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专性活体营养型霜霉病在拟南芥中始终诱导出近乎相同的保护性微生物组。

Obligate biotroph downy mildew consistently induces near-identical protective microbiomes in Arabidopsis thaliana.

机构信息

Plant-Microbe Interactions, Institute of Environmental Biology, Department of Biology, Science4Life, Utrecht University, Utrecht, the Netherlands.

Translational Plant Biology, Institute of Environmental Biology, Department of Biology, Science4Life, Utrecht University, Utrecht, the Netherlands.

出版信息

Nat Microbiol. 2023 Dec;8(12):2349-2364. doi: 10.1038/s41564-023-01502-y. Epub 2023 Nov 16.

Abstract

Hyaloperonospora arabidopsidis (Hpa) is an obligately biotrophic downy mildew that is routinely cultured on Arabidopsis thaliana hosts that harbour complex microbiomes. We hypothesized that the culturing procedure proliferates Hpa-associated microbiota (HAM) in addition to the pathogen and exploited this model system to investigate which microorganisms consistently associate with Hpa. Using amplicon sequencing, we found nine bacterial sequence variants that are shared between at least three out of four Hpa cultures in the Netherlands and Germany and comprise 34% of the phyllosphere community of the infected plants. Whole-genome sequencing showed that representative HAM bacterial isolates from these distinct Hpa cultures are isogenic and that an additional seven published Hpa metagenomes contain numerous sequences of the HAM. Although we showed that HAM benefit from Hpa infection, HAM negatively affect Hpa spore formation. Moreover, we show that pathogen-infected plants can selectively recruit HAM to both their roots and shoots and form a soil-borne infection-associated microbiome that helps resist the pathogen. Understanding the mechanisms by which infection-associated microbiomes are formed might enable breeding of crop varieties that select for protective microbiomes.

摘要

Arabidopsis 内生菌及其对拟南芥感染生丝单囊壳菌的影响

生丝单囊壳菌(Hpa)是一种专性活体营养型霜霉病菌,通常在携带复杂微生物组的拟南芥宿主上培养。我们假设培养过程除了病原体之外还会增殖与生丝单囊壳菌相关的微生物群(HAM),并利用该模型系统来研究哪些微生物与生丝单囊壳菌始终相关。使用扩增子测序,我们发现了九个在荷兰和德国的至少三个生丝单囊壳菌培养物中共享的细菌序列变体,占感染植物叶片微生物组的 34%。全基因组测序表明,来自这些不同生丝单囊壳菌培养物的代表性 HAM 细菌分离物是同系物,并且另外七个已发表的生丝单囊壳菌宏基因组包含大量 HAM 的序列。尽管我们表明 HAM 受益于生丝单囊壳菌的感染,但 HAM 会对生丝单囊壳菌孢子形成产生负面影响。此外,我们表明,受病原体感染的植物可以选择性地将 HAM 招募到其根部和茎部,并形成一种土壤传播的与感染相关的微生物组,有助于抵抗病原体。了解感染相关微生物组形成的机制可能使培育能够选择保护性微生物组的作物品种成为可能。

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