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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_041577777.1 PREDICTED: Xenopus laevis cytoplasmic linker associated protein 1 S homeolog (clasp1.S), transcript variant X6, mRNA GCAGTGGCGGTTCTATTGAGCAGAAGAGCAGCCGGGGCGGGGAGTCGGAGCCAGACGGGAGGGACGGGAG CGATGCGCCGGGGCCTGGAGCGGCGGAACAGCCGGCAGCCTTAGTGGAAGAAGCGGCATCCCTAGTACCC ACACGGCACAGCTTTCCCCAGGGCGTTGTGCAGAACTATGTACCTCTGGACCGGTGACTTAGCGTTACAG TGCCTCTCGCCCTCCTTGCTGCACGTTTAAATTAGTCTTTTTATATCCGAGCAGCTGCTCTGCAGACACA TGCCAGATTGTTCTCATTCCCAGGATTGCATCTTTGAAGGCCAAACCCTCTTCAGCTTTTTGGCAACAAG AGAAGACCACGTTGGTGCATTCACTTGAAAGATTGGTGACCTTCTGCCCTCTACATTGCCTCTTTTCCTA GTTGGTGCTGGCCCACCCCCTAGCTATGGAACAGGGAATGGACTACTGGCTGGGGCAGATACAGCAGAAA GATGTGGGCAAGAGACTCCAGGTTGGACCAGACTTGATAGAATACCTGTTGGATAGACAGAAGTCTATAG ACCTGGAACAGGACCAGACTCTGCTTGATAGAATGGTCGATGGACTTGCCACTTCCTGGGTGAATTCTAG TAATTACAAGGTGGCCTTGTTGGGCATGGACATTCTGTCGGCACTGGTTACCAGACTGCAGGATCGATTC AGAACACAGATTGGCACAGTGCTGCCAAGTTTAATGGACCGATTAGGGGATGCCAAGGACTCTGTGCGAG ACCAAGACCAGAACCTCCTGATAAAGATAATGGAACAAGCCTCCAACCCACAGTACATGTGGGAACGCAT GTTTTCGGGATTCAAGCATAAGAATTTCCGTACGCGGGAAGGAGTCTGCCTCTGCCTTATTGCTACCCTC AATGTGTATGGAGCCAACAGTCTGACACTCAGTAAGATTGTACCACATATATGTAACCTGCTGGGGGATC CTAATAGCCAGGTCCGAGATGCTGCAATAAATTGCCTCGTAGAGATCTACAGACACGTAGGGGAACGTGT CCGAGCAGATCTAAGTAAGAAAGGGCTGCCACAATCACGACTGAATGTAATTTTCACCAAATTTGATGAG GTGCAAAAATCAGGAACCATGATCCTCTCCACAACAGATAAAAACTTTGATGATGAAGATTCTGTTGATG GCAACCGACCCTCATCGGCCAGTTCTTCCGCCTCTTCTAAAGCCCCTCAAACTGCCCGAAGAGGGGTAAG CCTAGGGACTGGCCGCAGGCCAGGGACTTCTAGTGCTGCACCCAAGACAGGAGGAACTGCCAAAGAAGGA GCGGGAGCCCTGGATGAGGAGGATTTTATCAGAGCGTTTGAAGATGCTCCCACTGTCCAGATCTATTCAA GCCGAGACCTAGAAGAGTCCTTGAACAAGATTCGAGAAATCCTCTCTGATGACAAGCATGACTGGGAGCA GAGGATCAGTGCTCTGAAGAAGATCCGATCTTTGCTTTTGGCGGGGGCAGCAGAATATGATAATTTCTTC CAGCAACTCCGCCTGCTCGATGGAGCATTTAAACTCTCTGCCAAGGACTTGCGCTCTCAGGTTGTACGGG AGGCCTGTATCACCCTGGGACACTTATCCTCAGTTCTGGGGAATAAATTTGACCATGGTGCAGAAGCAGT CATGCCAACAGTCTTCAATCTGGTCCCTAACAGTACCAAAATCATGGCCACCTCTGGAGTTGTAACCATC