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基于 Illumina 高通量测序技术的叶斑病感染核桃叶的叶相关真菌群落的结构和动态分析。

Structural and Dynamic Analysis of Leaf-Associated Fungal Community of Walnut Leaves Infected by Leaf Spot Disease Based Illumina High-Throughput Sequencing Technology.

机构信息

College of Forestry, Sichuan Agricultural University, Chengdu, China.

Chengdu Botanical Garden, Chengdu, China.

出版信息

Pol J Microbiol. 2022 Sep 24;71(3):429-441. doi: 10.33073/pjm-2022-038. eCollection 2022 Sep 1.

DOI:10.33073/pjm-2022-038
PMID:36185023
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9608163/
Abstract

Leaf-associated microbiota is vital in plant-environment interactions and is the basis for micro-ecological regulation. However, there are no studies on the direct differences in microbial community composition between disease-susceptible and healthy walnut leaves. This study collected five samples of healthy and infected leaves (all leaves with abnormal spots were considered diseased leaves) from May to October 2018. Differences in fungal diversity (Chao1 index, Shannon index, and Simpson index) and community structure were observed by sequencing and analyzing diseased and healthy leaf microbial communities by Illumina HiSeq sequencing technology. The main fungal phyla of walnut leaf-associated were , , and . Diversity indices (Shannon and Chao1 index values) of healthy leaves differed significantly in the late stages of disease onset. The results showed that the fungal species that differed considerably between the healthy and infected groups differed, and the fungal species that differed significantly between the healthy and infected groups changed with the development of the leaf disease. Critical control time points were determined by analyzing the population dynamics of pathogenic fungi. Leaf-associated microorganisms are abundant and diverse, and fungal identification and diversity studies are helpful for developing more appropriate walnut management strategies.

摘要

叶片相关微生物群落对于植物与环境的相互作用至关重要,是微生态调控的基础。然而,目前尚缺乏关于易感病和健康核桃叶片之间微生物群落组成直接差异的研究。本研究于 2018 年 5 月至 10 月,采集了 5 个健康和感染叶片样本(所有出现异常斑点的叶片均被视为患病叶片)。通过 Illumina HiSeq 测序技术对患病和健康叶片微生物群落进行测序和分析,观察真菌多样性(Chao1 指数、Shannon 指数和 Simpson 指数)和群落结构的差异。核桃叶相关的主要真菌门为 、 和 。健康叶片的多样性指数(Shannon 和 Chao1 指数值)在发病后期有显著差异。结果表明,健康组和感染组之间差异较大的真菌种类不同,且健康组和感染组之间差异显著的真菌种类随着叶片病害的发展而变化。通过分析病原菌种群动态确定了关键控制时间点。叶片相关微生物丰富多样,真菌鉴定和多样性研究有助于制定更适宜的核桃管理策略。

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