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首页> 外文期刊>Parasitology Research >New Insights into Morphological and Biological Features of Capillaria aerophila (Trichocephalida, Trichuridae)
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New Insights into Morphological and Biological Features of Capillaria aerophila (Trichocephalida, Trichuridae)

机译:毛细血管菌(Trichocephalida,Trichuridae)的形态和生物学特征的新见解

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Capillaria aerophila is a trichuroid nematode affecting the respiratory system of dogs, cats, wild carnivores and, occasionally, humans. Animals become infected by ingesting larvated eggs or earthworms, which act as facultative intermediate hosts. The aim of this work is to present new insights into morphological and biological features of this neglected lungworm. Typical features of C. aerophila eggs, differentiating them from those of most known trichuroid whipworms (i.e. size, asymmetry of bipolar plugs and a wall with a network of anastomosing ridges), were detected upon light and scanning electron microscopy. Eggs of C. aerophila were used for in vitro development. Light microscopy showed typical features of C. aerophila eggs: size, asymmetry of bipolar plugs and a wall with a network of anastomosing ridges. All these features were confirmed upon SEM, in that C. aerophila eggs showed an outer densely striated and net-like shell. Eggs of T. vulpis, used for a comparative analysis, were bigger than those of C. aerophila and showed a thick and smooth wall at both light and scanning electron microscopy. Eggs started to develop after 35 days from shedding and mobile larvae were observed in the eggs after two months. The results of this study provide key information on the biological cycle of C. aerophila and present key morphological characters for the identification of eggs in faeces.
机译:毛细血管菌是影响狗,猫,野生食肉动物和人的呼吸系统的三头chu线虫。摄食幼虫卵或earth是动物的中间宿主,它们会感染动物。这项工作的目的是提出对这种被忽视的肺虫的形态和生物学特征的新见解。在光学和扫描电子显微镜下,可检测到嗜气梭状芽胞杆菌卵的典型特征,使其与大多数已知的三尖鞭鞭虫的特征不同(即大小,双极性栓的不对称性和具有吻合脊网络的壁)。嗜酸气单胞菌的卵用于体外发育。光学显微镜显示了嗜油假单胞菌卵的典型特征:大小,双极栓的不对称性以及带有吻合脊网络的壁。所有这些特征在SEM上得到了证实,其中嗜气梭菌卵显示出外部密集的横纹和网状壳。用于比较分析的外圆T虫卵大于嗜氧衣原体those虫卵,并且在光学和扫描电子显微镜下均显示出厚而光滑的壁。脱落35天后卵开始发育,两个月后观察到卵中有活动幼虫。这项研究的结果提供了有关嗜酸气单胞菌的生物周期的关键信息,并提供了鉴定粪便中卵的关键形态特征。

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