Dube Thabani, Kovalchuk Igor, Hohn Barbara, Thomson Jennifer A
Department of Molecular and Cell Biology, University of Cape Town, Private Bag Rondebosch, South Africa.
Plant Mol Biol. 2004 Jul;55(4):531-9. doi: 10.1007/s11103-004-1159-1.
In the transformation of plants by Agrobacterium tumefaciens the VirD2 protein has been shown to pilot T-DNA during its transfer to the plant cell nucleus. Other studies have shown that the MobA protein of plasmid RSF1010 is capable of mediating its transfer from Agrobacterium cells to plant cells by a similar process. We have demonstrated previously that plasmid pTF-FC2, which has some similarity to RSF1010, is also able to transfer DNA efficiently. In this study, we performed a mutational analysis of the roles played by A . tumefaciens VirD2 and pTF-FC2 MobA in DNA transfer-mediated by A. tumefaciens carrying pTF-FC2. We show that MobA+/VirD2+ and MobA+/VirD2- strains were equally proficient in their ability to transfer a pTF-FC2-derived plasmid DNA to plants and to transform them. However, the MobA-/VirD2+ strain showed a DNA transfer efficiency of 0.03% compared with that of the other two strains. This sharply contrasts with our results that VirD2 can rather efficiently cleave the oriT sequence of pFT-FC2 in vitro . We therefore conclude that MobA plays a major VirD2-independent role in plant transformation by pTF-FC2.
在根癌农杆菌介导的植物转化过程中,VirD2蛋白已被证明在T-DNA转移至植物细胞核的过程中起引导作用。其他研究表明,质粒RSF1010的MobA蛋白能够通过类似过程介导其从农杆菌细胞转移至植物细胞。我们之前已经证明,与RSF1010有一定相似性的质粒pTF-FC2也能够高效转移DNA。在本研究中,我们对根癌农杆菌VirD2和pTF-FC2 MobA在携带pTF-FC2的根癌农杆菌介导的DNA转移中所起的作用进行了突变分析。我们发现,MobA+/VirD2+和MobA+/VirD2-菌株在将pTF-FC2衍生的质粒DNA转移至植物并使其转化的能力上同样出色。然而,MobA-/VirD2+菌株的DNA转移效率仅为0.03%,与其他两种菌株形成鲜明对比。这与我们的结果形成了强烈反差,即VirD2在体外能够相当高效地切割pFT-FC2的oriT序列。因此,我们得出结论,MobA在pTF-FC2介导的植物转化中发挥着主要的不依赖于VirD2的作用。