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甲烷球菌的遗传学:古菌功能基因组学的可能性

Genetics of Methanococcus: possibilities for functional genomics in Archaea.

作者信息

Tumbula D L, Whitman W B

机构信息

Department of Molecular Biophysics and Biochemistry, Yale University, New Haven CT 06520-8114, USA.

出版信息

Mol Microbiol. 1999 Jul;33(1):1-7. doi: 10.1046/j.1365-2958.1999.01463.x.

Abstract

Although the genomic sequences of a number of Archaea have been completed in the last three years, genetic systems in the sequenced organisms are absent. In contrast, genetic studies of the mesophiles in the archaeal genus Methanococcus have become commonplace following the recent developments of antibiotic resistance markers, DNA transformation methods, reporter genes, shuttle vectors and expression vectors. These developments have led to investigations of the transcription of the genes for hydrogen metabolism, nitrogen fixation and flagellin assembly. These genetic systems can potentially be used to analyse the genomic sequence of the hyperthermophile Methanococcus jannaschii, addressing questions of its physiology and the function of its many uncharacterized open reading frames. Thus, the sequence of M. jannaschii can serve as a starting point for gene isolation, while in vivo genetics in the mesophilic methanococci can provide the experimental systems to test the predictions from genomics.

摘要

尽管在过去三年里已经完成了一些古菌的基因组测序,但已测序生物中的遗传系统却并不存在。相比之下,随着抗生素抗性标记、DNA转化方法、报告基因、穿梭载体和表达载体的最新发展,对古菌甲烷球菌属嗜温菌的遗传研究已变得很普遍。这些进展促使人们对氢代谢、固氮和鞭毛蛋白组装相关基因的转录进行了研究。这些遗传系统有可能用于分析嗜热栖热甲烷球菌的基因组序列,解决其生理学问题以及许多未表征开放阅读框的功能问题。因此,嗜热栖热甲烷球菌的序列可作为基因分离的起点,而嗜温甲烷球菌的体内遗传学可为检验基因组学预测提供实验系统。

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