Cell surface receptor kinase FERONIA linked to nutrient sensor TORC signaling controls root hair growth at low temperature linked to low nitrate in Arabidopsis thaliana

Author:

Pacheco Javier Martínez1ORCID,Song Limei23,Kuběnová Lenka4,Ovečka Miroslav4ORCID,Berdion Gabarain Victoria1ORCID,Peralta Juan Manuel1ORCID,Lehuedé Tomás Urzúa56,Ibeas Miguel Angel56,Ricardi Martiniano M.7ORCID,Zhu Sirui2,Shen Yanan2,Schepetilnikov Mikhail8ORCID,Ryabova Lyubov A.8ORCID,Alvarez José M.59ORCID,Gutierrez Rodrigo A.91011ORCID,Grossmann Guido1213ORCID,Šamaj Jozef4ORCID,Yu Feng2ORCID,Estevez José M.1569ORCID

Affiliation:

1. Fundación Instituto Leloir and IIBBA‐CONICET Av Patricias Argentinas 435 Buenos Aires C1405BWE Argentina

2. State Key Laboratory of Chemo/Biosensing and Chemometrics, College of Biology, and Hunan Key Laboratory of Plant Functional Genomics and Developmental Regulation Hunan University Changsha 410082 China

3. Laborarory of Species Interaction and Biological Invasion, School of Life Science Hebei University Baoding 071002 China

4. Department of Biotechnology, Faculty of Science Palacký University Olomouc Šlechtitelů 27 783 71 Olomouc Czech Republic

5. Centro de Biotecnología Vegetal, Facultad de Ciencias de la Vida Universidad Andres Bello 8370186 Santiago Chile

6. ANID – Millennium Nucleus for the Development of Super Adaptable Plants (MN‐SAP) 8331150 Santiago Chile

7. Instituto de Fisiología, Biología Molecular y Neurociencias (IFIBYNE‐UBA‐CONICET) and Facultad de Ciencias Exactas y Naturales Universidad de Buenos Aires, Ciudad Universitaria C1428EGA Buenos Aires Argentina

8. Institut de Biologie Moléculaire des Plantes CNRS, UPR 2357, Université de Strasbourg 67084 Strasbourg France

9. ANID – Millennium Institute for Integrative Biology (iBio) 7500000 Santiago Chile

10. Millennium Institute Center for Genome Regulation 6904411 Santiago Chile

11. Departamento de Genética Molecular y Microbiología, Facultad de Ciencias Biológicas Pontificia Universidad Católica de Chile 8331150 Santiago Chile

12. Institute of Cell and Interaction Biology Heinrich‐Heine‐University Düsseldorf 40225 Düsseldorf Germany

13. Cluster of Excellence in Plant Sciences Heinrich‐Heine‐University Düsseldorf 40225 Düsseldorf Germany

Abstract

Summary Root hairs (RH) are excellent model systems for studying cell size and polarity since they elongate several hundred‐fold their original size. Their tip growth is determined both by intrinsic and environmental signals. Although nutrient availability and temperature are key factors for a sustained plant growth, the molecular mechanisms underlying their sensing and downstream signaling pathways remain unclear. We use genetics to address the roles of the cell surface receptor kinase FERONIA (FER) and the nutrient sensing TOR Complex 1 (TORC) in RH growth. We identified that low temperature (10°C) triggers a strong RH elongation response in Arabidopsis thaliana involving FER and TORC. We found that FER is required to perceive limited nutrient availability caused by low temperature. FERONIA interacts with and activates TORC‐downstream components to trigger RH growth. In addition, the small GTPase Rho of plants 2 (ROP2) is also involved in this RH growth response linking FER and TOR. We also found that limited nitrogen nutrient availability can mimic the RH growth response at 10°C in a NRT1.1‐dependent manner. These results uncover a molecular mechanism by which a central hub composed by FER‐ROP2‐TORC is involved in the control of RH elongation under low temperature and nitrogen deficiency.

Funder

Agencia Nacional de Promoción Científica y Tecnológica

Deutsche Forschungsgemeinschaft

Fondo Nacional de Desarrollo Científico y Tecnológico

National Natural Science Foundation of China

Publisher

Wiley

Subject

Plant Science,Physiology

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