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首页> 外文期刊>Applied Microbiology and Biotechnology >Biosynthesis and genomic analysis of medium-chain hydrocarbon production by the endophytic fungal isolate Nigrograna mackinnonii E5202H
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Biosynthesis and genomic analysis of medium-chain hydrocarbon production by the endophytic fungal isolate Nigrograna mackinnonii E5202H

机译:内生真菌分离株黑麦草(E. G. E5202H)的中链碳氢化合物的生物合成和基因组分析

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An endophytic fungus was isolated that produces a series of volatile natural products, including terpenes and odd chain polyenes. Phylogenetic analysis of the isolate using five loci suggests that it is closely related to Nigrograna mackinnonii CBS 674.75. The main component of the polyene series was purified and identified as (3E,5E,7E)-nona-1,3,5,7-tetraene (NTE), a novel natural product. Non-oxygenated hydrocarbons of this chain length are uncommon and desirable as gasoline-surrogate biofuels. The biosynthetic pathway for NTE production was explored using metabolic labeling and gas chromatography time of flight mass spectometer (GCMS). Two-carbon incorporation C-13 acetate suggests that it is derived from a polyketide synthase (PKS) followed by decarboxylation. There are several known mechanisms for such decarboxylation, though none have been discovered in fungi. Towards identifying the PKS responsible for the production of NTE, the genome of N. mackinnonii E5202H (ATCC SD-6839) was sequenced and assembled. Of the 32 PKSs present in the genome, 17 are predicted to contain sufficient domains for the production of NTE. These results exemplify the capacity of endophytic fungi to produce novel natural products that may have many uses, such as biologically derived fuels and commodity chemicals.
机译:分离出内生真菌,该内生真菌产生一系列挥发性天然产物,包括萜烯和奇链多烯。使用五个基因座的分离株的系统发育分析表明,它与黑麦草(Ngrograna mackinnonii)CBS 674.75密切相关。纯化了多烯系列的主要成分,并将其鉴定为新型天然产物(3E,5E,7E)-nona-1,3,5,7-四烯(NTE)。具有这种链长的非氧化烃是罕见的,并且需要作为汽油替代生物燃料。使用代谢标记和气相色谱飞行时间质谱仪(GCMS)探索了NTE生产的生物合成途径。两碳结合的C-13乙酸酯表明它衍生自聚酮化合物合酶(PKS),然后进行脱羧作用。尽管在真菌中还没有发现这种脱羧的几种已知机理。为了确定负责NTE产生的PKS,对麦金农杆菌E5202H(ATCC SD-6839)的基因组进行了测序和组装。基因组中存在的32种PKS中,有17种被预测含有足够的结构域以产生NTE。这些结果证明了内生真菌生产可能具有许多用途的新型天然产物的能力,例如生物来源的燃料和商品化学品。

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