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Related Experiment Video

Updated: Mar 14, 2026

Exploring the Root Microbiome: Extracting Bacterial Community Data from the Soil, Rhizosphere, and Root Endosphere
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Root Fungal Endophyte Communities Differ Among Plant Functional Groups in an Alpine Meadow.

Miao Dong1, Shucun Sun1

  • 1Department of Ecology, School of Life Sciences, Nanjing University, Nanjing 210023, China.

Biology
|March 13, 2026
PubMed
Summary

Plant functional groups (PFGs) harbor distinct root fungal endophyte (RFE) communities, with root nitrogen concentration being a key predictor. These findings highlight the importance of microbial partners in understanding plant diversity and ecosystem resilience.

Keywords:
nitrogen concentrationplant functional groupsroot biomassroot fungal endophyteroot lengthspecies abundance

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Area of Science:

  • Ecology
  • Microbiology
  • Plant Science

Background:

  • Root fungal endophyte (RFE) communities vary among plant species.
  • Differences in RFE communities among plant functional groups (PFGs) are not well understood.
  • PFGs have divergent root traits and abundances, suggesting potential for unique RFE associations.

Purpose of the Study:

  • To investigate RFE community composition across different PFGs in alpine meadows.
  • To determine if PFGs harbor distinct RFE communities.
  • To identify plant traits that influence RFE community structure.

Main Methods:

  • High-throughput sequencing was used to analyze RFE communities.
  • Forty-five alpine meadow species representing four PFGs (grasses, legumes, dicot forbs, monocot forbs) were studied.
  • RFE community composition was correlated with root traits (nitrogen concentration, length, biomass) and species abundance.

Main Results:

  • Significant differences in RFE species composition were observed among PFGs, particularly between dicot forbs, monocot forbs, and grasses.
  • Ascomycota was the dominant phylum, except in monocot forbs.
  • Symbiotic OTUs were more abundant in legumes, with differing functional composition compared to grasses.
  • Root nitrogen concentration was the strongest predictor of RFE variation, followed by root length, biomass, and species abundance.

Conclusions:

  • PFGs harbor distinct RFE communities, challenging conventional PFG classifications.
  • Root traits, especially nitrogen concentration, significantly shape RFE communities.
  • Integrating microbial partners is crucial for understanding plant functional diversity and ecosystem resilience in alpine environments.