Phylogenetic analysis of Cryptosporidium isolates in Henan

Wang Jin-chan, Qian Wei-wei, Zhang Long-xian, Ning Chang-shen, Jian Fuchun, Zhao Jinfeng, W. Ming
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引用次数: 2

Abstract

The mitochondrial functional protein alternative oxidase(AOX)gene was used as the marker for analysing phylogentic relationship of the Cryptosporidium isolates.The AOX genes were characterized,and the phylogentic tree was established from the Cryptosporidium isolates,and compared with that of 18S rRNA and HSP70 gene sequences,then determined whether the AOX gene was suitable for phylogentic analysis of the genus of Cryptosporidium or not.The results revealed that the genus Cryptosporidium contained the phylogenetical distinct species C.parvum,C.hominis,C.suis and C.baileyi,which were consistent with the biological characteristics and host specificity up to date.The Cryptosporidium species formed two clades,one included C.hominis,C.suis,C.parvum cattle genotype and C.parvum mouse genotype and the other included C.meleagridis and C.baileyi isolates.Within C.parvum,both the mouse genotype isolate and the pig genotypeⅠ(already known as C.suis)isolate differed from cattle genotype and human genotype(already known as C.hominis)based on the nucleotide sequences alignment.The identity of the AOX gene sequences between C.meleagridis and C.baileyi was more distinguishedly than that of between C.meleagridis and C.parvum,and the phylogentic trees showed that C.meleagridis had a closer phylogenetic affinity with the C.baileyi than that with C.parvum,this result was inconsistent with the phylogentic analysis results from 18S rRNA and HSP70 gene sequences,respectively.Present result suggested that the AOX gene is not only equally suitable for the phylogentic analysis of Cryptosporidium,but also provides an approach to identify new genes heredity of Cryptosporidium.
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河南隐孢子虫分离株的系统发育分析
以线粒体功能蛋白替代氧化酶(AOX)基因为标记,分析了隐孢子虫分离株的系统发育关系。对AOX基因进行鉴定,建立隐孢子虫分离株系统发育树,并与18S rRNA和HSP70基因序列进行比较,确定AOX基因是否适合用于隐孢子虫属的系统发育分析。结果表明,隐孢子虫属包含细小隐孢子虫、人源隐孢子虫、隐孢子虫和隐孢子虫。suis和c.b eleyi,这与迄今为止的生物学特性和宿主特异性一致。隐孢子虫形成了两个分支,其中一个分支包括人隐孢子虫、猪隐孢子虫、猪隐孢子虫。其中,牛和小鼠分别为小孢子虫基因型和小孢子虫基因型。在小弧菌中,小鼠基因型分离物和猪基因型Ⅰ(已被称为猪弧菌)分离物与牛基因型和人基因型(已被称为人型弧菌)在核苷酸序列比对上存在差异。系统发育树分析结果表明,毛蕊草与白僵菌AOX基因序列的同源性比毛蕊草与小僵菌的亲缘性更强,这与18S rRNA和HSP70基因序列的系统发育分析结果不一致。结果表明,AOX基因不仅同样适用于隐孢子虫的系统发育分析,而且为鉴定隐孢子虫的遗传新基因提供了一种途径。
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