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首页> 外文期刊>Journal of Plant Growth Regulation >Copper-Induced Modulation of Biomass Growth, Physiological Parameters, Bioactive Centellosides, and Expression of Biosynthetic Pathway Genes in an Important Medicinal Herb, Centella asiatica
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Copper-Induced Modulation of Biomass Growth, Physiological Parameters, Bioactive Centellosides, and Expression of Biosynthetic Pathway Genes in an Important Medicinal Herb, Centella asiatica

机译:铜诱导的生物质生长,生理学参数,生物活性中心和生物合成途径基因的表达在一个重要的药草中,Centella Asiatica

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摘要

Hydroponically established Centella asiatica plants were studied under different concentrations of copper (0, 0.32,1.6, and 3.2 A mu M) for their morphological, physiological, and biochemical characteristics. The plants grown in the medium without any exogenous supply of copper showed improved biomass accumulation with maximum fresh weight (FW = 24.7 g plant(-1)) and dry weight (DW = 2.35 g plant(-1)). The total chlorophyll content, leaf number, and the leaf area were higher (0.27 mg g(-1) DW, 20 and 100.54 cm(2)) in the plants grown under copper-deficient conditions. The toxic effects of increased levels of copper were evident by significant inhibition in growth and other morphological parameters. Copper treatment showed an increase in malondialdehyde (MDA) content and SOD activity. Bioactive phytochemical profiling using HPLC analysis revealed that higher levels of copper (1.6 and 3.2 A mu M) inhibit the accumulation of total centelloside content. The differential accumulation of centelloside content was further validated by the consistent pattern of expression of key pathway genes related to centelloside production in copper-treated C. asiatica plants. The study unveiled some of the important facts associated with the mechanism of copper tolerance in this important medicinal herb C. asiatica. The findings of the present study can be further used to provide better production of high value, in demand centellosides.
机译:在不同浓度的铜(0,0.32,1.6和3.2μmm)下研究了水块建立的Centella植物,用于其形态学,生理学和生物化学特征。在没有任何外源铜供应的介质中生长的植物显示出改善的生物质积累,最大鲜重(FW = 24.7g植物(-1))和干重(DW = 2.35g植物(-1))。在铜缺陷条件下生长的植物中,总叶绿素含量,叶片数和叶片面积更高(0.27mg(-1)DW,20和100.54cm(2))。通过在生长和其他形态参数中显着抑制,铜水平增加的毒性作用是显而易见的。铜处理显示丙二醛(MDA)含量和SOD活性的增加。使用HPLC分析的生物活性植物化学分析显示,较高水平的铜(1.6和3.2μm)抑制了总中心含量的积累。通过与铜处理的C.Siatica植物中的铜处理生产相关的关键途径基因的表达的一致表达的一致表达进行了差异累积。该研究揭开了与该重要药用草药C. Asiatica中铜耐受机制相关的一些重要事实。本研究的发现还可以进一步用于提供更好的高价值,需求中心。

著录项

  • 来源
    《Journal of Plant Growth Regulation》 |2018年第2期|共10页
  • 作者单位

    CSIR Cent Inst Med &

    Aromat Plants Plant Biotechnol Div PO CIMAP Kukrail Picn Spot Rd Lucknow 226015 Uttar Pradesh India;

    CSIR Cent Inst Med &

    Aromat Plants Plant Biotechnol Div PO CIMAP Kukrail Picn Spot Rd Lucknow 226015 Uttar Pradesh India;

    CSIR Cent Inst Med &

    Aromat Plants Bot &

    Pharmacognosy Div PO CIMAP Lucknow 226015 Uttar Pradesh India;

    CSIR Cent Inst Med &

    Aromat Plants Plant Biotechnol Div PO CIMAP Kukrail Picn Spot Rd Lucknow 226015 Uttar Pradesh India;

    CSIR Cent Inst Med &

    Aromat Plants Plant Biotechnol Div PO CIMAP Kukrail Picn Spot Rd Lucknow 226015 Uttar Pradesh India;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;
  • 关键词

    Centella asiatica; Hydroponic cultures; Centellosides; Lipid peroxidation; SOD; Copper;

    机译:Centella Asiatica;水培培养物;中心;脂质过氧化;SOD;铜;

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