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Species richness, environmental fluctuations, and temporal change in total community biomass

机译:物种丰富度,环境波动和社区总生物量的时间变化

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Theory and empirical results suggest that high biodiversity should often cause lower temporal variability in aggregate community properties such as total community biomass. We assembled microbial communities containing 2 to 8 species of competitors in aquatic microcosms and found that the temporal change in total community biomass was positively but insignificantly associated with diversity in a constant temperature environment. There was no evidence of any trend in variable temperature environments. Three non-exclusive mechanisms might explain the lack of a net stabilising effect of species richness on temporal change. (1) A direct destabilising effect of diversity on population level variances caused some populations to vary more when embedded in more diverse communities. (2) Similar responses of the different species to environmental variability might have limited any insurance effect of increased species richness. (3) Large differences in the population level variability of different species (i.e. unevenness) could weaken the relation between species richness and community level stability. These three mechanisms may outweigh the stabilising effects of increases in total community biomass with diversity, statistical averaging, and slightly more negative covariance in more diverse communities. Our experiment and analyses advocate for further experimental investigations of diversity variability relations.
机译:理论和实证结果表明,较高的生物多样性通常应引起总体群落特性(例如总群落生物量)较低的时间变异性。我们组装了包含2至8种竞争者的微生物群落,它们存在于水生生态系统中,发现在恒定温度环境中,总群落生物量的时间变化与多样性呈正相关,而与微不足道相关。没有证据表明在可变温度环境下有任何趋势。三种非排他性机制可能解释了物种丰富度对时间变化缺乏净稳定作用的原因。 (1)多样性对人口水平差异的直接破坏作用导致一些人口在更多样化的社区中生活时变化更大。 (2)不同物种对环境变异的类似反应可能会限制物种丰富度增加的任何保证作用。 (3)不同物种种群水平变异性的较大差异(即不均匀性)可能会削弱物种丰富度与群落水平稳定性之间的关系。这三种机制可能会超过社区总生物量的增加所具有的稳定作用,多样性,统计平均数以及更多种社区中的负协方差略大一些。我们的实验和分析提倡对多样性变异性关系进行进一步的实验研究。

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