Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDSexonthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATGCTGAAATCATGTGCAATTTGCTGGTAAAGAGGAGAAAGATTAGCATCTCATAATGGTGAATTAGATTCTGTTTAACGCCTTCGTTAGTAAAGGACAATTGGGGTTTATACAGGTTCTTTATGTGCAGATCATGCAAATTGACATGAATTTCAGTTGGTTTCTAAATAATTTGAAGTATGAAAATAGCGACTATTTATGCGCATTTTTTACCTATATATTGTTGATGATTTTTTCAAGGAATTGTAGTTAGGGCAAGTATTTGTGTTTGTGAGTTGTAGACTGTGCTTGAAGTCTGCCTCTTTGTACCATACAGTTTAGCATTCTGGGTTGTGATTTCTGCATTCAATTTTTTTGTGTGCAAAAATAGACTTTAGGGTAATTAATCAAAATGTTCTGCTAATTAACCCAATTACAAATGTGTTGACACTTCAATTTAACTCTCTATAGAAAGTACTAGGTTAATTGTTTAGTACGGTTTTAAATCAGATAGTTTTAGGTGTTACCCTCGAGCGAAGAGTAGCCCTATTTCAAATGTTTTTAACACTTCTGTATAACTCTCAATGTACATTTTTTTTTTTTTGCAATTGTTGGCAATTGCATAGTTGAGAATTTGATTCATTACATCTTTGATCTATAGAGAAATTGCGAAAATATCCAATATTTAGCGAATTTGCATTTTTCACGGGGATTTCTTTAACATTATGATATTTTAGGTATTCCTTTGAACAAAGGGGTACATAGTTACATAGCCCGCTTTAATTTTCAGTGTAATTTTTTTGTTAATACATCCGATTACACCGAGAAATACTTTGAATAGAATTAACTTCGCTCATTTTACGCACATTTAACTCGAGGCGTATTCGGTGTACAATAAAATTTCAGAATCTCGATCCGGGTGGCCAATTCTATCCAAAAAAAAGATAAAATAAAAACTCCAGCAGATTCCAAGAATCAATCATGGGATTGGTCAATTCATTAAAACTCCAGAAAAAAAAAGTCAATAAAAAAATCCTCTTTCCCCAAAGTCACAATCTTGCATCAAATCGAATTAATCCGCGAAAATTGCTGAAAAAGCTTTGAACTTTTCTCAAATGGAACTCTAAATTTTCACTCTTTAATCCCAATTTTTTTAAAATTATGATTTTTAGTAAGATGATCACTCAGTTGCTGCTAACCTTGGTGATTCTCTTTGCTGCTTTCTCTCTCCTACCTGCAACAACAACAATAGCTACTAATCTTGTAAGTTTTTCCTTAAATTTGTACTTACCCATCTGCTTAATCACTCATTAGTTGTTAATATGATTGTTAATTCATATGGGGTTTCGAAAAATCACCAATTTGCTAACTATTTTCAACAATTTTTCGGGGGTTTTGATTGTTGGATAGTTTTGTGAAGCTGGGATTGAATATGGAGAAAGTGGGTGTGGAATTCCATCATCATCATCATCATCATCATCAAAGATATTGATTAAAGGAGGAACAGTAGTGAATGCCCATCATCAAGAAATTGCTGATGTTTATGTGGAAGATGGTATTATTGTTGCTGTTCAATCAAATCTTAAGGTAATTATTATCATTAATCTACTTTTTAATCCTGATTTCTGGGGTTGTGCGGTTTGTGAATTTCTGTAATTATTTTGTAAGATTTACCAATTATTAACCTGGATTTTGTTCTTGTGATTGTTTTTGTTGTCTGTCAATCTAATGGTGGATTGGTGGGACACTTGGTGTTAAAATTTCCCAGAAATCATGAGATTATGCTTCTTGGTCTCTGATTACTAATGTTAGATTGTTAATACAGTTAAATACTCCCTCCATTTATATACATACAATTTGAGATGTTCGGAAAAAGTTGTCATTTTTTCTGGAAGTGACTGGATGTATGTCTCATGATATCCTCACCTATAATGAGAGTTTGATTAATACAACTATAACAAAACGTGTGTGATAATTGGTGTCCTTAATTATGATTGATTCGGATAAGGGAGTATCCGAGTATATATGTATATGTATTTTCCCGTGCCACTTGCTTATGTGGTATAGTGAAACTGTGTTATACAAAGTACAATTTGCAAACTTTGTGATCTTATATTGTCTTGCCTTGAAATGTAGACCTAGAACTAAATTGTAAATGGGATTGTGATGCTTTAAACAGGTGGGTGATGACGTAGTTGTGCTTGACGCGACTGGAAAATATGTCATGCCAGGTAGAGTCGTCTGTCTTTTAACCTAAAATACTCCCTCCGTTCCTAAATAACAAGCCAAATTTGAGATTAATTAAAAAAAAATTAGCTAAAGTACCACAACTTTCCTCCACTATCAAATACGAAGTATACCAATGTTGTCTTTCTTTGAAAGTTCTTATAAGAGTATCATTAACGATAATACGGAAGCTTGAACTTTTACTTGCTTTATTTAGAAAGTGGCCTACTATTTTGAGACGGACTAAAACATAAAAGTGACCTACCATTTGAGAACGGAGGTAGTAAAACTGTATGATACAGGAAAAAATGTGTACTGTCAGTTTAACCTTCGTACATGTGAAATTTAATAGGAGGAATTGATCCACATACTCACCTGGATATGGAGTTCATGGGCACGCAGACCATCGATGACTTCTTTAGCGGTCAAGCTGCTGCATTAGCTGGTGGTACAACAATGCATATCGACTTTGTCATACCTGTTAATGGAAGCTTGACGGCCGGTTTGGAGTTATACAAACAAAAGGCTCAGAAATCTTGTATGGATTATGGTTTTCATATGGCGGTTACAAAATGGGATGAGGTTGTTTCAAGGGAAATGGATTTGATGGTTAAGGAGGAAGGTTAGTGTCTCAGTTTCTTAGTCTCATTCCCTTTACCGCTCGTTTGGTAGCCGGCCACAAACGGTGTCAATAGGAATGAATTTGTATGTAAATTTGTAAAGAAAATCAATATACATTCCCATGGTAATGCTAGTCCACTCAAAACTATCTCTTTTTCTTTATAAGTTTCCATTACCATCCATTACCATCAGGGGAGTGGTATTAGGTGGGAATGCAAATTTACGAAGAAAAACACCAAGTTTGAGACAAAGTTTCATTACCATGGACATCATGATGTTATTTCTTGCCAAATTACACTTAGATTTATTCTCATTCCCACCGTTTATTACCAGCTACCAAACGGGCCGTCAAAGTCAATAATCAGATTTAAAATGCTTAGCAAATTTCAGGTATAAATTCTTTCAAATTCTTCATGGCGTACAAGGGCTCTTTCATGATAAACGATGAGCTTTTGATAGAGGGGTTCAAGAAATGCAAGTCTTTGGGTGCCTTGCCTATGGTTCATGCAGAAAACGGTGATGCTGTTTTTGAAGGGCAGAAGCGGATGATAGAACTTGGTATCACTGGTCCTGAGGGGCATGCTCTTTCAAGACCTCCTCTGGTAATTTCCCCTAGCATCTGTTAAGATATATACAGGCTGTTGATGGTTTCGCATAATTTGAATATGATACATTAGACCTGATCAAATTGTGGGCCGGGCTGGGCCATACCTTGAAAAGTCTGCCCATTAGGTCGGGTCTATGATACATCGATGAAGCCTTCTTTTGGAATTCAGATTTCTGTTGAATTGCTTTCTGTGTTTCTCTGGTTAATATTATCAGTTCTTCAATTGCTGACCATCTTCATGCATGGGTTCAGATCGTTAAGTATATCTGAGGCGTCAAGTTAAATTGTTTAACATCTTACATTCACATCTTTTATAGAGTCGGGAGTTTGTGTCACATTTTCCTTATTTTTCCTAGAATATTCTCTACTTCTCCATGAGGCATAGGTTGATTTAGGCCCCGTTTAGTTCACCTTATTTCTCCTTATCTGATCTGGTCTGATCTTATTGGTGAATACAAAGCACAAGCAGCACATTTTAGCTACTGTTTACTTATACCAGTTAGGTTACTTCTGTATCTGATGTAAATTGAATATTGTTTCTTACTTTGTCTTGTCTTTCACGGCCTTTCAGCTCGAAGGAGAGGCAACATCTCGAGCTATCCGACTAGCACGTTTTGTAAACACGCCTTTGTATGTGGTTCACGTGATGAGCATTGATGCCATGGAAGAAGTAGCCAAAGCTCGAAAATCAGGTTCTTAGCTAATCTTTTATTTTAAGATTAGGTGTCGTCAATCCTTTAATCCTGAATGATTAGCCAATCTTTTATAAACTTCTTCTCACAACTTTTTATTGTCTTCCTCTCCTTAATACAGGACAGAGAGTCATAGGCGAGGCCGTAGTTTCGGGATTAATCCTGAATGATTCCGTGCTTTGGGATCCTGACTTCTCCATTGCAGCAAAGTAAGTCCTCTTGTTACTCTACTTTGTTTTCCTTCCATCAAACCGCCTATTATATTCACTTTTTTCCCTTCTCTTTTTTCGGGAATCAGATATGTGATGAGTCCACCAATCAGAGAAGCTGGCCATGGTAAAGCGCTACAGGGTGCTCTTTCTTCAGGAGTTCTTCAGGTTTCTTACACTGATAGATAAAACTTTATATTGATAAATTCCTTGAATAATTTTCCGCAGTATAGGAACAGATTGACCCGAAATTTATGCAACTTTTGTCTATGTAAAAAAAAAAAGTTAGGTTTCTTGTACATAGATAGATCTAGACTATTTTCCTGGTGATAAAGTATAAGGATGATTCCCATCCTAGTAAAAAGTGGCCACTCAGAGAGCTAGAAACTGTAAAATGCATGGTCGTGCTCAAATGGATTATGGAATAAACACCTGTTATTTGACAGTTGAACTCTGACACCGAGAAAATGATAAATACCTATACGACTTCTTTTCATTCTAGACATTCACGTACAAATAGAGGACAATGAACATTACACTTCACTATGTTGCAGCTAGTCGGGACTGATCACTGTACGTTTAATTCAGCACAAAAGGCTTTTGGAATTGATGATTTCCGAAAAATCCCAAATGGTGTTAATGGTAAGCTTAATTTTGAAATTTTATGACTCGATCATGGTATTTGATTGAATAATTCAAAACATGAATTTCTTGCTGTTGTCTCATTATTAGGGCTTGAGGAGAGGATGCATCTAGTCTGGGACACGATGGTGGTAAGCTTCCGAAGATTGTAGCATCCACGATTAATATTTTTTCTAGAAAACTCAGAATTTTCTCATTTTTCGTGGTTCTATCTTTTTGATGTAGGAATCTGGGCAGATGTCAGTCAGTGATTATGTGAGGATAACAAGCACAGAATGGTATAGTTTCTGATACTTAAACATACAGTCCTTAATTTTTATCTGGTATAATCTGTTGTTGTTGATAAAGTTTCTTTATGCAGTGCGAAAATCTTCAACATATACCCGAAAAAAGGAGCAATACTCCCCGGATCTGATGCAGACATCATAATACTCAATCCTAATGCAAGTTTCACAATTTCAGCAGAACTGCATCATTATAGGACAGACACAAATGTCTACGAGGGGGTGACAGGAAAGGTGATTACTTGTTAAACTTTTGTCTTTCTATTTTTATGTTTTATGGTTTCTGAACTAGTTTTTATGGATAGTGATAATCAATTCGGAACTAGCAAAAGTTTTATCTTTTTTATTGCTCTGGTTTAAAGATGTCTGTGGGTCGGGCCATGCTTTGGGCCGAGCCCATGTCTCGTTTGCATGAACGGGCCCGGTACACACCTATTCCACTTCTAACGGGCGGGGTCTAGATGCGCCCGTGCCGGACCGTGCTTTGTTCGTGTCTGTGTCGGACCGTGCTTTTATCGTGCCGGGCCGGGCCAGCCCAGTGCCACATTTAGTTTCATTAAGTTAAAATTTGAACTTCCTCTATCACACTTAATTTTACATTTGGAGAAGTAAAAATCTGACTAGTGAAGGATAATGAATTAATGATGGTATATTTGGCGAATTCCTTGAACGTGAACCCCGAAAAAACATGGCCTATTATTAGACTATGAACCGATGGAGGGAGTATTATATTCAAAACCTTGCATTTTGCTGAGCCTTTTTTCTTAAGATGTTATTTTTTTTGCTTATTTTTCCAGGGAAAGGTTGAAGTAACTATTGCGGGAGGAAAGATTGTTTGGCAAAACGGAGAACTAAAAGCCTTTCCGGGTTCTGGAAAATACGTAGAGATGCCTCCTTTCAGTTACGTTTTCGACGGTATTGAAAAGGCAGATAGCAGTTACCTCTCTTCTCTCAAAGCTCCGGTAAAACGGTTCAGATCCTCAACTTAAAACTTAATACTGCATTACTTTGTACAGAAAATTCTGCCTTCATTTTACTTGACATGAACTAAATGAAACATTATTACCATTACACACGAATGCTGATCTTTTTTTACGGATCATACTGAAATAAAACAAAAAAGAAAAGAAAAGAAAATTTCCTGTGGTGCAAAACTATCTGTGTCTGAATTCAAAACTTTCTGTATTGATTTGTATTTGTGTCTAAAATAAATAAAATTAAGTTCAACAAAACATATGCTCCAAGAAGTTTAGATTTATTTTTTCTGATTGATCACCTCATAGTATAAATTTACAAGTATTTGACAAAAATTGCAGTAGGAATTCGCGTCTTTTCTTCTCTTTTTGGCAGTATGAATGAATTCTTGTTCTTAGTAAGGCATTATGCAACAGTACGCCA