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建立. 的多位点序列分型方案

Development of a Multilocus Sequence Typing Scheme for .

机构信息

Grupo de Investigaciones Microbiológicas-UR (GIMUR), Departamento de Biología, Facultad de Ciencias Naturales, Universidad del Rosario, Bogotá 111211, Colombia.

Departamento de Salud Pública, Universidad Nacional de Colombia, Bogotá 111321, Colombia.

出版信息

Genes (Basel). 2020 Jul 8;11(7):764. doi: 10.3390/genes11070764.

Abstract

is an intestinal protozoan most commonly found in humans. It has been grouped into 8 assemblages (A-H). Markers such as the glutamate dehydrogenase gene, triose phosphate isomerase and beta-giardin (β-giardin) have been widely used for genotyping. In addition, different genetic targets have been proposed as a valuable alternative to assess diversity and genetics of this microorganism. Thus, our objective was to evaluate new markers for the study of the diversity and intra-taxa genetic structure of in silico and in DNA obtained from stool samples. We analysed nine constitutive genes in 80 complete genome sequences and in a group of 24 stool samples from Colombia. Allelic diversity was evaluated by locus and for the concatenated sequence of nine loci that could discriminate up to 53 alleles. Phylogenetic reconstructions allowed us to identify AI, AII and B assemblages. We found evidence of intra- and inter-assemblage recombination events. Population structure analysis showed genetic differentiation among the assemblages analysed.

摘要

是一种常见于人类的肠道原生动物。它已被分为 8 个组合(A-H)。谷氨酸脱氢酶基因、磷酸丙糖异构酶和β-微管蛋白(β-giardin)等标记物已被广泛用于基因分型。此外,不同的遗传靶标已被提出作为评估该微生物多样性和遗传结构的有价值的替代方法。因此,我们的目的是评估新的标记物,以研究 的多样性和种内遗传结构,包括在计算机模拟和从粪便样本中获得的 DNA 中。我们分析了 80 个完整基因组序列和来自哥伦比亚的 24 组粪便样本中的 9 个组成基因。通过基因座和可区分多达 53 个等位基因的 9 个基因座的串联序列评估等位基因多样性。系统发育重建允许我们识别 AI、AII 和 B 组合。我们发现了种内和种间重组事件的证据。种群结构分析显示,分析的组合之间存在遗传分化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ae7/7397270/dad534947641/genes-11-00764-g001.jpg

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