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| Título: | A Ca2+-sensor switch for tolerance to elevated salt stress in Arabidopsis |
Autor: | Steinhorst, L.; He, G.; Moore, LK.; Schültke S.; Schmitz-Thom, I.; Cao, Y.; Hashimoto, K.; Andrés, Zaida CSIC; Piepenburg, K.; Ragel, Paula CSIC ORCID; Behera, S.; Almutairi, B.O.; Batistic, O.; Wyganowski | Fecha de publicación: | 2022 | Editor: | Cell Press | Citación: | Developmental Cell 57: 2081- 2094 (2022) | Resumen: | Excessive Na+ in soils inhibits plant growth. Here, we report that Na+ stress triggers primary calcium signals specifically in a cell group within the root differentiation zone, thus forming a ¿sodium-sensing niche¿ in Arabidopsis. The amplitude of this primary calcium signal and the speed of the resulting Ca2+ wave dose-dependently increase with rising Na+ concentrations, thus providing quantitative information about the stress intensity encountered. We also delineate a Ca2+-sensing mechanism that measures the stress intensity in order to mount appropriate salt detoxification responses. This is mediated by a Ca2+-sensor-switch mechanism, in which the sensors SOS3/CBL4 and CBL8 are activated by distinct Ca2+-signal amplitudes. Although the SOS3/CBL4-SOS2/CIPK24-SOS1 axis confers basal salt tolerance, the CBL8-SOS2/CIPK24-SOS1 module becomes additionally activated only in response to severe salt stress. Thus, Ca2+-mediated translation of Na+ stress intensity into SOS1 Na+/H+ antiporter activity facilitates fine tuning of the sodium extrusion capacity for optimized salt-stress tolerance. | Versión del editor: | http://dx.doi.org/10.1016/j.devcel.2022.08.001 | URI: | http://hdl.handle.net/10261/364173 | Identificadores: | doi: 10.1016/j.devcel.2022.08.001 issn: 1878-1551 |
Licencia de uso: | Creative Commons Attribution 4.0 International License. |
| Aparece en las colecciones: | (IBVF) Artículos |
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| develpmental.pdf | 3,92 MB | Adobe PDF | ![]() Visualizar/Abrir |
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