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Parasites driving host diversity: Incidence of disease correlated with Daphnia clonal turnover

机译:寄生寄生虫多样性:疾病发病率与Daphnia克隆转产相关

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摘要

According to the Red Queen hypothesis, clonal diversity in asexual populations could be maintained by negative frequencydependant selection by coevolving parasites. If common clones are selected against and rare clones gain a concomitant advantage, we expect that clonal turnover should be faster during parasite epidemics than between them.We tested this hypothesis exploring field data of the Daphnia-Caullerya host-parasite system. The clonal make-up and turnover of the Daphnia host population was tracked with high temporal resolution from 1998 until 2013, using first allozyme and later microsatellite markers. Significant differences in the clonal composition between random and infected subsamples of Daphnia populations were detected on six of seven tested occasions, confirming genetic specificity of the host-parasite interaction in this system. We used time series analysis to compare the rates of host clonal turnover to the incidence of parasitism, and found that Caullerya prevalence was significantly associated with microsatellite-based clonal turnover. As alternate hypotheses, we further tested whether turnover was related to a variety of biotic, abiotic, and host demographic parameters. Other significant correlates of turnover were cyanobacterial biomass and (weakly) temperature. Overall, parasitism seems to be a strong driver of host clonal turnover, in support of the Red Queen hypothesis.
机译:根据红色女王假设,通过共同频率依赖性选择,可以通过共寄生虫进行消极频率依赖性群体来维持猫克隆多样性。如果选择普通克隆和罕见的克隆增强了伴随的优势,我们期望克隆转变在寄生虫流行物期间应该比它们之间的寄生流动性更快。我们测试了这种假设探索了Daphnia-caullerya主寄生虫系统的现场数据。通过1998年从1998年的高时分辨率跟踪了Daphnia宿主人群的克隆化妆和营业额,直到2013年,使用了第一只有酶和后来的微卫星标记。在七次测试场合中检测到六种测试的血管群随机和感染群之间的克隆组成的显着差异,确认了该系统中寄生虫寄生虫相互作用的遗传特异性。我们使用时间序列分析将宿主围流的率与寄生症的发生率进行比较,发现Caullerya患病率与基于微卫星的克隆转交显着相关。作为替代假设,我们进一步测试了营业额是否与各种生物,非生物和宿主人口统计参数有关。其他显着相关的营业额与蓝藻生物质和(弱)温度有关。总体而言,寄生派似乎是一个强大的主持人克隆转产司机,支持红色女王假设。

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  • 作者单位

    Department of Aquatic Ecology Eawag Swiss Federal Institute of Aquatic Science and Technology CH-8600 Dübendorf Switzerland;

    Department of Aquatic Ecology Eawag Swiss Federal Institute of Aquatic Science and Technology CH-8600 Dübendorf Switzerland;

    Department of Aquatic Ecology Eawag Swiss Federal Institute of Aquatic Science and Technology CH-8600 Dübendorf Switzerland;

    Department of Aquatic Ecology Eawag Swiss Federal Institute of Aquatic Science and Technology CH-8600 Dübendorf Switzerland;

    Department of Aquatic Ecology Eawag Swiss Federal Institute of Aquatic Science and Technology CH-8600 Dübendorf Switzerland;

    Department of Aquatic Ecology Eawag Swiss Federal Institute of Aquatic Science and Technology CH-8600 Dübendorf Switzerland;

    Department of Ecosystem Research Leibniz-Institute of Freshwater Ecology and Inland Fisheries Müggelseedamm 301 12587 Berlin Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物演化与发展;
  • 关键词

    Caullerya; host-parasite coevolution; red queen;

    机译:caullerya;寄生寄生虫共同;红色女王;

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