Community leaf nutrient characteristics drive soil carbon stabilization by regulating #SoilNutrient and #MicrobialCommunity in a subtropical forest plantation.

#Biodiversity_ecosystemFunctioning | #PhospholipidFattyAcidAnalysis | #MicrobialCommunityComposition | #EnzymeActivities

https://doi.org/10.1093/jpe/rtaf135

【🎉Latest accepted article】
Aridity modulates the fertile island effect of toxic weed Stellera chamaejasme in grasslands

#PoisonousWeed | #PlantExpansion | #SoilNutrient | #Plant_soilFeedback | #ClimateGradient

https://doi.org/10.1093/jpe/rtaf202

Aridity modulates the fertile island effect of toxic weed Stellera chamaejasme in grasslands

Abstract. The expansion of toxic weeds represents a key symptom of grassland degradation and exerts profound effects on ecosystem structure and function. T

OUP Academic

【🎉Latest accepted article】
Community leaf nutrient characteristics drive soil carbon stabilization by regulating #SoilNutrient and microbial community in a subtropical forest plantation

#Biodiversity_ecosystemFunctioning | #PhospholipidFattyAcidAnalysis | #MicrobialCommunityComposition | #EnzymeActivities

https://doi.org/10.1093/jpe/rtaf135

Community leaf nutrient characteristics drive soil carbon stabilization by regulating soil nutrient and microbial community in a subtropical forest plantation

Abstract. Tree species diversity has been found to promote soil organic carbon (SOC) in forests, but its effects on SOC stability have been poorly studied.

OUP Academic
New publication: #SoilpH determines the shift of key #microbialenergy metabolic pathways associated with #soilnutrient cycle, by @KuramaeEiko and others. #climatechange #greenhousegas #nitrogenmetabolism
https://doi.org/10.1016/j.apsoil.2025.105992