Hydrological Fragmentation Driving Microbial Carbon Necromass Reduction in Columnar Sediments: Evidence from CAZyme Genomic Signatures in Cascade Reservoirs. [PDF]
Lu L +7 more
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Fertilization and Aridity Legacies Determine Soil Microbial Necromass Persistence Across Climates. [PDF]
Xu LX, Yu GH, Liu CQ, Guggenberger G.
europepmc +1 more source
Clay-organic matter interactions drive microbial necromass preservation in soils. [PDF]
Wang X +9 more
europepmc +1 more source
Effects of cover cropping on orchard soil microbiomes: Mechanisms and perspectives. [PDF]
Guan G, He P, Miao Y, Zhou G, Liu G.
europepmc +1 more source
An Interpretable Machine Learning Approach to Ecologically Characterize Soil Carbon and Structure From Multi-Kingdom Microbiome, Texture and Climate. [PDF]
Jeanne T, Prunier J, Hogue R, Droit A.
europepmc +1 more source
Contrasting Effects of Nitrogen Input on Soil Carbon Pools in Arid and Humid Climates. [PDF]
Jia S +15 more
europepmc +1 more source
Editorial for the Special Issue "Advances in Plant-Soil-Microbe Interactions". [PDF]
Zelaya-Molina LX +1 more
europepmc +1 more source
Soil aggregate and microbial traits mediate soil organic carbon accumulation in a paddy field under long-term elevated CO<sub>2</sub> and warming. [PDF]
Liu Y +5 more
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Ten-year <sup>15</sup>N labeling reveals the nitrogen retention threshold for maximizing carbon sequestration in a temperate forest. [PDF]
Liu B +6 more
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Microbial Influence on Carbon Storage and Trace Element Speciation in Restored and Natural Mangrove Sediments: A Synthesis of the Current Understanding. [PDF]
Uddin MM +6 more
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