Effects of land cover conversion on soil properties and soil microbial activity in an alpine meadow on the Tibetan Plateau

Land cover conversion intensively occurred in the Tibetan Plateau of China during the past decades. However, responses of soil properties and soil microbial activities to land cover conversion under different land cover types have not been fully understood. The objective was to assess the effects of...

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Published inEnvironmental earth sciences Vol. 74; no. 5; pp. 4523 - 4533
Main Authors Zhu, Ping, Chen, Rensheng, Song, Yaoxuan, Liu, Guangxiu, Chen, Tuo, Zhang, Wei
Format Journal Article
LanguageEnglish
Published Berlin/Heidelberg Springer Berlin Heidelberg 01.09.2015
Springer Nature B.V
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ISSN1866-6280
1866-6299
DOI10.1007/s12665-015-4509-1

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Abstract Land cover conversion intensively occurred in the Tibetan Plateau of China during the past decades. However, responses of soil properties and soil microbial activities to land cover conversion under different land cover types have not been fully understood. The objective was to assess the effects of land cover conversion on soil C and N stocks and soil microbial properties of topsoil of an alpine meadow in the Tibetan Plateau. Soil cores of surface soil (0–20 cm) were collected from three adjacent land cover types: native alpine meadow, artificial grassland and mound-shaped denuded land. Soil microbial metabolic diversity was measured using Biolog EcoPlates. Significant losses of SOC and TN storages were subject to land cover conversion in topsoil, decreasing 14.5 and 10.9 % of alpine meadow to artificial grassland and 52.9 and 51.7 % to denuded land. Alpine meadow soils had the highest soil microbial biomass and microbial metabolic activity of three land cover types. Microbial biomass and microbial metabolic activity decreased markedly after alpine meadow conversion to denuded land. Land use conversion from original alpine meadow to artificial grassland and denuded land caused decline in soil organic carbon density, total nitrogen density and soil microbial activity. Soil carbon emissions from alpine meadow conversion were released to the atmosphere and could influence climatic change.
AbstractList Land cover conversion intensively occurred in the Tibetan Plateau of China during the past decades. However, responses of soil properties and soil microbial activities to land cover conversion under different land cover types have not been fully understood. The objective was to assess the effects of land cover conversion on soil C and N stocks and soil microbial properties of topsoil of an alpine meadow in the Tibetan Plateau. Soil cores of surface soil (0–20 cm) were collected from three adjacent land cover types: native alpine meadow, artificial grassland and mound-shaped denuded land. Soil microbial metabolic diversity was measured using Biolog EcoPlates. Significant losses of SOC and TN storages were subject to land cover conversion in topsoil, decreasing 14.5 and 10.9 % of alpine meadow to artificial grassland and 52.9 and 51.7 % to denuded land. Alpine meadow soils had the highest soil microbial biomass and microbial metabolic activity of three land cover types. Microbial biomass and microbial metabolic activity decreased markedly after alpine meadow conversion to denuded land. Land use conversion from original alpine meadow to artificial grassland and denuded land caused decline in soil organic carbon density, total nitrogen density and soil microbial activity. Soil carbon emissions from alpine meadow conversion were released to the atmosphere and could influence climatic change.
Issue Title: Thematic Issue: Water of the Erhai and Dianchi Lakes, Guest Editors: Shengrui Wang, Binghui Zheng, Cui Chen, Max Dohmann, Olaf Kolditz; Thematic Issue: Water of the Taihu Lake, Guest Editors: Beidou Xi, Jing Su, Yuanyuan Sun, Shouliang Huo, Binghui Zheng, Andreas Tiehm, Olaf Kolditz Land cover conversion intensively occurred in the Tibetan Plateau of China during the past decades. However, responses of soil properties and soil microbial activities to land cover conversion under different land cover types have not been fully understood. The objective was to assess the effects of land cover conversion on soil C and N stocks and soil microbial properties of topsoil of an alpine meadow in the Tibetan Plateau. Soil cores of surface soil (0-20 cm) were collected from three adjacent land cover types: native alpine meadow, artificial grassland and mound-shaped denuded land. Soil microbial metabolic diversity was measured using Biolog EcoPlates. Significant losses of SOC and TN storages were subject to land cover conversion in topsoil, decreasing 14.5 and 10.9 % of alpine meadow to artificial grassland and 52.9 and 51.7 % to denuded land. Alpine meadow soils had the highest soil microbial biomass and microbial metabolic activity of three land cover types. Microbial biomass and microbial metabolic activity decreased markedly after alpine meadow conversion to denuded land. Land use conversion from original alpine meadow to artificial grassland and denuded land caused decline in soil organic carbon density, total nitrogen density and soil microbial activity. Soil carbon emissions from alpine meadow conversion were released to the atmosphere and could influence climatic change.
Land cover conversion intensively occurred in the Tibetan Plateau of China during the past decades. However, responses of soil properties and soil microbial activities to land cover conversion under different land cover types have not been fully understood. The objective was to assess the effects of land cover conversion on soil C and N stocks and soil microbial properties of topsoil of an alpine meadow in the Tibetan Plateau. Soil cores of surface soil (0–20 cm) were collected from three adjacent land cover types: native alpine meadow, artificial grassland and mound-shaped denuded land. Soil microbial metabolic diversity was measured using Biolog EcoPlates. Significant losses of SOC and TN storages were subject to land cover conversion in topsoil, decreasing 14.5 and 10.9 % of alpine meadow to artificial grassland and 52.9 and 51.7 % to denuded land. Alpine meadow soils had the highest soil microbial biomass and microbial metabolic activity of three land cover types. Microbial biomass and microbial metabolic activity decreased markedly after alpine meadow conversion to denuded land. Land use conversion from original alpine meadow to artificial grassland and denuded land caused decline in soil organic carbon density, total nitrogen density and soil microbial activity. Soil carbon emissions from alpine meadow conversion were released to the atmosphere and could influence climatic change.
Author Song, Yaoxuan
Liu, Guangxiu
Chen, Tuo
Zhu, Ping
Zhang, Wei
Chen, Rensheng
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Snippet Land cover conversion intensively occurred in the Tibetan Plateau of China during the past decades. However, responses of soil properties and soil microbial...
Issue Title: Thematic Issue: Water of the Erhai and Dianchi Lakes, Guest Editors: Shengrui Wang, Binghui Zheng, Cui Chen, Max Dohmann, Olaf Kolditz; Thematic...
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SubjectTerms Alpine environments
alpine meadow soils
alpine meadows
Biogeosciences
Carbon
China
Climate change
Earth and Environmental Science
Earth Sciences
emissions
Environmental Science and Engineering
Geochemistry
Geology
Grasslands
Hydrology/Water Resources
Lakes
land cover
Land use
land use change
Meadows
Microbial activity
microbial biomass
Nitrogen
nitrogen content
Organic carbon
Original Article
Soil microorganisms
soil organic carbon
Soil properties
Soil surfaces
Terrestrial Pollution
Topsoil
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Title Effects of land cover conversion on soil properties and soil microbial activity in an alpine meadow on the Tibetan Plateau
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