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温度对水生微生物生态系统种群动态和生态系统功能的直接和间接影响。

Direct and indirect effects of temperature on the population dynamics and ecosystem functioning of aquatic microbial ecosystems.

机构信息

School of Biological and Biomedical Sciences, Durham University, South Road, Durham DH1 3LE, UK.

出版信息

J Anim Ecol. 2010 Nov;79(6):1324-31. doi: 10.1111/j.1365-2656.2010.01741.x. Epub 2010 Aug 13.

Abstract
  1. While much is known about the direct effect that temperature can have on aquatic communities, less is known about its indirect effect via the temperature dependence of viscosity and temperature-dependent trophic interactions. 2. We manipulated the temperature (5-20 °C) and the viscosity (equivalent to 5-20 °C) of water in laboratory-based bacteria-protist communities. Communities contained food chains with one, two or three trophic levels. Responses measured were population dynamics (consumer carrying capacity and growth rate, average species population density, and the coefficient of variation of population density through time) and ecosystem function (decomposition). 3. Temperature, viscosity and food chain length produced significant responses in population dynamics. Temperature-dependent viscosity had a significant effect on the carrying capacity and growth rates of consumers, as well as the average density of the top predator. Overall, indirect effects of temperature via changes in viscosity were subtle in comparison to the indirect effect of temperature via trophic interactions. 4. Our results highlight the importance of direct and indirect effects of temperature, mediated through trophic interactions and physical changes in the environment, both for population dynamics and ecosystem processes. Future mechanistic modelling of effects of environmental change on species will benefit from distinguishing the different mechanisms of the overall effect of temperature.
摘要
  1. 虽然人们对温度对水生群落的直接影响了解较多,但对其通过粘度的温度依赖性和温度依赖性营养相互作用的间接影响了解较少。

  2. 我们在基于实验室的细菌-原生动物群落中操纵了水的温度(5-20°C)和粘度(相当于 5-20°C)。群落中包含了具有一个、两个或三个营养层次的食物链。测量的反应是种群动态(消费者承载能力和增长率、平均物种种群密度以及随时间变化的种群密度的变异系数)和生态系统功能(分解)。

  3. 温度、粘度和食物链长度对种群动态产生了显著的反应。温度依赖性粘度对消费者的承载能力和增长率以及顶级捕食者的平均密度有显著影响。总的来说,与通过营养相互作用的温度间接效应相比,温度通过粘度的间接效应很细微。

  4. 我们的结果强调了温度的直接和间接影响的重要性,这些影响是通过营养相互作用和环境中的物理变化介导的,对种群动态和生态系统过程都有影响。未来对环境变化对物种影响的机制模型研究将受益于区分温度整体影响的不同机制。

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