PLISUS · Plant Lipids Signalling Under Drought and Salt Stresses
Horizon 2020 — Marie Skłodowska-Curie Actions
- Duration
- 2021-05-03 → 2023-05-02
- EU contribution
- €172,932
- Participants
- 1
- Scheme
- MSCA-IF
Lines connect the coordinator with its partners.
Results in brief
Plant Lipids Signalling Under Drought and Salt Stresses
Drought, cold and salt stress constitute key factors influencing plant growth, development and crop productivity. A key aspect of these stress processes is the biosynthesis and delivery mechanisms of the newly synthesized lipid species towards the appropriate subcellular membranes. Previous studies have demonstrated that Arabidopsis SYT1 (Synaptotagmin 1) is an ER-PM (endoplasmic reticulum – plasma membrane) tether component essential for proper Ca2+-dependent stress tolerance. Recently, we have demonstrated that SYT1 maintains diacylglycerol homeostasis during abiotic stress at the ER-PM contact sites. Moreover, new data have demonstrated that double mutant syt1/syt3 is lethal under cold conditions pointing out a defect in the endocytic machinery. The research objective of this Marie Curie fellowship was to determine the role of SYT complex has on lipid homeostasis and endocytic machinery related to cold, drought and salt stresses at the cellular level, using a combination of mutant analysis, cellular biology, lipidomics and biochemical approaches. According to FAO (Food and Agriculture Organization of United Nations), the findings in this project will have potential practical applications since water scarcity, low temperatures and high salinity are three major factors limiting the geographical locations suitable for growing crop and horticultural plants and periodically account for significant losses in plant productivity.
Data: CORDIS, © European Union
Project objective
Drought and salt stresses constitutes key factors influencing plant growth, development and crop productivity. A key aspect of the drought and salt stress processes is the biosynthesis and delivery mechanisms of the newly synthesized lipid species towards the appropriate subcellular membranes. Previous studies in Prof Botella´s lab (supervisor) have demonstrated that Arabidopsis SYT1 (Synaptotagmin 1) is an ER-PM (endoplasmic reticulum – plasma membrane) tether component essential for proper Ca2+-dependent stress tolerance. Recently, his group has reported a tethering complex SYT1/SYT5/CLB1 (Ca dependent lipid binding protein 1) which responds to environmental stresses. The research objective of this proposal is to determine the role of SYT1/SYT5/CLB1 complex has on lipid homeostasis related to drought and salt stresses at the cellular level, using a combination of mutant analysis, cellular biology, lipidomics and biochemical approaches. According to FAO (Food and Agriculture Organization of United Nations), the findings in this project will have potential practical applications since water scarcity and high salinity are two major factors limiting the geographical locations suitable for growing crop and horticultural plants and periodically account for significant losses in plant productivity. The researcher has wide experience in Plant Lipids. In recent years, he has successfully worked in two of the world´s leading groups for plant lipids research. The host research group is one of the world-leading groups in plant responses to abiotic stress research. This inter-disciplinary European Fellowship will exploit the complementary competencies and technologies available at the beneficiary to extend the competence of the applicant, particularly in protein-interaction techniques and management skills. This prestigious fellowship will definitely contribute to his career prospects, obtaining future positions and developing new research lines as an independent researcher.
Original text from CORDIS.
Participants
- UNIVERSIDAD DE MALAGA · MALAGACoordinatorSpain
Links
Data: CORDIS, © European Union
