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全球变化改变植物多元素化学计量耦合。

Global changes alter plant multi-element stoichiometric coupling.

机构信息

Key Laboratory of Ecosystem Network Observation and Modeling, Institute of Geographic Sciences and Natural Resources Research, CAS, Beijing, 100101, China.

Department of Forest Resources, University of Minnesota, St Paul, MN, 55108, USA.

出版信息

New Phytol. 2019 Jan;221(2):807-817. doi: 10.1111/nph.15428. Epub 2018 Sep 7.

Abstract

Plant stoichiometric coupling among all elements is fundamental to maintaining growth-related ecosystem functions. However, our understanding of nutrient balance in response to global changes remains greatly limited to plant carbon : nitrogen : phosphorus (C : N : P) coupling. Here we evaluated nine element stoichiometric variations with one meta-analysis of 112 global change experiments conducted across global terrestrial ecosystems and one synthesis over 1900 species observations along natural environment gradients across China. We found that experimentally increased soil N and P respectively enhanced plant N : potassium (K), N : calcium (Ca) and N : magnesium (Mg), and P : K, P : Ca and P : Mg, and natural increases in soil N and P resulted in qualitatively similar responses. The ratios of N and P to base cations decreased both under experimental warming and with naturally increasing temperature. With decreasing precipitation, these ratios increased in experiments but decreased under natural environments. Based on these results, we propose a new stoichiometric framework in which all plant element contents and their coupling are not only affected by soil nutrient availability, but also by plant nutrient demand to maintain diverse functions under climate change. This study offers new insights into understanding plant stoichiometric variations across a full set of mineral elements under global changes.

摘要

植物对所有元素的化学计量学耦合对于维持与生长相关的生态系统功能至关重要。然而,我们对养分平衡响应全球变化的理解仍然很大程度上局限于植物碳:氮:磷(C:N:P)耦合。在这里,我们通过对全球陆地生态系统进行的 112 项全球变化实验的荟萃分析和对中国自然环境梯度上 1900 多个物种观测的综合研究,评估了九种元素的化学计量变化。我们发现,实验中增加的土壤 N 和 P 分别增强了植物 N:钾(K)、N:钙(Ca)和 N:镁(Mg)以及 P:K、P:Ca 和 P:Mg 的比例,而土壤 N 和 P 的自然增加则产生了定性相似的响应。在实验增温和自然升温的情况下,N 和 P 与基础阳离子的比率都降低了。随着降水量的减少,这些比率在实验中增加,但在自然环境中减少。基于这些结果,我们提出了一个新的化学计量学框架,其中所有植物元素含量及其耦合不仅受土壤养分供应的影响,而且还受植物养分需求的影响,以在气候变化下维持多样化的功能。本研究为理解全球变化下整套矿物质元素中植物化学计量变化提供了新的见解。

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