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用于土壤样本多组学分析的MPLEx协议

The MPLEx Protocol for Multi-omic Analyses of Soil Samples.

作者信息

Nicora Carrie D, Burnum-Johnson Kristin E, Nakayasu Ernesto S, Casey Cameron P, White Richard A, Roy Chowdhury Taniya, Kyle Jennifer E, Kim Young-Mo, Smith Richard D, Metz Thomas O, Jansson Janet K, Baker Erin S

机构信息

Biological Sciences Division, Pacific Northwest National Laboratory.

Biological Sciences Division, Pacific Northwest National Laboratory;

出版信息

J Vis Exp. 2018 May 30(135):57343. doi: 10.3791/57343.

Abstract

Mass spectrometry (MS)-based integrated metaproteomic, metabolomic, and lipidomic (multi-omic) studies are transforming our ability to understand and characterize microbial communities in environmental and biological systems. These measurements are even enabling enhanced analyses of complex soil microbial communities, which are the most complex microbial systems known to date. Multi-omic analyses, however, do have sample preparation challenges, since separate extractions are typically needed for each omic study, thereby greatly amplifying the preparation time and amount of sample required. To address this limitation, a 3-in-1 method for the simultaneous extraction of metabolites, proteins, and lipids (MPLEx) from the same soil sample was created by adapting a solvent-based approach. This MPLEx protocol has proven to be both simple and robust for many sample types, even when utilized for limited quantities of complex soil samples. The MPLEx method also greatly enabled the rapid multi-omic measurements needed to gain a better understanding of the members of each microbial community, while evaluating the changes taking place upon biological and environmental perturbations.

摘要

基于质谱(MS)的综合宏蛋白质组学、代谢组学和脂质组学(多组学)研究正在改变我们理解和表征环境及生物系统中微生物群落的能力。这些测量甚至能够加强对复杂土壤微生物群落的分析,而复杂土壤微生物群落是迄今为止已知的最复杂的微生物系统。然而,多组学分析确实存在样品制备方面的挑战,因为每项组学研究通常都需要单独提取,从而极大地延长了制备时间并增加了所需样品的量。为了解决这一限制,通过采用基于溶剂的方法,创建了一种从同一土壤样品中同时提取代谢物、蛋白质和脂质的三合一方法(MPLEx)。事实证明,这种MPLEx方案对于许多样品类型而言既简单又可靠,即使用于有限量的复杂土壤样品时也是如此。MPLEx方法还极大地实现了快速多组学测量,有助于更好地了解每个微生物群落的成员,同时评估生物和环境扰动时发生的变化。

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