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多年生作物中植物相关微生物组对外源细菌内生菌在植物根部定殖的响应

Response of Plant-Associated Microbiome to Plant Root Colonization by Exogenous Bacterial Endophyte in Perennial Crops.

作者信息

Yurgel Svetlana N, Ajeethan Nivethika, Smertenko Andrei

机构信息

Grain Legume Genetics and Physiology Research Unit, U.S. Department of Agriculture (USDA), Agricultural Research Service (ARS), Prosser, WA, United States.

Department of Plant, Food and Environmental Sciences, Faculty of Agriculture, Dalhousie University, Truro, NS, Canada.

出版信息

Front Microbiol. 2022 Apr 5;13:863946. doi: 10.3389/fmicb.2022.863946. eCollection 2022.

Abstract

The application of bacterial inoculums for improving plant growth and production is an important component of sustainable agriculture. However, the efficiency of perennial crop inoculums depends on the ability of the introduced endophytes to exert an impact on the host-plant over an extended period of time. This impact might be evaluated by the response of plant-associated microbiome to the inoculation. In this study, we monitored the effect of a single bacterial strain inoculation on the diversity, structure, and cooperation in plant-associated microbiome over 1-year period. An endophyte (RF67) isolated from (wild blueberry) roots and annotated as was used for the inoculation of 1-year-old (Haskap) plants. A significant level of bacterial community perturbation was detected in plant roots after 3 months post-inoculation. About 23% of root-associated community variation was correlated with an application of the inoculant, which was accompanied by increased cooperation between taxa belonging to Proteobacteria and Actinobacteriota phyla and decreased cooperation between Firmicutes in plant roots. Additionally, a decrease in bacterial Shannon diversity and an increase in the relative abundances of and were detected in the roots of inoculated plants relative to the non-inoculated control. A strong effect of the inoculation on the bacterial cooperation was also detected after 1 year of plant field growth, whereas no differences in bacterial community composition and also alpha and beta diversities were detected between bacterial communities from inoculated and non-inoculated roots. These findings suggest that while exogenous endophytes might have a short-term effect on the root microbiome structure and composition, they can boost cooperation between plant-growth-promoting endophytes, which can exist for the extended period of time providing the host-plant with long-lasting beneficial effects.

摘要

应用细菌接种剂来促进植物生长和提高产量是可持续农业的一个重要组成部分。然而,多年生作物接种剂的效果取决于引入的内生菌在较长时间内对宿主植物产生影响的能力。这种影响可以通过植物相关微生物群对接种的反应来评估。在本研究中,我们监测了单一菌株接种在一年时间内对植物相关微生物群的多样性、结构和协作的影响。从(野生蓝莓)根部分离出的并被鉴定为的一种内生菌(RF67)被用于接种一年生的(哈斯卡普)植株。接种后3个月,在植物根部检测到显著水平的细菌群落扰动。约23%的根相关群落变异与接种剂的施用相关,这伴随着属于变形菌门和放线菌门的分类群之间协作的增加以及植物根部厚壁菌门之间协作的减少。此外,相对于未接种的对照,在接种植物的根部检测到细菌香农多样性降低以及和相对丰度增加。在植物田间生长1年后,也检测到接种对细菌协作有强烈影响,而在接种和未接种根部的细菌群落之间未检测到细菌群落组成以及α和β多样性的差异。这些发现表明,虽然外源内生菌可能对根微生物群的结构和组成有短期影响,但它们可以促进促进植物生长的内生菌之间的协作,这种协作可以长期存在,为宿主植物提供持久的有益影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2502/9037143/476abecb4da5/fmicb-13-863946-g001.jpg

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