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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Sex allocation and population structure in malaria and related parasitic protozoa.
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Sex allocation and population structure in malaria and related parasitic protozoa.

机译:疟疾及相关寄生虫原生动物的性别分布和人口结构。

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摘要

Here we demonstrate how sex allocation theory, one of the best verified areas of metazoan evolutionary biology, can be successfully applied to microparasitic organisms, by relating parasite prevalence and sex ratio in the Haemosporina. Members of this taxon, which includes Plasmodium, are parasitic protozoa with obligate sexual cycles in which dioecious haploid gametes drawn from the peripheral blood of a vertebrate host fuse within a dipteran vector. Consequently mating takes place within a highly subdivided population, a condition known to promote local mate competition and inbreeding and hence the evolution of female-biased sex ratios. We used an epidemiological framework to investigate mating patterns and sex ratio evolution within natural populations of these parasites. This phenotypic approach compliments more conventional biochemical approaches to the population genetics of parasitic protozoa. Data are presented which support a theoretical relation between transmission-stage sex ratio and prevalence across parasite populations. These results are consistent with a large inter-population variation in genetic structure and argue against sweeping generalizations about the clonality or otherwise of populations of these parasitic protozoa.
机译:在这里,我们证明性别分配理论是后生动物进化生物学中验证最好的领域之一,该方法如何通过关联血孢菌中的寄生虫患病率和性别比而成功地应用于微寄生生物。该分类单元(包括疟原虫)的成员是具有专性性周期的寄生虫原生动物,其中从脊椎动物宿主外周血中抽出的雌雄异体的单倍体配子在二萜载体内融合。因此,交配发生在高度细分的人群中,这是一种促进当地伴侣竞争和近亲繁殖并因此导致女性偏向性别比的演变的条件。我们使用了一种流行病学框架来调查这些寄生虫自然种群内的交配模式和性别比演变。这种表型方法补充了寄生虫原生动物种群遗传学的更多常规生化方法。提出的数据支持了传播阶段性别比与跨寄生虫种群流行之间的理论关系。这些结果与群体间遗传结构的巨大差异是一致的,并反对对这些寄生虫原生动物种群的克隆性或其他方面的笼统概括。

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