Slama Inès, Abdelly Chedly, Bouchereau Alain, Flowers Tim, Savouré Arnould
Laboratoire des Plantes Extremophiles, Centre de Biotechnologie de Borj-Cedria (CBBC), BP 901, Hammam-Lif 2050, Tunisia, UMR 1349 IGEPP, INRA/Agrocampus Ouest/Université de Rennes 1, Domaine de la Motte, BP 35327, 35653 Le Rheu Cedex, France, School of Life Sciences, University of Sussex, Falmer, Brighton, Sussex BN1 9QG, UK and Sorbonne Universités, UPMC Université Paris 06, Adaptation de Plantes aux Contraintes Environnementales, URF5, Case 156, 4 place Jussieu, F-75252 Paris cedex 05, France.
Laboratoire des Plantes Extremophiles, Centre de Biotechnologie de Borj-Cedria (CBBC), BP 901, Hammam-Lif 2050, Tunisia, UMR 1349 IGEPP, INRA/Agrocampus Ouest/Université de Rennes 1, Domaine de la Motte, BP 35327, 35653 Le Rheu Cedex, France, School of Life Sciences, University of Sussex, Falmer, Brighton, Sussex BN1 9QG, UK and Sorbonne Universités, UPMC Université Paris 06, Adaptation de Plantes aux Contraintes Environnementales, URF5, Case 156, 4 place Jussieu, F-75252 Paris cedex 05, France
Ann Bot. 2015 Feb;115(3):433-47. doi: 10.1093/aob/mcu239. Epub 2015 Jan 5.
Osmolytes are low-molecular-weight organic solutes, a broad group that encompasses a variety of compounds such as amino acids, tertiary sulphonium and quaternary ammonium compounds, sugars and polyhydric alcohols. Osmolytes are accumulated in the cytoplasm of halophytic species in order to balance the osmotic potential of the Na(+) and Cl(-) accumulated in the vacuole. The advantages of the accumulation of osmolytes are that they keep the main physiological functions of the cell active, the induction of their biosynthesis is controlled by environmental cues, and they can be synthesized at all developmental stages. In addition to their role in osmoregulation, osmolytes have crucial functions in protecting subcellular structures and in scavenging reactive oxygen species.
This review discusses the diversity of osmolytes among halophytes and their distribution within taxonomic groups, the intrinsic and extrinsic factors that influence their accumulation, and their role in osmoregulation and osmoprotection. Increasing the osmolyte content in plants is an interesting strategy to improve the growth and yield of crops upon exposure to salinity. Examples of transgenic plants as well as exogenous applications of some osmolytes are also discussed. Finally, the potential use of osmolytes in protein stabilization and solvation in biotechnology, including the pharmaceutical industry and medicine, are considered.
渗透剂是低分子量有机溶质,这一宽泛的类别包含多种化合物,如氨基酸、叔锍和季铵化合物、糖类及多元醇。渗透剂在盐生植物的细胞质中积累,以平衡液泡中积累的Na⁺和Cl⁻的渗透势。渗透剂积累的优势在于它们能保持细胞的主要生理功能活跃,其生物合成的诱导受环境信号控制,且能在所有发育阶段合成。除了在渗透调节中的作用,渗透剂在保护亚细胞结构和清除活性氧方面也具有关键功能。
本综述讨论了盐生植物中渗透剂的多样性及其在分类群中的分布、影响其积累的内在和外在因素,以及它们在渗透调节和渗透保护中的作用。提高植物中的渗透剂含量是一种在盐胁迫下提高作物生长和产量的有趣策略。还讨论了转基因植物的实例以及一些渗透剂的外源应用。最后,考虑了渗透剂在生物技术(包括制药行业和医学)中蛋白质稳定化和溶剂化方面的潜在用途。