Alagna Fiammetta, Geu-Flores Fernando, Kries Hajo, Panara Francesco, Baldoni Luciana, O'Connor Sarah E, Osbourn Anne
From the Departments of Metabolic Biology and; the Institute of Biosciences and Bio-resources, National Research Council (CNR), 06128 Perugia, Italy,.
the Copenhagen Plant Science Centre & Section for Plant Biochemistry, Department of Plant and Environmental Sciences, University of Copenhagen, 1871 Frederiksberg C, Denmark, and.
J Biol Chem. 2016 Mar 11;291(11):5542-5554. doi: 10.1074/jbc.M115.701276. Epub 2015 Dec 26.
The secoiridoids are the main class of specialized metabolites present in olive (Olea europaea L.) fruit. In particular, the secoiridoid oleuropein strongly influences olive oil quality because of its bitterness, which is a desirable trait. In addition, oleuropein possesses a wide range of pharmacological properties, including antioxidant, anti-inflammatory, and anti-cancer activities. In accordance, obtaining high oleuropein varieties is a main goal of molecular breeding programs. Here we use a transcriptomic approach to identify candidate genes belonging to the secoiridoid pathway in olive. From these candidates, we have functionally characterized the olive homologue of iridoid synthase (OeISY), an unusual terpene cyclase that couples an NAD (P)H-dependent 1,4-reduction step with a subsequent cyclization, and we provide evidence that OeISY likely generates the monoterpene scaffold of oleuropein in olive fruits. OeISY, the first pathway gene characterized for this type of secoiridoid, is a potential target for breeding programs in a high value secoiridoid-accumulating species.
裂环烯醚萜类化合物是橄榄(油橄榄)果实中存在的主要一类特殊代谢产物。特别是裂环烯醚萜橄榄苦苷,因其苦味而对橄榄油品质有很大影响,而苦味是一个理想的特性。此外,橄榄苦苷具有广泛的药理特性,包括抗氧化、抗炎和抗癌活性。因此,培育高橄榄苦苷品种是分子育种计划的主要目标。在此,我们采用转录组学方法来鉴定橄榄中属于裂环烯醚萜途径的候选基因。从这些候选基因中,我们对环烯醚萜合酶(OeISY)的橄榄同源物进行了功能表征,OeISY是一种不同寻常的萜类环化酶,它将一个依赖于NAD(P)H的1,4-还原步骤与随后的环化反应耦合在一起,并且我们提供了证据表明OeISY可能在橄榄果实中生成橄榄苦苷的单萜骨架。OeISY是首个针对此类裂环烯醚萜进行表征的途径基因,在一个高价值裂环烯醚萜积累物种的育种计划中是一个潜在靶点。