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首页> 外文期刊>Toxins >Orally Delivered Scorpion Antimicrobial Peptides Exhibit Activity against Pea Aphid ( Acyrthosiphon pisum ) and Its Bacterial Symbionts
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Orally Delivered Scorpion Antimicrobial Peptides Exhibit Activity against Pea Aphid ( Acyrthosiphon pisum ) and Its Bacterial Symbionts

机译:口服蝎蝎抗菌肽对豌豆蚜虫及其细菌共生体的活性

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Aphids are severe agricultural pests that damage crops by feeding on phloem sap and vectoring plant pathogens. Chemical insecticides provide an important aphid control strategy, but alternative and sustainable control measures are required to avoid rapidly emerging resistance, environmental contamination, and the risk to humans and beneficial organisms. Aphids are dependent on bacterial symbionts, which enable them to survive on phloem sap lacking essential nutrients, as well as conferring environmental stress tolerance and resistance to parasites. The evolution of aphids has been accompanied by the loss of many immunity-related genes, such as those encoding antibacterial peptides, which are prevalent in other insects, probably because any harm to the bacterial symbionts would inevitably affect the aphids themselves. This suggests that antimicrobial peptides (AMPs) could replace or at least complement conventional insecticides for aphid control. We fed the pea aphids ( Acyrthosiphon pisum ) with AMPs from the venom glands of scorpions. The AMPs reduced aphid survival, delayed their reproduction, displayed in vitro activity against aphid bacterial symbionts, and reduced the number of symbionts in vivo. Remarkably, we found that some of the scorpion AMPs compromised the aphid bacteriome, a specialized organ that harbours bacterial symbionts. Our data suggest that scorpion AMPs holds the potential to be developed as bio-insecticides, and are promising candidates for the engineering of aphid-resistant crops.
机译:蚜虫是严重的农业害虫,会以韧皮部汁液为食并传染植物病原体,从而损害作物。化学杀虫剂提供了重要的蚜虫防治策略,但是需要采取替代性和可持续的防治措施,以避免迅速出现的耐药性,环境污染以及对人类和有益生物的危害。蚜虫依赖细菌共生体,这使它们能够在缺乏必需营养素的韧皮部汁液中生存,并赋予其耐环境压力和对寄生虫的抵抗力。蚜虫的进化伴随着许多免疫相关基因的丧失,例如编码其他细菌中普遍存在的抗菌肽的基因,可能是因为对细菌共生体的任何伤害都不可避免地会影响蚜虫本身。这表明抗菌肽(AMPs)可以替代或至少补充常规杀虫剂,以防治蚜虫。我们用来自蝎子毒腺的AMP喂豌豆蚜虫(Acyrthosiphon pisum)。 AMPs减少了蚜虫的存活,延迟了它们的繁殖,显示了对蚜虫细菌共生体的体外活性,并减少了体内共生体的数量。值得注意的是,我们发现某些蝎子AMP损害了蚜虫细菌群,后者是一种具有细菌共生体的专门器官。我们的数据表明,蝎子AMP具有作为生物杀虫剂开发的潜力,并且是抗蚜虫农作物工程的有希望的候选者。

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