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New insights into the structure and function of phyllosphere microbiota through high-throughput molecular approaches

机译:通过高通量分子方法对叶球菌群结构和功能的新见解

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摘要

The phyllosphere is an ecologically and economically important ecosystem that hosts a large and diverse microbial community. Phyllosphere microbiota play a critical role in protecting plants from diseases as well as promoting their growth by various mechanisms. There are serious gaps in our understanding of how and why microbiota composition varies across spatial and temporal scales, the ecology of leaf surface colonizers and their interactions with their host, and the genetic adaptations that enable phyllosphere survival of microorganisms. These gaps are due in large part to past technical limitations, as earlier studies were restricted to the study of culturable bacteria only and used low-throughput molecular techniques to describe community structure and function. The availability of high-throughput and cost-effective molecular technologies is changing the field of phyllosphere microbiology, enabling researchers to begin to address the dynamics and composition of the phyllosphere microbiota across a large number of samples with high, in-depth coverage. Here, we discuss and connect the most recent studies that have used next-generation molecular techniques such as metagenomics, proteogenomics, genome sequencing, and transcriptomics to gain new insights into the structure and function of phyllosphere microbiota and highlight important challenges for future research.
机译:叶圈是一个生态和经济上重要的生态系统,拥有大量多样的微生物群落。毛球菌群在保护植物免受疾病侵害以及通过各种机制促进植物生长方面发挥着关键作用。在我们对微生物群组成如何以及为什么在空间和时间尺度上变化,叶片表面定殖器的生态学及其与寄主的相互作用以及使微生物在叶圈中存活的遗传适应的理解上存在严重差距。这些差距在很大程度上归因于过去的技术局限性,因为早期的研究仅限于可培养细菌的研究,并使用低通量分子技术来描述群落结构和功能。高通量和具有成本效益的分子技术的可用性正在改变叶球微生物学的领域,使研究人员能够开始研究覆盖范围广,覆盖面广的大量样品中的叶球微生物群的动态和组成。在这里,我们讨论并连接了使用下一代分子技术(例如宏基因组学,蛋白质组学,基因组测序和转录组学)的最新研究,从而获得了对叶球菌群结构和功能的新见解,并突出了未来研究的重要挑战。

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