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首页> 外文期刊>Journal of Parasitology >INFERENCE OF POPULATION STRUCTURE AND PATTERNS OF GENE FLOW IN CANINE HEARTWORM (DIROFILARIA IMMITIS)
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INFERENCE OF POPULATION STRUCTURE AND PATTERNS OF GENE FLOW IN CANINE HEARTWORM (DIROFILARIA IMMITIS)

机译:犬心蠕虫(拟真丝虫)的种群结构和基因流动模式的推断

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摘要

Understanding the genetic variation within a parasitic species is crucial to implementing successful control programs and preventing the dispersal of drug resistance alleles. We examined the population genetics and structure of canine heartworm (Dirofilaria immitis) by developing a panel of 11 polymorphic microsatellite loci for this abundant parasite. In total, 192 individual nematodes were opportunistically sampled from 9 geographic regions in the United States and Mexico and genotyped. Population genetic analyses indicate the presence of 4 genetic clusters. The canine heartworm samples used in this study were characterized by low heterozygosity, with eastern and central North America experiencing high levels of reciprocal gene flow. Geographic barriers impede the movement of vectors and infected hosts west of the Rocky Mountains and south of the Central Mexican Plateau. This, combined with corridors of contiguous habitat, could influence the spread of drug resistance alleles.
机译:了解寄生虫物种内的遗传变异对于实施成功的控制计划和防止耐药性等位基因的扩散至关重要。我们通过为这种丰富的寄生虫开发了11个多态微卫星基因座,检查了犬心丝虫(犬丝虫病)的种群遗传学和结构。总共从美国和墨西哥的9个地理区域随机取样了192个线虫,并进行了基因分型。群体遗传分析表明存在4个遗传簇。本研究中使用的犬心丝虫样品的特点是杂合度低,北美东部和中部的互惠基因流水平较高。地理上的障碍阻碍了媒介的移动以及落基山脉以西和中部墨西哥高原以南的被感染宿主的移动。这与邻近栖息地的走廊相结合,可能会影响耐药性等位基因的传播。

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