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sp. nov. 由从盐碱土壤中分离的植物促生细菌 BY2G20 代表,该细菌能增强 L. 在盐胁迫下的生长。

sp. nov. Is Represented by the Plant Growth-Promoting Bacterium BY2G20 Isolated from Saline-Alkaline Soil and Enhances the Growth of L. under Salt Stress.

机构信息

College of Life Sciences and Shandong Engineering Research Center of Plant-Microbial Restoration for Saline-Alkali Land and State Key Laboratory of Crop Biology, Shandong Agricultural Universitygrid.440622.6, Tai'an, China.

National Engineering Laboratory for Efficient Utilization of Soil and Fertilizer Resources, College of Resources and Environment, Shandong Agricultural Universitygrid.440622.6, Tai'an, China.

出版信息

mSystems. 2022 Apr 26;7(2):e0142621. doi: 10.1128/msystems.01426-21. Epub 2022 Mar 1.

Abstract

A novel plant growth-promoting rhizobacterium (PGPR), which was designated strain BY2G20, was isolated from saline-alkaline soil in Dongying, China. Strain BY2G20 can grow at a NaCl range from 0 to 7% and a pH range from 7 to 9 and can prevent the growth of the phytopathogen Ralstonia solanacearum. Based on its phenotypic and genomic characteristics and phylogenetic analysis, strain BY2G20 represents a novel species of the genus , for which the name sp. nov. is proposed. Comparative genomic analysis of strain BY2G20 with its closely related species exhibited a high level of evolutionary plasticity derived by horizontal gene transfer, which facilitated adaptative evolution. Different evolutionary constraints have operated on the diverse functions of BY2G20, with the gene adapted to saline-alkaline ecosystems experiencing functional constraints. We determined the genetic properties of saline-alkaline tolerance and plant growth promotion, such as cation-proton antiporters, cation transporters, osmoprotectant synthesis and transport, H-transporting FF-ATPase, indole-3-acetic acid production, and secondary metabolite synthesis. We also evaluated the effects of strain BY2G20 on the growth of Zea mays L. (maize) under salt stress. The physiological parameters of maize such as plant height, stem diameter, dry biomass, and fresh biomass were significantly higher after inoculating strain BY2G20 under salt stress, indicating that inoculation with BY2G20 enhanced the growth of maize in saline areas. This study demonstrates that sp. nov. BY2G20 is a potential candidate for organic agriculture biofertilizers in saline-alkaline areas. Plant growth and yield are adversely affected by soil salinity. PGPRs can promote plant growth and enhance plant tolerance to salt stress. In this study, a saline-alkaline tolerant PGPR strain BY2G20 was isolated from the rhizosphere of in Dongying, China. Strain BY2G20 represents a novel species within the genus based on phenotypic, genomic, and phylogenetic analysis. Genomic components have undergone different functional constraints, and the disparity in the evolutionary rate may be associated with the adaptation to a specific niche. Genomic analysis revealed numerous adaptive features of strain BY2G20 to a saline-alkaline environment and rhizosphere, especially genes related to salt tolerance, pH adaptability, and plant growth promotion. Our work also exhibited that inoculation of strain BY2G20 enhanced the growth of maize under salt stress. This study demonstrates that PGPRs play an important role in stimulating salt tolerance in plants and can be used as biofertilizers to enhance the growth of crops in saline-alkaline areas.

摘要

一株新型的植物促生根际细菌(PGPR),被命名为 BY2G20 菌株,从中国东营的盐碱土壤中分离得到。该菌株可以在 NaCl 浓度为 0 到 7%和 pH 值为 7 到 9 的范围内生长,并能抑制植物病原菌青枯雷尔氏菌的生长。基于其表型和基因组特征以及系统发育分析,菌株 BY2G20 代表了一个新的属,提议将其命名为 sp. nov.。对 BY2G20 菌株与亲缘关系较近的物种进行比较基因组分析表明,水平基因转移导致了高度的进化可塑性,从而促进了适应性进化。不同的进化约束作用于 BY2G20 的不同功能,适应于盐碱生态系统的基因经历了功能约束。我们确定了耐盐碱性和促进植物生长的遗传特性,如阳离子-质子反向转运体、阳离子转运体、渗透物合成和运输、H 转运 FF-ATP 酶、吲哚-3-乙酸的产生和次生代谢物的合成。我们还评估了菌株 BY2G20 在盐胁迫下对玉米生长的影响。在盐胁迫下接种 BY2G20 后,玉米的生理参数如株高、茎直径、干生物量和鲜生物量显著提高,表明接种 BY2G20 增强了玉米在盐碱地区的生长。本研究表明,sp. nov. BY2G20 是盐碱地区有机农业生物肥料的潜在候选物。植物的生长和产量受到土壤盐度的不利影响。PGPR 可以促进植物生长并增强植物对盐胁迫的耐受性。在本研究中,从中国东营的根际土壤中分离到一株耐盐碱的 PGPR 菌株 BY2G20。基于表型、基因组和系统发育分析,菌株 BY2G20 代表了 属内的一个新种。基因组组成经历了不同的功能约束,进化率的差异可能与特定生态位的适应有关。基因组分析揭示了菌株 BY2G20 对盐碱环境和根际的许多适应性特征,特别是与耐盐性、pH 适应性和植物生长促进相关的基因。我们的工作还表明,接种 BY2G20 菌株可以增强玉米在盐胁迫下的生长。本研究表明,PGPR 在刺激植物耐盐性方面发挥着重要作用,可以用作生物肥料,以提高盐碱地区作物的生长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be24/9040632/0a51120ebb2c/msystems.01426-21-f001.jpg

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