4.6 Article

Effects of Plant and Soil Characteristics on Phyllosphere and Rhizosphere Fungal Communities During Plant Development in a Copper Tailings Dam

期刊

FRONTIERS IN MICROBIOLOGY
卷 11, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fmicb.2020.556002

关键词

plant and soil characteristics; phyllosphere and rhizosphere; fungal community; plant development; copper tailings dam

资金

  1. National Natural Science Foundation of China [31600308]
  2. fund for Shanxi 1331 Project, China (Ecological restoration of damaged soil system)
  3. Shanxi Province Science Foundation for Excellent Young Scholars [201901D211196]
  4. Scientific and Technological Innovation Programs of Higher Education Institutions in Shanxi [2019L0005]
  5. Shanxi Province Graduate Education Innovation Project [2019SY029]
  6. Shanxi Province Foundation for Returnees [2016006]
  7. Higher Education Institution Project of Shanxi Province [20181401]

向作者/读者索取更多资源

Interactions between plants and microbes can affect ecosystem functions, and many studies have demonstrated that plant properties influence mutualistic microorganisms. Here, high-throughput sequencing was used to investigate rhizosphere and phyllosphere fungal communities during different plant development stages. Results demonstrated that phyllosphere and rhizosphere fungal community structures were distinct during all developmental stages while they were mediated separately by plant carbon and soil sulfur. Comparatively, the effect of root properties on phyllosphere fungal diversity was greater than soil properties. Moreover, rhizosphere fungal networks ofBothriochloa ischaemumwere more complex than phyllosphere fungal networks. This study demonstrated that the effect of plant and soil traits on phyllosphere and rhizosphere fungal communities could potentially be significant, depending on the applicable environmental condition and plant development stage. Although links between phyllosphere and rhizosphere communities have been established, further studies on functional fungal groups during phytoremediation processes are necessary. This study comprehensively analyzed dynamic relationships between phyllosphere and rhizosphere fungal communities during different plant development stages in a polluted environment. These fungal communities were determined to be expedient to the development and utilization of beneficial microbial communities during different development stages, which could more effectively help to stabilize and reclaim contaminated copper tailings soil.

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