首页> 外文期刊>Bulletin of Environmental Contamination and Toxicology >Transcript pattern of cytochrome P450, antioxidant and ginsenoside biosynthetic pathway genes under heavy metal stress in Panax ginseng Meyer.
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Transcript pattern of cytochrome P450, antioxidant and ginsenoside biosynthetic pathway genes under heavy metal stress in Panax ginseng Meyer.

机译:重金属胁迫下人参梅耶细胞色素P450,抗氧化剂和人参皂苷生物合成途径基因的转录模式

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摘要

The differential transcript patterns of five antioxidant genes, four genes related to the ginsenoside pathway and five P450 genes related to defense mechanism were investigated in in vitro adventitious roots of Panax ginseng after exposure to two different concentrations of heavy metals for 7 days. PgSOD-1 and PgCAT transcription increased in a dose-dependent manner during the exposure to CuCl2, NiCl2, and CdCl2, while all other tested scavenging enzymes didn't show significant increase during heavy metal exposure. Conversely, the mRNA transcripts of PgSQE, PgDDS were highly responsive to CuCl2 compared to NiCl2 exposure. However, the transcript profile of Pg beta -AS was highly induced upon NiCl2 treatment compared to CuCl2 and CdCl2 exposure. The expressions of PgCYP716A42, PgCYP71A50U, and PgCYP82C22 were regulated in similar manners, and all showed the highest transcript profile at 100 micro M of CuCl2, CdCl2, and NiCl2 except PgCYP71D184, which showed the highest transcript level when subjected to 10 micro M CuCl2 and NiCl2. Thus it may suggest that in P. ginseng heavy metal interaction on cell membrane induced expression of various defense related genes via jasmonic acid pathway and also possesses cross talk networks with other defense related pathways.
机译:在两种不同浓度的重金属暴露7天后,在人参的体外不定根中研究了五个抗氧化剂基因,四个与人参皂苷途径相关的基因和五个与防御机制相关的P450基因的差异转录模式。在暴露于CuCl 2 ,NiCl 2 和CdCl 2 的过程中,PgSOD-1和PgCAT的转录呈剂量依赖性。其他测试的清除酶在重金属暴露期间未显示出明显增加。相反,与NiCl 2 暴露相比,PgSQE,PgDDS的mRNA转录对CuCl 2 的反应高度敏感。然而,与暴露于CuCl 2 和CdCl 2 相比,NiCl 2 处理后,Pgβ-AS的转录本特征被高度诱导。 PgCYP716A42,PgCYP71A50U和PgCYP82C22的表达受到类似的调节,并且在100 micro M的CuCl 2 ,CdCl 2 和NiCl < sub> 2 除PgCYP71D184外,在10 micro M CuCl 2 和NiCl 2 时表现出最高的转录水平。因此,这可能暗示人参中重金属的相互作用通过茉莉酸途径在细胞膜上诱导了各种防御相关基因的表达,并且还具有与其他防御相关途径的串扰网络。

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