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The NIN Transcription Factor Coordinates Diverse Nodulation Programs in Different Tissues of the Medicago truncatula Root

机译:紫花苜蓿根不同组织中的NIN转录因子协调不同的结瘤程序。

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Biological nitrogen fixation in legumes occurs in nodules that are initiated in the root cortex following Nod factor recognition at the root surface, and this requires coordination of diverse developmental programs in these different tissues. We show that while early Nod factor signaling associated with calcium oscillations is limited to the root surface, the resultant activation of Nodule Inception (NIN) in the root epidermis is sufficient to promote cytokinin signaling and nodule organogenesis in the inner root cortex. NIN or a product of its action must be associated with the transmission of a signal between the root surface and the cortical cells where nodule organogenesis is initiated. NIN appears to have distinct functions in the root epidermis and the root cortex. In the epidermis, NIN restricts the extent of Early Nodulin 11 (ENOD11) expression and does so through competitive inhibition of ERF Required for Nodulation (ERN1). In contrast, NIN is sufficient to promote the expression of the cytokinin receptor Cytokinin Response 1 (CRE1), which is restricted to the root cortex. Our work in Medicago truncatula highlights the complexity of NIN action and places NIN as a central player in the coordination of the symbiotic developmental programs occurring in differing tissues of the root that combined are necessary for a nitrogen-fixing symbiosis.
机译:豆科植物中的生物固氮作用发生在根表面的Nod因子识别后根部皮层中开始的结节中,这需要在这些不同组织中协调不同的发育程序。我们显示,尽管与钙振荡相关的早期Nod因子信号传导仅限于根表面,但根表皮中的Nodule Inception(NIN)活化后的结果足以促进内层皮层中的细胞分裂素信号传导和结节器官发生。 NIN或其作用产物必须与根部表面和启动结节器官发生的皮质细胞之间的信号传递相关。 NIN在根表皮和根皮层中似乎具有独特的功能。在表皮中,NIN限制了早期Nodulin 11(ENOD11)的表达,并且通过竞争性抑制结瘤所需的ERF(ERN1)来实现。相反,NIN足以促进细胞分裂素受体细胞分裂素反应1(CRE1)的表达,而该反应仅限于根皮层。我们在Medi藜苜蓿中的工作突出了NIN作用的复杂性,并将NIN定位为协调发生在根不同组织中的共生发展程序的中心,这些共生对于固氮共生是必不可少的。

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