营养物
土壤养分
土壤水分
生态化学计量学
环境科学
微生物
化学计量学
土壤科学
生态学
生物系统
生化工程
数学
生物
化学
细菌
工程类
遗传学
有机化学
作者
Yongxing Cui,Daryl Moorhead,Shushi Peng,Robert L. Sinsabaugh,Josep Pe ntilde uelas
标识
DOI:10.59717/j.xinn-geo.2024.100048
摘要
<p>While ecological stoichiometry-based theories and methodologies have been successfully applied to identify nutrient limitations in plankton and plants (e.g., leaf nutrient resorption ratios), determining nutrient limitations in soil microorganisms by them has great uncertainties. Establishing stoichiometric thresholds that define specific nutrient limitations for soil microbial communities has been a major challenge. Here, we present a threshold framework that predicts the limitations of carbon (C), nitrogen (N), and phosphorus (P) for microbial communities by leveraging the convergence of elemental stoichiometry from soils to microorganisms. Combined with a widely used model of microbial nutrient limitations (i.e., ecoenzyme vector model), the theoretical thresholds derived from this framework are validated by empirical thresholds identified through analysis of a comprehensive global dataset (<i>n</i> = 3277). Notably, we find that the commonly assumed threshold of 45�� in the ecoenzyme vector model overestimates microbial P limitation and underestimates microbial N limitation. By contrast, a vector length of 0.61 (unitless) and an angle of 55�� in the vector model are more reliable thresholds identifying microbial C and N/P limitations, respectively. This framework, with a fundamental understanding of microbially-driven stoichiometric convergence in plant-soil-microbe systems, offers a practical and general avenue for identifying microbial nutrient limitations in soils.</p>
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