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首页> 外文期刊>Bulletin of Entomological Research >Mother-derived trans-generational immune priming in the red palm weevil, Rhynchophorus ferrugineus Olivier (Coleoptera, Dryophthoridae)
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Mother-derived trans-generational immune priming in the red palm weevil, Rhynchophorus ferrugineus Olivier (Coleoptera, Dryophthoridae)

机译:母亲在红色棕榈象鼻虫Rhynchophorus ferrugineus Olivier(鞘翅目,Dryophthoridae)中的跨代免疫启动

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摘要

Rhynchophorus ferrugineus (Coleoptera, Curculionidae) is the most destructive pest of palm trees worldwide containing it invasive areas, such as the southern part of China. It is always emphasized to develop integrated pest management based on biological agents, but their success is not very exciting. Presently, the immune defenses of this pest against biological agents attract scarce attention. It is still unclear whether immune priming also generally occurs in insect pests and in response to different pathogens. Our results indicated that previous challenge of bacteria pathogen enhanced the magnitude of phenoloxidase activity and antibacterial activity in R. ferrugineus larvae against the secondary infection. Furthermore, trans-generational immune priming was also determined in this pest, and only challenged R. ferrugineus mothers transferred the immune protection to their offspring which suggested males and females of this pest might have evolved different strategies on the investment of delivering immune protection to their offspring. Importantly, our data provide the evidence to suggest that different kinds of biological control agents might be used alternatively or in combination to fight against R. ferrugineus because of the existence of immune priming with low species-specific level. On the other hand, for this invasive pest, the immune priming may also facilitate its adaptation and dispersal in the new regions
机译:Ferrugineus Rhynchophorus ferrugineus(鞘翅目,Curculionidae)是棕榈树最具破坏性的害虫,在全世界范围内都含有其入侵区域,例如中国的南部。人们一直强调发展基于生物制剂的有害生物综合治理,但是它们的成功并不是很令人兴奋。目前,这种害虫对生物制剂的免疫防御作用引起了人们的关注。尚不清楚免疫引发是否通常也发生在害虫中并响应于不同的病原体。我们的结果表明,先前对细菌病原体的攻击提高了R. ferrugineus幼虫对继发感染的酚氧化酶活性和抗菌活性。此外,在该害虫中还确定了跨代免疫启动,只有挑战的R. ferrugineus母亲将免疫保护转移给了其后代,这表明该害虫的雄性和雌性可能已发展出不同的策略来投资对其免疫保护后代。重要的是,我们的数据提供了证据表明,由于存在低物种特异性水平的免疫引发作用,不同种类的生物防治剂可替代或组合使用来对抗铁锈红斑痣。另一方面,对于这种侵入性有害生物,免疫引发也可能促进其适应和扩散在新区域

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