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细菌生物信息学:发病机制与基因组

Bacterial bioinformatics: pathogenesis and the genome.

作者信息

Paine Kelly, Flower Darren R

机构信息

The Edward Jenner Institute for Vaccine Research, Newbury, Berkshire, United Kingdom.

出版信息

J Mol Microbiol Biotechnol. 2002 Jul;4(4):357-65.

Abstract

As the number of completed microbial genome sequences continues to grow, there is a pressing need for the exploitation of this wealth of data through a synergistic interaction between the well-established science of bacteriology and the emergent discipline of bioinformatics. Antibiotic resistance and pathogenicity in virulent bacteria has become an increasing problem, with even the strongest drugs useless against some species, such as multi-drug resistant Enterococcus faecium and Mycobacterium tuberculosis. The global spread of Human Immunodeficiency Virus (HIV) and Acquired Immune Deficiency Syndrome (AIDS) has contributed to the re-emergence of tuberculosis and the threat from new and emergent diseases. To address these problems, bacterial pathogenicity requires redefinition as Koch's postulates become obsolete. This review discusses how the use of bacterial genomic information, and the in silico tools available at present, may aid in determining the definition of a current pathogen. The combination of both fields should provide a rapid and efficient way of assisting in the future development of antimicrobial therapies.

摘要

随着已完成测序的微生物基因组数量不断增加,迫切需要通过成熟的细菌学与新兴的生物信息学学科之间的协同互动来利用这些丰富的数据。致病细菌中的抗生素耐药性和致病性已成为日益严重的问题,即使是最强效的药物对某些菌种也毫无作用,如多重耐药的粪肠球菌和结核分枝杆菌。人类免疫缺陷病毒(HIV)和获得性免疫缺陷综合征(AIDS)的全球传播导致了结核病的再度出现以及新出现疾病带来的威胁。为解决这些问题,随着科赫法则过时,细菌致病性需要重新定义。本综述讨论了细菌基因组信息的使用以及目前可用的计算机工具如何有助于确定当前病原体的定义。这两个领域的结合应能提供一种快速有效的方式来协助未来抗菌疗法的发展。

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