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Continental-scale suppression of an invasive pest by a host-specific parasitoid underlines both environmental and economic benefits of arthropod biological control

机译:寄主特有的寄生虫在大陆范围内抑制入侵性有害生物突出了节肢动物生物防治的环境和经济效益

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摘要

Biological control, a globally-important ecosystem service, can provide long-term and broad-scale suppression of invasive pests, weeds and pathogens in natural, urban and agricultural environments. Following (few) historic cases that led to sizeable environmental up-sets, the discipline of arthropod biological control has—over the past decades—evolved and matured. Now, by deliberately taking into account the ecological risks associated with the planned introduction of insect natural enemies, immense environmental and societal benefits can be gained. In this study, we document and analyze a successful case of biological control against the cassava mealybug, Phenacoccus manihoti (Hemiptera: Pseudococcidae) which invaded Southeast Asia in 2008, where it caused substantial crop losses and triggered two- to three-fold surges in agricultural commodity prices. In 2009, the host-specific parasitoid Anagyrus lopezi (Hymenoptera: Encyrtidae) was released in Thailand and subsequently introduced into neighboring Asian countries. Drawing upon continental-scale insect surveys, multi-year population studies and (field-level) experimental assays, we show how A. lopezi attained intermediate to high parasitism rates across diverse agro-ecological contexts. Driving mealybug populations below non-damaging levels over a broad geographical area, A. lopezi allowed yield recoveries up to 10.0 t/ha and provided biological control services worth several hundred dollars per ha (at local farm-gate prices) in Asia’s four-million ha cassava crop. Our work provides lessons to invasion science and crop protection worldwide. Furthermore, it accentuates the importance of scientifically-guided biological control for insect pest management, and highlights its potentially large socio-economic benefits to agricultural sustainability in the face of a debilitating invasive pest. In times of unrelenting insect invasions, surging pesticide use and accelerating biodiversity loss across the globe, this study demonstrates how biological control—as a pure public good endeavor—constitutes a powerful, cost-effective and environmentally-responsible solution for invasive species mitigation.
机译:生物控制是一项全球重要的生态系统服务,可以长期,大规模地抑制自然,城市和农业环境中的入侵性有害生物,杂草和病原体。在(几起)历史性事件导致巨大的环境破坏之后,节肢动物生物控制的学科在过去几十年中得到了发展和成熟。现在,通过刻意考虑与计划引入昆虫天敌有关的生态风险,可以获得巨大的环境和社会效益。在这项研究中,我们记录并分析了成功防治木薯粉虱Phenacoccus manihoti(半翅目:Pseudococcidae)的生物防治案例,该案例于2008年入侵东南亚,造成大量农作物损失并引发了农业的2至3倍增长商品价格。 2009年,宿主特有的拟寄生物Anagyrus lopezi(膜翅目:Encyrtidae)在泰国被释放,随后被引入邻近的亚洲国家。借助大陆规模的昆虫调查,多年的种群研究和(田间水平的)实验分析,我们展示了罗非鱼如何在各种农业生态环境中达到中等到高的寄生率。在广阔的地理区域内,粉虱种群将粉虱种群降低到无损水平以下,A。lopezi允许单产恢复至10.0吨/公顷,并在亚洲四百万人口中提供了价值数百美元/公顷的生物防治服务(按当地农场定价)木薯作物。我们的工作为全球入侵科学和作物保护提供了经验教训。此外,它强调了科学指导的生物防治对害虫管理的重要性,并强调了面对令人衰弱的入侵性害虫,其对农业可持续性的潜在巨大社会经济利益。在不懈的昆虫入侵,激增的农药使用以及全球范围内加速生物多样性丧失的时代,这项研究表明,作为一项纯粹的公益事业,生物防治是如何构成一种强有力的,具有成本效益的,对环境负责的解决方案,以缓解入侵物种。

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