, .
World J Microbiol Biotechnol. 1995 Jan;11(1):71-84. doi: 10.1007/BF00339137.
The molecular biology of extremophiles has recently attracted much interest, both in terms of cell adaptation to extreme environmental conditions and the development of manipulative genetic techniques. Although molecular genetic techniques have been successfully applied to halophiles and methanogens, their use with hyperthermophiles is limited by the extreme growth conditions that these organisms require. Much information on the thermophilic Archaea, has been obtained by studying the key enzymes involved in fundamental cell processes, such as transcription and replication, and by the cloning, sequence comparison and heterologous expression of structural genes. The development of viral vectors and systems for transformation, mutant production and screening will permit increased genetic manipulation of these organisms.
近年来,极端微生物的分子生物学引起了广泛关注,既涉及细胞对极端环境条件的适应,也涉及操纵遗传技术的发展。尽管分子遗传技术已成功应用于嗜盐菌和产甲烷菌,但由于这些生物体需要极端的生长条件,其在超嗜热菌中的应用受到限制。通过研究涉及转录和复制等基本细胞过程的关键酶,以及通过克隆、序列比较和结构基因的异源表达,已经获得了有关嗜热古菌的大量信息。病毒载体和转化、突变体产生和筛选系统的发展将允许对这些生物体进行更多的遗传操作。