACCCAAAAGCTTCGCTTTTGCGACTTTATGCCTGCAGACCAATTGATTTATAACTTACTTTATCGATAATTCTCTTAAGTCGGCCAATTTAGAGCAAATTCTCGCAAATTTACGCTATTATAACGTCATATTTCGGCTAATTTGACTGGAATGTTAATAGGGTAGCAACACTAATTATGTGAAGGTTTTCTAGGTAGTAATTGACAAAAAAAATCTTAGGTAGTAAGTGACAAAGTTACCTATAAGGTAGGTAATAATTGACAAATTTTCCTGACTTGTATTTTGGGGCTCCAAGATTCTCAGCTGAAAAATGAAACCTGAGTACTATTGACTTTTGAGTGGTGTCATTAGAAATTCCTTCTTTACATTTGAGTCCTCGAAAAACTGGGCCCAGTTCAATTCGTTTTAGTTACCAGCCTTCATGACTCTCCAACCTGGTTTCTTGTTTCCTCGTGCAATATTAAGTTTTGAACATAGCAGTTTATTCTTTATCCACTTGATGCACTTCATGTGTAAGTTCTTACTGTTTAGAAATAGCGAGCCATTTCCAACCAGAATCATTCTTCTGTTCTGTCAGCTTGGCGCTTGACAAATGTGCTATTGACTGCAGAAAATTTGTCTTCAAGTCTCAGTTACGCCATTTTTTTTGTTTTTCTTAAGGTTTTAAAATATATTTTTCCATTGAGCATCTTCCTCAAGTTGGTAACAGGATGTTCTGCATTTCTAAATCTTTGGAGCTTTTCTGTTGCTTGGTTATGTGCACATCCTCTAACTCAAAATTTGAGCTAATAATACGCTGAAGAAGAGTTTCATAATTTGCTTAAATTAGTCCATCCTAAAAGCAAATATGAGATAGTTAATACTTTATATTATTGCCCCAAATAATAGGTAGGATAAGAACCAGGAATTCCTATGTAGTTGCTAACACCTGTATAAAGAAAAATGGTAGTTTCTAACAGATTCTGTCTTAGTTTTTAGAAGCCACAAATATTTGCGAGTTTCAAGAAGAGGTTTGATCTTGCAACTAAAAGATCGTATGAGCATTATAGGATGACTTGGCGGATTTGTTTGTAATTTACCCGTATTTAAGGACTATCAGAATGGAACTTTGAAGAGCCACTGTGAGGAATCGCCTAGGCAGCTCAAAATCCAGAAAACATGCCAGTTACTGGAGAGGTATTGCAAGACCAAAGGACAACTGGAGCAAAAAGTCTGAGAGTTTCTAAGTGGATTTTGGAGCTACCATCAGTTTATAACTTAAAAGAGCCTGTGAAATTAAAATATTTGATTAGTTGCATTTTCTGCTCCCCGAAAAGAGTGCAGAACAAAAACTGGAAGCCCTCTCCTGTCGTTAGCAAAGTAAAATGTTCTTTCACTTCTGACGAATTGAATAATAGTTGTTTCTTTTCAGGCGGTATAAGAGATTGAAAATAAAATTTATATTTATGAAAGTGATGTGGTTTATTAGATTTAGTTAGGTTTGGTTGTTGGGGATGAATTGAATTTCTCGTCTTCGGTTGTAAAATTGGTGGTGTCATGGTTGTTTTGTTGCATTGTCTCACTTGAACTTGTCTTATTGAGTAGCTTCTAGGGGGTATTGTGTTCTTGCTTGTGAGTTGACACCACTTGGATTGCAAGTGTACTATGTTTCATTTTGCACTTAGTCTATGCAAGTAGAATATTACCCATGGCTATTTAGAGTAGTGTCAGTAGTCCGATCTCAATGACACTGCATAATTGACCTTTTGTGTTGTAATATATTCAGTGCTCCTCTAACCAGATGTTTTCCTTCAAAAACTATATAAATTTGCAGCCTTTTGATAATCATTTTGAAAAATTAAAGAGTATACTTCTCACAGCCCATTTGGTATGCGGTAATTGTGATGAATTTGTCATGACTATTAAACAAAGTCCCTTGCCAATGTCAATGGTAATGGAACTCTAACCCCAAAACATAAATATAAATGTACATAGCCGCTCAATACCACCTCTAAAGTGGTTAAAGTGGTAACGGATGGTAATGTAAGTTTATGAAAGACAAGAGATTTAAGGTGTTGACAATCATTACTATGGACATTGGCATGAGTGCATGACTGTCTTTTTACCAAATTACATACTCCATATTTACTTCAGTACCACCATTTACCATTGTCTACCAAATAAGCTGTTATATTATGAACATTGTTGAGATCCGTGGATGCGCCTTTGATCTTATTGACCTAAATTTGAATACAATGAAATCTTTTTCAGGAGCTTCTAGTAAGTAATATTTCTCATGAAGCTGTTTACTCTGTCACTCAACTTTTGACTCAATATGATTTCATTTGTGGTTCCCTATTGCATAATTGCATCAACTTCAAATTGAATTTTCAATTGTTCCAAATATCTTACTAGCTCAATAGTTGGCTGATATTCCTAATTTTGTCCTTATCCTCTTCTCAGTTATGTAAAGTACTTCACTAATGTTTGACCAGTTTTTGCTTGTTTCTATCCAATCTTACTAGGCTACTAGCTCAAATTTGTTGGCTGATACTCCTATTTTCTGTTAGTATCCTGTTCTCAGTTACATAAGAGTACGTCACTAATGGTTGACCAGCTCTTCATATGGTTCCATTTTAGCTTAGTTTCCATGGACTCCTAATTTCCGCTCATCATCGAAATAAAACTTCTTTTGGTACATGATTACTTATTGCTTTGCATGTTTCCTTTAGGTCCATCATCTGTATGTCAAATCCAGAAACTGTTTCTCTTGCTTTGTTCTTTAAAATTTAACTATGTTCGTTATGGTTTTGAAATTCCAGCTTGCGCACCCTAGGTGACTTAATACTCTTTCTTAAGTATTTTTGAGAATTAATTTTAGCCTATTATGCAAATTGTGATTCTTTATGTCAATTATAGATTGGTGTATATCTTGATTCTTTAAAGNGTTCTCAGTTACATAAGAGTACGTCACTAATGGTTGACCAGCTCTTCATATGGTTCCATTTTAGCTTAGTTTCCATGGACTCCTAATTTCCGCTCATCATCGAAATAAAACTTCTTTTGGTACATAATTACTTATTGCTTTGCATGTTTCCTTTAGGTCCATCATCTGTATGTCAAATCCAGAAACTGTTTCTCTTGCTTTGTTCTTTAAAATTTTAACTATGTTCGTTATGGTTTTGAAATTCCAGCTTGCGCACCCTAGGTGACTTAATACTCTTTCTTAAGTATTTTTGAGAATTAATTTTAGCCTATTATGCAAATTGTGATTCTTTATGTCAATTATAGATTGGTGTATATCTTGATTCTTTAAAGAACACCCTGCTTCACTAATACTAGCAATATTTCCTGAACTGTTTCTTATCTAGGTGTGATTTAGTCATGGTTTTTCAGTAACTGACCCACTTTTTCGGTTTTGATGAACTTTCAGTTTAGTGTCTGGAATGAGCAATGCTGTGATCGTGGATCGCTTCTTTGATAAATCAAATTGGTGTGTTATTCTTGAAAAAAAAGAATGATAATTCGAAGACGCACAAAATGCATATGTCCTATTTTATTGCTGAGATGAGATCAGGGAGTAAATCATGAAGCTGCCAATGTAGTGAGTGAATCACTCCTTGTAGGAATGTCAGCATATATTTCTCAGAAAAGCAGGCTGTGTCGTTTATCTGTGTGCGCACATTGTTTTGCGGATTTTGGATAGTAAAGATATTCATATATACACGTATTACTGTCCTTCCTGTTTTCTCGTACTTCTTCATATATACCCCATACCAATTTATTCAAGAAGTACCATGAAATCTACGATTAAGCCTATACAGGTTTAATAAAATAAGAACTTGTTGGGTGCGCAAGTTGTATGTGGGAACAAAACAGATTTTATACGGAGTATTTTTTTTTTTTGGGTCCAAATGAGCTATAAGGGCAATAATAAATTAGAAACGTGGGCAGACTCTCAGTCTTAACAAACAGGCTAAGACTCCATTCGTAGATTTTGTATATTAATTAGGGCATCGATTAAAATGTATGTATATGTTCTTCATTTCTTTGGTATCACTCTTTAAGCTTAATTTTAGTCTAATTTAACTAGGGCATAAGTCGTATCTTTTAATGTTCTATTAGAACTCTGCATGAGTTTGTTTGTTTTCTACTTCATTTAGGATTCCTATATTGCCG ACGGGCCACACCCTCACACATCAACGAGCTTGGCCAAGGCCCTAGATCGAAGGCAAGAGTGCAAGACGCGGCGCGTTGGCATCTCATATCTCAATAATCGTCCTCAACGCCTGGCATCATCCCCAATTTCAAGCTTTCATCTTTGCGTTGTGATGATGTGCAACAGCTTGTTCCCTTTGGCTTCTACCCCACTTAATCTTTCAAGGTAATGATATTTGGTCGCATAGAATCTTGGAGAGTTTCTTATCAAATACTGCGGGAATTGCACTCACCTCCTCTCATATCTGTTTGCAAGTGTTACTCCACAGTGTCTAATAAGATGAAGGATATTAGAGTCGGCCACCCTTCTGTTTTCTCGACTGCTGAATCTGATAGAGAAACTCGGGATCAACCATCTGAATTGACAAGTAAGGATAGATTTTCATCGAATCATGTTCAGTATACCCCTGAAATCGAGAAGACGTATGTCCATCAGGTTTATGATGCAATTGCTCCCCACTTTAGTTCAACCAGATTTGCTAAATGGCCAAAGGTTGCATCGTTTTTAGATTCCTTGCCACAAGGATCTCTTGTCCTGGATGCAGGATGTGGAAATGGGAAATACTTAGGTTTCAATCCCAAATGTGTTTCCGTAGGATGTGATATAAGTCCAGCTTTAATCAGTATATGTGCAGAGAGAGGGCATGAAGCATTGGTTGCTGATGCTGTAATTTTGCCTTATAGAAGTGGTTTTGGTGATGCAGCAATCTCTATTGCTGTGTTACATCACCTGAGTACTGAAAGTAGGAGGCGAAAAGCCATTGAAGAACTGGTTCGAGTTGTTAGGAAGGGAGGTTTGGTGTTAGTAACAGTTTGGGCTGTGGAGCAAGAGGATCCAGGTTTGTTGAGTAAATGGACTCCATTGTCCCGTAGGTACCTGGATGAGTGGATTGGACCCGGTAGTCCTCGTGTGCATAGCTCCAGGTCATTTAATTTACAAAGCATTCCTGAAAGCGAGAATGGATCTCAAGAGTCATGCACAGTCTCTAATGAGTCCCTTGGTGAAAAGCTGGATAGAACAATGAAGTTAAATGACCAAGAAAACGACACATCAACTACCTCGATTGGTGATAAATGTAACGAAAACCAAGAGTATTTTGTTCCATGGCATTTACCTTATCATCGAGCTGAAATTAGTGGTTCTTCTGCTTCTGCTGTTGCAAATGGTCTGGCAAGAAAAGATGACAAAAAGGGTGCTGTGGTATATAACCGATATTATCATGTGTTTAGTGAGGGTGAACTTGAAAGTTTAGTGTCTGGAATGAGCAATGCTGTGATCGTGGATCGCTTCTTTGATAAATCAAATTGGTGTGTTATTCTTGAAAAAAAAGAATGATAATTCGAAGACGCACAAAATGCATATGTCCTATTTTATTGCTGAGATGAGATCAGGGAGTAAATCATGAAGCTGCCAATGTAGTGAGTGAATCACTCCTTGTAGGAATGTCAGCATATATTTCTCAGAAAAGCAGGCTGTGTCGTTTATCTGTGTGCGCACATTGTTTTGCGGATTTTGGATAGTAAAGATATTCATATATACACGTATTACTGTCCTTCCTGTTTTCTCGTACTTCTTCATATATACCCCATACCAATTTATTCAAGAAGTACCATGAAATCTACGATTAAGCCTATACAGGTTTAATAAAATAAGAACTTGTTGGGTGCGCAAGTTGTATGTGGGAACAAAACAGATTTTATACGGAGTATTTTTTTTTTTTGGGTCCAAATGAGCTATAAGGGCAATAATAAATTAGAAACGTGGGCAGACTCTCAGTCTTAACAAACAGGCTAAGACTCCATTCGTAGATTTTGTATATTAATTAGGGCATCGATTAAAATGTATGTATATGTTCTTCATTTCTTTGGTATCACTCTTTAAGCTTAATTTTAGTCTAATTTAACTAGGGCATAAGTCGTATCTTTTAATGTTCTATTAGAACTCTGCATGAGTTTGTTTGTTTTCTACTTCATTTAGGATTCCTATATTGCCG ATGATATTTGGTCGCATAGAATCTTGGAGAGTTTCTTATCAAATACTGCGGGAATTGCACTCACCTCCTCTCATATCTGTTTGCAAGTGTTACTCCACAGTGTCTAATAAGATGAAGGATATTAGAGTCGGCCACCCTTCTGTTTTCTCGACTGCTGAATCTGATAGAGAAACTCGGGATCAACCATCTGAATTGACAAGTAAGGATAGATTTTCATCGAATCATGTTCAGTATACCCCTGAAATCGAGAAGACGTATGTCCATCAGGTTTATGATGCAATTGCTCCCCACTTTAGTTCAACCAGATTTGCTAAATGGCCAAAGGTTGCATCGTTTTTAGATTCCTTGCCACAAGGATCTCTTGTCCTGGATGCAGGATGTGGAAATGGGAAATACTTAGGTTTCAATCCCAAATGTGTTTCCGTAGGATGTGATATAAGTCCAGCTTTAATCAGTATATGTGCAGAGAGAGGGCATGAAGCATTGGTTGCTGATGCTGTAATTTTGCCTTATAGAAGTGGTTTTGGTGATGCAGCAATCTCTATTGCTGTGTTACATCACCTGAGTACTGAAAGTAGGAGGCGAAAAGCCATTGAAGAACTGGTTCGAGTTGTTAGGAAGGGAGGTTTGGTGTTAGTAACAGTTTGGGCTGTGGAGCAAGAGGATCCAGGTTTGTTGAGTAAATGGACTCCATTGTCCCGTAGGTACCTGGATGAGTGGATTGGACCCGGTAGTCCTCGTGTGCATAGCTCCAGGTCATTTAATTTACAAAGCATTCCTGAAAGCGAGAATGGATCTCAAGAGTCATGCACAGTCTCTAATGAGTCCCTTGGTGAAAAGCTGGATAGAACAATGAAGTTAAATGACCAAGAAAACGACACATCAACTACCTCGATTGGTGATAAATGTAACGAAAACCAAGAGTATTTTGTTCCATGGCATTTACCTTATCATCGAGCTGAAATTAGTGGTTCTTCTGCTTCTGCTGTTGCAAATGGTCTGGCAAGAAAAGATGACAAAAAGGGTGCTGTGGTATATAACCGATATTATCATGTGTTTAGTGAGGGTGAACTTGAAAGTTTAGTGTCTGGAATGAGCAATGCTGTGATCGTGGATCGCTTCTTTGATAAATCAAATTGGTGTGTTATTCTTGAAAAAAAAGAATGA MIFGRIESWRVSYQILRELHSPPLISVCKCYSTVSNKMKDIRVGHPSVFSTAESDRETRDQPSELTSKDRFSSNHVQYTPEIEKTYVHQVYDAIAPHFSSTRFAKWPKVASFLDSLPQGSLVLDAGCGNGKYLGFNPKCVSVGCDISPALISICAERGHEALVADAVILPYRSGFGDAAISIAVLHHLSTESRRRKAIEELVRVVRKGGLVLVTVWAVEQEDPGLLSKWTPLSRRYLDEWIGPGSPRVHSSRSFNLQSIPESENGSQESCTVSNESLGEKLDRTMKLNDQENDTSTTSIGDKCNENQEYFVPWHLPYHRAEISGSSASAVANGLARKDDKKGAVVYNRYYHVFSEGELESLVSGMSNAVIVDRFFDKSNWCVILEKKE Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo25658.1 vs. NCBI nr
