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-- Genomes --
Xenopus laevis J-strain 10.1 Genome
Xenopus laevis J-strain 9.2 Genome
Xenopus laevis J-strain 9.1 Genome
Xenopus laevis J-strain 7.1 Genome
Xenopus laevis J-strain 6.0 Genome
Xenopus laevis outbred 1.0 Genome
Xenopus tropicalis 10.0 Genome
Xenopus tropicalis 9.1 Genome
Xenopus tropicalis 9.0 Genome
Xenopus tropicalis 8.0 Genome
Xenopus tropicalis 7.1 Genome
Xenopus tropicalis 4.1 Genome
-- mRNA --
Xenopus laevis and tropicalis mRNA
Xenopus laevis and tropicalis mRNA plus EST Clusters
Xenopus laevis and tropicalis mRNA plus CDS
Xenopus laevis mRNA plus EST Clusters
Xenopus tropicalis mRNA plus EST Clusters
Xenopus laevis and tropicalis EST
-- Protein --
Xenopus laevis and tropicalis Protein
-->
Xenopus laevis Protein
Xenopus tropicalis protein
???blast.query???
>XM_031898543.1 PREDICTED: Xenopus tropicalis diacylglycerol kinase, iota (dgki), transcript variant X6, mRNA CACTCTGCCGCCGCTGCTCCTGCTGAGTTTAAATTTGGAAACAATCTGTTTAATTCATAACTTTCCCGTC CCTCCTCGGGGACCAGGCGGTGGGGCCCAATTTCACTGTAATGTAAACACGAGTCGGCCGAGGACACGTA AATACTGGTGCTCTGTCCCCTCTCTGTGCCCACTGATTGGCTGTGCAACGGGGAGAACTTTCTTTGCTGT CTCGCTGGGAACTTGTTACTCACTTGCTGTCTCGCTGGGAACTTGTTACTCACTTGCTGTCTCGCTGGGA ACTTGTTACTCACTTGCTGTCTCGCTGGGTACTGGATATCGGACGTTGAGTCAACGTCTTGCTTGGAATT TGTAGATTCAAAGGGATAGAAAAATATCCATTTGTGACGTACAGAGCCGTGGGATGGGTGCAAGCATGTT ATTCCTGAGCATGGTCTTGGACTTTGTAAAGGTTTCTTGAACCTGAACATCTACATCACCTTCAGCATCT TAGGAACTAAGCCACCACAGGACCTTCAGCATCTCAAGACCTCCACCACCCTAGGACATTCAGCATCTAA GGAACTATAACACCCCAAGACCAACATCATCATAGGACCTATACTCACATAGAACCTACACTCACACTTT TCGAGGATCTACCTAGACCATCCCAAGCCCAAAACCACCTTAGGACCTTCAGCATTAGAAGATGCACACA ATCCTAGGCCTACACATTAGCAAAGACCTAGTTACAATATCACAGAACTTACACTTTTTATAGAATCTAC ACCATCCTGAGACCAACATCATTATAGGATCTACACTCACACAGGAGCTATACCATTCCAAGACCTACTT ACACCACCACAGGTCCAAAACCATCTTAAGACCTCCAGCATTACTAGACTAGATTAGACAATATAATAGG ACCTACAACATAACAAGACTTATTTCATCGTAGGATATACACTTTAACCATACCTACATCAATCTCATAT TTACACTAGCACAGGATCCAAACCATCACATGGTCTTCATCATCTCAGGATCTACATCATCCCAGAACCT ACTACCTACATAATTCTCATACTTACACAGGAGCCAAACCATGACAGGATCTTCACCATCTCCATATCAG GACCATTCCAGAACATATTGACTCACAGCACTTGCAAGGCAAACACCATCCCAAAACCAGCACTATCATT GAACCTTCAACATCCTAAAACAGTGACCAACACAAGACCTCCAAGCACCTCAGGACCTACACTCTCACCA TCGATGCCATCATAGGATCAATACCAAGCAAAGATCTGCACCATCTCAGGATCTGCATCATCCCAGAACC TACTGCCTCACAGGACTTGCACCATCTCAGACTCTCTACCAATCTAAAGAAAACACCATCCCAAATCCAA CACCATCACTGAACCTACAACAACCAAAAACAGTCACCAACACGGACCTACAGCACCCCAGGACCTACAG