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拟南芥根外植体共培养时T-DNA转移频率和T-DNA整合频率的测定。

Determination of the T-DNA transfer and the T-DNA integration frequencies upon cocultivation of Arabidopsis thaliana root explants.

作者信息

De Buck S, De Wilde C, Van Montagu M, Depicker A

机构信息

Vakgroep Moleculaire Genetica, Departement Plantengenetica, Vlaams Interuniversitair Instituut voor Biotechnologie, Universiteit Gent, Belgium.

出版信息

Mol Plant Microbe Interact. 2000 Jun;13(6):658-65. doi: 10.1094/MPMI.2000.13.6.658.

Abstract

Using the Cre/lox recombination system, we analyzed the extent to which T-DNA transfer to the plant cell and T-DNA integration into the plant genome determine the transformation and cotransformation frequencies of Arabidopsis root cells. Without selection for transformation competence, the stable transformation frequency of shoots obtained after cocultivation and regeneration on nonselective medium is below 0.5%. T-DNA transfer and expression occur in 5% of the shoots, indicating that the T-DNA integrates in less than 10% of the transiently expressing plant cells. A limited fraction of root cells, predominantly located at the wounded sites and in the pericycle, are competent for interaction with agrobacteria and the uptake of a T-DNA, as demonstrated by histochemical GUS staining. When selection for transformation competence is applied, the picture is completely different. Then, approximately 50% of the transformants show transient expression of a second, nonselected T-DNA and almost 50% of these cotransferred T-DNAs are integrated into the plant genome. Our results indicate that both T-DNA transfer and T-DNA integration limit the transformation and cotransformation frequencies and that plant cell competence for transformation is based on these two factors.

摘要

利用Cre/lox重组系统,我们分析了T-DNA转移至植物细胞以及T-DNA整合进植物基因组在多大程度上决定了拟南芥根细胞的转化和共转化频率。在不进行转化能力筛选的情况下,在非选择性培养基上共培养和再生后获得的芽的稳定转化频率低于0.5%。T-DNA转移和表达发生在5%的芽中,这表明T-DNA整合进不到10%的瞬时表达植物细胞中。组织化学GUS染色表明,一小部分根细胞(主要位于伤口部位和中柱鞘)有能力与农杆菌相互作用并摄取T-DNA。当进行转化能力筛选时,情况则完全不同。此时,约50%的转化体显示出第二种未选择的T-DNA的瞬时表达,并且这些共转移的T-DNA中近50%整合进了植物基因组。我们的结果表明,T-DNA转移和T-DNA整合均限制了转化和共转化频率,并且植物细胞的转化能力基于这两个因素。

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