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通过物种更替,干旱与盐碱沙漠环境中氮磷化学计量比的变化

N:P stoichiometric changes via species turnover in arid versus saline desert environments.

作者信息

Gong Yan-Ming, Ling Hong-Bo, Chen Yue, Cao Jing, Guo Zhen-Jie, Lv Guang-Hui

机构信息

State Key Laboratory of Desert and Oasis Ecology Xinjiang Institute of Ecology and Geography Chinese Academy of Sciences (CAS) Urumqi China.

Xinjiang Key Laboratory of Oasis Ecology Xinjiang University Urumqi China.

出版信息

Ecol Evol. 2020 May 30;10(13):6636-6645. doi: 10.1002/ece3.6395. eCollection 2020 Jul.

Abstract

Aridity and salinity have a key role in driving physiological and ecological processes in desert ecosystems. However, how community-scale foliar nutrients respond to aridity and salinity, and how these responses might vary with community composition along aridity and salinity gradients is unclear. We hypothesize that the response will be a shift in community stoichiometric values resulting from nutrient variability of shared species and unique species (site-specific species), but little research has addressed the relative contribution of either component.We analyzed the community-scale stoichiometric response of a desert community of perennial plants along an aridity and salinity transect by focusing on foliar nitrogen (N) and phosphorous (P) concentrations and N:P ratios. After evaluating the shared and unique species variability, we determined their relative contribution to the community stoichiometric response to aridity and salinity, reflected by changes in nonweighted and weighted community-average values.Community-scale stoichiometry decreased significantly under aridity and salinity, with significantly consistent changes in nonweighted and weighted community-average stoichiometry for most shared and unique species measurements. The relative contribution of unique species shifts to the changes in community stoichiometry was greater (15%-77%) than the relative contribution of shared species shifts (7%-45%), excluding the change in weighted P concentration under aridity. Thus, the shifts of unique species amplified the community stoichiometric response to environmental changes. . These results highlighted the need for a more in-depth consideration of shared and unique species variability to understand and predict the effects of environmental change on the stoichiometry of plant communities. Although variation in community stoichiometry can be expected under extreme aridity and salinity conditions, changes of unique species could be a more important driver of the stoichiometric response of plant communities.

摘要

干旱和盐碱化在推动沙漠生态系统的生理和生态过程中起着关键作用。然而,群落尺度的叶片养分如何响应干旱和盐碱化,以及这些响应如何随群落组成沿着干旱和盐碱化梯度而变化尚不清楚。我们假设,这种响应将是由于共有物种和独特物种(特定地点物种)的养分变异性导致的群落化学计量值的转变,但很少有研究探讨这两种成分的相对贡献。我们通过关注叶片氮(N)和磷(P)浓度以及N:P比,分析了一个多年生植物沙漠群落沿着干旱和盐碱化样带的群落尺度化学计量响应。在评估了共有和独特物种的变异性之后,我们确定了它们对群落对干旱和盐碱化的化学计量响应的相对贡献,这通过非加权和加权群落平均值的变化来反映。

在干旱和盐碱化条件下,群落尺度的化学计量显著下降,对于大多数共有和独特物种的测量,非加权和加权群落平均化学计量有显著一致的变化。独特物种变化对群落化学计量变化的相对贡献(15%-77%)大于共有物种变化的相对贡献(7%-45%),干旱条件下加权P浓度的变化除外。因此,独特物种的变化放大了群落对环境变化的化学计量响应。这些结果凸显了更深入考虑共有和独特物种变异性对于理解和预测环境变化对植物群落化学计量影响的必要性。尽管在极端干旱和盐碱化条件下可以预期群落化学计量会发生变化,但独特物种的变化可能是植物群落化学计量响应的更重要驱动因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b59/7381577/c59599187adb/ECE3-10-6636-g001.jpg

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