首页> 外文期刊>Journal of Agricultural and Food Chemistry >Methyl Jasmonate Increases Isoflavone Production in Soybean Cell Cultures by Activating Structural Genes Involved in Isoflavonoid Biosynthesis
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Methyl Jasmonate Increases Isoflavone Production in Soybean Cell Cultures by Activating Structural Genes Involved in Isoflavonoid Biosynthesis

机译:茉莉酸甲酯通过激活来自异氟类化合物生物合成的结构基因来增加大豆细胞培养物中的异黄酮产生

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Isoflavonoids are a class of biologically active natural products that accumulate in soybean (Glycine max L.) seeds during development, play vital roles in plant defense, and act as phytoestrogens with important human health benefits. Plant cell suspension cultures represent an excellent source of biologically important secondary metabolites. We found that methyl jasmonate (MJ) treatment increased isoflavone production in soybean suspension cell cultures. To investigate the underlying mechanism, we examined the expression of structural genes (CHS6, CHS7, CHIT, IFSJ, IFS2, IFMaT, and HID) in the isoflavonoid biosynthesis pathways in soybean suspension cells under various abiotic stress conditions. MJ treatment had the most significant effect on gene expression and increased the production of three glycosidic isoflavones (daidzin, malonyldaidzin, and malonylgenistin), with the maximum total isoflavone production (similar to 10-fold increase) obtained on day 9 after MJ application. MJ treatment significantly increased total phenolic contents and upregulated isoflavonoid biosynthesis genes, shedding light on the underlying mechanism.
机译:异戊类异黄酮是一类生物活性天然产物,在发育过程中积聚在大豆(甘氨酸Max L.)种子中,起到植物防御中的重要作用,并作为植物雌激素,具有重要人类健康益处。植物细胞悬浮培养物代表生物学重要的二次代谢物的优异来源。我们发现茉莉酸甲酯(MJ)治疗在大豆悬浮细胞培养物中增加异黄酮产生。为了研究潜在的机制,我们在各种非生物胁迫条件下检查了大豆悬浮细胞中异黄酮生物合成途径中的结构基因(CHS6,CHS7,Chit,IFSJ,IFS2,IFMAT和HID)的表达。 MJ治疗对基因表达具有最显着的影响,并增加了三种糖苷异黄酮(Daidzin,Malonydaidzin和Malonylgenistin)的产生,其在MJ应用后第9天获得的最大总异黄酮产生(类似于10倍的增加)。 MJ治疗显着增加了总酚类含量和上调的异链类生物合成基因,脱落在下面的机制上。

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