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首页> 外文期刊>Scientific reports. >A natural Anopheles-associated Penicillium chrysogenum enhances mosquito susceptibility to Plasmodium infection
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A natural Anopheles-associated Penicillium chrysogenum enhances mosquito susceptibility to Plasmodium infection

机译:一种天然的鼻窦相关的青霉钙瘤增强了对疟原虫感染的蚊虫敏感性

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Whereas studies have extensively examined the ability of bacteria to influence Plasmodium infection in the mosquito, the tripartite interactions between non-entomopathogenic fungi, mosquitoes, and Plasmodium parasites remain largely uncharacterized. Here we report the isolation of a common mosquito-associated ascomycete fungus, Penicillium chrysogenum, from the midgut of field-caught Anopheles mosquitoes. Although the presence of Pe. chrysogenum in the Anopheles gambiae midgut does not affect mosquito survival, it renders the mosquito significantly more susceptible to Plasmodium infection through a secreted heat-stable factor. We further provide evidence that the mechanism of the fungus-mediated modulation of mosquito susceptibility to Plasmodium involves an upregulation of the insect's ornithine decarboxylase gene, which sequesters arginine for polyamine biosynthesis. Arginine plays an important role in the mosquito's anti-Plasmodium defense as a substrate of nitric oxide production, and its availability therefore has a direct impact on the mosquito's susceptibility to the parasite. While this type of immunomodulatory mechanism has already been demonstrated in other host-pathogen interaction systems, this is the first report of a mosquito-associated fungus that can suppress the mosquito's innate immune system in a way that would favor Plasmodium infection and possibly malaria transmission.
机译:虽然研究已经广泛地检查了细菌在蚊子中影响疟原虫感染的能力,但非昆虫致病真菌,蚊子和疟原虫之间的三方相互作用在很大程度上是很不协交的。在这里,我们报告了普通蚊子相关的Ascomycete真菌,青霉属植物蛋白酶的孤立,从野外捕获的anopheles蚊子中的中霉素。虽然存在pe。蛹在anophelesgambiae midgut中不会影响蚊子的生存,它通过分泌的热稳定因子,使蚊子显着更容易受到疟原虫感染。我们进一步提供了证据表明,真菌介导的蚊子易感性调节的机制涉及昆虫的鸟氨酸脱羧酶基因的上调,其螯合用于多胺生物合成的精氨酸。精氨酸在蚊子的抗疟原虫防御中发挥着重要作用作为一氧化氮生产的基材,因此其可用性对蚊子对寄生虫的敏感性直接影响。虽然这种类型的免疫调节机制已经在其他主机 - 病原体相互作用系统中证明,但这是蚊子相关真菌的第一个报告,可以抑制蚊子的先天免疫系统,这将有利于疟原虫感染和可能是疟疾传播。

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