CGGCTAATCATACGTCACACACACGTCCCACGGTTGATCCCCATCATCACCAGTAACTGCACCTCCAAGT CTGTTGCCGTTAGAAGACGCTGCTATGAGTTTTTGGATTTGCTTCTTCAAGAATGGCAAACTCACTCACT CGAAAGGCATGTATCTGTGTTGGCGGAGACCATCAAAAAGGGGATTCATGATGCGGATTCCGAAGCGAGG ATCGTCGCAAGGAAGTGCTACTGGGGATTCCACGGTCATTTCAGTAAGGAGGCAGAGCAGCTGTTCCACG CATTGGAGTCTTCCTACCAGAAAGCCCTGCAGTCCCATCTGAAGAACTCTGACAGTATTGTCTCTTTGCC CCAGTCTGACCGTTCCTCCTCCAGTTCCCAGGAAAGCCTCAACCGTCCACTCTCTGCCAAAAGAAGCCCC ACGGGAAGCACTGTGTCTAGAGCTACTTCCAAATCCACCACTGGGTCCCTGCAGCGATCTCGTAGTGACA TCGATGTGAACGCAGCAGCCACTTCTAAAACGAAGGCAGCATCTGGAGCCTCCACTGCCCCATTCAGTTC TGTTGCCGCCCTGCCACCTGGATCCTATGCGTCACTGGGTCGTATTCGCACTAGAAGGCAGAGTTCCGGC AGCACCACCAGCACGGCCTCTACCCCAGCAGACACCCGTGGACGTAGTCGAGCCAAAGTTGTGTCACAGT CACAGCGATCCAGATCGGCCAATCCTGCCAGTGCCGGAAGCCGGTCCAGCTCACCAGGAAAACTCCTGGG AAGTAGCTATGGCGGGATAGCAACTGGCCCACAGAGGGTCCCCCAGATGCCCTCTGAGAAGAGAAGCAAG ATTCCCCGAAGCCAGGGGTGCAGCAGGGAGACCAGCCCAAGCAGGACTGTCTTAGCAAGGAGCAGCCGTA TCCCCCGACCCAGCATGAGTCAGGGGTGCAGCCGCGATACCAGCCGGGAAAGCAGCCGCGATACCAGTCC TGCCCGGGGCTTTGCTCCTCTGGATCGTTTTGGGATCAGCCAACCAGGAAGAATCCCCTCAGCAATGCGT GTGCTGAGTTCAAGCACAGATCTGGAGGCAGCTGTGGCAGATGCTCTGTTGCTGGGAGATTCCAGAAATA AGATGAAGCCAGTTCGGAGGCGTTATGAGCCATACGGCATGTACTCTGATGATGATGCCAACAGTGATGC ATCAAGCGCTTGCTCGGAGAGGTCCTATAGCTCTAAGAATGGCGGCATCCCACACTACCTGCGCCAGACG GAAGATGTGGCTGAGGTGCTGAATCACTGTGCCAGCTCCAACTGGTCTGAGAGAAAGGAAGGACTCGTTG GACTGCAGAACCTGCTCAAGAGTCAGAGGCTGCTTAGCCGGGTGGAACTGAAAAGGCTGTGCGAAATCTT CACCCGGATGTTTGCTGATCCTCACAGCAAGAGAGTTTTCAGCATGTTCCTGGAGACCCTTGTGGACTTT GTTATTATTCACAAAGACGACCTGCAGGACTGGCTCTTTATCCTCCTGACCCAGCTGCTGAAGAAAATGG GCGCTGACCTGCTGGGCTCTGTCCAAGCCAAGGTGCAGAAGGCATTGGATGTGACAAGGGATTCCTTCCC GTTTGACCAGCAGTTTAACATCCTCATGAGATTCATAGTGGATCAGACCCAGACTCCCAATCTCAAGGTG AAAGTTGCCATATTGAAGTATATTGAGTCCTTGGCCCGACAGATGGACCCAACAGACTTTGTCAACTCCA GTGAGACGCGTCTGGCTGTTTCCAGAATCATCACTTGGACAACTGAGCCAAAGAGTTCTGATGTCAGGAA GACCCTGATTAAGTGGGACGACTTACCTGCCAGGCCCAGTTCGGCACCCTCAGGGCTTGCAGATGGGAGC