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根癌农杆菌Ti质粒和发根农杆菌Ri质粒的T-DNA

T-DNA of the Agrobacterium Ti and Ri plasmids.

作者信息

Bevan M W, Chilton M D

出版信息

Annu Rev Genet. 1982;16:357-84. doi: 10.1146/annurev.ge.16.120182.002041.

Abstract

The study of T-DNA transmission from Agrobacterium Ti or Ri plasmid into the genomes of higher plant cells has revealed much about the consequences of transformation. It is now clear that the transformed phenotype is caused by hormonal changes produced directly or indirectly by T-DNA genes. The opine synthases are enzymes encoded in T-DNA that function in the plant cell. Our level of understanding of T-DNA-encoded functions is already sufficient to reveal clear and feasible ways to exploit T-DNA as a gene vector. What remains to challenge the crown gall investigator are many questions of fundamental importance: What is the mechanism of the seemingly illegitimate recombination between T-DNA and plant DNA, and is this process catalyzed by bacterial or host plant enzymes, or both? Do T-DNA genes encode enzymes that catalyze biosynthesis of auxin- and cytokinin-active substances? What gene in T-DNA confers immunity to A. tumefaciens, and what is its mode of action? Does T-DNA insert into random or specific sites in the host plant genome? Did T-DNA derive from plant genetic information or has prokaryotic DNA arrived at functional eukaryotic gene structure by convergent evolution? Although there is keen interest in T-DNA as a vector for genetic engineering, it holds equal interest as a unique interface between the biology of prokaryotes and eukaryotes.

摘要

对根癌农杆菌Ti或Ri质粒中的T-DNA向高等植物细胞基因组转移的研究,揭示了许多有关转化后果的信息。现在已经清楚,转化表型是由T-DNA基因直接或间接产生的激素变化引起的。冠瘿碱合酶是在植物细胞中起作用的T-DNA编码的酶。我们对T-DNA编码功能的理解水平已经足以揭示利用T-DNA作为基因载体的清晰可行的方法。仍然困扰冠瘿研究者的是许多具有根本重要性的问题:T-DNA与植物DNA之间看似不合法的重组机制是什么,这个过程是由细菌酶还是宿主植物酶催化,或者两者都有?T-DNA基因是否编码催化生长素和细胞分裂素活性物质生物合成的酶?T-DNA中的哪个基因赋予对根癌农杆菌的免疫力,其作用模式是什么?T-DNA是插入宿主植物基因组中的随机位点还是特定位点?T-DNA是源自植物遗传信息,还是原核DNA通过趋同进化达到了功能性真核基因结构?尽管人们对T-DNA作为基因工程载体有着浓厚兴趣,但它作为原核生物和真核生物生物学之间的独特界面同样具有吸引力。

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