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.CAGATATAAACTTTTGTTTCTTTCTATTACCTCACAACAGCTATTTCTATTTTTAAAAATTGTTCCTTTGTGTACATTTCCAAACCAAAAAAATAAATCCAAACACACCCTTAATTTATTTATTTTTCCCACCTTTAACCCTACGCCATAGTCTCCCTCTTTCTCGCGGCGTTTCTGGCTCCCTTTTCTCTCTCCAAACAAAAATGGCGTCTATACTTCGGTGCCCATGTCCAGCTACTAAATCGACCCCTTTCTCTCAAACCCCATCAAAACCCGTCCTCAATCTATGTTCCCTCAAATTCTCACCTCGAAACCCCATTGTAATTTTTCCTTAAGTACCTTTTCTTTCAATTTTTGAATGATTCTTATAATTTCTTGGTTTTTTCTGTAACTTAATTTTGTGGGTTTCAACTATTGTTTGCAGAAATGTAACTTGGCAGAGCAATTGAAGGCTGCGGAAAATGGGAAACCCCCATCTTCTTCCTATTCTCGTTCATCTGGAATGGACCAGCAATCATTCCCCTCATTTATGGCTTCTACGCATTTCGATAGTTCTATTAATCGGAATGATACCCGTCTTCGGATTTTCTCCGGTACCGCCAATCCTGCTCTTGCTCAGGTAATTTGATCTATTTCCCTAAATTTAGCTTACTTTATGACTGAACTGTTAGAATATATTTTTGGGTTTGTTGAATTGGGTTTGGGCTGATTTGTTAGATTGGATTGCTAATTAGTGGAGGATTCGGGATTCTTGATCAAGGGGAACCAATAAAATAACCAATGCTTCATTGCTTTGCACAGTAGTACAATGTTAAAGCAAAAAAGTATTCCTTGAGAAAATTAACTTTTACATTTTTTAGCAGAAACGTATTCCTTTGGAGTATTATCACACATACACTCTTAATTTTTCAAAAGTTATGATTTTATTTATTAAGCGTACTTGCATTAAAAAAAAATGAGGAAGTCTTTGTCACAAGTGACTTATGTCCATATTGGACACAAGTGAGTACCAATACAGAATTTAAAGTACCAATACAGAATATGTTAGTACCAATACAAATTATGTGAATACCAATAATAACACATATGACTTATATTGGTGGTATTTCTAAGCAATTTTGCATTTTGGTACTGACATATTATGTGTTGGTACTCAAGATGATTGTATTTGGATCACTTGTGTCCATGTGGACACAAGTCACTTGAGGTTTAGAAACCCTCAAAAAAAATACCCTTATGAAGAAAGTATTCAACCCGCAAGAAGCGGGGTAAGGGGGGTCGGGTGTACTCAACCTTACCCCTGCAATTGCGGAGAGGTCGTTTCAAATTGACCCAAAAGCGATAACGGGACGATAACGGGACAACCATCTTCTACTTTGTGGAAAGGAATGGAAAGGAAGCGAAGAGGTTTAAGGAGCCATTTTGATTTAGTCCATTACATCCCACAGCAAAAAGAACAAATAAATCTTTATTAGTGCCATTAATTTGGATTTTTGGTCATCTATAACCGTTGAACATAAATTTGATACAAAAAATAAAATAAGTACAAAGATAATGTTATTGTAGTTCAATTTGTATAATTTTAACTTTGAAAGAAAAAGGGAAGTTTAGGGGAAAAAATGCTGTAGTTGCAAGTTGCAACTGCTAAGCCCCGAATTGAACCCCTGACCTTCTTAACCCAAAGATTAATCTTATTGCAAGTCCAACGACCAGTGATCTTCGTTTGTGAAACTTTCACGTGGACAGCTCTTTTTATACTAATTGCTATATTAAGCGTTTTTGTGGGTTGACACGTGCCCCCACCATGTAGATCCGCCAATGCTGCTACTAATAATGCTGAATGATTACTTGGCTCCTAATATACTTAGGTTGATCAATTTAGTACAAGTACAATTGGCTTTTTTGTAGCTTTCAAGATTATTTTTTGATTATTTCTTGGAGTATAATTTAATGGTTCGTAAAATTATTGGAAGTATATAATTTAAAAAGTTACTCTTAGATTTGAACTGAACTAGTCAACTAGTATAACTGCATAATTTAACCTGAAGCTTTTATAGATTATTATTGGTGAAGTTTACAAGATTCGACTTTCAATTTTTTAAATTAAGGTCAATTTTTAAGACAAAGGGATCATATATGTTAACTATAATGGTTTGGGATTTGTTTGATTTAATGATTTTTAATGTTGTATCGGTTTTTATTTGAATGAGCAGCGGGGTAACGGGCTAAGCACTTGCATAGTGCAAGTGAAGAGATAGGTTAGCTGCACGGTTGCACCATTATATCGAACCAAATGAGATAGCTAAGATTTCCCTATTACTTATTTAGTTTGCGGTTTTTGTTCTCATTTCCCTTTTTAAGCAATTAAGCACAGGAGTTTCAAGGTTATGAGTGGTGCAAGTTTGATTCTAGGGTTCATGGGGTTAATAGGGAATAAATATATTGTAGAACTTGGATTACTGGCCTTTGTTTTGGTAAGCTAGATGTTCTTTGTTAAGTTGTAGTTAAAACTTCCGCTGAATTACTTTTAATGAGATGCAGAAGTTTGAATTAAAACTCTCTAGTCTATACACTAGTCGACTAAGGAGAATGATATAGGTATTCATTGTTAAGAACTTACTGATCATTTCCCTGAATACGGAAACCCTAGTTTATTAGTCGTGCTCGAGGGTAAGGACTAAGGCTCTGCATACATATAAATCTAAGCCCATCAAGCTGCCTTTTATGTATCATTTTATTTCAAAAATGTCATAATGATATGATTTAAAGCAAGGTCTTGATGACAAACTGTTGTGCTCAATAGGAAATTGCTTGTTATATGGGTCTCCAGCTTGGAAAAATAAAGATCAAACGTTTTGCTGACGGTGAGATTTATGTTCAACTCCAAGAGAGCGTTAGAGGTTGTGATGTTTTTCTTGTTCAACCTACATGTCCACCTGCCAATGAGAACCTTATGGAACTTCTGATAATGATTGATGCGTGCCGAAGAGCTTCAGCAAAAAATATAACCGCGGTTATACCATATTTTGGATATGCTAGAGCTGATCGAAAGGTAAACTGCCAAACCTGATGAGTATCTTGAGCTTCTACTTTGACGTCAAAAGTACTTCTTGATCGATTGATCTAAGAGAAAAATGAACTTGGTCACCTTCTAAAGAATAGGAAAGCTTTTTTTATTGAAAACTTGACATTTAATCATTCATATATAGTAGGGTGTTTAAAGTTTCAAAACGGTGGTTCATATCCCTAGCTTGTCTCAAAAGTAATGCTACTATTCTTATTTCTCGTTGGAATTCATCAAAGTGTCACATATCATGTTCCTTCAAATCTTAGACCCCTTTTGACCCGAGGTAGTTTTTTCCTACATACCTGACTCTCTCTTCACCCAATCCCACTTCTCCTGTGTGGAAATAGAGAAAAAGTTTCTTTTATCTTTGAGGGAGGATATCTTTTCCAGGATATTTTTGCAATATGACATTACACATGTCTATAATTTTCTGTTTCAGACACAAGGACGTGAATCGATAGCAGCCAAACTTGTTGCTAACCTGATAACAGAAGCTGGTGCTAATCGAGTACTTGCTTGTGATCTTCATTCTGGGCAGTCAATGGGATATTTTGATATACCGGTGGATCATGTATATGGTCAGGTAAGATTGTTAGCCCCTTTTGAGTGATTTCTTCTTTTTCCCTTGTTGAAGCATGTATGTGATTAGTCCAAAATCTTTTCTACTGTCGGTTTTTGTATGAAGTGGCAGATCCCTAATAATTTGTTAGGTTTTCAAAAAAAATAAACTTATCTGTCTTTTTGAAATTACTTCCTTTGTCCCATAGTTAACTTCTCATTTCTGAGTGACATGGAGGTTAAGACCAAAATTTAAGAGTAGAATAAAACTTAACAGTGGACAGATAGGAAAAGCAATAAAATAATGGATTGGAACTGAGAGAAAGGTGATGATGAGATAGACAATAAATTTGACTTGAAAAGGAGAAGGGAAGTTATTTTCTGGGACATCCCAAATAGGACAGTGGGAAGTTCAAGATAGGATGTAGGAGAAACATTAACAATATAGGAATGCCAACTCAGAGTGCCTCCCCCATCGCTCTTAGAAGAAGGGTGAAAACCAGTATTAAATCTGTTAGGAACGTTTTATAAACACTAATTGCTTCTTTCTATTTGTGCTCTACCCAGCCTGTGATTCTAGATTACCTAGCAAGCAAGACAATATGTTCAGATGATTTAGTTGTCGTTTCACCGGATGTTGGTGGAGTCGCCAGAGCTCGTGCTTTTGCGAAGAAGTTATCTGATGCACCACTTGCCATTGTTGATAAGAGGCGCCATGGGCACAATGTTGCAGAGGTAAATATTTGTGGCTCTTATTGCTTCATCTCAACCTTTGAAGAGAATATTTCCTTTCGGGAAGGGGAATTAGGAGATTAAAATTTCAGTCCTTCCGAGTTGATGGCCTTGGACTAAGAGATGAAAGCCCGATGTTTTTGAATTTGTAGTAAGAACTAATAGCTTAATTAATGCTTGCATAGTGATAATGCAATCAGTTTCAAGTTTTGTTTATTCTCTGTATAATGCATCTATTATTTCCTCTCGTAACATTCTAAAAGGTCTACAGGTAATGAATTTGATTGGTGATGTTAAGGGAAAAGTAGCAGTTATGGTGGATGATATGATAGATACAGCTGGTAAGTTCTATTCTTTCTTATAGCTCTAATGTCTTAGTTCTTGTAAGGGAAAACGTGGCTTAATTTGTTTGTCTTTTGTCTTGTTGGCGTTCTCTCTTTTCTTACTGGACGCTATACGCTCTGGGTTTTATCAAGTTCTTATCAGTCATTCACTTGTATTTGAATTTGCTACTAAAAACTGCTAAGACTTCCACTGTGTTAATGATAGAAGTTGACATTAGAATTTGAAAATGATATTTTCTTCCTCCTTTGGCATATAGGTACAATTTCTAAAGGGGCAGCCCTCTTGCACCAGGAAGGAGCAAGGGAAGTCTATGCATGTAGCACACATGCTGTCTTCAGGTAAATGCATTGCGTGTAGCCTATACAATTCTAATCTAGGGAGTTGTCTAATTACTGGTAACCTCTACGTTTGGCCACAGTAGAAGATCCTTAACCAAAGTTAGCTGAGTGTCATACCATGAAGATGGTTGGTTGATGCACGGATCATGAACACATCGATTTTGTTTACTTTTGTCCCCCCCAAAGAATCACTGACATGAAATACAAGTTTGTCTTTGATATCCATTTAGATGGCTGAATCTATGTTACTAATATCTTACTGAATCTAAGTTGTATCTTTTATAAAATGACTATTGAATGGTGTGACCATTGATCCAGGTTTCTAATATCTTACTATTCTTGATAGAGTCCTTATGAATCTTTGTTCATATTGCAGTCCTCCTGCTATTGAAAGGTTATCCAGTGGTTTGTTTCAAGAAGTAATCATCACAAATACAATTCCTGTCTTGGAGAAAAACTACTTCCCCCAGCTTACTGTACTGTCAGTTGCAAATCTTTTGGGCGAGACCATTTGGCGTGTTCATGATGACTGTTCTGTGAGTAGTATATTTCAGTAAATTATTGTATATTTTTCATTATTGCAGTAACACAATATATTCACCTTTTGTGATAATTCTAGTCTGTATAAATTACCTCAAGGTTGATATGGTCGTGTACAATTTACGAATCAAGCATGAGGATTGCTTATTTTTGTAAATTTTCTGTTGCATGTACATGCTGCAATGAATACAAAATACAAAAGAAATTTAGGGCTTTGACTTATTATGTTCCCCCATAAGACCTTTGTTAGCAGTTTTGCAATAACTTATGGAAAGAATAATGTGTTGGTTTTCAGGTTGGATTTGAACCTTACTCAAGCTTGGGGATTGATTAATGTGTTGGCTGTAAAATAGTTCTCACCATCTTGCAACATGGAACTGTAATGTCGTATGCCAATTGGATTTTTCAAGCATCCAAGGGCTCCTTGCTTTCTCTCGAGCTGTCGCGGATTAGTAAAGACTGTGATACAATCGTGAGTACTCATACTCCAAATCATATTAGAATTAGTAAGATAGTCATCAGGGGACTTGTAATCTCCCCCCATCCGCAAAACTTGTTGTACCAATTTTTTTGTAGGAGCTTACCTGATATGATTATTACTTGTTTCCTGCTACCAGACAATCCTTGGATTTTTCTGTTTGTATATACAGAGTGTATCTTTAGATTTTGTAGGACTAAACTTCTCTTATTTTTTCCCCTGCTACCAGACGATTCTTGGATATTTGTATTTTTGTTTGTTTGTATGTACAGAGTGTATCTTTGGATTTTGTAGGACTAAACTTCTGTTTACTATGACAAGTTGCATATTAGTGCTTTAATACAACTTAGTGCCT