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.GGTCGGTGGTCGGTGTCGGTGGCTGGCCTGGCCACCTTCACATTTAGAACTAGGCACGATTTCATTCAAATATCTAAAAGCCCAAAGTATTCAGAATTCTGAACCCAAACCCACACAAAAATAGCCTCAAAGTTCAGAAACATCTGGAACCTTCTATCTTTCCAATTTCCAGTGACCCCTTGTAAGAATTGGAGCAGAAAACAAATGGATTAGACTGAAAACTTCCACCGAGAGTCACCGTTTAAAAAATGGCGGTAATCTCATTCTCTCTCCTCCGCCACCACGCGTCACCGTATCTAGCTCCTCCCACCACCGCCACCTTCCTCCTTCTCCGACGCCGATTCTCTCCCCTCACCACTACAATTGTTTGCAGAAACATCCATGACAAAAGCAAGCAAGCTCAATCAAACGCGCTCAAGGCGGCGCGTGAATTCACACGCACCAAACACACACAATCTTCTCTTTCCTCACTCTCGAAACCTCAGAGTCTCTCTCCTAATCAAGCCGTAGGAACTGTAGCTTCAGCTCAAGCCAACTTCATGCGCGTTGTTGTACAATCCACTCCTCCTCCAGAAGAAGAAGACTCTGGAGCTTCCGAGATGGAGAATACGCACATTCCAGAAGGTTCTGGCGGAATTGAGCTTCTATGCGTGGTGAGAGCCGTGTTGAAGAAGATTAAGCGGAGGGTTTTAGTAGGGGATAGGGTTTTGGTAGGGTCAATTGATTGGGTGGATCGCCGGGGCATGATAGAGAATGTGTTTCCTCGGAAGTCGGAGATTCCTGACCCTCCGATTGCGAATGCTGATCATTTTCTGGTGGTGTTCTCGCTGGATCAGCCTAAGGTTGAGCCGTATTCGTTAACTAGGTTTTTGGTTGAGGCTGAGTCTGCTGGATTTCCTCTCACTCTTGCTCTGAACAAATGCGAGCTCGTTCGCGATGAGGTTTGCGTGTCTAGCATTGATTAGATTGTTGTTGATTACCAGATTAGTTAAAATTTGTTGCTCAAATGTGTATATGTTTTGAACTTTTGGAGTGGCATTGCGGGTTGTTGTACTGATATTTTGTGTGACATATGAGGAATTAACAAAGTACTGTTTGGTAGATAGATAATGTGGTAGTGGAATGGAGGGAGAACATCAGTATATTAGCCTGTTAGGTTAGCTGCGTAGTGTTTGATTGATTGAGCTTAAAACCTTGAAAATGTTTTGGATGTTGAAAGTTGTGCTTCGAGTTTGATGATGTTTAGAGACAAACATACATAATATTTTGTGAAATGATGGGTAAATAGGGCATTGGAGCAAGTTGGATGATACTTTTGAGCAAGTTAAAAAGAATCCAGGTTCAGCTTTTAGCATGATTGAGCTGAAATTTGTAACTGAAAAACAGTATTTTGATGTGTGTGTTGTATGTGTGTTTTCCACGTTTTTAAGAGTGTATGGTATGTTAGTTGTAAAATTTAAGTGAGCTCACTGCAGTGTAGTACTTTGAAAACTGAAAATTTTGTTCTGTCTGATGGTGCTCGGAGGCAATGTGCGTAAGTTTTTGTGAACTAACATAGGGAATGGAGTGTTGAAGACTTTGAAGAGAGTTGTATAGTCGCGTGGGAGCAAGTTCAATACAATGCAGGTGTTTAGTGCTTATGATTTTACTTACCTACTTACATAATATTACCCTCAATGTTAAGTGACAACTGACAAAAGACAGGAAGACAATCTTTTAATGCAAGATTGCAAGTAGCCTATCCTTTTAGTGGTGTCATGGAATTTTGCTAGGAACTGTTGTAGGTTTAATGATCACACTCTTTTGTTTATTTGGCTTGCTCATCTCAATTCAATTTGATTTTAGAGAAATTAGTGGTCAAACTTCAACCTCGAAAGCATGCGTGTGTTATTCAATAGAGGGAGTATTACAATAGTAGTTGCGTAGCATTTTACTGTGTCCGCTGCAATTAATATGCTGGGTGCTGAAGTTTGTGTTTTCAGATTGGTGAAACTTAGAGAATGTGTATATTTTCACAATTTGGTTGAAGAAACATGTTTGGTCTGAGTAGGATAAGATTTGTCAGAGGACATTCCTAACAGAGTAGGCGTAAACCATAATGATCCTAGGTTGAGATTAGAGTTACTCTCTAATATATGTCAGAGACTCAGAGTTACAAACAACGGGAAAGCTGAAAAGAATGCAATCTTCTAGTGCCGGGAGCTTATGCTCACATCGATATCTGTAAAGTAGTTCGTCTTTGACTTATTTAGCTAGTGTGTTTACTTGTTCCTTGAGGCTTTCTAGGGTTGTGTATGAAAGAGGGGGGAACGAGTATTATTCTCTTTGAATTTTTGAGAGCGAAGTAAAACAAAGTGTTTTACCTACAGGTTCAACGGCCTCTAAGTTGGTCGATTTTGCTTGGTTGGCCATATTGTGTGACCTAAACTTATCCAATGTCTATGTTGCGGCTCATGTGGATTCACAAGCTCTTTTTTTATTTTATTTTAAATCATTGGTACTCTATCTGTTTTAGTGATTCTTTGTTTCTAAAGTTGGTCAGTTTTGATGATGGAATATGCAGGTTCTGGTTGAGTGGAAAACTAGGCTTCGTCAGTGGGGATACATACCCATATTTTGCAGCGTTGAGTCAAAACGCGGACTTGATTCCCTCGCATTTTACTTGAGAGATAGGACAACAGTGATTGTTGGTCCAAGTGGTGTTGGGAAGTCCAGTCTGATTAATGCCTTGCGAAGCACTGATCAAACCCCCACCCTTATGGAAGACGGTAGCTTGTTTGATCATGTGGGTTTCAAATCCCTCTTGTTTTCTATGATCCTCTCATCTCTTAATTTTACAAATTATAATGTTATTCCGAAAGGTTCATAGCTTAATTGTCCTCTGTTCTGAAATGTGAACTATCAGATTTCAGGCAGCAAATGGTTTGACGAGCAGCGAGTTGGAGAAGTTTCTGCTAGAAGTGGAAGAGGGAAACACACAACTCGAAACGTATCTTTGCTACCATTAGCTGGAGGTGGATATCTAGCTGATACCCCAGGTTTCAGCCAACCTAGTCTAATGAAGGTGACAAAACAGACCCTCGCACAGGCATTCCCTGAGGTAACTTCGGTTTCATTTCAATTTAAAACAGATATAACAGCCCATTTGGTAGTCGGTAATAAATGGGAGGAATGAGAATAAAATCTAAGTGTAATTTGGCAAGAAAATAAAATCATGATGTCAATGGTAATGAAATTTTGTCTCAAACTTGGTGTTGTTCTTCATAAATTTTCATTCCCGCCTAATACCAACGGTAATGAAAATTTATAAAGAAAAAGAGATAATTTTGAGTGAACTTGTATCACCATGGGATTACATATTGTTTTTCCTTACAAATTTACATACAAATTTATTCCCATTTACACAATTTATGGCCGGCTACCAAACGGGTCGTAAATGTTTTTTCTATCTTCCTGTTTTCTTCTACATTCATTTGCATACAACTGATAAACTGTATATTCAGATCCAGAAAAAACTGGAAGCAAACAAACCTAAAGGATGCACATTCAACAATTGCTTGCACATTGGTGAACCTGGATGTGTGGTAAATGGAGATTGGGAGAGATATCCGTATTACTTTCAACTACTGGATGAAATTAAAGTAAGGGAGGAATTCCAACTAAGAACAATGGGCACGAAGAGGGAGGGCGACGTAAGGTATTGTAAATATTTTTCTTACTGTTTTTTGTGCAAGAGAATCTCTAATACTCCGTATTGAGTTGCTTGTTACTTATCTTGGTCTCTTTATATTAGATCTGATCAACTATAGCCCGACCCAACCCGAAAAAGAGCGGGTTTGGGTAGCCTAAAATATGTTCTTAGACCAAAACCAAACCCGGCCCGAAAAAGCCTGTTTCAGCCCGCAAAGCCCACATCAAATTTATGGGTTTGGGCTTGCTTTTTGGTGTTAAAGCCCGGCCTGTAGGGATGGCAAATGGGCGGTGCGGGTGCGGGTACGGGGCCCCCTCCCCCGCACCCGTACCCGCCAAAAAAATTTACACCCATCACCTACCCGCCACCCGCAGCGGGTATAATTTTTTCGTCCACACCCGCCTATGCGGGTACATTCCTATAATCGTACCCGCTCCACCACCCACGTGGATATCCACCAACCGCTTTTACCCGCCTGTACCCGCCTCCTTAATAATATAATAAAATAATAAAAAAAATCTTGTTTATATGACATGTTTATCAATGTTCTCAAACTAACAATAAAAGTATTTTTAGAACGTTCTTAAATACCGAAAATTAATAATTTCACCATAAATTACTTAAAGAAATACACAAATCTCAATCAATACACACAACATTTGCTCCCATATACAATCTTGCATCATCTTCATCTTCGACATCGTCCTCAATATCATATATATTCACCACCTTAACGACACCACCACCTGCAAAATTGCATAAATTTATATAATTAGAGTCTAAATTAGATTTTAATATATCATAAATTATTACTCTACGTCTGAAAATAATTTGCTAATGCAAATTGCCAAGTTGAAGCGCATCTCAGGGAGATCCTCAATTAAAACATCAAATAATAAAATAGCAAAACTATTGACTATTTACCAGTTAATAATAATTTGCTAATGTAATTGCCCTTTTTTATTCTATTTCACACAACATTACTATTTACCAGTTACTACATCCATAATTTTCAATTCCAGAAGTATATTGTTCATCAGTACACAGTCCAAGCAGAGGAACAGACTGAGACTTCAAATATGCTTTTTAAAAATAGCTGAATAAAGAAAAGTCCTTCCATACTCCATATTCGATACCAAGTATTAAATTTCTTAGCTACTCAAGTCAAAATATAGAGAAATTTCTAAACCAAATTCTCATTATTATTCTGTTTCAAAGGATTAAATTCCACACATAATTTCAGAATTTGAATTATTCAGTGTAATTAACAACTCCCAAAAATCACATTACTATTATAATCACCAAAAAACGAAAGAGGAATTCAAATTAATCGAATAGGAAGTAGATAAACGAATTGTAAATAAACGAATTATAGATAAACGAAGTGTAGATAAACGAAGTGTAAAACTGACTTTGAGGGATGAGTGCGGCTCGCCGGCTCGACTGAAGACGGAATGAGAAGGAGGCTCGACGGAAGACGGAATGAGATGGAGGCTCGCCGACGAAGAGAAGGAGGCGCCGGCTTCACTGACTAAGTTACTAGGGTTTTCAACTTTTCATCCAAATGTGCAAATGGAGTAAATGGGCTTATATATTAGTAAAATTTGTAAAAAAAATTCAAAGAATGCGGGTATAAGACATGCGGGCGGGTAGGAGGCGGGGCGGGGCGGGGCAGGCGGGTATGGAGCGGGTATGACCTAATATCCACTACCTACCCGGCGGCCTGACCCGAATTTTAATCACCTCTACTTTATATTACAGGAACAAGGTGGGAGAAATGGGTGTGACACTATCTGAGCCAAGACTGGAGTCAAAGAAGCACAGGAGACAATCTCGCAAGAAAGTGAACCAGTCTTTGTTAGACGACTTGGATGAGCTGGATGATGATGATGATGATGACGAATACTTGGAAGATAATCCTATAATCCGTGCTATGGAGCAAGAAAACTTGTAGGATATTGAAGATGAAGCATTTGAATAGGGAGATGATGATGACATCTTACTTTGTTTAGACTGTTTTGAGGATATTGAAGGGGAGGAAAAGTTTTGAACCCTTGTATTTTGCTCCTTTCTTGTAAATAGTGAATCACTAAAGCAAAATACTTGTATAGATAAATCTTTGGGGTCAATTTAGTTGCTGATTATGTTGAAATGAGTTACATATTTGATATTCTTGGATTATGTGAATATATGACATTGGCTTGTTGCCTGAAATTTACGATCACTGTCAAAGTGTACCCAAGGTGAGTTAAGGATACGAACTTGATTGACTACCGTGAAAGATTCTGATGAACAGGCCTTTTGTGGCCGAATAATAGAGGTTTACGGCTTGCGTCATTACGTGAAAGACCCTTTGTTCATGGCATATTGGCATGGGATCTTTACAGGTTTGCTGTAAAGATGGCCGTGGGGAGGGCCGGGTCAGGCTGAGTCCATGCCAAACCCACATTGTATCAGGGCGGGTCGAGTCAAGTCCACACCCAGCCCACATTGTATTGGGTTGGGCTGAAAAGTTCAAAAACAG GGTCGGTGGTCGGTGTCGGTGGCTGGCCTGGCCACCTTCACATTTAGAACTAGGCACGATTTCATTCAAATATCTAAAAGCCCAAAGTATTCAGAATTCTGAACCCAAACCCACACAAAAATAGCCTCAAAGTTCAGAAACATCTGGAACCTTCTATCTTTCCAATTTCCAGTGACCCCTTGTAAGAATTGGAGCAGAAAACAAATGGATTAGACTGAAAACTTCCACCGAGAGTCACCGTTTAAAAAATGGCGGTAATCTCATTCTCTCTCCTCCGCCACCACGCGTCACCGTATCTAGCTCCTCCCACCACCGCCACCTTCCTCCTTCTCCGACGCCGATTCTCTCCCCTCACCACTACAATTGTTTGCAGAAACATCCATGACAAAAGCAAGCAAGCTCAATCAAACGCGCTCAAGGCGGCGCGTGAATTCACACGCACCAAACACACACAATCTTCTCTTTCCTCACTCTCGAAACCTCAGAGTCTCTCTCCTAATCAAGCCGTAGGAACTGTAGCTTCAGCTCAAGCCAACTTCATGCGCGTTGTTGTACAATCCACTCCTCCTCCAGAAGAAGAAGACTCTGGAGCTTCCGAGATGGAGAATACGCACATTCCAGAAGGTTCTGGCGGAATTGAGCTTCTATGCGTGGTGAGAGCCGTGTTGAAGAAGATTAAGCGGAGGGTTTTAGTAGGGGATAGGGTTTTGGTAGGGTCAATTGATTGGGTGGATCGCCGGGGCATGATAGAGAATGTGTTTCCTCGGAAGTCGGAGATTCCTGACCCTCCGATTGCGAATGCTGATCATTTTCTGGTGGTGTTCTCGCTGGATCAGCCTAAGGTTGAGCCGTATTCGTTAACTAGGTTTTTGGTTGAGGCTGAGTCTGCTGGATTTCCTCTCACTCTTGCTCTGAACAAATGCGAGCTCGTTCGCGATGAGGTTCTGGTTGAGTGGAAAACTAGGCTTCGTCAGTGGGGATACATACCCATATTTTGCAGCGTTGAGTCAAAACGCGGACTTGATTCCCTCGCATTTTACTTGAGAGATAGGACAACAGTGATTGTTGGTCCAAGTGGTGTTGGGAAGTCCAGTCTGATTAATGCCTTGCGAAGCACTGATCAAACCCCCACCCTTATGGAAGACGGTAGCTTGTTTGATCATATTTCAGGCAGCAAATGGTTTGACGAGCAGCGAGTTGGAGAAGTTTCTGCTAGAAGTGGAAGAGGGAAACACACAACTCGAAACGTATCTTTGCTACCATTAGCTGGAGGTGGATATCTAGCTGATACCCCAGGTTTCAGCCAACCTAGTCTAATGAAGGTGACAAAACAGACCCTCGCACAGGCATTCCCTGAGATCCAGAAAAAACTGGAAGCAAACAAACCTAAAGGATGCACATTCAACAATTGCTTGCACATTGGTGAACCTGGATGTGTGGTAAATGGAGATTGGGAGAGATATCCGTATTACTTTCAACTACTGGATGAAATTAAAGTAAGGGAGGAATTCCAACTAAGAACAATGGGCACGAAGAGGGAGGGCGACGTAAGGAACAAGGTGGGAGAAATGGGTGTGACACTATCTGAGCCAAGACTGGAGTCAAAGAAGCACAGGAGACAATCTCGCAAGAAAGTGAACCAGTCTTTGTTAGACGACTTGGATGAGCTGGATGATGATGATGATGATGACGAATACTTGGAAGATAATCCTATAATCCGTGCTATGGAGCAAGAAAACTTGTAGGATATTGAAGATGAAGCATTTGAATAGGGAGATGATGATGACATCTTACTTTGTTTAGACTGTTTTGAGGATATTGAAGGGGAGGAAAAGTTTTGAACCCTTGTATTTTGCTCCTTTCTTGTAAATAGTGAATCACTAAAGCAAAATACTTGTATAGATAAATCTTTGGGGTCAATTTAGTTGCTGATTATGTTGAAATGAGTTACATATTTGATATTCTTGGATTATGTGAATATATGACATTGGCTTGTTGCCTGAAATTTACGATCACTGTCAAAGTGTACCCAAGGTGAGTTAAGGATACGAACTTGATTGACTACCGTGAAAGATTCTGATGAACAGGCCTTTTGTGGCCGAATAATAGAGGTTTACGGCTTGCGTCATTACGTGAAAGACCCTTTGTTCATGGCATATTGGCATGGGATCTTTACAGGTTTGCTGTAAAGATGGCCGTGGGGAGGGCCGGGTCAGGCTGAGTCCATGCCAAACCCACATTGTATCAGGGCGGGTCGAGTCAAGTCCACACCCAGCCCACATTGTATTGGGTTGGGCTGAAAAGTTCAAAAACAG ATGGCGGTAATCTCATTCTCTCTCCTCCGCCACCACGCGTCACCGTATCTAGCTCCTCCCACCACCGCCACCTTCCTCCTTCTCCGACGCCGATTCTCTCCCCTCACCACTACAATTGTTTGCAGAAACATCCATGACAAAAGCAAGCAAGCTCAATCAAACGCGCTCAAGGCGGCGCGTGAATTCACACGCACCAAACACACACAATCTTCTCTTTCCTCACTCTCGAAACCTCAGAGTCTCTCTCCTAATCAAGCCGTAGGAACTGTAGCTTCAGCTCAAGCCAACTTCATGCGCGTTGTTGTACAATCCACTCCTCCTCCAGAAGAAGAAGACTCTGGAGCTTCCGAGATGGAGAATACGCACATTCCAGAAGGTTCTGGCGGAATTGAGCTTCTATGCGTGGTGAGAGCCGTGTTGAAGAAGATTAAGCGGAGGGTTTTAGTAGGGGATAGGGTTTTGGTAGGGTCAATTGATTGGGTGGATCGCCGGGGCATGATAGAGAATGTGTTTCCTCGGAAGTCGGAGATTCCTGACCCTCCGATTGCGAATGCTGATCATTTTCTGGTGGTGTTCTCGCTGGATCAGCCTAAGGTTGAGCCGTATTCGTTAACTAGGTTTTTGGTTGAGGCTGAGTCTGCTGGATTTCCTCTCACTCTTGCTCTGAACAAATGCGAGCTCGTTCGCGATGAGGTTCTGGTTGAGTGGAAAACTAGGCTTCGTCAGTGGGGATACATACCCATATTTTGCAGCGTTGAGTCAAAACGCGGACTTGATTCCCTCGCATTTTACTTGAGAGATAGGACAACAGTGATTGTTGGTCCAAGTGGTGTTGGGAAGTCCAGTCTGATTAATGCCTTGCGAAGCACTGATCAAACCCCCACCCTTATGGAAGACGGTAGCTTGTTTGATCATATTTCAGGCAGCAAATGGTTTGACGAGCAGCGAGTTGGAGAAGTTTCTGCTAGAAGTGGAAGAGGGAAACACACAACTCGAAACGTATCTTTGCTACCATTAGCTGGAGGTGGATATCTAGCTGATACCCCAGGTTTCAGCCAACCTAGTCTAATGAAGGTGACAAAACAGACCCTCGCACAGGCATTCCCTGAGATCCAGAAAAAACTGGAAGCAAACAAACCTAAAGGATGCACATTCAACAATTGCTTGCACATTGGTGAACCTGGATGTGTGGTAAATGGAGATTGGGAGAGATATCCGTATTACTTTCAACTACTGGATGAAATTAAAGTAAGGGAGGAATTCCAACTAAGAACAATGGGCACGAAGAGGGAGGGCGACGTAAGGAACAAGGTGGGAGAAATGGGTGTGACACTATCTGAGCCAAGACTGGAGTCAAAGAAGCACAGGAGACAATCTCGCAAGAAAGTGAACCAGTCTTTGTTAGACGACTTGGATGAGCTGGATGATGATGATGATGATGACGAATACTTGGAAGATAATCCTATAATCCGTGCTATGGAGCAAGAAAACTTGTAG MAVISFSLLRHHASPYLAPPTTATFLLLRRRFSPLTTTIVCRNIHDKSKQAQSNALKAAREFTRTKHTQSSLSSLSKPQSLSPNQAVGTVASAQANFMRVVVQSTPPPEEEDSGASEMENTHIPEGSGGIELLCVVRAVLKKIKRRVLVGDRVLVGSIDWVDRRGMIENVFPRKSEIPDPPIANADHFLVVFSLDQPKVEPYSLTRFLVEAESAGFPLTLALNKCELVRDEVLVEWKTRLRQWGYIPIFCSVESKRGLDSLAFYLRDRTTVIVGPSGVGKSSLINALRSTDQTPTLMEDGSLFDHISGSKWFDEQRVGEVSARSGRGKHTTRNVSLLPLAGGGYLADTPGFSQPSLMKVTKQTLAQAFPEIQKKLEANKPKGCTFNNCLHIGEPGCVVNGDWERYPYYFQLLDEIKVREEFQLRTMGTKREGDVRNKVGEMGVTLSEPRLESKKHRRQSRKKVNQSLLDDLDELDDDDDDDEYLEDNPIIRAMEQENL Relationships
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from this mRNA:
The following five_prime_UTR feature(s) are a part of 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 Spo05887.1 vs. NCBI nr
Match: gi|902237165|gb|KNA24675.1| (hypothetical protein SOVF_013610 [Spinacia oleracea]) HSP 1 Score: 980.7 bits (2534), Expect = 9.400e-283 Identity = 498/498 (100.00%), Postives = 498/498 (100.00%), Query Frame = 1
BLAST of Spo05887.1 vs. NCBI nr
Match: gi|731343240|ref|XP_010682795.1| (PREDICTED: uncharacterized protein LOC104897583 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 756.9 bits (1953), Expect = 2.200e-215 Identity = 399/505 (79.01%), Postives = 436/505 (86.34%), Query Frame = 1
