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尽管存在非生物胁迫,豆科种子微生物组仍能稳定地进行多代传递。

Stable, multigenerational transmission of the bean seed microbiome despite abiotic stress.

机构信息

Department of Microbiology, Genetics and Immunology; Program in Ecology, Evolution and Behavior; and the Plant Resilience Institute, Michigan State University, East Lansing, Michigan, USA.

Univ Angers, Institut Agro, INRAE, IRHS, SFR QUASAV, F-49000 Angers, Beaucouzé, France.

出版信息

mSystems. 2024 Nov 19;9(11):e0095124. doi: 10.1128/msystems.00951-24. Epub 2024 Oct 30.

Abstract

Microbiota that originate in the seed can have consequences for the education of the plant immune system, competitive exclusion of pathogens from the host tissue, and host access to critical nutrients. Our research objective was to investigate the consequences of the environmental conditions of the parent plant for bacterial seed microbiome assembly and transmission across plant generations. Using a fully factorial, three-generational experimental design, we investigated endophytic seed bacterial communities of common bean lines ( L.) grown in the growth chamber and exposed to either control conditions, drought, or excess nutrients at each generation. We applied 16S rRNA microbiome profiling to the seed endophytes and measured plant health outcomes. We discovered stable transmission of 22 bacterial members, regardless of the parental plant condition. This study shows the maintenance of bacterial members of the plant microbiome across generations, even under environmental stress. Overall, this work provides insights into the ability of plants to safeguard microbiome members, which has implications for crop microbiome management in the face of climate change.IMPORTANCESeed microbiomes initiate plant microbiome assembly and thus have critical implications for the healthy development and performance of crops. However, the consequences of environmental conditions of the parent plant for seed microbiome assembly and transmission are unknown, but this is critical information, given the intensifying stressors that crops face as the climate crisis accelerates. This study provides insights into the maintenance of plant microbiomes across generations, with implications for durable plant microbiome maintenance in agriculture on the changing planet.

摘要

在种子中起源的微生物群会对植物免疫系统的教育、病原体从宿主组织中的竞争排除以及宿主获得关键营养物质产生影响。我们的研究目的是调查母株环境条件对细菌种子微生物组组装和跨代植物传播的影响。我们使用完全因子、三代实验设计,研究了在生长室中生长并在每一代暴露于对照条件、干旱或过量营养物质的普通豆(L.)系的内生种子细菌群落。我们应用 16S rRNA 微生物组分析方法对种子内生菌进行了分析,并测量了植物的健康状况。我们发现了 22 个细菌成员的稳定传播,无论母株的条件如何。这项研究表明,即使在环境压力下,植物微生物组的细菌成员也能在代际间保持稳定。总的来说,这项工作为植物保护微生物组成员的能力提供了新的认识,这对气候变化下的作物微生物组管理具有重要意义。重要的是,种子微生物群启动了植物微生物组的组装,因此对作物的健康发育和表现具有关键影响。然而,母株环境条件对种子微生物组组装和传播的影响尚不清楚,但考虑到随着气候危机的加速,作物面临的压力越来越大,这是关键信息。这项研究为代际间植物微生物组的维持提供了新的认识,对气候变化下农业中持久的植物微生物组维持具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16e1/11575401/df8baa88caa6/msystems.00951-24.f001.jpg

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