Université de Bourgogne Franche-Comté, UMR CNRS 6282 Biogéosciences, Dijon, France.
Laboratoire "Génétique Evolutive Expérimentale", Institut de Biologie de L'Ecole Normale Supérieure (IBENS), Paris, France.
Sci Rep. 2020 Jul 15;10(1):11670. doi: 10.1038/s41598-020-68577-z.
Parasites alter many traits of their hosts. In particular, parasites known as "manipulative" may increase their probability of transmission by inducing phenotypic alterations in their intermediate hosts. Although parasitic-induced alterations can modify species' ecological roles, the proximate factors modulating this phenomenon remain poorly known. As temperature is known to affect host-parasite associations, understanding its precise impact has become a major challenge in a context of global warming. Gammarids are ecologically important freshwater crustaceans and serve as intermediate hosts for several acanthocephalan species. These parasites induce multiple effects on gammarids, including alterations of their behavior, ultimately leading to modifications in their functional role. Here, experimental infections were used to assess the effect of two temperatures on several traits of the association between Gammarus pulex and its acanthocephalan parasite Pomphorhynchus laevis. Elevated temperature affected hosts and parasites in multiple ways (decreased host survival, increased gammarids activity, faster parasites development and proboscis eversion). However, behavioral manipulation was unaffected by temperature. These results suggest that predicted change in temperature may have little consequences on the trophic transmission of parasites through changes in manipulation, although it may modify it through increased infection success and faster parasites development.
寄生虫会改变宿主的许多特征。特别是被称为“操纵性”的寄生虫可能会通过诱导中间宿主的表型改变来增加其传播的概率。虽然寄生虫诱导的改变可以改变物种的生态角色,但调节这种现象的直接因素仍然知之甚少。由于温度已知会影响宿主-寄生虫的关系,因此在全球变暖的背景下,了解其确切影响已成为一个主要挑战。淡水十足目甲壳动物在生态上非常重要,它们是几种棘头虫的中间宿主。这些寄生虫对十足目甲壳动物产生多种影响,包括改变它们的行为,最终导致它们的功能角色发生改变。在这里,实验性感染被用来评估两种温度对蜾蠃蜚和它的棘头虫寄生虫片形盘钩虫之间的关联的几个特征的影响。高温以多种方式影响宿主和寄生虫(宿主存活率降低、十足目甲壳动物活动增加、寄生虫发育和吻突外翻更快)。然而,行为操纵不受温度影响。这些结果表明,预测的温度变化可能对寄生虫通过操纵的营养传播几乎没有影响,尽管它可能通过增加感染成功率和更快的寄生虫发育来改变它。