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Non-flooding conditions caused by water table drawdown alter microbial network complexity and decrease multifunctionality in alpine wetland soils

delete2024-08-01
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PRE
AI
E
Enze Kang
Z
Zhongqing Yan
李
李梦 (Meng Li)
L
Liang Yan
K
Kerou Zhang
X
Xiaodong Wang
A
Ao Yang
X
Xiaoming Kang *
崔
崔小勇 (Xiaoyong Cui) *
DOI:10.1016/j.envres.2024.119152delete
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摘要

摘要

En 中文
Several soil functions of alpine wetland depend on microbial communities, including carbon storage and nutrient cycling, and soil microbes are highly sensitive to hydrological conditions. Wetland degradation is often accompanied by a decline in water table. With the water table drawdown, the effects of microbial network complexity on various soil functions remain insufficiently understood. In this research, we quantified soil multifunctionality of flooded and non-flooded sites in the Lalu Wetland on the Tibetan Plateau. We employed highthroughput sequencing to investigate the microbial community responses to water table depth changes, as well as the relationships between microbial network properties and soil multifunctionality. Our findings revealed a substantial reduction in soil multifunctionality at both surface and subsurface soil layers (0-20 cm and 20-40 cm) in non-flooded sites compared to flooded sites. The alpha-diversity of bacteria in the surface soil of non-flooded sites was significantly lower than that in flooded sites. Microbial network properties (including the number of nodes, number of edges, average degree, density, and modularity of co-occurrence networks) exhibited significant correlations with soil multifunctionality. This study underscores the adverse impact of non-flooded conditions resulting from water table drawdown on soil multifunctionality in alpine wetland soils, driven by alterations in microbial community structure. Additionally, we identified soil pH and moisture content as pivotal abiotic factors influencing soil multifunctionality, with microbial network complexity emerging as a valuable predictor of multifunctionality.
Keyword:
Water table drawdown
Soil multifunctionality
Microbial community
Microbial diversity
Alpine wetland

期刊

Environmental Research 封面图
Environmental Research
IF:
7.7
论文数:
2.1W
被引数:
9.0W

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C
Chinese Academy of Forestry
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7.2K
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I
institute of botany, cas
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1.8K
论文数: 1.5K
被引数: 7
C
chinese academy of sciences
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56.7W
论文数: 45.0W
被引数: 704
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