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改良基因组注释条件下牛巴贝斯虫血阶段和动基体之间基因表达的比较分析。

Comparative analysis of gene expression between Babesia bovis blood stages and kinetes allowed by improved genome annotation.

机构信息

Animal Diseases Research Unit, USDA-ARS, Pullman, Washington, USA; Program in Vector-borne Diseases, Department of Veterinary Microbiology and Pathology, Washington State University, Pullman, Washington, USA; Paul G. Allen School for Global Animal Health, Washington State University, Pullman, Washington, USA.

Animal Diseases Research Unit, USDA-ARS, Pullman, Washington, USA.

出版信息

Int J Parasitol. 2021 Feb;51(2-3):123-136. doi: 10.1016/j.ijpara.2020.08.006. Epub 2020 Oct 15.

Abstract

Throughout their life cycle, Babesia parasites alternate between a mammalian host, where they cause babesiosis, and the tick vector. Transition between hosts results in distinct environmental signals that influence patterns of gene expression, consistent with the morphological and functional changes operating in the parasites during their life stages. In addition, comparing differential patterns of gene expression among mammalian and tick parasite stages can provide clues for developing improved methods of control. Hereby, we upgraded the genome assembly of Babesia bovis, a bovine hemoparasite, closing a 139 kbp gap, and used RNA-Seq datasets derived from mammalian blood and tick kinete stages to update the genome annotation. Of the originally annotated genes, 1,254 required structural changes, and 326 new genes were identified, leading to a different predicted proteome compared to the original annotation. Next, the RNA-Seq data was used to identify B. bovis genes that were differentially expressed in the vertebrate and arthropod hosts. In blood stages, 28% of the genes were upregulated up to 300 fold, whereas 26% of the genes in kinetes, a tick stage, were upregulated up to >19,000 fold. We thus discovered differentially expressed genes that may play key biological roles and serve as suitable targets for the development of vaccines to control bovine babesiosis.

摘要

在整个生命周期中,巴贝虫寄生虫在哺乳动物宿主(在那里它们引起巴贝斯虫病)和蜱媒介之间交替。宿主之间的转换会产生不同的环境信号,这些信号影响基因表达模式,与寄生虫在生命阶段发生的形态和功能变化一致。此外,比较哺乳动物和蜱寄生虫阶段之间差异表达的基因模式可以为开发改进的控制方法提供线索。在此,我们升级了牛巴贝斯虫(一种牛血液寄生虫)的基因组组装,填补了 139 kbp 的缺口,并使用源自哺乳动物血液和蜱动阶段的 RNA-Seq 数据集来更新基因组注释。在最初注释的基因中,1,254 个需要结构变化,并且鉴定出 326 个新基因,与原始注释相比,预测的蛋白质组不同。接下来,使用 RNA-Seq 数据鉴定了在脊椎动物和节肢动物宿主中差异表达的 B. bovis 基因。在血液阶段,高达 300 倍的 28%的基因上调,而在蜱阶段的动阶段,高达 >19,000 倍的 26%的基因上调。因此,我们发现了差异表达的基因,这些基因可能发挥关键的生物学作用,并作为开发疫苗控制牛巴贝斯虫病的合适靶标。

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