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Progress in cultivation-independent phyllosphere microbiology

机译:不依赖栽培的叶球微生物学研究进展

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摘要

Most microorganisms of the phyllosphere are nonculturable in commonly used media and culture conditions, as are those in other natural environments. This review queries the reasons for their ‘noncultivability’ and assesses developments in phyllospere microbiology that have been achieved cultivation independently over the last 4 years. Analyses of total microbial communities have revealed a comprehensive microbial diversity. 16S rRNA gene amplicon sequencing and metagenomic sequencing were applied to investigate plant species, location and season as variables affecting the composition of these communities. In continuation to culture-based enzymatic and metabolic studies with individual isolates, metaproteogenomic approaches reveal a great potential to study the physiology of microbial communities in situ. Culture-independent microbiological technologies as well advances in plant genetics and biochemistry provide methodological preconditions for exploring the interactions between plants and their microbiome in the phyllosphere. Improving and combining cultivation and culture-independent techniques can contribute to a better understanding of the phyllosphere ecology. This is essential, for example, to avoid human–pathogenic bacteria in plant food.
机译:与其他自然环境一样,多数叶环微生物在常用的培养基和培养条件下均不可培养。这篇综述质疑了其“不可栽培性”的原因,并评估了近四年来已独立实现的phyllospere微生物学的发展。对总微生物群落的分析揭示了全面的微生物多样性。使用16S rRNA基因扩增子测序和宏基因组测序来研究植物种类,位置和季节,这些变量会影响这些群落的组成。在继续对单个分离物进行基于文化的酶促和代谢研究时,元蛋白质组学方法显示了在原位研究微生物群落生理学的巨大潜力。与文化无关的微生物技术以及植物遗传学和生物化学方面的进展为探索植物及其在叶层中的微生物组之间的相互作用提供了方法学前提。改进和结合栽培技术和与文化无关的技术可以有助于更好地了解叶际生态。例如,这对于避免植物性食品中的人为致病细菌至关重要。

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