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首页> 外文期刊>Plant Physiology and Biochemistry >Piriformospora indica cell wall extract as the best elicitor for asiaticoside production in Centella asiatica (L.) Urban, evidenced by morphological, physiological and molecular analyses
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Piriformospora indica cell wall extract as the best elicitor for asiaticoside production in Centella asiatica (L.) Urban, evidenced by morphological, physiological and molecular analyses

机译:Piriformospora indica细胞壁提取物作为Centella Asiatica(L.)城市中亚氨苷生成的最佳引导者,通过形态学,生理和分子分析证明了

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摘要

Vascular plants synthesise a multitude of organic molecules or phytochemicals, referred to as "secondary metabolites". These molecules are involved in a variety of roles in the life span of plants, ranging from structural ones to protection. Centella asiatica (L.) Urban has probably been used since prehistoric times and has been reported to have been used for various medicinal and cosmetic purposes. The plant contains several active constituents, of which the most important is asiaticoside, a triterpenoid. Asiaticoside content in C. asiatica can be enhanced by the use of biotic elicitors like Piriformospora indica. P. indica has been used as a model to study the mechanisms and evolution of mutualistic symbiosis. P. indica is similar to Arbuscular Mycorrhizal (AM) fungi in terms of plant growth promotional effects. The autoclaved fraction from P. indica (PiCWE) was found to be the most active fraction in promoting the plant biomass and asiaticoside content. To date, there are no reports on the potential role of PiCWE in enhancement of asiaticoside over the control and P. indica colonized plants, which was evidenced by the differential expression of key genes involved and final asiaticoside content along with the determination of phytohormones. Moreover, differential expression of selected miRNAs in PiCWE C. asiatica root interactions over the control and P. indica treated C. asiatica leaf samples was also scrutinized. The important consequence of induction with PiCWE was the significant enhancement of asiaticoside in the PiCWE induced plants in comparison with the asiaticoside content in control and P. indica-C. asiatica interaction. In addition, the role of miRNAs in C. asiatica - PiCWE would enable more in-depth studies for deciphering the molecular and physiological mechanisms of the association and regulation of PiCWE - C. asiatica interactions.
机译:血管植物合成多种有机分子或植物化学物质,称为“二次代谢物”。这些分子参与了植物的寿命中的各种作用,从结构性人的保护范围内。 Centella Asiatica(L.)城市可能已被史前时代以来已经使用,并据报道已被用于各种药用和美容目的。该植物含有几种活性成分,其中最重要的是Asiaticoside,一种三萜类化合物。通过使用Piriformospora indica这样的生物诱变剂,可以增强C. asiatica中的Asiaticoside含量。 P. indica已被用作研究互化共生的机制和演变的模型。 P. indica与植物生长促销效果方面的丛枝菌根(AM)真菌类似。发现来自P. Indica(PICWE)的高压灭菌的级分是促进植物生物质和亚胺苷含量的最活跃的级分。迄今为止,没有关于PICWE在对照中增强的潜在作用,并通过涉及的关键基因的差异表达和最终的Asiaticoside含量随着植物激素的测定而证明的,证明了籼型殖民化植物的潜在作用。此外,在PICWE C中所选miRNA的差异表达。对照对照和P. indica处理的C.Sasiatica叶样品的C.Sasiatica根系相互作用也仔细审查。与PICWE感应的重要后果是与对照中的AsiaticoSide含量和P. indaina-C中的AsiaticoSide含量相比,PICWE诱导植物中的AsiaticoIde的显着增强。 Asiatica相互作用。此外,MiRNA在C.Sasiatica - PICWE中的作用将使更多的深入研究解密,用于解密PICWE - C.Siatica相互作用的关联和调节的分子和生理机制。

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