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The adaptive potential of subtropical rainbowfish in the face of climate change: heritability and heritable plasticity for the expression of candidate genes

机译:面对气候变化的亚热带彩虹鱼的适应潜力:候选基因表达的遗传力和遗传可塑性

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摘要

Whilst adaptation and phenotypic plasticity might buffer species against habitat degradation associated with global climate change, few studies making such claims also possess the necessary and sufficient data to support them. Doing so requires demonstration of heritable variation in traits affecting fitness under new environmental conditions. We address this issue using an emerging aquatic system to study adaptation to climate change, the crimson‐spotted rainbowfish (Melanotaenia duboulayi), a freshwater species from a region of eastern Australia projected to be affected by marked temperature increases. Captive born M. duboulayi of known pedigree were used to assess the long‐term effects of contemporary and 2070‐projected summer temperatures on the expression of genes previously identified in a climate change transcriptomics (RNA‐Seq) experiment. Nearly all genes responded to increasing temperature. Significant additive genetic variance explained a moderate proportion of transcriptional variation for all genes. Most genes also showed broad‐sense genetic variation in transcriptional plasticity. Additionally, molecular pathways of candidate genes co‐occur with genes inferred to be under climate‐mediated selection in wild M. duboulayi populations. Together, these results indicate the presence of existing variation in important physiological traits, and the potential for adaptive responses to a changing thermal environment.
机译:尽管适应性和表型可塑性可以缓冲物种抵抗与全球气候变化相关的栖息地退化,但很少有研究提出此类主张也拥有支持它们的必要和充分数据。这样做需要证明在新的环境条件下影响健身的性状的遗传变异。我们使用新兴的水生系统研究气候变化的适应性来解决这个问题,深红色斑点的彩虹鱼(Melanotaenia duboulayi)是一种来自澳大利亚东部地区的淡水物种,预计会受到明显温度升高的影响。已知系谱的俘虏出生的杜布罗伊(M.Duboulayi)被用来评估当代和2070年预计的夏季温度对先前在气候变化转录组学(RNA-Seq)实验中鉴定的基因表达的长期影响。几乎所有基因都对温度升高做出了响应。显着的加性遗传变异解释了所有基因的转录变异的中等比例。大多数基因在转录可塑性上也表现出广泛的遗传变异。此外,候选基因的分子途径与推断为野生杜布罗伊(M.duboulayi)种群在气候介导的选择下的基因同时发生。总之,这些结果表明存在重要生理特征的变异,以及对不断变化的热环境做出适应性反应的潜力。

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