Salt Tolerant Bacillus Strains Improve Plant Growth Traits and Regulation of Phytohormones in Wheat under Salinity Stress

Author:

Ayaz Muhammad,Ali QurbanORCID,Jiang Qifan,Wang Ruoyi,Wang Zhengqi,Mu Guangyuan,Khan Sabaz AliORCID,Khan Abdur Rashid,Manghwar HakimORCID,Wu Huijun,Gao Xuewen,Gu Qin

Abstract

Soil salinity is a major constraint adversely affecting agricultural crops including wheat worldwide. The use of plant growth promoting rhizobacteria (PGPR) to alleviate salt stress in crops has attracted the focus of many researchers due to its safe and eco-friendly nature. The current study aimed to study the genetic potential of high halophilic Bacillus strains, isolated from the rhizosphere in the extreme environment of the Qinghai–Tibetan plateau region of China, to reduce salt stress in wheat plants. The genetic analysis of high halophilic strains, NMCN1, LLCG23, and moderate halophilic stain, FZB42, revealed their key genetic features that play an important role in salt stress, osmotic regulation, signal transduction and membrane transport. Consequently, the expression of predicted salt stress-related genes were upregulated in the halophilic strains upon NaCl treatments 10, 16 and 18%, as compared with control. The halophilic strains also induced a stress response in wheat plants through the regulation of lipid peroxidation, abscisic acid and proline in a very efficient manner. Furthermore, NMCN1 and LLCG23 significantly enhanced wheat growth parameters in terms of physiological traits, i.e., fresh weight 31.2% and 29.7%, dry weight 28.6% and 27.3%, shoot length 34.2% and 31.3% and root length 32.4% and 30.2%, respectively, as compared to control plants under high NaCl concentration (200 mmol). The Bacillus strains NMCN1 and LLCG23 efficiently modulated phytohormones, leading to the substantial enhancement of plant tolerance towards salt stress. Therefore, we concluded that NMCN1 and LLCG23 contain a plethora of genetic features enabling them to combat with salt stress, which could be widely used in different bio-formulations to obtain high crop production in saline conditions.

Funder

The Key Project of NSFC regional innovation and development joint fund

Publisher

MDPI AG

Subject

Plant Science,Ecology,Ecology, Evolution, Behavior and Systematics

Reference70 articles.

1. Wheat Responses and Tolerance to Terminal Heat Stress: A Review;Sharma,2019

2. The Role of Transcription Factors in Wheat Under Different Abiotic Stresses

3. Consideration of Combined Stress: A Crucial Paradigm for Improving Multiple Stress Tolerance in Plants;Mahalingam,2015

4. Bread Wheat With High Salinity and Sodicity Tolerance

5. Overview of salinity problems in the world and FAO strategies to address the problem;Martinez-Beltran;Proceedings of the 3rd International Salinity Forum,2005

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