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首页> 外文期刊>International Journal of Molecular Sciences >Fluorescent Lactic Acid Bacteria and Bifidobacteria as Vehicles of DNA Microbial Biosensors
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Fluorescent Lactic Acid Bacteria and Bifidobacteria as Vehicles of DNA Microbial Biosensors

机译:荧光乳酸菌和双歧杆菌作为DNA微生物生物传感器的载体。

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Control and quantification of effector molecules such as heavy metals, toxins or other target molecules is of great biotechnological, social and economic interest. Microorganisms have regulatory proteins that recognize and modify the gene expression in the presence or absence of these compounds (effector molecules) by means of binding to gene sequences. The association of these recognizing gene sequences to reporter genes will allow the detection of effector molecules of interest with high sensitivity. Once investigators have these two elements—recognizing gene sequences and reporter genes that emit signals—we need a suitable vehicle to introduce both elements. Here, we suggest lactic acid bacteria (LAB) and bifidobacteria as promising carrier microorganisms for these molecular biosensors. The use of fluorescent proteins as well as food-grade vectors and clustered regularly interspaced short palindromic repeats (CRISPR) are indispensable tools for introducing biosensors into these microorganisms. The use of these LAB and bifidobacteria would be of special interest for studying the intestinal environment or other complex ecosystems. The great variety of species adapted to many environments, as well as the possibility of applying several protocols for their transformation with recognizing gene sequences and reporter genes are considerable advantages. Finally, an effort must be made to find recognizable gene sequences.
机译:控制和定量效应分子,例如重金属,毒素或其他目标分子,具有重要的生物技术,社会和经济意义。微生物具有调节蛋白,该调节蛋白通过与基因序列结合而在存在或不存在这些化合物(效应分子)的情况下识别和修饰基因表达。这些识别基因序列与报道基因的关联将允许以高灵敏度检测感兴趣的效应分子。一旦研究人员有了这两个要素-识别发出信号的基因序列和报告基因-我们就需要合适的媒介物来引入这两个要素。在这里,我们建议将乳酸菌(LAB)和双歧杆菌作为这些分子生物传感器的有希望的载体微生物。荧光蛋白以及食品级载体和成簇的规则间隔的短回文重复序列(CRISPR)的使用是将生物传感器引入这些微生物的必不可少的工具。这些LAB和双歧杆菌的使用对于研究肠道环境或其他复杂的生态系统将特别有意义。种类繁多的物种可适应多种环境,并且有可能应用多种方案进行识别基因序列和报告基因的转化,这是相当大的优势。最后,必须努力寻找可识别的基因序列。

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