BLAST of Spo05887.1 vs. NCBI nr
Match: gi|449452897|ref|XP_004144195.1| (PREDICTED: uncharacterized protein LOC101206221 [Cucumis sativus]) HSP 1 Score: 614.0 bits (1582), Expect = 2.300e-172 Identity = 325/509 (63.85%), Postives = 395/509 (77.60%), Query Frame = 1
BLAST of Spo05887.1 vs. NCBI nr
Match: gi|1021583313|ref|XP_016181033.1| (PREDICTED: putative ribosome biogenesis GTPase RsgA [Arachis ipaensis]) HSP 1 Score: 602.4 bits (1552), Expect = 7.000e-169 Identity = 323/508 (63.58%), Postives = 377/508 (74.21%), Query Frame = 1
BLAST of Spo05887.1 vs. NCBI nr
Match: gi|659089416|ref|XP_008445496.1| (PREDICTED: uncharacterized protein LOC103488495 [Cucumis melo]) HSP 1 Score: 602.4 bits (1552), Expect = 7.000e-169 Identity = 317/509 (62.28%), Postives = 389/509 (76.42%), Query Frame = 1
BLAST of Spo05887.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RYU4_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_013610 PE=3 SV=1) HSP 1 Score: 980.7 bits (2534), Expect = 6.600e-283 Identity = 498/498 (100.00%), Postives = 498/498 (100.00%), Query Frame = 1
BLAST of Spo05887.1 vs. UniProtKB/TrEMBL
Match: A0A0J8C1Y5_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_6g150990 PE=3 SV=1) HSP 1 Score: 756.9 bits (1953), Expect = 1.500e-215 Identity = 399/505 (79.01%), Postives = 436/505 (86.34%), Query Frame = 1
BLAST of Spo05887.1 vs. UniProtKB/TrEMBL
Match: A0A0A0KGV4_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_6G365180 PE=3 SV=1) HSP 1 Score: 614.0 bits (1582), Expect = 1.600e-172 Identity = 325/509 (63.85%), Postives = 395/509 (77.60%), Query Frame = 1
BLAST of Spo05887.1 vs. UniProtKB/TrEMBL
Match: A0A0D2V7R1_GOSRA (Uncharacterized protein OS=Gossypium raimondii GN=B456_012G175300 PE=3 SV=1) HSP 1 Score: 601.3 bits (1549), Expect = 1.100e-168 Identity = 323/505 (63.96%), Postives = 382/505 (75.64%), Query Frame = 1
BLAST of Spo05887.1 vs. UniProtKB/TrEMBL
Match: B9RMG0_RICCO (GTP binding protein, putative OS=Ricinus communis GN=RCOM_1080720 PE=3 SV=1) HSP 1 Score: 599.0 bits (1543), Expect = 5.400e-168 Identity = 322/511 (63.01%), Postives = 389/511 (76.13%), Query Frame = 1
BLAST of Spo05887.1 vs. ExPASy Swiss-Prot
