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Dual mechanisms regulate ecosystem stability under decade-long warming and hay harvest

机译:双重机制调节了长达十年的变暖和干草收获下的生态系统稳定性

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Past global change studies have identified changes in species diversity as a major mechanism regulating temporal stability of production, measured as the ratio of the mean to the standard deviation of community biomass. However, the dominant plant functional group can also strongly determine the temporal stability. Here, in a grassland ecosystem subject to 15 years of experimental warming and hay harvest, we reveal that warming increases while hay harvest decreases temporal stability. This corresponds with the biomass of the dominant C4 functional group being higher under warming and lower under hay harvest. As a secondary mechanism, biodiversity also explains part of the variation in temporal stability of production. Structural equation modelling further shows that warming and hay harvest regulate temporal stability through influencing both temporal mean and variation of production. Our findings demonstrate the joint roles that dominant plant functional group and biodiversity play in regulating the temporal stability of an ecosystem under global change.
机译:过去的全球变化研究已经将物种多样性的变化确定为调节生产时间稳定性的主要机制,以社区生物量的平均值与标准偏差之比来衡量。但是,占主导地位的植物功能组也可以强烈地确定时间稳定性。在这里,在经历15年实验性变暖和干草收获的草原生态系统中,我们发现变暖增加而干草收获降低了时间稳定性。这与主要的C 4 官能团的生物量在变暖时较高,而在干草收获时较低。作为次要机制,生物多样性还解释了生产时间稳定性变化的部分原因。结构方程模型进一步表明,变暖和干草收获通过影响时间平均值和生产变化来调节时间稳定性。我们的发现表明,在全球变化下,主要的植物功能群和生物多样性在调节生态系统的时间稳定性方面起着共同的作用。

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