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蜱对吸血环境的适应:从功能角度的进化

Adaptation of ticks to a blood-feeding environment: evolution from a functional perspective.

作者信息

Mans Ben J, Neitz Albert W H

机构信息

Department of Biochemistry, University of Pretoria, Pretoria 0002, South Africa.

出版信息

Insect Biochem Mol Biol. 2004 Jan;34(1):1-17. doi: 10.1016/j.ibmb.2003.09.002.

Abstract

Ticks had to adapt to an existing and complex vertebrate hemostatic system from being free-living scavengers. A large array of anti-hemostatic mechanisms evolved during this process and includes blood coagulation as well as platelet aggregation inhibitors. Several questions regarding tick evolution exist. What was the nature of the ancestral tick? When did ticks evolve blood-feeding capabilities? How did these capabilities evolve? Did host specificity influence the adaptation of ticks to a blood-feeding environment? What are the implications of tick evolution for future research into tick biology and vaccine development? We investigate these questions in the light of recent research into protein superfamilies from tick saliva. Our conclusions are that the main tick families adapted independently to a blood-feeding environment. This is supported by major differences observed in all processes involved with blood-feeding for hard and soft ticks. Gene duplication events played a major role in the evolution of novel protein functions involved in tick-host interactions. This occurred during the late Cretaceous and was stimulated by the radiation of birds and placental mammals, which provided numerous new niches for ticks to adapt to a new lifestyle. Independent adaptation of the main tick families to a blood-feeding environment has several implications for future tick research in terms of tick genome projects and vaccine development.

摘要

蜱虫不得不从自由生活的食腐动物转变,以适应现有的复杂脊椎动物止血系统。在此过程中,一系列抗止血机制得以进化,包括血液凝固以及血小板聚集抑制剂。关于蜱虫进化存在几个问题。蜱虫的祖先是什么样的?蜱虫何时进化出吸血能力?这些能力是如何进化的?宿主特异性是否影响了蜱虫对吸血环境的适应?蜱虫进化对蜱虫生物学和疫苗开发的未来研究有何影响?我们根据对蜱虫唾液中蛋白质超家族的最新研究来探讨这些问题。我们的结论是,主要的蜱虫家族独立适应了吸血环境。硬蜱和软蜱在所有与吸血相关的过程中观察到的主要差异支持了这一点。基因复制事件在参与蜱虫与宿主相互作用的新蛋白质功能的进化中起了主要作用。这发生在白垩纪晚期,并受到鸟类和胎盘哺乳动物辐射的刺激,这为蜱虫提供了许多新的生态位,使其适应新的生活方式。主要蜱虫家族对吸血环境的独立适应在蜱虫基因组计划和疫苗开发方面对未来的蜱虫研究有若干影响。

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