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.ATGGAGTATTTGCCGTTTTCTCCTGGAGATGAATCAAGAGGCAGCTTTGAAGAAATTATTGAGAGGTAATTGCTCATTCTCCTTTAGTTTGGAAGCTTGAGTGGTCTTATCAGGATAAACTTATTAATCTACAATAAATTGTTACAACAGTGTATTGTCAAGATCTCGCGAAATCAAAGTTAGCAAGTATGATAACTCAGCAGATGTTGCAGAGCAACATTGGTTGCAATCACTTGATAAAGCTATGACTGTACAGTGGCTTTGCTTTACACCCCCATCAACAGTTGATGATGTTGAAACTGTTGGTTCCAGGCTTCTTCTACGAGCACTTATGCACAGGTATTATATAATCAGTTTTAGCATACTTCAGAAATGAGATGTCATTTCTCGTATAATGAACTACATGATTATTTTCTTGCTGCTTCTATCCCTTTTTTCTTTGGTAACGGCAGGGTTAAGAATTAATGCTTGGCAATGCTTACTCGCTTAGGTCTTTATGCTTTGCATAATTTGACTGGATAAAGACAAGAAATGTAACTTTGGGGTAGGGAAGCGTGGGTATGATAATATGCCAGTGTGAGGCATGGGTAAAGCATTAAAGTTACGTACATTTTTTTTATAAGCTAAGGCGCAGGTATAGCATGGTTTTAGGTTCAAGCAAGAAAGACGGTGTAGGCTAAAAACCCCAGCCTAAAGCTAAAGAAGGAATCCAAAAACTCCTTCCTACTGGATGAATAGCTTTAGATGACGTCATTCTGTAAACTAAGTTATACCAGCCCACAGGGTACATCGAAGATCCATTTCTCATTCCGTCCATTTGGATATATCCAAATTGTTAGAAAACCTAGGCTTGTGAGTGTCCATATGAAGCTCAAAAGCGCTTTCACAATGCGTCAGAATTTTTTGGAGGTTTCACAGATAGTTTGCTGTATGGAGATTTTTTTTTTTTCGGACTTAGCCGATGAACAACTGATGTTCCCTCGATTCTTGCTTTTTGCGTCTAATCAAGGTAATTCCAATTCACTGACTCTTTAGAGTAAGGAATGGATCACATTTTGGGCCTTTTATGATCCATTCAACCAGCCTGAAAGATGAGAGACAGGCCTGACGCAAGGAGATTTTGTGCAGAAAGGCGGATTAGGTCTAATAATTGAGACTTTTTTGACAGACCCTTACGTTTTTTGTTTAAAAAAAAAGTACCTGAATACTTTTTATTCCCAGAAGGAATTGGGTGATTGATAACCTGCCAATCTGACAATCATATTTCTGCCATTGTTATGTTTGTTTGGTCTTCAACATTTGTTGTGTTCGTACTTTGACAAGTCAGTTTTTTACTTTTGCATGTCTACTTTCATTGCGTCAATATGAAAATCTAATTAAATATTTTTTATAGAGGTCTCCACTCCCCTGCCCCTGTTGGATTTTCATTGCTGGCTGATTATTGTTTTCTCCCTCCAGTAACATACTCTTCCGAGAATTTACTTTAATATCCATGTGGAGGGTGCCAGCAATGCCCATAGGTGCTCATAAACTGCTTAGTTTTCTTGCTGAACCCTTGAAGCAACCCACTGAAAATCTTCTAGCTTTTGAGGATCATGATGTTTCCGACTACCTGAAGGAGTTCAGTGATTGGGTATGCATCATTGAAATACTGTTCAATTTTCTGACTCATTTATGTCTTCTTAATCTGACCCCGTAGGATATCATAATTAGATTGCATATCTCTGAGGGTTTTTTTTTTCCCTGAATCAGAGTGAGTACTACTCCTGTGATGCAACATACCGCAACTGGCTTCAATATGAACTGGAGAATGCGGAGGTTTCTCCCAGTAAGCTATCTGTGGAAGAAAAACAGAAAGTCATTGTAGCGGCACAAGAGGCACTCAACTCTTCACTGTCACTCCTACTGAGTGAGTATTATTTTATGAAATAGGAAGGGCTGCTTTTTTTAAGCTTGTTTTCTTTTAGACGTAGAGTAAATTACCATTACCATTTTGCAACTGGCTCTAATAGAACATGCTGTACTTTTTTTACAGGGAAGGAAAATCCTTGGTTGGTTCCAGGTGAAAATCAAATTTATGACACAACAGAACCTGTGGTCCTTGAATTGCACGCTACAGCGATATTGTGTTTGCCTTCTGGTGAATGCATGTGTCCGGATGCCACCTTATGTGCCACATTGATGAGTGCCCTCTACTCTTCGGTGACGGAGGAAGTTGTGTTAAATCGACAATTGACGGTAAACCCTTAAATTCAGGAAAGTTGGCTACAAATTGATTCAAACTATTGTGTTCTGCAGAAAAATTAATCCCTAGATAGAGATCAAACTAGGAATTATTTGAAAATAATCCACACTTGGGGTTATGTTTGTTTTTATAAAAATATTGATCTGGTGCTTGTAGTAACCTTCTGTCTTATAAGCGATAATTTAGGAAATTTGAGATCAATGCTAGCATTAACTTTTGATTTGTCCCTTCTCCAAATAGAAGTTATTCTTACATGTCTTATTATGATTACAACATCTTTCTAAAGCTCATTTGATTGTGAAGCATCGTAAACAGAAGTTTTACAGATCATAATTTTTTGCATTTTCTTGAATTCTGACCAATATATATTGCCAGGTCGATGTGAAGGTTTCTTTTAGGAATAATTTCTGTGTTGAGGTTATCCTTCGCTGCTTGGCAGTTGAAGGCGATGGATTAGGGCCTCATGAACTGAATGATGGTGGTATCCTTGCCAGTGTAATGGCAGCGGGCTTTAAAGGTAGAAATTTTTCGATAGCATCAGTATGATATGGTACTCTCACTTTGGCAGTTGTGCTTTGGCTTAAACTTATGGTTATGCATTATATTGTTCAATGAGTCTAAAGAGTTTGGTATGTGGTTTTAACATAACTGTAGATTTTTTATACTCTATTTTATTTCTAACTCACGCATATCAGACTCACCTTTGTCTTCTTTTGTGAATATTGATTCGGATTAGGGTGCCTGGAATTGTATTTGTAGACAATATGTGTTACATATACTATTACGGCAATACCATTAGGTAAACACCATCACTTCTGAAAGCTTGAAAGTTGAGGAAAATTTTCTATAATTATGCACTGCTTGACAGAATGATAGTTTCTTTATCTTGATCTCATGTCTGAAGAGTTTTTTGAGTGGCCATCAGTAAAAAGACAAGAACTGGGTGAGTTGTGCAGCATAGTTATGAAGCGAAATAACTTTGATGATACTGTGAGATTTTGCTACTTATTAATCGTTTAGAGTTGAATGGACATGAAAATATTAAATTTGAGTTACCTCAATTTATCTCTTGCTGTGTAGTGGTACTGTATCAGTATGGTTGCAAGATGAAAGTTTCAACAAAACTGAGTACACAGACATTAATCTACCGTTGGTAATAATGTGATGCTAGTAATTAATTGAGTACACCTCTGTGAGTGAGAAATTTATCATGTTCCTAAAGTATGTCTTGTACTGTACTACTGTGTTGCGTTATTGGAATTAGGCTATTGTGGTAAGTCTGTAAGTGTAGCGACATTTACATGCTTGCTGAGTTGGTTTGGGTGGGTATAAAGAGAGAAGATGCTGTGTGTAATGCCTTTTTAGTGATTGTTTGGTGCATTTGATTGAATGGAAACACTTGCATCTTTTTCGGAGTGGTTTCTTCTAGTTTCGAAATCTAATAATTCTGAGTGACCTTTCGCGACTGGGAACGTTGATCACTTGTCTCTTTTAGAGATTCGATTTAATTGCTTCAAGTTTTACCAATTCTAATCAGTTGTACCTGTTGCTTCTTACACCAATAGCACTCTTTAATCCAATTATACTATAAGAAAGATCGTTAATCAACCAATCAAATTAGTTGTATTATTTTTTAGTCCCCTGCTTTACTATCTGAATGAAGGGATAAAAAAATATACTGGTTAACGGTTATTGACAAATTGGAGATTATATAATGCAGGTGAAATTTCTCGATTTCAAGCTGGTGTGACAAAGGAGATTTCACGACTGGATGCTTGGTATTCTAATGCTGACGGCTCCGTGAAAGATCAAGCTGCATACATTGTGCGTGGTCTTTGTCGCAGGTGTTGTCTTCCAGAACTGATTTTACGCTGCATGCAGGTAAGTGTGTTCTGTAAACAATGGATTTTTTGATGAAGATCCTAGTTTAAATGCTCTGTTATTTGCATTGTTGTAAGGGTAAATGCGTCAATAGATGCTGAATTCCGCTTGTGATTACTTTTGCAGATGTCTGTTTCATTGGTGGAGTTGATTGAGGTTCCTGAGAGGCATGAAGAGTTGATTGAGCTTGTTGCGTGTCCGGAAACAGGATTTATTCGTTTATTCAGTCAACAGCAACTGCAGGTACACCATTTACCCTATAAAGCGTCATGTAATTACATCTTATTAAGCGTATATTATAGTAATCACTGTTGTATATCACGTTTAGTGCTGCTGACTGAAGTCATCTTTATTTGATCCAGGAATTTTTGCTGTTTGAGAGAGAGTATTCAATATGCGCAATGGAGCTTCAGGAAGAACGCTCTATGAGCGCCCATGAACAGCTGTACCAGTATTGATTTGTATTTTTTTAAGTTGTACTGAAATAATACCTTTTTCTTTAATGACAATAATGCATTTGCTGTCAAAAGAAAAATTATTATCTATGTAGATAGTAAATTGTTGTGTGTGTTATAGGTCACAGGTTCGAATCCCTCCACCGACATGTGTTATAGGCCTTTGCTGGAGCAGGGAGGGGGAGGGCCTATCCTTAGAATTACACAGAAGCTCAAGCTAATTCCTATACCCCCTTAACCTATCAGGGACAGTAACCAAAAAGTAAAGGACCATTTAGTGAGACATTTGATATAGCCCTCTGATATCCTAAGATCTCACATATAAGTCCCCAATGGAACTTTTTTGTACTTAGATCTAATCATTTGGTAGTTACATAGGGGCTGCTAATCATAACTGATCGAACTAATTCCAAATTTGATGACCTAGATTTACATACTTGTGACATTTTATGCTGTTTAGAACTGTACTATACAAACCCCCTGTGTTTCGGGTTGCTTAAGTTCCATTGTTTCCCAAATCTGATATTGCAGGTGGTTGATGCTGTTGGAGGTAAGGTTCCTGTTCTCCTTGATGGAGGAGTGAGGCGGGGAACAAATATCTTCAAGGCTTTGGCACTTGGTGCACGCGTTGTTCTTGTAAGATTATCTAATTTTAATTACAATTTTGATTCATGTCATCAGTAATTTAGCAGTACCTCACACGACAAATATGAATTGTTTGTTAATTGTTATTCACACAATGCATTCTTTCATTAGCTTAATTGTACTATTAATTGTAGGTTGGAAGTTTCAGAGTTTGACATGGTTACAGGGTGTTTACTTGCTTTTCTTACTGATATTTCCAGATTGGGAGACCTGTAATGTATGGACTGGCGGCCAAGGGAGAAAACGGCGTAAAAAAAGTCATCGGAATGTTAAAGGATGAACTGGAGCTCACTCTAGCTCTCGCTGGCTGCTCAACCATAAAGGATATCACAAGGAACCGTGTCAGAACTGACAATGAAACACACCGGTCTCTACTCTAACTTCTTCTCAACTGCATTTTGTTAAGGATTGTTGCAACACTAAGTCAGTCCTTGTCCGCATCCTGATTCCAGAGCGTAAAAAACCAACTAAACCGAAGATTCCAGAGCGTTGCTTCTCTCAATTTTACAACTCCCGTCAAACCAGTAAAAGTGAACATTAGGAGACCCTCTTCACGAGAACTCCTTGTCTGTCTGTCTGTCTAAACTGTTTGGTTTGTTCCATTGTGTGAACTAATGGAGGCGGTATCACATTTTATTGAGTACAGAGTAGCATTCACTGTTAATGGTTTTGGTTGAGAAGATTCGCATTCTTGGTTGCATGTTTCAAATGAGCTTTTGTTATTAATGTTATTGTGACTGAGAAGACACAGAGAGATTGGTTTAGGGATTGATTTTTCCGTTATACAGAGTAGCTACCATTATCGAGAATCTGTGTGTAGAAGCTGCTGGGAGAATGTTATGGTTGCCCGCTTTGGTGAGCAAGCAAGTGATAAGTCTGACAGCATATGAATACAGCAATATGATTGGCTGATTAGTGCCTTAGTAGTTAGTGAGGTGATGCTGGAGTTGAGAAATAGGTAAATTCTGCAGTTGGTTACTTTGCTTGCTTTTTTTTGATGAGAAACTTAGCTGCAGTAATCTGTTAATATCTAACCAAAGTTCAAGTTCAGCTTATTCTGTTGGTGTATTGAGTCCCTGACAGTATTGCAAC ATGGAGTATTTGCCGTTTTCTCCTGGAGATGAATCAAGAGGCAGCTTTGAAGAAATTATTGAGAGTGTATTGTCAAGATCTCGCGAAATCAAAGTTAGCAAGTATGATAACTCAGCAGATGTTGCAGAGCAACATTGGTTGCAATCACTTGATAAAGCTATGACTGTACAGTGGCTTTGCTTTACACCCCCATCAACAGTTGATGATGTTGAAACTGTTGGTTCCAGGCTTCTTCTACGAGCACTTATGCACAGTAACATACTCTTCCGAGAATTTACTTTAATATCCATGTGGAGGGTGCCAGCAATGCCCATAGGTGCTCATAAACTGCTTAGTTTTCTTGCTGAACCCTTGAAGCAACCCACTGAAAATCTTCTAGCTTTTGAGGATCATGATGTTTCCGACTACCTGAAGGAGTTCAGTGATTGGAGTGAGTACTACTCCTGTGATGCAACATACCGCAACTGGCTTCAATATGAACTGGAGAATGCGGAGGTTTCTCCCAGTAAGCTATCTGTGGAAGAAAAACAGAAAGTCATTGTAGCGGCACAAGAGGCACTCAACTCTTCACTGTCACTCCTACTGAGGAAGGAAAATCCTTGGTTGGTTCCAGGTGAAAATCAAATTTATGACACAACAGAACCTGTGGTCCTTGAATTGCACGCTACAGCGATATTGTGTTTGCCTTCTGGTGAATGCATGTGTCCGGATGCCACCTTATGTGCCACATTGATGAGTGCCCTCTACTCTTCGGTGACGGAGGAAGTTGTGTTAAATCGACAATTGACGGTCGATGTGAAGGTTTCTTTTAGGAATAATTTCTGTGTTGAGGTTATCCTTCGCTGCTTGGCAGTTGAAGGCGATGGATTAGGGCCTCATGAACTGAATGATGGTGGTATCCTTGCCAGTGTAATGGCAGCGGGCTTTAAAGGTGAAATTTCTCGATTTCAAGCTGGTGTGACAAAGGAGATTTCACGACTGGATGCTTGGTATTCTAATGCTGACGGCTCCGTGAAAGATCAAGCTGCATACATTGTGCGTGGTCTTTGTCGCAGGTGTTGTCTTCCAGAACTGATTTTACGCTGCATGCAGATGTCTGTTTCATTGGTGGAGTTGATTGAGGTTCCTGAGAGGCATGAAGAGTTGATTGAGCTTGTTGCGTGTCCGGAAACAGGATTTATTCGTTTATTCAGTCAACAGCAACTGCAGGTGGTTGATGCTGTTGGAGGTAAGGTTCCTGTTCTCCTTGATGGAGGAGTGAGGCGGGGAACAAATATCTTCAAGGCTTTGGCACTTGGTGCACGCGTTGTTCTTATTGGGAGACCTGTAATGTATGGACTGGCGGCCAAGGGAGAAAACGGCGTAAAAAAAGTCATCGGAATGTTAAAGGATGAACTGGAGCTCACTCTAGCTCTCGCTGGCTGCTCAACCATAAAGGATATCACAAGGAACCGTGTCAGAACTGACAATGAAACACACCGAGCGTAAAAAACCAACTAAACCGAAGATTCCAGAGCGTTGCTTCTCTCAATTTTACAACTCCCGTCAAACCAGTAAAAGTGAACATTAGGAGACCCTCTTCACGAGAACTCCTTGTCTGTCTGTCTGTCTAAACTGTTTGGTTTGTTCCATTGTGTGAACTAATGGAGGCGGTATCACATTTTATTGAGTACAGAGTAGCATTCACTGTTAATGGTTTTGGTTGAGAAGATTCGCATTCTTGGTTGCATGTTTCAAATGAGCTTTTGTTATTAATGTTATTGTGACTGAGAAGACACAGAGAGATTGGTTTAGGGATTGATTTTTCCGTTATACAGAGTAGCTACCATTATCGAGAATCTGTGTGTAGAAGCTGCTGGGAGAATGTTATGGTTGCCCGCTTTGGTGAGCAAGCAAGTGATAAGTCTGACAGCATATGAATACAGCAATATGATTGGCTGATTAGTGCCTTAGTAGTTAGTGAGGTGATGCTGGAGTTGAGAAATAGGTAAATTCTGCAGTTGGTTACTTTGCTTGCTTTTTTTTGATGAGAAACTTAGCTGCAGTAATCTGTTAATATCTAACCAAAGTTCAAGTTCAGCTTATTCTGTTGGTGTATTGAGTCCCTGACAGTATTGCAAC ATGGAGTATTTGCCGTTTTCTCCTGGAGATGAATCAAGAGGCAGCTTTGAAGAAATTATTGAGAGTGTATTGTCAAGATCTCGCGAAATCAAAGTTAGCAAGTATGATAACTCAGCAGATGTTGCAGAGCAACATTGGTTGCAATCACTTGATAAAGCTATGACTGTACAGTGGCTTTGCTTTACACCCCCATCAACAGTTGATGATGTTGAAACTGTTGGTTCCAGGCTTCTTCTACGAGCACTTATGCACAGTAACATACTCTTCCGAGAATTTACTTTAATATCCATGTGGAGGGTGCCAGCAATGCCCATAGGTGCTCATAAACTGCTTAGTTTTCTTGCTGAACCCTTGAAGCAACCCACTGAAAATCTTCTAGCTTTTGAGGATCATGATGTTTCCGACTACCTGAAGGAGTTCAGTGATTGGAGTGAGTACTACTCCTGTGATGCAACATACCGCAACTGGCTTCAATATGAACTGGAGAATGCGGAGGTTTCTCCCAGTAAGCTATCTGTGGAAGAAAAACAGAAAGTCATTGTAGCGGCACAAGAGGCACTCAACTCTTCACTGTCACTCCTACTGAGGAAGGAAAATCCTTGGTTGGTTCCAGGTGAAAATCAAATTTATGACACAACAGAACCTGTGGTCCTTGAATTGCACGCTACAGCGATATTGTGTTTGCCTTCTGGTGAATGCATGTGTCCGGATGCCACCTTATGTGCCACATTGATGAGTGCCCTCTACTCTTCGGTGACGGAGGAAGTTGTGTTAAATCGACAATTGACGGTCGATGTGAAGGTTTCTTTTAGGAATAATTTCTGTGTTGAGGTTATCCTTCGCTGCTTGGCAGTTGAAGGCGATGGATTAGGGCCTCATGAACTGAATGATGGTGGTATCCTTGCCAGTGTAATGGCAGCGGGCTTTAAAGGTGAAATTTCTCGATTTCAAGCTGGTGTGACAAAGGAGATTTCACGACTGGATGCTTGGTATTCTAATGCTGACGGCTCCGTGAAAGATCAAGCTGCATACATTGTGCGTGGTCTTTGTCGCAGGTGTTGTCTTCCAGAACTGATTTTACGCTGCATGCAGATGTCTGTTTCATTGGTGGAGTTGATTGAGGTTCCTGAGAGGCATGAAGAGTTGATTGAGCTTGTTGCGTGTCCGGAAACAGGATTTATTCGTTTATTCAGTCAACAGCAACTGCAGGTGGTTGATGCTGTTGGAGGTAAGGTTCCTGTTCTCCTTGATGGAGGAGTGAGGCGGGGAACAAATATCTTCAAGGCTTTGGCACTTGGTGCACGCGTTGTTCTTATTGGGAGACCTGTAATGTATGGACTGGCGGCCAAGGGAGAAAACGGCGTAAAAAAAGTCATCGGAATGTTAAAGGATGAACTGGAGCTCACTCTAGCTCTCGCTGGCTGCTCAACCATAAAGGATATCACAAGGAACCGTGTCAGAACTGACAATGAAACACACCGAGCGTAA MEYLPFSPGDESRGSFEEIIESVLSRSREIKVSKYDNSADVAEQHWLQSLDKAMTVQWLCFTPPSTVDDVETVGSRLLLRALMHSNILFREFTLISMWRVPAMPIGAHKLLSFLAEPLKQPTENLLAFEDHDVSDYLKEFSDWSEYYSCDATYRNWLQYELENAEVSPSKLSVEEKQKVIVAAQEALNSSLSLLLRKENPWLVPGENQIYDTTEPVVLELHATAILCLPSGECMCPDATLCATLMSALYSSVTEEVVLNRQLTVDVKVSFRNNFCVEVILRCLAVEGDGLGPHELNDGGILASVMAAGFKGEISRFQAGVTKEISRLDAWYSNADGSVKDQAAYIVRGLCRRCCLPELILRCMQMSVSLVELIEVPERHEELIELVACPETGFIRLFSQQQLQVVDAVGGKVPVLLDGGVRRGTNIFKALALGARVVLIGRPVMYGLAAKGENGVKKVIGMLKDELELTLALAGCSTIKDITRNRVRTDNETHRA Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo10074.1 vs. NCBI nr
Match: gi|870852913|gb|KMT04794.1| (hypothetical protein BVRB_7g169670 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 718.0 bits (1852), Expect = 1.100e-203 Identity = 357/403 (88.59%), Postives = 381/403 (94.54%), Query Frame = 1
BLAST of Spo10074.1 vs. NCBI nr
Match: gi|731348005|ref|XP_010685275.1| (PREDICTED: nuclear pore complex protein NUP107 isoform X1 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 718.0 bits (1852), Expect = 1.100e-203 Identity = 357/403 (88.59%), Postives = 381/403 (94.54%), Query Frame = 1
BLAST of Spo10074.1 vs. NCBI nr
Match: gi|731348007|ref|XP_010685276.1| (PREDICTED: nuclear pore complex protein NUP107 isoform X2 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 718.0 bits (1852), Expect = 1.100e-203 Identity = 357/403 (88.59%), Postives = 381/403 (94.54%), Query Frame = 1
BLAST of Spo10074.1 vs. NCBI nr
