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纵向趋势在气候驱动北美拟南芥开花时间梯度。

Longitudinal trends in climate drive flowering time clines in North American Arabidopsis thaliana.

出版信息

Ecol Evol. 2012 Jun;2(6):1162-80. doi: 10.1002/ece3.262.

Abstract

Introduced species frequently show geographic differentiation, and when differentiation mirrors the ancestral range, it is often taken as evidence of adaptive evolution. The mouse-ear cress (Arabidopsis thaliana) was introduced to North America from Eurasia 150-200 years ago, providing an opportunity to study parallel adaptation in a genetic model organism. Here, we test for clinal variation in flowering time using 199 North American (NA) accessions of A. thaliana, and evaluate the contributions of major flowering time genes FRI, FLC, and PHYC as well as potential ecological mechanisms underlying differentiation. We find evidence for substantial within population genetic variation in quantitative traits and flowering time, and putatively adaptive longitudinal differentiation, despite low levels of variation at FRI, FLC, and PHYC and genome-wide reductions in population structure relative to Eurasian (EA) samples. The observed longitudinal cline in flowering time in North America is parallel to an EA cline, robust to the effects of population structure, and associated with geographic variation in winter precipitation and temperature. We detected major effects of FRI on quantitative traits associated with reproductive fitness, although the haplotype associated with higher fitness remains rare in North America. Collectively, our results suggest the evolution of parallel flowering time clines through novel genetic mechanisms.

摘要

引入物种经常表现出地理分化,当分化反映出祖先范围时,通常被视为适应进化的证据。鼠耳芥(Arabidopsis thaliana)在 150-200 年前从欧亚大陆引入北美,为在遗传模式生物中研究平行适应提供了机会。在这里,我们使用 199 个北美(NA)拟南芥种群测试了开花时间的渐变变异,并评估了主要开花时间基因 FRI、FLC 和 PHYC 的贡献以及分化背后的潜在生态机制。我们发现,尽管 FRI、FLC 和 PHYC 的变异水平较低,并且与欧亚(EA)样本相比,种群结构的全基因组减少,但在数量性状和开花时间方面存在大量的群体内遗传变异,并且存在潜在的适应性纵向分化。在北美的观察到的开花时间纵向渐变与 EA 渐变平行,对种群结构的影响具有稳健性,并且与冬季降水和温度的地理变化有关。我们检测到 FRI 对与生殖适应性相关的数量性状的主要影响,尽管与更高适应性相关的单倍型在北美仍然很少见。总的来说,我们的结果表明,通过新的遗传机制进化出了平行的开花时间渐变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd9c/3402192/6f1df7b9a34c/ece30002-1162-f1.jpg

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