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红假单胞菌属成员间的基因转移机制。

Gene transfer mechanisms among members of the genus Rhodopseudomonas.

作者信息

Pemberton J M, Cooke S, Bowen A R

出版信息

Ann Microbiol (Paris). 1983 Jul-Aug;134B(1):195-204. doi: 10.1016/s0769-2609(83)80105-7.

Abstract

Recent studies on species of the genus Rhodopseudomonas, particularly R, capsulata and R. sphaeroides, have resulted in the development of a range of systems of genetic exchange without peer among the photosynthetic prokaryotes. In R. capsulata, systems of generalized transduction and R-prime formation have provided a detailed map of the arrangement of photosynthesis genes, while systems of conjugation and chromosome transfer in R, sphaeroides have provided a map of the location of genes involved in amino acid biosynthesis, antibiotic resistance and photosynthesis. A recent report of plasmid transformation in R. sphaeroides provides another important avenue for the analysis of genes such as those involved in photosynthesis and photochemical nitrogen fixation, through the application of DNA cloning technology. That plasmid transformation, generalized and specialized transduction, conjugation, chromosome transfer and R-prime formation do occur in Rhodopseudomonas indicates the rapid emergence of genetic and molecular biological techniques applicable to studies of these bacteria.

摘要

最近对红假单胞菌属物种的研究,特别是荚膜红假单胞菌和球形红假单胞菌,已促成了一系列遗传交换系统的发展,这些系统在光合原核生物中无与伦比。在荚膜红假单胞菌中,广义转导和R-质粒形成系统提供了光合作用基因排列的详细图谱,而球形红假单胞菌中的接合和染色体转移系统则提供了参与氨基酸生物合成、抗生素抗性和光合作用的基因定位图谱。最近一篇关于球形红假单胞菌中质粒转化的报告,通过应用DNA克隆技术,为分析诸如参与光合作用和光化学固氮的基因等提供了另一条重要途径。红假单胞菌中确实发生了质粒转化、广义和狭义转导、接合、染色体转移和R-质粒形成,这表明适用于这些细菌研究的遗传和分子生物学技术正在迅速涌现。

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