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Expression of Heat Shock and Other Stress Response Proteins in Ticks and Cultured Tick Cells in Response to Anaplasma spp. Infection and Heat Shock

机译:热激和其他应激反应蛋白的表达在Ti和培养的Cell细胞中对无性生殖的反应。感染和热休克

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摘要

Ticks are ectoparasites of animals and humans that serve as vectors of Anaplasma and other pathogens that affect humans and animals worldwide. Ticks and the pathogens that they transmit have coevolved molecular interactions involving genetic traits of both the tick and the pathogen that mediate their development and survival. In this paper, the expression of heat shock proteins (HSPs) and other stress response proteins (SRPs) was characterized in ticks and cultured tick cells by proteomics and transcriptomics analyses in response to Anaplasma spp. infection and heat shock. The results of these studies demonstrated that the stress response was activated in ticks and cultured tick cells after Anaplasma spp. infection and heat shock. However, in the natural vector-pathogen relationship, HSPs and other SRPs were not strongly activated, which likely resulted from tick-pathogen coevolution. These results also demonstrated pathogen- and tick-specific differences in the expression of HSPs and other SRPs in ticks and cultured tick cells infected with Anaplasma spp. and suggested the existence of post-transcriptional mechanisms induced by Anaplasma spp. to control tick response to infection. These results illustrated the complexity of the stress response in ticks and suggested a function for the HSPs and other SRPs during Anaplasma spp. infection.
机译:cks是动物和人类的外寄生物,它们是无形体和影响全球人类和动物的其他病原体的媒介。 cks虫及其传播的病原体共同进化了分子相互作用,涉及the虫和介导其发育和生存的病原体的遗传特征。在本文中,通过蛋白质组学和转录组学分析,对tick和拟南芥中的热激蛋白(HSP)和其他应激反应蛋白(SRP)的表达进行了表征,以分析tick和培养的tick细胞。感染和热休克。这些研究的结果表明,在无浆膜物种之后,壁虱和培养的壁虱细胞中的应激反应被激活。感染和热休克。但是,在天然病原体与病原体的关系中,HSP和其他SRP没有被强烈激活,这很可能是由tick虫病原体共同进化引起的。这些结果还证明了在感染了无形体属物种的tick和培养的cells细胞中,HSP和其他SRP表达的病原体和tick特异性差异。并提出了由无形体诱导的转录后机制的存在。控制tick对感染的反应。这些结果说明了以response为单位的应力响应的复杂性,并暗示了在无性菌属期间HSP和其他SRP的功能。感染。

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