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首页> 外文期刊>Parasite Immunology >Functional genomics of trypanosomatids. (Special Issue: Parasite genomics and post-genomic activities: 21st century resources for the parasite immunologist.)
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Functional genomics of trypanosomatids. (Special Issue: Parasite genomics and post-genomic activities: 21st century resources for the parasite immunologist.)

机译:锥虫功能基因组学。 (特刊:寄生虫基因组学和后基因组活动:21世纪寄生虫免疫学家的资源。)

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摘要

The decoding of the Tritryp reference genomes nearly 7 years ago provided a first peek into the biology of pathogenic trypanosomatids and a blueprint that has paved the way for genome-wide studies. Although 60-70% of the predicted protein coding genes in Trypanosoma brucei, Trypanosoma cruzi and Leishmania major remain unannotated, the functional genomics landscape is rapidly changing. Facilitated by the advent of next-generation sequencing technologies, improved structural and functional annotation and genes and their products are emerging. Information is also growing for the interactions between cellular components as transcriptomes, regulatory networks and metabolomes are characterized, ushering in a new era of systems biology. Simultaneously, the launch of comparative sequencing of multiple strains of kinetoplastids will finally lead to the investigation of a vast, yet to be explored, evolutionary and pathogenomic space.
机译:Tritrip 参考基因组的解码将近7年前,使人们首次了解了病原性锥虫的生物学特性,并为全基因组研究铺平了道路。尽管布鲁氏锥虫,克氏锥虫和大利什曼原虫的预测蛋白编码基因中有60-70%仍未注释,但功能基因组学领域迅速发展变化。下一代测序技术的出现促进了结构和功能注释以及基因及其产物的出现。随着转录组,调节网络和代谢组的特征化,有关细胞成分之间相互作用的信息也在不断增长,从而开启了系统生物学的新纪元。同时,多种动蛋白体菌株的比较测序的启动将最终导致对广阔的,尚未探索的进化和致病性空间的研究。

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