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Use of molecular markers can help to understand the genetic diversity of Babesia bovis

牛巴贝虫 生物 遗传多样性 毒力 遗传变异 遗传学 巴贝虫病 基因 巴贝虫 生物信息学 微小牛蜱 进化生物学 病毒学 滴答声 医学 环境卫生 人口
作者
Paulo Vitor Marques Simas,César Cristiano Bassetto,Rodrigo Giglioti,Cíntia Hiromi Okino,Henrique Nunes de Oliveira,M. C. de S. Oliveira
出处
期刊:Infection, Genetics and Evolution [Elsevier]
卷期号:79: 104161-104161 被引量:9
标识
DOI:10.1016/j.meegid.2019.104161
摘要

Cattle babesiosis is a tick-borne disease responsible for significant losses for the livestock industries in tropical areas of the world. These piroplasms are under constant control of the host immune system, which lead to a strong selective pressure for arising more virulent or attenuated phenotypes. Aiming to better understand the most critical genetic modifications in Babesia bovis genome, related to virulence, an in silico analysis was performed using DNA sequences from GenBank. Fourteen genes (sbp-2, sbp-4, trap, msa-1, msa-2b, msa-2c, Bv80 (or Bb-1), 18S rRNA, acs-1, ama-1, β-tub, cp-2, p0, rap-1a) related to parasite infection and immunogenicity and ITS region were selected for alignment and comparison of several isolates of Babesia bovis from different geographic regions around the world. Among the 15 genes selected for the study of diversity, only 7 genes (sbp-2, sbp-4, trap, msa-1, msa-2b, msa-2c, Bv80) and the ITS region presented sufficient genetic variation for the studies of phylogeny. Despite this genetic diversity observed into groups, there was not sufficient information available to associate molecular markers with virulence of isolates. However, some genetic groups no were correlated with geographic region what could indicate some typical evolutionary characteristics in the relation between parasite-host. Further studies using these genes in herds presenting diverse clinical conditions are required. The better understanding of evolutionary mechanisms of the parasite may contribute to improve prophylactic and therapeutic measures. In this way, we suggest that genes used in our study are potential markers of virulence and attenuation and have to be analyzed with the use of sequences from animals that present clinical signs of babesiosis and asymptomatic carriers.
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