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Microbial ecology in the age of genomics and metagenomics: concepts, tools, and recent advances

机译:基因组学和宏基因组学时代的微生物生态学:概念,工具和最新进展

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Microbial ecology examines the diversity and activity of micro-organisms in Earth's biosphere. In the last 20 years, the application of genomics tools have revolutionized microbial ecological studies and drastically expanded our view on the previously underappreciated microbial world. This review first introduces the basic concepts in microbial ecology and the main genomics methods that have been used to examine natural microbial populations and communities. In the ensuing three specific sections, the applications of the genomics in microbial ecological research are highlighted. The first describes the widespread application of multilocus sequence typing and representational difference analysis in studying genetic variation within microbial species. Such investigations have identified that migration, horizontal gene transfer and recombination are common in natural microbial populations and that microbial strains can be highly variable in genome size and gene content. The second section highlights and summarizes the use of four specific genomics methods (phylogenetic analysis of ribosomal RNA, DNA-DNA re-association kinetics, metagenomics, and micro-arrays) in analysing the diversity and potential activity of microbial populations and communities from a variety of terrestrial and aquatic environments. Such analyses have identified many unexpected phylogenetic lineages in viruses, bacteria, archaea, and microbial eukaryotes. Functional analyses of environmental DNA also revealed highly prevalent, but previously unknown, metabolic processes in natural microbial communities. In the third section, the ecological implications of sequenced microbial genomes are briefly discussed. Comparative analyses of prokaryotic genomic sequences suggest the importance of ecology in determining microbial genome size and gene content. The significant variability in genome size and gene content among strains and species of prokaryotes indicate the highly fluid nature of prokaryotic genomes, a result consistent with those from multilocus sequence typing and representational difference analyses. The integration of various levels of ecological analyses coupled to the application and further development of high throughput technologies are accelerating the pace of discovery in microbial ecology.
机译:微生物生态学研究了地球生物圈中微生物的多样性和活性。在过去的20年中,基因组学工具的应用彻底改变了微生物生态学研究,并极大地扩展了我们对以前未被充分认识的微生物世界的看法。这篇综述首先介绍了微生物生态学的基本概念以及用于检查自然微生物种群和群落的主要基因组学方法。在随后的三个具体部分中,着重介绍了基因组学在微生物生态学研究中的应用。第一个描述了多基因座序列分型和代表性差异分析在研究微生物物种内遗传变异中的广泛应用。此类研究已经确定,迁移,水平基因转移和重组在天然微生物种群中很常见,并且微生物菌株的基因组大小和基因含量可能高度可变。第二部分重点介绍并总结了四种特定的基因组学方法(核糖体RNA的系统发育分析,DNA-DNA重新关联动力学,宏基因组学和微阵列)在分析各种微生物种群和群落的多样性和潜在活性时的用途。陆地和水生环境。此类分析已经确定了病毒,细菌,古细菌和微生物真核生物中许多出乎意料的系统发生谱系。对环境DNA的功能分析还揭示了天然微生物群落中高度普遍但以前未知的代谢过程。在第三部分中,简要讨论了测序微生物基因组的生态意义。对原核基因组序列的比较分析表明,生态学对于确定微生物基因组大小和基因含量至关重要。在原核生物的菌株和物种之间,基因组大小和基因含量的显着差异表明原核生物基因组具有高度的流动性,这一结果与多基因座序列分型和代表性差异分析的结果一致。各种级别的生态分析的集成以及高通量技术的应用和进一步发展,正在加快微生物生态学的发现速度。

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