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植物表型可塑性改变了传粉者介导的选择。

Plant phenotypic plasticity changes pollinator-mediated selection.

机构信息

Department of Systematic and Evolutionary Botany, University of Zürich, Zürich, CH-8008, Switzerland.

出版信息

Evolution. 2022 Dec;76(12):2930-2944. doi: 10.1111/evo.14634. Epub 2022 Oct 31.

Abstract

Many organisms change their phenotype in response to the environment, a phenomenon called phenotypic plasticity. Although plasticity can dramatically change the phenotype of an organism, we hardly understand how this can affect biotic interactions and the resulting phenotypic selection. Here, we use fast cycling Brassica rapa plants in an experiment in the greenhouse to study the link between plasticity and selection. We detected strong plasticity in morphology, nectar, and floral scent in response to different soil types and aphid herbivory. We found positive selection on nectar and morphological traits in hand- and bumblebee-pollinated plants. Bumblebee-mediated selection on a principal component representing plant height, flower number, and flowering time (mPC3) differed depending on soil type and herbivory. For plants growing in richer soil, selection was stronger in the absence of herbivores, whereas for plants growing in poorer soil selection was stronger with herbivory. We showed that bumblebees visited tall plants with many flowers overproportionally in plants in poor soil with herbivory (i.e., when tall plants were rare), thus causing stronger positive selection on this trait combination. We suggest that with strong plasticity under most stressful conditions, pollinator-mediated selection may promote adaptation to local environmental factors given sufficient heritability of the traits under selection.

摘要

许多生物会根据环境改变表型,这种现象称为表型可塑性。尽管可塑性可以显著改变生物的表型,但我们几乎不了解这如何影响生物相互作用以及由此产生的表型选择。在这里,我们使用快速循环的芸薹属植物在温室实验中研究可塑性和选择之间的联系。我们发现,植物对不同土壤类型和蚜虫取食的形态、花蜜和花的气味表现出强烈的可塑性。在手和熊蜂授粉的植物中,我们发现花蜜和形态特征存在正向选择。熊蜂介导的对代表植物高度、花数和开花时间的主成分(mPC3)的选择取决于土壤类型和取食。对于在肥沃土壤中生长的植物,在没有取食者的情况下选择更强,而对于在贫瘠土壤中生长的植物,取食者的存在会增强选择。我们表明,在有取食者的贫瘠土壤中,熊蜂会不成比例地偏爱高大花朵多的植物(即,当高大植物稀少时),从而导致对这种性状组合的更强正向选择。我们认为,在大多数胁迫条件下具有较强的可塑性,在选择的性状具有足够的遗传力的情况下,传粉媒介介导的选择可能会促进对当地环境因素的适应。

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