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首页> 外文期刊>Poultry Science >Sequence-based genotyping clarifies conflicting historical morphometric and biological data for 5 Eimeria species infecting turkeys
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Sequence-based genotyping clarifies conflicting historical morphometric and biological data for 5 Eimeria species infecting turkeys

机译:基于序列的基因分型阐明了5种感染火鸡的艾美球虫物种的历史形态和生物学数据的矛盾

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摘要

Unlike with Eimeria species infecting chickens, specific identification and nomenclature of Eimeria species infecting turkeys is complicated, and in the absence of molecular data, imprecise. In an attempt to reconcile contradictory data reported on oocyst morphometrics and biological descriptions of various Eimeria species infecting turkey, we established single oocyst derived lines of 5 important Eimeria species infecting turkeys, Eimeria meleagrimitis (USMN08-01 strain), Eimeria adenoeides (Guelph strain), Eimeria gallopavonis (Weybridge strain), Eimeria meleagridis (USAR97-01 strain), and Eimeria dispersa (Briston strain). Short portions (514 bp) of mitochondrial cytochrome c oxidase subunit I gene (mt COI) from each were amplified and sequenced. Comparison of these sequences showed sufficient species-specific sequence variation to recommend these short mt COI sequences as species-specific markers. Uniformity of oocyst features (dimensions and oocyst structure) of each pure line was observed. Additional morphological features of the oocysts of these species are described as useful for the microscopic differentiation of these Eimeria species. Combined molecular and morphometric data on these single species lines compared with the original species descriptions and more recent data have helped to clarify some confusing, and sometimes conflicting, features associated with these Eimeria spp. For example, these new data suggest that the KCH and KR strains of E. adenoeides reported previously represent 2 distinct species, E. adenoeides and E. meleagridis, respectively. Likewise, analysis of the Weybridge strain of E. adenoeides, which has long been used as a reference strain in various studies conducted on the pathogenicity of E. adenoeides, indicates that this coccidium is actually a strain of E. gallopavonis. We highly recommend mt COI sequence-based genotyping be incorporated into all studies using Eimeria spp. of turkeys to confirm species identifications and so that any resulting data can be associated correctly with a single named Eimeria species.
机译:与感染鸡的艾美球虫属种不同,感染火鸡的艾美球虫属种的特异性鉴定和命名很复杂,并且在没有分子数据的情况下也不精确。为了调和有关感染卵的各种艾美尔球虫物种的卵囊形态学和生物学描述所报告的矛盾数据,我们建立了5个重要的艾美尔球菌感染火鸡,艾美尔球菌性湿疹炎(USMN08-01株),艾美球菌腺苷(Guelph株)的卵囊派生系。 ,艾美球虫(Weybridge株),艾美球虫(USAR97-01株)和艾美球虫(Briston株)。来自每个的线粒体细胞色素c氧化酶亚基I基因(mt COI)的短部分(514bp)被扩增和测序。这些序列的比较显示出足够的物种特异性序列变异,以推荐这些短的mt COI序列作为物种特异性标记。观察到每个纯系的卵囊特征(尺寸和卵囊结构)的均匀性。这些物种的卵囊的其他形态特征被描述为可用于这些艾美尔球虫物种的微观分化。与原始物种描述相比较,这些单一物种谱系的分子和形态计量数据相结合,而最新的数据则有助于弄清与这些艾美球虫属有关的一些令人困惑的,有时是矛盾的特征。例如,这些新数据表明,先前报道的腺苷大肠杆菌的KCH和KR菌株分别代表2种不同的物种,即腺苷大肠杆菌和meleagridis大肠杆菌。同样,对腺苷的Weybridge菌株的Weybridge菌株的分析很早就被用作关于腺苷的致病性的各种研究的参考菌株,这表明该球菌实际上是鸡盖洛单胞菌的菌株。我们强烈建议将基于mt COI序列的基因分型纳入使用艾美叶虫属的所有研究中。土耳其以确认物种识别,以便将任何得到的数据正确地与单个命名的艾美叶菊属物种相关联。

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