Laboratory of Host Pathogen Interactions-UBM, Institut Pasteur de Montevideo, Montevideo, Uruguay.
Bioinformatics Unit, Institut Pasteur de Montevideo, Montevideo, Uruguay.
Parasitol Res. 2019 Dec;118(12):3535-3542. doi: 10.1007/s00436-019-06474-9. Epub 2019 Nov 7.
Neospora caninum causes neosporosis, a leading cause of bovine abortion worldwide. Uruguay is a developing economy in South America that produces milk to feed seven times its population annually. Naturally, dairy production is paramount to the country's economy, and bovine reproductive failure impacts it profoundly. Recent studies demonstrated that the vast majority of infectious abortions in dairy cows are caused by N. caninum. To delve into the local situation and contextualize it within the international standing, we set out to characterize the Uruguayan N. caninum strains. For this, we isolated four distinct strains and determined by microsatellite typing that these represent three unique genetic lineages, distinct from those reported previously in the region or elsewhere. An unbiased analysis of the current worldwide genetic diversity of N. caninum strains known, whereby six typing clusters can be resolved, revealed that three of the four Uruguayan strains group closely with regional strains from Argentina and Brazil. The remaining strain groups in an unrelated genetic cluster, suggesting multiple origins of the local strains. Microsatellite typing of N. caninum DNA from fetuses opportunistically collected from local dairy farms correlated more often with one of the isolates. Overall, our results contribute to further understanding of genetic diversity among strains of N. caninum both regionally and worldwide.
刚地弓形虫导致了弓形虫病,这是全球范围内牛流产的主要原因。乌拉圭是南美洲的一个发展中经济体,每年生产的牛奶足以养活其七倍的人口。自然地,奶制品生产对该国经济至关重要,而牛的繁殖失败对其产生了深远的影响。最近的研究表明,绝大多数传染性流产奶牛是由刚地弓形虫引起的。为了深入了解当地情况,并将其置于国际地位,我们着手研究乌拉圭的刚地弓形虫株。为此,我们分离了四个不同的菌株,并通过微卫星分型确定,这些菌株代表了三个独特的遗传谱系,与该地区或其他地区以前报告的谱系不同。对目前已知的全球刚地弓形虫株遗传多样性进行无偏见分析,可以解析出六个分型群,结果表明,四个乌拉圭菌株中有三个与来自阿根廷和巴西的区域菌株密切相关。其余的菌株则属于一个不相关的遗传群,表明当地菌株有多个来源。从当地奶牛场偶然收集的胎儿中刚地弓形虫 DNA 的微卫星分型与其中一个分离株更常相关。总的来说,我们的研究结果有助于进一步了解刚地弓形虫株在区域和全球范围内的遗传多样性。