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适应蛇纹石的一年生野花在物种形成连续体中物候隔离的平行进化。

Parallel evolution of phenological isolation across the speciation continuum in serpentine-adapted annual wildflowers.

作者信息

Sianta Shelley A, Kay Kathleen M

机构信息

Department of Ecology and Evolutionary Biology, University of California, 130 McAllister Way, Santa Cruz, CA 95060, USA.

出版信息

Proc Biol Sci. 2021 Apr 14;288(1948):20203076. doi: 10.1098/rspb.2020.3076.

Abstract

Understanding the relative importance of reproductive isolating mechanisms across the speciation continuum remains an outstanding challenge in evolutionary biology. Here, we examine a common isolating mechanism, reproductive phenology, between plant sister taxa at different stages of adaptive divergence to gain insight into its relative importance during speciation. We study 17 plant taxa that have independently adapted to inhospitable serpentine soils, and contrast each with a nonserpentine sister taxon to form pairs at either ecotypic or species-level divergence. We use greenhouse-based reciprocal transplants in field soils to quantify how often flowering time (FT) shifts accompany serpentine adaptation, when FT shifts evolve during speciation, and the genetic versus plastic basis of these shifts. We find that genetically based shifts in FT in serpentine-adapted taxa are pervasive regardless of the stage of divergence. Although plasticity increases FT shifts in five of the pairs, the degree of plasticity does not differ when comparing ecotypic versus species-level divergence. FT shifts generally led to significant, but incomplete, reproductive isolation that did not vary in strength by stage of divergence. Our work shows that adaptation to a novel habitat may predictably drive phenological isolation early in the speciation process.

摘要

了解生殖隔离机制在物种形成连续统中的相对重要性仍然是进化生物学中一个突出的挑战。在这里,我们研究了一种常见的隔离机制——生殖物候,它存在于处于适应性分化不同阶段的植物姐妹类群之间,以深入了解其在物种形成过程中的相对重要性。我们研究了17个独立适应恶劣蛇纹石土壤的植物类群,并将每个类群与其非蛇纹石姐妹类群进行对比,以形成生态型或物种水平分化的配对。我们在田间土壤中进行基于温室的相互移植实验,以量化开花时间(FT)的变化与蛇纹石适应的伴随频率、FT变化在物种形成过程中的演化时间,以及这些变化的遗传基础与可塑性基础。我们发现,无论分化阶段如何,适应蛇纹石的类群中基于遗传的FT变化都很普遍。尽管可塑性在五对类群中增加了FT的变化,但在比较生态型与物种水平分化时,可塑性程度并无差异。FT的变化通常会导致显著但不完全的生殖隔离,且生殖隔离强度不会因分化阶段而有所不同。我们的研究表明,对新栖息地的适应可能会在物种形成过程的早期可预测地驱动物候隔离。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2806/8059516/48c40adc1466/rspb20203076f01.jpg

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