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首页> 外文期刊>Tree Genetics & Genomes >Linking phenotype, genotype and environment to unravel genetic components underlying cold hardiness in coastal Douglas-fir (Pseudotsuga menziesii var. menziesii)
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Linking phenotype, genotype and environment to unravel genetic components underlying cold hardiness in coastal Douglas-fir (Pseudotsuga menziesii var. menziesii)

机译:将表型,基因型和环境联系起来,揭示沿海道格拉斯冷杉(Pseudotsuga menziesii var。menziesii)抗寒性的遗传成分

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摘要

Global climate change may detrimentally affect future generations of numerous forest tree species, hampering their long-term sustainability if appropriate evolutionary responses remain lacking. To face these novel threats, conservation biologists are in need of a thorough understanding and identification of adaptive variation in key fitness traits. We here provide an elaborate synthesis of pre-existing and novel analyses of an association mapping, genecological and landscape genomic study integrating genotypic, environmental and phenotypic data to gain insights into the genetic basis of cold-hardiness adaptation in coastal Douglas-fir (Pseudotsuga menziesii var. menziesii). Data were collected across part of the natural range for a total of 643 individuals. A landscape genomic approach revealed 28 putative non-neutral genes, although a variance partitioning analysis indicated only moderate power of this gene set in explaining cold-hardiness-related phenotypic variation, and suggests many important genes await discovery. Integrating these results within the entire phenotypegenotype-environment spectrum allowed us to delineate the six most promising candidate genes under selection. By combining genomic, phenotypic and environmental data, this study attempts to gain insights in the genetic basis of key adaptations, which may ultimately aid forestry managers to establish resilient ecosystems in face of future climate change.
机译:如果仍然缺乏适当的进化对策,全球气候变化可能会对许多森林树种的后代产生不利影响,从而阻碍其长期可持续性。面对这些新颖的威胁,保护生物学家需要全面了解和识别关键适应性状的适应性变异。我们在此提供详细的综合信息,包括对基因图,环境和表型数据进行关联映射,遗传学和景观基因组研究的关联分析,遗传学研究,以深入了解沿海道格拉斯冷杉(Pseudotsuga menziesii)的耐寒性遗传基础。变种menziesii)。收集了部分自然范围内的数据,总计643个人。风景基因组方法揭示了28个假定的非中性基因,尽管方差分区分析表明该基因集在解释抗寒性相关表型变异中仅具有中等能力,并暗示了许多重要的基因有待发现。将这些结果整合到整个表型-基因型-环境光谱中,使我们能够描述出正在选择的六个最有希望的候选基因。通过结合基因组,表型和环境数据,本研究试图在关键适应措施的遗传基础上获得见识,从而最终可以帮助林业管理者面对未来的气候变化建立有弹性的生态系统。

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