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首页> 外文期刊>Planta: An International Journal of Plant Biology >Endogenous hydrogen peroxide is a key factor in the yeast extract-induced activation of biphenyl biosynthesis in cell cultures of Sorbus aucuparia
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Endogenous hydrogen peroxide is a key factor in the yeast extract-induced activation of biphenyl biosynthesis in cell cultures of Sorbus aucuparia

机译:内源性过氧化氢是酵母提取物诱导山梨花uc细胞培养物中联苯生物合成活化的关键因素

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摘要

Biphenyls are unique phytoalexins produced by plants belonging to Pyrinae, a subtribe of the economically important Rosaceae family. The formation of aucuparin, a well-known biphenyl, is induced by yeast extract (YE) in cell cultures of Sorbus aucuparia. However, the molecular mechanism underlying YE-induced activation of biphenyl biosynthesis remains unknown. Here we demonstrate that the addition of YE to the cell cultures results in a burst of reactive oxygen species (ROS; H _2O _2 and O _2 -), followed by transcriptional activation of the biphenyl synthase 1 gene (BIS1) encoding the key enzyme of the biphenyl biosynthetic pathway and aucuparin accumulation. Pretreatment of the cell cultures with ROS scavenger dihydrolipoic acid and NADPH oxidase-specific inhibitor diphenylene iodonium abolished all of the above YE-induced biological events. However, when the cell cultures was pretreated with superoxide dismutase specific inhibitor N,N-diethyldithiocarbamic acid, although O _2 ~- continued to be generated, the H _2O _2 accumulation, BIS1 expression and aucuparin production were blocked. Interestingly, exogenous supply of H _2O _2 in the range of 0. 05-10 mM failed to induce aucuparin accumulation. These results indicate that endogenous generation of H _2O _2 rather than that of O _2 ~- is a key factor in YE-induced accumulation of biphenyl phytoalexins in cell cultures of S. aucuparia.
机译:联苯是属于Pyrinae的植物产生的独特植物抗毒素,Pyrinae是经济上重要的蔷薇科的一个分支。 S(Sorbus aucuparia)的细胞培养物中的酵母提取物(YE)可诱导形成一种著名的联苯aucuparin。然而,YE诱导联苯生物合成活化的分子机制仍然未知。在这里,我们证明了在细胞培养物中添加YE会导致活性氧(ROS; H _2O _2和O _2-)爆发,接着是联苯合酶1基因(BIS1)的转录激活,该基因编码联苯的生物合成途径和aucuparin积累。用ROS清除剂二氢硫辛酸和NADPH氧化酶特异性抑制剂二亚苯基碘鎓预处理细胞培养物消除了所有上述YE诱导的生物事件。然而,当用超氧化物歧化酶特异性抑制剂N,N-二乙基二硫代氨基甲酸预处理细胞培养物时,尽管继续产生O _2〜-,但H _2O _2的积累,BIS1表达和aucuparin的生成被阻止。有趣的是,H _2O _2在0. 05-10 mM范围内的外源供应未能诱导aucuparin积累。这些结果表明,H _2O _2而不是O _2〜-的内源性生成是YE诱导的S. aucuparia细胞培养物中联苯植物抗毒素积累的关键因素。

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