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Endophytes of Withania somnifera modulate in planta content and the site of withanolide biosynthesis

机译:睡茄的内生植物调节植物内酯含量和茄苷生物合成的位点

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摘要

Tissue specific biosynthesis of secondary metabolites is a distinguished feature of medicinal plants. Withania somnifera, source of pharmaceutically important withanolides biosynthesizes withaferin-A in leaves and withanolide-A in roots. To increase the in planta withanolides production, a sustainable approach needs to be explored. Here, we isolated endophytes from different parts of W. somnifera plants and their promising role in in planta withanolide biosynthesis was established in both in-vivo grown as well in in-vitro raised composite W. somnifera plants. Overall, the fungal endophytes improved photosynthesis, plant growth and biomass, and the root-associated bacterial endophytes enhanced the withanolide content in both in-vivo and in-vitro grown plants by modulating the expression of withanolide biosynthesis genes in leaves and roots. Surprisingly, a few indole-3-acetic acid (IAA)-producing and nitrogen-fixing root-associated endophytes could induce the biosynthesis of withaferin-A in roots by inducing in planta IAA-production and upregulating the expression of withanolide biosynthesis genes especially MEP-pathway genes (DXS and DXR) in roots as well. Results indicate the role of endophytes in modulating the synthesis and site of withanolides production and the selected endophytes can be used for enhancing the in planta withanolide production and enriching roots with pharmaceutically important withaferin-A which is generally absent in roots.
机译:次生代谢产物的组织特异性生物合成是药用植物的显着特征。茄子(Withania somnifera)是药学上重要的茄苷的来源,其生物合成叶中的Aferin-A和根部中的Withanolide-A。为了增加植物内苷的生产,需要探索一种可持续的方法。在这里,我们从W. somnifera植物的不同部位分离出内生菌,并且它们在体内生长以及在体外培养的复合W. somnifera植物中都建立了其在植物醇内生物合成中的有前途作用。总体而言,真菌内生菌通过调节叶片和根系中威生糖生物合成基因的表达来改善光合作用,植物生长和生物量,而根相关细菌内生菌则提高了体内和体外生长植物中威生糖含量。出人意料的是,一些产生吲哚-3-乙酸(IAA)和固氮的根系内生菌可以通过诱导植物IAA的产生并上调withanolide生物合成基因特别是MEP的表达来诱导根中withferin-A的生物合成。根中的-通路基因(DXS和DXR)。结果表明内生菌在调节withanolides产生的合成和位点中的作用,并且所选的内生菌可用于增强植物体内withanolide的产生,并利用通常在根中不存在的具有药学重要性的aferin-A富集根。

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