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Transcriptional variation among populations of salmon: The genetic architecture of local adaptation

机译:鲑鱼种群间的转录变异:局部适应的遗传结构

摘要

Chinook salmon ( Oncorhynchus tshawytscha ) life history provides an excellent opportunity to study the molecular mechanisms of selective divergence. I analyzed gene transcription in Chinook salmon that were created in a replicated North Carolina II breeding design to estimate quantitative genetic parameters that contributed to among-population variation in gene expression. Following Fischeru27s fundamental theorem, transcriptional variation of many genes was due to additive effects. However, a surprising number of genes exhibited non-additive genetic and maternal effects on transcription, and these effects may explain the high potential for rapid population-level evolution in salmon. Indeed, populations differed substantially in gene transcription. Pervasive non-additive gene expression raises concerns for conservation strategies that result in intraspecific hybridization. I document extensive amounts of reciprocal hybrid disagreement in gene transcription, indicative of breakdown of gene expression regulation complexes that are likely co-adapted. Anomalous hybrid gene transcription warrants caution for conservation strategies that employ mixing natural stocks.
机译:奇努克鲑(Oncorhynchus tshawytscha)的生活史为研究选择性发散的分子机制提供了极好的机会。我分析了用复制的北卡罗来纳州II育种设计创建的奇努克鲑鱼的基因转录,以估算有助于基因表达的种群间变异的定量遗传参数。遵循菲舍尔的基本定理,许多基因的转录变异是由于累加效应引起的。然而,数量惊人的基因对转录表现出非加性的遗传和母体效应,这些效应可能解释了鲑鱼种群快速进化的巨大潜力。确实,种群在基因转录上有很大的不同。普遍的非加性基因表达引起了对导致种内杂交的保守策略的关注。我记录了基因转录中大量的相互杂交分歧,表明可能共同适应的基因表达调控复合物的分解。异常的杂合基因转录对于采用混合自然种群的保护策略应格外小心。

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    Ouellette Matthew J.;

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  • 年度 2013
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