Match: gi|902226813|gb|KNA20498.1| (hypothetical protein SOVF_051870 [Spinacia oleracea]) HSP 1 Score: 785.0 bits (2026), Expect = 5.900e-224 Identity = 388/388 (100.00%), Postives = 388/388 (100.00%), Query Frame = 1
BLAST of Spo25658.1 vs. NCBI nr
Match: gi|731361887|ref|XP_010692599.1| (PREDICTED: alkylated DNA repair protein alkB homolog 8 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 574.3 bits (1479), Expect = 1.600e-160 Identity = 286/352 (81.25%), Postives = 314/352 (89.20%), Query Frame = 1
BLAST of Spo25658.1 vs. NCBI nr
Match: gi|823237410|ref|XP_012451356.1| (PREDICTED: alkylated DNA repair protein alkB homolog 8 [Gossypium raimondii]) HSP 1 Score: 491.9 bits (1265), Expect = 1.000e-135 Identity = 258/391 (65.98%), Postives = 294/391 (75.19%), Query Frame = 1
BLAST of Spo25658.1 vs. NCBI nr
Match: gi|764593966|ref|XP_004301941.2| (PREDICTED: alkylated DNA repair protein alkB homolog 8 isoform X1 [Fragaria vesca subsp. vesca]) HSP 1 Score: 486.5 bits (1251), Expect = 4.300e-134 Identity = 255/380 (67.11%), Postives = 300/380 (78.95%), Query Frame = 1
BLAST of Spo25658.1 vs. NCBI nr
Match: gi|255545596|ref|XP_002513858.1| (PREDICTED: alkylated DNA repair protein alkB homolog 8 [Ricinus communis]) HSP 1 Score: 486.1 bits (1250), Expect = 5.700e-134 Identity = 251/389 (64.52%), Postives = 296/389 (76.09%), Query Frame = 1
BLAST of Spo25658.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RLX8_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_051870 PE=4 SV=1) HSP 1 Score: 785.0 bits (2026), Expect = 4.100e-224 Identity = 388/388 (100.00%), Postives = 388/388 (100.00%), Query Frame = 1
BLAST of Spo25658.1 vs. UniProtKB/TrEMBL
Match: A0A0J8BI94_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_1g021360 PE=4 SV=1) HSP 1 Score: 574.3 bits (1479), Expect = 1.100e-160 Identity = 286/352 (81.25%), Postives = 314/352 (89.20%), Query Frame = 1
BLAST of Spo25658.1 vs. UniProtKB/TrEMBL
Match: A0A0D2U8W3_GOSRA (Uncharacterized protein OS=Gossypium raimondii GN=B456_010G045400 PE=4 SV=1) HSP 1 Score: 491.9 bits (1265), Expect = 7.200e-136 Identity = 258/391 (65.98%), Postives = 294/391 (75.19%), Query Frame = 1