ATGCTGAAATCATGTGCAATTTGCTGTAAGATGATCACTCAGTTGCTGCTAACCTTGGTGATTCTCTTTGCTGCTTTCTCTCTCCTACCTGCAACAACAACAATAGCTACTAATCTTTTTTGTGAAGCTGGGATTGAATATGGAGAAAGTGGGTGTGGAATTCCATCATCATCATCATCATCATCATCAAAGATATTGATTAAAGGAGGAACAGTAGTGAATGCCCATCATCAAGAAATTGCTGATGTTTATGTGGAAGATGGTATTATTGTTGCTGTTCAATCAAATCTTAAGGTGGGTGATGACGTAGTTGTGCTTGACGCGACTGGAAAATATGTCATGCCAGGAGGAATTGATCCACATACTCACCTGGATATGGAGTTCATGGGCACGCAGACCATCGATGACTTCTTTAGCGGTCAAGCTGCTGCATTAGCTGGTGGTACAACAATGCATATCGACTTTGTCATACCTGTTAATGGAAGCTTGACGGCCGGTTTGGAGTTATACAAACAAAAGGCTCAGAAATCTTGTATGGATTATGGTTTTCATATGGCGGTTACAAAATGGGATGAGGTTGTTTCAAGGGAAATGGATTTGATGGTTAAGGAGGAAGGTATAAATTCTTTCAAATTCTTCATGGCGTACAAGGGCTCTTTCATGATAAACGATGAGCTTTTGATAGAGGGGTTCAAGAAATGCAAGTCTTTGGGTGCCTTGCCTATGGTTCATGCAGAAAACGGTGATGCTGTTTTTGAAGGGCAGAAGCGGATGATAGAACTTGGTATCACTGGTCCTGAGGGGCATGCTCTTTCAAGACCTCCTCTGCTCGAAGGAGAGGCAACATCTCGAGCTATCCGACTAGCACGTTTTGTAAACACGCCTTTGTATGTGGTTCACGTGATGAGCATTGATGCCATGGAAGAAGTAGCCAAAGCTCGAAAATCAGGACAGAGAGTCATAGGCGAGGCCGTAGTTTCGGGATTAATCCTGAATGATTCCGTGCTTTGGGATCCTGACTTCTCCATTGCAGCAAAATATGTGATGAGTCCACCAATCAGAGAAGCTGGCCATGGTAAAGCGCTACAGGGTGCTCTTTCTTCAGGAGTTCTTCAGCTAGTCGGGACTGATCACTGTACGTTTAATTCAGCACAAAAGGCTTTTGGAATTGATGATTTCCGAAAAATCCCAAATGGTGTTAATGGGCTTGAGGAGAGGATGCATCTAGTCTGGGACACGATGGTGGAATCTGGGCAGATGTCAGTCAGTGATTATGTGAGGATAACAAGCACAGAATGTGCGAAAATCTTCAACATATACCCGAAAAAAGGAGCAATACTCCCCGGATCTGATGCAGACATCATAATACTCAATCCTAATGCAAGTTTCACAATTTCAGCAGAACTGCATCATTATAGGACAGACACAAATGTCTACGAGGGGGTGACAGGAAAGGGAAAGGTTGAAGTAACTATTGCGGGAGGAAAGATTGTTTGGCAAAACGGAGAACTAAAAGCCTTTCCGGGTTCTGGAAAATACGTAGAGATGCCTCCTTTCAGTTACGTTTTCGACGGTATTGAAAAGGCAGATAGCAGTTACCTCTCTTCTCTCAAAGCTCCGGTAAAACGGTTCAGATCCTCAACTTAAAACTTAATACTGCATTACTTTGTACAGAAAATTCTGCCTTCATTTTACTTGACATGAACTAAATGAAACATTATTACCATTACACACGAATGCTGATCTTTTTTTACGGATCATACTGAAATAAAACAAAAAAGAAAAGAAAAGAAAATTTCCTGTGGTGCAAAACTATCTGTGTCTGAATTCAAAACTTTCTGTATTGATTTGTATTTGTGTCTAAAATAAATAAAATTAAGTTCAACAAAACATATGCTCCAAGAAGTTTAGATTTATTTTTTCTGATTGATCACCTCATAGTATAAATTTACAAGTATTTGACAAAAATTGCAGTAGGAATTCGCGTCTTTTCTTCTCTTTTTGGCAGTATGAATGAATTCTTGTTCTTAGTAAGGCATTATGCAACAGTACGCCA