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嗜热栖热菌的全基因组

The complete genome of the hyperthermophilic bacterium Aquifex aeolicus.

作者信息

Deckert G, Warren P V, Gaasterland T, Young W G, Lenox A L, Graham D E, Overbeek R, Snead M A, Keller M, Aujay M, Huber R, Feldman R A, Short J M, Olsen G J, Swanson R V

机构信息

Diversa Corporation, San Diego, California 92121, USA.

出版信息

Nature. 1998 Mar 26;392(6674):353-8. doi: 10.1038/32831.

Abstract

Aquifex aeolicus was one of the earliest diverging, and is one of the most thermophilic, bacteria known. It can grow on hydrogen, oxygen, carbon dioxide, and mineral salts. The complex metabolic machinery needed for A. aeolicus to function as a chemolithoautotroph (an organism which uses an inorganic carbon source for biosynthesis and an inorganic chemical energy source) is encoded within a genome that is only one-third the size of the E. coli genome. Metabolic flexibility seems to be reduced as a result of the limited genome size. The use of oxygen (albeit at very low concentrations) as an electron acceptor is allowed by the presence of a complex respiratory apparatus. Although this organism grows at 95 degrees C, the extreme thermal limit of the Bacteria, only a few specific indications of thermophily are apparent from the genome. Here we describe the complete genome sequence of 1,551,335 base pairs of this evolutionarily and physiologically interesting organism.

摘要

嗜热栖热菌是已知最早分化且嗜热程度最高的细菌之一。它能利用氢气、氧气、二氧化碳和矿物盐生长。嗜热栖热菌作为化能无机自养生物(一种利用无机碳源进行生物合成并使用无机化学能源的生物体)发挥功能所需的复杂代谢机制,由一个仅为大肠杆菌基因组三分之一大小的基因组编码。由于基因组大小有限,代谢灵活性似乎有所降低。复杂呼吸装置的存在使得它能够利用氧气(尽管浓度非常低)作为电子受体。尽管这种生物体在95摄氏度(细菌的极端热极限)下生长,但从基因组中仅能明显看出一些特定的嗜热迹象。在此,我们描述了这种在进化和生理方面都很有趣的生物体的1,551,335个碱基对的完整基因组序列。

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