BLAST of Spo25658.1 vs. UniProtKB/TrEMBL
Match: B9RJD9_RICCO (S-adenosylmethionine-dependent methyltransferase, putative OS=Ricinus communis GN=RCOM_1033330 PE=4 SV=1) HSP 1 Score: 486.1 bits (1250), Expect = 4.000e-134 Identity = 251/389 (64.52%), Postives = 296/389 (76.09%), Query Frame = 1
BLAST of Spo25658.1 vs. UniProtKB/TrEMBL
Match: B9GUI4_POPTR (Uncharacterized protein OS=Populus trichocarpa GN=POPTR_0002s09190g PE=4 SV=2) HSP 1 Score: 483.8 bits (1244), Expect = 2.000e-133 Identity = 248/406 (61.08%), Postives = 297/406 (73.15%), Query Frame = 1
BLAST of Spo25658.1 vs. ExPASy Swiss-Prot
Match: ALKB8_MOUSE (Alkylated DNA repair protein alkB homolog 8 OS=Mus musculus GN=Alkbh8 PE=1 SV=1) HSP 1 Score: 223.0 bits (567), Expect = 5.600e-57 Identity = 128/332 (38.55%), Postives = 182/332 (54.82%), Query Frame = 1
BLAST of Spo25658.1 vs. ExPASy Swiss-Prot
Match: ALKB8_MACFA (Alkylated DNA repair protein alkB homolog 8 OS=Macaca fascicularis GN=ALKBH8 PE=2 SV=1) HSP 1 Score: 207.2 bits (526), Expect = 3.200e-52 Identity = 124/334 (37.13%), Postives = 176/334 (52.69%), Query Frame = 1
BLAST of Spo25658.1 vs. ExPASy Swiss-Prot
Match: ALKB8_BOVIN (Alkylated DNA repair protein alkB homolog 8 OS=Bos taurus GN=ALKBH8 PE=2 SV=1) HSP 1 Score: 206.8 bits (525), Expect = 4.200e-52 Identity = 123/339 (36.28%), Postives = 176/339 (51.92%), Query Frame = 1
BLAST of Spo25658.1 vs. ExPASy Swiss-Prot
Match: ALKB8_HUMAN (Alkylated DNA repair protein alkB homolog 8 OS=Homo sapiens GN=ALKBH8 PE=1 SV=2) HSP 1 Score: 205.7 bits (522), Expect = 9.300e-52 Identity = 122/334 (36.53%), Postives = 175/334 (52.40%), Query Frame = 1
BLAST of Spo25658.1 vs. ExPASy Swiss-Prot
Match: ALKB8_XENTR (Alkylated DNA repair protein alkB homolog 8 OS=Xenopus tropicalis GN=alkbh8 PE=2 SV=2) HSP 1 Score: 201.8 bits (512), Expect = 1.300e-50 Identity = 123/306 (40.20%), Postives = 168/306 (54.90%), Query Frame = 1
BLAST of Spo25658.1 vs. TAIR (Arabidopsis)
Match: AT1G36310.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein) HSP 1 Score: 440.7 bits (1132), Expect = 9.600e-124 Identity = 226/380 (59.47%), Postives = 280/380 (73.68%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo25658.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo25658.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo25658.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo25658.1 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
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