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Microbial biochemistry, physiology, and biotechnology of hyperthermophilic Thermotoga species

机译:嗜热嗜热菌种的微生物生物化学,生理学和生物技术

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摘要

High-throughput sequencing of microbial genomes has allowed the application of functional genomics methods to species lacking well-developed genetic systems. For the model hyperthermophile Thermotoga maritima, microarrays have been used in comparative genomic hybridization studies to investigate diversity among Thermotoga species. Transcriptional data have assisted in prediction of pathways for carbohydrate utilization, iron-sulfur cluster synthesis and repair, expolysaccharide formation, and quorum sensing. Structural genomics efforts aimed at the T. maritima proteome have yielded hundreds of high-resolution datasets and predicted functions for uncharacterized proteins. The information gained from genomics studies will be particularly useful for developing new biotechnology applications for T. maritima enzymes.
机译:微生物基因组的高通量测序已允许将功能基因组学方法应用于缺乏完善的遗传系统的物种。对于超嗜热菌海洋嗜热菌模型,微阵列已用于比较基因组杂交研究中,以研究嗜热菌种之间的多样性。转录数据有助于预测碳水化合物利用,铁硫簇合成和修复,外多糖形成和群体感应的途径。旨在针对滨海烟草蛋白质组的结构基因组学研究已经获得了数百个高分辨率数据集和未表征蛋白质的预测功能。从基因组学研究中获得的信息对于开发海生三叶草酶的新生物技术应用将特别有用。

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