一些植物粉末对贮存可可豆上的 Corcyra cephalonica (Stainton) (Lepidoptera: Pyralidae) 幼虫的影响

R. Olorunmota, T. Ofuya, J. E. Idoko, R. Adebayo, A. V. Oyedokun
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摘要

据报道,米蛀虫(Corcyra cephalonica)是许多贮藏食品的重要害虫,也是可可豆最重要的害虫之一,会导致可可豆的重量和质量显著下降。可可豆中的杀虫剂含量过高会对人类健康造成危害,而且由于最高残留限量(MRL)的规定,可能会阻碍可可豆在全球市场上的销售。因此,本研究评估了瓜蒌粉、Aframomum melegueta、Eugenia aromatica 和稻壳粉对头蜱卵孵化率和幼虫死亡率的杀虫效果。通过在铺有滤纸的培养皿中施用不同剂量的粉剂(0.0、0.1、0.2、0.3 和 0.4 克),并在完全随机设计实验中引入昆虫的发育阶段(20 粒卵和 10 只幼虫),对粉剂的杀虫效果进行了测试。每隔 24 小时和 48 小时记录一次幼虫死亡率。在 0.3 和 0.4 克的剂量下,所有粉剂都能完全抑制卵的孵化。在处理后 48 小时内,P. guineense 和 A. melegueta 的幼虫死亡率分别为 60% 和 50%。在所有处理中,添加量越高,平均成虫出现率越低。P. guineense 和 A. melegueta 的粉末作为接触性生物杀虫剂对头状花序幼虫有效
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Some Plant Powders on Immatures of Corcyra cephalonica (Stainton) (Lepidoptera: Pyralidae) on Stored Cocoa Beans
Rice moth, Corcyra cephalonica, an important insect pest of many stored food products has been reported as one of the most important pest of cocoa bean, which causes significant reduction in weight and quality of beans. High pesticides level in cocoa beans pose danger to human health and may hinder its acceptance in the global market due to regulations on Maximum Residue Limit (MRL). This study therefore, evaluated the insecticidal effects of the powders of Piper guineense, Aframomum melegueta, Eugenia aromatica and Rice husk on egg hatchability and larva mortality of C. cephalonica. Powder efficacies as insecticides were tested by applying varying rates (0.0, 0.1, 0.2, 0.3 and 0.4g) on petri dish lined with filter paper and the developmental stages (20 eggs and 10 larvae) of the insect were introduced in a Completely Randomized Design experiment. Egg hatchability was recorded at 24 h interval for 96 h. Larvae mortality was recorded at every 24 and 48 h of introduction. All powders completely inhibited egg hatchability at 0.3 and 0.4g rates. P. guineense and A. melegueta recorded 60% and 50% larva mortality at 48hour post treatment. Mean adult emergence was zero at higher rates in all treatments. Powders of P. guineense and A. melegueta were effective as contact bio-insecticide against C. cephalonica immature stages
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