Hsiao Nai-hua, Kirby Ralph
Department of Life Science, National Yang-Ming University, Beitou, Taipei, Taiwan.
Antonie Van Leeuwenhoek. 2009 Mar;95(3):189-206. doi: 10.1007/s10482-008-9302-7. Epub 2009 Jan 17.
Two component sensor-response regulator systems (TCSs) are very common in the genomes of the Streptomyces species that have been fully sequenced to date. It has been suggested that this large number is an evolutionary response to the variable environment that Streptomyces encounter in soil. Notwithstanding this, TCSs are also more common in the sequenced genomes of other Actinomycetales when these are compared to the genomes of most other eubacteria. In this study, we have used DNA/DNA genome microarray analysis to compare 14 Streptomyces species and one closely related genus to Streptomyces coelicolor in order to identify a core group of such systems. This core group is compared to the syntenous and non-syntenous TCSs present in the genome sequences of other Actinomycetales in order to separate the systems into those present in Actinomycetales in general, the Streptomyces specific systems and the species specific systems. Horizontal transfer does not seem to play a very important role in the evolution of the TCS complement analyzed in this study. However, cognate pairs do not necessarily seem to evolve at the same pace, which may indicate the evolutionary responses to environmental variation may be reflected differently in sequence changes within the two components of the TCSs. The overall analysis allowed subclassification of the orphan TCSs and the TCS cognate pairs and identification of possible targets for further study using gene knockouts, gene overexpression, reporter genes and yeast two hybrid analysis.
双组分传感-反应调节系统(TCSs)在迄今已完成全基因组测序的链霉菌物种基因组中非常常见。有人提出,如此大量的TCSs是链霉菌在土壤中所遇到的多变环境的一种进化反应。尽管如此,与大多数其他真细菌的基因组相比,TCSs在其他放线菌目已测序基因组中也更为常见。在本研究中,我们使用DNA/DNA基因组微阵列分析来比较14种链霉菌物种以及与天蓝色链霉菌亲缘关系密切的一个属,以便鉴定出这类系统的一个核心组。将这个核心组与其他放线菌目基因组序列中存在的同线和非同线TCSs进行比较,从而将这些系统分为一般存在于放线菌目中的系统、链霉菌特有的系统以及物种特有的系统。水平转移似乎在本研究中所分析的TCSs互补群的进化中并不起非常重要的作用。然而,同源对的进化速度似乎不一定相同,这可能表明对环境变化的进化反应在TCSs两个组分的序列变化中可能有不同的体现。总体分析允许对孤儿TCSs和TCS同源对进行亚分类,并鉴定出使用基因敲除、基因过表达、报告基因和酵母双杂交分析进行进一步研究的可能靶点。