Transmission of the microsporidian Glugoides intestinalis in relation to spatial structure of the host Daphnia magna

D. Fels
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引用次数: 7

Abstract

Daphnia magna selects different depths according to its genotype, its size or infection by a parasite. As a result, waterflea populations are often vertically structured. This vertical structure, i. e. different distances between waterfleas, might slow the progress of microparasite epidemics. This would enable avoidance behaviour to evolve. I tested in a set of experiments for both, distance effects and avoidance behaviour. The experiments were performed with the host-parasite system of D. magna and its microsporidian gut-parasite Glugoides intestinalis. Infection depended on spore loads in infected waterfleas. Transmission, however, was not affected by distance to infected animals. Avoidance behaviour was absent. The results suggest that the host's spatial structure does not influence the transmission of G. intestinalis in the populations of Daphnia magna living in shallow water. Rather, successful transmission depends on the dynamics of the water.
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肠道小孢子虫传播与寄主大水蚤空间结构的关系
大水蚤根据其基因型、大小或寄生虫感染情况选择不同的深度。因此,水蚤种群通常是垂直结构的。这种垂直结构,即水蚤之间的不同距离,可能会减缓微寄生虫流行的进展。这将使回避行为得以进化。我在一系列实验中分别测试了距离效应和回避行为。本实验以大蠊寄主-寄生系统及其微孢子虫肠道寄生虫Glugoides ininalis为研究对象。感染取决于感染水蚤的孢子载量。然而,传播不受与受感染动物距离的影响。回避行为不存在。结果表明,寄主的空间结构不影响大水蚤在浅水生境中的传播。相反,成功的传播取决于水的动力学。
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