ATGCTGAAATCATGTGCAATTTGCTGTAAGATGATCACTCAGTTGCTGCTAACCTTGGTGATTCTCTTTGCTGCTTTCTCTCTCCTACCTGCAACAACAACAATAGCTACTAATCTTTTTTGTGAAGCTGGGATTGAATATGGAGAAAGTGGGTGTGGAATTCCATCATCATCATCATCATCATCATCAAAGATATTGATTAAAGGAGGAACAGTAGTGAATGCCCATCATCAAGAAATTGCTGATGTTTATGTGGAAGATGGTATTATTGTTGCTGTTCAATCAAATCTTAAGGTGGGTGATGACGTAGTTGTGCTTGACGCGACTGGAAAATATGTCATGCCAGGAGGAATTGATCCACATACTCACCTGGATATGGAGTTCATGGGCACGCAGACCATCGATGACTTCTTTAGCGGTCAAGCTGCTGCATTAGCTGGTGGTACAACAATGCATATCGACTTTGTCATACCTGTTAATGGAAGCTTGACGGCCGGTTTGGAGTTATACAAACAAAAGGCTCAGAAATCTTGTATGGATTATGGTTTTCATATGGCGGTTACAAAATGGGATGAGGTTGTTTCAAGGGAAATGGATTTGATGGTTAAGGAGGAAGGTATAAATTCTTTCAAATTCTTCATGGCGTACAAGGGCTCTTTCATGATAAACGATGAGCTTTTGATAGAGGGGTTCAAGAAATGCAAGTCTTTGGGTGCCTTGCCTATGGTTCATGCAGAAAACGGTGATGCTGTTTTTGAAGGGCAGAAGCGGATGATAGAACTTGGTATCACTGGTCCTGAGGGGCATGCTCTTTCAAGACCTCCTCTGCTCGAAGGAGAGGCAACATCTCGAGCTATCCGACTAGCACGTTTTGTAAACACGCCTTTGTATGTGGTTCACGTGATGAGCATTGATGCCATGGAAGAAGTAGCCAAAGCTCGAAAATCAGGACAGAGAGTCATAGGCGAGGCCGTAGTTTCGGGATTAATCCTGAATGATTCCGTGCTTTGGGATCCTGACTTCTCCATTGCAGCAAAATATGTGATGAGTCCACCAATCAGAGAAGCTGGCCATGGTAAAGCGCTACAGGGTGCTCTTTCTTCAGGAGTTCTTCAGCTAGTCGGGACTGATCACTGTACGTTTAATTCAGCACAAAAGGCTTTTGGAATTGATGATTTCCGAAAAATCCCAAATGGTGTTAATGGGCTTGAGGAGAGGATGCATCTAGTCTGGGACACGATGGTGGAATCTGGGCAGATGTCAGTCAGTGATTATGTGAGGATAACAAGCACAGAATGTGCGAAAATCTTCAACATATACCCGAAAAAAGGAGCAATACTCCCCGGATCTGATGCAGACATCATAATACTCAATCCTAATGCAAGTTTCACAATTTCAGCAGAACTGCATCATTATAGGACAGACACAAATGTCTACGAGGGGGTGACAGGAAAGGGAAAGGTTGAAGTAACTATTGCGGGAGGAAAGATTGTTTGGCAAAACGGAGAACTAAAAGCCTTTCCGGGTTCTGGAAAATACGTAGAGATGCCTCCTTTCAGTTACGTTTTCGACGGTATTGAAAAGGCAGATAGCAGTTACCTCTCTTCTCTCAAAGCTCCGGTAAAACGGTTCAGATCCTCAACTTAA MLKSCAICCKMITQLLLTLVILFAAFSLLPATTTIATNLFCEAGIEYGESGCGIPSSSSSSSSKILIKGGTVVNAHHQEIADVYVEDGIIVAVQSNLKVGDDVVVLDATGKYVMPGGIDPHTHLDMEFMGTQTIDDFFSGQAAALAGGTTMHIDFVIPVNGSLTAGLELYKQKAQKSCMDYGFHMAVTKWDEVVSREMDLMVKEEGINSFKFFMAYKGSFMINDELLIEGFKKCKSLGALPMVHAENGDAVFEGQKRMIELGITGPEGHALSRPPLLEGEATSRAIRLARFVNTPLYVVHVMSIDAMEEVAKARKSGQRVIGEAVVSGLILNDSVLWDPDFSIAAKYVMSPPIREAGHGKALQGALSSGVLQLVGTDHCTFNSAQKAFGIDDFRKIPNGVNGLEERMHLVWDTMVESGQMSVSDYVRITSTECAKIFNIYPKKGAILPGSDADIIILNPNASFTISAELHHYRTDTNVYEGVTGKGKVEVTIAGGKIVWQNGELKAFPGSGKYVEMPPFSYVFDGIEKADSSYLSSLKAPVKRFRSST Relationships
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from 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:
The following exon feature(s) are a part of this mRNA:
Homology
BLAST of Spo12012.1 vs. NCBI nr
