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More diverse plant communities have higher functioning over time due to turnover in complementary dominant species

机译:由于互补优势物种的更新随着时间的推移更多种类的植物群落具有更高的功能

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摘要

More diverse communities have been shown to have higher and more temporally stable ecosystem functioning than less diverse ones, suggesting they should also have a consistently higher level of functioning over time. Diverse communities could maintain consistently high function because the species driving function change over time (functional turnover) or because they are more likely to contain key species with temporally stable functioning. Across 7 y in a large biodiversity experiment, we show that more diverse plant communities had consistently higher productivity, that is, a higher level of functioning over time. We identify the mechanism for this as turnover in the species driving biomass production; this was substantial, and species that were rare in some years became dominant and drove function in other years. Such high turnover allowed functionally more diverse communities to maintain high biomass over time and was associated with higher levels of complementarity effects in these communities. In contrast, turnover in communities composed of functionally similar species did not promote high biomass production over time. Thus, turnover in species promotes consistently high ecosystem function when it sustains functionally complementary interactions between species. Our results strongly reinforce the argument for conservation of high biodiversity.
机译:事实表明,与多样性程度较低的社区相比,多样性程度更高的社区具有更高的,时间上更稳定的生态系统功能,这表明随着时间的推移,它们的功能水平也应始终保持较高水平。多样化的社区可以保持一致的高功能,因为物种的驱动功能会随时间变化(功能更新),或者因为它们更可能包含具有暂时稳定功能的关键物种。在大型生物多样性实验中,经过7年的研究,我们发现,越多样化的植物群落始终具有更高的生产率,即随着时间的推移功能水平越高。我们将这种机制确定为驱动生物量生产的物种的营业额;这是实质性的,在某些年份中稀有的物种成为优势,并在其他年份推动了功能的发展。如此高的周转率使功能更多样化的社区能够随着时间的推移保持较高的生物量,并与这些社区中更高水平的互补效应相关。相反,随着时间的流逝,功能相似物种组成的社区的营业额并未促进高生物量生产。因此,物种更新在维持物种之间功能互补的相互作用时,会持续提高生态系统功能。我们的研究结果有力地证明了保护高生物多样性的观点。

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