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综述:利用卵寄生蜂对入侵性臭虫进行经典生物防治——成功是什么样子的?

Review: classical biological control of invasive stink bugs with egg parasitoids - what does success look like?

机构信息

Agassiz Research and Development Centre, Agriculture and Agri-Food Canada, Agassiz, Canada.

Department of Environmental Science, Policy & Management, University of California, Berkeley, CA, USA.

出版信息

Pest Manag Sci. 2020 Jun;76(6):1980-1992. doi: 10.1002/ps.5813. Epub 2020 Apr 2.

Abstract

Although the enemy release hypothesis forms the theoretical basis for classical (=importation) biological control of invasive pests, its core assumptions are not always examined. This could contribute to unrealistic expectations for some biological control programs. In this paper we examine the assumptions that: (i) enemy release has contributed to the invasive nature of four exotic pentatomids in North America; and (ii) classical biological control with egg parasitoids has been or will be successful in reducing populations of these pests below economically significant levels. First, we review the history of biological control programs against invasive stink bugs to highlight the variable and controversial levels of success of introducing egg parasitoids against stink bugs. Then, we use simple stage-structured matrix models to demonstrate that it may be easy to overestimate the contribution of egg parasitism alone to a reduction in stink bug population growth. Finally, we discuss what realistic expectations might be for success of biological control against invasive stink bugs using egg parasitoids in the context of integrated pest management programs. © 2020 Her Majesty the Queen in Right of Canada Pest Management Science © 2020 Society of Chemical Industry.

摘要

尽管“外来种释放假说”构成了入侵性害虫经典(即引入)生物防治的理论基础,但该假说的核心假设并不总是被检验。这可能导致人们对某些生物防治计划产生不切实际的期望。在本文中,我们检验了以下两个假设:(i)“外来种释放”促成了北美洲 4 种外来半翅目昆虫的入侵特性;(ii)利用卵寄生蜂进行的经典生物防治将或已经成功地将这些害虫的种群数量降低到经济上显著的水平以下。首先,我们回顾了针对入侵性臭虫的生物防治计划的历史,以突出引入卵寄生蜂防治臭虫的成功程度具有多变性和争议性。然后,我们使用简单的阶段结构矩阵模型来证明,单独估计卵寄生对臭虫种群增长减少的贡献可能很容易被高估。最后,我们讨论了在综合虫害管理计划背景下,利用卵寄生蜂对入侵性臭虫进行生物防治可能取得成功的实际期望。© 2020 加拿大女王陛下以其名义代表加拿大 有害生物管理科学 © 2020 英国化学工业学会

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