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多杀巴斯德菌在铁限制条件下的基因表达

Pasteurella multocida gene expression in response to iron limitation.

作者信息

Paustian M L, May B J, Kapur V

机构信息

Department of Veterinary Pathobiology and Biomedical Genomics Center, University of Minnesota, St. Paul 55108, USA.

出版信息

Infect Immun. 2001 Jun;69(6):4109-15. doi: 10.1128/IAI.69.6.4109-4115.2001.

Abstract

Pasteurella multocida is the causative agent of a wide range of diseases in avian and mammalian hosts. Gene expression in response to low iron conditions was analyzed in P. multocida using whole-genome microarrays. The analysis shows that the expression of genes involved in energy metabolism and electron transport generally decreased 2.1- to 6-fold while that of genes used for iron binding and transport increased 2.1- to 7.7-fold in P. multocida during the first 2 h of growth under iron-limiting conditions compared with controls. Notably, 27% of the genes with significantly altered expression had no known function, illustrating the limitations of using publicly available databases to identify genes involved in microbial metabolism and pathogenesis. Taken together, the results of our investigations demonstrate the utility of whole-genome microarray analyses for the identification of genes with altered expression profiles during varying growth conditions and provide a framework for the detailed analysis of the molecular mechanisms of iron acquisition and metabolism in P. multocida and other gram-negative bacteria.

摘要

多杀性巴氏杆菌是禽类和哺乳动物宿主中多种疾病的病原体。利用全基因组微阵列分析了多杀性巴氏杆菌在低铁条件下的基因表达情况。分析表明,在铁限制条件下生长的最初2小时内,与对照相比,多杀性巴氏杆菌中参与能量代谢和电子传递的基因表达普遍下降了2.1至6倍,而用于铁结合和运输的基因表达则增加了2.1至7.7倍。值得注意的是,27%表达显著改变的基因没有已知功能,这说明了利用公开可用数据库来识别参与微生物代谢和发病机制的基因存在局限性。综上所述,我们的研究结果证明了全基因组微阵列分析在识别不同生长条件下表达谱改变的基因方面的实用性,并为详细分析多杀性巴氏杆菌和其他革兰氏阴性菌中铁获取和代谢的分子机制提供了框架。

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