CAGATATAAACTTTTGTTTCTTTCTATTACCTCACAACAGCTATTTCTATTTTTAAAAATTGTTCCTTTGTGTACATTTCCAAACCAAAAAAATAAATCCAAACACACCCTTAATTTATTTATTTTTCCCACCTTTAACCCTACGCCATAGTCTCCCTCTTTCTCGCGGCGTTTCTGGCTCCCTTTTCTCTCTCCAAACAAAAATGGCGTCTATACTTCGGTGCCCATGTCCAGCTACTAAATCGACCCCTTTCTCTCAAACCCCATCAAAACCCGTCCTCAATCTATGTTCCCTCAAATTCTCACCTCGAAACCCCATTAAATGTAACTTGGCAGAGCAATTGAAGGCTGCGGAAAATGGGAAACCCCCATCTTCTTCCTATTCTCGTTCATCTGGAATGGACCAGCAATCATTCCCCTCATTTATGGCTTCTACGCATTTCGATAGTTCTATTAATCGGAATGATACCCGTCTTCGGATTTTCTCCGGTACCGCCAATCCTGCTCTTGCTCAGGAAATTGCTTGTTATATGGGTCTCCAGCTTGGAAAAATAAAGATCAAACGTTTTGCTGACGGTGAGATTTATGTTCAACTCCAAGAGAGCGTTAGAGGTTGTGATGTTTTTCTTGTTCAACCTACATGTCCACCTGCCAATGAGAACCTTATGGAACTTCTGATAATGATTGATGCGTGCCGAAGAGCTTCAGCAAAAAATATAACCGCGGTTATACCATATTTTGGATATGCTAGAGCTGATCGAAAGACACAAGGACGTGAATCGATAGCAGCCAAACTTGTTGCTAACCTGATAACAGAAGCTGGTGCTAATCGAGTACTTGCTTGTGATCTTCATTCTGGGCAGTCAATGGGATATTTTGATATACCGGTGGATCATGTATATGGTCAGCCTGTGATTCTAGATTACCTAGCAAGCAAGACAATATGTTCAGATGATTTAGTTGTCGTTTCACCGGATGTTGGTGGAGTCGCCAGAGCTCGTGCTTTTGCGAAGAAGTTATCTGATGCACCACTTGCCATTGTTGATAAGAGGCGCCATGGGCACAATGTTGCAGAGGTAATGAATTTGATTGGTGATGTTAAGGGAAAAGTAGCAGTTATGGTGGATGATATGATAGATACAGCTGGTACAATTTCTAAAGGGGCAGCCCTCTTGCACCAGGAAGGAGCAAGGGAAGTCTATGCATGTAGCACACATGCTGTCTTCAGTCCTCCTGCTATTGAAAGGTTATCCAGTGGTTTGTTTCAAGAAGTAATCATCACAAATACAATTCCTGTCTTGGAGAAAAACTACTTCCCCCAGCTTACTGTACTGTCAGTTGCAAATCTTTTGGGCGAGACCATTTGGCGTGTTCATGATGACTGTTCTGTTGGATTTGAACCTTACTCAAGCTTGGGGATTGATTAATGTGTTGGCTGTAAAATAGTTCTCACCATCTTGCAACATGGAACTGTAATGTCGTATGCCAATTGGATTTTTCAAGCATCCAAGGGCTCCTTGCTTTCTCTCGAGCTGTCGCGGATTAGTAAAGACTGTGATACAATCGTGAGTACTCATACTCCAAATCATATTAGAATTAGTAAGATAGTCATCAGGGGACTTGTAATCTCCCCCCATCCGCAAAACTTGTTGTACCAATTTTTTTGTAGGAGCTTACCTGATATGATTATTACTTGTTTCCTGCTACCAGACAATCCTTGGATTTTTCTGTTTGTATATACAGAGTGTATCTTTAGATTTTGTAGGACTAAACTTCTCTTATTTTTTCCCCTGCTACCAGACGATTCTTGGATATTTGTATTTTTGTTTGTTTGTATGTACAGAGTGTATCTTTGGATTTTGTAGGACTAAACTTCTGTTTACTATGACAAGTTGCATATTAGTGCTTTAATACAACTTAGTGCCT ATGGCGTCTATACTTCGGTGCCCATGTCCAGCTACTAAATCGACCCCTTTCTCTCAAACCCCATCAAAACCCGTCCTCAATCTATGTTCCCTCAAATTCTCACCTCGAAACCCCATTAAATGTAACTTGGCAGAGCAATTGAAGGCTGCGGAAAATGGGAAACCCCCATCTTCTTCCTATTCTCGTTCATCTGGAATGGACCAGCAATCATTCCCCTCATTTATGGCTTCTACGCATTTCGATAGTTCTATTAATCGGAATGATACCCGTCTTCGGATTTTCTCCGGTACCGCCAATCCTGCTCTTGCTCAGGAAATTGCTTGTTATATGGGTCTCCAGCTTGGAAAAATAAAGATCAAACGTTTTGCTGACGGTGAGATTTATGTTCAACTCCAAGAGAGCGTTAGAGGTTGTGATGTTTTTCTTGTTCAACCTACATGTCCACCTGCCAATGAGAACCTTATGGAACTTCTGATAATGATTGATGCGTGCCGAAGAGCTTCAGCAAAAAATATAACCGCGGTTATACCATATTTTGGATATGCTAGAGCTGATCGAAAGACACAAGGACGTGAATCGATAGCAGCCAAACTTGTTGCTAACCTGATAACAGAAGCTGGTGCTAATCGAGTACTTGCTTGTGATCTTCATTCTGGGCAGTCAATGGGATATTTTGATATACCGGTGGATCATGTATATGGTCAGCCTGTGATTCTAGATTACCTAGCAAGCAAGACAATATGTTCAGATGATTTAGTTGTCGTTTCACCGGATGTTGGTGGAGTCGCCAGAGCTCGTGCTTTTGCGAAGAAGTTATCTGATGCACCACTTGCCATTGTTGATAAGAGGCGCCATGGGCACAATGTTGCAGAGGTAATGAATTTGATTGGTGATGTTAAGGGAAAAGTAGCAGTTATGGTGGATGATATGATAGATACAGCTGGTACAATTTCTAAAGGGGCAGCCCTCTTGCACCAGGAAGGAGCAAGGGAAGTCTATGCATGTAGCACACATGCTGTCTTCAGTCCTCCTGCTATTGAAAGGTTATCCAGTGGTTTGTTTCAAGAAGTAATCATCACAAATACAATTCCTGTCTTGGAGAAAAACTACTTCCCCCAGCTTACTGTACTGTCAGTTGCAAATCTTTTGGGCGAGACCATTTGGCGTGTTCATGATGACTGTTCTGTTGGATTTGAACCTTACTCAAGCTTGGGGATTGATTAA MASILRCPCPATKSTPFSQTPSKPVLNLCSLKFSPRNPIKCNLAEQLKAAENGKPPSSSYSRSSGMDQQSFPSFMASTHFDSSINRNDTRLRIFSGTANPALAQEIACYMGLQLGKIKIKRFADGEIYVQLQESVRGCDVFLVQPTCPPANENLMELLIMIDACRRASAKNITAVIPYFGYARADRKTQGRESIAAKLVANLITEAGANRVLACDLHSGQSMGYFDIPVDHVYGQPVILDYLASKTICSDDLVVVSPDVGGVARARAFAKKLSDAPLAIVDKRRHGHNVAEVMNLIGDVKGKVAVMVDDMIDTAGTISKGAALLHQEGAREVYACSTHAVFSPPAIERLSSGLFQEVIITNTIPVLEKNYFPQLTVLSVANLLGETIWRVHDDCSVGFEPYSSLGID Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo00027.1 vs. NCBI nr
Match: gi|902228945|gb|KNA21331.1| (hypothetical protein SOVF_044300 [Spinacia oleracea]) HSP 1 Score: 807.7 bits (2085), Expect = 8.900e-231 Identity = 407/407 (100.00%), Postives = 407/407 (100.00%), Query Frame = 1
BLAST of Spo00027.1 vs. NCBI nr
Match: gi|731360708|ref|XP_010691964.1| (PREDICTED: ribose-phosphate pyrophosphokinase 1 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 724.9 bits (1870), Expect = 7.600e-206 Identity = 374/407 (91.89%), Postives = 382/407 (93.86%), Query Frame = 1
BLAST of Spo00027.1 vs. NCBI nr
Match: gi|62286954|sp|Q9XG98.1|KPRS1_SPIOL (RecName: Full=Ribose-phosphate pyrophosphokinase 1; AltName: Full=Phosphoribosyl pyrophosphate synthase 1) HSP 1 Score: 656.8 bits (1693), Expect = 2.500e-185 Identity = 331/331 (100.00%), Postives = 331/331 (100.00%), Query Frame = 1
BLAST of Spo00027.1 vs. NCBI nr
Match: gi|225453242|ref|XP_002265309.1| (PREDICTED: ribose-phosphate pyrophosphokinase 1 [Vitis vinifera]) HSP 1 Score: 655.2 bits (1689), Expect = 7.400e-185 Identity = 335/397 (84.38%), Postives = 361/397 (90.93%), Query Frame = 1
