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Testing a dual-fluorescence assay to monitor the viability of filamentous cyanobacteria

机译:测试双重荧光测定法以监测丝状蓝细菌的生存能力

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Filamentous cyanobacteria are currently being engineered to produce long-chain organic compounds, including 3rd generation biofuels. Because of their filamentous morphology, standard methods to quantify viability (e.g., plate counts) are not possible. This study investigated a dual-fluorescence assay based upon the LIVE/DEAD (R) BacLight (TM) Bacterial Viability Kit to quantify the percent viability of filamentous cyanobacteria using a microplate reader in a high throughput 96-well plate format. The manufacturer's protocol calls for an optical density normalization step to equalize the numbers of viable and non-viable cells used to generate calibration curves. Unfortunately, the isopropanol treatment used to generate non-viable cells released a blue pigment that altered absorbance readings of the non-viable cell solution, resulting in an inaccurate calibration curve. Thus we omitted this optical density normalization step, and carefully divided cell cultures into two equal fractions before the isopropanol treatment. While the resulting calibration curves had relatively high correlation coefficients, their use in various experiments resulted in viability estimates ranging from below 0% to far above 100%. We traced this to the apparent inaccuracy of the propidium iodide (PI) dye that was to stain only nonviable cells. Through further analysis via microplate reader, as well as confocal and wide-field epi-fluorescence microscopy, we observed non-specific binding of PI in viable filamentous cyanobacteria. While PI will not work for filamentous cyanobacteria, it is possible that other fluorochrome dyes could be used to selectively stain non-viable cells. This will be essential in future studies for screening mutants and optimizing photobioreactor system performance for filamentous cyanobacteria. (C) 2015 Elsevier B.V. All rights reserved.
机译:目前正在设计丝状蓝细菌,以生产长链有机化合物,包括第三代生物燃料。由于其呈丝状形态,因此无法量化生存力的标准方法(例如,板数)。这项研究研究了基于LIVE / DEAD BacLight TM细菌生存力试剂盒的双重荧光测定法,以使用高通量96孔板形式的微孔板读数器定量丝状蓝细菌的生存力百分比。制造商的协议要求进行光密度归一化步骤,以均衡用于生成校准曲线的活细胞和非活细胞的数量。不幸的是,用于产生非活细胞的异丙醇处理释放出蓝色颜料,该蓝色颜料改变了非活细胞溶液的吸光度读数,导致校准曲线不准确。因此,我们省略了该光密度归一化步骤,并在异丙醇处理之前将细胞培养物小心地分为两个相等的部分。尽管所得的校准曲线具有较高的相关系数,但在各种实验中使用它们可得出的生存力估计值范围从低于0%到远远高于100%。我们将此归结为碘化丙啶(PI)染料的明显不准确性,该染料仅对不存活的细胞染色。通过酶标仪的进一步分析,以及共聚焦和宽视野落射荧光显微镜,我们观察到了在活的丝状蓝细菌中PI的非特异性结合。尽管PI不适用于丝状蓝细菌,但其他荧光染料也可能用于选择性染色非存活细胞。这对于筛选突变体和优化用于丝状蓝细菌的光生物反应器系统性能的未来研究至关重要。 (C)2015 Elsevier B.V.保留所有权利。

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