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钛铁矿矿区不同植物根际土壤真菌群落的组装机制与功能适应性

Assembly Mechanisms and Functional Adaptations of Soil Fungal Communities of Different Plant Rhizospheres in Ilmenite Mining Area.

作者信息

Chen Sumin, Liu Bingliang, Zhang Yunfeng, Peng Lianxin, Zou Liang, Cheng Jie, Li Qiang

机构信息

Key Laboratory of Coarse Cereal Processing, Ministry of Agriculture and Rural Affairs, Sichuan Engineering & Technology Research Center of Coarse Cereal Industrialization, School of Food and Biological Engineering, Chengdu University, Chengdu 610106, China.

出版信息

J Fungi (Basel). 2025 Feb 20;11(3):165. doi: 10.3390/jof11030165.

Abstract

This study investigated the mechanisms of structural assembly and functional adaptations of fungal communities in the rhizosphere soils of seven different plants grown in the ilmenite zone. We analyzed changes in the rhizosphere soil fungal communities using ITS sequencing. The results revealed that different plants affected the properties of the rhizosphere soil. The contents of organic matter, total nitrogen, and total potassium in the rhizosphere soil exhibited significant variations compared to the soil that was not occupied by plants. Soil fungal composition analysis revealed that and were the dominant phyla in the soil of this mining area. At the genus level, compared to the mineral soil without plants, the proportion of increased in the rhizosphere soils of different plants, while the proportion of decreased. Alpha diversity studies revealed that fungal diversity in the rhizospheres of different plants changed significantly. Beta diversity studies showed a significant differentiation in the fungal community structure of different plant rhizosphere soils compared to the KB group. The FunGuild predictions indicated that different plant rhizosphere soils are enriched with different guilds and trophic patterns of fungi. In addition, we found that soil physical and chemical properties were significantly correlated with the abundance and diversity of fungal communities. The above results indicate that plant species and soil physicochemical properties are important factors influencing the assembly of soil fungal communities in the rhizosphere. This research provides insights into the assembly mechanisms and functional adaptations of fungal community structures in the rhizosphere soils of seven plant species in ilmenite iron mining areas. This helps us to screen plant and fungal community assemblages that can promote soil restoration in ilmenite mining areas and provide a theoretical basis for future ecological restoration in ilmenite areas.

摘要

本研究调查了在钛铁矿区域生长的七种不同植物根际土壤中真菌群落的结构组装和功能适应机制。我们使用ITS测序分析了根际土壤真菌群落的变化。结果表明,不同植物影响根际土壤性质。与未被植物占据的土壤相比,根际土壤中有机质、全氮和全钾含量呈现出显著差异。土壤真菌组成分析表明, 和 是该矿区土壤中的优势门类。在属水平上,与无植物的矿质土壤相比,不同植物根际土壤中 的比例增加,而 的比例下降。α多样性研究表明,不同植物根际的真菌多样性发生了显著变化。β多样性研究表明,与KB组相比,不同植物根际土壤的真菌群落结构存在显著差异。FunGuild预测表明,不同植物根际土壤富含不同的真菌功能群和营养模式。此外,我们发现土壤理化性质与真菌群落的丰度和多样性显著相关。上述结果表明,植物种类和土壤理化性质是影响根际土壤真菌群落组装的重要因素。本研究为钛铁矿矿区七种植物根际土壤真菌群落结构的组装机制和功能适应提供了见解。这有助于我们筛选出能够促进钛铁矿矿区土壤恢复的植物和真菌群落组合,并为钛铁矿区域未来的生态恢复提供理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ba2/11942796/7a59d19d6d76/jof-11-00165-g001.jpg

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