Jiangsu Key Laboratory for Bioresources of Saline Soils, Yancheng Teachers University, Yancheng, China.
Department of Ecology, Co-Innovation Center for Sustainable Forestry in Southern China, Nanjing Forestry University, Nanjing, China.
Glob Chang Biol. 2022 Dec;28(24):7353-7365. doi: 10.1111/gcb.16417. Epub 2022 Sep 13.
Carbon (C):nitrogen (N):phosphorus (P) stoichiometry in plants, soils, and microbial biomass influences productivity and nutrient cycling in terrestrial ecosystems. Anthropogenic inputs of P to ecosystems are increasing; however, our understanding of the impacts of P addition on terrestrial ecosystem C:N:P ratios remains elusive. By conducting a meta-analysis with 1413 paired observations from 121 publications, we showed that P addition significantly decreased plant, soil, and microbial biomass N:P and C:P ratios, but had negligible effects on C:N ratios. The reductions in N:P and C:P ratios became more evident as the P application rates and experimental duration increased. The P addition effects on terrestrial ecosystem C:N:P stoichiometry did not vary with ecosystem types or climates. Moreover, the responses of N:P and C:P ratios in soil and microbial biomass were associated with the responses of soil pH and fungi:bacteria ratios. Additionally, P additions increased net primary productivity, microbial biomass, soil respiration, N mineralization, and N nitrification, but decreased ammonium and nitrate contents. Decreases in plant N:P and C:P ratios were both negatively correlated to net primary productivity and soil respiration, but positively correlated to ammonium and nitrate contents; microbial biomass, soil respiration, ammonium contents, and nitrate contents all increased with declining soil N:P and C:P ratios. Our findings highlight that P additions could imbalance C:N:P stoichiometry and potentially impact the terrestrial ecosystem functions.
植物、土壤和微生物生物量中的碳(C)-氮(N)-磷(P)化学计量学影响陆地生态系统的生产力和养分循环。人为向生态系统中输入的磷正在增加;然而,我们对磷添加对陆地生态系统 C:N:P 比率的影响的理解仍然难以捉摸。通过对 121 篇出版物中的 1413 对配对观测进行荟萃分析,我们表明,磷添加显著降低了植物、土壤和微生物生物量的 N:P 和 C:P 比率,但对 C:N 比率几乎没有影响。随着磷施用量和实验持续时间的增加,N:P 和 C:P 比率的降低变得更加明显。磷添加对陆地生态系统 C:N:P 化学计量的影响与生态系统类型或气候无关。此外,土壤和微生物生物量中 N:P 和 C:P 比率的响应与土壤 pH 和真菌:细菌比率的响应有关。此外,磷添加增加了净初级生产力、微生物生物量、土壤呼吸、氮矿化和氮硝化,但降低了铵和硝酸盐含量。植物 N:P 和 C:P 比率的降低均与净初级生产力和土壤呼吸呈负相关,但与铵和硝酸盐含量呈正相关;微生物生物量、土壤呼吸、铵含量和硝酸盐含量均随土壤 N:P 和 C:P 比率的降低而增加。我们的研究结果表明,磷添加可能会破坏 C:N:P 化学计量平衡,并可能影响陆地生态系统功能。