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等位基因变异使拟南芥适应小区域环境差异。

Allelic variants confer Arabidopsis adaptation to small regional environmental differences.

机构信息

Bioinformatics Group, Wageningen University and Research, Droevendaalsesteeg 1, Wageningen, 6708 PB, The Netherlands.

Laboratory of Genetics, Wageningen University and Research, Droevendaalsesteeg 1, Wageningen, 6708 PB, The Netherlands.

出版信息

Plant J. 2024 Nov;120(4):1662-1681. doi: 10.1111/tpj.17067. Epub 2024 Oct 14.

Abstract

Natural populations of Arabidopsis thaliana provide powerful systems to study the adaptation of wild plant species. Previous research has predominantly focused on global populations or accessions collected from regions with diverse climates. However, little is known about the genetics underlying adaptation in regions with mild environmental clines. We have examined a diversity panel consisting of 192 A. thaliana accessions collected from the Netherlands, a region with limited climatic variation. Despite the relatively uniform climate, we identified evidence of local adaptation within this population. Notably, semidwarf accessions, due to mutation of the GIBBERELLIC ACID REQUIRING 5 (GA5) gene, occur at a relatively high frequency near the coast and these displayed enhanced tolerance to high wind velocities. Additionally, we evaluated the performance of the population under iron deficiency conditions and found that allelic variation in the FE SUPEROXIDE DISMUTASE 3 (FSD3) gene affects tolerance to low iron levels. Moreover, we explored patterns of local adaptation to environmental clines in temperature and precipitation, observing that allelic variation at LA RELATED PROTEIN 1C (LARP1c) likely affects drought tolerance. Not only is the genetic variation observed in a diversity panel of A. thaliana collected in a region with mild environmental clines comparable to that in collections sampled over larger geographic ranges but it is also sufficiently rich to elucidate the genetic and environmental factors underlying natural plant adaptation.

摘要

拟南芥自然种群为研究野生植物物种的适应提供了强大的系统。先前的研究主要集中在全球种群或从气候多样的地区收集的材料上。然而,对于在环境梯度变化较小的地区适应的遗传基础知之甚少。我们研究了一个由 192 个来自荷兰的拟南芥材料组成的多样性群体,荷兰是一个气候变化有限的地区。尽管气候相对均匀,但我们在该群体中发现了适应的证据。值得注意的是,由于赤霉素需要 5 号(GA5)基因突变,半矮化材料在沿海地区相对高频出现,并且对大风的耐受性增强。此外,我们评估了该群体在缺铁条件下的表现,发现铁超氧化物歧化酶 3 号(FSD3)基因的等位基因变异影响对低铁水平的耐受。此外,我们探索了温度和降水环境梯度的局部适应模式,观察到 LA 相关蛋白 1c(LARP1c)的等位基因变异可能影响耐旱性。不仅在环境梯度变化较小的地区收集的拟南芥多样性群体中观察到的遗传变异与在更大地理范围内采样的收集物相当,而且遗传变异也足够丰富,可以阐明自然植物适应的遗传和环境因素。

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