Match: gi|902238283|gb|KNA25106.1| (hypothetical protein SOVF_009150 [Spinacia oleracea]) HSP 1 Score: 1066.2 bits (2756), Expect = 1.900e-308 Identity = 540/542 (99.63%), Postives = 540/542 (99.63%), Query Frame = 1
BLAST of Spo12012.1 vs. NCBI nr
Match: gi|731325944|ref|XP_010673772.1| (PREDICTED: dihydropyrimidinase [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 984.9 bits (2545), Expect = 5.500e-284 Identity = 490/538 (91.08%), Postives = 518/538 (96.28%), Query Frame = 1
BLAST of Spo12012.1 vs. NCBI nr
Match: gi|698498133|ref|XP_009794991.1| (PREDICTED: dihydropyrimidinase [Nicotiana sylvestris]) HSP 1 Score: 871.7 bits (2251), Expect = 6.800e-250 Identity = 426/530 (80.38%), Postives = 479/530 (90.38%), Query Frame = 1
BLAST of Spo12012.1 vs. NCBI nr
Match: gi|590584730|ref|XP_007015259.1| (Pyrimidine 2 isoform 1 [Theobroma cacao]) HSP 1 Score: 870.9 bits (2249), Expect = 1.200e-249 Identity = 430/538 (79.93%), Postives = 483/538 (89.78%), Query Frame = 1
BLAST of Spo12012.1 vs. NCBI nr
Match: gi|697160256|ref|XP_009588909.1| (PREDICTED: dihydropyrimidinase [Nicotiana tomentosiformis]) HSP 1 Score: 867.1 bits (2239), Expect = 1.700e-248 Identity = 420/530 (79.25%), Postives = 479/530 (90.38%), Query Frame = 1
BLAST of Spo12012.1 vs. UniProtKB/TrEMBL
Match: A0A0K9S046_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_009150 PE=4 SV=1) HSP 1 Score: 1066.2 bits (2756), Expect = 1.300e-308 Identity = 540/542 (99.63%), Postives = 540/542 (99.63%), Query Frame = 1
BLAST of Spo12012.1 vs. UniProtKB/TrEMBL
Match: A0A0J8FFL3_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_4g073850 PE=4 SV=1) HSP 1 Score: 984.9 bits (2545), Expect = 3.800e-284 Identity = 490/538 (91.08%), Postives = 518/538 (96.28%), Query Frame = 1
BLAST of Spo12012.1 vs. UniProtKB/TrEMBL
Match: A0A061GTZ1_THECC (Pyrimidine 2 isoform 1 OS=Theobroma cacao GN=TCM_040900 PE=4 SV=1) HSP 1 Score: 870.9 bits (2249), Expect = 8.100e-250 Identity = 430/538 (79.93%), Postives = 483/538 (89.78%), Query Frame = 1
BLAST of Spo12012.1 vs. UniProtKB/TrEMBL
Match: A0A067L3Y7_JATCU (Uncharacterized protein OS=Jatropha curcas GN=JCGZ_22728 PE=4 SV=1) HSP 1 Score: 865.9 bits (2236), Expect = 2.600e-248 Identity = 422/529 (79.77%), Postives = 474/529 (89.60%), Query Frame = 1
BLAST of Spo12012.1 vs. UniProtKB/TrEMBL
