An SHR–SCR module specifies legume cortical cell fate to enable nodulation
Autor: | Liying Lan, Dong Wang, Yuchen Miao, Yayun Zhu, J. R. Shi, Jun Yang, Wentao Dong, Xiaowei Zhang, Yuru Wang, H. L. Dai, Chunhua Wang, Nan Yu, Jinpeng Gao, Huizhong Chang, Ertao Wang, Weibing Yang, Chunpeng Song, Shuang Wu, Lin Xu, Zuhua He |
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Rok vydání: | 2020 |
Předmět: |
0106 biological sciences
0301 basic medicine Multidisciplinary Endosymbiosis biology Cell division Cellular differentiation Plant Root Nodulation food and beverages biology.organism_classification behavioral disciplines and activities 01 natural sciences Medicago truncatula Rhizobia Cell biology 03 medical and health sciences 030104 developmental biology Symbiosis Arabidopsis thaliana 010606 plant biology & botany |
Zdroj: | Nature. 589:586-590 |
ISSN: | 1476-4687 0028-0836 |
DOI: | 10.1038/s41586-020-3016-z |
Popis: | Legumes, unlike other plants, have the ability to establish symbiosis with nitrogen-fixing rhizobia. It has been theorized that a unique property of legume root cortical cells enabled the initial establishment of rhizobial symbiosis1–3. Here we show that a SHORTROOT–SCARECROW (SHR–SCR) stem cell program in cortical cells of the legume Medicago truncatula specifies their distinct fate. Regulatory elements drive the cortical expression of SCR, and stele-expressed SHR protein accumulates in cortical cells of M. truncatula but not Arabidopsis thaliana. The cortical SHR–SCR network is conserved across legume species, responds to rhizobial signals, and initiates legume-specific cortical cell division for de novo nodule organogenesis and accommodation of rhizobia. Ectopic activation of SHR and SCR in legumes is sufficient to induce root cortical cell division. Our work suggests that acquisition of the cortical SHR–SCR module enabled cell division coupled to rhizobial infection in legumes. We propose that this event was central to the evolution of rhizobial endosymbiosis. Repurposing of an SHR–SCR stem cell program in the legume root cortex enables rhizobial symbiosis. |
Databáze: | OpenAIRE |
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