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September 28, 2025Communications Biology12 citationsOpen Access

Divergent community assembly processes and multifunctionality contributions of abundant and rare soil bacteria during a 53-year restoration in the Tengger Desert, China

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QHQiandong HouRXRui XiaBYBiao Yuan

Key Points

  • Abundant soil bacteria significantly enhance multiple nutrient cycling functions during restoration.
  • Richness of both abundant and rare bacterial taxa increased over a 53-year restoration period.
  • Stochastic processes primarily govern abundant bacterial communities, while rare communities are shaped by homogeneous selection.
  • A dual mechanism exists linking soil bacteria to ecosystem functions, with abundant taxa engaging in multiple interactions.

Abstract

Abstract Soil microbial communities play vital roles in driving ecosystem restoration. However, understanding of the successional dynamics of abundant and rare bacterial subcommunities and their relationships with ecosystem multifunctionality during restoration, particularly in desertified ecosystems, remains limited. Here, we examined the succession of abundant, intermediate, and rare bacterial subcommunities over a 53-year restoration chronosequence following the implementation of straw checkerboard barriers in the Tengger Desert, China. Our findings revealed that the establishment of straw checkerboard barriers significantly increased the richness of abundant, intermediate, and rare taxa over time. However, our results indicated a divergence in ecological processes underpinning the successional dynamics of soil bacterial communities. Stochastic processes and homogeneous selection primarily governed the assembly of abundant and rare subcommunities, respectively, as evidenced by fundamental differences in their niche breadth. More importantly, we further uncovered a dual mechanism underlying the relationships between soil bacterial communities and ecosystem multifunctionality. Abundant taxa were integrally associated with multiple nutrient cycling-related functions simultaneously, likely mediated through coordinated environmental responses or potential interspecies connections, whereas rare taxa were more linked to individual functions independently. These findings deepen our understanding of the successional dynamics of soil microbial communities and the microbe-ecosystem multifunctionality relationships in desert restoration.

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Cite This Study

Hou et al. (2025) studied this question.

synapsesocial.com/papers/68d9393b00263befa47b3037https://doi.org/10.1038/s42003-025-08764-8
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