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Trypanosoma cruzi Infection in Neotropical Wild Carnivores (Mammalia: Carnivora): At the Top of the T. cruzi Transmission Chain

机译:新热带野生食肉动物(哺乳动物:食肉动物)中的锥虫锥虫感染:在锥虫传播链的顶部

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摘要

Little is known on the role played by Neotropical wild carnivores in the Trypanosoma cruzi transmission cycles. We investigated T. cruzi infection in wild carnivores from three sites in Brazil through parasitological and serological tests. The seven carnivore species examined were infected by T. cruzi, but high parasitemias detectable by hemoculture were found only in two Procyonidae species. Genotyping by Mini-exon gene, PCR-RFLP (1f8/Akw21I) and kDNA genomic targets revealed that the raccoon (Procyon cancrivorus) harbored TcI and the coatis (Nasua nasua) harbored TcI, TcII, TcIII-IV and Trypanosoma rangeli, in single and mixed infections, besides four T. cruzi isolates that displayed odd band patterns in the Mini-exon assay. These findings corroborate the coati can be a bioaccumulator of T. cruzi Discrete Typing Units (DTU) and may act as a transmission hub, a connection point joining sylvatic transmission cycles within terrestrial and arboreal mammals and vectors. Also, the odd band patterns observed in coatis’ isolates reinforce that T. cruzi diversity might be much higher than currently acknowledged. Additionally, we assembled our data with T. cruzi infection on Neotropical carnivores’ literature records to provide a comprehensive analysis of the infection patterns among distinct carnivore species, especially considering their ecological traits and phylogeny. Altogether, fifteen Neotropical carnivore species were found naturally infected by T. cruzi. Species diet was associated with T. cruzi infection rates, supporting the hypothesis that predator-prey links are important mechanisms for T. cruzi maintenance and dispersion in the wild. Distinct T. cruzi infection patterns across carnivore species and study sites were notable. Musteloidea species consistently exhibit high parasitemias in different studies which indicate their high infectivity potential. Mesocarnivores that feed on both invertebrates and mammals, including the coati, a host that can be bioaccumulator of T. cruzi DTU’s, seem to take place at the top of the T. cruzi transmission chain.
机译:新热带野生食肉动物在克氏锥虫传播周期中所起的作用鲜为人知。我们通过寄生虫学和血清学测试,调查了巴西三个地点的野生食肉动物中的克鲁氏锥虫感染。所检查的七个食肉动物物种感染了克氏锥虫,但仅在两个Procyonidae物种中发现可通过血液培养检测到的高寄生虫病。 Mini-exon基因,PCR-RFLP(1f8 / Akw21I)和kDNA基因组靶标的基因分型显示,浣熊(Procyon cancrivorus)带有TcI,而浣熊(Nasua nasua)则带有TcI,TcII,TcIII-IV和锥虫以及混合感染,除了在Mini-exon分析中显示出奇特谱带模式的四个T. cruzi分离株。这些发现证实了科伊犬可能是克氏锥虫离散分型单位(DTU)的生物蓄积体,并且可以充当传播枢纽,连接陆地和树栖哺乳动物和媒介内的动植物传播周期的连接点。此外,在大肠犬的分离物中观察到的奇数带状图案进一步表明,克鲁氏锥虫的多样性可能比目前公认的高得多。此外,我们在新热带食肉动物的文献记录中结合了克鲁氏锥虫感染的数据,以提供对不同食肉动物物种感染模式的全面分析,尤其是考虑到它们的生态特征和系统发育。总共发现了15种新热带食肉动物物种被T. cruzi自然感染。物种饮食与克鲁维斯氏菌的感染率有关,这支持了捕食者与猎物之间的联系是克鲁维斯氏菌在野外维持和传播的重要机制这一假设。肉食动物物种和研究地点的克鲁斯锥虫感染模式不同。在不同的研究中,鼬科动物始终表现出很高的寄生虫病性,这表明它们具有很高的感染潜力。以无脊椎动物和哺乳类为食的中食食动物,包括科伊犬,可以作为克鲁维氏锥虫DTU的生物蓄积体,似乎是在克鲁氏锥虫传播链的顶部。

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