4.7 Article

Halophytes increase rhizosphere microbial diversity, network complexity and function in inland saline ecosystem

期刊

SCIENCE OF THE TOTAL ENVIRONMENT
卷 831, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.scitotenv.2022.154944

关键词

Salinization; Halophytes rhizosphere; Microbial diversity; Network complexity; Microbial functions; Inland saline ecosystem

资金

  1. Strategic Priority Research Programof the Chinese Academy of Sciences [XDA23070202, XDB40020000]
  2. National Natural Science Foundation of China [41977105, 41977068]
  3. Chinese Academy of Sciences [QYZDB-SSW-DQC039]

向作者/读者索取更多资源

This study investigated the diversity, composition, and co-occurrence networks of rhizosphere bacteria and fungi in six halophytes and bulk soils in a semiarid inland saline ecosystem. The results showed that the enhanced association between fungi and bacteria increased the complexity of microbial co-occurring networks in halophytic rhizosphere, contributing to higher microbial functions in this saline ecosystem.
Salinization is an important global environmental problem influencing sustainable development of terrestrial ecosystems. Salt-tolerant halophytes are often used as a promising approach to remedy the saline soils. Yet, how rhizosphere microbes' association and functions vary with halophytes in saline ecosystems remains unclear, restricting our ability to assess the role of halophytes in remedying saline ecosystems. Herein, we examined bacterial and fungal diversities, compositions, and co-occurrence networks in the rhizospheres of six halophytes and bulk soils in a semiarid inland saline ecosystem, and related these parameters to microbial functions. The microbiomes were more diverse and complex and microbial activity and residues were higher in rhizospheres than bulk soils. The connections of taxa in the rhizosphere microbial communities increased with fungi-fungi and bacteria-fungi connections and fungal diversity. The proportion of the fungi-related central connections were larger in rhizospheres (13-73%) than bulk soils (3%). Moreover, microbial activity and residues were significantly correlated with microbial composition and co-occurrence network complexity. These results indicated that enhanced association between fungi and bacteria increased microbial co-occurring network complexity in halophytes rhizosphere, which contributed to the higher microbial functions (microbial activities and residue) in this inland saline ecosystem.

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