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Integrating methods that investigate how complementarity influences ecosystem functioning

机译:研究互补性如何影响生态系统功能的整合方法

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Separating the mechanisms that influence ecosystem functioning has been a goal of recent high profile experiments. Integrating the various experimental and analytical methods that attempt this goal across terrestrial and aquatic ecosystems, as well as careful definition of 'complementarity', produces novel insights and valuable lessons about new directions for research. (1) Experimental designs differ in temporal scale and whether standing stock or another ecosystem process was the response variable. (2) Mathematically identical variables in different designs have contrasting ecological interpretations. For example, different sets of ecological processes can contribute to different variables in different experimental designs. (3) The frequency of transgressive overyielding of standing stock (e.g. total above ground biomass) in polycultures implies little about the prevalence of transgressive overyielding in other ecosystem processes. (4) Measuring the contribution to ecosystem functioning of individual species, rather than just total ecosystem functioning of a polyculture, is not essential for estimating effects of complementarity. (5) Further research will profit from distinguishing standing stock from all other ecosystem functions. (6) None of the analytic methods can distinguish the effects of individual processes or mechanisms such as resource use differentiation, facilitation, or allelopathy, for which additional experimental treatments are required.
机译:分离影响生态系统功能的机制已成为近期引人注目的实验的目标。整合试图在陆地和水生生态系统中实现这一目标的各种实验和分析方法,以及对“互补性”的仔细定义,就新的研究方向产生了新颖的见解和宝贵的经验教训。 (1)实验设计在时间尺度上有所不同,无论是种群还是其他生态系统过程都是响应变量。 (2)在不同设计中,数学上相同的变量具有相反的生态学解释。例如,不同的生态过程集可以在不同的实验设计中贡献不同的变量。 (3)在混养中,过度繁殖站立种群(例如地面生物量总量)的频率并不意味着在其他生态系统过程中过度繁殖的发生率。 (4)评估单个物种对生态系统功能的贡献,而不只是对混养的生态系统整体功能的衡量,对于估算互补性的影响并不是必不可少的。 (5)进一步的研究将使有别于其他生态系统功能的常规种群受益。 (6)没有一种分析方法可以区分各个过程或机制的影响,例如资源使用差异化,便利化或化感作用,因此需要额外的实验处理。

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