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与葡萄根系相关的细菌群落的多样性和功能特征取决于葡萄对葡萄霜霉病菌的易感性。

Diversity and functional features of the root-associated bacteriome are dependent on grapevine susceptibility to Plasmopara viticola.

作者信息

Duret Morgane, Wallner Adrian, Besaury Ludovic, Aziz Aziz

机构信息

Université de Reims Champagne-Ardenne, INRAE, RIBP, USC 1488, Reims, 51100, France.

Université de Reims Champagne-Ardenne, INRAE, FARE, UMR A 614, Reims, 51100, France.

出版信息

Environ Microbiome. 2025 Mar 14;20(1):30. doi: 10.1186/s40793-025-00690-w.

Abstract

BACKGROUND

Plant health depends on beneficial interactions between the roots and their microbiomes. Despite recent progress on the role of the grapevine microbiome, the taxonomic identity and functional traits of microbial taxa specific to healthy or Plasmopara viticola-diseased plants, as well as to the susceptible or resistant cultivar are unknown. Using metabarcoding and shotgun metagenomics sequencing, we investigated the effect of downy mildew on the root-associated microbiome (rhizospheric soil, rhizoplane and endosphere) of 41B-grafted susceptible cultivar (Chardonnay) and resistant interspecific hybrid (Voltis) at flowering and veraison stages. The impact of conventional treatment on the rhizomicrobiome assembly of Chardonnay was also evaluated.

RESULTS

Analyses revealed a core bacteriome shared between both susceptible and resistant cultivars. This also highlighted common functional traits between the rhizosphere and rhizoplane bacteriomes in both cultivars. A dysbiosis state was also evidenced by a loss of beneficial communities in the rhizosphere of the P. viticola-infected cultivar. Microbial genome assemblies showed functional differences between healthy and diseased plants, with a loss of Pseudomonas and Phyllobacterium taxa at veraison. This state was mainly characterized by a loss of genes involved in polyamine transport and metabolism in the susceptible cultivar. It was also marked by an increase in population evenness and total bacterial diversity, and the presence of pathogenic species in susceptible plants.

CONCLUSIONS

This study reveals distinct and overlapping bacterial communities and functional genes in the rhizospheric soil, rhizoplane and root endosphere of both susceptible and resistant grapevine cultivars to downy mildew. Microbial diversity and abundant taxa of grapevine roots are influenced by downy mildew and cultivar susceptibility. Common bacterial functions are shared among rhizocompartments of susceptible and resistant cultivars, revealing a dysbiosis state and functional signatures related to plant immunity, especially in the infected-susceptible plants.

摘要

背景

植物健康依赖于根系与其微生物群落之间的有益相互作用。尽管葡萄微生物群的作用最近取得了进展,但健康或感染葡萄霜霉病的植物以及易感或抗性品种特有的微生物分类群的分类身份和功能特征尚不清楚。我们使用宏条形码和鸟枪法宏基因组测序技术,研究了霜霉病对41B嫁接的易感品种(霞多丽)和抗性种间杂交品种(伏蒂斯)在开花期和转色期根系相关微生物群落(根际土壤、根表和内生菌)的影响。还评估了常规处理对霞多丽根际微生物群落组装的影响。

结果

分析揭示了易感和抗性品种之间共享的核心细菌群落。这也突出了两个品种根际和根表细菌群落之间的共同功能特征。葡萄霜霉病感染品种的根际有益群落丧失也证明了一种失调状态。微生物基因组组装显示健康和患病植物之间存在功能差异,在转色期假单胞菌属和叶杆菌属分类群减少。这种状态主要表现为易感品种中参与多胺运输和代谢的基因丧失。它还表现为种群均匀度和总细菌多样性增加,以及易感植物中存在致病物种。

结论

本研究揭示了易感和抗性葡萄品种对霜霉病的根际土壤、根表和根内生菌中不同且重叠的细菌群落和功能基因。葡萄根系的微生物多样性和丰富的分类群受霜霉病和品种易感性的影响。易感和抗性品种的根区室之间共享常见的细菌功能,揭示了一种失调状态和与植物免疫相关的功能特征,特别是在感染的易感植物中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ce5/11908067/a9250f3f9c4a/40793_2025_690_Fig1_HTML.jpg

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