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Characterizations of how species mediate ecosystem properties require more comprehensive functional effect descriptors

机译:物种如何介导生态系统特性的表征需要更全面的功能效应描述子

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摘要

The importance of individual species in mediating ecosystem process and functioning is generally accepted, but categorical descriptors that summarize species-specific contributions to ecosystems tend to reference a limited number of biological traits and underestimate the importance of how organisms interact with their environment. Here, we show how three functionally contrasting sediment-dwelling marine invertebrates affect fluid and particle transport - important processes in mediating nutrient cycling - and use high-resolution reconstructions of burrow geometry to determine the extent and nature of biogenic modification. We find that individual functional effect descriptors fall short of being able to adequately characterize how species mediate the stocks and flows of important ecosystem properties and that, in contrary to common practice and understanding, they are not substitutable with one another because they emphasize different aspects of species activity and behavior. When information derived from these metrics is combined with knowledge of how species behave and modify their environment, however, detailed mechanistic information emerges that increases the likelihood that a species functional standing will be appropriately summarized. Our study provides evidence that more comprehensive functional effect descriptors are required if they are to be of value to those tasked with projecting how altered biodiversity will influence future ecosystems.
机译:各个物种在介导生态系统过程和功能中的重要性已被普遍接受,但是归纳了特定物种对生态系统贡献的分类描述符倾向于提及有限数量的生物学特性,并低估了生物如何与环境相互作用的重要性。在这里,我们展示了三种在功能上形成对比的居住在沉积物中的海洋无脊椎动物如何影响流体和颗粒的运输(介导养分循环的重要过程),并使用高分辨率的洞穴几何构造来确定生物改造的范围和性质。我们发现,单个的功能效应描述符不能充分描述物种如何介导重要生态系统特性的种群和流量,而且与通常的做法和理解相反,它们不能相互替代,因为它们强调了物种的不同方面。物种的活动和行为。但是,当将从这些度量得出的信息与有关物种如何行为和改变其环境的知识相结合时,就会出现详细的机械信息,从而增加了对物种功能地位进行适当总结的可能性。我们的研究提供的证据表明,要想对那些负责预测改变的生物多样性将如何影响未来生态系统的人产生价值,就需要更全面的功能效应描述子。

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