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首页> 外文期刊>Biological Control: Theory and Application in Pest Management >Reproductive characteristics of invasive hyperparasitoid Baeoanusia albifunicle have implications for the biological control of eucalypt pest Paropsis charybdis
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Reproductive characteristics of invasive hyperparasitoid Baeoanusia albifunicle have implications for the biological control of eucalypt pest Paropsis charybdis

机译:入侵性超寄生拟南芥的生殖特性对桉树害虫Paropsis charybdis的生物控制有重要意义

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Hyperparasitoids can impede the establishment of primary parasitoid biological control agents or limit their control capacity. Although modern quarantine practices generally prevent hyperparasitoids being introduced with biological control agents, introductions can occur via natural pathways or accidentally with incoming passengers and cargo. In New Zealand, Baeoanusia albifunicle Girault is a self-introduced hyperparasitoid of Enoggera nassaui Girault, an intentionally introduced control agent of the eucalypt pest Paropsis chwybdis Stal. A self-introduced primary parasitoid, Neopolycystus insectifurax (Girault), also parasitises P. chwybdis in New Zealand. We assessed B. albifunicle biology to better understand its potential to disrupt P. charybdis control. It was determined that B. albifunicle is an obligate solitary hyperparasitoid with a longer lifespan, lower fecundity and longer generation time than its host. The hyperparasitoid reduced effective parasitism by E. nassaui to 10% in the lab, indicating it may limit control of the first P. charybdis generation by slowing spring population growth. It was confirmed that N. insectifurax is not hyperparasitised by B. albifunicle and therefore has some potential to substitute for any hyperparasitoid-driven decline in E. nassaui. (C) 2015 Elsevier Inc. All rights reserved.
机译:超寄生物会阻碍主要寄生物生物防治剂的建立或限制其防治能力。尽管现代隔离实践通常防止将超寄生虫与生物防治剂一起引入,但引入可能会通过自然途径进行,也可能会与来来往往的旅客和货物偶然发生。在新西兰,白蜡化菌是一种自我引入的超强寄生虫,它是有意引入的桉树害虫Paropsis chwybdis Stal的控制剂。自我介绍的原发性寄生虫,Neopolycystus insectifurax(Girault),也寄生于新西兰的P. chwybdis。我们评估了棉铃虫的生物学特性,以更好地了解其破坏炭疽杆菌控制的潜力。可以确定的是,沙门氏菌是专性的单寄生超寄生虫,比其宿主具有更长的寿命,更低的繁殖力和更长的繁殖时间。在实验室中,超寄生虫使有效的寄生虫纳沙菌减少到<10%,这表明它可能通过减慢春季种群的生长来限制对第一轮夏枯草菌的控制。证实了昆虫双歧杆菌没有被沙门氏菌过度寄生,因此具有替代任何由超寄生虫驱动的纳沙肠杆菌下降的潜力。 (C)2015 Elsevier Inc.保留所有权利。

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