Genomic characterization of the salt-tolerant Bacillus and Jeotgalicoccus strains reveals a diverse metabolism relevant to plant growth promotion and salt stress tolerance.

IF 2.6 4区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY 3 Biotech Pub Date : 2024-12-01 Epub Date: 2024-11-28 DOI:10.1007/s13205-024-04164-7
Sankalp Misra, Priti Prasad, Pradeep Semwal, Shashank Kumar Mishra, Mehar Hasan Asif, Puneet Singh Chauhan
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引用次数: 0

Abstract

Previous research leads have affirmed the crucial role of plant growth-promoting rhizobacteria (PGPR) strains Bacillus safensis (NBRI 12 M), Bacillus subtilis (NBRI 28B, NBRI 33N), and Jeotgalicoccus huakuii (NBRI 13E) in salt stress amelioration and plant growth promotion. In the present study, whole-genome analysis unveiled the underlying molecular mechanisms accounting for phyto-beneficial and stress-mitigating traits of the selected PGPR strains. The genomic characterization has revealed that NBRI 12 M, NBRI 28B, NBRI 33N, and NBRI 13E possessed a single circular chromosome of 3.73 Mb, 4.07 Mb, 4.10 Mb, and 2.17 Mb size, respectively. The genome analysis of these strains demonstrated varied genes such as mrp and yfiY for plant growth promotion, nutrient metabolism, and other secondary metabolites biosynthesis. High salinity tolerance genes (yicL, ydhP_1, spoIIQ, and spoIIID), encoding for membrane transporter, dormancy, and sporulation, were also identified. In addition, several chemotaxis (cheA, cheY, and cheW) and motility gene clusters (motB_1, motB_2) were found in the PGPR strains for successful rhizosphere colonization. Further, NBRI 12 M has significantly increased the shoot and root length and dry weight by 14.13%, 20.63%, and 9.63%, respectively, under salt stress. In addition, NBRI 12 M inoculation reduced defense enzymes by 79.77%, 84.75%, 74.11%, 70.77%, and 57.75% for SOD, APX, GPX, CAT, and PPO, respectively. Overall findings from this study offered a detailed comparative genomic analysis of salt stress ameliorating PGPR of Bacillus genera towards enhancing the deep insights for host-PGPR association.

Supplementary information: The online version contains supplementary material available at 10.1007/s13205-024-04164-7.

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耐盐芽孢杆菌和焦高利球菌菌株的基因组特征揭示了与促进植物生长和耐盐胁迫相关的多种代谢。
此前的研究已经证实了植物促生根瘤菌(PGPR)菌株萨氏芽孢杆菌(Bacillus safensis, NBRI 12m)、枯草芽孢杆菌(Bacillus subtilis, NBRI 28B, NBRI 33N)和华氏芽孢杆菌(jeotgaliccoccus huakuii, NBRI 13E)在盐胁迫下改善和促进植物生长中的重要作用。在本研究中,全基因组分析揭示了所选PGPR菌株有益植物和减轻压力特性的潜在分子机制。基因组鉴定结果表明,NBRI 12m、NBRI 28B、NBRI 33N和NBRI 13E分别具有一条3.73 Mb、4.07 Mb、4.10 Mb和2.17 Mb的单圆形染色体。这些菌株的基因组分析表明,mrp和yfiY等多种基因参与植物生长促进、营养代谢和其他次生代谢产物的生物合成。高耐盐基因(yicL、ydhP_1、spoIIQ和spoiid)编码膜转运、休眠和产孢。此外,在PGPR菌株中还发现了几个趋化性基因簇(cheA、cheY和cheW)和运动性基因簇(motB_1、motB_2),并成功定植于根际。在盐胁迫下,NBRI 12 M显著增加了幼苗的茎长、根长和干重,增幅分别为14.13%、20.63%和9.63%。此外,接种NBRI 12m对SOD、APX、GPX、CAT和PPO的防御酶分别降低了79.77%、84.75%、74.11%、70.77%和57.75%。本研究的总体结果为盐胁迫改善芽孢杆菌属PGPR提供了详细的比较基因组分析,以加深对宿主-PGPR关联的深入了解。补充信息:在线版本包含补充资料,下载地址为10.1007/s13205-024-04164-7。
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来源期刊
3 Biotech
3 Biotech Agricultural and Biological Sciences-Agricultural and Biological Sciences (miscellaneous)
CiteScore
6.00
自引率
0.00%
发文量
314
期刊介绍: 3 Biotech publishes the results of the latest research related to the study and application of biotechnology to: - Medicine and Biomedical Sciences - Agriculture - The Environment The focus on these three technology sectors recognizes that complete Biotechnology applications often require a combination of techniques. 3 Biotech not only presents the latest developments in biotechnology but also addresses the problems and benefits of integrating a variety of techniques for a particular application. 3 Biotech will appeal to scientists and engineers in both academia and industry focused on the safe and efficient application of Biotechnology to Medicine, Agriculture and the Environment.
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