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Gibberellins promote nodule organogenesis but inhibit the infection stages of nodulation

机译:赤霉素促进结节器官发生但抑制结节的感染阶段

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摘要

Leguminous plant roots can form a symbiosis with soil-dwelling nitrogen-fixing rhizobia, leading to the formation of a new root organ, the nodule. Successful nodulation requires co-ordination of spatially separated events in the root, including infection in the root epidermis and nodule organogenesis deep in the root cortex. We show that the hormone gibberellin plays distinct roles in these epidermal and cortical programmes. We employed a unique set of genetic material in pea that includes severely gibberellin-deficient lines and della-deficient lines that enabled us to characterize all stages of infection and nodule development. We confirmed that gibberellin suppresses infection thread formation and show that it also promotes nodule organogenesis into nitrogen-fixing organs. In both cases, this is achieved through the action of DELLA proteins. This study therefore provides a mechanism to explain how both low and high gibberellin signalling can result in reduced nodule number and reveals a clear role for gibberellin in the maturation of nodules into nitrogen-fixing organs. We also demonstrate that gibberellin acts independently of ethylene in promoting nodule development.
机译:豆科植物的根可以与固氮固氮根瘤菌共生,从而导致新的根器官结节的形成。成功的结瘤需要协调根部空间分离的事件,包括根表皮的感染和根皮层深处的结节器官发生。我们显示,激素赤霉素在这些表皮和皮质程序中起着独特的作用。我们在豌豆中采用了一套独特的遗传材料,其中包括赤霉素严重缺乏系和德拉缺失系,这使我们能够表征感染和结节发育的所有阶段。我们确认赤霉素抑制感染线的形成,并表明它也促进结节器官的生成为固氮器官。在两种情况下,这都是通过DELLA蛋白的作用实现的。因此,本研究提供了一种机制来解释低赤霉素和高赤霉素信号如何导致结节数减少,并揭示赤霉素在结节成熟为固氮器官中的明确作用。我们还证明了赤霉素在促进根瘤发育中独立于乙烯起作用。

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