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Development and Evaluation of Genome-Probing Microarrays for Monitoring Lactic Acid Bacteria

机译:监测乳酸菌的基因组探针芯片的开发和评估

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The genome-probing microarray (GPM) was developed for quantitative, high-throughput monitoring of community dynamics in lactic acid bacteria (LAB) fermentation through the deposit of 149 microbial genomes as probes on a glass slide. Compared to oligonucleotide microarrays, the specificity of GPM was remarkably increased to a species-specific level. GPM possesses about 10- to 100-fold higher sensitivity (2.5 ng of genomic DNA) than the currently used 50-mer oligonucleotide microarrays. Since signal variation between the different genomes was very low compared to that of cDNA or oligonucleotide-based microarrays, the capacity of global quantification of microbial genomes could also be observed in GPM hybridization. In order to assess the applicability of GPMs, LAB community dynamics were monitored during the fermentation of kimchi, a traditional Korean food. In this work, approximately 100 diverse LAB species could be quantitatively analyzed as actively involved in kimchi fermentation.
机译:开发了基因组探测微阵列(GPM),用于通过在玻璃载玻片上沉积149个微生物基因组作为探针来定量,高通量监测乳酸菌(LAB)发酵中的群落动态。与寡核苷酸微阵列相比,GPM的特异性显着提高到物种特异性水平。 GPM具有比目前使用的50-mer寡核苷酸微阵列高约10至100倍的敏感性(2.5 ng基因组DNA)。由于与cDNA或基于寡核苷酸的微阵列相比,不同基因组之间的信号变化非常低,因此在GPM杂交中也可以观察到微生物基因组的整体定量能力。为了评估GPM的适用性,在韩国传统食品泡菜的发酵过程中对LAB群落动态进行了监测。在这项工作中,可以定量分析大约100种不同的LAB种类,因为它们积极参与了泡菜发酵。

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