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玉米有利于捕食性甲虫日本龟蜡蚧(Thunberg),为提高棉花蚜虫的生物防治潜力提供了可能。

Maize benefits the predatory beetle, Propylea japonica (Thunberg), to provide potential to enhance biological control for aphids in cotton.

机构信息

State Key Laboratory of Integrated Management of Pest Insects and Rodents, Institute of Zoology, Chinese Academy of Sciences, Beijing, People's Republic of China.

出版信息

PLoS One. 2012;7(9):e44379. doi: 10.1371/journal.pone.0044379. Epub 2012 Sep 12.

Abstract

BACKGROUND

Biological control provided by natural enemies play an important role in integrated pest management. Generalist insect predators provide an important biological service in the regulation of agricultural insect pests. Our goal is to understand the explicit process of oviposition preference, habitat selection and feeding behavior of predators in farmland ecosystem consisting of multiple crops, which is central to devising and delivering an integrated pest management program.

METHODOLOGY

The hypotheses was that maize can serve as habitat for natural enemies and benefits predators to provide potential to enhance biological control for pest insects in cotton. This explicit process of a predatory beetle, Propylea japonica, in agricultural ecosystem composed of cotton and maize were examined by field investigation and stable carbon isotope analysis during 2008-2010.

PRINCIPAL FINDING

Field investigation showed that P. japonica adults will search host plants for high prey abundance before laying eggs, indicating indirectly that P. japonica adults prefer to inhabit maize plants and travel to cotton plants to actively prey on aphids. The δ(13)C values of adult P. japonica in a dietary shift experiment found that individual beetles were shifting from a C(3)- to a C(4)-based diet of aphids reared on maize or cotton, respectively, and began to reflect the isotope ratio of their new C(4) resources within one week. Approximately 80-100% of the diet of P. japonica adults in maize originated from a C(3)-based resource in June, July and August, while approximately 80% of the diet originated from a C(4)-based resource in September.

CONCLUSION/SIGNIFICANCE: Results suggest that maize can serve as a habitat or refuge source for the predatory beetle, P. japonica, and benefits predators to provide potential to enhance biological control for insect pests in cotton.

摘要

背景

自然天敌的生物防治在综合虫害管理中起着重要作用。通用昆虫捕食者在农业虫害的调节中提供了重要的生物服务。我们的目标是了解捕食者在由多种作物组成的农田生态系统中的产卵偏好、栖息地选择和取食行为的明确过程,这是设计和实施综合虫害管理计划的核心。

方法

假设玉米可以作为天敌的栖息地,并有利于捕食者为棉花中的害虫提供潜在的生物控制。通过 2008-2010 年的实地调查和稳定碳同位素分析,研究了农业生态系统中棉田和玉米田中捕食性甲虫拟步甲的这一明确过程。

主要发现

实地调查表明,拟步甲成虫在产卵前会寻找高猎物密度的宿主植物,这表明拟步甲成虫更喜欢栖息在玉米植株上,并主动迁移到棉花植株上捕食蚜虫。在一个饮食转变实验中,成年拟步甲的δ(13)C 值发现,个体甲虫分别从以玉米或棉花上饲养的蚜虫为食的 C(3)-到 C(4)-饮食中转变,并且在一周内开始反映其新的 C(4)资源的同位素比值。在 6 月、7 月和 8 月,约 80-100%的成年拟步甲饮食来自 C(3)-基源,而在 9 月,约 80%的饮食来自 C(4)-基源。

结论/意义:结果表明,玉米可以作为捕食性甲虫拟步甲的栖息地或避难所来源,并有利于捕食者为棉花中的虫害提供潜在的生物控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75f9/3440376/1f7a11538ea7/pone.0044379.g001.jpg

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