Interplay between membrane proteins and membrane protein-lipid pertaining to plant salinity stress
- PMID: 37158622
- DOI: 10.1002/cbf.3798
Interplay between membrane proteins and membrane protein-lipid pertaining to plant salinity stress
Abstract
High salinity in agricultural lands is one of the predominant issues limiting agricultural yields. Plants have developed several mechanisms to withstand salinity stress, but the mechanisms are not effective enough for most crops to prevent and persist the salinity stress. Plant salt tolerance pathways involve membrane proteins that have a crucial role in sensing and mitigating salinity stress. Due to a strategic location interfacing two distinct cellular environments, membrane proteins can be considered checkpoints to the salt tolerance pathways in plants. Related membrane proteins functions include ion homeostasis, osmosensing or ion sensing, signal transduction, redox homeostasis, and small molecule transport. Therefore, modulating plant membrane proteins' function, expression, and distribution can improve plant salt tolerance. This review discusses the membrane protein-protein and protein-lipid interactions related to plant salinity stress. It will also highlight the finding of membrane protein-lipid interactions from the context of recent structural evidence. Finally, the importance of membrane protein-protein and protein-lipid interaction is discussed, and a future perspective on studying the membrane protein-protein and protein-lipid interactions to develop strategies for improving salinity tolerance is proposed.
Keywords: lipid; membrane protein; membrane protein-lipid interaction; membrane protein-protein interaction; plant salt tolerance.
© 2023 John Wiley & Sons Ltd.
References
REFERENCES
-
- FAO. Global agriculture towards 2050.
-
- Kumar P, Sharma PK. Soil salinity and food security in India. Front Sustain Food Syst. 2020;4:174.
-
- Van Zelm E, Zhang Y, Testerink C. Salt tolerance mechanisms of plants. Annu Rev Plant Biol. 2020;71:403-433.
-
- Assaha DVM, Ueda A, Saneoka H, Al-Yahyai R, Yaish MW. The role of Na+ and K+ transporters in salt stress adaptation in glycophytes. Front Physiol. 2017;8:509.
-
- Ali A, Raddatz N, Pardo JM, Yun DJ. HKT sodium and potassium transporters in Arabidopsis thaliana and related halophyte species. Physiol Plant. 2021;171:546-558.
Publication types
MeSH terms
Substances
Grants and funding
LinkOut - more resources
Full Text Sources
