Ways to reduce anti-nutritional substances in winter rye grain.

Physiol Mol Biol Plants

Federal State Budgetary Educational Institution of Higher Education, Bashkir State Agrarian University, 34, ul. 50th Anniversary of October, Ufa, Russian Federation 450001.

Published: May 2020

The purpose of this research was to establish the nature and extent of the influence of microwaves and extrusion on the content of anti-nutritional substances of winter rye grain. There was performed two-factor laboratory experiment with the treatment of winter rye grain by electromagnetic waves of super-high frequency (microwave) on a LG MS-2042G installation and one-factor laboratory experiment with grain treatment using a MKP-30-500 extruder. Depending on the power and duration of the microwave treatment, the content of water-soluble pentosans decreased by 0.04-0.44% and the kinematic viscosity of the aqueous extract-by 2.4 times. As a result of extrusion processing, the content of water-soluble pentosans in the winter rye grain decreased by 1.34 times, the kinematic viscosity of the aqueous extract-by 2.42 times. For all the years of the research, extrusion has led to a certain decrease in starch in winter rye grain. During a 3-year period the original grain of winter rye contained on average 59.9% of starch. After extrusion, the value of this indicator decreased by 2.0% amounting to 57.9%. During the extrusion process, starch is partially hydrolyzed to form intermediate carbohydrates-dextrins and then glucose. Our research has shown an increase in the content of soluble carbohydrates in extruded rye grain. During a 3-year period, the content of soluble carbohydrates in grain increased on average from 31.45 to 51.36%, i.e. by 19.91%. Treatment by microwaves and extrusion are effective ways to reduce the anti-nutritional substances of winter rye grain and significantly increase the proportion of rye grain in the diet of farm animals.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7196592PMC
http://dx.doi.org/10.1007/s12298-020-00795-1DOI Listing

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