Biotechnology Division, Council of Scientific and Industrial Research (CSIR)-Institute of Himalayan Bioresource Technology, Palampur 176061, India.
Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, India.
J Appl Microbiol. 2024 Sep 2;135(9). doi: 10.1093/jambio/lxae242.
The immense therapeutic value of Valeriana jatamansi is attributed to the presence of bioactive secondary metabolites (valepotriates and sesquiterpenoids). Its over-exploitation in wild habitats resulted in extensive depletion, necessitating alternative approaches to produce its therapeutic metabolites. This study sought to assess the ability of endophytes of V. jatamansi to boost the biosynthesis of secondary metabolites in the leaf-cell suspension (LCS) culture of V. jatamansi.
A total of 11 fungal endophytes were isolated from the rhizomes of V. jatamansi. Isolated endophytes were found to belong to phylum Ascomycota, Basidiomycota, and Mucoromycota. Supplementation of extracts of endophyte Phaeosphaeriaceae sp. VRzFB, Mucor griseocyanus VRzFD, Penicillium raistrickii VRzFK, and Penicillium sajarovii VRzFL in the LCS culture of V. jatamansi increased the fresh cell biomass by 19.6%-39.1% and dry cell biomass by 23.4%-37.8%. Most of the endophytes' extract could increase the content of valepotriates (26.5%-76.5% valtrate and 40.5%-77.9% acevaltrate) and sesquiterpenoids (19.9%-61.1% hydroxyl valerenic acid) in LCS culture. However, only two endophytes, Irpex lacteus VRzFI and Fusarium oxysporum VRzFF, could increase the sesquiterpenoids acetoxy valerenic acid (36.9%-55.3%). In contrast, some endophytes' extracts caused negative or no significant effect on the cell biomass and targeted metabolites. Increased secondary metabolites were corroborated with increased expression of iridoid biosynthesis genes in LCS culture. Production of H2O2 and lipid peroxidation was also varied with different endophytes indicating the modulation of cellular oxidative stress due to endophyte elicitors.
The results suggest the distinct effect of different fungal endophytes-extract on LCS culture, and endophytes can serve as biotic elicitors for increasing the secondary metabolite production in plant in vitro systems.
缬草的巨大治疗价值归因于生物活性次生代谢物(缬草三酯和倍半萜烯)的存在。其在野生栖息地的过度开发导致了广泛的枯竭,因此需要寻找替代方法来生产其治疗代谢物。本研究旨在评估缬草内生真菌提高缬草叶细胞悬浮(LCS)培养物中次生代谢物生物合成的能力。
从缬草根茎中共分离出 11 株真菌内生菌。分离出的内生菌属于子囊菌门、担子菌门和毛霉门。内生真菌 Phaeosphaeriaceae sp. VRzFB、Mucor griseocyanus VRzFD、Penicillium raistrickii VRzFK 和 Penicillium sajarovii VRzFL 的提取物添加到缬草 LCS 培养物中,可使新鲜细胞生物量增加 19.6%-39.1%,干细胞生物量增加 23.4%-37.8%。大多数内生菌提取物可增加 LCS 培养物中缬草三酯(26.5%-76.5%缬草酯和 40.5%-77.9%乙酰缬草酯)和倍半萜烯(19.9%-61.1%羟基缬草酸)的含量。然而,只有两种内生菌 Irpex lacteus VRzFI 和 Fusarium oxysporum VRzFF 能够增加倍半萜烯乙酰氧基缬草酸(36.9%-55.3%)。相比之下,一些内生菌提取物对细胞生物量和目标代谢物没有产生负面影响或没有显著影响。次生代谢物的增加与 LCS 培养物中裂环烯醚萜生物合成基因的表达增加相吻合。不同内生菌也导致 H2O2 和脂质过氧化的产生发生变化,表明由于内生菌诱导剂的作用,细胞氧化应激受到调节。
研究结果表明,不同真菌内生菌提取物对 LCS 培养物有明显的影响,内生菌可以作为生物诱导剂,提高植物在体外系统中的次生代谢产物的产生。