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首页> 外文期刊>Aquatic Microbial Ecology >Individual cell DNA synthesis within natural marine bacterial assemblages as detected by 'click' chemistry
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Individual cell DNA synthesis within natural marine bacterial assemblages as detected by 'click' chemistry

机译:通过“点击”化学检测到的天然海洋细菌集合体中的单个细胞DNA合成

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摘要

Individual cell growth rates enhance our understanding of microbial roles in regulating organic matter flux in marine and other aquatic systems. We devised a protocol to microscopically detect and quantify bacteria undergoing replication in seawater using the thymidine analog 5-ethynyl-2'-deoxyuridine (EdU), which becomes incorporated into bacterial DNA and is detected with a 'click' chemistry reaction in <1 h. Distinct EdU localization patterns were observed within individual labeled cells, e.g. some displayed 2 or more distinct EdU loci within a single DAPI-stained region, which likely indicated poleward migration of nascent DNA during the early phase of replication. Cell labeling ranged from 4.4 to 49%, comparable with cell labeling in parallel incubations for H-3-thymidine microautoradiography. Meanwhile, EdU signal intensities in cells ranged >3 orders of magnitude, wherein the most intensely labeled cells comprised most of a sample's sum community EdU signal, e.g. 26% of cells comprised 80% of the sum signal. This ability to rapidly detect and quantify signals in labeled DNA is an important step toward a robust approach for the determination of single-cell growth rates in natural assemblages and for linking growth rates with microscale biogeochemical dynamics
机译:单个细胞的生长速度增强了我们对微生物在调节海洋和其他水生系统中有机物通量中的作用的理解。我们设计了一个协议,以使用胸苷类似物5-乙炔基-2'-脱氧尿苷(EdU)显微镜检测和定量海水中正在复制的细菌,该细菌被掺入细菌DNA中,并在<1 h内通过“点击”化学反应进行检测。在单个标记的细胞中观察到不同的EdU定位模式,例如一些在单个DAPI染色区域内显示2个或更多不同的EdU基因座,这可能表明新生DNA在复制的早期阶段向极迁移。细胞标记的范围为4.4%至49%,与H-3-胸苷微放射自显影平行孵育中的细胞标记相当。同时,细胞中的EdU信号强度范围大于3个数量级,其中标记最紧密的细胞包括样品的总和社区EdU信号的大部分,例如EdU信号强度。 26%的单元格构成总信号的80%。快速检测和定量标记的DNA中信号的能力是朝着确定自然组合中单细胞生长速率以及将生长速率与微尺度生物地球化学动力学联系起来的可靠方法迈出的重要一步

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