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叶苔类油体:陆地植物最早分泌结构的多样性、生物化学和分子细胞生物学。

Liverwort oil bodies: diversity, biochemistry, and molecular cell biology of the earliest secretory structure of land plants.

机构信息

Department of Plant Sciences, University of Cambridge, Cambridge, UK.

Botany Unit, Finnish Museum of Natural History, University of Helsinki, Helsinki, Finland.

出版信息

J Exp Bot. 2022 Jul 16;73(13):4427-4439. doi: 10.1093/jxb/erac134.

Abstract

Liverworts are known for their large chemical diversity. Much of this diversity is synthesized and enclosed within oil bodies (OBs), a synapomorphy of the lineage. OBs contain the enzymes to biosynthesize and store large quantities of sesquiterpenoids and other compounds while limiting their cytotoxicity. Recent important biochemical and molecular discoveries related to OB formation, diversity, and biochemistry allow comparison with other secretory structures of land plants from an evo-devo perspective. This review addresses and discusses the most recent advances in OB origin, development, and function towards understanding the importance of these organelles in liverwort physiology and adaptation to changing environments. Our mapping of OB types and chemical compounds to the current liverwort phylogeny suggests that OBs were present in the most recent common ancestor of liverworts, supporting that OBs evolved as the first secretory structures in land plants. Yet, we require better sampling to define the macroevolutionary pattern governing the ancestral type of OB. We conclude that current efforts to find molecular mechanisms responsible for the morphological and chemical diversity of secretory structures will help understand the evolution of each major group of land plants, and open new avenues in biochemical research on bioactive compounds in bryophytes and vascular plants.

摘要

地钱类植物以其丰富的化学多样性而闻名。这些多样性中的大部分是由油体(OBs)合成和包含的,OBs 是该谱系的一个synapomorphy。OBs 含有合成和储存大量倍半萜类化合物和其他化合物的酶,同时限制其细胞毒性。最近与 OB 形成、多样性和生物化学相关的重要生化和分子发现,允许从进化发育的角度与陆生植物的其他分泌结构进行比较。本综述探讨了 OB 起源、发育和功能的最新进展,以了解这些细胞器在地钱类植物生理学和适应不断变化的环境中的重要性。我们将 OB 类型和化学化合物映射到当前的地钱类植物系统发育,表明 OBs 存在于地钱类植物的最近共同祖先中,支持 OBs 作为陆生植物中最早的分泌结构进化而来。然而,我们需要更好的采样来定义控制 OB 祖先类型的宏观进化模式。我们得出结论,目前寻找负责分泌结构形态和化学多样性的分子机制的努力将有助于理解每个陆生植物主要类群的进化,并为研究生物活性化合物的生化研究开辟新途径。

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