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.AAAGGACAGTTTCAATTAGAAATTCTTTAGAAAATCCGTACTCCATATTAGCTCAAGTGCTCAACCCAAGCGACCCGAGTTAGTTTCCAAAGACCCATCACCCACTTTACCCCAGACCACTGGAGCATCCACCCAAATTAGTTTGGAGTCGGTAGAGAGAGAAAACATAATCAACAAACAACAATGGCGAGAGCAGCAGTCTCAGCATCCCTAATAAAACTCTTCTCCCTCAAATTATCTTCTCAACCTCTCTCCTCCATTCCTGCAACTACCATCTCCTTCAGCACCTTCCACGCTCCTCCGAAAAAGAAGAAGCAGGAAAAGAGGAGAGAGAGTGAGAACAAGAAGACAACTTCTTCGTCTTCTTCTCCCTCCATTGTTGTAGCTTCGGGTTCAGCTTCGTCGGATTCGAAGTCGAAATCCTCTGCTTTGAAATTCGTGAAAAGGAGGACGAGGTCGGACAAGGAATTCGACGAGGATTACATTAAGAAATATGGAGATGAAGAGAGTCATGTTCCTGTTATGCTTGGTGAAGTTTTGGATGTGTTTGATTCTTCATCGTCTTCGTTTCAGCTTCGTTCTTTCGTCGATTGTACCCTAGGTGCCGCTGGTCATTCTTGCGCTGTTAGTTTTCTCGCTCACTTTGAAATTTCATTAAATTGCAATGTTGGTGTTATTTAATTCAGGGTTTCGAAATTTTTAGGGTCTGAAATTGATGATTGTGATACTATTTATCTGATTATTGCATTTTTAATTGAAGAAATGAACTTATTTGATTGAAATGTTGATGGTGGTGCACTGGTGCTTGGTTTTGTTTGTTTGTCAATTTCTGGAGTGGAAAGGAAGACTTAGGGTTATTGTAGCGCTCTCGGGTATGAGTAATAATCTGTGTGTTTGTTCATATTGAGTGAGCTTCTCGCTGGTATGTTGGCAAATGAGTGAAAAATATACTTTGGTTCTGTCATTCTAGGTACACTCGGATGTATGAAAAGAACTAATGAATGTTGGAGAGCCATGTTTGATGATGATTTCATGTAACAGAAATGTCGTTAACTACTCCGTTTGTTGTCTGAACTGAGGAAACACCATAGTGATCTTCTCTGAATATTATATGCCCTCCTTTCTCTATGTGAAGTTGCTCAAGCAACAAACTGGAAAATCTCAAGTCTGAATTATTTAAAAAATGAAGATAGACTTTAATGAAGGGAAGGAACACTATATAATTATACGTAAACACGTTTTATCTTGTTTTGCTTCCTAGTATAGCAGTATATACCTTGTATTGTTCACATGTCTCATGTTAAAGTTCATATATATTCTTCCCCTTTATATGAATACCGATTTAGTCATAGACCCTCAGACCTCAGCTGACATGGAGGTTGCATAAAAAATCTCTATTTCTGCTGCTGAGTTTTTTTAATGCGCTCTACAGATAATTCAAGCTCATCCCGAACTGCAAAAATATGTTGGATTAGATGTTGATCCAGTAGCCCATGAAAAGGCTAAATCTCGAATCAATAATCTGCTGAACAGCAAGTCTGCCTGTTCAAATATCGATTTGAAAGCTCATATGCTTTTGAGGAACTTCAGAGAAATCAAGCAAGCAATTGGCCAGGTTGAGGAAAATCTTTTACTGTCTGGAGTTGATGGGATTTTGATGGACTTGGGAATGTCTTCCATGCAGGTAAGCTTTTGAACACTCTGCAGATTGCAATAGTACAATTGAAGTTTTTCTCTCTGGTTTTTCTGTTAGTCTACATGTGTATGATGATATTGGTCTAGTGAGTAAAGGCTAGCTAAAAGGTTTAAGCTGTTATAGGTGCTGATTTCCCTTTTAGTTGAATACGGTGCCCAACAGATACTCTGAAGGTACATTAATCACTATGAAAAAGTAATGTTAAATAGAGGTGGTTCGTGCTCTTTTTGGAATACTTGCTCTGCTAAGGTGAAAGTAAGGTCAATATTTCCAATTTAGAGTTATCTAATGCATGTCTCAGTTAATATAACCTAAAAGCTGTATAAGATGTGAACCATTGGAACTGATTTTTTTTTTAATTACCTTCTAGATGAAAGTAAATGGATTATTTCTTAATTGATCATTTCTCTTAAAAGTTGATTGGTTTTCTTCTAGCCGGTAGCCTTTTAGTTTTTGTAGTGCACAATTATAGACCATAAACTCCTGATATCCCATTTCTTTTATATTCTTTTGTACTCCGTATTCTTTTTTCTCTTCTTCTTTTCTCCTTCTCTCGCTTGGTGCAAACACATTTGCTCACATACTGAAACTCCTTTTCTCTATGGGGCTACTTCACCTATAATATCAGCAATTTAACTCTGATTTGAATTTGGGCTTGAGATTCATCAGAAAGAGATTAAAGCCTAGAAATTAAGTATGTCCAGTTCCGAGTCCGTGCTTCTTCTTTTTCTTAACAGATTTCCATACCCTTTTGCCTTTTGCTTCTTTTCCATCTCTCTCTTTTTTCTATTTCCTTTGCAAACTTCTCTCATTTTCCTATTTTTATTTTTATTATTTTATCAAAACATATTTTTGCCTCTTCTTTAAACCGGCCTCGTGTTCCCTCTTTTCGTGCCTCGTGTCTACTCTCTTTAACATAACCTCTTTTTTATCTTTTTTTTTCTCTTACTTCACATTCCGCAGATGGTCCTTATTACGGTTCATGTTAGCCGGCCCCAATCTTTTTGGGCCTAAGACTTGCTGTTTTTGTTGAATTTACGCCTCCAGCAGCTCATCCTGCTACTCTTTTGCATATTTTCTTGTTCTTCCCACCTATTATGTTAGCTCATAGTTTTTGTTTGGCAAACAGTAGGATGGGCAAAAGGAGTAGATTTTACTTCAAATTGTTGACTGGACTAGTCAATCTACTATTTGATGGTGTTAGGTAAAGAGTAGATCGTGGTCAATGTAATCTTTTTCAGTATTGCTGATAAAAGGAGTACTTTAATTAGTAGATTAACCTTGGAATTAAGTCACCCTTTACTTCTTATAATATTAGTAGTTGCCTTATGCTATCTAGAATAAATATTCTTTTTTTTTTTTGCTAATACAAGTCTGCTAATCAGCTAAGTGCCTAAGGTGACATGCATATACAAGAAATTGCGATTGATAAATTGCATCAACCTTTTTATCTTTAGTAGGAAGTGTTTGTCAATTGAAATCATATTTGAAGTTCTATGTTTATTCACTCTACCCAAATTACAAAATTGAAGTTGCAACAGTTAATCTAAAATGTCATAAGTCATATAGTAATTGTGCTTACATTGGATCCATGTTTGGCATGTCAAAATATTAAAGATATGTTTGGATATCTTATTAGTCCTCATCGTGATTCCTCTTCTCATGAGCATGTGGCCACCATTGTAATCTGCAGGTTGATGATCCTAGAAGAGGATTTAGCATGCTTAACAATGGGCCACTAGATATGCGAATGGATCCTAAGGTATGAGCAGGATTTACATATCATCATTTTTTTCTTTCTGCTGGTTGTAAGTTCTATATTGTTGTGTTTTTATAGGTAGTAGTGATATATGACTATCTGAAAATAGAATCAGTTTTAGGTTCTTTATTTTGATACATTATCATAAATCTGTAACTACTAAGCTTTAGTATTTTCCTCTGTTTTTTTCTTTATAAACAAACCACCACCCAACACGATTCACAGGTGAAAATGTATTCCATTATTTTTTGAAGTCCAGCAGAGAGGCTATTTGGGGTAGTCTCTTACTTTTCTGAATACAAATAATCATATATGCAACGCTCAAGGAGCTTAAGACTAAGTTGTAAGAGGTTTGCGTATAAGGGACTAAAATTATGCAGTGGTCCAATTGTGGTAGTCACCAACTACTCTTGGACCAATGACTTCTTTATAACGAGAGTTTGATACCATCGTTATTACTAGTGAATGCAGCATAGTAAAATACTAAAATTAGTTAAACCTTATTTGATAAACCCTAATTAATTATCACATGTTGTGAAAATTGTGACTGCCAAACCGATAGATGTAGCATTGATACCCCTACAAAAAATTAGAGGACATTTAGATGTGAATGCAAACTAAGACCAACTAAAGCATTCATTGTGTGACAACCATCTTGTCTGCTTGTTGGCAAATGAAACAATGGTTACCAGAGCAACAAGGGAAAAGAAAAGACTAGCAGCAGTGTCTGCAAATAGAGGGTTGTTCATAGAACTATAGATGCATTGAATGCGTAAACAGTAAACATATCTACTTATGAGCCGATAATTTAAACACCAAACTCACCTTTCTATTTACCCTAATCCAACTCATCTTTCTATGAACAATCACCGACTTTTTTCGTGTATCTATAAATAGAGGCTAGTATCCTATTCATTCGAACTACCATAATCCATCCTTTACCCTTTGTATGTATAAATAGAGGTATCATTTTCTTTTCTCTTATCCATCACTTCCTTTTCTTTTTCTCTACAAACAACCATCCATCATTTTCCCAATTCTCTTTACTCCCCATCCAAGGTACAAAATGGCGGACACTACCAAATATGTACATCCCTTCACGAGGGTCATAGTGAATTTGTTGATGGACACCAAAATGGAAACCCTCACGCAAGAGTCTTTCTTCACCGAAGGTTGTATTCTATATCTCGGCTACAAATGTGAGCGAGGTGAAGCCTCAATGGTCTAAGGAAGGTTTCATATGCTATGCATTTATCGGATTCGATATACCTTAAGAACACTACGTCACTACGATTCTGCTACAAATTTGGCACGAAAGTTTGAAGTGGACTGGCATGTGAGAGTTGACTTATAACTTTATGTTGACTTTATATCACTAGGCCATAAAGCCACGTGTTCTTATCTACATTTATTTAGGGGGTCATGTGTGTTTTTCAACTATTGATATAGCATGGAAGATTAGAGTTGACATGGTGGAGGTTGTGCGTGACAATATTTTGGCATACGAAACCATTCCTTCTGACTCTGTTTAACGATCTATAGTTTATACCTTGGGGAAAAAGGACTGGCTACGTAACTACATAAGTATTCCTTTTGTCCCTATTTCTATTTACTTGACACTCTTTTCATATAAAGCCATCTCTAGTTTTGACACGCTTCACTATTTTAAATTATTTATCTCTGTTCACTATAGACCCAATATCTACTAACTATTATAAAGAATCCCCCAATATCCATTAAATAGAATAAAAAAAATACTCCACTACCAACTATCACAAATAAAATATTAAGTCAAAAAGTGTCAAATAATTGGGAACGTAGGGACTAAGGAGTACATAGTTGGGCTGATGCTTTCAAGATTGTGTTCGATGTCTTCTAATCGGGCTTTAGACAACGTCGAATATGTTGTCAAATGATTACCCATAAAATTCCATTAGCTAAACTTAACTGCTTTTCTCCTCTCTTTTTAGATTGAAGTAGTTGCCGAGTCGCGCGCGGTGCCCTTAGGAATAAACTATAGATTGTTAAACAGAGTTTAAAGCAACAGGGATTGTTTTATATGCCGAAATATTGTCATGGACAACCTCTTTGTGTTGACTTTTGTCTGAGGGTGTCATTGGTTTATGAATGCAGGATGTACCTTTATAATGTAGCCTCCTATCTCCTGTGTAAATCCTGATAGATTTTTGGTATTAATTATGTGATTAACTGAATGGAACAGGTCTGTAACAGGGTATTTTAAAAGCAGAGGATATACTGAATTCTTGGCCACCAACTGAAGTTGGGAGAATCCTTCAGGAATATGGAGAAGAAAGTAACTGGTATTCTCTCCAGAACAAGATTGTTAAGGCTCGTCTAGATGGTGGGTTTCATACAACCGGTGATTTGGTGGATCTTATACGCGGCACAACCTCTAGAATGAAAGGTATGACTTTACTAAAGCTGAATGTCCATTGCAAGCCTAAGTTGTTTTCAAAGTTTTTTTTAAAAGATATCCTTGGACCTCAAAAAATCAAAGGGCGCACTTTTGTTAGAACTTAAGGACTATAGCACTCGTTCTCAGATTGTGTTGTCTTTTGCGCCTAAGGTCATTACATGCTGATCTTCTTTCTTATGGTGGTCTCTATGATTTAACACTTGATTATGGGTAGTGTAAAAATTGATTTGCAAGCCAAAACTGTTGTGAGAAATTTATGAACACGTGCTTGGAAAACTGAAAATGCAAAGTGATTTCAACAGGAGGTAGGCAGGGCTGGATAAAGACTGCTGCACGGGTTTTCCAAGCGCTTAGAATAGCAGTTAACGATGAACTCAAAACTTTGGAAAATTCTCTTTACTCTTGCTTTGATTGCCTTGGTCCTGGTGGAAGACTCGCAGTCATATCTTTCCACAGTTTGGAAGACAGGATCGTAAAACAGACTTTTCTCAACATCATCAATAACATTCACAGAAAAGGAGACACGGTTATAAAAGAGGCAGAATTTGGAGCTGAGCCAAGAGAGTTTAACTATTACCCCGCCGAAAAGGAAGTTTGGATTAAGCAAGTAGTAAAAGGCTCTGCTGGGGTAATTCTAACTAAGAGACCTATAACAGCATCTACCGAGGAAGAGAAATTAAACTCGAGGTGTAGGAGTGCGAAGCTCAGAGTGATTCAGAAAATGTAAGATATTACTCAAATTTTGTCAATGGAGGGATATTTTTACTAGAATTATTTGATTAGGGTTTAGGCCTTCACAGGGAAAACTTTTCATTCAAGATTATGCAAGACTTTTATTAATGTGTACAAGTCCACACTTTTTATTTGTTGTGGAGTATTTGCTATTTTTTGTAACAGCATTACTGCGAAGACCGACTGATATCCCATGCTCGTA AAAGGACAGTTTCAATTAGAAATTCTTTAGAAAATCCGTACTCCATATTAGCTCAAGTGCTCAACCCAAGCGACCCGAGTTAGTTTCCAAAGACCCATCACCCACTTTACCCCAGACCACTGGAGCATCCACCCAAATTAGTTTGGAGTCGGTAGAGAGAGAAAACATAATCAACAAACAACAATGGCGAGAGCAGCAGTCTCAGCATCCCTAATAAAACTCTTCTCCCTCAAATTATCTTCTCAACCTCTCTCCTCCATTCCTGCAACTACCATCTCCTTCAGCACCTTCCACGCTCCTCCGAAAAAGAAGAAGCAGGAAAAGAGGAGAGAGAGTGAGAACAAGAAGACAACTTCTTCGTCTTCTTCTCCCTCCATTGTTGTAGCTTCGGGTTCAGCTTCGTCGGATTCGAAGTCGAAATCCTCTGCTTTGAAATTCGTGAAAAGGAGGACGAGGTCGGACAAGGAATTCGACGAGGATTACATTAAGAAATATGGAGATGAAGAGAGTCATGTTCCTGTTATGCTTGGTGAAGTTTTGGATGTGTTTGATTCTTCATCGTCTTCGTTTCAGCTTCGTTCTTTCGTCGATTGTACCCTAGGTGCCGCTGGTCATTCTTGCGCTATAATTCAAGCTCATCCCGAACTGCAAAAATATGTTGGATTAGATGTTGATCCAGTAGCCCATGAAAAGGCTAAATCTCGAATCAATAATCTGCTGAACAGCAAGTCTGCCTGTTCAAATATCGATTTGAAAGCTCATATGCTTTTGAGGAACTTCAGAGAAATCAAGCAAGCAATTGGCCAGGTTGAGGAAAATCTTTTACTGTCTGGAGTTGATGGGATTTTGATGGACTTGGGAATGTCTTCCATGCAGGTTGATGATCCTAGAAGAGGATTTAGCATGCTTAACAATGGGCCACTAGATATGCGAATGGATCCTAAGGGTATTTTAAAAGCAGAGGATATACTGAATTCTTGGCCACCAACTGAAGTTGGGAGAATCCTTCAGGAATATGGAGAAGAAAGTAACTGGTATTCTCTCCAGAACAAGATTGTTAAGGCTCGTCTAGATGGTGGGTTTCATACAACCGGTGATTTGGTGGATCTTATACGCGGCACAACCTCTAGAATGAAAGGAGGTAGGCAGGGCTGGATAAAGACTGCTGCACGGGTTTTCCAAGCGCTTAGAATAGCAGTTAACGATGAACTCAAAACTTTGGAAAATTCTCTTTACTCTTGCTTTGATTGCCTTGGTCCTGGTGGAAGACTCGCAGTCATATCTTTCCACAGTTTGGAAGACAGGATCGTAAAACAGACTTTTCTCAACATCATCAATAACATTCACAGAAAAGGAGACACGGTTATAAAAGAGGCAGAATTTGGAGCTGAGCCAAGAGAGTTTAACTATTACCCCGCCGAAAAGGAAGTTTGGATTAAGCAAGTAGTAAAAGGCTCTGCTGGGGTAATTCTAACTAAGAGACCTATAACAGCATCTACCGAGGAAGAGAAATTAAACTCGAGGTGTAGGAGTGCGAAGCTCAGAGTGATTCAGAAAATCATTACTGCGAAGACCGACTGATATCCCATGCTCGTA