Bonnard G, Tinland B, Paulus F, Szegedi E, Otten L
Institut de Biologie Moléculaire des Plantes du CNRS, Strasbourg, France.
Mol Gen Genet. 1989 Apr;216(2-3):428-38. doi: 10.1007/BF00334387.
A DNA fragment with homology to the cytokinin (ipt) gene from biotype I Agrobacterium tumefaciens strain Ach5 was cloned from the Ti plasmid of the wide host range biotype III Agrobacterium strain Tm-4 and sequenced. The fragment contains an intact ipt coding sequence. However, the 3' non-coding region of this ipt gene is rearranged due to a 0.9 kb deletion fusing it to the 3' coding region of the neighbouring gene 6a, most of which was found to be deleted. The Tm-4 ipt gene is strongly related to the partially deleted ipt gene of the limited host range biotype III strain Ag162. To test its biological activity, the Tm-4 ipt gene was inserted into a specially constructed, disarmed Ti vector lacking tzs and tested on tobacco, where the rearranged ipt gene induced shoot formation. The cloned Tm-4 ipt gene was mutated with Tn5 and the intact gene on the wild-type Tm-4 Ti plasmid was replaced by the mutated gene. The resulting strain was avirulent on tobacco but normally virulent on the natural host of the wild-type strain Tm-4, grapevine. As the biotype I 6b gene diminishes the effect of a corresponding ipt gene, a larger Tm-4 fragment carrying both the ipt gene and an adjacent 6b-like gene was also tested on tobacco and compared with the Tm-4 ipt fragment alone and with an ipt and 6b/ipt fragment derived from Ach5. The Tm-4 6b gene diminishes the effect of the Tm-4 ipt gene, showing the Tm-4 6b gene to be active as well. The Tm-4 6b/ipt combination is less effective than the Ach5 combination. These results provide further insight into the molecular basis of the host range differences between limited host range and wide host range biotype III Agrobacterium strains and show that the WHR cytokinin gene, although active, does not significantly contribute to tumour formation on the natural host of the WHR biotype III strains, grapevine.
从广宿主范围的生物型III根癌土壤杆菌菌株Tm-4的Ti质粒中克隆出与生物型I根癌土壤杆菌菌株Ach5的细胞分裂素(ipt)基因具有同源性的DNA片段,并进行了测序。该片段包含一个完整的ipt编码序列。然而,由于0.9 kb的缺失,该ipt基因的3'非编码区发生重排,使其与相邻基因6a的3'编码区融合,而6a基因的大部分已被发现缺失。Tm-4的ipt基因与宿主范围有限的生物型III菌株Ag162的部分缺失的ipt基因密切相关。为了测试其生物学活性,将Tm-4的ipt基因插入到一个专门构建的、去除了tzs的Ti载体中,并在烟草上进行测试,重排的ipt基因在烟草上诱导了芽的形成。用Tn5对克隆的Tm-4 ipt基因进行突变,并用突变基因取代野生型Tm-4 Ti质粒上的完整基因。所得菌株对烟草无毒性,但对野生型菌株Tm-4的天然宿主葡萄具有正常毒性。由于生物型I的6b基因会减弱相应ipt基因的作用,因此还在烟草上测试了一个携带ipt基因和相邻6b样基因的更大的Tm-4片段,并将其与单独的Tm-4 ipt片段以及来自Ach5的ipt和6b/ipt片段进行比较。Tm-4的6b基因减弱了Tm-4 ipt基因的作用,表明Tm-4的6b基因也具有活性。Tm-4的6b/ipt组合不如Ach5的组合有效。这些结果进一步深入了解了宿主范围有限和广宿主范围的生物型III根癌土壤杆菌菌株之间宿主范围差异的分子基础,并表明广宿主范围生物型III菌株的细胞分裂素基因虽然具有活性,但对其天然宿主葡萄上的肿瘤形成没有显著贡献。