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原虫巴贝斯虫属的比较和功能基因组学研究,重点关注入侵和逸出过程。

Comparative and functional genomics of the protozoan parasite Babesia divergens highlighting the invasion and egress processes.

机构信息

Laboratorio de Referencia e Investigación en Parasitología, Centro Nacional de Microbiología, ISCIII Majadahonda, Madrid, Spain.

Unidad Universitaria de Secuenciación Masiva y Bioinformática, Instituto de Biotecnología, Cuernavaca, México.

出版信息

PLoS Negl Trop Dis. 2019 Aug 19;13(8):e0007680. doi: 10.1371/journal.pntd.0007680. eCollection 2019 Aug.

Abstract

Babesiosis is considered an emerging disease because its incidence has significantly increased in the last 30 years, providing evidence of the expanding range of this rare but potentially life-threatening zoonotic disease. Babesia divergens is a causative agent of babesiosis in humans and cattle in Europe. The recently sequenced genome of B. divergens revealed over 3,741 protein coding-genes and the 10.7-Mb high-quality draft become the first reference tool to study the genome structure of B. divergens. Now, by exploiting this sequence data and using new computational tools and assembly strategies, we have significantly improved the quality of the B. divergens genome. The new assembly shows better continuity and has a higher correspondence to B. bovis chromosomes. Moreover, we present a differential expression analysis using RNA sequencing of the two different stages of the asexual lifecycle of B. divergens: the free merozoite capable of invading erythrocytes and the intraerythrocytic parasite stage that remains within the erythrocyte until egress. Comparison of mRNA levels of both stages identified 1,441 differentially expressed genes. From these, around half were upregulated and the other half downregulated in the intraerythrocytic stage. Orthogonal validation by real-time quantitative reverse transcription PCR confirmed the differential expression. A moderately increased expression level of genes, putatively involved in the invasion and egress processes, were revealed in the intraerythrocytic stage compared with the free merozoite. On the basis of these results and in the absence of molecular models of invasion and egress for B. divergens, we have proposed the identified genes as putative molecular players in the invasion and egress processes. Our results contribute to an understanding of key parasitic strategies and pathogenesis and could be a valuable genomic resource to exploit for the design of diagnostic methods, drugs and vaccines to improve the control of babesiosis.

摘要

巴贝斯虫病被认为是一种新兴疾病,因为在过去 30 年中,其发病率显著增加,这表明这种罕见但可能危及生命的人畜共患疾病的范围正在扩大。伯氏巴贝斯虫是欧洲人类和牛巴贝斯虫病的病原体。最近对 B. divergens 的基因组测序揭示了超过 3741 个编码蛋白的基因,10.7Mb 的高质量草图成为研究 B. divergens 基因组结构的第一个参考工具。现在,通过利用这些序列数据和使用新的计算工具和组装策略,我们显著提高了 B. divergens 基因组的质量。新的组装显示出更好的连续性,并且与 B. bovis 染色体的对应性更高。此外,我们使用 B. divergens 无性生命周期的两个不同阶段的 RNA 测序进行了差异表达分析:能够侵入红细胞的自由裂殖子和仍然在红细胞内的红细胞内寄生虫阶段,直到逸出。比较两个阶段的 mRNA 水平,鉴定出 1441 个差异表达基因。其中,约一半在红细胞内阶段上调,另一半下调。通过实时定量逆转录 PCR 进行的正交验证证实了差异表达。与自由裂殖子相比,红细胞内阶段中,推测与入侵和逸出过程相关的基因的表达水平适度增加。基于这些结果,并且在缺乏 B. divergens 入侵和逸出的分子模型的情况下,我们提出了鉴定的基因作为入侵和逸出过程中的推定分子参与者。我们的研究结果有助于理解关键的寄生策略和发病机制,并可能成为设计诊断方法、药物和疫苗以改善巴贝斯虫病控制的宝贵基因组资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f45b/6715253/2dd485ebcf1f/pntd.0007680.g001.jpg

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