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鉴定能增强大麦耐盐性的新型根际细菌希瓦氏菌 C2 菌株

Characterization of Siccibacter sp. Strain C2 a Novel Rhizobacterium that Enhances Tolerance of Barley to Salt Stress.

机构信息

Plant Physiology and Functional Genomics Research Unit, Institute of Biotechnology of Sfax, University of Sfax, BP "1175", 3038, Sfax, Tunisia.

Laboratory of Biodiversity and Valorization of Bioresources in Arid Zones (LR18ES36), Faculty of Sciences, University of Gabes, 6072, Zrig, Gabes, Tunisia.

出版信息

Curr Microbiol. 2022 Jul 6;79(8):239. doi: 10.1007/s00284-022-02930-5.

Abstract

Plant growth promoting rhizobacteria (PGPR) arouse an increasing interest as an eco-friendly solution for improving crop tolerance to environmental stresses. In this study, we report the characterization of a novel halotolerant PGPR strain (named C2) identified in a screen of rhizospheric bacterial isolates from southeast of Tunisia. Phylogenetic analysis showed that strain C2 is most likely affiliated to the genus Siccibacter with Siccibacter turicensis as the closest species (98.19%). This strain was able to perform phosphate solubilization and production of indole acetic acid (IAA), siderophores, hydrogen cyanide (HCN), as well as different hydrolytic enzymes (proteases, amylases, cellulases, and lipases). The potential of strain C2 in enhancing salt stress tolerance of Hordeum vulgare was also investigated. Our greenhouse inoculation assays showed that strain C2 promotes barley growth in the presence of 400 mM NaCl by increasing biomass, root length, and chlorophyll contents. It has a positive effect on the photosynthetic efficiency, concomitantly with lower intercellular CO contents, compared to non-inoculated plants. Moreover, barley inoculation with strain C2 under salt stress, resulted in higher accumulation of proline and soluble sugars and alleviate the oxidative stress by decreasing hydrogen peroxide and malondialdehyde contents. Remarkably, this positive effect corroborates with a significant activation in the expression of a subset of barley stress responsive genes, including HVA1, HvDREB1, HvWRKY38 and HvP5CS. In summary, Siccibacter sp. strain C2 is able to enhance barley salt stress tolerance and should be leveraged in developing sustainable practices for cereal crop production.

摘要

植物促生根际细菌(PGPR)作为一种改善作物环境胁迫耐受性的环保解决方案,引起了越来越多的关注。在这项研究中,我们报告了一种新型耐盐 PGPR 菌株(命名为 C2)的特征,该菌株是从突尼斯东南部的根际细菌分离物筛选中发现的。系统发育分析表明,菌株 C2最可能与 Siccibacter 属有关,与 Siccibacter turicensis 最为密切(98.19%)。该菌株能够进行磷酸盐溶解和吲哚乙酸(IAA)、铁载体、氢氰酸(HCN)以及不同水解酶(蛋白酶、淀粉酶、纤维素酶和脂肪酶)的产生。还研究了菌株 C2 增强大麦对盐胁迫耐受性的潜力。我们的温室接种试验表明,菌株 C2 通过增加生物量、根长和叶绿素含量,在 400 mM NaCl 存在下促进大麦生长。与未接种植物相比,它对光合效率有积极影响,同时细胞间 CO 含量降低。此外,在盐胁迫下接种 C2 菌株的大麦,脯氨酸和可溶性糖的积累增加,通过降低过氧化氢和丙二醛含量缓解氧化应激。值得注意的是,这种积极影响与大麦应激响应基因的一部分(包括 HVA1、HvDREB1、HvWRKY38 和 HvP5CS)的表达显著激活相吻合。总之,Siccibacter sp. 菌株 C2 能够增强大麦的耐盐性,应该在开发可持续的谷物作物生产实践中加以利用。

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