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根直径对刺槐根系相关细菌微生物群落的选择及网络相互作用的影响

Effect of Root Diameter on the Selection and Network Interactions of Root-Associated Bacterial Microbiomes in Robinia pseudoacacia L.

作者信息

Zai Xiaoyu, Luo Wen, Bai Wenqing, Li Yuhua, Xiao Xiao, Gao Xuee, Wang Entao, Wei Gehong, Chen Weimin

机构信息

Shaanxi Key Laboratory of Agricultural and Environmental Microbiology, State Key Laboratory of Crop Stress Biology in Arid Areas, College of Life Sciences, Northwest A&F University, 3 Taicheng Road, Yangling, Xianyang, 712100, Shaanxi, People's Republic of China.

Department of Microbiology, School of Basic Medical Sciences, Hubei University of Medicine, Shiyan, 442000, Hubei, People's Republic of China.

出版信息

Microb Ecol. 2021 Aug;82(2):391-402. doi: 10.1007/s00248-020-01678-4. Epub 2021 Jan 15.

Abstract

The high plasticity of root morphology, physiology, and function influences root-associated microbiomes. However, the variation in root-associated microbiome diversity and structures in response to root diameter at different root depths remains poorly understood. Here, we selected black locust (Robinia pseudoacacia L.) as a model plant to investigate the selection and network interactions of rhizospheric and root endophytic bacterial microbiomes associated with roots of different diameters (1, 1-2, and > 2 mm) among root depths of 0-100 cm via the Illumina sequencing of the 16S rRNA gene. The results showed that the alpha diversity of the root-associated bacterial communities decreased with increasing root diameters among different root depths; fewer orders with higher relative abundance, especially in the endosphere, were enriched in association with coarse roots (> 2 mm) than fine roots among root depths. Furthermore, the variation in the enriched bacterial orders associated with different root diameters was explained by bulk soil properties. Higher co-occurrence network complexity and stability emerged in the rhizosphere microbiomes of fine roots than those of coarse roots, in contrast to the situation in the endosphere microbiomes. In particular, the endosphere of roots with a diameter of 1-2 mm exhibited the lowest network complexity and stability and a high proportion of keystone taxa (e.g., Cytophagia, Flavobacteriia, Sphingobacteriia, β-Proteobacteria, and γ-Proteobacteria), suggesting a keystone taxon-reliant strategy in this transitional stage. In summary, this study indicated that root diameter at different root depths differentially affects rhizospheric and endophytic bacterial communities, which implies a close relationship between the bacterial microbiome, root function, and soil properties.

摘要

根系形态、生理和功能的高度可塑性会影响与根相关的微生物群落。然而,不同根深度下,根系相关微生物群落多样性和结构随根直径的变化仍知之甚少。在此,我们选择刺槐(Robinia pseudoacacia L.)作为模式植物,通过对16S rRNA基因进行Illumina测序,研究0-100 cm根深度范围内不同直径(1、1-2和>2 mm)根系的根际和根内生细菌微生物群落的选择及网络相互作用。结果表明,不同根深度下,根系相关细菌群落的α多样性随根直径增加而降低;与细根相比,粗根(>2 mm)根深度范围内,尤其是在内皮层中,相对丰度较高的菌目较少。此外,与不同根直径相关的富集细菌菌目的变化可由土壤总体性质来解释。与粗根相比,细根的根际微生物群落出现了更高的共现网络复杂性和稳定性,这与内皮层微生物群落的情况相反。特别是,直径为1-2 mm的根系内皮层表现出最低的网络复杂性和稳定性以及较高比例的关键类群(如噬纤维菌纲、黄杆菌纲、鞘脂杆菌纲、β-变形菌纲和γ-变形菌纲),表明在这个过渡阶段存在一种依赖关键类群的策略。总之,本研究表明不同根深度下的根直径对根际和内生细菌群落有不同影响,这意味着细菌微生物群落、根系功能和土壤性质之间存在密切关系。

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