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Biodiversity and thermal ecological function: The influence of freshwater algal diversity on local thermal environments

机译:生物多样性和热生态功能:淡水藻类多样性对当地热环境的影响

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摘要

The influence of temperature on diversity and ecosystem functioning is well studied; the converse however, that is, how biodiversity influences temperature, much less so. We manipulated freshwater algal species diversity in microbial microcosms to uncover how diversity influenced primary production, which is well documented in biodiversity research. We then also explored how visible‐spectrum absorbance and the local thermal environment responded to biodiversity change. Variations in the local thermal environment, that is, in the temperature of the immediate surroundings of a community, are known to matter not only for the rate of ecosystem processes, but also for persistence of species assemblages and the very relationship between biodiversity and ecosystem functioning. In our microcosm experiment, we found a significant positive association between algal species richness and primary production, a negative association between primary production and visible‐spectrum absorbance, and a positive association between visible‐spectrum absorbance and the response of the local thermal environment (i.e., change in thermal infrared emittance over a unit time). These findings support an indirect effect of algal diversity on the local thermal environment pointing to a hitherto unrecognized biodiversity effect in which diversity has a predictable influence on local thermal environments.
机译:很好地研究了温度对多样性和生态系统功能的影响;相反,那就是生物多样性如何影响温度,更不用说了。我们在微生物缩影中操纵了淡水藻类的多样性,以发现多样性如何影响初级生产,这在生物多样性研究中已得到充分证明。然后,我们还探讨了可见光谱吸收率和当地热环境对生物多样性变化的反应。众所周知,当地热环境的变化,即社区周围环境的温度,不仅关系到生态系统进程的速度,而且关系到物种集合的持久性以及生物多样性与生态系统功能之间的关系。 。在我们的微观实验中,我们发现藻类物种丰富度与初级生产之间存在显着的正相关,初级生产与可见光谱之间存在负相关,而可见光谱与局部热环境的响应之间存在正相关(即,单位时间内热红外发射率的变化)。这些发现支持了藻类多样性对局部热环境的间接影响,指出了迄今为止尚未被认识到的生物多样性效应,其中多样性对局部热环境具有可预测的影响。

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