Vernié Tatiana, Moreau Sandra, de Billy Françoise, Plet Julie, Combier Jean-Philippe, Rogers Christian, Oldroyd Giles, Frugier Florian, Niebel Andreas, Gamas Pascal
Laboratoire des Interactions Plantes Micro-Organismes, Unité Mixte de Recherche, Centre National de la Recherche Scientifique-Institut National de la Recherche Agronomique 2594/441, F- 31320 Castanet Tolosan, France.
Plant Cell. 2008 Oct;20(10):2696-713. doi: 10.1105/tpc.108.059857. Epub 2008 Oct 31.
Mechanisms regulating legume root nodule development are still poorly understood, and very few regulatory genes have been cloned and characterized. Here, we describe EFD (for ethylene response factor required for nodule differentiation), a gene that is upregulated during nodulation in Medicago truncatula. The EFD transcription factor belongs to the ethylene response factor (ERF) group V, which contains ERN1, 2, and 3, three ERFs involved in Nod factor signaling. The role of EFD in the regulation of nodulation was examined through the characterization of a null deletion mutant (efd-1), RNA interference, and overexpression studies. These studies revealed that EFD is a negative regulator of root nodulation and infection by Rhizobium and that EFD is required for the formation of functional nitrogen-fixing nodules. EFD appears to be involved in the plant and bacteroid differentiation processes taking place beneath the nodule meristem. We also showed that EFD activated Mt RR4, a cytokinin primary response gene that encodes a type-A response regulator. We propose that EFD induction of Mt RR4 leads to the inhibition of cytokinin signaling, with two consequences: the suppression of new nodule initiation and the activation of differentiation as cells leave the nodule meristem. Our work thus reveals a key regulator linking early and late stages of nodulation and suggests that the regulation of the cytokinin pathway is important both for nodule initiation and development.
调节豆科植物根瘤发育的机制仍未被充分理解,仅有极少数调控基因被克隆和鉴定。在此,我们描述了EFD(结节分化所需的乙烯反应因子),这是一个在蒺藜苜蓿结瘤过程中上调的基因。EFD转录因子属于乙烯反应因子(ERF)第V组,该组包含ERN1、2和3,这三个ERF参与根瘤菌因子信号传导。通过对一个无效缺失突变体(efd-1)的鉴定、RNA干扰和过表达研究,探究了EFD在结瘤调控中的作用。这些研究表明,EFD是根瘤形成和根瘤菌感染的负调控因子,并且EFD是形成功能性固氮根瘤所必需的。EFD似乎参与了在根瘤分生组织下方发生的植物和类菌体分化过程。我们还表明,EFD激活了Mt RR4,这是一个细胞分裂素初级反应基因,编码一种A型反应调节因子。我们提出,EFD对Mt RR4的诱导导致细胞分裂素信号传导的抑制,产生两个结果:抑制新根瘤的起始,以及当细胞离开根瘤分生组织时激活分化。因此,我们的工作揭示了一个连接结瘤早期和晚期的关键调节因子,并表明细胞分裂素途径的调节对根瘤的起始和发育都很重要。