Department of Chemistry, University of Warwick, Coventry, UK.
Metallomics. 2010 Aug;2(8):510-29. doi: 10.1039/c004880a. Epub 2010 Jul 7.
The handling of trace elements by plants plays a fundamental role in food security and safety. Therefore, there is a need to understand the mechanisms that govern metal ion trafficking in plants. The past decade has seen an immense expansion of knowledge on metal ion transport in a variety of biological systems including plants, but as for other organisms, the mechanisms for intracellular zinc trafficking remain enigmatic. The current report highlights recent advances in understanding zinc transport in plants and in identifying the biomolecules involved in this process. A particular focus is put on pinpointing determinants for zinc specificity, and we also highlight areas in need of development. Reliable experimental speciation data are a first step towards systems biology approaches to mineral nutrition in plants-but there is also a need to understand molecular details. One intriguing question, in particular in the context of predicting protein function, concerns how discrimination between metal ions in a biological system functions.
植物对微量元素的处理在食品安全和安全中起着至关重要的作用。因此,需要了解控制金属离子在植物中运输的机制。过去十年,人们对包括植物在内的各种生物系统中的金属离子转运机制有了极大的认识,但与其他生物一样,细胞内锌转运的机制仍然很神秘。本报告重点介绍了在理解植物中锌转运以及鉴定参与该过程的生物分子方面的最新进展。特别关注的是确定锌特异性决定因素,我们还强调了需要发展的领域。可靠的实验形态数据是实现植物矿物质营养系统生物学方法的第一步——但也需要了解分子细节。一个有趣的问题,特别是在预测蛋白质功能的背景下,涉及到生物系统中如何区分金属离子。