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植物入侵性的性状均值及其在多元框架下的可塑性和整合的相对重要性。

The relative importance for plant invasiveness of trait means, and their plasticity and integration in a multivariate framework.

机构信息

Laboratorio Internacional de Cambio Global, LINC-Global, Museo Nacional de Ciencias Naturales-CSIC, Serrano 115 dpdo, E-28006 Madrid, Spain.

Departamento de Ecología, Universidad de Alcalá, Ctra, Madrid-Barcelona Km.33.6 E-28871, Alcalá de Henares, Madrid, Spain.

出版信息

New Phytol. 2012 Sep;195(4):912-922. doi: 10.1111/j.1469-8137.2012.04205.x. Epub 2012 Jun 18.

DOI:10.1111/j.1469-8137.2012.04205.x
PMID:22709277
Abstract

Functional traits, their plasticity and their integration in a phenotype have profound impacts on plant performance. We developed structural equation models (SEMs) to evaluate their relative contribution to promote invasiveness in plants along resource gradients. We compared 20 invasive-native phylogenetically and ecologically related pairs. SEMs included one morphological (root-to-shoot ratio (R/S)) and one physiological (photosynthesis nitrogen-use efficiency (PNUE)) trait, their plasticities in response to nutrient and light variation, and phenotypic integration among 31 traits. Additionally, these components were related to two fitness estimators, biomass and survival. The relative contributions of traits, plasticity and integration were similar in invasive and native species. Trait means were more important than plasticity and integration for fitness. Invasive species showed higher fitness than natives because: they had lower R/S and higher PNUE values across gradients; their higher PNUE plasticity positively influenced biomass and thus survival; and they offset more the cases where plasticity and integration had a negative direct effect on fitness. Our results suggest that invasiveness is promoted by higher values in the fitness hierarchy--trait means are more important than trait plasticity, and plasticity is similar to integration--rather than by a specific combination of the three components of the functional strategy.

摘要

功能性状及其可塑性和表型整合对植物的表现有深远的影响。我们开发了结构方程模型(SEMs),以评估它们在促进植物沿着资源梯度入侵方面的相对贡献。我们比较了 20 个入侵-本地的系统发育和生态相关的对。SEMs 包括一个形态学(根到茎的比例(R/S))和一个生理学(光合作用氮利用效率(PNUE))性状,它们对养分和光照变化的可塑性,以及 31 个性状之间的表型整合。此外,这些成分与两个适合度估计器(生物量和存活率)有关。性状、可塑性和整合的相对贡献在入侵种和本地种中是相似的。性状均值对适合度的影响大于可塑性和整合。入侵种的适合度高于本地种,因为:它们在整个梯度上具有较低的 R/S 和较高的 PNUE 值;它们较高的 PNUE 可塑性对生物量有积极影响,从而对存活率有积极影响;它们在可塑性和整合对适合度有直接负面影响的情况下,抵消了更多的情况。我们的研究结果表明,入侵性是由适应度层次中更高的值所促进的——性状均值比性状可塑性更重要,而可塑性与整合相似——而不是由功能策略的三个组成部分的特定组合所促进的。

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