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使用靶向方法分离和鉴定具有多种植物激素降解活性的新型土壤和植物相关细菌。

Isolation and characterization of novel soil- and plant-associated bacteria with multiple phytohormone-degrading activities using a targeted methodology.

作者信息

Nascimento Francisco X, Glick Bernard R, Rossi Márcio J

机构信息

Departamento de Microbiologia, Laboratório de Bioprocessos, Universidade Federal de Santa Catarina, Florianópolis, SC, Brazil.

Department of Biology, University of Waterloo, Waterloo, Ontario, Canada.

出版信息

Access Microbiol. 2019 Aug 28;1(7):e000053. doi: 10.1099/acmi.0.000053. eCollection 2019.

Abstract

Ethylene (ET), salicylic acid (SA) and indole-3-acetic acid (IAA) are important phytohormones regulating plant growth and development, as well as plant-microbe interactions. Plant growth-promoting bacteria (PGPB) naturally associate with plants and facilitate plant growth through a variety of mechanisms, including the ability to modulate the concentrations of these phytohormones . Importantly, the wide presence of phytohormone degradation mechanisms amongst symbiotic and other soil- and plant-associated bacteria indicates that the ability to modulate phytohormone concentrations plays an important role in bacterial colonization and plant-growth promotion abilities. Obtaining phytohormone-degrading bacteria is therefore key for the development of novel solutions aiming to increase plant growth and protection. In this paper, we report an optimized targeted methodology and the consequent isolation of novel soil- and plant-associated bacteria, including rhizospheric, endophytic and phyllospheric strains, with the ability to degrade the phytohormones, SA and IAA, as well as the ET precursor, 1-aminocyclopropane-1-carboxylic acid (ACC). By using an optimized targeted methodology, we rapidly isolated diverse soil- and plant-associated bacteria presenting phytohormone-degrading abilities from several plants, plant tissues and environments, without the need for prior extensive and laborious isolation and maintenance of large numbers of isolates. The developed methodology facilitates PGPB research, especially in developing countries. Here, we also report, for the first time, the isolation of bacterial strains able to concomitantly catabolize three phytohormones (SA, IAA and ACC). Ultimately, the described targeted methodology and the novel phytohormone-degrading bacteria obtained in this work may be useful tools for future plant-microbe interaction studies, and in the development of new inoculant formulations for agriculture and biotechnology.

摘要

乙烯(ET)、水杨酸(SA)和吲哚 - 3 - 乙酸(IAA)是调节植物生长发育以及植物与微生物相互作用的重要植物激素。植物促生细菌(PGPB)与植物自然共生,并通过多种机制促进植物生长,包括调节这些植物激素浓度的能力。重要的是,共生细菌以及其他与土壤和植物相关的细菌中广泛存在植物激素降解机制,这表明调节植物激素浓度的能力在细菌定殖和促进植物生长的能力中起着重要作用。因此,获得能够降解植物激素的细菌是开发旨在促进植物生长和保护的新解决方案的关键。在本文中,我们报告了一种优化的靶向方法以及随后分离出的新型土壤和植物相关细菌,包括根际、内生和叶际菌株,它们能够降解植物激素SA和IAA以及ET前体1 - 氨基环丙烷 - 1 - 羧酸(ACC)。通过使用优化的靶向方法,我们从多种植物、植物组织和环境中快速分离出具有植物激素降解能力的不同土壤和植物相关细菌,而无需事先对大量菌株进行广泛且费力的分离和保存。所开发的方法有助于植物促生细菌的研究,特别是在发展中国家。在此,我们还首次报告了能够同时分解代谢三种植物激素(SA、IAA和ACC)的细菌菌株的分离。最终,本文描述的靶向方法以及在此工作中获得的新型植物激素降解细菌可能是未来植物 - 微生物相互作用研究以及农业和生物技术新接种剂配方开发的有用工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6c6/7481731/3bddedf99f79/acmi-1-053-g001.jpg

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