首页> 外文期刊>Plant Growth Regulation: An International Journal on Natural and Synthetic Regulators >Enhanced secondary metabolite production and pathway gene expression by leaf explants-induced direct root morphotypes are regulated by combination of growth regulators and culture conditions in Centella asiatica (L.) urban
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Enhanced secondary metabolite production and pathway gene expression by leaf explants-induced direct root morphotypes are regulated by combination of growth regulators and culture conditions in Centella asiatica (L.) urban

机译:由外植体诱导的直接根形态决定的次级代谢产物的产生和途径基因表达的增强受亚洲积雪草生长调节剂和培养条件的组合调控

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Centella asiatica (L), a herbaceous plant belonging to the family Apiaceae, possesses great medicinal value owing to the presence of important and characteristic triterpenoids as secondary metabolites. These triterpenoid secondary metabolites are found in leaves in substantial quantities whereas negligible amounts may be detected sometimes in root tissues. In the resent study direct rhizogenesis was induced from C. asiatica leaf explants using different concentrations and combinations of auxins (IBA/IAA/NAA) leading to the production of distinct root morphotypes. A number of culture conditions such as pH, nature of carbon sources (glucose, fructose, mannitol and maltose) as well as concentrations of sucrose exhibited their strong influence in terms of induction of root morphotypes, accumulation of total secondary metabolites and expression of key pathway genes. Phytochemical profiling using HPLC revealed that all root morphotypes accumulated enhanced amounts of triterpenoids. The enhanced phytochemical accumulation was further validated by the coherent pattern of expression of key genes related to their biosynthetic pathway in root morphotypes. The results have revealed that the hormonal combinations in the culture media not only mediated differential morphogenic responses but also regulated secondary metabolites accumulation in non-transgenic rhizogenic roots. The results of the study are promising for the utilization of such in vitro root morphotypes. The root morphotypes may act as alternative bioresources for the production of industrially important and leaf associated asiaticosides and other important triterpenoids for the commercial purposes.
机译:亚洲积雪草(Centella asiatica,L)是A科的一种草本植物,由于存在重要的和特征性的三萜类化合物作为次生代谢产物,因此具有很大的药用价值。这些三萜类次生代谢产物大量存在于叶片中,而有时在根部组织中可检测到的量可忽略不计。在最近的研究中,使用不同浓度和生长素的组合(IBA / IAA / NAA)从亚洲隐孢子虫的外植体中诱导直接发根,导致产生不同的根形态。许多培养条件,例如pH,碳源性质(葡萄糖,果糖,甘露醇和麦芽糖)以及蔗糖浓度,在诱导根形态,总次级代谢产物积累和关键途径表达方面都表现出强大的影响力。基因。使用HPLC进行的植物化学谱分析显示,所有根形态都积累了增强量的三萜。通过与根形态型中其生物合成途径相关的关键基因表达的连贯模式,进一步证实了增强的植物化学积累。结果表明,培养基中的激素结合不仅介导了不同的形态发生反应,而且还调节了非转基因发根中次级代谢产物的积累。该研究结果有望用于利用这种体外根形态型。根的形态型可作为替代生物资源,用于生产工业上重要的叶相关的积雪草苷和其他重要的三萜类化合物,以用于商业目的。

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