BLAST of Spo00027.1 vs. NCBI nr
Match: gi|224129412|ref|XP_002320580.1| (ribose-phosphate pyrophosphokinase family protein [Populus trichocarpa]) HSP 1 Score: 651.4 bits (1679), Expect = 1.100e-183 Identity = 341/410 (83.17%), Postives = 362/410 (88.29%), Query Frame = 1
BLAST of Spo00027.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RP64_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_044300 PE=3 SV=1) HSP 1 Score: 807.7 bits (2085), Expect = 6.200e-231 Identity = 407/407 (100.00%), Postives = 407/407 (100.00%), Query Frame = 1
BLAST of Spo00027.1 vs. UniProtKB/TrEMBL
Match: A0A0J8BEQ9_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_1g017070 PE=3 SV=1) HSP 1 Score: 724.9 bits (1870), Expect = 5.300e-206 Identity = 374/407 (91.89%), Postives = 382/407 (93.86%), Query Frame = 1
BLAST of Spo00027.1 vs. UniProtKB/TrEMBL
Match: D7SM55_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_15s0021g00460 PE=3 SV=1) HSP 1 Score: 655.2 bits (1689), Expect = 5.200e-185 Identity = 335/397 (84.38%), Postives = 361/397 (90.93%), Query Frame = 1
BLAST of Spo00027.1 vs. UniProtKB/TrEMBL
Match: B9IB48_POPTR (Ribose-phosphate pyrophosphokinase family protein OS=Populus trichocarpa GN=POPTR_0014s17780g PE=3 SV=1) HSP 1 Score: 651.4 bits (1679), Expect = 7.500e-184 Identity = 341/410 (83.17%), Postives = 362/410 (88.29%), Query Frame = 1
BLAST of Spo00027.1 vs. UniProtKB/TrEMBL
Match: A0A059C4H5_EUCGR (Uncharacterized protein OS=Eucalyptus grandis GN=EUGRSUZ_E01722 PE=3 SV=1) HSP 1 Score: 651.0 bits (1678), Expect = 9.700e-184 Identity = 333/371 (89.76%), Postives = 346/371 (93.26%), Query Frame = 1
BLAST of Spo00027.1 vs. ExPASy Swiss-Prot
Match: KPRS1_SPIOL (Ribose-phosphate pyrophosphokinase 1 OS=Spinacia oleracea GN=PRS1 PE=2 SV=1) HSP 1 Score: 656.8 bits (1693), Expect = 1.600e-187 Identity = 331/331 (100.00%), Postives = 331/331 (100.00%), Query Frame = 1
BLAST of Spo00027.1 vs. ExPASy Swiss-Prot
Match: KPRS5_ARATH (Ribose-phosphate pyrophosphokinase 5, chloroplastic OS=Arabidopsis thaliana GN=PRS5 PE=2 SV=2) HSP 1 Score: 612.1 bits (1577), Expect = 4.500e-174 Identity = 318/393 (80.92%), Postives = 343/393 (87.28%), Query Frame = 1
