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引用次数: 0
摘要
细菌裂解是生物测定中的一个关键步骤,也是各种基因组生物测定前提取基因组材料的预处理。这些检测方法可用于微生物分析、鉴定或定量。在环境监测领域,有效管理微生物环境至关重要,例如存在固氮菌的土壤或藻类大量繁殖的湖泊和河流。为了成功实现微生物检测和环境监测,我们探索了现有的各种细菌裂解技术。首先,我们讨论了化学和物理细菌裂解的一般技术,这些技术已被优化并集成到商业 DNA 提取试剂盒(目前细菌裂解的黄金标准)中。接下来,我们将介绍裂解技术的最新进展,特别是在快速、便携和现场实施方面,因为传统的 DNA 提取试剂盒可能会耗费时间或不切实际。最后,我们简要概述了专为细菌细胞裂解设计的便携式设备和系统的发展情况。这篇细菌裂解技术研究综述将改进环境微生物学和生物技术领域的分析方法。
Recent advances in bacterial lysis techniques for environmental monitoring: A review
Bacterial lysis is a critical step in bioassays and serves as a pretreatment to extract genomic material before various genomic bioassays. These assays are used for microbial profiling, identification, or quantification. In the realm of environmental monitoring, the effective management of microbial environments, such as soil with nitrogen-fixing bacteria or lakes and rivers with algal blooms, is crucial. To achieve successful microbial detection and environmental monitoring, we explored various existing bacterial lysis techniques. Initially, we discuss the general techniques for chemical and physical bacterial lysis that have been optimized and integrated into commercial DNA extraction kits, the current gold standard for bacterial lysis. Next, we introduce recent advancements in lysis technologies, particularly in the context of rapid, portable, and on-site implementation, where traditional DNA extraction kits may be time consuming or impractical. Finally, we provide a concise overview of developments in portable devices and systems designed for bacterial cell lysis. This comprehensive review of the bacterial lysis techniques research will improve analytical methods in environmental microbiology and biotechnology.
期刊介绍:
The Microchemical Journal is a peer reviewed journal devoted to all aspects and phases of analytical chemistry and chemical analysis. The Microchemical Journal publishes articles which are at the forefront of modern analytical chemistry and cover innovations in the techniques to the finest possible limits. This includes fundamental aspects, instrumentation, new developments, innovative and novel methods and applications including environmental and clinical field.
Traditional classical analytical methods such as spectrophotometry and titrimetry as well as established instrumentation methods such as flame and graphite furnace atomic absorption spectrometry, gas chromatography, and modified glassy or carbon electrode electrochemical methods will be considered, provided they show significant improvements and novelty compared to the established methods.