首页> 外文期刊>Journal of Plant Physiology >Enhanced bioactive compound production in broccoli cells due to coronatine and methyl jasmonate is linked to antioxidative metabolism
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Enhanced bioactive compound production in broccoli cells due to coronatine and methyl jasmonate is linked to antioxidative metabolism

机译:由于冠状甘露甘露甘露甘露甘露甘露甘露甘露甘露甘露甘露甘露甘露甘露糖细胞增强的生物活性化合物产生与抗氧化代谢有关

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摘要

Elicited broccoli suspension-cultured cells (SCC) provide a useful system for obtaining bioactive compounds, including glucosinolates (GS) and phenolic compounds (PCs). In this work, coronatine (Cor) and methyl jasmonate (MJ) were used to increase the bioactive compound production in broccoli SCC. Although the use of Cor and MJ in secondary metabolite production has already been described, information concerning how elicitors affect cell metabolism is scarce. It has been suggested that Cor and MJ trigger defence reactions affecting the antioxidative metabolism. In the current study, the concentration of 0.5 mu M Cor was the most effective treatment for increasing both the total antioxidant capacity (measured as ferulic acid equivalents) and glucosinolate content in broccoli SCC. The elicited broccoli SCC also showed higher polyphenol oxidase activity than the control cells. Elicitation altered the antioxidative metabolism of broccoli SCC, which displayed biochemical changes in antioxidant enzymes, a decrease in the glutathione redox state and an increase in lipid peroxidation levels. Furthermore, we studied the effect of elicitation on the protein profile and observed an induction of defence-related proteins. All of these findings suggest that elicitation not only increases bioactive compound production, but it also leads to mild oxidative stress in broccoli SCC that could be an important factor triggering the production of these compounds.
机译:引发的西兰花悬浮培养细胞(SCC)提供了用于获得生物活性化合物的有用系统,包括葡糖苷(GS)和酚类化合物(PCS)。在这项工作中,使用冠状胺(Cor)和茉莉酸甲酯(MJ)来增加西兰花SCC中的生物活性化合物产生。虽然已经描述了在次级代谢物生产中使用Cor和MJ,但有关如何影响细胞新陈代谢的信息是稀缺的。有人建议,Cor和MJ触发影响抗氧化代谢的防御反应。在目前的研究中,0.5μm的浓度是最有效的治疗方法,用于增加西兰花SCC中的总抗氧化能力(测量为阿魏酸等同物)和葡萄糖苷含量。引发的西兰花SCC还显示出比对照细胞更高的多酚氧化酶活性。诱导改变了西兰花的抗氧化代谢,其显示抗氧化酶的生物化学变化,谷胱甘肽氧化还原状态的降低以及脂质过氧化水平的增加。此外,我们研究了诱导对蛋白质谱的影响,并观察了与防御相关蛋白质的诱导。所有这些研究结果表明,诱导不仅增加了生物活性化合物生产,而且还导致西兰花的氧化胁迫温和,这可能是引发这些化合物的产生的重要因素。

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