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High Salinity Inhibits Soil Bacterial Community Mediating Nitrogen Cycling
Revealing the response of the soil bacterial community to external environmental disturbances is an important but poorly understood topic in microbial ecology. In this study, we evaluated the effect of high salinity on the bacterial community composition
Qiaoyun Huang, Wenjie Wan, Wenli Chen
exaly +2 more sources
Impact of yak excreta on soil bacterial community in alpine marsh under warming conditions [PDF]
Livestock excreta and climate warming are two main disturbances of wetlands embedded in grazing lands, resulting in long-lasting changes in soil microorganisms.
Xuelian Guo +5 more
doaj +2 more sources
Grazing exclusion by fencing is a common and effective grassland management strategy for degraded grassland restoration. Soil bacteria, the most important decomposers of soil organic matter, is the linkage between plant and soil.
Jinlan Wang +7 more
doaj +2 more sources
Soil bacterial communities play crucial roles in ecosystem functions and biogeochemical cycles of fundamental elements and are sensitive to environmental changes.
Zhi Yu +6 more
doaj +2 more sources
Effects of short-term nitrogen and phosphorus addition on soil bacterial community of different halophytes [PDF]
Soil microbial community composition and diversity are often affected by nutrient enrichment, which may influence soil microbes to affect nutrient cycling and plant community structure.
Zehao Zhang +6 more
doaj +2 more sources
Variation in soil bacterial community characteristics inside and outside the West Ordos National Nature Reserve, northern China [PDF]
Nature reserves are crucial for protecting biological habitats and maintaining biodiversity. Soil bacterial community plays an irreplaceable role in the structure and function of ecosystem.
Pu Guo +6 more
doaj +2 more sources
Soil properties and root traits jointly shape fine-scale spatial patterns of bacterial community and metabolic functions within a Korean pine forest [PDF]
Spatial heterogeneity of soil bacterial community depends on scales. The fine-scale spatial heterogeneity of bacterial community composition and functions remains unknown.
Jialing Teng +3 more
doaj +2 more sources

