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入侵生态系统工程师选择与其相关的本土物种的不同表型。

Invasive ecosystem engineer selects for different phenotypes of an associated native species.

机构信息

National Centre for Marine Conservation and Resource Sustainability, Australian Maritime College, University of Tasmania, P.O. Box 986, Launceston 7250, Australia.

出版信息

Ecology. 2012 Jun;93(6):1262-8. doi: 10.1890/11-1740.1.

Abstract

Invasive habitat-forming ecosystem engineers modify the abiotic environment and thus represent a major perturbation to many ecosystems. Because native species often persist in these invaded habitats but have no shared history with the ecosystem engineer, the engineer may impose novel selective pressure on native species. In this study, we used a phenotypic selection framework to determine whether an invasive habitat-forming ecosystem engineer (the seaweed Caulerpa taxifolia) selects for different phenotypes of a common co-occurring native species (the bivalve Anadara trapezia). Compared to unvegetated habitat, Caulerpa habitat has lower water flow, lower dissolved oxygen, and sediments are more silty and anoxic. We determined the performance consequences of variation in key functional traits that may be affected by these abiotic changes (shell morphology, gill mass, and palp mass) for Anadara transplanted into Caulerpa and unvegetated habitat. Both linear and nonlinear performance gradients in Anadara differed between habitats, and these gradients were stronger in Caulerpa compared to unvegetated sediment. Moreover, in Caulerpa alternate phenotypes performed well, and these phenotypes were different from the dominant phenotype in unvegetated sediment. By demonstrating that phenotype-performance gradients differ between habitats, we have highlighted a role for Caulerpa as an agent of selection on native species.

摘要

入侵性的生境形成生态工程师会改变非生物环境,因此会对许多生态系统造成重大干扰。由于本地物种通常在这些入侵的栖息地中生存,但与生态工程师没有共同的历史,工程师可能会对本地物种施加新的选择压力。在这项研究中,我们使用了一种表型选择框架来确定一种入侵性的生境形成生态工程师(海藻 Caulerpa taxifolia)是否会选择共同存在的本地物种(双壳类动物 Anadara trapezia)的不同表型。与无植被栖息地相比,Caulerpa 栖息地的水流较低,溶解氧较低,沉积物更泥泞和缺氧。我们确定了可能受到这些非生物变化影响的关键功能特征(贝壳形态、鳃质量和触须质量)的变化对移植到 Caulerpa 和无植被栖息地的 Anadara 的表现结果。Anadara 在栖息地之间的线性和非线性表现梯度不同,并且在 Caulerpa 中比在无植被沉积物中更强。此外,在 Caulerpa 中,替代表型表现良好,并且这些表型与无植被沉积物中的主导表型不同。通过证明表型表现梯度在栖息地之间存在差异,我们强调了 Caulerpa 作为对本地物种选择的一种手段。

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