Chan Voon Loong
Department of Medical Genetics and Microbiology, University of Toronto, Toronto, ON M5S 1A8, Canada.
Pediatr Res. 2003 Jul;54(1):1-7. doi: 10.1203/01.PDR.0000066622.02736.A8. Epub 2003 Mar 19.
The genome sequencing approach has proved to be highly effective and invaluable for gaining an insight on structure of bacteria genomes and the biology and evolution of bacteria. The diversity of bacteria genomes is beyond expectation. Gaining a full understanding of the biology and pathogenic mechanisms of these pathogens will be a major task because on an average only approximately 69% of the encoded proteins in each genome have known functions. Genome sequence analyses have identified novel putative virulence genes, vaccine candidates, targets for antibacterial drugs, and specific diagnostic probes. Microarray technology that makes use of the genomic sequences of human and bacterial pathogens will be a major tool for gaining full understanding of the complexity of host-pathogen interactions and mechanisms of pathogenesis.
基因组测序方法已被证明在深入了解细菌基因组结构以及细菌生物学和进化方面非常有效且具有重要价值。细菌基因组的多样性超乎想象。全面了解这些病原体的生物学和致病机制将是一项重大任务,因为平均每个基因组中只有约69%的编码蛋白具有已知功能。基因组序列分析已鉴定出新型假定毒力基因、候选疫苗、抗菌药物靶点和特异性诊断探针。利用人类和细菌病原体基因组序列的微阵列技术将成为全面了解宿主 - 病原体相互作用复杂性和致病机制的主要工具。