Results 71 to 80 of about 1,296 (160)
Four years of climate warming facilitates an increase in fungal necromass in coastal wetland soils
Microbial necromass is a vital component of soil organic carbon (SOC) stock and substantially influences soil carbon cycling. The responses of microbial necromass carbon (MNC) in coastal wetland soils to global climate warming and the factors influencing
Jine Wei +9 more
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Vegetation restoration has been proved as an effective strategy to increase soil organic carbon (SOC) sequestration in degraded ecosystems. However, due to different vegetation restoration practices and climate zones, changes of SOC content, dynamics ...
Xiangjun Pei +14 more
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Ecological restoration can effectively boost soil fertility and microbial activity in degraded ecosystems. Yet, its impact on the relationship between soil-specific enzyme activity (SSEA) and microbial necromass carbon in barren sandy soils is still ...
Xiaohan Zhou +5 more
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Nitrogen-fixing shrubs have been planted worldwidely due to their excellent performances in soil improvement and economic benefits. However, their role and mechanisms on soil organic carbon (SOC) sequestration are unclear.
Nan Huang +5 more
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Converting crop residues into biochar and subsequently incorporating it into soils is a promising strategy to improve carbon sequestration in agroecosystems.
Yuhan Yuan +8 more
doaj +1 more source
Oil palm-based agroforestry systems (AFS) can promote soil organic carbon (SOC) sequestration, but the links among plant richness, microbial communities, and SOC persistence remain only partially understood.
Alberto Vinicius S. Rocha +9 more
doaj +1 more source
Ecosystem-Dependent Responses of Microbial Necromass Carbon to Warming Are Governed by the Balance Between Necromass Formation and Decomposition. [PDF]
Lyu C +7 more
europepmc +1 more source
Responses of soil microbial community diversity to thinning and replanting, and their effects on microbial necromass carbon accumulation efficiency. [PDF]
Huang H +5 more
europepmc +1 more source
Long-Term Organic Fertilization Drives Soil Organic Carbon Accumulation in Black Soil Through Microbial Necromass Carbon and CAZyme-Mediated Carbon Turnover. [PDF]
Liu Y +10 more
europepmc +1 more source
Soil microbial necromass carbon contributions to soil organic carbon after three decades of citrus cultivation. [PDF]
Mei T, Zeng Q, Chen R, Tan W.
europepmc +1 more source

