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Phytoplankton size-diversity mediates an emergent trade-off in ecosystem functioning for rare versus frequent disturbances

机译:浮游植物的大小多样性介导了生态系统功能的紧急权衡以应对罕见干扰和频繁干扰

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摘要

Biodiversity is known to be an important determinant of ecosystem-level functions and processes. Although theories have been proposed to explain the generally positive relationship between, for example, biodiversity and productivity, it remains unclear which mechanisms underlie the observed variations in Biodiversity-Ecosystem Function (BEF) relationships. Using a continuous trait-distribution model for a phytoplankton community of gleaners competing with opportunists, and subjecting it to differing frequencies of disturbance, we find that species selection tends to enhance temporal species complementarity, which is maximised at high disturbance frequency and intermediate functional diversity. This leads to the emergence of a trade-off whereby increasing diversity tends to enhance short-term adaptive capacity under frequent disturbance while diminishing long-term productivity under infrequent disturbance. BEF relationships therefore depend on both disturbance frequency and the timescale of observation.
机译:众所周知,生物多样性是生态系统一级功能和过程的重要决定因素。尽管提出了一些理论来解释例如生物多样性与生产力之间的总体正相关关系,但仍不清楚哪种机制是观察到的生物多样性与生态系统功能(BEF)关系变化的基础。使用连续性状分布模型为与机会主义者竞争的拾荒者浮游植物群落,并使其受到不同的干扰频率,我们发现物种选择趋向于增强时间物种的互补性,在高干扰频率和中间功能多样性时最大化。这导致了折衷的出现,由此增加的多样性倾向于在频繁的干扰下增强短期适应能力,而在不频繁的干扰下降低长期生产率。因此,BEF关系取决于干扰频率和观测时间尺度。

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