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贻贝作为综合生态力学的模式系统。

Mussels as a model system for integrative ecomechanics.

机构信息

Department of Biology and Friday Harbor Laboratories, University of Washington, Friday Harbor, Washington 98250; email:

出版信息

Ann Rev Mar Sci. 2015;7:443-69. doi: 10.1146/annurev-marine-010213-135049. Epub 2014 Aug 25.

Abstract

Mussels form dense aggregations that dominate temperate rocky shores, and they are key aquaculture species worldwide. Coastal environments are dynamic across a broad range of spatial and temporal scales, and their changing abiotic conditions affect mussel populations in a variety of ways, including altering their investments in structures, physiological processes, growth, and reproduction. Here, we describe four categories of ecomechanical models (biochemical, mechanical, energetic, and population) that we have developed to describe specific aspects of mussel biology, ranging from byssal attachment to energetics, population growth, and fitness. This review highlights how recent advances in these mechanistic models now allow us to link them together across molecular, material, organismal, and population scales of organization. This integrated ecomechanical approach provides explicit and sometimes novel predictions about how natural and farmed mussel populations will fare in changing climatic conditions.

摘要

贻贝形成密集的聚集物,主导着温带多岩石的海岸,是世界范围内重要的水产养殖物种。沿海环境在广泛的空间和时间尺度上是动态的,其不断变化的非生物条件以多种方式影响贻贝种群,包括改变它们在结构、生理过程、生长和繁殖方面的投入。在这里,我们描述了我们开发的四个生态力学模型(生化、机械、能量和种群)类别,用于描述贻贝生物学的特定方面,从附着到能量学、种群生长和适应性。这篇综述强调了这些机械模型的最新进展如何使我们能够在分子、材料、生物和种群组织层次上把它们联系起来。这种综合的生态力学方法提供了关于自然和养殖贻贝种群在气候变化条件下如何生存的明确且有时是新颖的预测。

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