在 MaxiMarin 吸收剂影响下乌克兰右岸森林草原苋菜品种生产力的形成

V. Yatsenko, N. V. Yatsenko, S. V. Rogalskyi, A. O. Sichkar, Y. V. Novak
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The absorbent applied had a significant effect on the productivity indicators, which were characterized by a significant difference between varieties. In particular, the average increase in the mass of leaves per plant for the studied varieties of amaranth was 12.2%, the mass of inflorescence – 8.9%, or 3.6 g/plant. The variety ‘Kharkivskyi­1’ responded best to the introduction of an absorbent that improved growth conditions, the weight of its inflorescence increased by 12.6%, or 5.3g/plant. The strengthening of growth processes was made possible by the improved deve­lopment of the root system and an increase in its mass, depending on the variety, of 12.3–24.6% (2.1–3.0 g/plant). At the same time, total plant weight increased by an average of 12.4% (11.2–13.3% in different varieties). Green mass yield increased by 13.6–16.5% (4.75–5.75 t/ha) due to the use of absorbent and was in the range of 33.0–40.0 t/ha. The highest values were characterized by the variety ‘Sem’ – 34.3 t/ha in the control and 40.0 t/ha in the experiments with added absorbent. Its application also caused an increase in the yield of different varieties of amaranth by 0.30–0.38 t/ha or 16.0–18.3% (the most productive was the variety ‘Sem’ – 2.08 and 2.46 t/ha, depending on the variant of the experiment) and a significant decrease in the concentration of protein (by 0.1–10.0%), fats (by 7.4–19.5%) and starch (by 3.2–8.2%). Conclusions. 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引用次数: 0

摘要

目的对苋菜品种 "Kharkivskyi1"、"Helios "和 "Sem "应用 MaxiMarin 吸收剂以弥补乌克兰森林草原降雨不足和湿度不均的情况进行经济评估。方法。2021-2023 年期间,在田间(乌曼,北纬 48°46¢,东经 30°14¢)研究了三个苋菜品种和颗粒状 MaxiMarin 牌吸水剂,施用量为 25 公斤/公顷。根据以下参数对品种进行了评估:叶片、花序和根的重量,开花期和完全成熟期的绿色质量产量。此外,还测定了苋菜的籽粒产量、蛋白质、脂肪和淀粉含量。采用了方差分析和相关分析方法。结果表明使用的吸水剂对产量指标有显著影响,不同品种之间差异明显。特别是,所研究的苋菜品种每株叶片的平均增加量为 12.2%,花序的平均增加量为 8.9%,即 3.6 克/株。品种'哈尔科夫斯基1号'对引入吸收剂改善生长条件的反应最好,其花序重量增加了12.6%,即5.3克/株。根系发育的改善使生长过程得到加强,根系质量增加了 12.3-24.6%(2.1-3.0 克/株),具体取决于品种。同时,植株总重量平均增加了 12.4%(不同品种为 11.2-13.3%)。由于使用了吸收剂,绿色质量产量增加了 13.6-16.5%(4.75-5.75 吨/公顷),在 33.0-40.0 吨/公顷之间。产量最高的品种是 "Sem"--在对照组中为 34.3 吨/公顷,在添加吸收剂的实验中为 40.0 吨/公顷。施用吸水剂还能使不同品种的苋菜产量增加 0.30-0.38 吨/公顷或 16.0-18.3% (产量最高的品种是 "Sem"--2.08 和 2.46 吨/公顷,具体取决于实验变量),并显著降低蛋白质浓度(0.1-10.0%)、脂肪浓度(7.4-19.5%)和淀粉浓度(3.2-8.2%)。结论吸水剂是平衡水分失衡和确保最大限度发挥苋菜生产潜力的有效工具,但改善水分制度对蛋白质、脂肪和淀粉的积累有负面影响。
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Formation of productivity of amaranth varieties in the Right Bank Forest Steppe of Ukraine under the influence of MaxiMarin absorbent
Purpose. To carry out an economic evaluation of amaranth varieties ‘Kharkivskyi­1’, ‘Helios’ and ‘Sem’ for the application of MaxiMarin absorbent used to compensate for lack of rainfall and uneven moisture in the forest steppe of Ukraine. Methods. During 2021–2023, three varieties of amaranth and MaxiMarin brand absorbent in the form of granules were studied in the field (Uman, 48°46¢N, 30°14¢E) at an application rate of 25 kg/ha. The varieties were evaluated according to the following parameters: weight of leaves, inflorescence and roots, yield of green mass in the flowering and full maturity phases. Amaranth grain yield, protein, fat and starch content were also determined. The methods of analysis of variance and correlation were used. Results. The absorbent applied had a significant effect on the productivity indicators, which were characterized by a significant difference between varieties. In particular, the average increase in the mass of leaves per plant for the studied varieties of amaranth was 12.2%, the mass of inflorescence – 8.9%, or 3.6 g/plant. The variety ‘Kharkivskyi­1’ responded best to the introduction of an absorbent that improved growth conditions, the weight of its inflorescence increased by 12.6%, or 5.3g/plant. The strengthening of growth processes was made possible by the improved deve­lopment of the root system and an increase in its mass, depending on the variety, of 12.3–24.6% (2.1–3.0 g/plant). At the same time, total plant weight increased by an average of 12.4% (11.2–13.3% in different varieties). Green mass yield increased by 13.6–16.5% (4.75–5.75 t/ha) due to the use of absorbent and was in the range of 33.0–40.0 t/ha. The highest values were characterized by the variety ‘Sem’ – 34.3 t/ha in the control and 40.0 t/ha in the experiments with added absorbent. Its application also caused an increase in the yield of different varieties of amaranth by 0.30–0.38 t/ha or 16.0–18.3% (the most productive was the variety ‘Sem’ – 2.08 and 2.46 t/ha, depending on the variant of the experiment) and a significant decrease in the concentration of protein (by 0.1–10.0%), fats (by 7.4–19.5%) and starch (by 3.2–8.2%). Conclusions. Absorbents are an effective tool for levelling moisture imbalances and ensuring maximum realization of the productive potential of amaranth, but improving the water regime has a negative effect on the accumulation of protein, fats and starch.
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