Effect of the New Plant Growth Biostimulants Based on Amino Acids on Yield and Grain Quality of Winter Wheat

Влияние новых биостимуляторов роста растений на основе аминокислот на урожайность и качество зерна озимой пшеницы
Małgorzata Popko, Izabela Michalak, Radosław Wilk, Mateusz Gramza, Katarzyna Chojnacka, H. Górecki
2018-02-21

Zeleny sedimentation indexamino acid biostimulantsgrain qualitygrain yieldwinter wheat
Field and laboratory experiments were carried out in 2012–2013, aimed at evaluating the influence of new products stimulating plant growth based on amino acids on crop yield, characteristics of grain and content of macro- and micronutrients in winter wheat (Triticum aestivum L.). The tests included two formulations produced in cooperation with INTERMAG Co. (Olkusz, Poland)—AminoPrim and AminoHort, containing 15% and 20% amino acids, respectively, and 0.27% and 2.1% microelements, respectively. Field experiments showed that the application of products based on amino acids influenced the increase of grain yield of winter wheat (5.4% and 11%, respectively, for the application of AminoPrim at a dose 1.0 L/ha and AminoHort at dose 1.25 L/ha) when compared to the control group without biostimulant. Laboratory tests showed an increase of technological characteristics of grain such as ash content, Zeleny sedimentation index and content of protein. The use of the tested preparations at different doses also contributed to the increase of the nutrients content in grains, in particular copper (ranging 31–50%), as well as sodium (35–43%), calcium (4.3–7.9%) and molybdenum (3.9–16%). Biostimulants based on amino acids, tested in the present study, can be recommended for an efficient agricultural production.
1
Amino-acid biostimulants increased winter wheat grain yield by 5.4% with AminoPrim and 11% with AminoHort versus untreated controls.
2
AminoPrim contained 15% amino acids and 0.27% microelements, while AminoHort contained 20% amino acids and 2.1% microelements.
3
Biostimulant applications improved grain technological characteristics, including ash content, Zeleny sedimentation index, and protein content.
4
Calcium and molybdenum concentrations also increased, by 4.3–7.9% and 3.9–16%, respectively, supporting the products’ potential for efficient wheat production.
5
Treatments increased grain nutrient concentrations, especially copper by 31–50% and sodium by 35–43%.

Winter wheat (Triticum aestivum L.) crops treated with amino-acid-based plant growth biostimulants

the effects of AminoPrim and AminoHort applications on grain yield, technological grain quality, and macro- and micronutrient content

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2018-02-21
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Małgorzata Popko
Izabela Michalak
Radosław Wilk
Mateusz Gramza
Katarzyna Chojnacka
H. Górecki
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