Positive effects of plant species diversity on organic carbon accumulation in soil aggregates driven by mineral protection in a subtropical forest in southwest China
Purpose High plant species diversity (PSD) has been reported to enhance soil organic carbon (SOC) storage, but the mechanisms underlying its stimulative effects on soil aggregates remain poorly understood, especially in terms of the effects on aggregate-associated OC content. Methods We selected 45...
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Published in: | Journal of soils and sediments Vol. 24; no. 3; pp. 1082 - 1091 |
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Abstract | Purpose
High plant species diversity (PSD) has been reported to enhance soil organic carbon (SOC) storage, but the mechanisms underlying its stimulative effects on soil aggregates remain poorly understood, especially in terms of the effects on aggregate-associated OC content.
Methods
We selected 45 plots in a subtropical forest to determine the pattern of variation of soil aggregate-associated OC along a natural PSD gradient and the effects exerted by PSD.
Results
OC contents of three soil aggregate fractions were significantly and positively correlated with PSD. High PSD could enhance the proportion of macroaggregate OC in bulk OC, but decreased that of silt + clay-associated OC. Our results also revealed that high PSD might increase the OC content in soil aggregates by stimulating plant litter inputs. At the same time, high PSD increased soil minerals, which could enhance mineral protection of OC in soil aggregates.
Conclusions
Along the PSD gradient, the accumulation of OC in soil aggregates was mainly influenced by Ca
2+
/Mg
2+
-mediated mechanisms that protected them in the study area, which is characterized by karst forest soils dominated by dolomite and limestone. Our study provides a better understanding of soil C dynamics in aggregates under varying PSD in forest ecosystems, possibly assisting in making more accurate predictions.
Graphical Abstract |
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AbstractList | PurposeHigh plant species diversity (PSD) has been reported to enhance soil organic carbon (SOC) storage, but the mechanisms underlying its stimulative effects on soil aggregates remain poorly understood, especially in terms of the effects on aggregate-associated OC content.MethodsWe selected 45 plots in a subtropical forest to determine the pattern of variation of soil aggregate-associated OC along a natural PSD gradient and the effects exerted by PSD.ResultsOC contents of three soil aggregate fractions were significantly and positively correlated with PSD. High PSD could enhance the proportion of macroaggregate OC in bulk OC, but decreased that of silt + clay-associated OC. Our results also revealed that high PSD might increase the OC content in soil aggregates by stimulating plant litter inputs. At the same time, high PSD increased soil minerals, which could enhance mineral protection of OC in soil aggregates.ConclusionsAlong the PSD gradient, the accumulation of OC in soil aggregates was mainly influenced by Ca2+/Mg2+-mediated mechanisms that protected them in the study area, which is characterized by karst forest soils dominated by dolomite and limestone. Our study provides a better understanding of soil C dynamics in aggregates under varying PSD in forest ecosystems, possibly assisting in making more accurate predictions. Purpose High plant species diversity (PSD) has been reported to enhance soil organic carbon (SOC) storage, but the mechanisms underlying its stimulative effects on soil aggregates remain poorly understood, especially in terms of the effects on aggregate-associated OC content. Methods We selected 45 plots in a subtropical forest to determine the pattern of variation of soil aggregate-associated OC along a natural PSD gradient and the effects exerted by PSD. Results OC contents of three soil aggregate fractions were significantly and positively correlated with PSD. High PSD could enhance the proportion of macroaggregate OC in bulk OC, but decreased that of silt + clay-associated OC. Our results also revealed that high PSD might increase the OC content in soil aggregates by stimulating plant litter inputs. At the same time, high PSD increased soil minerals, which could enhance mineral protection of OC in soil aggregates. Conclusions Along the PSD gradient, the accumulation of OC in soil aggregates was mainly influenced by Ca 2+ /Mg 2+ -mediated mechanisms that protected them in the study area, which is characterized by karst forest soils dominated by dolomite and limestone. Our study provides a better understanding of soil C dynamics in aggregates under varying PSD in forest ecosystems, possibly assisting in making more accurate predictions. Graphical Abstract |
Author | Li, Feilong Sun, Chenxi Qian, Zongyao He, Xinnuo Qin, Yunbin |
Author_xml | – sequence: 1 givenname: Chenxi surname: Sun fullname: Sun, Chenxi organization: Key Laboratory of Ecology of Rare and Endangered Species and Environmental Protection (Guangxi Normal University), Ministry of Education, Guangxi Key Laboratory of Landscape Resources Conservation and Sustainable Utilization in Lijiang River Basin, Guangxi Normal University – sequence: 2 givenname: Feilong surname: Li fullname: Li, Feilong organization: Guangdong Provincial Key Laboratory of Water Quality Improvement and Ecological Restoration for Watersheds, School of Ecology, Environment and Resources, Guangdong University of Technology – sequence: 3 givenname: Xinnuo surname: He fullname: He, Xinnuo organization: Key Laboratory of Ecology of Rare and Endangered Species and Environmental Protection (Guangxi Normal University), Ministry of Education, Guangxi Key Laboratory of Landscape Resources Conservation and Sustainable Utilization in Lijiang River Basin, Guangxi Normal University – sequence: 4 givenname: Zongyao orcidid: 0000-0002-7113-5215 surname: Qian fullname: Qian, Zongyao email: qianzongyao@sina.com organization: Key Laboratory of Agro-Ecological Processes in Subtropical Region, Institute of Subtropical Agriculture, Chinese Academy of Sciences, School of Biological Science and Food Engineering, Chuzhou University – sequence: 5 givenname: Yunbin surname: Qin fullname: Qin, Yunbin email: shuibaoqinyunbin@163.com organization: Key Laboratory of Ecology of Rare and Endangered Species and Environmental Protection (Guangxi Normal University), Ministry of Education, Guangxi Key Laboratory of Landscape Resources Conservation and Sustainable Utilization in Lijiang River Basin, Guangxi Normal University |
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Keywords | Mineral protection Plant species diversity Soil organic carbon Soil aggregates Subtropical forest |
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High plant species diversity (PSD) has been reported to enhance soil organic carbon (SOC) storage, but the mechanisms underlying its stimulative... PurposeHigh plant species diversity (PSD) has been reported to enhance soil organic carbon (SOC) storage, but the mechanisms underlying its stimulative effects... |
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SubjectTerms | Accumulation Aggregates Biodiversity Calcium ions Clay minerals Dolomite Dolostone Earth and Environmental Science Environment Environmental Physics Flowers & plants Forest ecosystems Forest soils Forests Karst Limestone Magnesium Minerals Organic carbon Organic soils Plant diversity Plant species Sec 1 • Soil Organic Matter Dynamics and Nutrient Cycling • Research Article Soil Soil aggregates Soil Science & Conservation Soils Species diversity Terrestrial ecosystems Tropical forests |
Title | Positive effects of plant species diversity on organic carbon accumulation in soil aggregates driven by mineral protection in a subtropical forest in southwest China |
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