CACCTCAGGACCTACAGCACCCCAGGACCTACAGCACTCCAGGACCTACAGCACTCCAGGACCTACAGCA CCTCAGGACCTACAGCACCCCAGGACCTACAGCACCCCAGGACCTACAGCACCTCAGGACCTACAGCACC TCAGGACCTATAGCACCTCAGGACCTACAGCACCCCAGGGCCTACAGCACCTCAGGACCTACAGCACCCT AGGACCTACAGCACCCCAGGACATACAGCACCTCAGGACCTACAGCACCCCAGGACCTACAGCACTCCAG GACCTACAGCACCTCAGGACCTACAGCACCCCAGGACCTACAGCACCTCAGGACCTACAGCACCCCAGGA CCTACAGCACCCCAGGACCTACAGCACTCCAGGACCTACAGCACCCCAGGACCTACAGCACTCCAGGACC TACAGCACTCCAGGACCTACAGCACCTCAGGACCTACAGCACCCCAGGACCTACAGCACCTCAGGATCTA TAGCACCTCAGGACCTACAGCACCCCAGGACCTACAGCATCTCAGGACCTATAGCACCTCAGGACCTACA GCACCCCAGGACCTACAGCACCTCAGGACCTATAGCACCTCAGGATCTACAGCACCCCAGGACCTACAGC ACCTCAGGACCTACAGTACCCAAGGACCTACAGCACCTCAGGACCTACATCACACCAGGACCTACAGTGT CTTGGCATCAATGCCATCAGAGGATCTATACCAACCCAAGGCCTACAACATTTTTTGATCTACATCTTTT CAATTTTACAAGGCAGGAACTATATGGCCACACAAGTCAGGAGATTTACTCAACCAGAAGGTCCATATAT TCCCTTGATGTCATATGTTCTACCCTGTCTATAACATGGAGGGCTTTTTCCATCGTCACTTCTGTAAGTC GGGTCCAGCTAATGCAGACAGGCGACTGAGCATAACCGCATCCAAAGTCAGGCGTAAGTCAGTAGTTGGA GCCCCGTCGCTGGAGTTATGGACCCAACGGAGGTCATCAGCTCAGATCTACCCAAAGCGAAAAAATGCAG AGAAGAGGAGAAAATCCAGCACGGCTCCAGTCAGGGTGAACCCTCGTTTTTCTGTCATTGGCACCAAGAG ACGCCCGGTAAAGTCTGCCCAGATCCGAATGCTGGAGGAGATACTGTGGGAGATATGGATGGAGCGTAAG TTTCAGCCCCAAATAGAGCCGCAGCCCAATGACCGGGGGGCAGGAGAAGGATCCGGTTCCTCATCTAGTG CTAGCAGCTCAGACAGTGAGTCTGGGAAAGCGATTTCTCGATCGGGGCTCCAGCATCTGGCTCCTGCGCA CTGCCCTGTCTCCAATGGGCCGGCCAAAGAACTGAGGATGACCCTGGACTGGACTGAGAATGCCATTAAT GGGGAGCACCTCTGGCAGGAGACAAATGTATCTGGAGACCTGTGTTACCTGGGGGAGGAGAACTGCCAAG TCAAATTCGCTAAGTCGGCAATTCGCAGGAAATGTGCAGCTTGCAAAATAGTGGTCCATACGGCCTGCAT GGAGCAGCTCGACAAGATTAATTTTAGATGCAAACCCACTTTCCGCGATGGAACCTCTCGGACCCCGAGG GAGGTCAGACATTTTTCTTGTTGTTCTAACCAGCAGAATCTGGTCAGACACCACTGGGTCCATCGGCGGA GGCAGGAGGGCAAATGCAAGCAGTGTGGGAAGGGGTTCCAGCAGAAGTTTTCATTCCATAGCAAGGAGAT TGTGGCAATTAGCTGTTCCTGGTGCAAACAGGCGTTCCACAACAAGGTCACTTGCTTCCTGCTCCATCAC ATAGAGGAGCCCTGCTCATTGGGGGCCCATGCAGCAGTCATAGTCCCTCCAAGCTGGATCATTAAGGTGA AGAAACCTCAGGTTAATACAAAAAATTCCACAAGAAGGAAGAAGAGGACTTCATTCAAAAGGAGAGCCAG CAAAAAAGGTTTGGAGGATATTAAAGGCAGGGCCTTTATAATAAAACCAATCTCTTCCCCACTCATGAAA CCATTGCTGGTCTTCGTGAACCCAAAAAGTGGAGGGAACCAGGGTACGAAAGTTCTCCAGATGTTTATGT GGTACTTGAATCCTCGGCAGGTCTTTGACCTCTCCCAGGAAGGACCGCGGGGAGCGCTGGAGATGTACAG AAAAGTGCCAAATCTTCGTATCCTTGCCTGCGGCGGTGACGGGACGGTGGGCTGGATCCTTTCTGTGTTA GATGAGCTTCAGCTGAACCCTCAGCCTCCTGTAGCAGTTTTGCCCCTCGGCACCGGGAATGACCTTGCTC GCACCCTTAACTGGGGAGGGGGTTACACCGACGAACCCGTGTCGAAGATCCTGTGCCACGTAGAAGACGG