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探索变种的微生物生态系统:内生菌和根际土壤微生物的综合分析。

Exploring the microbial ecosystem of var. : a comprehensive analysis of endophytes and rhizospheric soil microorganisms.

作者信息

Tang Yuanjiang, Zhou Sixuan, Xiao Yuanpin, Zhang Tao, Tao Xiaoyan, Shi Kaizhi, Lu Yuxi, Yang Yueqian, Zhao Yu, Zhao Tian

机构信息

Institute of Animal Husbandry and Veterinary Research, Guizhou Academy of Agricultural Sciences, Guiyang, China.

Guizhou Institute of Technology, Guiyang, China.

出版信息

Front Microbiol. 2024 Mar 13;15:1338956. doi: 10.3389/fmicb.2024.1338956. eCollection 2024.

Abstract

Endophytic and rhizospheric microorganisms associated with plants play a crucial role in plant health, pest and disease defense, and fruit yield by actively participating in the plant's adaptation to its environment. In this study, high-throughput sequencing technology was employed to analyze the community structure and diversity of endophytic and rhizospheric soil microorganisms in var. . The results revealed significant differences in microbial diversity and community structure between the soil and plant compartments within the same geographic region. Microbial diversity and species composition varied among different geographic locations. The dominant bacteria in plants were Cyanobacteria and Proteobacteria, with dominant genera including , and . In contrast, the dominant bacteria in soil were Proteobacteria, Acidobacteriota, and Actinobacteriota, with dominant genera such as , and , with was considered core groups present in all plant and soil samples. As for fungi, the dominant phyla in both plants and soil were Ascomycota, Basidiomycota, and Mortierellomycota, with different dominant genera between the two compartments, including , , and , totaling 59 genera. Linear discriminant analysis at the genus level identified 102 bacterial and 54 fungal indicator taxa associated with plants and soil. Co-occurrence network analysis indicated close interactions among soil bacterial microorganisms. Functional prediction of the top 10 microbial genes revealed three bacterial metabolic pathways shared between soil and plants, while the predominant fungal metabolic types were similar between the two compartments but with varying abundances. This study elucidates the diversity and interplay of endophytic and rhizospheric microorganisms in var. across diverse geographical regions, providing insights crucial for the plant's conservation and development.

摘要

与植物相关的内生和根际微生物通过积极参与植物对环境的适应,在植物健康、病虫害防御和果实产量方面发挥着关键作用。在本研究中,采用高通量测序技术分析了[品种名称]内生和根际土壤微生物的群落结构和多样性。结果表明,在同一地理区域内,土壤和植物部分的微生物多样性和群落结构存在显著差异。微生物多样性和物种组成在不同地理位置之间有所不同。植物中的优势细菌是蓝细菌和变形菌门,优势属包括[具体属名1]、[具体属名2]和[具体属名3]。相比之下,土壤中的优势细菌是变形菌门、酸杆菌门和放线菌门,优势属如[具体属名4]、[具体属名5]和[具体属名6],其中[具体属名7]被认为是所有植物和土壤样本中都存在的核心类群。至于真菌,植物和土壤中的优势门都是子囊菌门、担子菌门和被孢霉门,两个部分的优势属不同,包括[具体属名8]、[具体属名9]和[具体属名10],共59个属。属水平的线性判别分析确定了102个与植物和土壤相关的细菌指示类群和54个真菌指示类群。共现网络分析表明土壤细菌微生物之间存在密切相互作用。对前10个微生物基因的功能预测显示,土壤和植物之间共有三种细菌代谢途径,而两个部分中主要的真菌代谢类型相似但丰度不同。本研究阐明了[品种名称]内生和根际微生物在不同地理区域的多样性和相互作用,为该植物的保护和开发提供了关键见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c417/10965698/c9166b65889c/fmicb-15-1338956-g001.jpg

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