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Resource availability dominates and alters the relationship between species diversity and ecosystem productivity in experimental plant communities

机译:资源的可用性主导并改变了实验植物群落中物种多样性与生态系统生产力之间的关系

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摘要

Experimental evidence that plant species diversity has positive effects on biomass production appears to conflict with correlations of species diversity and standing biomass in natural communities. This may be due to the confounding effects of a third variable, resource availability, which has strong control over both diversity and productivity in natural systems and may conceal any positive effects of diversity on productivity. To test this hypothesis, I independently manipulated resource availability (soil fertility) and sown species diversity in a field experiment and measured their individual and interactive effects on productivity. Although fertility was a far stronger predictor of productivity than diversity, the effect of diversity on productivity significantly increased with fertility. Relative yield analyses indicated that plant mixtures of high fertility treatments significantly "overyielded," or were more productive than expected based on monoculture yields of component species. In contrast, plant mixtures of low fertility treatments had significantly lower-than-expected yields. The effect of diversity on productivity was also driven by sampling effects, where more species-rich mixtures were more likely to include particularly productive species. Unexpectedly, the strength of sampling effects was largely insensitive to fertility, although the particular species most responsible for sampling effects did change with fertility. These results suggest that positive effects of species diversity on ecosystem productivity in natural systems are likely to be masked by variation in environmental factors among habitats.
机译:实验证据表明,植物物种多样性对生物量生产具有积极影响,似乎与自然社区中物种多样性和常规生物量的相关性相冲突。这可能是由于第三个变量,资源可用性的混杂影响,它对自然系统中的多样性和生产力具有强大的控制力,并且可能掩盖了多样性对生产力的任何积极影响。为了检验这一假设,我在田间试验中独立地操纵了资源的可用性(土壤肥力)和播种的多样性,并测量了它们对生产力的个体和互动影响。尽管生育率比生产力更能预测生产力,但多样性对生产力的影响随着生育力的增加而大大增加。相对产量分析表明,基于组成物种的单培养产量,高肥力处理的植物混合物明显“高产”,或比预期的生产力更高。相反,低肥力处理的植物混合物的产量明显低于预期。多样性对生产率的影响还受到采样效应的影响,在采样效应中,物种更多的混合物更可能包括特别是生产性物种。出乎意料的是,尽管影响采样率的特定物种的确随生育力而变化,但采样效应的强度对生育力几乎不敏感。这些结果表明,物种多样性对自然系统生态系统生产力的积极影响可能被栖息地之间环境因素的变化所掩盖。

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