SYNTHESIS: The role of adaptive trans‐generational plasticity in biological invasions of plants

生物 繁殖体 表型可塑性 生态学 栖息地 入侵物种 母体效应 引进物种 遗传多样性 后代 遗传学 社会学 人口学 怀孕 人口
作者
Andrew R. Dyer,Cynthia S. Brown,Erin K. Espeland,John McKay,Harald Meimberg,Kevin J. Rice
出处
期刊:Evolutionary Applications [Wiley]
卷期号:3 (2): 179-192 被引量:138
标识
DOI:10.1111/j.1752-4571.2010.00118.x
摘要

Abstract High‐impact biological invasions often involve establishment and spread in disturbed, high‐resource patches followed by establishment and spread in biotically or abiotically stressful areas. Evolutionary change may be required for the second phase of invasion (establishment and spread in stressful areas) to occur. When species have low genetic diversity and short selection history, within‐generation phenotypic plasticity is often cited as the mechanism through which spread across multiple habitat types can occur. We show that trans‐generational plasticity (TGP) can result in pre‐adapted progeny that exhibit traits associated with increased fitness both in high‐resource patches and in stressful conditions. In the invasive sedge, Cyperus esculentus , maternal plants growing in nutrient‐poor patches can place disproportional number of propagules into nutrient‐rich patches. Using the invasive annual grass, Aegilops triuncialis , we show that maternal response to soil conditions can confer greater stress tolerance in seedlings in the form of greater photosynthetic efficiency. We also show TGP for a phenological shift in a low resource environment that results in greater stress tolerance in progeny. These lines of evidence suggest that the maternal environment can have profound effects on offspring success and that TGP may play a significant role in some plant invasions.

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