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Genome-assisted analysis of dissimilatory metal-reducing bacteria

机译:基因组辅助分析异化金属还原细菌

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The availability of whole genome sequences for Shewanella oneidensis and Geobacter sulfurreducens has provided numerous new biological insights into the function of these model dissimilatory metal-reducing bacteria. Many of these findings, including the identification of a high number of c-type cytochromes in both organisms, have resulted from comparative genomic analyses, and several have been experimentally confirmed. These genome sequences have also aided the identification of genes important for the reduction of metal ions and other electron acceptors utilized during anaerobic growth, by facilitating the identification of genes disrupted by random insertions. Technologies for assaying global expression patterns for genes and proteins have also been employed, but their application has been limited mainly to the analysis of the role of global regulatory genes and to identifying genes expressed or repressed in response to specific electron acceptors. It is anticipated that details of the mechanisms of metal ion respiration, and metabolism in general, will eventually be revealed by comprehensive, systems-level analyses enabled by functional genomics data.
机译:沙瓦氏假单胞菌和减少硫杆菌的全基因组序列的可用性为这些模型异化金属还原细菌的功能提供了许多新的生物学见解。这些发现中的许多发现,包括在两种生物中都鉴定出大量的c型细胞色素,是通过比较基因组分析得出的,其中一些已通过实验证实。这些基因组序列还有助于鉴定随机插入破坏的基因,从而有助于鉴定对于减少厌氧生长过程中利用的金属离子和其他电子受体而言重要的基因。也已经采用了用于分析基因和蛋白质的全局表达模式的技术,但是它们的应用主要限于分析全局调节基因的作用以及鉴定响应于特定电子受体表达或抑制的基因。预计最终将通过功能基因组学数据进行的全面的系统级分析来揭示金属离子呼吸和总体代谢机制的细节。

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