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将化学计量学同质性与生态系统结构、功能和稳定性联系起来。

Linking stoichiometric homoeostasis with ecosystem structure, functioning and stability.

机构信息

State Key Laboratory of Vegetation and Environmental Change, Institute of Botany, Chinese Academy of Sciences, Beijing 100093, China.

出版信息

Ecol Lett. 2010 Nov;13(11):1390-9. doi: 10.1111/j.1461-0248.2010.01532.x. Epub 2010 Sep 16.

Abstract

Ecosystem structure, functioning and stability have been a focus of ecological and environmental sciences during the past two decades. The mechanisms underlying their relationship, however, are not well understood. Based on comprehensive studies in Inner Mongolia grassland, here we show that species-level stoichiometric homoeostasis was consistently positively correlated with dominance and stability on both 2-year and 27-year temporal scales and across a 1200-km spatial transect. At the community level, stoichiometric homoeostasis was also positively correlated with ecosystem function and stability in most cases. Thus, homoeostatic species tend to have high and stable biomass; and ecosystems dominated by more homoeostatic species have higher productivity and greater stability. By modulating organism responses to key environmental drivers, stoichiometric homoeostasis appears to be a major mechanism responsible for the structure, functioning and stability of grassland ecosystems.

摘要

在过去的二十年中,生态系统的结构、功能和稳定性一直是生态学和环境科学的研究重点。然而,它们之间关系的机制尚不清楚。基于对内蒙古草原的综合研究,我们在这里表明,种间化学计量内稳性与优势度和稳定性在 2 年和 27 年的时间尺度上以及在 1200 公里的空间梯度上都呈一致的正相关关系。在群落水平上,在大多数情况下,化学计量内稳性也与生态系统功能和稳定性呈正相关。因此,内稳性物种往往具有较高和稳定的生物量;而由更多内稳性物种主导的生态系统具有更高的生产力和更大的稳定性。通过调节生物对关键环境驱动因素的反应,化学计量内稳性似乎是草原生态系统结构、功能和稳定性的主要机制。

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