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棘球绦虫属的生态学与生命周期模式

Ecology and Life Cycle Patterns of Echinococcus Species.

作者信息

Romig T, Deplazes P, Jenkins D, Giraudoux P, Massolo A, Craig P S, Wassermann M, Takahashi K, de la Rue M

机构信息

University of Hohenheim, Stuttgart, Germany.

University of Zürich, Zurich, Switzerland.

出版信息

Adv Parasitol. 2017;95:213-314. doi: 10.1016/bs.apar.2016.11.002. Epub 2017 Jan 6.

Abstract

The genus Echinococcus is composed of eight generally recognized species and one genotypic cluster (Echinococcus canadensis cluster) that may in future be resolved into one to three species. For each species, we review existing information on transmission routes and life cycles in different geographical contexts and - where available - include basic biological information of parasites and hosts (e.g., susceptibility of host species). While some Echinococcus spp. are transmitted in life cycles that involve predominantly domestic animals (e.g., dog - livestock cycles), others are wildlife parasites that do or do not interact with domestic transmission. In many cases, life cycle patterns of the same parasite species differ according to geography. Simple life cycles contrast with transmission patterns that are highly complex, involving multihost systems that may include both domestic and wild mammals. Wildlife transmission may be primary or secondary, i.e., resulting from spillovers from domestic animals. For most of the species and regions, existing information does not yet permit a conclusive description of transmission systems. Such data, however, would be highly relevant, e.g., for anticipation of geographical changes of the presence and frequency of these parasites in a warming world, or for initiating evidence-based control strategies.

摘要

棘球绦虫属由八个普遍认可的物种和一个基因型簇(加拿大棘球绦虫簇)组成,该基因型簇未来可能会被划分为一至三个物种。对于每个物种,我们回顾了不同地理环境下关于传播途径和生命周期的现有信息,并在可行的情况下纳入寄生虫和宿主的基本生物学信息(例如宿主物种的易感性)。虽然一些棘球绦虫物种通过主要涉及家畜的生命周期进行传播(例如狗 - 家畜循环),但其他物种是野生动物寄生虫,它们与家畜传播存在或不存在相互作用。在许多情况下,同一寄生虫物种的生命周期模式因地理位置而异。简单的生命周期与高度复杂的传播模式形成对比,后者涉及可能包括家养和野生哺乳动物的多宿主系统。野生动物传播可能是原发性的或继发性的,即由家畜的溢出导致。对于大多数物种和地区,现有信息尚无法对传播系统进行确定性描述。然而,这些数据将具有高度相关性,例如用于预测在气候变暖的世界中这些寄生虫的存在和频率的地理变化,或用于启动基于证据的控制策略。

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