Impacts of nutrient addition on soil carbon and nitrogen stoichiometry and stability in globally-distributed grasslands

被引:0
作者
Katherine S. Rocci
Kaydee S. Barker
Eric W. Seabloom
Elizabeth T. Borer
Sarah E. Hobbie
Jonathan D. Bakker
Andrew S. MacDougall
Rebecca L. McCulley
Joslin L. Moore
Xavier Raynaud
Carly J. Stevens
M. Francesca Cotrufo
机构
[1] Colorado State University,Graduate Degree Program in Ecology
[2] Colorado State University,Soil and Crop Sciences Department
[3] Colorado State University,Natural Resource Ecology Laboratory
[4] Colorado State University,Ecosystem Science and Sustainability Department
[5] University of Minnesota,Department of Ecology, Evolution, and Behavior
[6] University of Washington,School of Environmental and Forest Sciences
[7] University of Guelph,Department of Integrative Biology
[8] University of Kentucky,Department of Plant and Soil Sciences
[9] Monash University,School of Biological Sciences
[10] Sorbonne Université,UPEC, CNRS, IRD, INRA, UMR 7618, Institute of Ecology and Environmental Sciences
[11] Université de Paris, Paris, iEES Paris
[12] Lancaster University,Lancaster Environment Centre
来源
Biogeochemistry | 2022年 / 159卷
关键词
Nutrient network (NutNet); Soil organic matter; Nutrient addition; Mineral-associated organic matter; Particulate organic matter; Grasslands; Nitrogen; Phosphorous; Potassium;
D O I
暂无
中图分类号
学科分类号
摘要
Global changes will modify future nutrient availability with implications for grassland biogeochemistry. Soil organic matter (SOM) is central to grasslands for both provision of nutrients and climate mitigation through carbon (C) storage. While we know that C and nitrogen (N) in SOM can be influenced by greater nutrient availability, we lack understanding of nutrient effects on C and N coupling and stability in soil. Different SOM fractions have different functional relevance and mean residence times, i.e., mineral-associated organic matter (MAOM) has a higher mean residence time than particulate organic matter (POM). By separating effects of nutrient supply on the different SOM fractions, we can better evaluate changes in soil C and N coupling and stability and associated mechanisms. To this end, we studied responses of C and N ratios and distributions across POM and MAOM to 6–10 years of N, phosphorus (P), potassium and micronutrients (K+µ), and combined NPK+µ additions at 11 grassland sites spanning 3 continents and globally relevant environmental gradients in climate, plant growth, soil texture, and nutrient availability. We found addition of N and NPK+µ generally reduced C:N in MAOM and POM. However, at low fertility and at warm, sandy sites, nutrient addition promoted higher MAOM and POM C:N, respectively. Addition of NPK+µ also promoted C storage in POM relative to MAOM, and this was consistent across sites. Our results suggest that addition of macro- and micronutrients consistently decrease SOM stabilization, whereas responses of soil C:N stoichiometry were contingent on SOM fraction and environmental conditions.
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页码:353 / 370
页数:17
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