Match: RSGA_ANAVT (Putative ribosome biogenesis GTPase RsgA OS=Anabaena variabilis (strain ATCC 29413 / PCC 7937) GN=rsgA PE=3 SV=1) HSP 1 Score: 274.6 bits (701), Expect = 2.100e-72 Identity = 165/386 (42.75%), Postives = 223/386 (57.77%), Query Frame = 1
BLAST of Spo05887.1 vs. ExPASy Swiss-Prot
Match: RSGA1_NOSS1 (Putative ribosome biogenesis GTPase RsgA 1 OS=Nostoc sp. (strain PCC 7120 / UTEX 2576) GN=rsgA1 PE=3 SV=1) HSP 1 Score: 272.3 bits (695), Expect = 1.000e-71 Identity = 164/386 (42.49%), Postives = 221/386 (57.25%), Query Frame = 1
BLAST of Spo05887.1 vs. ExPASy Swiss-Prot
Match: RSGA_MICAN (Putative ribosome biogenesis GTPase RsgA OS=Microcystis aeruginosa (strain NIES-843) GN=rsgA PE=3 SV=1) HSP 1 Score: 249.2 bits (635), Expect = 9.400e-65 Identity = 153/400 (38.25%), Postives = 218/400 (54.50%), Query Frame = 1
BLAST of Spo05887.1 vs. ExPASy Swiss-Prot
Match: RSGA_THEEB (Putative ribosome biogenesis GTPase RsgA OS=Thermosynechococcus elongatus (strain BP-1) GN=rsgA PE=3 SV=1) HSP 1 Score: 235.3 bits (599), Expect = 1.400e-60 Identity = 148/393 (37.66%), Postives = 213/393 (54.20%), Query Frame = 1
BLAST of Spo05887.1 vs. ExPASy Swiss-Prot
Match: RSGA_SYNY3 (Putative ribosome biogenesis GTPase RsgA OS=Synechocystis sp. (strain PCC 6803 / Kazusa) GN=rsgA PE=3 SV=1) HSP 1 Score: 233.4 bits (594), Expect = 5.300e-60 Identity = 144/369 (39.02%), Postives = 203/369 (55.01%), Query Frame = 1
BLAST of Spo05887.1 vs. TAIR (Arabidopsis)
Match: AT1G67440.1 (Minichromosome maintenance (MCM2/3/5) family protein) HSP 1 Score: 550.1 bits (1416), Expect = 1.400e-156 Identity = 286/435 (65.75%), Postives = 347/435 (79.77%), Query Frame = 1
BLAST of Spo05887.1 vs. TAIR (Arabidopsis)
Match: AT1G67460.1 (Minichromosome maintenance (MCM2/3/5) family protein) HSP 1 Score: 248.8 bits (634), Expect = 6.900e-66 Identity = 126/216 (58.33%), Postives = 160/216 (74.07%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo05887.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo05887.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo05887.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo05887.1 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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