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利用比较方法研究植物防御和草食性:次生植物化合物有多重要。

On the study of plant defence and herbivory using comparative approaches: how important are secondary plant compounds.

机构信息

Department of Ecology and Evolutionary Biology, Cornell University, Corson Hall, Ithaca, NY, 14853, USA.

Center for Population Biology, University of California, Davis, CA, 95616, USA.

出版信息

Ecol Lett. 2015 Oct;18(10):985-91. doi: 10.1111/ele.12482. Epub 2015 Aug 6.

Abstract

Species comparisons are a cornerstone of biology and there is a long tradition of using the comparative framework to study the ecology and evolution of plant defensive traits. Early comparative studies led to the hypothesis that plant chemistry plays a central role in plant defence, and the evolution of plant secondary chemistry in response to insect herbivory remains a classic example of coevolution. However, recent comparative work has disagreed with this paradigm, reporting little connection between plant secondary chemicals and herbivory across distantly related plant taxa. One conclusion of this new work is that the importance of secondary chemistry in plant defence may have been generally overstated in earlier research. Here, we attempt to reconcile these contradicting viewpoints on the role of plant chemistry in defence by critically evaluating the use and interpretation of species correlations as a means to study defence-herbivory relationships. We conclude that the notion that plant primary metabolites (e.g. leaf nitrogen content) are the principal determinants of herbivory (or the target of natural selection by herbivores) is not likely to be correct. Despite the inference of recent community-wide studies of herbivory, strong evidence remains for a prime role of secondary compounds in plant defence against herbivores.

摘要

物种比较是生物学的基石,长期以来,人们一直利用比较框架来研究植物防御特性的生态学和进化。早期的比较研究导致了这样一种假设,即植物化学物质在植物防御中起着核心作用,植物次生化学物质对昆虫食草的反应进化仍然是协同进化的经典例子。然而,最近的比较研究与这一范式不符,报告称在亲缘关系较远的植物类群中,植物次生化学物质与食草之间几乎没有联系。这项新工作的一个结论是,在早期研究中,次生化学物质在植物防御中的重要性可能被普遍夸大了。在这里,我们通过批判性地评估物种相关性作为研究防御-食草关系的一种手段,试图调和关于植物化学物质在防御中的作用的这些相互矛盾的观点。我们的结论是,植物初级代谢物(例如叶片氮含量)是食草(或食草动物自然选择的目标)的主要决定因素的观点不太可能正确。尽管最近对食草性进行了全社区范围的研究,但仍有强有力的证据表明,次生化合物在植物抵御食草动物方面起着主要作用。

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