首页> 外文期刊>Molecular biology reports >Positive selection pressure within teleost toll-like receptors tlr21 and tlr22 subfamilies and their response to temperature stress and microbial components in zebrafish
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Positive selection pressure within teleost toll-like receptors tlr21 and tlr22 subfamilies and their response to temperature stress and microbial components in zebrafish

机译:硬骨鱼收费样受体tlr21和tlr22亚家族内的正选择压力及其对温度应力和斑马鱼中微生物成分的响应

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摘要

Toll-like receptors (TLRs) play a crucial role in host defence, since they trigger immune response following recognition of pathogen-associated molecular patterns (PAMPs) in potential infectious agents. TLRs have been found in numerous organisms, including mammals, birds and teleosts. Some TLR members are commonly retained across all species, whilst others were lost, gained or diverged independently during evolution. Our knowledge about the evolution and specific functions of tlr21, tlr22 and tlr23 in teleosts are still scarce. Phylogenetic analysis of 18 tlr13, tlr21, tlr22 and tlr23 genes from 9 different fish species divided them in two groups. All tlr21 genes were under the first clade, while the second comprised tlr22, tlr23 and tlr13 from Atlantic salmon. Evidence of positive selection was detected at three sites within the leucine-rich repeat regions of Tlr22, which may influence PAMP recognition. Immunostimulation experiments revealed that expression of zebrafish tlr22 is modulated by several unrelated PAMPs. Up to a 3-fold increase in tlr21 and tlr22 expression was detected in larvae exposed to immunostimulants such as lipopolysaccharide, peptidoglycan or poly I:C. We found that zebrafish tlrs are expressed mainly in immune-related organs, such as spleen and kidney as well as in testis and temperature stress did not have an effect on the expression of tlr21 and tlr22 in the early stages of development in zebrafish larvae. Our data indicates that these teleost tlrs may play a role in innate host defence. In particular, tlr22 is evolving under positive selection, which indicates functional diversification and adaptation of the response to different PAMPs.
机译:Toll样受体(TLR)在宿主防御中起着至关重要的作用,因为它们在识别潜在的传染原中的病原体相关分子模式(PAMP)之后触发免疫反应。在许多生物中都发现了TLR,包括哺乳动物,鸟类和硬骨鱼。一些TLR成员通常保留在所有物种中,而其他一些则在进化过程中独立丢失,获得或分散。我们对硬骨鱼类中tlr21,tlr22和tlr23的进化和特定功能的了解仍然很少。对来自9种不同鱼类的18个tlr13,tlr21,tlr22和tlr23基因进行系统发育分析,将它们分为两组。所有tlr21基因都位于第一个进化枝下,而第二个则包含来自大西洋鲑鱼的tlr22,tlr23和tlr13。在Tlr22富含亮氨酸的重复区域内的三个位点检测到阳性选择的证据,这可能影响PAMP的识别。免疫刺激实验表明,斑马鱼tlr22的表达受到几种不相关的PAMP的调节。在暴露于免疫刺激剂如脂多糖,肽聚糖或聚I:C的幼虫中,检测到的tlr21和tlr22表达最多增加了3倍。我们发现斑马鱼tlrs主要在免疫相关器官,如脾脏和肾脏以及睾丸中表达,温度应激在斑马鱼幼虫发育的早期对tlr21和tlr22的表达没有影响。我们的数据表明,这些硬骨鱼类可能在先天宿主防御中起作用。特别地,tlr22在正选择下进化,这表明功能多样化和对不同PAMP的响应适应。

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