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随机性主导的稀有真菌内生菌有助于人参属植物的共存稳定性和皂苷积累。

Stochasticity-dominated rare fungal endophytes contribute to coexistence stability and saponin accumulation in Panax species.

作者信息

Liu Ye, Shi Liping, Hong Fei, Wei Guangfei, Jiang Zhenzhen, Wei Xiuye, Peng Jingjing, Zhang Guozhuang, Dong Linlin

机构信息

College of Resources and Environmental Sciences, Key Laboratory of Plant-Soil Interaction, Ministry of Education, National Academy of Agriculture Green Development, China Agricultural University, Beijing, 100193, China.

State Key Laboratory for Quality Ensurance and Sustainable Use of Dao-Di Herbs, Institute of Chinese Materia Medica, China Academy of Chinese Medical Sciences, Beijing, 100700, China.

出版信息

Environ Microbiome. 2024 Nov 20;19(1):93. doi: 10.1186/s40793-024-00645-7.

Abstract

Fungal communities inhabiting plant tissues are complex systems of inter-species interactions, consisting of both the "abundant biosphere" and "rare biosphere". However, the composition, assembly, and stability of these subcommunities, as well as their contributions to productivity remain unclear. In this study, the taxonomic and functional composition, co-occurrence, and ecological assembly of abundant and rare fungal subcommunities in different tissues of three Panax species were investigated. Abundant subcommunities were dominated by potential plant pathogens belonging to Microbotryomycetes, while saprotrophic fungi like Agaricomycetes and Mortierellomycetes were more prevalent in rare subcommunities. The rare taxa played a central role in upholding the stability of the fungal networks as driven by Dothideomycetes and Sordariomycetes. Homogeneous selection played a larger role in the assembly of abundant fungal subcommunities compared to the rare counterparts, which was more dominated by stochastically ecological drift in all plant species. Rare biospheres played a larger role in the accumulation of saponin compared to their abundant counterparts, especially in the leaf endosphere, which was mainly affected by environmental factors (Mg, pH, OC, and etc.). Furthermore, we found that rare species belonging to unidentified saprotrophs were associated with saponin formation. This study provides hypotheses for future experiments to understand mechanisms accounting for the variations in the composition and function of rare fungal subcommunities across different Panax species.

摘要

栖息于植物组织中的真菌群落是种间相互作用的复杂系统,由“丰富生物圈”和“稀有生物圈”组成。然而,这些亚群落的组成、组装和稳定性,以及它们对生产力的贡献仍不清楚。在本研究中,对三种人参属植物不同组织中丰富和稀有真菌亚群落的分类和功能组成、共现情况及生态组装进行了研究。丰富亚群落以属于微座孢菌纲的潜在植物病原体为主,而像伞菌纲和被孢霉纲这样的腐生真菌在稀有亚群落中更为普遍。稀有分类群在维持由座囊菌纲和粪壳菌纲驱动的真菌网络稳定性方面发挥着核心作用。与稀有真菌亚群落相比,均匀选择在丰富真菌亚群落的组装中发挥了更大作用,在所有植物物种中,稀有真菌亚群落更多地受随机生态漂变主导。与丰富亚群落相比,稀有生物圈在皂苷积累中发挥了更大作用,尤其是在叶内圈,这主要受环境因素(镁、pH值、有机碳等)影响。此外,我们发现属于未鉴定腐生菌的稀有物种与皂苷形成有关。本研究为未来实验提供了假设,以了解不同人参属植物中稀有真菌亚群落组成和功能变化的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92c5/11580563/366caff2680d/40793_2024_645_Fig1_HTML.jpg

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