Efficiency of chemical protection of spring rape and mustard from rape blossom beetle

S. Stankevych, M. Yevtushenko, V. V. Vilna, I. V. Zabrodina, D. D. Yushchuk, L. Sirous, N. V. Lutytska, O. Molchanova, V. O. Melenti, L. Golovan, I. Klymenko, L. Zhukova, A. A. Poedinceva, O. V. Pismennyi, O. Romanov, T. A. Romanova
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引用次数: 7

Abstract

One of the most dangerous pests of cabbage crops which can damage plants in the budding and flowering phases in all areas of their cultivation is a rape blossom beetle (Meligethes aeneus Fabricius, 1775). The pest is widespread throughout Ukraine; it causes significant damage to the crops every year and reduces the seed yields. It should be noted that the rape blossom beetle is not new to our country and as a pest of rape and other crops from the cabbage family has been mentioned since 1845, and a detailed description of its morphology, biology and ecology can be found in the works of the nineteenth century. It is established that in the Eastern Forest-Steppe of Ukraine the first individuals of the rape blossom beetle appear on the flowering wild growing plants (first of all on dandelion and buttercup) when the average daily temperature exceeds 8 °C, it is the middle of the first decade of April and the beginning of the third decade of April. The mass emergence of the rape blossom beetles takes place when the daily average temperatures are at the range of 9–13 °C and the sum of the effective temperatures above 5 °C is at the range of 100–113 °C, it is the middle of the second decade of April and the end of the third decade of April. The females of the rape blossom beetle usually lay 2–3 eggs into one bud of spring rape or mustard. When protecting the crops from the rape blossom beetle the highest technical efficiency was noted when applying the binary mixture of the microbiological preparation Actophyte, 0.25 % of emulsion concentrate in the dose of 4.8 L/ha and systemic insecticide Biscaya, 24 % of oily dispersion (0.25 L/ha) and in 14 days after spraying it was 76.6 % on white mustard, 74.3 % on Chinese mustard and 76.2 % on spring rape. The highest growth increase in the yield capacity was observed in the same variant; for white mustard it was 0.431 t/ha, for Chinese mustard it was 0.265 t/ha and for spring rape the growth increase amounted to 0.277 t/ha. As a result of the researches it is established that the weight of 1000 healthy seeds is 2,6996 g, and the weight of the seeds damaged by the larvae of the rape blossom beetle is 0.4213 g, so it is reduced by 84.4 %. The filling of the damaged seeds is 6.8 times more, which indicates that they are smaller in diameter and frail. The undamaged seeds of spring rape contain 35.92 % of fat, and the damaged seeds contain only 17.48 %, which is 2.05 times less. The protein content in the undamaged seeds was 30.97 % and in the damaged ones it was 32.23 %, that is 1.04 times more. The germination rate of the undamaged seeds of spring rape under the laboratory conditions on the eighth day was 90.0 %, and the germination rate of the damaged ones amounted to 58.0 % and was lower by 32.0 %.
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春油菜和芥菜对花甲虫的化学防护效果
菜花甲虫(Meligethes aeneus Fabricius, 1775)是卷心菜作物中最危险的害虫之一,它可以在其种植的所有区域损害植物的萌芽和开花阶段。这种害虫在乌克兰各地广泛存在;它每年都会对作物造成严重损害,并降低种子产量。应该指出的是,油菜花甲虫在我国并不新鲜,自1845年以来,作为油菜和其他卷心菜科作物的害虫,人们就提到了它。在19世纪的著作中,可以找到对它的形态、生物学和生态学的详细描述。在乌克兰东部森林草原,当日平均气温超过8℃时,油菜花甲虫的第一批个体出现在开花的野生生长植物上(首先是蒲公英和毛茛),这是4月第一个十年的中期和4月第三个十年的开始。日平均气温在9 ~ 13℃,5℃以上有效气温之和在100 ~ 113℃时,即4月第二个十年的中期和4月第三个十年的末期,油菜花甲虫大量羽化。油菜花甲虫的雌性通常在春季油菜或芥菜的一个花蕾中产2-3个卵。施用微生物制剂Actophyte、0.25%乳化液(4.8 L/ha)和系统杀虫剂比斯卡亚(Biscaya)、24%油分散剂(0.25 L/ha)的二元混合药剂对油菜花甲的防治效果最好,喷后14 d,对白芥菜的防治效果为76.6%,对芥菜的防治效果为74.3%,对春油菜的防治效果为76.2%。同一品种的产量增幅最大;白芥增产0.431 t/ha,芥增产0.265 t/ha,春油菜增产0.277 t/ha。研究结果表明,1000粒健康种子的重量为2,6996 g,被油菜花甲虫幼虫破坏的种子的重量为0.4213 g,减少了84.4%。受损种子的充盈量为6.8倍,说明其直径较小,脆弱。春油菜未损伤种子脂肪含量为35.92%,损伤种子脂肪含量仅为17.48%,低2.05倍。未损伤种子的蛋白质含量为30.97%,损伤种子的蛋白质含量为32.23%,是损伤种子的1.04倍。在实验室条件下,未损伤的春油菜种子在第8天的发芽率为90.0%,损伤的种子发芽率为58.0%,低32.0%。
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