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.TTAATTGACGAATCTCGTTAATCTGCGAGATTGTGGAATTACCCCCAGCACAACAACAGAATCGCCAATCCACCGGCCTTCATAAAACCTTCTAATTTCCCCCCTTTTTTTTAAAGCGCCAAAACATAAAAAAACCTCTACATTTCATAATCAAGCTTTAAACAGCGGCCGCAAGCTCAAGTGATAGCACAAAACCCAACCACCACTACCACCACTACCACCACCACGGCACCACCTCTAAGCAAACAAACAATGGAAGGCGGGATGATATCGGTGGACCAATGGGCGAAAGGAAGCCAGGCCTACTTCCTCACGCACCTCCACTCCGATCACACGCGCGGCCTCTCGTCAACGTGGTCGAATGGACCGTTATTCTGCTCTCGCACCACCGCCAAACTCTTTCCTCTCAAATTTCCCGACTTCAACTTCGCCTTCCTCCGCATCGTCGAAATCGGCTCTTGGCATCGTCTTTCTCTCTCCTCTCCTTCCACTGGCTCCCCTGCTTCTATTCAGTTTATGCCAATCGACGCTTTTCACTGTCCTGGTACTTCCTTGTCTCACTTCAATTTTAATTTTGGGGATTCTGACTTTCTGTTAACCCTAATTTTTTAGAGTTGGTGAATACTCGACTATTTTGTAAGTTTTTTTCCATGTAACTTTAGTAGATTGTGGTTGTATTCGAGGGGGTTAAGAAGTAATTAACCGTTAGTATATTTTGATTGTAGCTGTTGTTTATTAACACTGACTTTTGAAATTGAAATTGAAATTAAAATTGATTATATTATTAAGAGATTTCAGATTCGACGAATTCTTTATTAACAGGCCGATTTCCGATATGATTAAGCAGTAAAGTGGTTATTAGGGTCGCTGAAATTCGAAAATTTCATTTCGAAATGTGATGTGATGTGATAAATGTCATTGCAAGATTTATGTTACCTTTTTGCTGACGTTATTTTGTTTATACGAAGTAGTTTGTTAAGGTGATAAATTATTTGGTAAATGTTGATTAGGTTTCATTCTGGTTGAAATGAGCAGGAACTTTGATTCGAGTGTGTGATTGACGTACGAGGGCTAAGATGTGTTTTATTTGCTTGCTGTGCTGCAGATTTCTTTAGTCTCATACGCTATCATTGAAGTTGTGTGAAATTATGTTGGAGATTTTGATGGTTTACTTGTGCGGTTGATGAACAGGTGCTGTAATGTTCTTGTTTCGTGGTGTCTTTGGACACGTGCTTTACACTGGTGATTTCCGTTGGGAAGAAACTGGTGAGAGGTCCGTGAAAGCGAAGAACATGCTCATTGATGCTCTCAACGGCGCTAACGTTGATGTCCTTTACTTGGACAATACCTACTGCAACCCTGTATACTGTTTTCCTATACGAGAAGTTGCTACTCAACAGGTAATCTATTAAGGAGCTTAACCGAGTCTGCTTTTGTGTACATACTATAAAATATGCATACATAGTTGCAACTTGCTGGTTCTTTCTTGAGATTTTTTTTATAGCTAGTACTAAGGTGGAACAGTGGCAGTGATAGGTTTGGAAACAATGTGTACATTAGAAAATGGTCAAATTACTTCCTCCGTTTCAAAATAGTTGCAACACTTTTCTTTTTGCACTATTCACATAATTTGTTTATTTTTGATGATCTATACTTTAGGAAAAACATATTCACGTGGGATTTTGTTATATTTGTTTTAACGTATATTTTGTGAAAATTAAATTTCTTACAAATATTACTTATCGATAATTAAATATATTAATTCTTCAAGTTATGCATTGACAAACATAAAAACAAAGTGTTGTAACTAAAAAGGAATAGATGAAGTATTTTACTGCGGGCGTGCTAGTTGGTTGTAGTTAGCTATTAAAATTTAGAAGTGATGAGCTGCTTGTCTTGACTGACCGTGTGCATAGGTAAATTGATGTAGTCTGCATGCAGAGTACTTGCAGATGTTTGGTCAATTAGGAAAACTTGTGATAATCATTAGGTGTTATTTATGTATTCAAGTGTTTGGAGACGGCCAATTGTGTGCCGTGTATATATTAAATGTTTGACATGACTAGGAGTTACTGGAGTATGTCTAATAGAAATTTATATTAGCACATTTTTACAATGGACACTATTGACAGAGAAGTGTTATGAATGTACGAATCACAAAGGCTCTGCCAGTGTAGAGATTTGTGGATGCAGTAGAAAAACTATTTGCTACTCCTATGTGCAAAATGCAAGTTTGTCTATGCAACATTAAATGCAGAACAATGAAGAGTTTGCGACATATTGCATGTTTATATGCAACATCAAGTTTGTCTATGCAACATCAACAGAAAGTTTGTCTATACTAAATTTCTTTCAATTGAATTGCTTGAACAAACCCATGAACTAATGCAATTCTTAAATGTATTTTGATAGTCCCCTTAGAGGTGAATTCTTTATTTTCAGGGGAGAGATAACTCCGCGGAATGTCTTCTCTGGTTCTTGTTTCTTAGAGTTGTTAGATCTGTGATTCAGTGTATGTTTTGGAAATACATTTTTCACTCAACGGATGCCTTCATCTGATGCTAAAAGGAATTATGAATCTTAGATTGACTGCTTCTTCAAGGGAATCTATGAAGTAAATTAACTGGACTGGTCTTGCATATGCTTTGGAATTTTGATGTAATTTAATTAACTTGGGTTCCTTTTTGGGTTTTTCTTTCAATTCCGGCTGACTAGGATCTTAACGTCATTATACCACATAGAAGGAGATGTACGTATGTACCTGCTCATATTTTTTTGGCAAATAAAGCTTTGTATTAATTACGAAGAATAAGGTTACAAAAACCACCAAAACAACACTACACCCAAGCTTCAAAGTGGAAAATCCCCCCACCTTTTCCAGGAAGGGTTGAGGAAGACCACAAGCCGTAACTTAGCTACTATAGTTTCCGATCTCCTCATTACATCTTACTGCTACATTAAACAAAATTCTGCTAACAATCTGATTGCAATTTCCATAAGTTGTACACTGTTTCTATAAATGCCATGCTGCCAACTTTGTCTCTGCTTCTGGTACTTCTGGATTTCCCAGTGGCCCACTTCAGCTGTATCTGCTCATATTATCTGTGCACAATTTCTCTGTTTTGTTTTTTAGTAAGTATATTTAGTCACTCACATTACTTTTTTGTCAGTATATCAACGAAGTGACAAGTGATAGGGAATTGCTCATAGATAATTGCTAGCTAAACAGATTGGATTCTGAATCCATCTTCATACTTAAGTTTCTCATTACAAGTGCTGGCGACAATTACTGACCGTTGCTAGAATAGCTTGTCAGAGCTTAACTCTTCAGTGAATTGCTTTAATTAATTGCTTTATTTGGGGCGGAATACTTGAATGGCTGATTTGCAGGTTATAGAGATCATTGCTTCACACCCAGAGCATGACATCGTCATTGGGATTGATTCCCTGGGTAAAGAAGATCTGTTGCTTGAAATTTCACGTTGTCTAAAGATGAAGGTCTGGATCCTTTGCTGAACTTAAATTATAGAGTTTACTGATCTTTTTTCATCTGACCTAGATATATTATGTTTGTCGGAAACAAGAAATGCATCTTATTTTGCCGGAGTTGATTAATGGTAGATGTGTGCTTTATTGTTTACACCTAAACCTGTGCTAGGGTGCTTGATTAAAATTCCTGAGTTCTTCGTCATACTTTTTCTTTCATGTAATTGCAGTTCGAGAAATCAGTGTTGATTGAAGGACTCCATGAAAAAACAATCATCTAAATTTTCAGCTATTCCAAGTTTATATTGAAGTTTCTTTTTTAAAGATATCCCAAATTGTTTTTGTTTAATATAAATATTTACCTACTCCGTATATTTTTTTGTACATTGAAGGCCAAATTGGAGAGTTGGTTGGATTTTAGTCACAAAAATAATTAGATGTGTCAAAAATTTACATCTTAATGAGGAATGAACTATTTTGGGGAAAGGATTTGTAGAAAAGGAAGTTCATAAGAGAAAGCTATAAACTGAACACAAAGATAAAATGCTAAAAGTTTTCATATTTCCTCAGCAATATGTTTTATCTTTTTTGTCATCTAATATTATCTATGTCCTTTTTTCTTTCCACTTCCAAAGATCTGGGTTTGGCCTGAACGGTTGCAGACCATGCATCTGCTTGGCTACCCCGATATCTTCACAACCAGGACTTCCTTGACAAGAGTGCGAGCGGTTCCCCGTTACAGTTTTAGCATTAATACCTTAGAGGGCTTAAATGCTACCAAGCCGACTATAGGAATCATGCCATCCGGTCTTCCATGGGTATCAAAACCCTTTGAGGGAAAAAATAAGAAAGGATTTTCTCTATCAGTTGCTTCAAAAAACAGAAGGATACTAACAAGCAATGGGACTCGAGTTGACTTGAACATGAGGTCTGTTGAGAAGGTTCAGAATCACATTTTCTCAGTTCCCTATTCTGATCACTCCTGCTACCGTGAAATAAAAGATTTTGTTTGGTTAGTCAAGCCATATAATGTGAAAGGCATTGTGTCCATGTCATCCTGCTATGTTAATCCTGTTTACTATCTCAGCCACCTGTTTAGCTCAAACCGTGCATCTCAGTCCACCTGTCTGGATCCTGAAATTTGTGAGGAAGTTGAAATGAAAGGGAAGACAAAAAGAACAAATTTCACAGGTACAGGAAGAAAAAAGAGGACCACTGAAGCTAACTTTTTAGGGGTTCGGATTCGCAGGGTGTCCATTCTGAGGCAGATAAACCGTGGTGTAAAAATTGTGGAATGTGACAGTCCTGACTGATTTGAATATAAGTAAGTGCTGGCCTTTGGGTTTACCGATGGTACAAGATAAGGAGGAAATGTAGCAAAGCAACAACCAAATAGAAGATGATACTGACGGTCCTTGAATTTCATGGTTCTGAAACATTGTACAGAAGTTCTAATTTGGAAGCAGGCAGCTTTTTTAGAGACCCAACTTGAAGTTTTGCTGATTATTTCTGAATGGGATGCTTCGCTTTCATGTAATCAAAATTTTCGAGGTATAATCAAGAAGAACAGCAACTATGTTAATCAGATAGTAACCCTGGTATGCTTTCATAGCTCCCATGCTTGTTCACACCTCATTGCTTGCTTCCCCTCCCCCCCCCTGCTTGCTTTTTTAGAGACCCAACTTGAAGTTTTGCTGATTATTTCTGAATGGGATGCTTCGCTTTCATGTAATCAAAATTTTAGAGGTATAATCAAGAAGAACAGCAACTATGTTAATCAGATAGTAACCCTGGTATGCTTTCATAGCTCCCATGCTTGTTCACACCTCATTGCTTGCTTCCCCTCCCCCCCCCTGCTTGCTTTTTTAGAGACCCAACTTGAAGTTTTGCTNCTGGATGTATAGAGTATAATTTCGGGAAGTTGTACAAATCTCTAATCTCCTGTTCGACGATGAAGTACTAAATTAGTCGATTTTCTCTGGCTCTGCTTGCCAATTGACCATGAAAGCGGTAAACATTTCTCCTTTTAATGTTATATGGGAGTGTTTTTTTAGTATGCACGATAAAATTTTAGATTACTCTTGTAGCAGTGTGTTCAACACTTCAATTCAAGGATCTTTTGATGAAGTTGGTTATTCTGAAGACTACACACCAACCACCAGTGAATAATAATAACTAGCAAAGTTTAGCTTGATTTAGAAGATATATGCGCCTGTGAAATAAAATGAGAAATTGAGAATTGTGTGCTCCTTCTTATGCTGTTAAAAAAGAATTTACTTTTACATAATCTTCCCCTTCAATTATAGTTTAAGGTGTCAGTTACTGGTGGTTGTCCTTTGCAATGCAATGCATAGTGGTAAGTCTAAGGCATAGGCTCATTATTTTTTCCTTTTCTCCTAAACCACTTTGTCAAAATTTGTCGATTTTTCTTATGAACCACAATTGACAATCTCGGTGAC TTAATTGACGAATCTCGTTAATCTGCGAGATTGTGGAATTACCCCCAGCACAACAACAGAATCGCCAATCCACCGGCCTTCATAAAACCTTCTAATTTCCCCCCTTTTTTTTAAAGCGCCAAAACATAAAAAAACCTCTACATTTCATAATCAAGCTTTAAACAGCGGCCGCAAGCTCAAGTGATAGCACAAAACCCAACCACCACTACCACCACTACCACCACCACGGCACCACCTCTAAGCAAACAAACAATGGAAGGCGGGATGATATCGGTGGACCAATGGGCGAAAGGAAGCCAGGCCTACTTCCTCACGCACCTCCACTCCGATCACACGCGCGGCCTCTCGTCAACGTGGTCGAATGGACCGTTATTCTGCTCTCGCACCACCGCCAAACTCTTTCCTCTCAAATTTCCCGACTTCAACTTCGCCTTCCTCCGCATCGTCGAAATCGGCTCTTGGCATCGTCTTTCTCTCTCCTCTCCTTCCACTGGCTCCCCTGCTTCTATTCAGTTTATGCCAATCGACGCTTTTCACTGTCCTGGTGCTGTAATGTTCTTGTTTCGTGGTGTCTTTGGACACGTGCTTTACACTGGTGATTTCCGTTGGGAAGAAACTGGTGAGAGGTCCGTGAAAGCGAAGAACATGCTCATTGATGCTCTCAACGGCGCTAACGTTGATGTCCTTTACTTGGACAATACCTACTGCAACCCTGTATACTGTTTTCCTATACGAGAAGTTGCTACTCAACAGGTTATAGAGATCATTGCTTCACACCCAGAGCATGACATCGTCATTGGGATTGATTCCCTGGGTAAAGAAGATCTGTTGCTTGAAATTTCACGTTGTCTAAAGATGAAGATCTGGGTTTGGCCTGAACGGTTGCAGACCATGCATCTGCTTGGCTACCCCGATATCTTCACAACCAGGACTTCCTTGACAAGAGTGCGAGCGGTTCCCCGTTACAGTTTTAGCATTAATACCTTAGAGGGCTTAAATGCTACCAAGCCGACTATAGGAATCATGCCATCCGGTCTTCCATGGGTATCAAAACCCTTTGAGGGAAAAAATAAGAAAGGATTTTCTCTATCAGTTGCTTCAAAAAACAGAAGGATACTAACAAGCAATGGGACTCGAGTTGACTTGAACATGAGGTCTGTTGAGAAGGTTCAGAATCACATTTTCTCAGTTCCCTATTCTGATCACTCCTGCTACCGTGAAATAAAAGATTTTGTTTGGTTAGTCAAGCCATATAATGTGAAAGGCATTGTGTCCATGTCATCCTGCTATGTTAATCCTGTTTACTATCTCAGCCACCTGTTTAGCTCAAACCGTGCATCTCAGTCCACCTGTCTGGATCCTGAAATTTGTGAGGAAGTTGAAATGAAAGGGAAGACAAAAAGAACAAATTTCACAGGTACAGGAAGAAAAAAGAGGACCACTGAAGCTAACTTTTTAGGGGTTCGGATTCGCAGGGTGTCCATTCTGAGGCAGATAAACCGTGGTGTAAAAATTGTGGAATGTGACAGTCCTGACTGATTTGAATATAAGTAAGTGCTGGCCTTTGGGTTTACCGATGGTACAAGATAAGGAGGAAATGTAGCAAAGCAACAACCAAATAGAAGATGATACTGACGGTCCTTGAATTTCATGGTTCTGAAACATTGTACAGAAGTTCTAATTTGGAAGCAGGCAGCTTTTTTAGAGACCCAACTTGAAGTTTTGCTGATTATTTCTGAATGGGATGCTTCGCTTTCATGTAATCAAAATTTTCGAGGTATAATCAAGAAGAACAGCAACTATGTTAATCAGATAGTAACCCTGGTATGCTTTCATAGCTCCCATGCTTGTTCACACCTCATTGCTTGCTTCCCCTCCCCCCCCCTGCTTGCTTTTTTAGAGACCCAACTTGAAGTTTTGCTGATTATTTCTGAATGGGATGCTTCGCTTTCATGTAATCAAAATTTTAGAGGTATAATCAAGAAGAACAGCAACTATGTTAATCAGATAGTAACCCTGGTATGCTTTCATAGCTCCCATGCTTGTTCACACCTCATTGCTTGCTTCCCCTCCCCCCCCCTGCTTGCTTTTTTAGAGACCCAACTTGAAGTTTTGCTNCTGGATGTATAGAGTATAATTTCGGGAAGTTGTACAAATCTCTAATCTCCTGTTCGACGATGAAGTACTAAATTAGTCGATTTTCTCTGGCTCTGCTTGCCAATTGACCATGAAAGCGGTAAACATTTCTCCTTTTAATGTTATATGGGAGTGTTTTTTTAGTATGCACGATAAAATTTTAGATTACTCTTGTAGCAGTGTGTTCAACACTTCAATTCAAGGATCTTTTGATGAAGTTGGTTATTCTGAAGACTACACACCAACCACCAGTGAATAATAATAACTAGCAAAGTTTAGCTTGATTTAGAAGATATATGCGCCTGTGAAATAAAATGAGAAATTGAGAATTGTGTGCTCCTTCTTATGCTGTTAAAAAAGAATTTACTTTTACATAATCTTCCCCTTCAATTATAGTTTAAGGTGTCAGTTACTGGTGGTTGTCCTTTGCAATGCAATGCATAGTGGTAAGTCTAAGGCATAGGCTCATTATTTTTTCCTTTTCTCCTAAACCACTTTGTCAAAATTTGTCGATTTTTCTTATGAACCACAATTGACAATCTCGGTGAC ATGGAAGGCGGGATGATATCGGTGGACCAATGGGCGAAAGGAAGCCAGGCCTACTTCCTCACGCACCTCCACTCCGATCACACGCGCGGCCTCTCGTCAACGTGGTCGAATGGACCGTTATTCTGCTCTCGCACCACCGCCAAACTCTTTCCTCTCAAATTTCCCGACTTCAACTTCGCCTTCCTCCGCATCGTCGAAATCGGCTCTTGGCATCGTCTTTCTCTCTCCTCTCCTTCCACTGGCTCCCCTGCTTCTATTCAGTTTATGCCAATCGACGCTTTTCACTGTCCTGGTGCTGTAATGTTCTTGTTTCGTGGTGTCTTTGGACACGTGCTTTACACTGGTGATTTCCGTTGGGAAGAAACTGGTGAGAGGTCCGTGAAAGCGAAGAACATGCTCATTGATGCTCTCAACGGCGCTAACGTTGATGTCCTTTACTTGGACAATACCTACTGCAACCCTGTATACTGTTTTCCTATACGAGAAGTTGCTACTCAACAGGTTATAGAGATCATTGCTTCACACCCAGAGCATGACATCGTCATTGGGATTGATTCCCTGGGTAAAGAAGATCTGTTGCTTGAAATTTCACGTTGTCTAAAGATGAAGATCTGGGTTTGGCCTGAACGGTTGCAGACCATGCATCTGCTTGGCTACCCCGATATCTTCACAACCAGGACTTCCTTGACAAGAGTGCGAGCGGTTCCCCGTTACAGTTTTAGCATTAATACCTTAGAGGGCTTAAATGCTACCAAGCCGACTATAGGAATCATGCCATCCGGTCTTCCATGGGTATCAAAACCCTTTGAGGGAAAAAATAAGAAAGGATTTTCTCTATCAGTTGCTTCAAAAAACAGAAGGATACTAACAAGCAATGGGACTCGAGTTGACTTGAACATGAGGTCTGTTGAGAAGGTTCAGAATCACATTTTCTCAGTTCCCTATTCTGATCACTCCTGCTACCGTGAAATAAAAGATTTTGTTTGGTTAGTCAAGCCATATAATGTGAAAGGCATTGTGTCCATGTCATCCTGCTATGTTAATCCTGTTTACTATCTCAGCCACCTGTTTAGCTCAAACCGTGCATCTCAGTCCACCTGTCTGGATCCTGAAATTTGTGAGGAAGTTGAAATGAAAGGGAAGACAAAAAGAACAAATTTCACAGGTACAGGAAGAAAAAAGAGGACCACTGAAGCTAACTTTTTAGGGGTTCGGATTCGCAGGGTGTCCATTCTGAGGCAGATAAACCGTGGTGTAAAAATTGTGGAATGTGACAGTCCTGACTGA MEGGMISVDQWAKGSQAYFLTHLHSDHTRGLSSTWSNGPLFCSRTTAKLFPLKFPDFNFAFLRIVEIGSWHRLSLSSPSTGSPASIQFMPIDAFHCPGAVMFLFRGVFGHVLYTGDFRWEETGERSVKAKNMLIDALNGANVDVLYLDNTYCNPVYCFPIREVATQQVIEIIASHPEHDIVIGIDSLGKEDLLLEISRCLKMKIWVWPERLQTMHLLGYPDIFTTRTSLTRVRAVPRYSFSINTLEGLNATKPTIGIMPSGLPWVSKPFEGKNKKGFSLSVASKNRRILTSNGTRVDLNMRSVEKVQNHIFSVPYSDHSCYREIKDFVWLVKPYNVKGIVSMSSCYVNPVYYLSHLFSSNRASQSTCLDPEICEEVEMKGKTKRTNFTGTGRKKRTTEANFLGVRIRRVSILRQINRGVKIVECDSPD Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo11294.1 vs. NCBI nr
Match: gi|731355774|ref|XP_010689316.1| (PREDICTED: 5' exonuclease Apollo [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 712.2 bits (1837), Expect = 5.400e-202 Identity = 339/428 (79.21%), Postives = 382/428 (89.25%), Query Frame = 1
BLAST of Spo11294.1 vs. NCBI nr
Match: gi|225447705|ref|XP_002272846.1| (PREDICTED: 5' exonuclease Apollo [Vitis vinifera]) HSP 1 Score: 537.0 bits (1382), Expect = 3.100e-149 Identity = 271/438 (61.87%), Postives = 332/438 (75.80%), Query Frame = 1
BLAST of Spo11294.1 vs. NCBI nr
Match: gi|590690118|ref|XP_007043420.1| (DNA repair metallo-beta-lactamase family protein, putative isoform 1 [Theobroma cacao]) HSP 1 Score: 515.0 bits (1325), Expect = 1.300e-142 Identity = 258/433 (59.58%), Postives = 316/433 (72.98%), Query Frame = 1
BLAST of Spo11294.1 vs. NCBI nr
