首页> 外文期刊>Biological Control: Theory and Application in Pest Management >Effects of a plant resistance protein bruchid Acanthoscelides obtectus natural enemy Dinarmus basalis on parasitism of the common bean (Coleoptera : Bruchidae) by its natural enemy (Hymenoptera : Pteromalidae)
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Effects of a plant resistance protein bruchid Acanthoscelides obtectus natural enemy Dinarmus basalis on parasitism of the common bean (Coleoptera : Bruchidae) by its natural enemy (Hymenoptera : Pteromalidae)

机译:植物抗性蛋白bruchid Acanthoscelides obtectus天敌Dinarmus basalis对普通豆(膜翅目:Bruchidae)的天敌(膜翅目:翼手龙)寄生的影响

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摘要

Dinarmus basalis is an important larval parasitoid of the bean bruchid Acanthoscelides obtectus, a major pest of stored legumes throughout the tropical belt. The use of a combination of different natural resources for protecting stored beans from attack by A. obtectus by non-toxic means is considered a promising alternative to the use of traditional chemical insecticides. The seed storage protein arcelin causes sub-lethal effects on the development of A. obtectus that are favorable for biological control. The present study aimed to validate the mutual compatibility between the plant resistance factor arcelin and the biological control candidate D. basalis. Development and performance of D. basalis attacking A. obtectus on beans with different relative arcelin concentrations were investigated in bioassays. The parasitoid accepted hosts on all tested bean lines, irrespective of the relative concentration of arcelin. No indications were found for an effect of arcelin on parasitoid offspring fitness. The parasitoid's capability to suppress bruchid development was investigated in a follow-up experiment mimicking the temporal complexity of bruchid infestations in the field. Bruchid suppression was significantly higher on arcelin containing bean lines than on arcelin-free cultivars. Our findings demonstrate the potential of the candidate biological control agent D. basalis to contribute to a marked reduction of bruchid emergence in a proposed two-component integrated pest management system. (C) 2007 Elsevier Inc. All rights reserved.
机译:扁豆(Dinarmus basalis)是菜豆Acanthoscelides obtectus的重要幼体寄生虫,是整个热带带豆类储藏的主要害虫。使用多种不同自然资源的组合来保护豆类不受无毒曲霉侵袭,被认为是替代传统化学杀虫剂的一种有前途的选择。种子贮藏蛋白arcelin对A. obtectus的发育造成亚致死作用,有利于生物防治。本研究旨在验证植物抗性​​因子arcelin和生物防治候选基DD。basalis之间的相互兼容性。在生物测定中,研究了D. basalis攻击具有不同相对阿奇林浓度的豆类上的A. obtectus的发育和性能。无论arcelin的相对浓度如何,寄生虫都能在所有受试豆系上接受宿主。没有迹象表明arcelin对寄生性后代的适应性有影响。在后续实验中研究了该寄生虫抑制布鲁氏菌发育的能力,该试验模仿了田间布鲁氏菌侵染的时间复杂性。含arcelin的大豆品系的bruchid抑制显着高于不含arcelin的品种。我们的研究结果表明,候选生物防治剂D. basalis在提议的两成分综合害虫管理系统中可显着减少bruchid出苗。 (C)2007 Elsevier Inc.保留所有权利。

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