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Cultivar-Specific Interactions of Soybean with Rhizobium fredii Are Regulated by the Genotype of the Root

机译:大豆与根瘤菌的特定品种相互作用受根基因型的调节。

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摘要

Rhizobium fredii USDA257 forms nitrogen-fixing nodules on soybean cultivar Peking, but not on cultivar McCall. This pattern of nodulation persists when McCall and Peking seedlings are cultivated together in plastic growth pouches. Reciprocal grafting experiments confirm that the root genotype, and not that of the shoot, regulates such cultivar specificity. When Peking roots are grafted onto McCall seedlings, the nodulation responses of roots similarly remain unaffected. Transposon-mutant 257DH4, which is derived from USDA257, can form nitrogen-fixing nodules on McCall. Such nodulation is blocked by the presence of USDA257 in the inoculum. Grafting experiments indicate that blocking is not due to a translocatable inhibitor produced by McCall roots or triggered by their interaction with USDA257. Thus, neither freely diffusible nor graft-transmissible substances are involved in cultivar-specific interactions of soybean with R. fredii and its derivatives.
机译:fredii fredii USDA257在北京大豆品种上形成固氮根瘤,在麦考尔品种上不形成。当将麦考尔和北京幼苗一起种植在塑料生长袋中时,这种结节模式仍然存在。相互的嫁接实验证实,根基因型而不是芽的基因型调节这种栽培种的特异性。将北京根嫁接到McCall幼苗上时,根的结瘤响应同样不受影响。衍生自USDA257的转座子突变体257DH4可在McCall上形成固氮结节。接种物中USDA257的存在阻止了这种结节。嫁接实验表明,阻断不是由麦考尔根产生的易位抑制剂引起的,也不是由其与USDA257的相互作用触发的。因此,自由扩散或嫁接可传播的物质均不参与大豆与弗雷德氏菌及其衍生物的栽培种特异性相互作用。

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