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环境分离株中的基因功能分析:严格铁氧化细菌嗜铁钩端螺旋菌的固氮调节子

Gene function analysis in environmental isolates: the nif regulon of the strict iron oxidizing bacterium Leptospirillum ferrooxidans.

作者信息

Parro Victor, Moreno-Paz Mercedes

机构信息

Laboratorio de Ecología Molecular, Centro de Astrobiología, Instituto Nacional de Técnica Aeroespacial Esteban Terradas, Madrid, Spain.

出版信息

Proc Natl Acad Sci U S A. 2003 Jun 24;100(13):7883-8. doi: 10.1073/pnas.1230487100. Epub 2003 Jun 13.

Abstract

A random genomic library from an environmental isolate of the Gram-negative bacterium Leptospirillum ferrooxidans has been printed on a microarray. Gene expression analysis was carried out with total RNA extracted from L. ferrooxidans cultures in the presence or absence of ammonium as nitrogen source under aerobic conditions. Although practically nothing is known about the genome sequence of this bacterium, this approach allowed us the selection and sequencing of only those clones bearing genes that showed an altered expression pattern. By sequence comparison, we have identified most of the genes of nitrogen fixation regulon in L. ferrooxidans, like the nifHDKENX operon, encoding the structural components of Mo-Fe nitrogenase; nifSU-hesB-hscBA-fdx operon, for Fe-S cluster assembly; the amtB gene (ammonium transporter); modA (molybdenum ABC type transporter); some regulatory genes like ntrC, nifA (the specific activator of nif genes); or two glnB-like genes (encoding the PII regulatory protein). Our results show that shotgun DNA microarrays are very powerful tools to accomplish gene expression studies with environmental bacteria whose genome sequence is still unknown, avoiding the time and effort necessary for whole genome sequencing projects.

摘要

已将来自革兰氏阴性细菌氧化亚铁钩端螺旋体环境分离株的随机基因组文库打印在微阵列上。在有氧条件下,以总RNA为模板进行基因表达分析,该总RNA从以铵作为氮源或不以铵作为氮源的氧化亚铁钩端螺旋体培养物中提取。尽管实际上对该细菌的基因组序列知之甚少,但这种方法使我们能够仅选择和测序那些带有显示出表达模式改变的基因的克隆。通过序列比较,我们已经鉴定出氧化亚铁钩端螺旋体中固氮调节子的大多数基因,如编码钼铁固氮酶结构成分的nifHDKENX操纵子;用于铁硫簇组装的nifSU-hesB-hscBA-fdx操纵子;amtB基因(铵转运蛋白);modA(钼ABC型转运蛋白);一些调节基因如ntrC、nifA(nif基因的特异性激活剂);或两个类glnB基因(编码PII调节蛋白)。我们的结果表明,鸟枪法DNA微阵列是用于对基因组序列仍未知的环境细菌进行基因表达研究的非常强大的工具,避免了全基因组测序项目所需的时间和精力。

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