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生物相互作用、快速进化以及引入物种的建立。

Biotic interactions, rapid evolution, and the establishment of introduced species.

机构信息

School of Biological Sciences, Washington State University, P.O. Box 644236, Pullman, Washington 99164, USA.

出版信息

Am Nat. 2012 Feb;179(2):E28-36. doi: 10.1086/663678. Epub 2011 Dec 20.

Abstract

The biotic environment can pose a challenge to introduced species; however, it is not known how rapid evolution in introduced and resident species influences the probability that the introduced species will become established. Here, we analyze the establishment phase of invasion with eco-evolutionary models of introduced species involved in predator-prey, mutualistic, or competitive interactions with a resident species. We find that, depending on the strength of the biotic interaction, establishment is impossible, guaranteed, or, in a narrow range, determined by genetic variation. Over this narrow range, rapid evolution of the introduced species always favors establishment, whereas resident evolution may either inhibit or facilitate establishment, depending on the interaction type. Coevolution can also either increase or decrease the chance of establishment, depending on the initial genotype frequencies as well as the interaction type. Our results suggest that the conditions under which genetic variation influences establishment success are limited, but they highlight the importance of considering the resident community's evolutionary response to introduced species as a component of its invasibility.

摘要

生物环境可能对引入物种构成挑战;然而,目前尚不清楚引入物种和本地物种的快速进化如何影响引入物种成功定殖的概率。在这里,我们通过涉及与本地物种发生捕食者-猎物、互利共生或竞争相互作用的引入物种的生态进化模型来分析入侵的建立阶段。我们发现,根据生物相互作用的强度,建立可能是不可能的、有保证的,或者在一个狭窄的范围内由遗传变异决定。在这个狭窄的范围内,引入物种的快速进化总是有利于建立,而本地物种的进化可能会抑制或促进建立,这取决于相互作用的类型。共同进化也可以增加或减少建立的机会,这取决于初始基因型频率以及相互作用的类型。我们的研究结果表明,遗传变异影响建立成功率的条件是有限的,但它们强调了考虑本地物种对引入物种的进化反应作为其可入侵性的一个组成部分的重要性。

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