首页> 外文期刊>Agrivita: journal of agricultural science >Effect of Castanopsis megacarpa Extract on Mortality, Longevity Development and Feeding of Crocidolomia pavonana Larvae
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Effect of Castanopsis megacarpa Extract on Mortality, Longevity Development and Feeding of Crocidolomia pavonana Larvae

机译:Castanopsis Megacarpa提取物对Crocidolomia Pavonana幼虫死亡率,寿命开发和饲养的影响

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As several reports of impacts arise due to the use of synthetic insecticides, the investigation for safer alternative insecticides should be continued. Using plant material that has several bioactivities is a promising way out to control insect pest. The objective of this study was to evaluate the effect of leaf and seed extract of Castanopsis megacarpa on mortality, longevity development and feeding preference of Crocidolomia pavonana larvae. Extraction conducted by infusion method. The bioassay assesment was carried out using the residual method. The concentration-mortality relationship was analyzed by probit. The antifeedant test was tested using choice and no-choice methods. Both extracts showed the same strong insecticidal activity, LC 50 of 0.18% (leaf) and 0.12% (seed). Leaf and seed extracts at concentrations equivalent to LC 50 and LC 75 in both methods used showed consistent antifeedant properties. The antifeedant activity of extracts in the no-choice method at both concentrations showed a range of activities of 40.1%-53.7% (leaf) and 74.4%-82.7% (seed) extracts. The leaf and seed extracts of C. megacarpa did not significantly extend the larval development period. Plant material that has more than one bioactivity will be better for suppress the insect pest populations in the field.
机译:由于采用合成杀虫剂的若干影响报告出现,应继续对更安全的替代杀虫剂的调查。使用具有几种生物活性的植物材料是控制害虫的有希望的方式。本研究的目的是评估Castanopsis Megacarpa叶和种子提取物对番茄植物幼虫的死亡率,长寿发育和饲养偏好的影响。用输液法进行提取。使用残余方法进行生物测定酶。通过探测分析浓度死亡关系。使用选择和无选择方法测试抗透镜测试。两种提取物显示出相同的强杀虫活性,LC 50,含0.18%(叶)和0.12%(种子)。在使用的两种方法中,叶片和种子提取物,其两种方法中的LC 50和LC 75相当于所用方法,显示出一致的抗冻剂性能。两种浓度的无选择方法中提取物的抗细乳剂活性显示出一定的活性40.1%-53.7%(叶)和74.4%-82.7%(种子)提取物。 C.梅吉卡普的叶子和种子提取物没有显着扩展幼虫发育期。具有多种生物活性的植物材料将更好地抑制该领域的害虫群体。

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