ATGGCGAGAGCAGCAGTCTCAGCATCCCTAATAAAACTCTTCTCCCTCAAATTATCTTCTCAACCTCTCTCCTCCATTCCTGCAACTACCATCTCCTTCAGCACCTTCCACGCTCCTCCGAAAAAGAAGAAGCAGGAAAAGAGGAGAGAGAGTGAGAACAAGAAGACAACTTCTTCGTCTTCTTCTCCCTCCATTGTTGTAGCTTCGGGTTCAGCTTCGTCGGATTCGAAGTCGAAATCCTCTGCTTTGAAATTCGTGAAAAGGAGGACGAGGTCGGACAAGGAATTCGACGAGGATTACATTAAGAAATATGGAGATGAAGAGAGTCATGTTCCTGTTATGCTTGGTGAAGTTTTGGATGTGTTTGATTCTTCATCGTCTTCGTTTCAGCTTCGTTCTTTCGTCGATTGTACCCTAGGTGCCGCTGGTCATTCTTGCGCTATAATTCAAGCTCATCCCGAACTGCAAAAATATGTTGGATTAGATGTTGATCCAGTAGCCCATGAAAAGGCTAAATCTCGAATCAATAATCTGCTGAACAGCAAGTCTGCCTGTTCAAATATCGATTTGAAAGCTCATATGCTTTTGAGGAACTTCAGAGAAATCAAGCAAGCAATTGGCCAGGTTGAGGAAAATCTTTTACTGTCTGGAGTTGATGGGATTTTGATGGACTTGGGAATGTCTTCCATGCAGGTTGATGATCCTAGAAGAGGATTTAGCATGCTTAACAATGGGCCACTAGATATGCGAATGGATCCTAAGGGTATTTTAAAAGCAGAGGATATACTGAATTCTTGGCCACCAACTGAAGTTGGGAGAATCCTTCAGGAATATGGAGAAGAAAGTAACTGGTATTCTCTCCAGAACAAGATTGTTAAGGCTCGTCTAGATGGTGGGTTTCATACAACCGGTGATTTGGTGGATCTTATACGCGGCACAACCTCTAGAATGAAAGGAGGTAGGCAGGGCTGGATAAAGACTGCTGCACGGGTTTTCCAAGCGCTTAGAATAGCAGTTAACGATGAACTCAAAACTTTGGAAAATTCTCTTTACTCTTGCTTTGATTGCCTTGGTCCTGGTGGAAGACTCGCAGTCATATCTTTCCACAGTTTGGAAGACAGGATCGTAAAACAGACTTTTCTCAACATCATCAATAACATTCACAGAAAAGGAGACACGGTTATAAAAGAGGCAGAATTTGGAGCTGAGCCAAGAGAGTTTAACTATTACCCCGCCGAAAAGGAAGTTTGGATTAAGCAAGTAGTAAAAGGCTCTGCTGGGGTAATTCTAACTAAGAGACCTATAACAGCATCTACCGAGGAAGAGAAATTAAACTCGAGGTGTAGGAGTGCGAAGCTCAGAGTGATTCAGAAAATCATTACTGCGAAGACCGACTGA MARAAVSASLIKLFSLKLSSQPLSSIPATTISFSTFHAPPKKKKQEKRRESENKKTTSSSSSPSIVVASGSASSDSKSKSSALKFVKRRTRSDKEFDEDYIKKYGDEESHVPVMLGEVLDVFDSSSSSFQLRSFVDCTLGAAGHSCAIIQAHPELQKYVGLDVDPVAHEKAKSRINNLLNSKSACSNIDLKAHMLLRNFREIKQAIGQVEENLLLSGVDGILMDLGMSSMQVDDPRRGFSMLNNGPLDMRMDPKGILKAEDILNSWPPTEVGRILQEYGEESNWYSLQNKIVKARLDGGFHTTGDLVDLIRGTTSRMKGGRQGWIKTAARVFQALRIAVNDELKTLENSLYSCFDCLGPGGRLAVISFHSLEDRIVKQTFLNIINNIHRKGDTVIKEAEFGAEPREFNYYPAEKEVWIKQVVKGSAGVILTKRPITASTEEEKLNSRCRSAKLRVIQKIITAKTD Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo18441.1 vs. NCBI nr
Match: gi|902220541|gb|KNA18639.1| (hypothetical protein SOVF_068790 [Spinacia oleracea]) HSP 1 Score: 880.9 bits (2275), Expect = 9.500e-253 Identity = 457/459 (99.56%), Postives = 459/459 (100.00%), Query Frame = 1
BLAST of Spo18441.1 vs. NCBI nr
Match: gi|731318150|ref|XP_010669567.1| (PREDICTED: probable methyltransferase-like protein 15 homolog [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 715.3 bits (1845), Expect = 6.900e-203 Identity = 378/458 (82.53%), Postives = 411/458 (89.74%), Query Frame = 1
