Effect of MnxOy Nanoparticles Stabilized with Methionine on Germination of Barley Seeds (Hordeum vulgare L.)

Author:

Blinov Andrey1,Gvozdenko Alexey1,Golik Alexey1ORCID,Siddiqui Shahida A.23,Göğüş Fahrettin4ORCID,Blinova Anastasiya1,Maglakelidze David1ORCID,Shevchenko Irina1,Rebezov Maksim56ORCID,Nagdalian Andrey7ORCID

Affiliation:

1. Department of Physics and Technology of Nanostructures and Materials, Physical and Technical Faculty, North Caucasus Federal University, 355017 Stavropol, Russia

2. Department of Biotechnology and Sustainability, Technical University of Munich (TUM), 94315 Straubing, Germany

3. German Institute of Food Technologies (DIL e.V.), 49610 D-Quakenbrück, Germany

4. Department of Food Engineering, Engineering Faculty, University of Gaziantep, 27310 Gaziantep, Turkey

5. Biophotonics Center, Prokhorov General Physics Institute of the Russian Academy of Science, 119991 Moscow, Russia

6. Department of Scientific Research, V. M. Gorbatov Federal Research Center for Food Systems, 109240 Moscow, Russia

7. Laboratory of Food and Industrial Biotechnology, Faculty of Food Engineering and Biotechnology, North Caucasus Federal University, 355017 Stavropol, Russia

Abstract

The aim of this research was to study the effect of MnxOy nanoparticles stabilized with L-methionine on the morphofunctional characteristics of the barley (Hordeum vulgare L.) crop. MnxOy nanoparticles stabilized with L-methionine were synthesized using potassium permanganate and L-methionine. We established that MnxOy nanoparticles have a diameter of 15 to 30 nm. According to quantum chemical modeling and IR spectroscopy, it is shown that the interaction of MnxOy nanoparticles with L-methionine occurs through the amino group. It is found that MnxOy nanoparticles stabilized with L-methionine have positive effects on the roots and seedling length, as well as the seed germination energy. The effect of MnxOy nanoparticles on Hordeum vulgare L. seeds is nonlinear. At a concentration of 0.05 mg/mL, there was a statistically significant increase in the length of seedlings by 68% compared to the control group. We found that the root lengths of samples treated with MnxOy nanoparticle sols with a concentration of 0.05 mg/mL were 62.8%, 32.7%, and 158.9% higher compared to samples treated with L-methionine, KMnO4, and the control sample, respectively. We have shown that at a concentration of 0.05 mg/mL, the germination energy of seeds increases by 50.0% compared to the control sample, by 10.0% compared to the samples treated with L-methionine, and by 13.8% compared to the samples treated with KMnO4.

Funder

Ministry of Education and Science of Russia

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

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