Department of Molecular, Cellular, and Developmental Biology, University of Michigan, 1105 N. University Avenue, Ann Arbor, MI 48109, USA.
Plant J. 2023 Jul;115(1):18-36. doi: 10.1111/tpj.16220. Epub 2023 Apr 13.
Floral scent plays a crucial role in the reproductive process of many plants. Humans have been fascinated by floral scents throughout history, and have transported and traded floral scent products for which they have found multiple uses, such as in food additives, hygiene and perfume products, and medicines. Yet the scientific study of how plants synthesize floral scent compounds began later than studies on most other major plant metabolites, and the first report of the characterization of an enzyme responsible for the synthesis of a floral scent compound, namely linalool in Clarkia breweri, a California annual, appeared in 1994. In the almost 30 years since, enzymes and genes involved in the synthesis of hundreds of scent compounds from multiple plant species have been described. This review recapitulates this history and describes the major findings relating to the various aspects of floral scent biosynthesis and emission, including genes and enzymes and their evolution, storage and emission of scent volatiles, and the regulation of the biochemical processes.
花香在许多植物的繁殖过程中起着至关重要的作用。人类自古以来就对花香着迷,并运输和交易花香产品,这些产品有多种用途,如食品添加剂、卫生和香水产品以及药品。然而,与大多数其他主要植物代谢物的研究相比,植物合成花香化合物的科学研究开始得较晚,1994 年首次报道了一种负责合成花香化合物(即加利福尼亚一年生植物锥花属的沉香醇)的酶的特征。在这近 30 年里,已经描述了来自多种植物的数百种气味化合物合成中涉及的酶和基因。这篇综述回顾了这段历史,并描述了与花香生物合成和排放的各个方面相关的主要发现,包括基因和酶及其进化、气味挥发物的储存和排放,以及生化过程的调节。