The Effects of Seed Pretreatment with Endophytic Bacteria Bacillus subtilis on the Water Balance of Spring and Winter Wheat Seedlings under Short-Time Water Deficit

Author:

Lubyanova Alsu R.1ORCID,Allagulova Chulpan R.1,Lastochkina Oksana V.1ORCID

Affiliation:

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

Abstract

We investigated the effect of pre-sowing seed treatment with endophytic Bacillus subtilis 10-4 (B. subtilis) on spring and winter wheat (Triticum aestivum L.; cultivars Ekada-70 (Ek) and Scepter (Sc), respectively) growth and tolerance under 1–24 h of drought stress, modulated by 12% polyethylene glycol 6000 (PEG). The results showed that drought decreased transpiration intensity (TI), root relative water content (RWC), osmotic potential (Ψπ) of cell sap, and induced proline accumulation and electrolyte leakage (EL) in both wheat cultivars. It was revealed that Sc was more responsive to PEG and B. subtilis treatments than Ek. Under drought, Ek did not significantly change root length, shoot height, or dry biomass. The pretreatment of wheat plants with B. subtilis performed significantly better under drought conditions through the enhanced TI, RWC, and Ψπ of the cell sap in comparison with the plants treated with 12% PEG alone. B. subtilis also reduced stress-caused EL, especially in the Sc cultivar. Under water deficit wheat seedlings, pretreated with B. subtilis, have a higher proline accumulation in comparison to untreated stressed plants. Taken together, our results demonstrate the crucial role of endophytic B. subtilis in ameliorating the adverse effects of water stress on the water balance of both winter and spring wheat cultivars.

Funder

The Ministry of Education and Science of Russia

Publisher

MDPI AG

Subject

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

Reference65 articles.

1. Drought response in winter wheat: Protection from oxidative stress and mutagenesis effect;Kirova;Acta Physiol. Plant.,2021

2. Comparison of important parameters of spring and winter barley cultivated in sugar beet production area of Czech Republic;Nesvadba;Plant Soil Environ.,2002

3. FAO (2020). The State of Food and Agriculture 2020, Overcoming Water Challenges in Agriculture, FAO.

4. Marček, T., Hamow, K., Végh, B., Janda, T., and Darko, E. (2019). Metabolic response to drought in six winter wheat genotypes. PLoS ONE, 14.

5. Glycine betaine and salicylic acid induced modification in water relations and productivity of drought wheat plants;Aldesuquy;J. Stress Physiol. Biochem.,2014

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