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Future herbivory: the indirect effects of enriched CO_2 may rival its direct effects

机译:未来的食草动物:浓缩CO_2的间接作用可能与其直接作用相抗衡

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Variation in rates of herbivory may be driven by direct effects of the abiotic environment on grazers, as well as indirect effects mediated by their food. Disentangling these direct and indirect effects is of fundamental importance for ecological forecasts of changing climate on species interactions and their influence on biogenic habitat. Whilst elevated atmospheric CO_2 may have direct effects on grazers with calcareous structures via 'ocean acidification', it may also have indirect effects via changes caused to their food. In our study we initially tested, and confirmed, that enriched CO_2 altered per capita rates of grazing before assessing the relative importance of indirect and direct effects in driving this response. Our results eliminated the model of a direct effect of CO_2 enrichment on the grazers themselves and supported the model of an indirect effect driven by a change in the food (i.e. turf algae). We suggest that this indirect effect manifested as grazers responded to the increased nitrogen content (i.e. %N) of algal tissue that resulted under CO_2 enrichment. Understanding such indirect effects of modified environmental conditions provide important mechanistic links between climate conditions and the ecological processes they influence.
机译:非生物环境对放牧者的直接影响以及其食物介导的间接影响可能会导致食草率的变化。弄清这些直接和间接影响对于气候变化对物种相互作用及其对生物源生境的影响的生态预测至关重要。大气中CO_2的升高可能通过“海洋酸化”对钙质结构的放牧者产生直接影响,但也可能通过其食物的变化而产生间接影响。在我们的研究中,我们最初进行了测试并确认,在评估间接和直接影响推动这种反应的相对重要性之前,丰富的CO_2改变了人均放牧率。我们的研究结果消除了CO_2富集对放牧者本身产生直接影响的模型,并支持了由食物(草皮藻类)变化驱动的间接影响模型。我们认为这种间接作用表现为放牧者对藻类组织中的氮含量增加(即%N)作出了反应,这是由于CO_2富集导致的。了解改变的环境条件的这种间接影响提供了气候条件与其影响的生态过程之间的重要机械联系。

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