麻疯树种子提取物对大白菜幼虫死亡率的影响

E. Baideng, J. Pelealu, B. Assa, H. Lengkey
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摘要

随着人们对获得优质植物产品的意识的提高,植物性杀虫剂的使用越来越多。其中一种被用作植物基杀虫剂的植物是麻疯树(Jarak pagar),因为它含有有毒成分,可以杀死卷心菜毛虫害虫(Crocidolomia binotalis)。本研究旨在研究麻疯树对小蠹蛾(Crocidolomia binotalis)白菜幼虫的死亡率。研究方法采用完全随机设计(CRD) 7 × 3,包括7种处理浓度(0000ppm、10000ppm、20000ppm、30000ppm、4000ppm、50000ppm、6000ppm), 3个重复。分别于麻风树施药后24、48、72、96、120、144小时进行观察。研究活动分两个阶段进行,1)麻疯树种子提取阶段和麻疯树试验幼虫的培育阶段,2)麻疯树提取物作为植物性杀虫剂的7个浓度水平试验阶段。方差分析表明,麻疯树提取物处理对幼虫有致死作用[F-count > F-table(116.8 > 2.37)]。死亡的幼虫会变黑,身体会弯曲。幼虫死亡最快的是24种HAA,浓度为40000 ppm,即50%。在较低浓度(30,000 ppm)下,可杀死高达50%的幼虫,发生120 HAA。当浓度为50,000 ppm时,可杀死90%的幼虫,发生96 HAA。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EFFICACY OF JATROPHA CURCAS L. SEED EXTRACT ON MORTALITY OF CABBAGE CROP LARVAE (CROCIDOLOMIA BINOTALIS ZELLER: LEPIDOPTERA: PYRALIDAE)
Along with the awareness to obtain quality plant products, the use of plant-based insecticides is increasingly being used. One of the plants used as a plant-based insecticide is Jatropha curcas L. (Jarak pagar) because it contains toxic ingredients to kill cabbage caterpillar pests (Crocidolomia binotalis). This study aims to determine the effectiveness of Jatropha curcas L. on the mortality of Crocidolomia binotalis cabbage caterpillars. The research method used was a Completely Randomized Design (CRD) 7 × 3, consisting of seven treatment concentrations (0,000 ppm, 10,000 ppm, 20,000 ppm, 30,000 ppm, 40,000 ppm, 50,000 ppm, 60,000 ppm), with three replications. Observations were made at 24, 48, 72, 96, 120, 144 hours after application (HAA) of Jatropha. The research activities were carried out in two stages, namely 1) the extraction stage of Jatropha curcas L. seeds and the breeding of the Crocidolomia binotalis test larvae and 2) the testing stage with seven concentration levels of Jatropha curcas L. extract as a plant-based insecticide. ANOVA test showed that the treatments of Jatropha curcas L. extract gave the death effect on larvae [F-count > F-table (116.8 > 2.37)]. Dead larvae change color to black and their body shape will curve. The fastest larval death occurs 24 HAA, with a concentration of 40,000 ppm, which is 50%. At lower concentrations (30,000 ppm), which can kill larvae up to 50%, occurs 120 HAA. With a concentration of 50,000 ppm, 90% of larvae can be killed occurring 96 HAA.
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