Pinto Edgar, Ferreira Isabel M P L V O
REQUIMTE/Department of Chemical Sciences, Laboratory of Bromatology and Hydrology, Faculty of Pharmacy - University of Porto, Portugal; CISA - Research Centre on Environment and Health, School of Allied Health Sciences, Polytechnic Institute of Porto, Portugal.
REQUIMTE/Department of Chemical Sciences, Laboratory of Bromatology and Hydrology, Faculty of Pharmacy - University of Porto, Portugal.
J Plant Physiol. 2015 May 1;179:64-82. doi: 10.1016/j.jplph.2015.02.010. Epub 2015 Mar 21.
Cation transporters/channels are key players in a wide range of physiological functions in plants, including cell signaling, osmoregulation, plant nutrition and metal tolerance. The recent identification of genes encoding some of these transport systems has allowed new studies toward further understanding of their integrated roles in plant. This review summarizes recent discoveries regarding the function and regulation of the multiple systems involved in cation transport in plant cells. The role of membrane transport in the uptake, distribution and accumulation of cations in plant tissues, cell types and subcellular compartments is described. We also discuss how the knowledge of inter- and intra-species variation in cation uptake, transport and accumulation as well as the molecular mechanisms responsible for these processes can be used to increase nutrient phytoavailability and nutrients accumulation in the edible tissues of plants. The main trends for future research in the field of biofortification are proposed.
阳离子转运蛋白/通道是植物多种生理功能的关键参与者,包括细胞信号传导、渗透调节、植物营养和金属耐受性。最近对编码其中一些转运系统的基因的鉴定,使得人们能够开展新的研究,以进一步了解它们在植物中的综合作用。本综述总结了关于植物细胞中阳离子转运所涉及的多个系统的功能和调节的最新发现。描述了膜转运在植物组织、细胞类型和亚细胞区室中阳离子的吸收、分布和积累中的作用。我们还讨论了如何利用关于阳离子吸收、转运和积累的种间和种内变异以及负责这些过程的分子机制的知识,来提高植物可食用组织中养分的植物有效性和养分积累量。文中还提出了生物强化领域未来研究的主要趋势。