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桃金娘科物种和驱动因素对落叶阔叶林中根际细菌分化的影响。

Influence of Rosaceous Species and Driving Factors on Differentiation of Rhizospheric Bacteria in a Deciduous Broad-Leaved Forest.

机构信息

School of Ecology and Environment, Anhui Normal University, 189# South Jiuhua Road, Yijiang District, Wuhu, 241002, China.

Nanjing Institute of Environmental Sciences, Ministry of Environmental Protection of the People's Republic of China, Nanjing, 210042, China.

出版信息

Curr Microbiol. 2022 Oct 17;79(12):368. doi: 10.1007/s00284-022-03049-3.

Abstract

Understanding plant-microbe interactions could provide the basis for improved phytoremediation, microbial resource utilization, and secondary metabolite production. Rhizosphere bacterial communities are strongly influenced by abiotic factors such as soil nutrient availability and the composition of such communities exhibits differentiation under different host plants. In a deciduous broad-leaved forest in Anhui Province, eastern China, the rhizospheric bacteria of three different tree species of the Rosaceae family (Sorbus alnifolia, Cerasus serrulata, and Photinia beauverdiana) were studied, with the bacteria of the bulk soil as controls. Bacterial community composition was determined using the Illumina platform for high-throughput sequencing of 16S rRNA genes. The results showed that the bacterial community composition varied between rhizospheric and bulk soils, and dominant bacterial phyla as Proteobacteria, Actinobacteria, and Acidobacteria were found in both soils. Information on predicted functional genes and pathways revealed significant differences between rhizospheric and bulk soil bacteria. It provided ample evidence for the different metabolic characteristics of the rhizosphere bacterial communities of the three tree species. Electrical conductivity (22.72%), total phosphorus concentration (21.89%), and urease activity (22%) were the main drivers for changes in the composition of the rhizosphere bacterial communities from the three tree species.

摘要

了解植物-微生物相互作用可为改进植物修复、微生物资源利用和次生代谢产物生产提供基础。根际细菌群落受非生物因素(如土壤养分供应)强烈影响,并且这些群落的组成在不同的宿主植物下表现出分化。在中国东部安徽省的落叶阔叶林中,研究了蔷薇科三种不同树种(花楸、樱桃和石楠)的根际细菌,以土壤的细菌为对照。使用 Illumina 平台高通量测序 16S rRNA 基因来确定细菌群落组成。结果表明,根际和土壤细菌的群落组成存在差异,在两种土壤中均发现了优势细菌门,如变形菌门、放线菌门和酸杆菌门。预测功能基因和途径的信息显示根际和土壤细菌之间存在显著差异。这为三种树种的根际细菌群落的不同代谢特征提供了充分的证据。电导率(22.72%)、总磷浓度(21.89%)和脲酶活性(22%)是三种树种根际细菌群落组成变化的主要驱动因素。

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