Using Genomic Information to Understand Leishmania Biology

J. S. Toledo, E. Vasconcelos, T. Ferreira, A. Cruz
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引用次数: 10

Abstract

The genomes of different species of Leishmania have been deciphered in recent years. We learned that the ge- nome content and organization of Leishmania major, Leishmania braziliensis and Leishmania infantum are highly similar and annotation of these genomes revealed that there are few species-specific genes. Association of genome information with reverse and forward genetics approaches allows posing and answering relevant biological questions in a novel way. In this article we briefly present an overview of relevant aspects of genome organization of the Leishmania and how this information can be used to improve our understanding of the biology, pathogenesis, host-parasite interaction issues. We present some of the most useful bioinformatics tools/softwares, which are currently available and how each one of them can be used to explore the genome supporting a wide variety of queries. We included other computational tools which al- low integrating the genome data with biochemical pathways revealing metabolic and regulatory networks to be investi- gated. Finally, we discuss reverse and forward genetic tools available and finalize with considerations on established and novel high-throughput approaches at the genome, transcriptome and proteome levels.
利用基因组信息了解利什曼原虫生物学
近年来,不同种类的利什曼原虫的基因组已经被破译。我们了解到,大利什曼原虫、巴西利什曼原虫和幼利什曼原虫的基因组内容和组织结构高度相似,这些基因组的注释显示它们几乎没有物种特异性基因。基因组信息与反向和正向遗传学方法的关联允许以一种新颖的方式提出和回答相关的生物学问题。在这篇文章中,我们简要介绍了利什曼原虫基因组组织的相关方面,以及如何利用这些信息来提高我们对生物学、发病机制、宿主-寄生虫相互作用问题的理解。我们介绍了一些最有用的生物信息学工具/软件,这些工具/软件目前可用,以及如何使用它们中的每一个来探索支持各种查询的基因组。我们纳入了其他计算工具,这些工具可以将基因组数据与揭示代谢和调节网络的生化途径整合起来。最后,我们讨论了可用的反向和正向遗传工具,并最终考虑了在基因组,转录组和蛋白质组水平上建立和新的高通量方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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