Department of Agronomy and the Center for the Study of Nitrogen Fixation, University of Wisconsin, Madison, WI 53706-1597.
Proc Natl Acad Sci U S A. 1988 Jun;85(11):3810-4. doi: 10.1073/pnas.85.11.3810.
Rhizobium leguminosarum bv. trifolii T24 produces a potent anti-rhizobial compound, trifolitoxin, and exclusively nodulates clover roots when in mixed inoculum with trifolitoxin-sensitive strains of R. leguminosarum bv. trifolii [Schwinghamer, E. A. & Belkengren R. P. (1968) Arch. Mikrobiol. 64, 130-145]. In the present study, the isolation of trifolitoxin production and resistance genes is described. A cosmid genomic library of T24 was prepared in pLAFR3. No trifolitoxin expression was observed in the resulting Escherichia coli cosmid clones. One cosmid clone was identified that restored trifolitoxin production and nodulation competitiveness in three nonproducing mutants of T24. The recombinant plasmid from this cosmid clone, pTFX1, also conferred trifolitoxin production and resistance when transferred to symbiotically effective strains of R. leguminosarum bvs. trifolii, phaseoli, and viceae. Cosmid pTFX1 also conferred expression of trifolitoxin production when present in strains of Rhizobium meliloti and Agrobacterium tumefaciens. No trifolitoxin expression was observed in strains of Bradyrhizobium japonicum or Rhizobium sp. (cowpea) with pTFX1. Southern blot analysis with a biotinylated pTFX1 probe did not suggest that these genes were plasmid-borne. Transfer of pTFX1 to T24 or its derivatives resulted in 6- to 10-fold higher level of trifolitoxin production than wild-type T24.
根瘤菌属苜蓿中华根瘤菌 bv. trifolii T24 产生一种有效的抗根瘤菌化合物三叶草毒素,并且当与三叶草毒素敏感的根瘤菌属苜蓿中华根瘤菌 bv. trifolii [Schwinghamer,E. A. 和 Belkengren R. P. (1968) Arch. Mikrobiol. 64, 130-145] 混合接种物混合接种时,它专门感染三叶草的根。在本研究中,描述了三叶草毒素产生和抗性基因的分离。T24 的 cosmid 基因组文库在 pLAFR3 中制备。在产生的大肠杆菌 cosmid 克隆中未观察到三叶草毒素表达。鉴定出一个 cosmid 克隆,该克隆恢复了三叶草毒素的产生和 T24 的三个非产生突变体的结瘤竞争力。来自该 cosmid 克隆的重组质粒 pTFX1 也在共生有效的根瘤菌属苜蓿中华根瘤菌 bvs. trifolii、phaseoli 和 viceae 菌株中赋予三叶草毒素的产生和抗性。当存在于 Rhizobium meliloti 和 Agrobacterium tumefaciens 的菌株中时,cosmid pTFX1 也赋予三叶草毒素的表达。在具有 pTFX1 的 Rhizobium japonicum 或 Rhizobium sp.(豇豆)菌株中未观察到三叶草毒素表达。用生物素化的 pTFX1 探针进行 Southern blot 分析表明,这些基因不是质粒携带的。将 pTFX1 转移到 T24 或其衍生物中导致三叶草毒素的产生比野生型 T24 高 6-10 倍。