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利用新型土壤细菌实现与大豆的有益相互作用。

Harnessing Novel Soil Bacteria for Beneficial Interactions with Soybean.

作者信息

Gonçalves Osiel Silva, Souza Thamires Santos, Gonçalves Guilherme de Castro, Fernandes Alexia Suellen, Veloso Tomás Gomes Reis, Tupy Sumaya Martins, Garcia Ediones Amaro, Santana Mateus Ferreira

机构信息

Institute for Global Food Security, School of Biological Sciences, Queen's University Belfast, Belfast BT9 5DL, UK.

Grupo de Genômica Evolutiva Microbiana, Laboratório de Genética Molecular de Microrganismos, Departamento de Microbiologia, Instituto de Biotecnologia Aplicada à Agropecuária, Universidade Federal de Viçosa, Viçosa CEP 36570-900, MG, Brazil.

出版信息

Microorganisms. 2023 Jan 23;11(2):300. doi: 10.3390/microorganisms11020300.

Abstract

It is claimed that one g of soil holds ten billion bacteria representing thousands of distinct species. These bacteria play key roles in the regulation of terrestrial carbon dynamics, nutrient cycles, and plant productivity. Despite the overwhelming diversity of bacteria, most bacterial species remain largely unknown. Here, we used an oligotrophic medium to isolate novel soil bacteria for positive interaction with soybean. Strictly 22 species of bacteria from the soybean rhizosphere were selected. These isolates encompass ten genera (, , , , , , , , , and ) and have potential as novel species. Furthermore, the novel bacterial species exhibited plant growth-promoting traits in vitro and enhanced soybean growth under drought stress in a greenhouse experiment. We also reported the draft genome sequences of sp. strain SOY2 and sp. strain SOY23. Along with our analysis of 169 publicly available genomes for the genera reported here, we demonstrated that these bacteria have a repertoire of genes encoding plant growth-promoting proteins and secondary metabolite biosynthetic gene clusters that directly affect plant growth. Taken together, our findings allow the identification novel soil bacteria, paving the way for their application in crop production.

摘要

据称,一克土壤中含有100亿个细菌,代表了数千个不同的物种。这些细菌在陆地碳动态、养分循环和植物生产力的调节中发挥着关键作用。尽管细菌种类繁多,但大多数细菌物种仍基本不为人知。在此,我们使用贫营养培养基从大豆根际分离出与大豆具有正向相互作用的新型土壤细菌。严格筛选出了22种来自大豆根际的细菌。这些分离株涵盖十个属(、、、、、、、、和),具有作为新物种的潜力。此外,这些新型细菌物种在体外表现出促进植物生长的特性,并在温室试验中增强了干旱胁迫下大豆的生长。我们还报道了sp.菌株SOY2和sp.菌株SOY23的基因组草图序列。结合我们对这里报道的属的169个公开可用基因组的分析,我们证明这些细菌拥有一系列编码促进植物生长蛋白的基因以及直接影响植物生长的次生代谢物生物合成基因簇。综上所述,我们的研究结果有助于鉴定新型土壤细菌,为它们在作物生产中的应用铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d54/9964534/b2bb3fd10756/microorganisms-11-00300-g001.jpg

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