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Selective Capture of Transcribed Sequences: A Promising Approach for Investigating Bacterium-Insect Interactions

机译:转录序列的选择性捕获:调查细菌-昆虫相互作用的一种有前途的方法。

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摘要

Bacterial interactions with eukaryotic hosts are complex processes which vary from pathogenic to mutualistic. Identification of bacterial genes differentially expressed in the host, promises to unravel molecular mechanisms driving and maintaining such interactions. Several techniques have been developed in the past 20 years to investigate bacterial gene expression within their hosts. The most commonly used techniques include in-vivo expression technology, signature-tagged mutagenesis, differential fluorescence induction, and cDNA microarrays. However, the limitations of these techniques in analyzing bacterial in-vivo gene expression indicate the need to develop alternative tools. With many advantages over the other methods for analyzing bacterial in-vivo gene expression, selective capture of transcribed sequences (SCOTS) technique has the prospect of becoming an elegant tool for discovery of genes involved in the bacterium-host interaction. Here, we summarize the advances in SCOTS technique, including its current and potential applications in bacterial gene expression studies under a variety of conditions from in-vitro to in-vivo and from mammals to insects.
机译:细菌与真核宿主的相互作用是复杂的过程,其过程从致病性到相互影响。鉴定宿主中差异表达的细菌基因,有望揭示驱动和维持这种相互作用的分子机制。在过去的20年中,已经开发了几种技术来研究其宿主内细菌基因的表达。最常用的技术包括体内表达技术,标记标签的诱变,差异荧光诱导和cDNA微阵列。但是,这些技术在分析细菌体内基因表达方面的局限性表明需要开发其他工具。与分析细菌体内基因表达的其他方法相比,它具有许多优势,选择性捕获转录序列(SCOTS)技术有望成为发现细菌-宿主相互作用基因的理想工具。在这里,我们总结了SCOTS技术的进展,包括其在体外,体内以及从哺乳动物到昆虫的各种条件下在细菌基因表达研究中的当前和潜在应用。

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