Rüberg Silvia, Tian Zhe-Xian, Krol Elizaveta, Linke Burkhard, Meyer Folker, Wang Yiping, Pühler Alfred, Weidner Stefan, Becker Anke
Lehrstuhl für Genetik, Universität Bielefeld, Universitätsstrasse 25, D-33615 Bielefeld, Germany.
J Biotechnol. 2003 Dec 19;106(2-3):255-68. doi: 10.1016/j.jbiotec.2003.08.005.
Based on the complete Sinorhizobium meliloti genome sequence we established DNA microarrays as a comprehensive tool for systematic genome-wide gene expression analysis in S. meliloti 1021. For these PCR fragment-based microarrays, called Sm6kPCR, a collection of probes for the 6207 predicted protein-coding genes consisting of 6046 gene-specific PCR fragments and 161 70 mer oligonucleotides was arrayed in high density on glass slides. To obtain these PCR fragments primer pairs were designed to amplify internal gene-specific DNA fragments of 80-350 bp. Additionally, these primers were characterized by a 5' extension that allowed for reamplification using standard primers after the first amplification employing the specific primers. In order to ascertain the quality of the Sm6kPCR microarrays and to validate gene expression studies in S. meliloti parallel hybridizations based on RNA samples obtained from cells cultured under identical conditions were performed. In addition, gene expression in S. meliloti in response to an osmotic upshift imposed by the addition of 0.38 M NaCl was monitored. 137 genes were identified showing significant changes in gene expression resulting from the osmotic upshift. From these genes 52 were induced and 85 genes were repressed. Among the genes displaying different RNA levels some functional groups could be identified that are particularly remarkable. Repression was observed for 8 genes related to motility and chemotaxis, 7 genes encoding amino acid biosynthesis enzymes and 15 genes involved in iron uptake whereas 14 genes involved in transport of small molecules and 4 genes related to polysaccharide biosynthesis were induced.
基于苜蓿中华根瘤菌完整的基因组序列,我们构建了DNA微阵列,作为对苜蓿中华根瘤菌1021进行全基因组范围系统基因表达分析的综合工具。对于这些基于PCR片段的微阵列(称为Sm6kPCR),将由6046个基因特异性PCR片段和161个70聚体寡核苷酸组成的、针对6207个预测蛋白质编码基因的一组探针高密度排列在载玻片上。为了获得这些PCR片段,设计了引物对以扩增80 - 350 bp的内部基因特异性DNA片段。此外,这些引物的特征在于5'端延伸,使得在使用特异性引物进行首次扩增后,能够使用标准引物进行再扩增。为了确定Sm6kPCR微阵列的质量,并验证苜蓿中华根瘤菌中的基因表达研究,基于从在相同条件下培养的细胞中获得的RNA样本进行了平行杂交。此外,监测了苜蓿中华根瘤菌对添加0.38 M NaCl引起的渗透压升高的反应中的基因表达。鉴定出137个基因显示出因渗透压升高导致的基因表达显著变化。其中52个基因被诱导,85个基因被抑制。在显示不同RNA水平的基因中,可以鉴定出一些特别显著的功能组。观察到与运动性和趋化性相关的8个基因、编码氨基酸生物合成酶的7个基因以及参与铁摄取的15个基因受到抑制,而参与小分子运输的14个基因和与多糖生物合成相关的4个基因被诱导。