The difference in soil acid phosphatase activity between two artificial forests dominated by #LeguminousSpecies and non-leguminous species gradually disappeared after long-term #NitrogenDeposition, and this process was accelerated under high N addition in a #SubtropicalForest.

#Phosphorus_acquiringAdvantage | #PhosphorusLimitation

https://doi.org/10.1093/jpe/rtaf163

【🎉Latest accepted article】
Tree-mediated soil and #LitterProperties drive soil fauna community composition by reshaping predators and saprophages

#Biodiversity | #FunctionalGroups | #LitterDecomposition | #ReciprocalTransplantExperiment | #SubtropicalForest

https://doi.org/10.1093/jpe/rtag036

Fallen Tree: The Foundation of Seeing

(This post is being modified)

https://gregurbano.com/2025/12/18/fallen-tree-the-foundation-of-seeing/

【🎉Latest accepted article】
Available nutrients and microbial alpha diversity contribute to #CO2Emission in a #SubtropicalPrimaryForest: insight from a 4 m soil vertical profile

#SubtropicalForest | #SoilDepth | #SoilProperties | #MicrobialDiversity

https://doi.org/10.1093/jpe/rtaf175

【🎉Latest accepted article】
Long-term high #NitrogenDeposition accelerates the disappearance of the #Phosphorus_acquiringAdvantage of #LeguminousSpecies in a #SubtropicalForest

#PhosphorusLimitation

https://doi.org/10.1093/jpe/rtaf163

The relationship between structure and functions of #SoilMicrobialCommunities and tree composition with #KeystoneMicrobes VS that with #RareMicrobes in a #SubtropicalForest.
1️⃣The former is more closely related.
2️⃣Keystone microbes have better functionality and stability.
https://doi.org/10.1093/jpe/rtae105
By analyzing the #SecondarySuccessionDynamics of a #SubtropicalForest in Southeast China over 68 years, Shan Rao et al. showed that exploring the contribution of #SpeciesColonization and #Extinction is likely the key to gaining a more mechanistic understanding of the drivers of #CommunityPhylogenetic and #FunctionalStructures over succession.
https://doi.org/10.1093/jpe/rtad008
The study of Xian Wu et al. revealed that #KeystoneTaxa made a significantly greater contribution than #RareTaxa in all comparisons of the all comparisons of #MicrobialFunctions and stability in a #SubtropicalForest based on #Co-occurrenceNetworkAnalyses.
https://doi.org/10.1093/jpe/rtae105
The study by Brian Njoroge et al. is in response to the threat posed by increased #Droughts due to #GlobalClimateChange. Droughts are increasing in frequency and intensity in the #DinghushanBiosphereReserve, seasonal droughts drive up #Carbon gain in a #SubtropicalForest according to the measured eddy flux and soil moisture content data.
https://doi.org/10.1093/jpe/rtac088