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在缅因州沿海一个岛屿上,新近被扇头蜱(Ixodes scapularis)殖民的地方,出现了一种伯氏疏螺旋体(Borrelia burgdorferi)的新兴种群,其基因型多样性。

Genotypic diversity of an emergent population of Borrelia burgdorferi at a coastal Maine island recently colonized by Ixodes scapularis.

机构信息

Division of Infectious Diseases, Maine Medical Center, Portland, Maine 04102, USA.

出版信息

Vector Borne Zoonotic Dis. 2012 Jun;12(6):456-61. doi: 10.1089/vbz.2011.0811. Epub 2012 Jan 4.

Abstract

The recent range expansion of Ixodes scapularis has been accompanied by the emergence of Borrelia burgdorferi. The development of genetic diversity in B. burgdorferi at these sites of emergence and its relationship to range expansion is poorly understood. We followed colonization of I. scapularis on a coastal Maine island over a 17-year period. B. burgdorferi's emergence was documented, as was expansion of ospC strain diversity. Ticks collected from rodents and vegetation were examined for the presence of B. burgdorferi. Sequencing and reverse line blot were used to detect B. burgdorferi ospC major groups (oMG). No I. scapularis were found until year four of the study, after which time they increased in abundance. No B. burgdorferi was detected by darkfield microscopy in I. scapularis until 10 years into the study, when 4% of adult ticks were infected. Seven years later, 43% of adult ticks were infected. In 2003, one oMG accounted for 91% of B. burgdorferi strains. This "founder" strain persisted in 2005, but by 2007 was a minority of the 7 oMGs present. Given the island's isolation, gene flow by avian introduction of multiple strains is suggested in the development of B. burgdorferi oMG diversity.

摘要

近年来,扁虱的分布范围不断扩大,同时也出现了伯氏疏螺旋体。在这些新出现的地点,伯氏疏螺旋体的遗传多样性的发展及其与分布范围扩大的关系还不太清楚。我们在缅因州沿海的一个岛屿上对扁虱进行了为期 17 年的追踪研究。记录了伯氏疏螺旋体的出现情况,以及 ospC 菌株多样性的扩展情况。对从啮齿动物和植被中采集的蜱进行了 B. burgdorferi 的检测。采用测序和反向线印迹法检测 B. burgdorferi 的 ospC 主要组(oMG)。直到研究的第四年才发现扁虱,此后其数量增加。在研究进行到 10 年时,才通过暗场显微镜检测到蜱中存在 B. burgdorferi,当时有 4%的成年蜱被感染。七年后,43%的成年蜱被感染。2003 年,一种 oMG 占 B. burgdorferi 菌株的 91%。这种“创始”菌株在 2005 年仍然存在,但到 2007 年,它在存在的 7 种 oMG 中已成为少数。鉴于该岛的孤立性,通过鸟类引入多种菌株可能导致了伯氏疏螺旋体 oMG 多样性的发展。

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