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Microbial genomics, transcriptomics and proteomics: new discoveries in decomposition research using complementary methods

机译:微生物基因组学,转录组学和蛋白质组学:使用互补方法进行分解研究的新发现

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Molecular methods for the analysis of biomolecules have undergone rapid technological development in the last decade. The advent of next-generation sequencing methods and improvements in instrumental resolution enabled the analysis of complex transcriptome, proteome and metabolome data, as well as a detailed annotation of microbial genomes. The mechanisms of decomposition by model fungi have been described in unprecedented detail by the combination of genome sequencing, transcriptomics and proteomics. The increasing number of available genomes for fungi and bacteria shows that the genetic potential for decomposition of organic matter is widespread among taxonomically diverse microbial taxa, while expression studies document the importance of the regulation of expression in decomposition efficiency. Importantly, high-throughput methods of nucleic acid analysis used for the analysis of metagenomes and metatranscriptomes indicate the high diversity of decomposer communities in natural habitats and their taxonomic composition. Today, the metaproteomics of natural habitats is of interest. In combination with advanced analytical techniques to explore the products of decomposition and the accumulation of information on the genomes of environmentally relevant microorganisms, advanced methods in microbial ecophysiology should increase our understanding of the complex processes of organic matter transformation.
机译:在过去的十年中,用于分析生物分子的分子方法经历了快速的技术发展。下一代测序方法的出现和仪器分辨率的提高使得能够分析复杂的转录组,蛋白质组和代谢组数据,以及对微生物基因组进行详细注释。通过基因组测序,转录组学和蛋白质组学的结合,空前详细地描述了模型真菌的分解机理。真菌和细菌的可用基因组数目的增加表明,有机物分解的遗传潜力在分类学多样的微生物分类中广泛存在,而表达研究证明了调节表达对分解效率的重要性。重要的是,用于分析元基因组和元转录组的高通量核酸分析方法表明,自然栖息地中分解分子群落的多样性及其分类学组成。如今,自然栖息地的元蛋白质组学引起了人们的兴趣。结合先进的分析技术来探索环境相关微生物的基因组的分解产物和信息的积累,微生物生态生理学中的先进方法应使我们对有机物转化的复杂过程有更深入的了解。

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