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首页> 外文期刊>Environmental Entomology >Reproductive Requirements and Life Cycle of Iberorhyzobius rondensis (Coleoptera: Coccinellidae), Potential Biological Control Agent of Matsucoccus feytaudi (Hemiptera: Matsucoccidae)
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Reproductive Requirements and Life Cycle of Iberorhyzobius rondensis (Coleoptera: Coccinellidae), Potential Biological Control Agent of Matsucoccus feytaudi (Hemiptera: Matsucoccidae)

机译:费氏松球菌(半翅目:松球虫)的潜在生物防治因子罗氏伊波罗钩虫(Coleoptera:Coccinellidae)的生殖需求和生命周期。

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摘要

Several pine bast scales (Hemiptera: Matsucoccidae) are important pests of pine trees in the Northern Hemisphere. Some species are invasive and cause significant economic and environmental impacts. Such is the case with Matsucoccus feytaudi Ducasse, an invasive pest of maritime pine forests in Southeastern France, Italy, and Corsica. The ladybird Iberorhyzobius rondensis (Eizaguirre) is a recently described species that is endemic to the Iberian Peninsula and is a potential candidate for the biological control of M. feytaudi. However, little is known of the biology of I. rondensis. As part of the risk assessment study for a classical biological control program, the phenology and reproductive mechanisms of the beetle were analyzed. I. rondensis is univoltine and is seasonally synchronized with the phenology of the prey M. feytaudi, which is also univoltine. An obligatory reproductive diapause of 5-6 mo and the need to feed on the eggs of the prey to begin oviposition emerged as the two primary mechanisms that assure life cycle synchronization of the ladybird with its prey. Female fecundity was also higher when the ladybirds were fed M. feytaudi eggs. Life cycle synchronization with M. feytaudi and reproduction triggered by consumption of prey eggs indicate that I. rondensis is a promising biological control agent of the pine bast scale.
机译:北半球的几种松兽鳞(半翅目:松科)是重要的害虫。一些物种具有入侵性,会对经济和环境造成重大影响。法国东南部,意大利和科西嘉岛的海洋松树林的一种入侵性害虫松球菌fytaudi Ducasse就是这种情况。瓢虫伊波罗多虫伊萨吉尔(Eizaguirre)是伊比利亚半岛特有的一种最近描述的物种,是费耶特迪亚姆(M. feytaudi)生物防治的潜在候选者。但是,人们对I. rondensis的生物学知之甚少。作为经典生物学控制程序的风险评估研究的一部分,分析了甲虫的物候和生殖机制。 I. rondensis是单电压的,在季节上与也是单电压的猎物M. feytaudi的物候同步。作为确保瓢虫与其猎物生命周期同步的两个主要机制,出现了强制繁殖滞育期为5-6个月,并需要以猎物的卵为食开始产卵。当瓢虫饲喂费耶特迪姆氏卵时,雌性繁殖力也更高。与feytaudi的生命周期同步以及通过捕食猎物引起的繁殖表明,rondensis是一种有前途的松韧皮生物防治剂。

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