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首页> 外文期刊>Applied and Environmental Microbiology >New Field Isolates of Rhizobium leguminosarum Biovar Viciae That Nodulate the Primitive Pea Cultivar Afghanistan in Addition to Modern Cultivars
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New Field Isolates of Rhizobium leguminosarum Biovar Viciae That Nodulate the Primitive Pea Cultivar Afghanistan in Addition to Modern Cultivars

机译:除现代品种外,还将根瘤菌豌豆根瘤菌定点为阿富汗根瘤菌的新变种。

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A collection of 13 field isolates of Rhizobium leguminosarum bv. viciae that have the ability to nodulate the roots of current North American cultivars of peas as well as a “primitive” cultivar, Afghanistan, was examined. These isolates originated in diverse geographical regions of the world, which indicates that this phenotype is not restricted to isolates from any one region. When subclones of the nodulation region from one plasmid were used to examine EcoRI-fragment-length polymorphisms in this collection of strains as well as in a collection comprising strains that do not nodulate the primitive cultivar, polymorphism was found in both collections. With one exception, RisφA6, all strains that nodulated cv. Afghanistan pea contained a region called nodX as an extension to the nodA BCIJ operon that has been observed in all R. leguminosarum bv. viciae strains, including those that do not nodulate cv. Afghanistan pea. RisφA6 was also the only strain in which nodulating ability could not be associated with a conjugative plasmid.
机译:豆科根瘤菌13个田间分离株的集合。研究了能够根结目前北美豌豆品种和“原始”品种阿富汗的根的豌豆。这些分离株起源于世界上不同的地理区域,这表明该表型不限于来自任何一个地区的分离株。当使用来自一个质粒的结节区域的亚克隆在该菌株集合以及包括不结节原始品种的菌株的集合中检查EcoRI片段长度多态性时,在两个集合中均发现了多态性。除RisφA6外,所有菌株均使cv结节。阿富汗豌豆包含一个名为nodX的区域,作为nodA BCIJ操纵子的延伸,该区域在所有豆科植物豆科菌中均已观察到。蚕豆菌株,包括不结瘤的菌株。阿富汗豌豆。 RisφA6也是唯一不能将结瘤能力与结合质粒结合的菌株。

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