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首页> 外文期刊>Genome research >Mapping epigenetic mutations in fission yeast using whole-genome next-generation sequencing.
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Mapping epigenetic mutations in fission yeast using whole-genome next-generation sequencing.

机译:使用下一代全基因组测序技术绘制裂变酵母中的表观遗传突变。

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Fission yeast is an important model for epigenetic studies due to the ease with which genetic mutants can be isolated. However, it can be difficult to complement epigenetic phenotypes with genomic libraries in order to identify the genes responsible. This is because epigenetic phenotypes are typically unstable, and can prohibit complementation if silencing cannot be reestablished. Here we have resequenced the fission yeast genome following mutagenesis to readily identify a novel mutant involved in heterochromatic silencing. Candidate genes were identified as functional single base changes linked to the mutation, which were then reconstituted in a wild-type strain to recapitulate the mutant phenotype. By this procedure we identified a weak allele of ubc4, which encodes an essential E2 ubiquitin ligase, as responsible for the swi*603 mutant phenotype. In combination with a large collection of mutants and suppressor plasmids, next-generation genomic resequencing promises to dramatically enhance the power of yeast genetics, permitting the isolation of subtle alleles of essential genes, alleles with quantitative effects, and enhancers and suppressors of heterochromatic silencing.
机译:由于易于分离遗传突变体,裂变酵母是表观遗传学研究的重要模型。然而,可能难以用基因组文库来补充表观遗传表型以鉴定负责的基因。这是因为表观遗传表型通常是不稳定的,并且如果无法重新建立沉默,则可以禁止互补。在这里,我们已经对诱变后的裂变酵母基因组进行了重新测序,以很容易地确定涉及异色沉默的新型突变体。候选基因被鉴定为与突变相关的功能性单碱基变化,然后在野生型菌株中重新构建,以概括突变表型。通过此程序,我们确定了ubc4的弱等位基因,该基因编码必需的E2泛素连接酶,负责swi * 603突变表型。结合大量的突变体和抑制质粒,下一代基因组重测序有望显着增强酵母遗传学的功能,从而可以分离必需基因的微妙等位基因,具有定量作用的等位基因以及异源沉默的增强子和抑制子。

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