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May 12, 2026Communications Biology10 citationsOpen Access

Biogeography and community stability of leaf endophytic diazotrophs in mangrove Kandelia obovata

QHQinghua HouRNRajapakshalage Thashikala NethminiFQFeng Qi

Key Points

  • This study aims to investigate the distribution and stability of leaf endophytic diazotrophs in coastal mangrove ecosystems.
  • Examined diazotrophic communities in Kandelia obovata across various regions in China.
  • Analyzed influences of soil nutrients, climatic variables, and host traits on community assembly.
  • Identified Rhizobiales as the most abundant group within the diazotrophic communities.
  • Community assembly is mainly driven by stochastic processes and dispersal limitations.
  • Soil total sulfur (TS) significantly impacts diazotroph composition and community stability.
  • Low TS environments support more stable microbial networks compared to higher TS areas.

Abstract

The leaf endosphere hosts diazotrophs vital for plant health and ecosystem resilience in saline environments. However, the geographic pattern and stability of the diazotrophic community in coastal salt marshes ecosystems are poorly understood. In this study, we examine the biogeographic distribution, assembly processes and community stability of leaf endophytic diazotrophs in the mangrove species Kandelia obovata across multiple regions in China. Our findings reveal that Rhizobiales are the most abundant in the diazotrophic communities. Community assembly is largely governed by stochastic processes, with dispersal limitations playing a dominant role. Soil nutrients emerge as the dominant factor influencing diazotroph composition, surpassing climatic variables and host traits. Notably, soil total sulfur (TS) serves as a key environmental factor shaping the diazotrophic community structure, with low TS environments supporting more stable microbial networks. These findings reveal ecological drivers and adaption strategies of endophytic diazotrophic communities in mangrove ecosystems, emphasizing the influence of nutrients dynamics in leaf endophytic microbial assembly under environmental changes.

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Cite This Study

Hou et al. (2026) studied this question.

synapsesocial.com/papers/6a02c2fdce8c8c81e9640561https://doi.org/10.1038/s42003-026-10168-1
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