BLAST of Spo18441.1 vs. NCBI nr
Match: gi|1009136059|ref|XP_015885328.1| (PREDICTED: ribosomal RNA small subunit methyltransferase H [Ziziphus jujuba]) HSP 1 Score: 496.9 bits (1278), Expect = 3.900e-137 Identity = 272/439 (61.96%), Postives = 335/439 (76.31%), Query Frame = 1
BLAST of Spo18441.1 vs. NCBI nr
Match: gi|1021054113|gb|KZN11891.1| (hypothetical protein DCAR_004547 [Daucus carota subsp. sativus]) HSP 1 Score: 496.9 bits (1278), Expect = 3.900e-137 Identity = 280/466 (60.09%), Postives = 343/466 (73.61%), Query Frame = 1
BLAST of Spo18441.1 vs. NCBI nr
Match: gi|225429894|ref|XP_002283626.1| (PREDICTED: probable methyltransferase-like protein 15 homolog [Vitis vinifera]) HSP 1 Score: 492.7 bits (1267), Expect = 7.300e-136 Identity = 266/387 (68.73%), Postives = 304/387 (78.55%), Query Frame = 1
BLAST of Spo18441.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RI91_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_068790 PE=3 SV=1) HSP 1 Score: 880.9 bits (2275), Expect = 6.600e-253 Identity = 457/459 (99.56%), Postives = 459/459 (100.00%), Query Frame = 1
BLAST of Spo18441.1 vs. UniProtKB/TrEMBL
Match: A0A0J8CVJ2_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_2g035670 PE=3 SV=1) HSP 1 Score: 715.3 bits (1845), Expect = 4.800e-203 Identity = 378/458 (82.53%), Postives = 411/458 (89.74%), Query Frame = 1
BLAST of Spo18441.1 vs. UniProtKB/TrEMBL
Match: A0A166J817_DAUCA (Uncharacterized protein OS=Daucus carota subsp. sativus GN=DCAR_004547 PE=4 SV=1) HSP 1 Score: 496.9 bits (1278), Expect = 2.700e-137 Identity = 280/466 (60.09%), Postives = 343/466 (73.61%), Query Frame = 1
BLAST of Spo18441.1 vs. UniProtKB/TrEMBL
Match: F6H2X5_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_04s0008g03150 PE=3 SV=1) HSP 1 Score: 492.7 bits (1267), Expect = 5.100e-136 Identity = 266/387 (68.73%), Postives = 304/387 (78.55%), Query Frame = 1
BLAST of Spo18441.1 vs. UniProtKB/TrEMBL
Match: W9R9P8_9ROSA (Ribosomal RNA small subunit methyltransferase H OS=Morus notabilis GN=L484_014898 PE=3 SV=1) HSP 1 Score: 490.7 bits (1262), Expect = 1.900e-135 Identity = 258/402 (64.18%), Postives = 314/402 (78.11%), Query Frame = 1
