The Contribution of Hormonal Changes to the Protective Effect of Endophytic Bacterium Bacillus subtilis on Two Wheat Genotypes with Contrasting Drought Sensitivities under Osmotic Stress

Author:

Lastochkina Oksana1ORCID,Yuldashev Ruslan1,Avalbaev Azamat1ORCID,Allagulova Chulpan1,Veselova Svetlana1ORCID

Affiliation:

1. Institute of Biochemistry and Genetics—Subdivision of the Ufa Federal Research Centre of the Russian Academy of Sciences, 71 Pr. Oktyabrya, 450054 Ufa, Russia

Abstract

A comparative analysis was conducted to evaluate the effects of seed priming with endophytic bacterium Bacillus subtilis 10-4 (BS) on the hormonal system and cell wall tolerance (lipid peroxidation (LPO), electrolyte leakage (EL), and root lignin deposition) of two Triticum aestivum L. (wheat) varieties with contrasting drought sensitivities (Ekada 70—drought-tolerant (DT); Salavat Yulaev—drought-sensitive (DS)) under normal conditions and 12% polyethylene glycol-6000 (PEG)-induced osmotic stress. The results showed that under normal conditions, the growth stimulation in wheat plants by BS was attributed to changes in the hormonal balance, particularly an increase in endogenous indole-3-acetic acid (IAA) accumulation. However, under stress, a significant hormonal imbalance was observed in wheat seedlings, characterized by a pronounced accumulation of abscisic acid (ABA) and a decrease in the levels of IAA and cytokinins (CK). These effects were reflected in the inhibition of plant growth. BS exhibited a protective effect on stressed plants, as evidenced by a significantly lower amplitude of stress-induced changes in the hormonal system: maintaining the content of IAA at a level close to the control, reducing stress-induced ABA accumulation, and preventing CK depletion. These effects were further reflected in the normalization of growth parameters in dehydrated seedlings, as well as a decrease in leaf chlorophyll degradation, LPO, and EL, along with an increase in lignin deposition in the basal part of the roots in both genotypes. Overall, the findings demonstrate that BS, producing phytohormones, specifically IAA and ABA, had a more pronounced protective effect on DT plants, as evidenced by a smaller amplitude of stress-induced hormonal changes, higher leaf chlorophyll content, root lignin deposition, and lower cell membrane damage (LPO) and permeability (EL) compared to DS plants.

Publisher

MDPI AG

Subject

Virology,Microbiology (medical),Microbiology

Reference111 articles.

1. Climate Change Impact and Adaptation for Wheat Protein;Asseng;Glob. Chang. Biol.,2019

2. Plant Drought Stress: Effects, Mechanisms and Management;Farooq;Agron. Sustain. Dev.,2009

3. Drought Response in Winter Wheat: Protection from Oxidative Stress and Mutagenesis Effect;Kirova;Acta Physiol. Plant.,2021

4. FAO (2023, March 21). Cereal Supply and Demand Brief. Available online: http://www.fao.org/worldfoodsituation/csdb/en/.

5. Progress in Modern Crop Science Research in Wheat Biology;Altaf;J. Glob. Innov. Agric. Sci.,2022

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