The New Zealand Institute for Plant & Food Research Limited (PFR), Private Bag 92 169 Auckland, New Zealand.
J Exp Bot. 2012 Sep;63(15):5437-50. doi: 10.1093/jxb/ers193. Epub 2012 Aug 1.
Proanthocyanidins (PAs) are products of the flavonoid pathway, which also leads to the production of anthocyanins and flavonols. Many flavonoids have antioxidant properties and may have beneficial effects for human health. PAs are found in the seeds and fruits of many plants. In apple fruit (Malus × domestica Borkh.), the flavonoid biosynthetic pathway is most active in the skin, with the flavan-3-ols, catechin, and epicatechin acting as the initiating units for the synthesis of PA polymers. This study examined the genes involved in the production of PAs in three apple cultivars: two heritage apple cultivars, Hetlina and Devonshire Quarrenden, and a commercial cultivar, Royal Gala. HPLC analysis shows that tree-ripe fruit from Hetlina and Devonshire Quarrenden had a higher phenolic content than Royal Gala. Epicatechin and catechin biosynthesis is under the control of the biosynthetic enzymes anthocyanidin reductase (ANR) and leucoanthocyanidin reductase (LAR1), respectively. Counter-intuitively, real-time quantitative PCR analysis showed that the expression levels of Royal Gala LAR1 and ANR were significantly higher than those of both Devonshire Quarrenden and Hetlina. This suggests that a compensatory feedback mechanism may be active, whereby low concentrations of PAs may induce higher expression of gene transcripts. Further investigation is required into the regulation of these key enzymes in apple.
原花青素(PAs)是类黄酮途径的产物,该途径还会导致花青素和类黄酮的产生。许多类黄酮具有抗氧化特性,可能对人体健康有益。PAs 存在于许多植物的种子和果实中。在苹果果实(Malus × domestica Borkh.)中,类黄酮生物合成途径在果皮中最为活跃,黄烷-3-醇、儿茶素和表儿茶素作为 PA 聚合物合成的起始单元。本研究检测了三个苹果品种中参与 PAs 生产的基因:两个传统苹果品种 Hetlina 和 Devonshire Quarrenden,以及一个商业品种 Royal Gala。HPLC 分析表明,Hetlina 和 Devonshire Quarrenden 的树熟果实的酚类含量高于 Royal Gala。表儿茶素和儿茶素的生物合成分别受生物合成酶花青素还原酶(ANR)和无色花色素还原酶(LAR1)的控制。反直觉的是,实时定量 PCR 分析表明,Royal Gala 的 LAR1 和 ANR 的表达水平明显高于 Devonshire Quarrenden 和 Hetlina。这表明可能存在一种补偿反馈机制,即 PAs 浓度低可能会诱导基因转录本的高表达。需要进一步研究苹果中这些关键酶的调控。