Becker Annette, Yamada Yasuyuki, Sato Fumihiko
Plant Development Lab, Institute of Botany, Hustus-Liebig-University, Giessen, Germany.
Laboratory of Medicinal Cell Biology, Kobe Pharmaceutical University, Kobe, Japan.
Front Plant Sci. 2023 Mar 2;14:1084358. doi: 10.3389/fpls.2023.1084358. eCollection 2023.
California poppy or golden poppy () is the iconic state flower of California, with native ranges from Northern California to Southwestern Mexico. It grows well as an ornamental plant in Mediterranean climates, but it might be invasive in many parts of the world. California poppy was also highly prized by Native Americans for its medicinal value, mainly due to its various specialized metabolites, especially benzylisoquinoline alkaloids (BIAs). As a member of the Ranunculales, the sister lineage of core eudicots it occupies an interesting phylogenetic position. California poppy has a short-lived life cycle but can be maintained as a perennial. It has a comparatively simple floral and vegetative morphology. Several genetic resources, including options for genetic manipulation and a draft genome sequence have been established already with many more to come. Efficient cell and tissue culture protocols are established to study secondary metabolite biosynthesis and its regulation. Here, we review the use of California poppy as a model organism for plant genetics, with particular emphasis on the evolution of development and BIA biosynthesis. In the future, California poppy may serve as a model organism to combine two formerly separated lines of research: the regulation of morphogenesis and the regulation of secondary metabolism. This can provide insights into how these two integral aspects of plant biology interact with each other.
加州罂粟或金罂粟()是加利福尼亚州的标志性州花,原产于从北加利福尼亚到墨西哥西南部的地区。它作为一种观赏植物在地中海气候中生长良好,但在世界许多地方可能具有侵入性。加州罂粟因其药用价值也受到美洲原住民的高度重视,这主要归功于其各种特殊的代谢产物,尤其是苄基异喹啉生物碱(BIAs)。作为毛茛目(核心真双子叶植物的姊妹谱系)的一员,它占据着一个有趣的系统发育位置。加州罂粟的生命周期较短,但可以作为多年生植物维持。它具有相对简单的花和营养形态。已经建立了几种遗传资源,包括遗传操作选项和基因组草图序列,未来还会有更多。已经建立了高效的细胞和组织培养方案来研究次生代谢产物的生物合成及其调控。在这里,我们综述了加州罂粟作为植物遗传学模式生物的应用,特别强调了发育和BIA生物合成的进化。未来,加州罂粟可能作为一种模式生物,将两个以前分开的研究领域结合起来:形态发生的调控和次生代谢的调控。这可以深入了解植物生物学的这两个不可或缺的方面是如何相互作用的。