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孢子形态在水蚤微孢子虫水平传播中的作用。

The role of spore morphology in horizontal transmission of a microsporidium of Daphnia.

作者信息

Urca Hadas, Ben-Ami Frida

机构信息

School of Zoology, George S. Wise Faculty of Life Sciences, Tel Aviv University,Tel Aviv 6997801,Israel.

出版信息

Parasitology. 2018 Sep;145(11):1452-1457. doi: 10.1017/S0031182018000392. Epub 2018 Mar 16.

Abstract

The microsporidian parasite Hamiltosporidium tvaerminnensis can infect Daphnia magna both horizontally (through environmental spores) and vertically (through parthenogenetic and sexually produced eggs). The spores of H. tvaerminnensis come in three distinguishable morphologies, which are thought to have different roles in the transmission of the parasite. In this study, we examined the role of the two most common spore morphologies (i.e. oval-shaped spores and pear-shaped spores) in horizontal transmission of H. tvaerminnensis. To this end, we infected hosts with solutions consisting of either mostly oval- or mostly pear-shaped spores, and quantified infection rates, parasite-induced host mortality and mean number of parasite spores produced per host. We found that spore morphology by itself did not influence infection rates and parasite-induced host mortality. Instead, host clone and parasite isolate interacted with spore morphology in shaping infection outcome and mortality. Thus, there appear to be strong genotype-by-genotype (G × G) interactions in this system. While there is no dispute that H. tvaerminnensis can transmit both vertically and horizontally, our findings do not support theoretical predictions that different spore morphologies hold different roles in horizontal transmission of H. tvaerminnensis.

摘要

微孢子虫寄生虫泰氏汉密尔顿孢虫(Hamiltosporidium tvaerminnensis)既能通过水平方式(通过环境中的孢子)也能通过垂直方式(通过孤雌生殖和有性生殖产生的卵)感染大型溞(Daphnia magna)。泰氏汉密尔顿孢虫的孢子有三种可区分的形态,人们认为它们在寄生虫传播中具有不同作用。在本研究中,我们研究了两种最常见的孢子形态(即椭圆形孢子和梨形孢子)在泰氏汉密尔顿孢虫水平传播中的作用。为此,我们用主要由椭圆形孢子或主要由梨形孢子组成的溶液感染宿主,并对感染率、寄生虫诱导的宿主死亡率以及每个宿主产生的寄生虫孢子平均数量进行了量化。我们发现孢子形态本身并不影响感染率和寄生虫诱导的宿主死亡率。相反,宿主克隆和寄生虫分离株在塑造感染结果和死亡率方面与孢子形态相互作用。因此,在这个系统中似乎存在强烈的基因型与基因型(G×G)相互作用。虽然毫无疑问泰氏汉密尔顿孢虫可以垂直和水平传播,但我们的研究结果并不支持不同孢子形态在泰氏汉密尔顿孢虫水平传播中具有不同作用的理论预测。

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