Application of Bacillus subtilis for the Alleviation of Salinity Stress in Different Cultivars of Wheat (Tritium aestivum L.)

Author:

Gul Saboor1,Javed Sadia1ORCID,Azeem Muhammad1ORCID,Aftab Amreen1,Anwaar Nazima1,Mehmood Tahir2,Zeshan Basit3ORCID

Affiliation:

1. Department of Biochemistry, Government College University, Faisalabad 38400, Pakistan

2. Centre for Applied Molecular Biology (CAMB), University of the Punjab, Lahore 53700, Pakistan

3. Faculty of Sustainable Agriculture, University Malaysia Sabah (UMS), Sandakan 90509, Sabah, Malaysia

Abstract

Salinity has a negative impact on the agricultural production of crops. It adversely affects the physiochemical properties of the soil and ecological balance of the area. Plant growth-promoting bacteria play a key role in the biological control of phyto-pathogens and abiotic stress including salinity. Four varieties of wheat crop (V1: Akbar 2019, V2: Dilkash 2021, V3: Faisalabad 2008, and V4: Subhani 2020) were compared for their salinity stress tolerance and response towards Bacillus subtilis NA2. A completely randomized design (4 wheat varieties × 3 salt stress levels × 3 replicate × 2 control and bacterial treatments = 72 pots) was adopted using distilled water as a control. Stress negatively affected the plant growth. However, plants primed with Bacillus subtilis NA2 showed improved growth (plant lengths 29.45% and increased biomass 33.23%). Overall, bacterial strain enhanced the levels of carotenoids (45.53%), anthocyanin (32.51%), ascorbic acid (41.53%), total soluble proteins (59.21%), chlorophyll contents (49.65%), and peroxidase activity (31.76%). Levels of malondialdehyde (27.42%) and hydrogen peroxide (20.37%), catalase (16.48%), and ascorbate peroxidase (19.24%) decreased. With commensurable benefits, it can be inferred from the above study that the Bacillus subtilis NA2 strain is beneficial for the better yield of wheat under salinity stress by improving the plant defense mechanism and may be adopted in future by farmers.

Publisher

MDPI AG

Subject

Agronomy and Crop Science

Reference65 articles.

1. How can salicylic acid and jasmonic acid mitigate salt toxicity in soybean plants?;Ecotoxicol. Environ. Saf.,2018

2. Ghassemi, F., Jakeman, A.J., and Nix, H.A. (1995). Salinisation of Land and Water Resources: Human Causes, Extent, Management and Case Studies, CAB International.

3. Engineering salt-tolerant Brassica plants: Characterization of yield and seed oil quality in transgenic plants with increased vacuolar sodium accumulation;Zhang;Proc. Natl. Acad. Sci. USA,2001

4. Mechanisms of salinity tolerance;Munns;Annu. Rev. Plant Biol.,2008

5. How salinity damages citrus: Osmotic effects and specific ion toxicities;Ferguson;HortTechnology,2005

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