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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Increased Glucosinolate Production in Brassica oleracea var. italica Cell Cultures Due to Coronatine Activated Genes Involved in Glucosinolate Biosynthesis
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Increased Glucosinolate Production in Brassica oleracea var. italica Cell Cultures Due to Coronatine Activated Genes Involved in Glucosinolate Biosynthesis

机译:在甘草甘油果糖醛植物中增加氨基葡萄糖产量。 由于冠状氨酸活化基因的Italica细胞培养物参与葡萄糖苷生物合成

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摘要

In this work, the effect of different elicitors and culture conditions on the production of glucosinolates in broccoli cell cultures was studied. The results showed that 0.5 mu M coronatine was the best elicitor for increasing glucosinolate production (205-fold increase over untreated cells after 72 h of treatment). Furthermore, the expression levels of some genes related to the biosynthetic pathway of glucosinolates as well as three Myb transcription factors also have been studied. The highest glucosinolate levels found in coronatine-treated cells were closely correlated with the highest gene expression levels of Cyp79b2, Cyp83b1, St5a, Myb51, and Myb122 after 6 h of treatment. The data shown in this study provide new insight into the key metabolic steps involved in the biosynthesis of glucosinolates, which will be of use for future applications of metabolic engineering techniques in broccoli.
机译:在这项工作中,研究了不同菌和培养条件对西兰花细胞培养物中藻糖糖苷的产生的影响。 结果表明,0.5亩核素是用于增加葡糖苷的产量(在72小时后,在未处理的细胞上增加205倍)的最佳诱导剂。 此外,还研究了与氨基葡萄糖苷的生物合成途径以及三种MYB转录因子相关的一些基因的表达水平。 在治疗6小时后,冠状胺处理细胞中发现的最高氨基葡萄糖水平与CYP79B2,CYP83B1,ST5A,MYB51和MYB122的最高基因表达水平密切相关。 本研究中所示的数据提供了新的洞察葡萄糖素生物合成涉及的关键代谢步骤,这将是用于未来应用代谢工程技术在西兰花的应用。

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