Leibniz-Institute of Freshwater Ecology and Inland Fisheries, Alte Fischerhütte 2, 16775 Stechlin, Germany Potsdam University, Institute for Biochemistry and Biology, Am Neuen Palais 10, 14469 Potsdam, Germany.
Environ Microbiol Rep. 2012 Oct;4(5):491-7. doi: 10.1111/j.1758-2229.2012.00350.x. Epub 2012 May 7.
Freshwater Actinobacteria are an important and dominant group of bacterioplankton in most temperate freshwater systems. Recently, metagenomic studies discovered rhodopsin-like protein-coding sequences present in Actinobacteria which could be a decisive hint for their success in freshwater ecosystems. We analysed the diversity of actinorhodopsin (ActR) in Lake Stechlin (northern Germany) and assessed the actR expression profile during a diurnal cycle. We obtained 85 positive actR clones which could be subsequently grouped to 17 operational taxonomic units assuming a 90% sequence similarity. The phylogenetic analysis points to a close relationship of all obtained sequences to the acI lineage of Actinobacteria, forming six independent clusters. For the first time, we followed in situ transcription of actR in Lake Stechlin revealing a rather constitutive circadian gene expression. For analysing in situ expression patterns of functional genes in aquatic ecosystems, such as actR, we invented a new in situ filtration and fixation sampler (IFFS). The IFFS enables the representative investigation of microbial transcriptomes in any aquatic ecosystem at all water depths. The IFFS sampler is simple and inexpensive, and we provide all engineering plans for an easy rebuild. Consequently, our IFFS is suitable to reliably study expression of any known functional gene of any aquatic microorganism.
淡水放线菌是大多数温带淡水系统中细菌浮游生物的一个重要和主要群体。最近,宏基因组学研究发现放线菌中存在类视紫红质蛋白编码序列,这可能是它们在淡水生态系统中成功的决定性暗示。我们分析了德国北部施特丁湖(Lake Stechlin)中放线菌的类视紫红质(ActR)多样性,并评估了昼夜周期中 actR 的表达谱。我们获得了 85 个阳性 actR 克隆,随后可以将其分组为 17 个操作分类单元,假设序列相似度为 90%。系统发育分析表明,所有获得的序列与放线菌的 acI 谱系密切相关,形成了六个独立的聚类。这是我们首次在 Stechlin 湖中跟踪 actR 的原位转录,揭示了一种相当组成性的昼夜基因表达。为了分析水生生态系统中功能基因(如 actR)的原位表达模式,我们发明了一种新的原位过滤和固定采样器(IFFS)。IFFS 能够在任何水深的任何水生生态系统中代表地研究微生物转录组。IFFS 采样器简单且价格低廉,我们提供了所有工程设计图,以便轻松重建。因此,我们的 IFFS 适合可靠地研究任何已知水生微生物的任何功能基因的表达。