Group of Biotechnology of Pharmaceutical Plants, Laboratory of Pharmacognosy, Department of Pharmaceutical Sciences, Aristotle University of Thessaloniki, 54124 Thessaloniki, Macedonia, Greece.
Institute of Applied Biosciences, Centre for Research & Technology, Hellas (CERTH), 57001 Thessaloniki, Macedonia, Greece.
J Exp Bot. 2024 Jun 7;75(11):3431-3451. doi: 10.1093/jxb/erae098.
Labdane-related diterpenoids (LRDs), a subgroup of terpenoids, exhibit structural diversity and significant commercial and pharmacological potential. LRDs share the characteristic decalin-labdanic core structure that derives from the cycloisomerization of geranylgeranyl diphosphate (GGPP). Labdanes derive their name from the oleoresin known as 'Labdanum', 'Ladano', or 'Aladano', used since ancient Greek times. Acetylated labdanes, rarely identified in plants, are associated with enhanced biological activities. Chemical analysis of Cistus creticus subsp. creticus revealed labda-7,13(E)-dien-15-yl acetate and labda-7,13(E)-dien-15-ol as major constituents. In addition, novel labdanes such as cis-abienol, neoabienol, ent-copalol, and one as yet unidentified labdane-type diterpenoid were detected for the first time. These compounds exhibit developmental regulation, with higher accumulation observed in young leaves. Using RNA-sequencing (RNA-seq) analysis of young leaf trichomes, it was possible to identify, clone, and eventually functionally characterize labdane-type diterpenoid synthase (diTPS) genes, encoding proteins responsible for the production of labda-7,13(E)-dien-15-yl diphosphate (endo-7,13-CPP), labda-7,13(E)-dien-15-yl acetate, and labda-13(E)-ene-8α-ol-15-yl acetate. Moreover, the reconstitution of labda-7,13(E)-dien-15-yl acetate and labda-13(E)-ene-8α-ol-15-yl acetate production in yeast is presented. Finally, the accumulation of LRDs in different plant tissues showed a correlation with the expression profiles of the corresponding genes.
Labdane 相关二萜(LRD)是萜类化合物的一个亚组,具有结构多样性和重要的商业和药理学潜力。LRD 具有从香叶基香叶基二磷酸(GGPP)环化异构化衍生而来的特征 decalin-labdanic 核心结构。Labdanes 得名于自古以来就被使用的油性树脂“Labdanum”、“Ladano”或“Aladano”。在植物中很少被鉴定的乙酰化 labdanes 与增强的生物活性有关。对 Cretan 石南 Cistus creticus 亚种的化学分析表明,labda-7,13(E)-dien-15-yl 乙酸酯和 labda-7,13(E)-dien-15-ol 是主要成分。此外,还首次检测到新型 labdanes,如 cis-abienol、neoabienol、ent-copalol 和一种尚未鉴定的 labdane 型二萜化合物。这些化合物表现出发育调节,在幼叶中积累更高。通过对幼叶毛状体的 RNA 测序(RNA-seq)分析,可以鉴定、克隆并最终功能表征 labdane 型二萜合酶(diTPS)基因,这些基因编码负责产生 labda-7,13(E)-dien-15-yl 二磷酸(endo-7,13-CPP)、labda-7,13(E)-dien-15-yl 乙酸酯和 labda-13(E)-ene-8α-ol-15-yl 乙酸酯的蛋白质。此外,还提出了在酵母中重新合成 labda-7,13(E)-dien-15-yl 乙酸酯和 labda-13(E)-ene-8α-ol-15-yl 乙酸酯的生产。最后,不同植物组织中 LRD 的积累与相应基因的表达谱呈正相关。