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内生枯草芽孢杆菌 Ni7 缓解干旱胁迫的形态学、代谢组学和基因组学证据

Morphological, Metabolomic and Genomic Evidences on Drought Stress Protective Functioning of the Endophyte Bacillus safensis Ni7.

机构信息

School of Biosciences, Mahatma Gandhi University, Kottayam, India.

出版信息

Curr Microbiol. 2024 Jun 4;81(7):209. doi: 10.1007/s00284-024-03720-x.

Abstract

The metabolomic and genomic characterization of an endophytic Bacillus safensis Ni7 was carried out in this study. This strain has previously been isolated from the xerophytic plant Nerium indicum L. and reported to enhance the drought tolerance in Capsicum annuum L. seedlings. The effects of drought stress on the morphology, biofilm production, and metabolite production of B. safensis Ni7 are analyzed in the current study. From the results obtained, the organism was found to have multiple strategies such as aggregation and clumping, robust biofilm production, and increased production of surfactin homologues under the drought induced condition when compared to non-stressed condition. Further the whole genome sequencing (WGS) based analysis has demonstrated B. safensis Ni7 to have a genome size of 3,671,999 bp, N50 value of 3,527,239, and a mean G+C content of 41.58%. Interestingly the organism was observed to have the presence of various stress-responsive genes (13, 20U, 16U,160, 39, 17M, 18, 26, and ctc) and genes responsible for surfactin production (srfAA, srfAB, srfAC, and srfAD), biofilm production (epsD, epsE, epsF, epsG, epsH, epsI, epsK, epsL, epsM, epsN, and pel), chemotaxis (cheB_1, cheB_2, cheB_3, cheW_1, cheW_2 cheR, cheD, cheC, cheA, cheY, cheV, and cheB_4), flagella synthesis (flgG_1, flgG_2, flgG_3, flgC, and flgB) as supportive to the drought tolerance. Besides these, the genes responsible for plant growth promotion (PGP), including the genes for nitrogen (nasA, nasB, nasC, nasD, and nasE) and sulfur assimilation (cysL_1&L_2, cysI) and genes for phosphate solubilization (phoA, phoP_1& phoP_2, and phoR) could also be predicted. Along with the same, the genes for catalase, superoxide dismutase, protein homeostasis, cellular fitness, osmoprotectants production, and protein folding could also be predicted from its WGS data. Further pan-genome analysis with plant associated B. safensis strains available in the public databases revealed B. safensis Ni7 to have the presence of a total of 5391 gene clusters. Among these, 3207 genes were identified as core genes, 954 as shell genes and 1230 as cloud genes. This variation in gene content could be taken as an indication of evolution of strains of Bacillus safensis as per specific conditions and hence in the case of B. safensis Ni7 its role in habitat adaptation of plant is well expected. This diversity in endophytic bacterial genes may attribute its role to support the plant system to cope up with stress conditions. Overall, the study provides genomic evidence on Bacillus safensis Ni7 as a stress alleviating microbial partner in plants.

摘要

本研究对一株内生枯草芽孢杆菌 Ni7 进行了代谢组学和基因组学的特征分析。该菌株先前从旱生植物夹竹桃中分离得到,并被报道能提高辣椒幼苗的耐旱性。本研究分析了干旱胁迫对 Ni7 菌株形态、生物膜生成和代谢产物生成的影响。结果表明,与非胁迫条件相比,该菌在干旱诱导条件下具有多种策略,如聚集和结块、生物膜生成能力增强以及表面活性剂类似物产量增加。进一步的全基因组测序(WGS)分析表明,Ni7 具有 3671999bp 的基因组大小、N50 值为 3527239bp 和平均 G+C 含量为 41.58%。有趣的是,该菌被观察到存在各种应激响应基因(13、20U、16U、160、39、17M、18、26 和 ctc)和表面活性剂产生基因(srfAA、srfAB、srfAC 和 srfAD)、生物膜生成基因(epsD、epsE、epsF、epsG、epsH、epsI、epsK、epsL、epsM、epsN 和 pel)、趋化性基因(cheB_1、cheB_2、cheB_3、cheW_1、cheW_2 cheR、cheD、cheC、cheA、cheY、cheV 和 cheB_4)、鞭毛合成基因(flgG_1、flgG_2、flgG_3、flgC 和 flgB),这些都有助于其耐旱性。此外,还可以预测到与植物生长促进(PGP)相关的基因,包括氮(nasA、nasB、nasC、nasD 和 nasE)和硫同化(cysL_1&L_2、cysI)以及磷酸盐溶解(phoA、phoP_1& phoP_2 和 phoR)的基因。同时,还可以从其 WGS 数据中预测到与过氧化氢酶、超氧化物歧化酶、蛋白质稳态、细胞适应性、渗透保护剂产生和蛋白质折叠相关的基因。进一步对公共数据库中与植物相关的枯草芽孢杆菌 safensis 菌株进行泛基因组分析,发现 Ni7 含有总计 5391 个基因簇。其中,3207 个基因为核心基因,954 个为外壳基因,1230 个为云基因。这种基因含量的变化可以被视为枯草芽孢杆菌 safensis 菌株根据特定条件进化的迹象,因此在 Ni7 的情况下,其在植物栖息地适应中的作用是可以预期的。内生细菌基因的这种多样性可能使其在支持植物系统应对应激条件方面发挥作用。总的来说,该研究为枯草芽孢杆菌 Ni7 作为植物应激缓解微生物伙伴提供了基因组证据。

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