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Probing Mixed-Genotype Infections II: High Multiplicity in Natural Infections of the Trypanosomatid Crithidia bombi in Its Host Bombus spp

机译:探测混合基因型感染II:在锥虫自然感染高多重短膜虫bombi在其主机熊蜂属

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摘要

Mixed-genotype infections have major consequences for many essential elements of host-parasite interactions. With genetic exchange between co-infecting parasite genotypes increased diversity among parasite offspring and the emergence of novel genotypes from infected hosts is possible. We here investigated mixed- genotype infections using the host, Bombus spp. and its trypanosome parasite Crithidia bombi as our study case. The natural infections of C. bombi were genotyped with a novel method for a representative sample of workers and spring queens in Switzerland. We found that around 60% of all infected hosts showed mixed-genotype infections with an average of 2.47±0.22 (S.E.) and 3.65±1.02 genotypes per worker or queen, respectively. Queens, however, harboured up to 29 different genotypes. Based on the genotypes of co-infecting strains, these could be putatively assigned to either ‘primary’ and ‘derived’ genotypes - the latter resulting from genetic exchange among the primary genotypes. High genetic relatedness among co-infecting derived but not primary genotypes supported this scenario. Co-infection in queens seems to be a major driver for the diversity of genotypes circulating in host populations.
机译:混合基因型感染对宿主-寄生虫相互作用的许多基本要素具有重大影响。通过共感染的寄生虫基因型之间的遗传交换,寄生虫后代之间的多样性增加,并且有可能从感染宿主中出现新的基因型。我们在这里使用宿主Bombus spp调查了混合基因型感染。和它的锥虫寄生虫Crithidia bombi作为我们的研究案例。用一种新颖的方法对瑞士棉铃虫的自然感染进行了基因分型,方法是对工人和春季皇后区的代表性样本进行分析。我们发现所有感染宿主中约有60%表现出混合基因型感染,每个工人或女王的平均基因型分别为2.47±0.22(S.E.)和3.65±1.02。皇后区却藏有多达29种不同的基因型。根据共同感染菌株的基因型,可以将它们推定为“主要”和“衍生”基因型-后者是由主要基因型之间的遗传交换产生的。共同感染的衍生基因型与原发基因型之间的高度遗传相关性支持了这种情况。皇后区的共感染似乎是宿主种群中传播的基因型多样性的主要驱动力。

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