CTGGAAGAGAAGTGTAAACAGGCGGCACAGGTTGTCTTAATCTCTCTGTTTGAGCTGAACACCCCAGAGT TCACCATGTTACTGGGGGCTCTACCCAAAACCTTCCAGGATGGGGCCACAAAACTCCTGCACAACCACCT CAAGAACTCAAGCAACAGTAGCATGGGATCCCCAAGCAACACCATTGGCAGAACTCCTTCCAGACACTCC AGCAGCCGAGCCAGTCCACTAACATCGCCCACCAACTGTTCCCATGGCGGCCTCTCTCCCAGCATGCTGG ATTATGACACTGAAAACCTGAACTCTGATGAAATCTATAGCTCCCTCCGAGGGGTGACCGAGGCCATCGA GAAGTTCAGCTTCCGCAGCCAAGTAGATCTCAATGAGCCTGTGAGACGGGACGGCAAAAAGGAAAGTGAA ATGGGGTCCTGCGATGCTGGAATGGCTTCTCCAGCCAGTGATCTACGAGGGGGCACAGACATGGTGGAAG GAGGTAGAATGGCGCTTGATAACAAGACTTCCCTGCTGAACACTCAGCCGCCTCGGGCATTCACAGGACC CCGTGGGAGGGAATACAACCCTTACGCCTATTCCGACTCCATTAACAGCTACGATAAGACTGCACTAAAG GAAGCTGTGTTTGATGATGACATGGATCAGCTGCGTGACGTACCCATTGACCATTCAGACTTGGTGGCCG ACCTTCTCAAAGAGCTGTCCAATCACAACGAGCGGGTGGAGGAGAGGAAAGGTGCCCTTTGTGAGCTGCT GAAGATCACGAGAGAAGACAACTTGGCCGTTTGGGAGGAACATTTCAAGACCATTCTACTCCTCCTGTTG GAAACACTGGGTGATAAAGATCACGCAATTCGCGCCTTGGCATTGAGGGTACTGAGAGAAATCCTGCGCA ACCAACCGGCCCGGTTTAAGAATTATGCTGAGCTGACCATAATGAAGACACTGGAAGCCCATAAGGACTC TCATAAAGAGGTAGTGAGAGCTGCAGAAGAAGCAGCATCAACTCTGGCCGGGTCTATCCACCCTGAGCAG TGCATTAAGGTTCTGTGCCCCATCATCCAGACAGCCGACTACCCCATAAACCTCGCTGCCATTAAAATGC AAACAAAAGTCATTGAGAGGATTTCCAAGGAGTCTCTGCACCAGATCCTCCCTGATATCATTCCAGGCTT GTTACAGGGCTACGATAATACAGAGAGCAGCGTCCGCAAGGCAAGTGTCTTCTGTCTGGTAGCCGTCTAC TCTGTGATTGGAGAAGAGCTGAAACCATACCTTGCGCAATTGACTGGCAGTAAGATGAAGCTGCTGAACC TGTATATAAAGAGAGCACAGACAACAAACAGTAACAGCAGCTCCTCATCGGACGTCTCCACACACAGTTA GAGGATGTGCTGACACCAGGATTGCTTTTCAAGATGGGTGGAGAGGAGGAAGCGCCTGCACCTCCCGTGC ACACTGGTTTCGCTCATCGGTCTGCCATCGCATACCTTCAACACTAAAGAAAATTCACACCTTTAACGCT GGAGAGGCCATAGTGATCGTTGGTGCCCAGGGTTGAACTGCCTCAGTCTTGGATCTTCTGATTAGGGGCC CAGCAAGCTTGGGGTAACTCCATGCTCAGCAGTGCCTCAACCTCCCTTCTCCACAGCTCCGCCTCCTCAT ATCTCATGCAATCAGTATTTCATTTTAAACATTTGGATTTTTTTTTCTTTGGAGGGGGGAGGGGGGATTG AATATAAAAGACGGCACGGATTTTGCCTTGGCCCCTGTAAGGTGATGATGAAAAGTAGATAAAAGTGGCA TGGCGACCCACTGGTGCTATGATTGGCATCACAGGCAGCTTACGTTGTGCACGCTGCATCCATTTGTTTT GCGGTTTTATGTTGTAAATATTAAGAAATTATTTTACAGCTCCTGGCAACCCCATTGGATTTCTTTTAGG