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首页> 外文期刊>Microbiological Research >Symbiotic characteristics of Bradyrhizobium diazoefficiens USDA 110 mutants associated with shrubby sophora (Sophora flavescens) and soybean (Glycine max)
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Symbiotic characteristics of Bradyrhizobium diazoefficiens USDA 110 mutants associated with shrubby sophora (Sophora flavescens) and soybean (Glycine max)

机译:与灌木槐花(Sophora Fophescens)和大豆(甘氨酸最大)相关的Bradyrhizobium diazoeffiens USDA 110突变体的共生特征

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Site-specific insertion plasmid pVO155 was used to knockout the genes involved in the alternation of host range of strain Bradyrhizobium diazoefficiens USDA 110 from its original determinate-nodule-forming host soybean (Glycine max), to promiscuous and indeterminate-nodule-forming shrubby legume sophora (Sophora flavescens). Symbiotic phenotypes of these mutants inoculated to these two legumes, were compared to those infected by wild-type strain USDA 110. Six genes of the total fourteen Tn5 transposon mutated genes were broken using the pVO155 plasmid. Both Tn5 and pVO155-inserted mutants could nodulate S. flavescens with different morphologies of low-efficient indeterminate nodules. One to several rod or irregular bacteroids, containing different contents of poly-beta-hydroxybutyrate or polyphosphate were found within the symbiosomes in nodulated cells of S. flavescens infected by the pVO155-inserted mutants. Moreover, none of bacteroids were observed in the pseudonodules of S. flavescens, infected by wild-type strain USDA 110. These mutants had the nodulation ability with soybean but the symbiotic efficiency reduced to diverse extents. These findings enlighten the complicated interactions between rhizobia and legumes, i. e., mutation of genes involved in metabolic pathways, transporters, chemotaxis and mobility could alter the rhizobial entry and development of the bacteroid inside the nodules of a new host legume.
机译:特异性插入质粒pVO155用于从其原始测定的结节形成宿主大豆(甘氨酸最大)突出宿主菌株菌株菌株菌株的宿主范围的交替的基因,以混杂和不确定的结节形成灌木豆类Sophora(Sophora Flavescens)。将这些突变体的共生表型接种在这两个豆类中的那些被野生型菌株USDA 110感染的那些。使用PVO155质粒破裂总共十四个TN5转座子突变基因的六种基因。 TN5和PVO155插入的突变体均可与低效不确定结节的不同形态结节S.Flavescens。在由PVO155插入的突变体感染的S.Flavescens的染色细胞中的SymbioSomeS中发现了一种含有不同β-羟丁酯或多磷酸盐的杆或不规则的菌株。此外,在由野生型菌株USDA 110感染的S.Flavescens的假组织中没有观察到菌株。这些突变体具有大豆的染色能力,但共生效率降低到不同的范围。这些调查结果启发了根茎和豆类之间的复杂互动,我。即,参与代谢途径,转运蛋白,趋化性和迁移率的基因的突变可以改变新宿主豆类的结节内的细菌的根瘤菌进入和发展。

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