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The Biological Traumatization of Crops Due to the Enzyme Stage of Enzyme-Mycotic Seed Depletion
by
Beloshapkina, Olga O.
, Rebouh, Nazih Y.
, Kulikov, Ivan M.
, Ashirbekov, Mukhtar Z.
, Sardarova, Irina
, Kalashnikova, Elena A.
, Kucher, Dmitry E.
, Begeulov, Marat Sh
, Ionova, Natalia E.
, Temirbekova, Sulukhan K.
, Afanasyeva, Yuliya V.
in
Abiotic stress
/ Agricultural production
/ Barley
/ Carbohydrates
/ Cereal crops
/ Contamination
/ Crop diseases
/ Crops
/ Depletion
/ Enzymes
/ Food security
/ fungal pathogens
/ fungi
/ Germinability
/ germination
/ Grain
/ grain quality
/ Harvest
/ Harvesting
/ Horticulture
/ Humidity
/ Investigations
/ Loam soils
/ Low temperature
/ Moisture effects
/ Pathogenesis
/ Pathogens
/ Plant resistance
/ Research centers
/ Seeds
/ Spring wheat
/ Standing crop
/ Substrates
/ Temperature
/ Triticum aestivum subsp. spelta
/ VIR gene pool
/ water content
/ Wheat
/ Winter
/ Winter wheat
/ X-radiation
2022
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The Biological Traumatization of Crops Due to the Enzyme Stage of Enzyme-Mycotic Seed Depletion
by
Beloshapkina, Olga O.
, Rebouh, Nazih Y.
, Kulikov, Ivan M.
, Ashirbekov, Mukhtar Z.
, Sardarova, Irina
, Kalashnikova, Elena A.
, Kucher, Dmitry E.
, Begeulov, Marat Sh
, Ionova, Natalia E.
, Temirbekova, Sulukhan K.
, Afanasyeva, Yuliya V.
in
Abiotic stress
/ Agricultural production
/ Barley
/ Carbohydrates
/ Cereal crops
/ Contamination
/ Crop diseases
/ Crops
/ Depletion
/ Enzymes
/ Food security
/ fungal pathogens
/ fungi
/ Germinability
/ germination
/ Grain
/ grain quality
/ Harvest
/ Harvesting
/ Horticulture
/ Humidity
/ Investigations
/ Loam soils
/ Low temperature
/ Moisture effects
/ Pathogenesis
/ Pathogens
/ Plant resistance
/ Research centers
/ Seeds
/ Spring wheat
/ Standing crop
/ Substrates
/ Temperature
/ Triticum aestivum subsp. spelta
/ VIR gene pool
/ water content
/ Wheat
/ Winter
/ Winter wheat
/ X-radiation
2022
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The Biological Traumatization of Crops Due to the Enzyme Stage of Enzyme-Mycotic Seed Depletion
by
Beloshapkina, Olga O.
, Rebouh, Nazih Y.
, Kulikov, Ivan M.
, Ashirbekov, Mukhtar Z.
, Sardarova, Irina
, Kalashnikova, Elena A.
, Kucher, Dmitry E.
, Begeulov, Marat Sh
, Ionova, Natalia E.
, Temirbekova, Sulukhan K.
, Afanasyeva, Yuliya V.
in
Abiotic stress
/ Agricultural production
/ Barley
/ Carbohydrates
/ Cereal crops
/ Contamination
/ Crop diseases
/ Crops
/ Depletion
/ Enzymes
/ Food security
/ fungal pathogens
/ fungi
/ Germinability
/ germination
/ Grain
/ grain quality
/ Harvest
/ Harvesting
/ Horticulture
/ Humidity
/ Investigations
/ Loam soils
/ Low temperature
/ Moisture effects
/ Pathogenesis
/ Pathogens
/ Plant resistance
/ Research centers
/ Seeds
/ Spring wheat
/ Standing crop
/ Substrates
/ Temperature
/ Triticum aestivum subsp. spelta
/ VIR gene pool
/ water content
/ Wheat
/ Winter
/ Winter wheat
/ X-radiation
2022
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The Biological Traumatization of Crops Due to the Enzyme Stage of Enzyme-Mycotic Seed Depletion
Journal Article
The Biological Traumatization of Crops Due to the Enzyme Stage of Enzyme-Mycotic Seed Depletion
2022
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Overview
In the light of Vavilov’s Law, grain traumatization in the standing crop of wheat and other crops due to the enzyme stage of enzyme-mycotic seed depletion (EMSD) was confirmed, the parameters of open and hidden harmfulness were detected, and a scale of plant resistance to such traumatization was developed. The current study demonstrates that pathogen contamination in grains occurs before harvesting and its degree is determined by favorable humidity and temperature conditions and by the open and hidden grain traumatization due to the enzyme stage of EMSD, i.e., the grain’s hydrolytic enzymes providing a growth substrate for a fungal spread that is later substituted by pathogen enzymes leading to grain spoiling and self-warming. The most common technique to preserve grain quality is to support a moisture level that prevents further spreading of the fungi. The grains that are contaminated with very low temperature and humidity levels facilitate the germinability and high quality of the grain. The new ways to withstand EMSD should, first of all, include a selection of activities. Using biological, biochemical and physical (X-ray) methods, genetic sources of resistance towards EMSD were found in the VIR world collection that is recommended for further selection. These sources have become a basis for the varieties, such as Moskovskaya 39, Ilot (winter wheat), Gremme and Gremme 2U (hulless spelt), Alcoran (winter spelt) and Kanysh (spring wheat).
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