Institute of Parasitology, Biology Centre of the Czech Academy of Sciences, CZ-370 05 Ceske Budejovice, Czech Republic; Faculty of Science, University of South Bohemia, CZ-370 05 Ceske Budejovice, Czech Republic.
Institute of Parasitology, Biology Centre of the Czech Academy of Sciences, CZ-370 05 Ceske Budejovice, Czech Republic.
Trends Parasitol. 2019 May;35(5):356-368. doi: 10.1016/j.pt.2019.01.007. Epub 2019 Feb 4.
Although Babesia represents an important worldwide veterinary threat and an emerging risk to humans, this parasite has been poorly studied as compared to Plasmodium, its malaria-causing relative. In fact, Babesia employs highly specific survival strategies during its intraerythrocytic development and its intricate journey through the tick vector. This review introduces a substantially extended molecular phylogeny of the order Piroplasmida, challenging previous taxonomic classifications. The intriguing developmental proficiencies of Babesia are highlighted and compared with those of other haemoparasitic Apicomplexa. Molecular mechanisms associated with distinctive events in the Babesia life cycle are emphasized as potential targets for the development of Babesia-specific treatments.
虽然巴贝西虫代表了一种重要的全球性兽医威胁,并且对人类来说是一种新出现的风险,但与疟原虫(引起疟疾的寄生虫)相比,这种寄生虫的研究还很不完善。事实上,巴贝西虫在其红细胞内发育和通过蜱媒介的复杂旅程中采用了高度特异的生存策略。本综述介绍了蜱形目(Piroplasmida)的一个大大扩展的分子系统发育,对以前的分类学分类提出了挑战。巴贝西虫引人入胜的发育能力被强调,并与其他血原虫顶复门(Apicomplexa)进行了比较。强调与巴贝西虫生命周期中独特事件相关的分子机制,作为开发针对巴贝西虫的特定治疗方法的潜在靶点。