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Isolation of Optically Targeted Single Bacteria by Application of Fluidic Force Microscopy to Aerobic Anoxygenic Phototrophs from the Phyllosphere

机译:通过应用流体力显微镜对来自毛圈的好氧产氧养分的光学目标单细菌的分离

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摘要

In their natural environment, bacteria often behave differently than they do under laboratory conditions. To gain insight into the physiology of bacteria in situ, dedicated approaches are required to monitor their adaptations and specific behaviors under environmental conditions. Optical microscopy is crucial for the observation of fundamental characteristics of bacteria, such as cell shape, size, and marker gene expression. Here, fluidic force microscopy (FluidFM) was exploited to isolate optically selected bacteria for subsequent identification and characterization. In this study, bacteriochlorophyll-producing bacteria, which can be visualized due to their characteristic fluorescence in the infrared range, were isolated from leaf washes. Bacterial communities from the phyllosphere were investigated because they harbor genes indicative of aerobic anoxygenic photosynthesis. Our data show that different species of Methylobacterium express their photosystem in planta, and they show a distinct pattern of bacteriochlorophyll production under laboratory conditions that is dependent on supplied carbon sources.
机译:在自然环境中,细菌的行为通常与实验室条件下的行为不同。为了深入了解原位细菌的生理,需要专门的方法来监测其在环境条件下的适应性和特定行为。光学显微镜对于观察细菌的基本特征(例如细胞形状,大小和标记基因表达)至关重要。在这里,流体显微镜(FluidFM)被用来分离光学选择的细菌,以用于随后的鉴定和表征。在这项研究中,从叶洗液中分离出产生细菌性叶绿素的细菌,由于其在红外范围内的特征性荧光,因此可以将其可视化。对来自叶圈的细菌群落进行了研究,因为它们具有指示有氧产氧光合作用的基因。我们的数据表明,不同种类的甲基杆菌在植物中表达其光系统,并且它们在实验室条件下显示出不同的细菌叶绿素生产模式,这取决于所提供的碳源。

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