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Hyper-production of taxol from Aspergillus fumigatus, an endophytic fungus isolated from Taxus sp. of the Northern Himalayan region

机译:从烟曲霉中分离出紫杉醇,烟曲霉是一种从紫杉属中分离出来的内生真菌。喜马拉雅北部地区

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Taxol? (generic name Paclitaxel) is a chemotherapeutic drug, effective against head, neck, breast, lung, bladder, ovary, and cervix cancers. Rising demands in chemotherapy and limited supply of natural taxol have ultimately increased the cost of the drug. Semi synthesis using taxol precursors is not able to meet the global supply and has intensified the need to find alternative ways of taxol production. In the present study, 34 different endophytes were isolated from Taxus sp. collected from Shimla, Himachal Pradesh (India). Primary screening of taxol-producing fungi was carried out based on the presence of dbat gene, essential for the taxol biosynthetic pathway. A fungal isolate TPF-06 was screened to be a taxol-producing strain based on the PCR amplification results. It was characterized and identified as Aspergillus fumigatus by 18S rRNA (Accession No. KU-837249). Multiple sequence alignment (MSA) of nuclear ribosomal internal transcribed spacer (ITS) region and phylogenetic analysis confirmed that strain belonged to A. fumigatus clade (Accession No. MF-374798) and is endophytic in nature. Presence of taxol was detected and quantified by High-Performance Liquid Chromatography (HPLC) and characterized by using Thin Layer Chromatography (TLC), Ultraviolet (UV) spectroscopy, Mass spectrometry (MS), Fourier-Transform Infrared Spectroscopy (FTIR) and Nuclear Magnetic Resonance (NMR) spectroscopy. Microbial fermentation in the S7 medium yielded 1.60?g/L of taxol, which to the best of our knowledge is the highest taxol production from an endophytic fungus. Findings of the present study suggest that the A. fumigatus is an excellent alternate source for taxol supply, and it may become a highly potent strain on a commercial scale. The involvement of dbat gene in A. fumigatus KU-837249 strain further suggested a way of increasing taxol yield in fungi by medium engineering and recombinant DNA technology in the future.
机译:紫杉醇? (紫杉醇的总称)是一种化学治疗药物,对头,颈,乳腺癌,肺癌,膀胱癌,卵巢癌和子宫颈癌有效。化学疗法的需求增加和天然紫杉醇的有限供应最终增加了该药物的成本。使用紫杉醇前体的半合成不能满足全球供应,并且增加了寻找替代性紫杉醇生产方式的需求。在本研究中,从紫杉属中分离出34种不同的内生菌。收集自喜马al尔邦(印度)西姆拉。基于存在的紫杉醇生物合成途径必不可少的dbat基因,对产紫杉醇的真菌进行了初步筛选。基于PCR扩增结果,将真菌分离物TPF-06筛选为产生紫杉醇的菌株。通过18S rRNA(登录号KU-837249)鉴定并鉴定为烟曲霉。核糖体内部转录间隔区(ITS)区域的多序列比对(MSA)和系统发育分析证实,该菌株属于烟曲霉进化枝(登录号MF-374798),本质上是内生的。紫杉醇的存在通过高效液相色谱(HPLC)进行检测和定量,并通过薄层色谱(TLC),紫外(UV)光谱,质谱(MS),傅里叶变换红外光谱(FTIR)和核磁进行表征共振(NMR)光谱。在S7培养基中进行微生物发酵可产生1.60?g / L的紫杉醇,据我们所知,这是内生真菌中紫杉醇的最高产量。本研究的发现表明,烟曲霉是紫杉醇供应的极好的替代来源,在商业规模上它可能成为高效菌株。 dbat基因参与烟曲霉KU-837249菌株的研究进一步提出了将来通过培养基工程和重组DNA技术提高真菌中紫杉醇产量的方法。

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