Elevational is the main factor controlling the soil microbial community structure in alpine tundra of the Changbai Mountain
To reveal the self-coordination mechanism of the fragile ecosystem of alpine tundra, we explored the relationship between soil microorganisms and other elements. On the alpine tundra of the Changbai Mountain, different vegetation types, altitudes and soil properties were selected as driving factors...
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description | To reveal the self-coordination mechanism of the fragile ecosystem of alpine tundra, we explored the relationship between soil microorganisms and other elements. On the alpine tundra of the Changbai Mountain, different vegetation types, altitudes and soil properties were selected as driving factors of soil microbial community. Soil microbial community, C- and N-cycling functional microbial and fungal biomass were analyzed. Structural equation model was used to study the control of biotic and abiotic factors in rhizosphere soil microbial community. The results showed that the pH value of soil had the strongest direct impact on the diversity and community structure of soil microorganisms, and had significant correlation with most of the C- and N-cycling functional microbial; organic carbon and vegetation also have strongest direct effect on fungal biomass, but all of them were not main factors influence soil microbial community structure, the elevation was the main controlling factor. In addition, the elevation mainly through indirect action affects the soil microbial community by driving distribution of plant species, soil organic carbon and pH value. This finding highlighted that elevation was the main predictor to determine rhizosphere microbial community structure but not vegetation in alpine tundra of Changbai Mountain. |
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On the alpine tundra of the Changbai Mountain, different vegetation types, altitudes and soil properties were selected as driving factors of soil microbial community. Soil microbial community, C- and N-cycling functional microbial and fungal biomass were analyzed. Structural equation model was used to study the control of biotic and abiotic factors in rhizosphere soil microbial community. The results showed that the pH value of soil had the strongest direct impact on the diversity and community structure of soil microorganisms, and had significant correlation with most of the C- and N-cycling functional microbial; organic carbon and vegetation also have strongest direct effect on fungal biomass, but all of them were not main factors influence soil microbial community structure, the elevation was the main controlling factor. In addition, the elevation mainly through indirect action affects the soil microbial community by driving distribution of plant species, soil organic carbon and pH value. This finding highlighted that elevation was the main predictor to determine rhizosphere microbial community structure but not vegetation in alpine tundra of Changbai Mountain.</description><identifier>ISSN: 2045-2322</identifier><identifier>EISSN: 2045-2322</identifier><identifier>DOI: 10.1038/s41598-020-69441-w</identifier><identifier>PMID: 32709903</identifier><language>eng</language><publisher>London: Nature Publishing Group UK</publisher><subject>631/158 ; 704/158 ; 704/172 ; Abiotic factors ; Biomass ; Community structure ; Geographical distribution ; Humanities and Social Sciences ; Microbiomes ; Microorganisms ; multidisciplinary ; Organic carbon ; Organic soils ; pH effects ; Plant species ; Rhizosphere ; Science ; Science (multidisciplinary) ; Soil microorganisms ; Soil properties ; Soil structure ; Taiga & tundra ; Tundra ; Vegetation</subject><ispartof>Scientific reports, 2020-07, Vol.10 (1), p.12442-12442, Article 12442</ispartof><rights>The Author(s) 2020</rights><rights>The Author(s) 2020. 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On the alpine tundra of the Changbai Mountain, different vegetation types, altitudes and soil properties were selected as driving factors of soil microbial community. Soil microbial community, C- and N-cycling functional microbial and fungal biomass were analyzed. Structural equation model was used to study the control of biotic and abiotic factors in rhizosphere soil microbial community. The results showed that the pH value of soil had the strongest direct impact on the diversity and community structure of soil microorganisms, and had significant correlation with most of the C- and N-cycling functional microbial; organic carbon and vegetation also have strongest direct effect on fungal biomass, but all of them were not main factors influence soil microbial community structure, the elevation was the main controlling factor. In addition, the elevation mainly through indirect action affects the soil microbial community by driving distribution of plant species, soil organic carbon and pH value. This finding highlighted that elevation was the main predictor to determine rhizosphere microbial community structure but not vegetation in alpine tundra of Changbai Mountain.</abstract><cop>London</cop><pub>Nature Publishing Group UK</pub><pmid>32709903</pmid><doi>10.1038/s41598-020-69441-w</doi><tpages>1</tpages><oa>free_for_read</oa></addata></record> |
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subjects | 631/158 704/158 704/172 Abiotic factors Biomass Community structure Geographical distribution Humanities and Social Sciences Microbiomes Microorganisms multidisciplinary Organic carbon Organic soils pH effects Plant species Rhizosphere Science Science (multidisciplinary) Soil microorganisms Soil properties Soil structure Taiga & tundra Tundra Vegetation |
title | Elevational is the main factor controlling the soil microbial community structure in alpine tundra of the Changbai Mountain |
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