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首页> 外文期刊>Acta Physiologiae Plantarum >Association with arbuscular mycorrhizal fungi influences alkaloid synthesis and accumulation in Catharanthus roseus and Nicotiana tabacum plants
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Association with arbuscular mycorrhizal fungi influences alkaloid synthesis and accumulation in Catharanthus roseus and Nicotiana tabacum plants

机译:与丛枝菌根真菌的结合会影响长春花和烟草植物中生物碱的合成和积累

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Frequently disregarded, plant associations with arbuscular mycorrhizal fungi (AMF) can influence plant specialized metabolism with important ecological and/or economic implications. In this study, we report on both the influence of mycorrhization on the content of a wide range of alkaloids and differential gene expression of some enzymes involved in alkaloid biosynthetic pathways in the leaves and roots of Catharanthus roseus and Nicotiana tabacum plants. These plants were divided into several treatments: mycorrhizal, inoculated with AMF; non-AMF inoculated plants; and non-AMF inoculated plants with an extra supply of phosphorus. The contents of vindoline, vinblastine, vincristine, catharanthine, ajmalicine and serpentine in C. roseus and of nicotine, anabasine and nornicotine in N. tabacum tobacco plants were determined. Mycorrhizal inoculation increased ajmalicine and serpentine contents in C. roseus roots suggesting that mycorrhization had a greater influence on the accumulation of alkaloids inroots than it did in shoots. The youngest leaves of mycorrhizal C. roseus plants showed lower transcript levels of the genes analysed; however, in older leaves, the expression levels were higher when compared with the leaves of non-mycorrhizal plants. Inthe case of tobacco, higher leaf to root ratios for nicotine and anabasine were found in plants with a mycorrhizal association. Our results showed that mycorrhization changed the alkaloid content and expression pattern of the genes analysed in both species; however, differences were found between the roots and shoots. In nature, such changes may have a direct influence on the interactions between plants and insects (herbivory) and pathogens. These interactions must be studied further to reveal the ecological influence mycorrhizae may have on chemical defences in a broader sense.
机译:经常忽略的是,植物与丛枝菌根真菌(AMF)的关联会影响植物的专门代谢,从而具有重要的生态和/或经济意义。在这项研究中,我们报告了菌根对宽叶生物碱含量的影响以及长春花和烟草植物叶片和根中参与生物碱生物合成途径的某些酶的差异基因表达。这些植物被分为几种处理方法:菌根,接种AMF;根除,接种。非AMF接种的植物;非AMF接种的植物中磷的供应量较高。测定玫瑰色念珠菌中长春花碱,长春碱,长春新碱,长春新碱,苦艾碱和蛇纹石的含量,以及烟草中烟草中尼古丁,金刚烷胺和去甲烟碱的含量。菌根接种增加了玫瑰果念珠菌根中杜鹃花和蛇纹石的含量,这表明菌根接种对生物碱根部积累的影响大于芽。菌根蔷薇属植物的最年轻叶片显示出所分析基因的转录本水平较低。然而,在较老的叶片中,与非菌根植物的叶片相比,其表达水平更高。以烟草为例,在与菌根相关的植物中发现烟碱和烟碱的叶根比更高。我们的研究结果表明,菌根改变了两种物种中生物碱的含量和基因表达模式。然而,发现根与芽之间存在差异。在自然界中,此类变化可能直接影响植物与昆虫(食草动物)和病原体之间的相互作用。必须进一步研究这些相互作用,以从更广泛的意义上揭示菌根对化学防御的生态影响。

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