Match: gi|1009127992|ref|XP_015880987.1| (PREDICTED: 5' exonuclease Apollo [Ziziphus jujuba]) HSP 1 Score: 510.4 bits (1313), Expect = 3.100e-141 Identity = 254/436 (58.26%), Postives = 313/436 (71.79%), Query Frame = 1
BLAST of Spo11294.1 vs. NCBI nr
Match: gi|703096514|ref|XP_010095864.1| (hypothetical protein L484_022221 [Morus notabilis]) HSP 1 Score: 507.3 bits (1305), Expect = 2.600e-140 Identity = 257/437 (58.81%), Postives = 318/437 (72.77%), Query Frame = 1
BLAST of Spo11294.1 vs. UniProtKB/TrEMBL
Match: A0A0J8BLY2_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_9g206770 PE=4 SV=1) HSP 1 Score: 712.2 bits (1837), Expect = 3.700e-202 Identity = 339/428 (79.21%), Postives = 382/428 (89.25%), Query Frame = 1
BLAST of Spo11294.1 vs. UniProtKB/TrEMBL
Match: D7SQR6_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_12s0134g00440 PE=4 SV=1) HSP 1 Score: 537.0 bits (1382), Expect = 2.200e-149 Identity = 271/438 (61.87%), Postives = 332/438 (75.80%), Query Frame = 1
BLAST of Spo11294.1 vs. UniProtKB/TrEMBL
Match: A0A061E4J0_THECC (DNA repair metallo-beta-lactamase family protein, putative isoform 1 OS=Theobroma cacao GN=TCM_007852 PE=4 SV=1) HSP 1 Score: 515.0 bits (1325), Expect = 8.800e-143 Identity = 258/433 (59.58%), Postives = 316/433 (72.98%), Query Frame = 1
BLAST of Spo11294.1 vs. UniProtKB/TrEMBL
Match: W9RNI1_9ROSA (Uncharacterized protein OS=Morus notabilis GN=L484_022221 PE=4 SV=1) HSP 1 Score: 507.3 bits (1305), Expect = 1.800e-140 Identity = 257/437 (58.81%), Postives = 318/437 (72.77%), Query Frame = 1
BLAST of Spo11294.1 vs. UniProtKB/TrEMBL
Match: A0A061E3R5_THECC (DNA repair metallo-beta-lactamase family protein isoform 2 OS=Theobroma cacao GN=TCM_007852 PE=4 SV=1) HSP 1 Score: 506.1 bits (1302), Expect = 4.100e-140 Identity = 256/433 (59.12%), Postives = 314/433 (72.52%), Query Frame = 1
BLAST of Spo11294.1 vs. ExPASy Swiss-Prot
Match: DCR1B_DANRE (5' exonuclease Apollo OS=Danio rerio GN=dclre1b PE=2 SV=1) HSP 1 Score: 203.0 bits (515), Expect = 6.600e-51 Identity = 116/265 (43.77%), Postives = 157/265 (59.25%), Query Frame = 1
BLAST of Spo11294.1 vs. ExPASy Swiss-Prot
Match: DCR1B_CHICK (5' exonuclease Apollo OS=Gallus gallus GN=DCLRE1B PE=2 SV=1) HSP 1 Score: 196.4 bits (498), Expect = 6.200e-49 Identity = 113/267 (42.32%), Postives = 153/267 (57.30%), Query Frame = 1
