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Detection of betacyanin in red-tube spinach (Spinacia oleracea) and its biofortification by strategic hydroponics

机译:战略性水培法检测红管菠菜中甜菜青素的含量及其生物强化作用

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摘要

Betacyanins have been reported as water-soluble, nitrogenous pigments found in the order Caryophyllales, and they are known for powerful natural antioxidant. The biofortification of secondary metabolites such as anthocyanins and betacyanins has recently been performed in food crops by metabolic engineering through genetic modification. However, the distribution of genetically modified foods is strictly regulated. Therefore, we aimed to develop a new method for biofortifying natural antioxidants, betacyanins, without genetic modification. We first detected the presence of betacyanins in red-tube spinach (Spinacia oleracea) through ultraviolet-visible spectroscopy and mass spectrometry. We then hydroponically cultivated plants in the presence of three candidate compounds for betacyanin biofortification: dopamine, Ca2+, and sucrose. Liquid chromatography–tandem mass spectrometry (LC–MS/MS) and antioxidant activity analyses showed that sucrose was most successful in biofortifying betacyanins, and reverse transcription polymerase chain reaction (RT-PCR) indicated that several genes involved in betacyanin biosynthesis were induced by sucrose. Therefore, strategic hydroponics represents a new approach for cultivating betacyanin-enriched vegetables.
机译:据报道,甜菜素是一种以叶绿素顺序存在的水溶性含氮颜料,它们以强大的天然抗氧化剂而闻名。最近,通过基因改造的代谢工程技术,在粮食作物中进行了次级代谢物(如花青素和β花青素)的生物强化。但是,转基因食品的分配受到严格管制。因此,我们旨在开发一种无需进行基因修饰即可生物强化天然抗氧化剂β-花青素的新方法。我们首先通过紫外可见光谱法和质谱法检测了红管菠菜中的甜菜青素的存在。然后,我们在存在三种用于花青素生物强化的候选化合物(多巴胺,Ca 2 + 和蔗糖)的存在下进行水培栽培。液相色谱-串联质谱法(LC-MS / MS)和抗氧化活性分析表明,蔗糖在生物强化β-花青素方面最成功,而逆转录聚合酶链反应(RT-PCR)表明,蔗糖诱导了多个参与β-花青素生物合成的基因。 。因此,战略性水培法是一种种植富含花青素的蔬菜的新方法。

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