DynaMo Center of Excellence, Copenhagen Plant Science Center, Department of Plant and Environmental Sciences, University of Copenhagen, Denmark.
Nat Prod Rep. 2022 Jul 20;39(7):1483-1491. doi: 10.1039/d2np00016d.
Covering: up to 2022Plants are organic chemists par excellence and produce an amazing array of diverse chemical structures. Whereas primary metabolites are essential for all living organisms and highly conserved, the specialized metabolites constitute the taxonomy-specific chemical languages that are key for fitness and survival. Allocation of plants' wide array of specialized metabolites in patterns that are fine-tuned spatiotemporally is essential for adaptation to the ever-changing environment and requires transport processes. Thus advancing our knowledge about transporters is important as also evidenced by the increasing number of transporters that control key quality traits in agriculture. In this review, we will highlight recently identified transporters and new insights related to already known transporters of plant specialized metabolites. Focus will be on the transport mechanism revealed by the biochemical characterization and how that links to its function .
截至 2022 年
植物是出类拔萃的有机化学家,能够合成种类繁多的化学结构。初级代谢物对所有生物都是必需的,且高度保守,而特殊代谢物则构成了分类学特异性的化学语言,是适应和生存的关键。植物特殊代谢物的广泛分配呈现出精细的时空模式,这对于适应不断变化的环境至关重要,需要运输过程。因此,正如农业中控制关键质量特性的越来越多的转运体所证明的那样,了解转运体对于提高我们的知识水平非常重要。在这篇综述中,我们将重点介绍最近发现的转运体以及与植物特殊代谢物已有转运体相关的新见解。重点将放在生化特性研究揭示的转运机制及其与功能的关系上。