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寄生虫的物种形成:一种群体遗传学方法。

Speciation in parasites: a population genetics approach.

作者信息

Huyse Tine, Poulin Robert, Théron André

机构信息

Parasitic Worms Division, Department of Zoology, The Natural History Museum, Cromwell Road, London, UK, SW7 5BD.

出版信息

Trends Parasitol. 2005 Oct;21(10):469-75. doi: 10.1016/j.pt.2005.08.009.

Abstract

Parasite speciation and host-parasite coevolution should be studied at both macroevolutionary and microevolutionary levels. Studies on a macroevolutionary scale provide an essential framework for understanding the origins of parasite lineages and the patterns of diversification. However, because coevolutionary interactions can be highly divergent across time and space, it is important to quantify and compare the phylogeographic variation in both the host and the parasite throughout their geographical range. Furthermore, to evaluate demographic parameters that are relevant to population genetics structure, such as effective population size and parasite transmission, parasite populations must be studied using neutral genetic markers. Previous emphasis on larger-scale studies means that the connection between microevolutionary and macroevolutionary events is poorly explored. In this article, we focus on the spatial fragmentation of parasites and the population genetics processes behind their diversification in an effort to bridge the micro- and macro-scales.

摘要

寄生虫物种形成和宿主-寄生虫协同进化应在宏观进化和微观进化层面进行研究。宏观进化尺度上的研究为理解寄生虫谱系的起源和多样化模式提供了一个基本框架。然而,由于协同进化相互作用在时间和空间上可能高度不同,因此在宿主和寄生虫的整个地理范围内量化和比较它们的系统地理学变异非常重要。此外,为了评估与种群遗传结构相关的人口统计学参数,如有效种群大小和寄生虫传播,必须使用中性遗传标记来研究寄生虫种群。以往对大规模研究的重视意味着微观进化和宏观进化事件之间的联系很少被探索。在本文中,我们关注寄生虫的空间碎片化及其多样化背后的种群遗传过程,以努力弥合微观和宏观尺度之间的差距。

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