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Conversion of Exogenous Cholesterol into Glycoalkaloids in Potato Shoots Using Two Methods for Sterol Solubilisation

机译:使用两种固醇增溶方法将马铃薯中的外源胆固醇转化为糖生物碱

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摘要

Steroidal glycoalkaloids (SGA) are toxic secondary metabolites naturally occurring in the potato, as well as in certain other Solanaceous plant species, such as tomato, eggplant and pepper. To investigate the steroidal origin of SGA biosynthesis, cut potato shoots were fed cholesterol labelled with deuterium (D) in the sterol ring structure (D5- or D6-labelled), or side chain (D7-labelled), and analysed after three or five weeks. The labelled cholesterol and presence of D-labelled SGA were analysed by GC-MS and LC-MS/MS, respectively. When feeding D-labelled cholesterol solubilised in Tween-80, labelled cholesterol in free form became present in both leaves and stems, although the major part was recovered as steryl esters. Minor amounts of D-labelled SGA (α-solanine and α-chaconine) were identified in cholesterol-treated shoots, but not in blank controls, or in shoots fed D6-27-hydroxycholesterol. Solubilising the labelled cholesterol in methyl-β-cyclodextrin instead of Tween-80 increased the levels of labelled SGA up to 100-fold, and about 1 mole% of the labelled cholesterol was recovered as labelled SGA in potato leaves. Both side chain and ring structure D labels were retained in SGA, showing that the entire cholesterol molecule is converted to SGA. However, feeding side chain D7-labelled cholesterol resulted in D5-labelled SGA, indicating that two hydrogen atoms were released during formation of the SGA nitrogen-containing ring system. Feeding with D7-sitosterol did not produce any labelled SGA, indicating that cholesterol is a specific SGA precursor. In conclusion, we have demonstrated a superior performance of methyl-β-cyclodextrin for delivery of cholesterol in plant tissue feeding experiments, and given firm evidence for cholesterol as a specific sterol precursor of SGA in potato.
机译:甾体类生物碱(SGA)是有毒的次生代谢产物,天然存在于马铃薯以及某些其他茄科植物中,例如番茄,茄子和胡椒。为了研究SGA生物合成的甾体起源,向切好的马铃薯嫩芽饲喂在固醇环结构(D5-或D6标记)或侧链(D7标记)中标记有氘(D)的胆固醇,并在三或五个后进行分析周。分别通过GC-MS和LC-MS / MS分析标记的胆固醇和D标记的SGA的存在。当饲喂溶解在Tween-80中的D标记胆固醇时,游离形式的标记胆固醇以游离形式存在于叶和茎中,尽管大部分被回收为甾醇酯。在胆固醇处理的芽中鉴定出少量的D标记SGA(α-茄碱和α-查茄碱),但空白对照或饲喂D6-27-羟基胆固醇的芽中未检出。在甲基-β-环糊精中代替Tween-80溶解标记的胆固醇,将标记的SGA的水平提高了100倍,并且马铃薯叶中的标记的SGA回收了约1摩尔%的标记的胆固醇。侧链和环结构D标签都保留在SGA中,表明整个胆固醇分子都转化为SGA。但是,喂入侧链D7标记的胆固醇会生成D5标记的SGA,表明在形成SGA含氮环系统的过程中释放了两个氢原子。饲喂D7-谷固醇不会产生任何标记的SGA,表明胆固醇是特定的SGA前体。总之,我们已经证明了甲基-β-环糊精在植物组织饲养实验中对胆固醇的传递具有优越的性能,并为胆固醇作为马铃薯中SGA的特定固醇前体提供了有力的证据。

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