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草莓根腐病根际微生物生态特征

Rhizosphere microbial ecological characteristics of strawberry root rot.

作者信息

Zhang Meilin, Kong Zirong, Fu Huijing, Shu Xiaolong, Xue Quanhong, Lai Hangxian, Guo Qiao

机构信息

College of Natural Resources and Environment, Northwest A&F University, Yangling, China.

出版信息

Front Microbiol. 2023 Nov 16;14:1286740. doi: 10.3389/fmicb.2023.1286740. eCollection 2023.

Abstract

INTRODUCTION

Strawberry ( × ananassa Duch.) holds a preeminent position among small fruits globally due to its delectable fruits and significant economic value. However, strawberry cultivation is hampered by various plant diseases, hindering the sustainable development of the strawberry industry. The occurrence of plant diseases is closely linked to imbalance in rhizosphere microbial community structure.

METHODS

In the present study, a systematic analysis of the differences and correlations among non-culturable microorganisms, cultivable microbial communities, and soil nutrients in rhizosphere soil, root surface soil, and non-rhizosphere soil of healthy and diseased strawberry plants affected by root rot was conducted. The goal was to explore the relationship between strawberry root rot occurrence and rhizosphere microbial community structure.

RESULTS

According to the results, strawberry root rot altered microbial community diversity, influenced fungal community composition in strawberry roots, reduced microbial interaction network stability, and enriched more endophytic-phytopathogenic bacteria and saprophytic bacteria. In addition, the number of bacteria isolated from the root surface soil of diseased plants was significantly higher than that of healthy plants.

DISCUSSION

In summary, the diseased strawberry plants changed microbial community diversity, fungal species composition, and enriched functional microorganisms significantly, in addition to reshaping the microbial co-occurrence network. The results provide a theoretical basis for revealing the microecological mechanism of strawberry root rot and the ecological prevention and control of strawberry root rot from a microbial ecology perspective.

摘要

引言

草莓(×ananassa Duch.)因其美味的果实和重要的经济价值,在全球小浆果中占据着卓越地位。然而,草莓种植受到多种植物病害的阻碍,影响了草莓产业的可持续发展。植物病害的发生与根际微生物群落结构失衡密切相关。

方法

在本研究中,对受根腐病影响的健康和患病草莓植株的根际土壤、根表土壤和非根际土壤中的不可培养微生物、可培养微生物群落及土壤养分之间的差异和相关性进行了系统分析。目的是探究草莓根腐病发生与根际微生物群落结构之间的关系。

结果

结果表明,草莓根腐病改变了微生物群落多样性,影响了草莓根系中的真菌群落组成,降低了微生物相互作用网络的稳定性,并富集了更多的内生植物病原菌和腐生细菌。此外,从患病植株根表土壤中分离出的细菌数量显著高于健康植株。

讨论

综上所述,患病草莓植株除了重塑微生物共现网络外,还显著改变了微生物群落多样性、真菌物种组成并富集了功能微生物。研究结果为从微生物生态学角度揭示草莓根腐病的微生态机制及草莓根腐病的生态防治提供了理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a1c/10687216/4a942acdb856/fmicb-14-1286740-g001.jpg

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