Global S&T Development Trend Analysis Platform of Resources and Environment
DOI | 10.1111/gcb.15071 |
Global response patterns of plant photosynthesis to nitrogen addition: A meta‐analysis | |
Xingyun Liang; Tong Zhang; Xiankai Lu; David S. Ellsworth; Hormoz BassiriRad; Chengming You; Dong Wang; Pengcheng He; Qi Deng; Hui Liu; Jiangming Mo; Qing Ye | |
2020-04-08 | |
发表期刊 | Global Change Biology
![]() |
出版年 | 2020 |
英文摘要 | A mechanistic understanding of plant photosynthetic response is needed to reliably predict changes in terrestrial carbon (C) gain under conditions of chronically elevated atmospheric nitrogen (N) deposition. Here, using 2,683 observations from 240 journal articles, we conducted a global meta‐analysis to reveal effects of N addition on 14 photosynthesis‐related traits and affecting moderators. We found that across 320 terrestrial plant species, leaf N was enhanced comparably on mass basis (Nmass, +18.4%) and area basis (Narea, +14.3%), with no changes in specific leaf area or leaf mass per area. Total leaf area (TLA) was increased significantly, as indicated by the increases in total leaf biomass (+46.5%), leaf area per plant (+29.7%), and leaf area index (LAI, +24.4%). To a lesser extent than for TLA, N addition significantly enhanced leaf photosynthetic rate per area (Aarea, +12.6%), stomatal conductance (gs, +7.5%), and transpiration rate (E, +10.5%). The responses of Aarea were positively related with that of gs, with no changes in instantaneous water‐use efficiency and only slight increases in long‐term water‐use efficiency (+2.5%) inferred from 13C composition. The responses of traits depended on biological, experimental, and environmental moderators. As experimental duration and N load increased, the responses of LAI and Aarea diminished while that of E increased significantly. The observed patterns of increases in both TLA and E indicate that N deposition will increase the amount of water used by plants. Taken together, N deposition will enhance gross photosynthetic C gain of the terrestrial plants while increasing their water loss to the atmosphere, but the effects on C gain might diminish over time and that on plant water use would be amplified if N deposition persists. |
领域 | 气候变化 ; 资源环境 |
URL | 查看原文 |
引用统计 | |
文献类型 | 期刊论文 |
条目标识符 | http://119.78.100.173/C666/handle/2XK7JSWQ/248999 |
专题 | 气候变化 资源环境科学 |
推荐引用方式 GB/T 7714 | Xingyun Liang,Tong Zhang,Xiankai Lu,等. Global response patterns of plant photosynthesis to nitrogen addition: A meta‐analysis[J]. Global Change Biology,2020. |
APA | Xingyun Liang.,Tong Zhang.,Xiankai Lu.,David S. Ellsworth.,Hormoz BassiriRad.,...&Qing Ye.(2020).Global response patterns of plant photosynthesis to nitrogen addition: A meta‐analysis.Global Change Biology. |
MLA | Xingyun Liang,et al."Global response patterns of plant photosynthesis to nitrogen addition: A meta‐analysis".Global Change Biology (2020). |
条目包含的文件 | 条目无相关文件。 |
除非特别说明,本系统中所有内容都受版权保护,并保留所有权利。
修改评论