Match: A0A0D2N938_GOSRA (Uncharacterized protein OS=Gossypium raimondii GN=B456_001G133200 PE=4 SV=1) HSP 1 Score: 865.5 bits (2235), Expect = 3.400e-248 Identity = 423/533 (79.36%), Postives = 481/533 (90.24%), Query Frame = 1
BLAST of Spo12012.1 vs. ExPASy Swiss-Prot
Match: DPYS_ARATH (Dihydropyrimidinase OS=Arabidopsis thaliana GN=PYD2 PE=1 SV=1) HSP 1 Score: 847.8 bits (2189), Expect = 6.600e-245 Identity = 411/531 (77.40%), Postives = 475/531 (89.45%), Query Frame = 1
BLAST of Spo12012.1 vs. ExPASy Swiss-Prot
Match: DPYS_DICDI (Dihydropyrimidinase OS=Dictyostelium discoideum GN=pyd2 PE=1 SV=1) HSP 1 Score: 488.4 bits (1256), Expect = 1.000e-136 Identity = 248/469 (52.88%), Postives = 321/469 (68.44%), Query Frame = 1
BLAST of Spo12012.1 vs. ExPASy Swiss-Prot
Match: HYDA_PSEAE (D-hydantoinase/dihydropyrimidinase OS=Pseudomonas aeruginosa (strain ATCC 15692 / PAO1 / 1C / PRS 101 / LMG 12228) GN=dht PE=3 SV=1) HSP 1 Score: 481.5 bits (1238), Expect = 1.200e-134 Identity = 236/461 (51.19%), Postives = 315/461 (68.33%), Query Frame = 1
BLAST of Spo12012.1 vs. ExPASy Swiss-Prot
Match: HYDA_PSEPU (D-hydantoinase/dihydropyrimidinase OS=Pseudomonas putida GN=dht PE=1 SV=2) HSP 1 Score: 461.5 bits (1186), Expect = 1.300e-128 Identity = 225/442 (50.90%), Postives = 303/442 (68.55%), Query Frame = 1
BLAST of Spo12012.1 vs. ExPASy Swiss-Prot
Match: DPYS_MOUSE (Dihydropyrimidinase OS=Mus musculus GN=Dpys PE=1 SV=2) HSP 1 Score: 458.0 bits (1177), Expect = 1.500e-127 Identity = 235/488 (48.16%), Postives = 319/488 (65.37%), Query Frame = 1
BLAST of Spo12012.1 vs. TAIR (Arabidopsis)
Match: AT5G12200.1 (pyrimidine 2) HSP 1 Score: 847.8 bits (2189), Expect = 3.700e-246 Identity = 411/531 (77.40%), Postives = 475/531 (89.45%), Query Frame = 1
BLAST of Spo12012.1 vs. TAIR (Arabidopsis)
Match: AT4G04955.1 (allantoinase) HSP 1 Score: 87.0 bits (214), Expect = 3.800e-17 Identity = 125/514 (24.32%), Postives = 208/514 (40.47%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo12012.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo12012.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo12012.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo12012.1 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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