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寄生虫体内丰度、生物量和能量通量的代谢和体型比例框架。

A metabolic and body-size scaling framework for parasite within-host abundance, biomass, and energy flux.

机构信息

Marine Science Institute and the Department of Ecology, Evolution, and Marine Biology, University of California, Santa Barbara, CA 93106, USA.

出版信息

Am Nat. 2013 Aug;182(2):234-48. doi: 10.1086/670820. Epub 2013 Jun 21.

Abstract

Energetics may provide a useful currency for studying the ecology of parasite assemblages within individual hosts. Parasite assemblages may also provide powerful models to study general principles of ecological energetics. Yet there has been little ecological research on parasite-host energetics, probably due to methodological difficulties. However, the scaling relationships of individual metabolic rate with body or cell size and temperature may permit us to tackle the energetics of parasite assemblages in hosts. This article offers the foundations and initial testing of a metabolic theory of ecology (MTE) framework for parasites in hosts. I first provide equations to estimate energetic flux through observed parasite assemblages. I then develop metabolic scaling theory for parasite abundance, energetics, and biomass in individual hosts. In contrast to previous efforts, the theory factors in both host and parasite metabolic scaling, how parasites use host space, and whether energy or space dictates carrying capacity. Empirical tests indicate that host energetic flux can set parasite carrying capacity, which decreases as predicted considering the scaling of host and parasite metabolic rates. The theory and results also highlight that the phenomenon of "energetic equivalence" is not an assumption of MTE but a possible outcome contingent on how species partition resources. Hence, applying MTE to parasites can lend mechanistic, quantitative, predictive insight into the nature of parasitism and can inform general ecological theory.

摘要

能量学可以为研究宿主个体中的寄生虫组合的生态学提供有用的货币。寄生虫组合也可以为研究生态能量学的一般原则提供有力的模型。然而,由于方法学上的困难,对寄生虫 - 宿主能量学的生态研究很少。然而,个体代谢率与身体或细胞大小和温度的比例关系可能使我们能够解决宿主中寄生虫组合的能量学问题。本文为宿主寄生虫的生态代谢理论(MTE)框架提供了基础和初步测试。我首先提供了通过观察到的寄生虫组合来估计能量通量的方程。然后,我为个体宿主中的寄生虫丰度、能量学和生物量开发了代谢比例理论。与以前的努力不同,该理论考虑了宿主和寄生虫的代谢比例、寄生虫如何利用宿主空间以及能量还是空间决定承载能力。实证检验表明,宿主的能量通量可以设定寄生虫的承载能力,随着宿主和寄生虫代谢率比例的预测而降低。该理论和结果还强调,“能量等效”现象不是 MTE 的假设,而是取决于物种如何划分资源的可能结果。因此,将 MTE 应用于寄生虫可以为寄生的性质提供机械、定量和预测性的见解,并为一般生态理论提供信息。

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