PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
May 6, 2026Diversity0 citationsOpen Access

Fungal Diversity and Environmental Drivers in Soil and Litter Across a Pinus cembroides Forest Management Gradient in Its Southern Range Edge

View Full Paper
JJJosé Alfredo Jiménez‐RubioBÁBernardo ÁguilaRMRosario Medel

Key Points

  • This study aims to understand how environmental drivers influence fungal communities in Pinus cembroides forests across different management types.
  • Characterized soil fungal communities from mineral soil and litter in different forest conditions.
  • Evaluated effects of climatic, edaphic, and vegetation variables on community composition.
  • Conducted distance-based redundancy analysis to understand community associations.
  • Found strong vertical stratification between litter and mineral soil.
  • Discovered higher richness of soil fungal communities in mature forests compared to disturbed areas.
  • Identified that fungal community composition was primarily linked to moisture content and other environmental factors.

Abstract

Pinus cembroides is among the pine species best adapted to arid and semi-arid ecosystems in the Americas, and its potential distribution is projected to expand under climate change. However, the success of this expansion will depend on belowground processes, particularly the role of soil fungal communities, which in subtropical forests are key for nutrient cycling and plant resilience to environmental stress. Yet their vertical stratification and responses to forest management remain poorly understood, especially in semi-arid systems. Here, we characterized fungal communities from mineral soil and litter associated with P. cembroides across a forest management gradient (mature forests, disturbed stands, and pine plantations) at the southern limit of the species’ distribution. We evaluated the influence of climatic, edaphic, vegetation structure, and microbial activity variables (soil moisture, precipitation, pH, tree density, vegetation cover, temperature and extracellular enzyme activity) on fungal community composition. We found strong vertical stratification between litter and mineral soil. When both substrates were analyzed together as an integrated soil profile, forest condition had no significant effect on alpha diversity; however, substrate-specific analyses revealed higher richness in mineral soil of mature forests compared to disturbed and plantation sites, while litter communities showed no significant differences among conditions. Litter communities were characterized by saprotrophic and endophytic fungi, whereas mineral soil communities were enriched in ectomycorrhizal and other root-associated taxa. Distance-based redundancy analysis indicated that fungal community composition was primarily associated with moisture content, precipitation, pH, tree density, and carbon-degrading enzyme activity. These results highlight the importance of substrate differentiation and environmental gradients in shaping fungal communities in semi-arid pine forests, and provide a baseline for understanding how management and climate change influence soil fungal diversity and ecosystem functioning.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Jiménez‐Rubio et al. (2026) studied this question.

synapsesocial.com/papers/69fa989404f884e66b532501https://doi.org/10.3390/d18050269
Ask AI
Helpful
Bookmark
Share
View Full Paper