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高粱根际细菌群落研究及多菌株有益细菌联合体的产生。

Sorghum rhizosphere bacteriome studies and generation of multistrain beneficial bacterial consortia.

作者信息

Kumar Chandan, Esposito Alfonso, Bertani Iris, Musonerimana Samson, Midekssa Mulissa Jida, Tesfaye Kassahun, Derr Devin Coleman, Donaldson Lara, Piazza Silvano, Bez Cristina, Venturi Vittorio

机构信息

International Centre for Genetic Engineering and Biotechnology, Trieste, Italy.

International Centre for Genetic Engineering and Biotechnology, Trieste, Italy; Department of Biotechnology, University of Verona, Verona 37134, Italy.

出版信息

Microbiol Res. 2025 Mar;292:128036. doi: 10.1016/j.micres.2024.128036. Epub 2024 Dec 27.

Abstract

The plant rhizosphere microbiome plays a crucial role in plant growth and health. Within this microbiome, bacteria dominate, exhibiting traits that benefit plants, such as facilitating nutrient acquisition, fixing nitrogen, controlling pathogens, and promoting root growth. This study focuses on designing synthetic bacterial consortia using key bacterial strains which have been mapped and then isolated from the sorghum rhizosphere microbiome. A large set of samples of the rhizosphere bacteriome of Sorghum bicolor was generated and analyzed across various genotypes and geographical locations. We assessed the taxonomic composition and structure of the sorghum root-associated bacterial community identifying the most prevalent and keystone taxa. A set of 321 bacterial strains was then isolated, and three multi-strain consortia were designed making use of the bacteriome data generated using culture independent methodology. Subsequently, co-existence and plant-growth promoting ability of three bacterial consortia were tested both in vitro and in planta. Consortia 3 promoted plant growth in growth-chamber conditions while Consortia 1 and 2 performed better in field-plot experiments. Despite these differences, bacterial community profiling confirmed the colonization of the inoculated consortia in the sorghum rhizosphere without significant alterations to the overall bacterial community compared to the non inoculated ones. In summary, this study focused on a method, using root bacteriome data, to design and test bacterial consortia for plant beneficial effects with the aim of translating microbiome knowledge into applications.

摘要

植物根际微生物群落在植物生长和健康方面发挥着关键作用。在这个微生物群落中,细菌占主导地位,表现出有利于植物的特性,如促进养分获取、固氮、控制病原体和促进根系生长。本研究重点在于利用已绘制图谱并从高粱根际微生物群落中分离出的关键细菌菌株设计合成细菌群落。生成并分析了一大组双色高粱根际细菌群落的样本,这些样本来自不同的基因型和地理位置。我们评估了高粱根系相关细菌群落的分类组成和结构,确定了最普遍和关键的分类群。随后分离出一组321个细菌菌株,并利用基于非培养方法生成的细菌群落数据设计了三个多菌株群落。随后,在体外和植物体内测试了三个细菌群落的共存情况和促进植物生长的能力。群落3在生长室条件下促进了植物生长,而群落1和2在田间试验中表现更好。尽管存在这些差异,但细菌群落分析证实了接种的群落定殖于高粱根际,与未接种的群落相比,总体细菌群落没有显著变化。总之,本研究重点关注一种利用根系细菌群落数据设计和测试对植物有益的细菌群落的方法,旨在将微生物群落知识转化为实际应用。

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