BLAST of Spo11294.1 vs. ExPASy Swiss-Prot
Match: DCR1B_AILME (5' exonuclease Apollo OS=Ailuropoda melanoleuca GN=DCLRE1B PE=3 SV=1) HSP 1 Score: 184.1 bits (466), Expect = 3.200e-45 Identity = 107/263 (40.68%), Postives = 151/263 (57.41%), Query Frame = 1
BLAST of Spo11294.1 vs. ExPASy Swiss-Prot
Match: DCR1B_MOUSE (5' exonuclease Apollo OS=Mus musculus GN=Dclre1b PE=1 SV=2) HSP 1 Score: 182.6 bits (462), Expect = 9.300e-45 Identity = 119/346 (34.39%), Postives = 181/346 (52.31%), Query Frame = 1
BLAST of Spo11294.1 vs. ExPASy Swiss-Prot
Match: DCR1B_RAT (5' exonuclease Apollo OS=Rattus norvegicus GN=Dclre1b PE=1 SV=2) HSP 1 Score: 181.8 bits (460), Expect = 1.600e-44 Identity = 107/261 (41.00%), Postives = 150/261 (57.47%), Query Frame = 1
BLAST of Spo11294.1 vs. TAIR (Arabidopsis)
Match: AT1G27410.1 (DNA repair metallo-beta-lactamase family protein) HSP 1 Score: 468.4 bits (1204), Expect = 4.800e-132 Identity = 225/376 (59.84%), Postives = 279/376 (74.20%), Query Frame = 1
BLAST of Spo11294.1 vs. TAIR (Arabidopsis)
Match: AT2G45700.1 (sterile alpha motif (SAM) domain-containing protein) HSP 1 Score: 149.8 bits (377), Expect = 3.800e-36 Identity = 112/330 (33.94%), Postives = 168/330 (50.91%), Query Frame = 1
BLAST of Spo11294.1 vs. TAIR (Arabidopsis)
Match: AT3G26680.1 (DNA repair metallo-beta-lactamase family protein) HSP 1 Score: 139.0 bits (349), Expect = 6.600e-33 Identity = 104/330 (31.52%), Postives = 159/330 (48.18%), Query Frame = 1
BLAST of Spo11294.1 vs. TAIR (Arabidopsis)
Match: AT1G66730.1 (DNA LIGASE 6) HSP 1 Score: 124.0 bits (310), Expect = 2.200e-28 Identity = 105/334 (31.44%), Postives = 155/334 (46.41%), Query Frame = 1
BLAST of Spo11294.1 vs. TAIR (Arabidopsis)
Match: AT1G19025.1 (DNA repair metallo-beta-lactamase family protein) HSP 1 Score: 103.6 bits (257), Expect = 3.100e-22 Identity = 69/197 (35.03%), Postives = 104/197 (52.79%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo11294.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo11294.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo11294.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo11294.1 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
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