Match: gi|297742971|emb|CBI35838.3| (unnamed protein product [Vitis vinifera]) HSP 1 Score: 619.8 bits (1597), Expect = 4.200e-174 Identity = 303/403 (75.19%), Postives = 353/403 (87.59%), Query Frame = 1
BLAST of Spo10074.1 vs. NCBI nr
Match: gi|731401747|ref|XP_010654407.1| (PREDICTED: nuclear pore complex protein NUP107 isoform X1 [Vitis vinifera]) HSP 1 Score: 619.8 bits (1597), Expect = 4.200e-174 Identity = 303/403 (75.19%), Postives = 353/403 (87.59%), Query Frame = 1
BLAST of Spo10074.1 vs. UniProtKB/TrEMBL
Match: A0A0J8BXR8_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_7g169670 PE=4 SV=1) HSP 1 Score: 718.0 bits (1852), Expect = 7.900e-204 Identity = 357/403 (88.59%), Postives = 381/403 (94.54%), Query Frame = 1
BLAST of Spo10074.1 vs. UniProtKB/TrEMBL
Match: F6HXR0_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_09s0002g00840 PE=4 SV=1) HSP 1 Score: 619.8 bits (1597), Expect = 2.900e-174 Identity = 303/403 (75.19%), Postives = 353/403 (87.59%), Query Frame = 1
BLAST of Spo10074.1 vs. UniProtKB/TrEMBL
Match: A0A067L851_JATCU (Uncharacterized protein OS=Jatropha curcas GN=JCGZ_24669 PE=4 SV=1) HSP 1 Score: 604.4 bits (1557), Expect = 1.300e-169 Identity = 300/403 (74.44%), Postives = 347/403 (86.10%), Query Frame = 1
BLAST of Spo10074.1 vs. UniProtKB/TrEMBL
Match: V4SM41_9ROSI (Uncharacterized protein OS=Citrus clementina GN=CICLE_v10027090mg PE=4 SV=1) HSP 1 Score: 591.3 bits (1523), Expect = 1.100e-165 Identity = 293/403 (72.70%), Postives = 342/403 (84.86%), Query Frame = 1
BLAST of Spo10074.1 vs. UniProtKB/TrEMBL
Match: A0A067FBZ6_CITSI (Uncharacterized protein OS=Citrus sinensis GN=CISIN_1g045469mg PE=4 SV=1) HSP 1 Score: 589.7 bits (1519), Expect = 3.200e-165 Identity = 293/403 (72.70%), Postives = 342/403 (84.86%), Query Frame = 1
BLAST of Spo10074.1 vs. ExPASy Swiss-Prot
Match: NU107_ARATH (Nuclear pore complex protein NUP107 OS=Arabidopsis thaliana GN=NUP107 PE=1 SV=1) HSP 1 Score: 543.9 bits (1400), Expect = 1.800e-153 Identity = 276/427 (64.64%), Postives = 342/427 (80.09%), Query Frame = 1
BLAST of Spo10074.1 vs. ExPASy Swiss-Prot
Match: GLO4_ARATH (Peroxisomal (S)-2-hydroxy-acid oxidase GLO4 OS=Arabidopsis thaliana GN=GLO4 PE=2 SV=1) HSP 1 Score: 137.9 bits (346), Expect = 3.000e-31 Identity = 110/302 (36.42%), Postives = 161/302 (53.31%), Query Frame = 1
BLAST of Spo10074.1 vs. ExPASy Swiss-Prot