CTCAGATTATTCAGTATTTTTTCTGTTGCCAATCAAATCACTCCGTGTGTTTCTGATTGGTTTTTCTGTT CCCAGTGGAACGATTCACAAATGGACCCAATGTTGGGGGTTGGCAGTACTGTGAAGTGGGTTATGGTTAA TTTTCCTCTGCCACAACATGGCACCACGTTTGCGCCACCATTTTTAAATTCTGTAAATGTATTTATTTGG CATTGTTGCTTTTAACCTTTCCCAGTTACCTGAACTCTCCTGCGCCTCCCTGCTGGGTACTGTGGCCACT ACTTCTGCCCTCTCACTCACCCCCCATTATCTCCGCTATAGCCCCCCCAGGAAACAAGAATTATGAATAA ACCCTTGTCATGGCTTGTGCAGTCTCTGTGCCAGGAGCGGAGAGGAGCATACTGGCATCACCAACCCACA GGGAATTTTGCAGCCAATAAATAAATATGATATGAATATACTTGTTCTCTGGGCAAATATACCGTCTGCT GTCTTTAATGAATCCATTCCCAGGAGCCCCATGTACTCCTCTATGCACTGTTTCAGCCTGTCTAGTCCCT ATTGGTTAATAGCATGAAGTAAAATCCTTTAGGAATGAAATGGCAGAATTTTATATGATTTTATTAGTGC TACGAAGCAAACTCAACCGTCGCTGAGCAGATCGGCAGCCACTTACCCTGACTGGCCCATTCTGACTTCT AGAAACCAGTGTTGGACTTATGAACATGTTTATTACTTCAACATTCACCACTGAGCAGATTATCCAGTGT CACAGAAAAACTGCCCCCCATCCCAGTATTCCAGCAGTCATTCTGCAGGTCAAGAAGCAATTACCCTGTC CCCTATATTATAAAGGTAGGATCAGCCCCCCACCCAGCTGCATACGCCTCTGTTACATATGGATTTCCTA GCACTGATTCCGTAATTGTCTCTACCAACAGGAGAGGAACCAATAGTTTACCCCTAAGAGAGAAGTCCTT ATTGAAACCCCTTTGCAGGCCCCCCCCCCCCAAAAAAAAAAAGAAGAGCGTGGCACCGGCATCCCTCCAG CTCATAGGAGCTCAAGTGTTTTGGGTTAGAGTCTCTGCAACGGGCAACCTGCCATATCCACTCTCCTCCT CATAGTGGCTTACCAGTGTCTTAATAGTGATTGGTGTTCAGTAAGCCACGCCTAGTTCCTGAAGCACTCA GCAGTCTCGCTGGTCTCTATGACCTAATGAACAAACTGATGGAGTAGGACAGACACTTGTTACCTAAGAG AAGTTTGTTTCTGCTGATGGAAATAAATAAATTATACATAAACAGAAAATAACTTCTTTGTGGTGCCCTC CATGCTTCCTGCCTGTAGGCACTCCACATCCCTCTCATTTAAAGTACCGTAGTTCCTACTATAGTCATGA GGATCTCTCGGCTATATGTGTATTGGTTGCCTAGGGTCAGGGTAAGAGCCTTCTTTTTATTGGCTACTAA CAACTGATTGACAGACATGTTAAGTTGCAGCCTCATTCCTGCGTCCCCTTCCATTGTTTTGTCATGACTG GCCAATGGGGAGCCTGCAATCTTTAAAAGCCAAGATGGGTTAGACTTGTAAAAAAAAGGGTCAATGTGCA GACATTTTTTTTATCACCCCTCCCCCATGTCTTCATTTTGCTTTTTTCATGCTTCATATCTTGCTGTATT TATATCCTGATTGACTTTTCCGTGTATCATGGCAATTGTACAGACTTTCCTTTCAGTTACTTTTGTTGCG TTAACCTGTATGTGATAGAATTTGCTAAAAAAGAAAATTAACTGAAAAATGAGGGAAAAAAAACCGACCC TGAGTTTTGCTTTAGAATAAATTAAATTTATGTTTAA
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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