CACCAACGTCCAATTGGATCGCTGGAACCTGCACGTGGAGCGGAACCCCGACTTACTCCACGAGGAACTG GATGATGGGACACATAAGCTTCCACTGAACGTATTCAATAACTACTTCAGCCTGGGGTTCGACGCGCACG TCACTCTGGAATTCCACGAATCACGAGAAGCAAATCCCGAGAAATTCAACAGTCGATTTCGTAATAAGAT GTTCTATGCAGGGGCTGCTTTCTCTGATTTCTTGCAAAGAAGCTCCCGGGACTTATCAAAGCACGTGAAG GTTGTGTGCGACGGCACCGACCTCACCCCCAAAATACAAGAACTGAAATTCCAGTGTATTGTCTTCTTAA ATATCCCCAGGTACTGTGCTGGCACAATGCCCTGGGGTAATCCCAGTGACCACAGAGACTTTGAGCCCCA GCGGCACGATGATGGTTATATAGAGGTCATCGGCTTTACTATGGCTTCTCTGGCCGCCCTGCAGGTTGGA GGCCACGGAGAGAGGCTGCACCAGTGCAGGGAGGTGACATTGTTGACATACAAAGCCATCCCTATGCAGG TCGATGGAGAACCATGTCGGCTTGCACCTTCCCTCATCCGCATATCCCTGAGGAACCAGGCCAACATGGT GCAGAAGAGCAAGCGGAGGACTTCCATGCCCTTACTTAATGACCCCCATTCAGTGCCGGATCGCCTGCGT ATCAGAGTGAACAGGATCCGCCTGCAGGAATACGAGGGGCTCCATTATGAAAAGGACAAACTCCGAGACG CCTCTATTCCCCTGGGGATCATTGTGGTACGAGGAGACTGTGACCTAGAGACCTGCAGGATGTATATCGA CCGCCTCCAAGAGGATTTACATTCTGTGACACCCCACCGAGATCACTGCCAGGATCACGATAGCTCCTTC CCGCGGTTGCTCTCTGCTCAGCGACTCAACCCTCGTTGGTGCTTCTTAGATGCTACCTCCGCCGACCGGT TTTACCGCATTGACAGATCTCAGGAACATCTGCATTTTGTCACTGAGATTTCCCAAGATGAGATCTTCAT TCTTGACCCTGAAGCCGATGGGACCCCCCAAGGCAGCACTGGGATGGGAATGCCAGATCTTGTGGTGGAG CAGCCGTCTGGGCCATCGGAATGGTGGACCCCGACGTCCCGTAAGCGGATAGTGAGTGACAGCTGTGTGG CGGGAAGGATGTCTCTCCAATATGAAATCTCAGACAAAGTACACGATTTGTCCCCATGTAGCGCCCGCCT GTCACCGGTCTCTGTGGATGAACAAGCACTCACAGAAGCAGTTGCCGCGGGTGATCTTGCCAAGGTCACG GAGTGTTGCAAGAAGGGAATGAGTCTGCGCATCCCGGGGCCCGAGAGGGGCTCTCTGCTCCACCTGGCGG CACGGGCCGGGCACAGCGACATAGTGGCGTACATCCTACAGAATGGGCCCACAGATTTGCTGGACATGTC AGACAGAGCCACCGGAGAGACGGCGCTGCACAAAGCTGCTTCCCACGGCCACCGGCGGGTTTGCCAAATC CTAGTAGATGCCGGTGCCTGCGTGATAAAGAAAGACGCCAAGGGCAACACTCCTTTCGACAAAGCTCAGG AGGCAGGGGACTCGGAACTGGCATCGTACTTGGACACTTGTCAAGCCAAGCAACTTCTTTCCAACGAAGA CCTCGAGACCGCGGTCTGATGATGATGGCAAGCAGAGGAGGAGAAACTTCAGAGATGAGAGAGAGCCTCA ACCATCTGGAGAAGGTTGTCCTAGGAAGAGGAAACTGGGGAACAGAGGCATCCCTCCCCACATGCAAAAT AACAAGTGGAGGGTGTCCAACTTCTCAAGGGCTACCGAGTTGCCAGGGAAACCCCTCTCGATAGAGGCGG AAGTTGGGTTGGGAAAGGAAGGAATGGGGCTGTGCATTGAACCTTTCCTGTTTTCCAACCAGAAGCATGA TCCTGTCCAGTGTCTATCTCCTCGCCTCGGTCAAACCTCCCACAGCCCGGTCAGAAGGACGGACTCGTAG GCCTGCACTGTGTTAATAAGCCTCACTCCTGTTTGGTATCTGCAGCGCCGACTTATTAAACATTTATGAG ACTGGGTTCTAATCTCACAGTTGTGCGATTAAAACAATTCTTTTGAGTATTA
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Automatically set to False for sequences longer than 4500 bytes
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BLAST time is limited to 30 seconds