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从普通花园到候选基因:探索红云杉对气候的本地适应性。

From common gardens to candidate genes: exploring local adaptation to climate in red spruce.

机构信息

Department of Plant Biology, University of Vermont, Burlington, VT, 05405, USA.

Appalachian Laboratory, University of Maryland Center for Environmental Science, Frostburg, MD, 21532, USA.

出版信息

New Phytol. 2023 Mar;237(5):1590-1605. doi: 10.1111/nph.18465. Epub 2022 Oct 13.

Abstract

Local adaptation to climate is common in plant species and has been studied in a range of contexts, from improving crop yields to predicting population maladaptation to future conditions. The genomic era has brought new tools to study this process, which was historically explored through common garden experiments. In this study, we combine genomic methods and common gardens to investigate local adaptation in red spruce and identify environmental gradients and loci involved in climate adaptation. We first use climate transfer functions to estimate the impact of climate change on seedling performance in three common gardens. We then explore the use of multivariate gene-environment association methods to identify genes underlying climate adaptation, with particular attention to the implications of conducting genome scans with and without correction for neutral population structure. This integrative approach uncovered phenotypic evidence of local adaptation to climate and identified a set of putatively adaptive genes, some of which are involved in three main adaptive pathways found in other temperate and boreal coniferous species: drought tolerance, cold hardiness, and phenology. These putatively adaptive genes segregated into two 'modules' associated with different environmental gradients. This study nicely exemplifies the multivariate dimension of adaptation to climate in trees.

摘要

本地适应气候变化在植物物种中很常见,已在多种情况下进行了研究,包括提高作物产量和预测未来条件下的种群不适应。基因组时代为研究这一过程带来了新的工具,而这一过程在历史上是通过常见的园林实验来探索的。在这项研究中,我们结合基因组方法和常见的园林,研究了红云杉的本地适应,并确定了参与气候适应的环境梯度和基因座。我们首先使用气候转移函数来估计气候变化对三个常见园林中幼苗表现的影响。然后,我们探索了使用多变量基因-环境关联方法来识别与气候适应相关的基因,特别注意在没有和有中性种群结构校正的情况下进行基因组扫描的影响。这种综合方法揭示了对气候的本地适应的表型证据,并确定了一组假定的适应性基因,其中一些基因参与了在其他温带和北方针叶树物种中发现的三个主要的适应性途径:耐旱性、耐寒性和物候学。这些假定的适应性基因分为与不同环境梯度相关的两个“模块”。这项研究很好地说明了树木对气候的适应的多变量维度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af22/10092705/2a5ba2631220/NPH-237-1590-g002.jpg

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