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From selection to complementarity: shifts in the causes of biodiversity-productivity relationships in a long-term biodiversity experiment

机译:从选择到互补:长​​期生物多样性实验中生物多样性与生产力关系的原因的转变

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In a 10-year (1996-2005) biodiversity experiment, the mechanisms underlying the increasingly positive effect of biodiversity on plant biomass production shifted from sampling to complementarity over time. The effect of diversity on plant biomass was associated primarily with the accumulation of higher total plant nitrogen pools (N g m(-2)) and secondarily with more efficient N use at higher diversity. The accumulation of N in living plant biomass was significantly increased by the presence of legumes, C4 grasses, and their combined presence. Thus, these results provide clear evidence for the increasing effects of complementarity through time and suggest a mechanism whereby diversity increases complementarity through the increased input and retention of N, a commonly limiting nutrient.
机译:在为期10年(1996年至2005年)的生物多样性实验中,随着时间的推移,生物多样性对植物生物量生产产生越来越积极影响的机制从采样过渡到互补。多样性对植物生物量的影响主要与较高的植物总氮库(N g m(-2))的积累有关,其次与在较高的多样性下更有效的氮利用有关。豆类,C4草及其组合的存在显着增加了活植物生物量中氮的积累。因此,这些结果为随着时间的推移增加的互补作用提供了明确的证据,并提出了一种机制,其中多样性通过增加氮的输入和保留来增加互补性,氮通常是限制性营养素。

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