Match: GLO3_ARATH (Peroxisomal (S)-2-hydroxy-acid oxidase GLO3 OS=Arabidopsis thaliana GN=GLO3 PE=2 SV=1) HSP 1 Score: 137.9 bits (346), Expect = 3.000e-31 Identity = 66/89 (74.16%), Postives = 80/89 (89.89%), Query Frame = 1
BLAST of Spo10074.1 vs. ExPASy Swiss-Prot
Match: GLO2_ARATH (Peroxisomal (S)-2-hydroxy-acid oxidase GLO2 OS=Arabidopsis thaliana GN=GLO2 PE=1 SV=1) HSP 1 Score: 117.5 bits (293), Expect = 4.200e-25 Identity = 57/92 (61.96%), Postives = 75/92 (81.52%), Query Frame = 1
BLAST of Spo10074.1 vs. ExPASy Swiss-Prot
Match: GLO1_ARATH (Peroxisomal (S)-2-hydroxy-acid oxidase GLO1 OS=Arabidopsis thaliana GN=GLO1 PE=1 SV=1) HSP 1 Score: 117.1 bits (292), Expect = 5.500e-25 Identity = 55/92 (59.78%), Postives = 76/92 (82.61%), Query Frame = 1
BLAST of Spo10074.1 vs. TAIR (Arabidopsis)
Match: AT3G14120.1 (FUNCTIONS IN: molecular_function unknown) HSP 1 Score: 543.9 bits (1400), Expect = 1.000e-154 Identity = 276/427 (64.64%), Postives = 342/427 (80.09%), Query Frame = 1
BLAST of Spo10074.1 vs. TAIR (Arabidopsis)
Match: AT3G14130.1 (Aldolase-type TIM barrel family protein) HSP 1 Score: 137.9 bits (346), Expect = 1.700e-32 Identity = 110/302 (36.42%), Postives = 161/302 (53.31%), Query Frame = 1
BLAST of Spo10074.1 vs. TAIR (Arabidopsis)
Match: AT3G14150.1 (Aldolase-type TIM barrel family protein) HSP 1 Score: 137.9 bits (346), Expect = 1.700e-32 Identity = 66/89 (74.16%), Postives = 80/89 (89.89%), Query Frame = 1
BLAST of Spo10074.1 vs. TAIR (Arabidopsis)
Match: AT3G14415.2 (Aldolase-type TIM barrel family protein) HSP 1 Score: 117.5 bits (293), Expect = 2.400e-26 Identity = 57/92 (61.96%), Postives = 75/92 (81.52%), Query Frame = 1
BLAST of Spo10074.1 vs. TAIR (Arabidopsis)
Match: AT3G14420.1 (Aldolase-type TIM barrel family protein) HSP 1 Score: 117.1 bits (292), Expect = 3.100e-26 Identity = 55/92 (59.78%), Postives = 76/92 (82.61%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo10074.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo10074.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo10074.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo10074.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 5
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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