Guo Liang, Ju Chenghui, Xu Xia, Zhou Guomo, Luo Yiqi, Xu Chonghua, Li Qian, Du Huaqiang, Liu Wenfang, Zhou Yan
Co-Innovation Center for Sustainable Forestry in Southern China and College of Biology and the Environment, Nanjing Forestry University, Nanjing, Jiangsu, China.
State Key Laboratory of Subtropical Silviculture, Zhejiang A&F University, Zhejiang, Hangzhou, China.
Ecol Lett. 2024 Nov;27(11):e70011. doi: 10.1111/ele.70011.
Soil microorganisms are crucial in terrestrial ecosystems, influencing carbon (C) sequestration, yet their metabolic activities are often constrained by nitrogen (N) and phosphorus (P) availability. Despite this, a global understanding of microbial nutrient limitation remains elusive. We synthesised 1245 observations from 225 articles to elucidate patterns and factors of microbial nutrient limitation. Contrary to convention, soil microbial P limitation is widespread (83.78% of observations), with N limitation mainly in temperate zones and pronounced P limitation in tropical and cold zones. Soil microbial P limitation correlates positively with mean annual precipitation and clay content, while N limitation correlates negatively with soil pH. Importantly, microbial nutrient limitation directly affects C cycling, as microbial C limitation increases with decreasing N or P limitation. This underscores the significance of microbial nutrient limitation in terrestrial C cycling and the need to incorporate it into Earth system models for accurate predictions under changing conditions.
土壤微生物在陆地生态系统中至关重要,影响着碳(C)固存,但其代谢活动常常受到氮(N)和磷(P)有效性的限制。尽管如此,对微生物养分限制的全球认识仍然难以捉摸。我们综合了225篇文章中的1245项观测结果,以阐明微生物养分限制的模式和影响因素。与传统观点相反,土壤微生物磷限制普遍存在(83.78%的观测结果),氮限制主要在温带地区,而在热带和寒冷地区磷限制明显。土壤微生物磷限制与年平均降水量和黏土含量呈正相关,而氮限制与土壤pH值呈负相关。重要的是,微生物养分限制直接影响碳循环,因为随着氮或磷限制的减少,微生物碳限制会增加。这突出了微生物养分限制在陆地碳循环中的重要性,以及在不断变化的条件下将其纳入地球系统模型以进行准确预测的必要性。