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Differential accumulation of pelargonidin glycosides in petals at three different developmental stages of the orange-flowered gentian (Gentiana lutea L. var. aurantiaca)

机译:桔梗龙胆(Gentiana lutea L. var。aurantiaca)三个不同发育阶段的花瓣中pelargonidin苷的差异积累

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摘要

Corolla color in Gentiana lutea L. exhibits a yellow/orange variation. We previously demonstrated that the orange petal color of G. lutea L. var. aurantiaca is predominantly caused by newly synthesized pelargonidin glycosides that confer a reddish hue to the yellow background color, derived from the carotenoids. However, the anthocyanin molecules of these pelargonidin glycosides are not yet fully identified and characterized. Here, we investigated the regulation, content and type of anthocyanins determining the petal coloration of the orange-flowered G. lutea L. var. aurantiaca. Anthocyanins from the petals of G. lutea L. var. aurantiaca were characterized and quantified by HPLC-ESI-MS/MS (High-performance liquid chromatography-electrospray ionization-tandem mass spectrometry) coupled with a diode array detector in flowers at three different stages of development (S1, S3 and S5). Eleven pelargonidin derivatives were identified in the petals of G. lutea L. var. aurantiaca for the first time, but quantitative and qualitative differences were observed at each developmental stage. The highest levels of these pelargonidin derivatives were reached at the fully open flower stage (S5) where all anthocyanins were detected. In contrast, not all the anthocyanins were detected at the budlet stage (S1) and mature bud stage (S3) and those corresponded to more complex pelargonidin derivatives. The major pelargonidin derivatives found at all the stages were pelargonidin 3-O-glucoside, pelargonidin 3,5-O-diglucoside and pelargonidin 3-O-rutinoside. Furthermore, the expression of DFR (dihydroflavonol 4-reductase), ANS (anthocyanidin synthase), 3GT (UDP-glucose:flavonoid 3-O-glucosyltransferase), 5GT (UDP-glucose:flavonoid 5-O-glucosyltransferase) and 5AT (anthocyanin 5-aromatic acyltransferase) genes was analyzed in the petals of three developmental stages, showing that the expression level of DFR, ANS and 3GT parallels the accumulation of the pelargonidin glucosides. Overall, this study enhances the knowledge of the biochemical basis of flower coloration in Gentiana species, and lays a foundation for breeding of flower color and genetic variation studies on Gentiana varieties.
机译:龙胆Gentiana lutea L.的花冠颜色呈现黄色/橙色变化。先前我们证明了G. lutea L. var。的橙色花瓣颜色。 aurantiaca主要是由新合成的pelargonidin糖苷引起的,这些糖苷赋予类胡萝卜素黄色背景色以红色调。但是,这些pelargonidin糖苷的花色苷分子尚未完全鉴定和表征。在这里,我们研究了决定花色桔梗G. lutea L. var花瓣着色的花色苷的含量,含量和类型。极光。 G. lutea L. var。的花瓣中的花色苷。通过HPLC-ESI-MS / MS(高效液相色谱-电喷雾电离串联质谱法)和二极管阵列检测器在三个不同的发育阶段(S1,S3和S5),对aurantica进行了表征和定量。在G. lutea L. var。的花瓣中鉴定出11种pelargonidin衍生物。首次出现aurantiaca,但在每个发育阶段均观察到数量和质量上的差异。这些pelargonidin衍生物的最高水平在检测到所有花色苷的完全开放花期(S5)达到。相反,并不是在花蕾阶段(S1)和成熟芽阶段(S3)都检测到所有花色苷,而对应于更复杂的pelargonidin衍生物。在所有阶段发现的主要pelargonidin衍生物是pelargonidin 3-O-葡糖苷,pelargonidin 3,5-O-diglucoside和pelargonidin 3-O-芸香苷。此外, DFR 二氢黄酮醇4-还原酶), ANS 花青素合酶),的表达3GT UDP-葡萄糖类黄酮3-O-葡萄糖基转移酶), 5GT UDP-葡萄糖在三个发育阶段的花瓣中分析了>:类黄酮5-O-葡萄糖基转移酶)和 5AT 花色素苷5-芳香族酰基转移酶)基因,表明 DFR ANS 3GT 的表达水平与pelargonidin糖苷的积累平行。总体而言,该研究提高了对龙胆属花色的生化基础的认识,为龙胆属品种的花色育种和遗传变异研究奠定了基础。

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