Programa de Doctorado en Ciencias de Recursos Naturales, Facultad de Ingeniería y Ciencia, Universidad de La Frontera, Av. Francisco Salazar, 01145 Temuco, Chile; Laboratorio de Ecología Microbiana Aplicada, Departamento de Ciencias Químicas y Recursos Naturales, Universidad de La Frontera, Av. Francisco Salazar, 01145 Temuco, Chile.
Section for Microbiology, Department of Biology, University of Copenhagen, Universitetsparken 15 Bldg 1, 2100 Copenhagen, Denmark.
Plasmid. 2023 Jul;127:102695. doi: 10.1016/j.plasmid.2023.102695. Epub 2023 Jun 7.
Plant microbiomes are pivotal for healthy plant physiological development. Microbes live in complex co-association with plant hosts, and interactions within these microbial communities vary with plant genotype, plant compartment, phenological stage, and soil properties, among others. Plant microbiomes also harbor a substantial and diverse pool of mobile genes encoded on plasmids. Several plasmid functions attributed to plant-associated bacteria are relatively poorly understood. Additionally, the role of plasmids in disseminating genetic traits within plant compartments is not well known. Here, we present the current knowledge on the occurrence, diversity, function, and transfer of plasmids in plant microbiomes, emphasizing the factors that could modulate gene transfer in-planta. We also describe the role of the plant microbiome as a plasmid reservoir and the dissemination of its genetic material. We include a brief discussion on the current methodological limitations in studying plasmid transfer within plant microbiomes. This information could be useful to elucidate the dynamics of the bacterial gene pools, the adaptations different organisms have made, and variations in bacterial populations that might have never been described before, particularly in complex microbial communities associated with plants in natural and anthropogenic impacted environments.
植物微生物组对于植物生理发育的健康至关重要。微生物与植物宿主共生共存,其相互作用受到植物基因型、植物组织、物候阶段和土壤特性等因素的影响。植物微生物组还蕴藏着大量多样的可移动基因,这些基因编码在质粒上。与植物相关的细菌的一些质粒功能相对不太了解。此外,质粒在植物组织内传播遗传特征的作用也不是很清楚。在这里,我们介绍了目前关于植物微生物组中质粒的发生、多样性、功能和转移的知识,强调了可能调节植物内基因转移的因素。我们还描述了植物微生物组作为质粒库的作用及其遗传物质的传播。我们还简要讨论了目前在研究植物微生物组内质粒转移方面的方法学限制。这些信息对于阐明细菌基因库的动态、不同生物的适应性以及以前可能从未描述过的细菌种群的变化可能是有用的,特别是在与自然和人为影响环境中的植物相关的复杂微生物群落中。