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Metaproteomic and metagenomic analyses of defined oceanic microbial populations using microwave cell fixation and flow cytometric sorting

机译:使用微波细胞固定和流式细胞仪分选技术对确定的海洋微生物种群进行蛋白质组学和宏基因组学分析

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摘要

A major obstacle in the molecular investigation of natural, especially oceanic, microbial cells is their adequate preservation for further land-based molecular analyses. Here, we examined the use of microwaves for cell fixation before high-speed flow cytometric sorting to define the metaproteomes and metagenomes of key microbial populations. The microwave fixation procedure was established using cultures of Synechococcus cyanobacteria, the photosynthetic eukaryote Micromonas pusilla and the gammaproteobacterium Halomonas variabilis. Shotgun proteomic analyses showed that the profile of microwave-fixed and -unfixed Synechococcus sp. WH8102 cells was the same, and hence proteome identification of microwave-fixed sorted cells by nanoLC-MS/MS is possible. Microwave-fixed flow-sorted Synechococcus cells can also be successfully used for whole-genome amplification and fosmid library construction. We then carried out successful metaproteomic and metagenomic analyses of microwave-fixed Synechococcus cells flow sorted from concentrates of microbial cells, collected in the North Atlantic Ocean. Thus, the microwave fixation procedure developed appears to be useful for molecular studies of microbial populations in aquatic ecosystems.
机译:对天然(尤其是海洋)微生物细胞进行分子研究的主要障碍是它们的保存能力不足,无法进行进一步的陆基分子分析。在这里,我们检查了微波在高速流式细胞仪分选之前用于细胞固定的用途,以定义关键微生物种群的元蛋白质组和元基因组。微波固定程序是建立在蓝藻细菌,光合真核微单胞菌和γ-变形杆菌Halomonas variabilis的培养物中的。弹枪蛋白质组学分析表明,微波固定和未固定的Syechococcus sp。的轮廓。 WH8102细胞是相同的,因此可以通过nanoLC-MS / MS对微波固定的分选细胞进行蛋白质组鉴定。微波固定流动分选的Synechococcus细胞也可成功用于全基因组扩增和fosmid文库的构建。然后,我们对收集在北大西洋的微生物细胞浓缩物中分选出的微波固定的Synechococcus细胞进行了成功的蛋白质组学和宏基因组学分析。因此,开发的微波固定程序似乎对水生生态系统中微生物种群的分子研究很有用。

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