首页> 美国卫生研究院文献>other >Parasitism Performance and Fitness of Cotesia vestalis (Hymenoptera: Braconidae) Infected with Nosema sp. (Microsporidia: Nosematidae): Implications in Integrated Pest Management Strategy
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Parasitism Performance and Fitness of Cotesia vestalis (Hymenoptera: Braconidae) Infected with Nosema sp. (Microsporidia: Nosematidae): Implications in Integrated Pest Management Strategy

机译:感染Nosema sp。的Cotesiavestalis(膜翅目:Braconidae)的寄生性能和适应性。 (小孢子虫:鼻虫科):对虫害综合治理策略的影响

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摘要

The diamondback moth (DBM) Plutella xylostella (L.) has traditionally been managed using synthetic insecticides. However, the increasing resistance of DBM to insecticides offers an impetus to practice integrated pest management (IPM) strategies by exploiting its natural enemies such as pathogens, parasitoids, and predators. Nevertheless, the interactions between pathogens and parasitoids and/or predators might affect the effectiveness of the parasitoids in regulating the host population. Thus, the parasitism rate of Nosema-infected DBM by Cotesia vestalis (Haliday) (Hym., Braconidae) can be negatively influenced by such interactions. In this study, we investigated the effects of Nosema infection in DBM on the parasitism performance of C. vestalis. The results of no-choice test showed that C. vestalis had a higher parasitism rate on non-infected host larvae than on Nosema-treated host larvae. The C. vestalis individuals that emerged from Nosema-infected DBM (F1) and their progeny (F2) had smaller pupae, a decreased rate of emergence, lowered fecundity, and a prolonged development period compared to those of the control group. DBM infection by Nosema sp. also negatively affected the morphometrics of C. vestalis. The eggs of female C. vestalis that developed in Nosema-infected DBM were larger than those of females that developed in non-infected DBM. These detrimental effects on the F1 and F2 generations of C. vestalis might severely impact the effectiveness of combining pathogens and parasitoids as parts of an IPM strategy for DBM control.
机译:小菜蛾(DBM)小菜蛾(L.)传统上使用合成杀虫剂进行处理。但是,DBM对杀虫剂的抗药性不断增强,通过利用病原体,寄生虫和天敌等天敌,推动了实施综合害虫治理(IPM)策略的动力。然而,病原体与寄生物和/或天敌之间的相互作用可能会影响寄生物在调节宿主种群中的效力。因此,Cotesiavestalis(Haliday)(Hym。,Braconidae)的Nosema感染DBM的寄生率可能受到这种相互作用的负面影响。在这项研究中,我们调查了DBM中Nosema感染对C.vestalis寄生性能的影响。 No-choice测试的结果表明,C.vestalis对未感染宿主幼虫的寄生率高于经Nosema处理的宿主幼虫。与对照组相比,从Nosema感染的DBM(F1)及其后代(F2)出现的角衣念珠菌个体smaller更小,出苗率降低,繁殖力降低和发育周期延长。 Nosema sp。感染DBM。还负面地影响了角果衣原的形态学。在被Nosema感染的DBM中发育的雌性C.vestalis的卵大于在未感染的DBM中发育的雌性的卵。这些对背果念珠菌F1和F2代的有害影响可能会严重影响病原体和寄生虫的结合作为IPM控制DBM策略的一部分的有效性。

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