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Genome-wide scan reveals that genetic variation for transcriptional plasticity in yeast is biased towards multi-copy and dispensable genes

机译:全基因组扫描显示,酵母转录可塑性的遗传变异倾向于多拷贝和可分配基因

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摘要

One of the most important aspects of the evolution of development and physiology is the interplay between gene expression and the environment, by which traits become altered in response to environmental triggers. This feature is known as phenotypic plasticity. When different genotypes show different levels of plasticity for a trait, their they show genotype-by-environment interaction, or GEL It is now clear that gene expression plays an important role in organismic-level phenotypic plasticity, but we know very little about whether gene expression itself is subject to genetic variation for phenotypic plasticity (GEI). Given that gene regulation is likely to have evolved to respond to environmental changes, it is of central importance to understand how environmental and genetic variation interact to produce variation in gene expression. Here we investigate genetic variation for phenotypic plasticity in the yeast transcriptome for the whole genome. Six strains of Saccharomyces cerevisiae were grown in four different environments representing a continuum of rich and poor natural conditions. Using DNA-microarray data and an ANOVA analysis with a stringent criterion of significance, we found significant genetic variation for transcriptional plasticity (GEI) among strains for similar to 5% of the genes in the genome. There are about twice as many genes that show genetic variation for phenotypic plasticity as show genetic variation in transcription level independent of the environment. We also found that genes with genetic variation for plasticity were less likely to be essential and were significantly biased towards genes that have paralogs. (c) 2005 Elsevier B.V. All rights reserved.
机译:发展和生理学发展的最重要方面之一是基因表达与环境之间的相互作用,通过这种相互作用,性状随着环境触发而改变。此功能称为表型可塑性。当不同的基因型对一个性状表现出不同程度的可塑性时,它们表现出不同的基因型-环境相互作用或GEL。现在很明显,基因表达在生物水平的表型可塑性中起着重要的作用,但我们对基因是否表达本身受表型可塑性(GEI)的遗传变异影响。鉴于基因调控可能已经发展为响应环境变化,因此了解环境和遗传变异如何相互作用以产生基因表达变异至关重要。在这里,我们调查了整个基因组的酵母转录组中表型可塑性的遗传变异。六种酿酒酵母菌株在代表连续的丰富和恶劣自然条件的四个不同环境中生长。使用DNA芯片数据和具有严格意义标准的ANOVA分析,我们发现菌株中转录可塑性(GEI)的显着遗传变异,接近基因组中5%的基因。表现出表型可塑性遗传变异的基因大约是不依赖于环境的转录水平遗传变异的两倍。我们还发现,具有可塑性遗传变异的基因不太可能必不可少,并且显着偏向具有旁系同源物的基因。 (c)2005 Elsevier B.V.保留所有权利。

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