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Isolation of functional single cells from environments using a micromanipulator: application to study denitrifying bacteria

机译:使用微操纵器从环境中分离功能性单细胞:用于研究反硝化细菌的应用

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We developed a novel method to isolate functionally active single cells from environmental samples and named it the functional single-cell (FSC) isolation method. This method is based on a combination of substrate-responsive direct viable counts, live-cell staining with 5-carboxyfluorescein diacetate acetoxymethyl ester, and micromanipulation followed by cultivation in a medium. To evaluate this method, we applied it to study a denitrifying community in rice paddy soil. Similar denitrifier counts were obtained by the conventional most probable number analysis and our FSC isolation method. Using the FSC isolation method, 37 denitrifying bacteria were isolated, some of which harbored copper-containing nitrite reductase gene (nirK). The 16S rRNA gene analysis showed that members belonging to the genera Azospirillum and Ochrobactrum may be the major denitrifiers in the rice paddy soil. These results indicate that the FSC isolation method is a useful tool to obtain functionally active single cells from environmental samples. Keywords Single-cell isolation - Micromanipulation - Direct viable counts - Live-cell staining - Denitrification - Rice paddy soil
机译:我们开发了一种从环境样品中分离功能活跃的单细胞的新方法,并将其命名为功能性单细胞(FSC)分离方法。该方法基于底物响应的直接可行计数,5-羧基荧光素二乙酸酯乙酰氧基甲基酯的活细胞染色和显微操作的组合,随后在培养基中培养。为了评估该方法,我们将其用于研究稻田土壤中的反硝化群落。通过常规的最可能的数量分析和我们的FSC分离方法,可以获得相似的反硝化剂计数。使用FSC分离方法,分离出37种反硝化细菌,其中一些细菌含有含铜的亚硝酸盐还原酶基因(nirK)。 16S rRNA基因分析表明,偶氮螺旋菌属和O骨属的成员可能是稻田土壤中的主要反硝化剂。这些结果表明,FSC分离方法是从环境样品中获得功能活跃的单细胞的有用工具。关键词单细胞分离-显微操作-直接可行计数-活细胞染色-反硝化-水稻土

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