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Lithological Controls on Soil Aggregates and Minerals Regulate Microbial Carbon Use Efficiency and Necromass Stability-chemical protection stabilizes subsequent microbial necromass, both shaped by soil aggregates and minerals. Soils

Long-term manure application increases soil organic matter and aggregation, and alters microbial community structure and keystone taxa. Organic fertilizers play crucial role for SOM accumulation, aggregate formation and influence microbial

Fertilization effects on microbial community composition and aggregate formation in saline‐alkaline soil the microbial community towards taxa responsible for aggregate stability (e.g., Actinobacteria and Ascomycota

Fertilization effects on microbial community composition and aggregate formation in saline‐alkaline soil the microbial community towards taxa responsible for aggregate stability (e.g., Actinobacteria and Ascomycota

Nutrient addition reduces carbon sequestration in a Tibetan grassland soil: Disentangling microbial and physical controls grassland soil after four years of N and P additions. The soil aggregate size distribution, microbial

Nutrient addition reduces carbon sequestration in a Tibetan grassland soil: Disentangling microbial and physical controls aggregate size distribution, microbial community structure (lipid biomarkers), microbial C use efficiency

Contrasting effects of maize straw and its biochar on aggregation and soil organic matter stabilization and structure. However, the contribution of these amendments to microbial biomass and aggregate formation

Long-term manure application increases soil organic matter and aggregation, and alters microbial community structure and keystone taxa, respectively. Pig manure exerted the strongest effect on SOM content and aggregation, and influenced microbial

Microbial metabolic response to winter warming stabilizes soil carbon on the Tibetan Plateau under these conditions. This intriguing observation points to altered soil microbial

Microbial metabolic response to winter warming stabilizes soil carbon on the Tibetan Plateau under these conditions. This intriguing observation points to altered soil microbial

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