Downie J A, Surin B P
CSIRO Division of Plant Industry, Canberra ACT, Australia.
Mol Gen Genet. 1990 Jun;222(1):81-6. doi: 10.1007/BF00283027.
A deletion mutant of Rhizobium leguminosarum biovar viciae lacking the host-specific nodulation (nod) gene region (nodFEL nodMNT and nodO) but retaining the other nod genes (nodD nodABCIJ) was unable to nodulate peas or Vicia hirsuta, although it did induce root hair deformation. The mutant appeared to be blocked in its ability to induce infection threads and could be rescued for nodulation of V. hirsuta in mixed inoculation experiments with an exopolysaccharide deficient mutant (which is also Nod-). The nodulation deficiency of the deletion mutant strain could be partially restored by plasmids carrying the nodFE, nodFEL or nodFELMNT genes but not by nodLMN. Surprisingly, the mutant strain could also be complemented with a plasmid that did not carry any of the nodFELMNT genes but which did carry the nodO gene on a 30 kb cloned region of DNA. Using appropriate mutations it was established that nodO is essential for nodulation in the absence of nodFE. Thus, either of two independent nod gene regions can complement the deletion mutant for nodulation of V. hirsuta. Similar observations were made for pea nodulation except that nodL was required in addition to nodO for nodulation in the absence of the nodFE genes. These observations show that nodulation can occur via either of two pathways encoded by non-homologous genes.
豌豆根瘤菌蚕豆生物变种的一个缺失突变体,其缺乏宿主特异性结瘤(nod)基因区域(nodFEL、nodMNT和nodO),但保留了其他nod基因(nodD、nodABCIJ),尽管它能诱导根毛变形,但无法使豌豆或硬毛野豌豆结瘤。该突变体在诱导侵染线的能力上似乎受阻,并且在与一个胞外多糖缺陷突变体(也是Nod -)的混合接种实验中,其对硬毛野豌豆的结瘤能力可以得到恢复。缺失突变体菌株的结瘤缺陷可以通过携带nodFE、nodFEL或nodFELMNT基因的质粒部分恢复,但不能通过nodLMN恢复。令人惊讶的是,该突变体菌株也可以用一个不携带任何nodFELMNT基因但在一个30 kb克隆DNA区域上携带nodO基因的质粒互补。通过适当的突变确定,在没有nodFE的情况下,nodO对于结瘤是必需的。因此,两个独立的nod基因区域中的任何一个都可以使缺失突变体对硬毛野豌豆结瘤进行互补。对于豌豆结瘤也有类似的观察结果,只是在没有nodFE基因的情况下,除了nodO之外还需要nodL才能结瘤。这些观察结果表明,结瘤可以通过由非同源基因编码的两条途径中的任何一条发生。