BLAST of Spo18441.1 vs. ExPASy Swiss-Prot
Match: RSMH_HELMO (Ribosomal RNA small subunit methyltransferase H (Fragment) OS=Heliobacillus mobilis GN=rsmH PE=3 SV=1) HSP 1 Score: 206.5 bits (524), Expect = 6.500e-52 Identity = 142/357 (39.78%), Postives = 189/357 (52.94%), Query Frame = 1
BLAST of Spo18441.1 vs. ExPASy Swiss-Prot
Match: RSMH_BACSU (Ribosomal RNA small subunit methyltransferase H OS=Bacillus subtilis (strain 168) GN=rsmH PE=3 SV=2) HSP 1 Score: 204.5 bits (519), Expect = 2.500e-51 Identity = 134/354 (37.85%), Postives = 189/354 (53.39%), Query Frame = 1
BLAST of Spo18441.1 vs. ExPASy Swiss-Prot
Match: RSMH_PARUW (Ribosomal RNA small subunit methyltransferase H OS=Protochlamydia amoebophila (strain UWE25) GN=rsmH PE=3 SV=1) HSP 1 Score: 203.8 bits (517), Expect = 4.200e-51 Identity = 134/353 (37.96%), Postives = 189/353 (53.54%), Query Frame = 1
BLAST of Spo18441.1 vs. ExPASy Swiss-Prot
Match: RSMH_BACVZ (Ribosomal RNA small subunit methyltransferase H OS=Bacillus velezensis (strain DSM 23117 / BGSC 10A6 / FZB42) GN=rsmH PE=3 SV=1) HSP 1 Score: 203.0 bits (515), Expect = 7.200e-51 Identity = 133/354 (37.57%), Postives = 188/354 (53.11%), Query Frame = 1
BLAST of Spo18441.1 vs. ExPASy Swiss-Prot
Match: RSMH_BACLD (Ribosomal RNA small subunit methyltransferase H OS=Bacillus licheniformis (strain ATCC 14580 / DSM 13 / JCM 2505 / NBRC 12200 / NCIMB 9375 / NRRL NRS-1264 / Gibson 46) GN=rsmH PE=3 SV=1) HSP 1 Score: 202.2 bits (513), Expect = 1.200e-50 Identity = 131/353 (37.11%), Postives = 186/353 (52.69%), Query Frame = 1
BLAST of Spo18441.1 vs. TAIR (Arabidopsis)
Match: AT5G10910.1 (mraW methylase family protein) HSP 1 Score: 433.0 bits (1112), Expect = 2.400e-121 Identity = 251/449 (55.90%), Postives = 307/449 (68.37%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo18441.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo18441.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo18441.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo18441.1 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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