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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

Microbial interactions for nutrient acquisition in soil: Miners, scavengers, and carriers broad functional groups, namely miners, scavengers and carriers, to disentangle the intricate microbial

Organic fertilizers incorporation increased microbial necromass accumulation more than mineral fertilization in paddy soil via altering microbial traits universally greatest in NPK + M. The microbial necromass C was little affected by 31-year mineral

Archaeal lipids in soils and sediments: Water impact and consequences for microbial carbon sequestrationThe mineral protection of microbial necromass is critical for soil carbon stabilization. The water

Nitrogen addition to soil affects microbial carbon use efficiency: Meta-analysis of similarities and differences in 13C and 18O approaches of organic carbon (C) transformation by and incorporation into microbial biomass and shapes C cycling

Microbial community mediates hydroxyl radical production in soil slurries by iron redox transformation. It is currently unknown which interactions between microbial communities and iron (Fe) minerals produce hydroxyl

Fertilization shapes microbial life strategies, carbon and nitrogen metabolic functions in Camellia oleifera soilMineral and organic fertilizers as well as microbial inoculations are crucial to maintain

Unlocking Mechanisms for Soil Organic Matter Accumulation: Carbon Use Efficiency and Microbial Necromass as the KeysSoil microorganisms transform plant-derived C (carbon) into particulate organic C (POC) and mineral

Decoupling of soil organic carbon and nutrient mineralization across plant communities as affected by microbial stoichiometry. This indicates that specific SOM pools were mineralized depending on plant communities and microbial

Land use affects soil biochemical properties in Mt. Kilimanjaro region and the following microbial parameters: microbial biomass C, mineralization quotient, metabolic quotient

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