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榛树根际内生菌和根际土壤中真菌群落及共生网络的特征

Characteristics of the Fungal Communities and Co-occurrence Networks in Hazelnut Tree Root Endospheres and Rhizosphere Soil.

作者信息

Ma Wenxu, Yang Zhen, Liang Lisong, Ma Qinghua, Wang Guixi, Zhao Tiantian

机构信息

Key Laboratory Tree Breeding and Cultivation of the National Forestry and Grassland Administration/Research Institute of Forestry, Chinese Academy of Forestry, Beijing, China.

State Key Laboratory of Tree Genetics and Breeding, Beijing, China.

出版信息

Front Plant Sci. 2021 Dec 8;12:749871. doi: 10.3389/fpls.2021.749871. eCollection 2021.

Abstract

Hazelnut has gained economic value in China in recent years, but its large-scale planting and research started later than other countries. Conducting basic research on hazelnut trees requires studying their related microorganisms. Here, we used high-throughput DNA sequencing to quantify the fungal communities in the root endospheres and rhizosphere soil of four hazelnut species. Fungal diversity in the rhizosphere soil was significantly higher than that in the root endospheres. Rhizosphere soil had more Mortierellomycota, and the fungal community compositions differed among the four hazelnut species. The root endospheres, especially those of the Ping'ou ( × ) trees, contained more ectomycorrhizal fungi. The co-occurrence networks in the rhizosphere soil were more sophisticated and stable than those in the root endospheres, even when the root endospheres had higher modularity, because the structural differentiation of the root endospheres differed from that of the rhizosphere soil. Two-factor correlation network analysis and linear regression analysis showed that the total organic carbon was the main environmental factor affecting the fungal communities. Our study revealed the community compositions, functional predictions, and co-occurrence network structural characteristics of fungi in hazelnut root endospheres and rhizosphere soil. We also examined the potential keystone taxa, and analyzed the environmental factors of the dominant fungal community compositions. This study provides guidance for the growth of hazelnut and the management of hazelnut garden, and provides an insight for future development of fungal inoculants to be used in hazelnut root.

摘要

近年来,榛子在中国已具有经济价值,但其大规模种植和研究起步晚于其他国家。对榛树进行基础研究需要研究其相关微生物。在此,我们使用高通量DNA测序来量化四种榛子物种根内圈和根际土壤中的真菌群落。根际土壤中的真菌多样性显著高于根内圈。根际土壤中有更多的被孢霉门,且四种榛子物种的真菌群落组成不同。根内圈,尤其是平欧(×)榛的根内圈,含有更多的外生菌根真菌。根际土壤中的共现网络比根内圈中的更复杂、更稳定,即使根内圈具有更高的模块性,因为根内圈的结构分化与根际土壤不同。双因素相关网络分析和线性回归分析表明,总有机碳是影响真菌群落的主要环境因素。我们的研究揭示了榛树根内圈和根际土壤中真菌的群落组成、功能预测和共现网络结构特征。我们还研究了潜在的关键类群,并分析了优势真菌群落组成的环境因素。本研究为榛子生长和榛园管理提供指导,并为未来开发用于榛树根的真菌接种剂提供见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cccc/8692873/19b2e2e02248/fpls-12-749871-g001.jpg

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