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Reciprocal transplants support a plasticity-first scenario during colonisation of a large hyposaline basin by a marine macro alga

机译:在大型次盐水盆地被海洋大型藻类定殖期间相互移植支持可塑性优先的方案

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摘要

BackgroundEstablishing populations in ecologically marginal habitats may require substantial phenotypic changes that come about through phenotypic plasticity, local adaptation, or both. West-Eberhard’s “plasticity-first” model suggests that plasticity allows for rapid colonisation of a new environment, followed by directional selection that develops local adaptation. Two predictions from this model are that (i) individuals of the original population have high enough plasticity to survive and reproduce in the marginal environment, and (ii) individuals of the marginal population show evidence of local adaptation. Individuals of the macroalga Fucus vesiculosus from the North Sea colonised the hyposaline (≥2–3‰) Baltic Sea less than 8000 years ago. The colonisation involved a switch from fully sexual to facultative asexual recruitment with release of adventitious branches that grow rhizoids and attach to the substratum. To test the predictions from the plasticity-first model we reciprocally transplanted F. vesiculosus from the original population (ambient salinity 24‰) and from the marginal population inside the Baltic Sea (ambient salinity 4‰). We also transplanted individuals of the Baltic endemic sister species F. radicans from 4 to 24‰. We assessed the degree of plasticity and local adaptation in growth and reproductive traits after 6 months by comparing the performance of individuals in 4 and 24‰.
机译:背景技术在生态边缘生境中建立种群可能需要大量的表型变化,这些变化是通过表型可塑性,局部适应性或两者兼而有之的。西埃伯哈德(West-Eberhard)的“可塑性优先”模型表明,可塑性允许对新环境进行快速殖民化,然后进行定向选择以发展局部适应性。此模型的两个预测是:(i)原始种群的个体具有足够高的可塑性,可以在边缘环境中生存和繁殖;(ii)边缘种群的个体显示出局部适应的证据。来自北海的大型藻类Fucus vesiculosus个体在不到8000年以前就定居在波罗的海的次盐水(≥2-3‰)。殖民化涉及从完全性招募到兼性无性招募的转变,并释放不定形的分支,该分支生长出根状茎并附着在基质上。为了检验可塑性优先模型的预测,我们分别从原始种群(环境盐度24‰)和波罗的海内部边缘种群(环境盐度4‰)中移植了小花镰刀菌。我们还从4到24‰移植了波罗的海地方性姐妹种F. radicans的个体。通过比较4和24‰个体的表现,我们评估了6个月后生长和生殖性状的可塑性和局部适应性程度。

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