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Impact of genomics and genetics on the elucidation of bacterial metabolism.

机译:基因组学和遗传学对阐明细菌代谢的影响。

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摘要

In the last few years, the emergence of complete genome sequences has had profound effects on all fields of biology. While the existence of these genome sequences has served to facilitate experimental work, it has also highlighted the gaps in our knowledge of bacterial metabolism. Our current knowledge of metabolism is primarily the result of data accumulated from decades of study by biochemists and geneticists. In general these studies focused on discrete pathways and their regulation. The technical innovations of the last decade, culminating with the sequencing of complete genomes, provide us with the ability to address the next frontier in physiology, metabolic integration. Herein we describe current approaches that can be used to complement classic genetic approaches and further our understanding of both novel metabolic functions and metabolic integration in microorganisms. Copyright 2000 Academic Press.
机译:在过去的几年中,完整的基因组序列的出现对生物学的所有领域都产生了深远的影响。这些基因组序列的存在虽然有助于实验工作,但也突出了我们在细菌代谢方面的知识差距。我们当前的代谢知识主要是生物化学家和遗传学家数十年研究积累的数据的结果。总的来说,这些研究集中于离散途径及其调控。过去十年的技术创新以完整的基因组测序为最高点,使我们能够应对生理学的下一个前沿领域,即代谢整合。本文中,我们描述了可用于补充经典遗传方法的当前方法,并进一步了解了微生物中新的代谢功能和代谢整合。版权所有2000学术出版社。

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