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首页> 外文期刊>International Journal for Parasitology: Parasites and Wildlife >Taeniid cestodes in Tibetan foxes (Vulpes Ferrilata) detected by copro-PCR: Applications and challenges
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Taeniid cestodes in Tibetan foxes (Vulpes Ferrilata) detected by copro-PCR: Applications and challenges

机译:通过Copro-PCR检测到的藏狐(狐狸狐狸)的Taeniid Cestodes:应用和挑战

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Tibetan foxes ( Vulpes ferrilata ) have been confirmed as the main wild definitive hosts in echinococcosis transmission in the eastern Tibetan Plateau. However, little information is available about the epidemiology in wildlife from the perspective of the Taeniidae family, which is essential knowledge in understanding the epidemiology and phylogeography of cestode species in the Tibetan plateau. Therefore, in this study, we used copro-PCR techniques, by amplifying nad1 and cox1 gene fragments, to detect the taeniid species from Tibetan fox feces collected in Shiqu County, (Sichuan Province, China), eastern Tibetan Plateau. Phylogenetic relationships between amplified sequences and existed Taenia species genotypes were evaluated. Then, the maximum prevalence (positive PCR results from at least one primer pair) and the conservative prevalence (positive PCR results from at least two primer pairs) were calculated. Thirty-six Tibetan fox feces were analyzed. Echinococcus multilocularis (conservative prevalence?±?95% CI: 22.2%?±?13.6%; maximum prevalence?±?95% CI: 33.3%?±?15.4%) and E. shiquicus (2.8?±?5.4%; 8.3?±?9.0%) was detected. Meanwhile, DNA fragments of T. polyacantha were detected with high similarity to NCBI sequences ( cox1 , 94.0%) and to the larva sample DNA sequenced in this study (93.4%), and were supported by phylogenetic analysis. Thus, T. polyacantha might infect Tibetan foxes (5.6%?±?7.5%, 11.1%?±?10.3%). Our limited findings in the epidemiology of parasitic Taenia species suggest that sylvatic transmission cycles for a more species-rich Taeniid community must be established between wild canids and small mammals than just for the two Echinococcus species. Besides, discrepancies in different primer pairs in detecting the taeniid species were evaluated. The sensitivity of some widely used universal primer pairs was poor in detecting Taenia species from canid copro-DNA samples. It is still challenging to the development of effective taeniid species-specific molecular markers especially for non-zoonotic species.
机译:藏狐(狐狸Ferrilata)已被证实是西藏高原东部高脉链病变中的主要野生明确宿主。然而,从Taeniidae家族的角度来看,野生动物的流行病学很少,这是了解藏高原藏岩物种的流行病学和神话地理方面的基本知识。因此,在本研究中,我们通过扩增NAD1和COX1基因片段来检测藏狐狸粪便中收集的藏狐粪(四川省),西藏高原东部的脂合作遗传物种。评价扩增序列与存在的Taenia物种基因型之间的系统发育关系。然后,计算最大流行率(来自至少一个引物对的阳性PCR)和保守患病率(阳性PCR由至少两个引物对的阳性PCR结果)。分析了三十六个藏狐狸粪便。 echinococcus multilcularis(保守患病率?±95%ci:22.2%?±13.6%;最大流行率?±95%ci:33.3%?±15.4%)和E. shiquicus(2.8?±5.4%; 8.3检测到±9.0%)。同时,用高相似性与NCBI序列(COX1,94.0%)和在该研究中测序的幼虫样品DNA检测到DNA片段(93.4%),并得到系统发育分析的支持。因此,T.Polyacantha可能会感染藏狐(5.6%?±7.5%,11.1%?±10.3%)。我们在寄生Taenia物种流行病学中的有限发现表明,对于更多物种的富含TaenIID群落的杂志传播循环必须在野生CAIL和小型哺乳动物之间建立,而不是两个棘突物种。此外,评估了检测Taeniid物种的不同引物对的差异。一些广泛使用的通用引物对的敏感性在检测CANID COPRO-DNA样品中的绦虫物种方面差。它仍然挑战了有效的Taeniid物种特异性分子标记的发展,特别是对于非洲非洲动物。

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