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蓝细菌的遗传工具。

Genetic tools for cyanobacteria.

作者信息

Koksharova O A, Wolk C P

机构信息

MSU-DOE Plant Research Laboratory, Michigan State University, East Lansing 48824, USA.

出版信息

Appl Microbiol Biotechnol. 2002 Feb;58(2):123-37. doi: 10.1007/s00253-001-0864-9.

Abstract

Cyanobacteria are oxygenic photosynthetic bacteria that have been used increasingly to study diverse biological processes, including photosynthesis and its regulation; cell differentiation and N2 fixation; metabolism of nitrogen, carbon, and hydrogen; resistance to environmental stresses; and molecular evolution. Many vectors and other genetic tools have been developed for unicellular and filamentous strains of cyanobacteria. Transformation, electroporation, and conjugation are used for gene transfer. Diverse methods of mutagenesis allow the isolation of many sought-for kinds of mutants, including site-directed mutants of specific genes. Reporter genes permit measurement of the level of transcription of particular genes, and assays of transcription within individual colonies or within individual cells in a filament. Complete genomic sequences have been obtained for the unicellular cyanobacterium, Synechocystis sp. strain PCC 6803 and the filamentous, heterocyst-forming cyanobacterium, Anabaena sp. strain PCC 7120. Genomic sequence projects are under way for Nostoc punctiforme strain PCC 73102 (ATCC 29133) and strains of the unicellular genera, Synechococcus, Prochlorococcus, and Gloeobacter. Genomic sequence data provide the opportunity for global monitoring of changes in genetic expression at transcriptional and translational levels in response to variations in environmental conditions. The availability of genomic sequences accelerates the identification, study, modification and comparison of cyanobacterial genes, and facilitates analysis of evolutionary relationships, including the relationship of chloroplasts to ancient cyanobacteria. The many available genetic tools enhance the opportunities for possible biotechnological applications of cyanobacteria.

摘要

蓝细菌是产氧光合细菌,越来越多地被用于研究各种生物学过程,包括光合作用及其调控;细胞分化和固氮作用;氮、碳和氢的代谢;对环境胁迫的抗性;以及分子进化。已经为单细胞和丝状蓝细菌菌株开发了许多载体和其他遗传工具。转化、电穿孔和接合用于基因转移。多种诱变方法可分离出许多所需类型的突变体,包括特定基因的定点突变体。报告基因可用于测量特定基因的转录水平,以及丝状藻中单个菌落或单个细胞内的转录分析。已经获得了单细胞蓝细菌聚球藻属PCC 6803菌株和丝状、形成异形胞的蓝细菌鱼腥藻属PCC 7120菌株的完整基因组序列。点状念珠藻PCC 73102菌株(ATCC 29133)以及单细胞属聚球藻属、原绿球藻属和球杆菌属的菌株的基因组序列项目正在进行中。基因组序列数据为全球监测环境条件变化时转录和翻译水平上的基因表达变化提供了机会。基因组序列的可用性加速了蓝细菌基因的鉴定、研究、修饰和比较,并有助于分析进化关系,包括叶绿体与古代蓝细菌的关系。众多可用的遗传工具增加了蓝细菌可能用于生物技术应用的机会。

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