BLAST of Spo00027.1 vs. ExPASy Swiss-Prot
Match: KPRS1_ORYSJ (Ribose-phosphate pyrophosphokinase 1, chloroplastic OS=Oryza sativa subsp. japonica GN=Os02g0127700 PE=2 SV=2) HSP 1 Score: 605.5 bits (1560), Expect = 4.200e-172 Identity = 310/369 (84.01%), Postives = 332/369 (89.97%), Query Frame = 1
BLAST of Spo00027.1 vs. ExPASy Swiss-Prot
Match: KPRS2_SPIOL (Ribose-phosphate pyrophosphokinase 2, chloroplastic OS=Spinacia oleracea GN=PRS2 PE=2 SV=1) HSP 1 Score: 588.2 bits (1515), Expect = 7.000e-167 Identity = 308/388 (79.38%), Postives = 334/388 (86.08%), Query Frame = 1
BLAST of Spo00027.1 vs. ExPASy Swiss-Prot
Match: KPRS2_ARATH (Ribose-phosphate pyrophosphokinase 2, chloroplastic OS=Arabidopsis thaliana GN=PRS2 PE=2 SV=2) HSP 1 Score: 578.2 bits (1489), Expect = 7.200e-164 Identity = 302/405 (74.57%), Postives = 338/405 (83.46%), Query Frame = 1
BLAST of Spo00027.1 vs. TAIR (Arabidopsis)
Match: AT2G44530.1 (Phosphoribosyltransferase family protein) HSP 1 Score: 612.1 bits (1577), Expect = 2.500e-175 Identity = 318/393 (80.92%), Postives = 343/393 (87.28%), Query Frame = 1
BLAST of Spo00027.1 vs. TAIR (Arabidopsis)
Match: AT1G32380.1 (phosphoribosyl pyrophosphate (PRPP) synthase 2) HSP 1 Score: 578.2 bits (1489), Expect = 4.100e-165 Identity = 302/405 (74.57%), Postives = 338/405 (83.46%), Query Frame = 1
BLAST of Spo00027.1 vs. TAIR (Arabidopsis)
Match: AT2G35390.2 (Phosphoribosyltransferase family protein) HSP 1 Score: 578.2 bits (1489), Expect = 4.100e-165 Identity = 304/405 (75.06%), Postives = 336/405 (82.96%), Query Frame = 1
BLAST of Spo00027.1 vs. TAIR (Arabidopsis)
Match: AT1G10700.1 (phosphoribosyl pyrophosphate (PRPP) synthase 3) HSP 1 Score: 78.2 bits (191), Expect = 1.300e-14 Identity = 94/359 (26.18%), Postives = 162/359 (45.13%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo00027.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo00027.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo00027.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo00027.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 4
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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