Jiang G, Krishnan H B
Department of Agronomy, USDA-ARS, University of Missouri, Columbia 65211, USA.
Mol Plant Microbe Interact. 2000 Sep;13(9):1010-4. doi: 10.1094/MPMI.2000.13.9.1010.
Sinorhizobium fredii USDA257 forms nitrogen-fixing nodules on primitive soybean (Glycine max) cultivar Peking but fails to nodulate the improved cultivar McCall. Cultivar specificity is governed by a plasmid-borne locus, nolXBTUV. By DNA sequence analysis, we have identified two open reading frames, y4yA and y4yB, immediately downstream of nolX. Northern (RNA) blot analysis indicated that the expression of both y4yA and y4yB is inducible by isoflavonoids, and an intact copy of nolX is required. Two copies each of y4yA and y4yB are present in S. fredii USDA257, one on the sym plasmid (y4yAsp and y4yBsp), and the other on the chromosome (y4yAc and y4yBc). The cultivar-nonspecific strain USDA191 lacks y4yAc and y4yBc. Introduction of y4yAc plus y4yBc from USDA257 into USDA191 did not influence the ability of the latter strain to nodulate McCall soybean plants. Unlike nolX, the inactivation of y4yAsp and y4yBsp of USDA257 did not extend the host range of this strain. A double mutant, in which both the plasmid and chromosomal copies of y4yA and y4yB were mutated, had no observable effect on symbiotic ability of USDA257. The y4yAsp and y4yBsp mutants did not influence flavonoid-dependent extracellular protein production. Rhizobium sp. strain NGR234 and S. saheli USDA4893 both contain sequences similar to S. fredii USDA257 y4yAsp and y4yBsp; however, Bradyrhizobium spp., the traditional soybean symbionts, lack these genes.
费氏中华根瘤菌USDA257能在原始大豆品种北京大豆(Glycine max)上形成固氮根瘤,但不能使改良品种麦考尔大豆结瘤。品种特异性由一个质粒携带的基因座nolXBTUV控制。通过DNA序列分析,我们在nolX的紧邻下游鉴定出两个开放阅读框y4yA和y4yB。Northern(RNA)印迹分析表明,y4yA和y4yB的表达均可被异黄酮诱导,且需要完整的nolX拷贝。费氏中华根瘤菌USDA257中y4yA和y4yB各有两个拷贝,一个位于共生质粒上(y4yAsp和y4yBsp),另一个位于染色体上(y4yAc和y4yBc)。品种非特异性菌株USDA191缺少y4yAc和y4yBc。将USDA257的y4yAc和y4yBc导入USDA191并不影响后者使麦考尔大豆植株结瘤的能力。与nolX不同,USDA257的y4yAsp和y4yBsp失活并未扩大该菌株的宿主范围。一个双突变体,其中y4yA和y4yB的质粒和染色体拷贝均发生突变,对USDA257的共生能力没有明显影响。y4yAsp和y4yBsp突变体不影响类黄酮依赖的细胞外蛋白产生。根瘤菌属菌株NGR234和萨赫勒中华根瘤菌USDA4893都含有与费氏中华根瘤菌USDA257的y4yAsp和y4yBsp相似的序列;然而,传统大豆共生菌慢生根瘤菌属缺乏这些基因。