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Induction of root colonization by Piriformospora indica leads to enhanced asiaticoside production in Centella asiatica

机译:印度梨形孢子虫诱导根定殖导致积雪草中积雪草苷的产生增加

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Centella asiatica (Indian pennywort) has wide application in Indian and Chinese traditional medicines with documented evidence for wound healing and neuroprotective and anti-aging potential. Asiaticoside, a trisaccharide triterpene, is the most medicinally active compound in the plant. beta-Amyrin synthase and squalene synthase have been identified as the two key genes in the triterpenoid pathway which regulate the production of asiaticoside in C. asiatica. The paper reports salient findings of our study utilizing the growth-promoting endophytic fungus Piriformospora indica to successfully colonize roots of C. asiatica in vitro cultures for investigating the effect of the mutualistic association on asiaticoside production. Co-cultivation of P. indica resulted in the rapid enhancement of root and shoot biomass of host plant, which was visible after 7 days of culture and continued up to 45 days. P. indica co-cultivation also favored the synthesis of asiaticosides, as evidenced by HPLC analysis which indicated about twofold increase (0.53% (w/w) in leaves and 0.23% (w/w) in whole plant) over control (0.33% (w/w) in leaves and 0.14% (w/w) in whole plant). Real-time PCR results confirmed the strong upregulation of squalene synthase and beta-amyrin synthase transcripts in P. indica-challenged plants compared with the control. Our data demonstrate the potential use of P. indica as a means to enhance plant secondary metabolite production in planta with scope for further field evaluation.
机译:亚洲积雪草(Centella asiatica)在印度和中国的传统药物中得到了广泛的应用,有伤口愈合以及神经保护和抗衰老潜力的证据。积雪草苷,一种三糖三萜,是植物中最具药用活性的化合物。 β-Amyrin合酶和角鲨烯合酶已被确定为三萜类途径中的两个关键基因,它们调节积雪草中积雪草苷的生成。这篇论文报道了我们的研究的主要发现,该研究利用促进生长的内生真菌印度梨形孢子菌成功地定殖在体外培养的亚洲隐孢子虫的根中,以研究互惠协会对积雪草苷生产的影响。 P稻的共培养导致宿主植物根和茎生物量的快速增加,这在培养7天后可见,并持续至45天。稻共培养也有利于积雪草苷的合成,HPLC分析表明,这比对照(0.33%)增加了两倍(全叶为0.53%(w / w),全株为0.23%(w / w))。 (w / w)占叶子的0.1%(w / w)。实时PCR结果证实,与对照相比,in稻致死植物中角鲨烯合酶和β-淀粉酶合成酶转录物的上调强烈。我们的数据证明了将印度假单胞菌作为增强植物中植物次生代谢产物的手段的潜在用途,并为进一步的田间评估提供了空间。

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