Agrobacterium: nature's genetic engineer

被引:150
作者
Nester, Eugene W. [1 ]
机构
[1] Univ Washington, Dept Microbiol, Seattle, WA 98195 USA
关键词
Agrobacterium; crown gall; plant genetic engineering; plant disease; Agrobacterium-mediated transformation; SINGLE-STRANDED-DNA; CROWN-GALL TUMORS; NUCLEAR-LOCALIZATION SIGNAL; BINDING PROTEIN VIRE2; MAIZE STREAK VIRUS; T-DNA; IV SECRETION; VIRD2; PROTEIN; VIRULENCE GENE; SENSOR PROTEIN;
D O I
10.3389/fpls.2014.00730
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Agrobactenum was Identified as the agent causing the plant tumor, crown gall over 100 years ago. Since then, studies have resulted in many surprising observations. Armin Braun demonstrated that Agrobacteriurn infected cells had unusual nutritional properties, and that the bacterium was necessary to start the infection but not for continued tumor development. He developed the concept of a tumor inducing principle (TIP), the factor that actually caused the disease. Thirty years later the TIP was shown to be a piece of a tumor inducing (Ti) plasmid excised by an endonuclease. In the next 20 years, most of the key features of the disease were described. The single strand DNA (T-DNA) with the endonuclease attached is transferred through a type IV secretion system into the host cell where it is likely coated and protected from nucleases by a bacterial secreted protein to form the T-complex. A nuclear localization signal in the endonuclease guides the transferred strand (T-strand), into the nucleus where it is integrated randomly into the host chromosome. Other secreted proteins likely aid in uncoating the T-complex. The T-DNA encodes enzymes of auxin, cytokinin, and opine synthesis, the latter a food source for Agrobactenum. The genes associated with T-strand formation and transfer (vir) map to the Ti plasmid and are only expressed when the bacteria are in close association with a plant. Plant signals are recognized by a two component regulatory system which activates or genes. Chromosomal genes with pleiotropic functions also play important roles in plant transformation. The data now explain Braun's old observations and also explain why Agrobactenum is nature's genetic engineer. Any DNA inserted between the border sequences which define the T-DNA will be transferred and integrated into host cells. Thus, Agrobactenum has become the major vector in plant genetic engineering.
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页数:16
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