Milner J L, Araujo R S, Handelsman J
Department of Plant Pathology, University of Wisconsin-Madison 53706.
Mol Microbiol. 1992 Nov;6(21):3137-47. doi: 10.1111/j.1365-2958.1992.tb01770.x.
We studied the symbiotic behaviour of 20 independent Tn5 mutants of Rhizobium tropici strain CIAT899 that were deficient in exopolysaccharide (EPS) production. The mutants produced non-mucoid colonies, were motile, grew in broth cultures at rates similar to those of the parent, and produced significantly less EPS than did CIAT899 in broth culture. A genomic library of strain CIAT899, constructed in pLA2917, was mobilized into all of the mutants, and cosmids that restored EPS production were identified. EcoRI restriction digests of the cosmids revealed nine unique inserts. Mutant complementation and hybridization analysis showed that the mutations affecting EPS production fell into six functional and physical linkage groups. On bean, the mutants were as efficient in nodulation and as effective in acetylene reduction as strain CIAT899, induced a severe interveinal chlorosis, and all but one were less competitive than CIAT899. On siratro, CIAT899 induced nodules that were ineffective in acetylene reduction, whereas the EPS-deficient mutants induced effective nodules. Microscopic examination of thin sections showed that nodules from both siratro and bean plants inoculated with either CIAT899 or an EPS-deficient mutant contained infected cells. These data indicate that EPS is not required for normal nodulation of bean by R. tropici, that it may contribute to competitiveness of R. tropici on bean, and that the loss of EPS production is accompanied by acquisition of the ability to reduce acetylene on siratro.
我们研究了热带根瘤菌CIAT899的20个独立Tn5突变体的共生行为,这些突变体缺乏胞外多糖(EPS)的产生。这些突变体形成非黏液状菌落,具有运动性,在肉汤培养物中的生长速率与亲本相似,并且在肉汤培养中产生的EPS明显少于CIAT899。将构建于pLA2917的CIAT899菌株的基因组文库导入所有突变体中,并鉴定出恢复EPS产生的黏粒。黏粒的EcoRI酶切显示有9个独特的插入片段。突变体互补和杂交分析表明,影响EPS产生的突变可分为6个功能和物理连锁群。在菜豆上,这些突变体在结瘤效率和乙炔还原效率方面与CIAT899菌株相同,会引发严重的脉间黄化,除一个突变体外,所有突变体的竞争力均低于CIAT899。在西链豆上,CIAT899诱导的根瘤在乙炔还原方面无效,而EPS缺陷型突变体诱导的根瘤则有效。对薄片的显微镜检查表明,接种CIAT899或EPS缺陷型突变体的西链豆和菜豆植株的根瘤中均含有被感染的细胞。这些数据表明,EPS对于热带根瘤菌在菜豆上的正常结瘤并非必需,它可能有助于热带根瘤菌在菜豆上的竞争力,并且EPS产生的丧失伴随着在西链豆上还原乙炔能力的获得。