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患病与健康甜樱桃树(L.)微生物群落的比较分析

Comparative Analysis of Microbial Communities in Diseased and Healthy Sweet Cherry Trees ( L.).

作者信息

Zhou Tong, Huang Xiaojuan, Zhu Danyang, Tang Yan, Xu Hongli, Ran Fanrong, Ullah Hasin, Tan Jiangli

机构信息

Shaanxi Key Laboratory for Animal Conservation in Western China, College of Life Sciences, Northwest University, 229 North Taibai Road, Xi'an 710069, China.

出版信息

Microorganisms. 2024 Sep 5;12(9):1837. doi: 10.3390/microorganisms12091837.

Abstract

The European sweet cherry (L.), a member of the Rosaceae family, is one of the most popular and economically valuable fruits. However, the rapid spread of gummosis and poor management practices have become the major obstacles to their production. To identify pathogenic microorganisms responsible for gummosis disease, we conducted observations comparing the garden of Bailuyuan, which heavily suffered from gummosis disease and horn beetle damage, with the orchard of Mayuhe, which only suffered from gummosis disease, both from Xi'an, Shaanxi, China. Samples were obtained from the healthy tissues and gummosis disease tissues that used the Illumina sequence of 16S rRNA and the internal transcribed spacer region (ITS) to identify bacterial and fungal communities in these samples. An alpha diversity analysis revealed a significantly higher fungal diversity of disease than in healthy tissue in the gummosis period. The results suggested that an imbalance in the fungal genera may be associated with gummosis disease. Species relative analyses showed some bacterial genera (, , , and ) and fungal genera (, and ) in the diseased tissues of gummosis. Among these, the increased relative abundance of the bacteria genes , , , , , and fungi genes , , may be associated with gummosis of . The bacterial genera , , , and fungal genera , , , are probably antagonists of the pathogen of gummosis. These findings are an initial step in the identification of potential candidates for the biological control of the disease.

摘要

欧洲甜樱桃(L.)是蔷薇科的一员,是最受欢迎且具有经济价值的水果之一。然而,流胶病的迅速传播和管理不善已成为其生产的主要障碍。为了鉴定导致流胶病的致病微生物,我们进行了观察,将严重遭受流胶病和天牛危害的白鹿原果园与仅遭受流胶病的马峪河果园进行比较,这两个果园均位于中国陕西西安。从健康组织和流胶病组织中获取样本,利用16S rRNA的Illumina序列和内转录间隔区(ITS)来鉴定这些样本中的细菌和真菌群落。α多样性分析显示,在流胶病发病期,患病组织中的真菌多样性显著高于健康组织。结果表明,真菌属的失衡可能与流胶病有关。物种相对分析显示,在流胶病患病组织中有一些细菌属(、、、和)和真菌属(、和)。其中,细菌基因、、、、、和真菌基因、、的相对丰度增加可能与的流胶病有关。细菌属、、、和真菌属、、、可能是流胶病病原体的拮抗剂。这些发现是鉴定该疾病生物防治潜在候选物的第一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9512/11433754/b01d9b40a3cf/microorganisms-12-01837-g001.jpg

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