Nature, Volume 434Sir Norman Lockyer Macmillan Journals Limited, 2005 - Electronic journals |
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Page 506
... mutant phenotype or an epigenetic change that masked the mutant geno- type . To determine the genotype of the phenotypic revertants we designed allele - specific polymerase chain reaction ( PCR ) -based markers . These molecular markers ...
... mutant phenotype or an epigenetic change that masked the mutant geno- type . To determine the genotype of the phenotypic revertants we designed allele - specific polymerase chain reaction ( PCR ) -based markers . These molecular markers ...
Page 507
... mutation at this locus , we would expect to find additional silent sequence changes in the reverted HTH allele . Given the frequency with which the mutant nucleotide is observed to revert to wild - type and the 1,226 possible silent ...
... mutation at this locus , we would expect to find additional silent sequence changes in the reverted HTH allele . Given the frequency with which the mutant nucleotide is observed to revert to wild - type and the 1,226 possible silent ...
Page 892
... mutant IHCs , although the Ca2 + sensitivity of release appeared to be unchanged when con- sidering sustained exocytosis ( Supplementary Fig . 3b ) . Mutant IHCs showed robust sustained exocytosis ( Fig . 4 ) and endocytic membrane ...
... mutant IHCs , although the Ca2 + sensitivity of release appeared to be unchanged when con- sidering sustained exocytosis ( Supplementary Fig . 3b ) . Mutant IHCs showed robust sustained exocytosis ( Fig . 4 ) and endocytic membrane ...
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in pythons | 37 |
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