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Biochemical characterization and genetic identity of an oil-rich Acutodesmus obliquus isolate

机译:富含油脂的斜切线螺菌的生化特性和遗传特性

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摘要

Microalgae provide one of the more promising strategies for the production of renewable biodiesel and liquid fuels. Coupling biodiesel production and wastewater treatment based on the use of microalgae can be an effective approach for achieving sustainable production. Several pilot programs aimed at lipid production are currently working with Acutodesmus obliquus, and companies offering algal inocula are increasing in number. A. obliquus strain RL01 was isolated from a pretreated leachate, and preliminary analyses indicated a high growth rate, a final biomass concentration of 1.9 g∙L-1 and a lipid content of 47% DW. With the aim of strictly differentiating and unequivocally identifying the new strain in comparison with other A. obliquus lipid producers available in culture collections, we employed a DNA barcoding approach, targeting conventional and non-conventional genome regions. Genomic analyses were performed using two internal transcribed spacers (nuclear ITS1 and ITS2 sequences) and three selected chloroplast regions (the trnL genic intron and the rpl20-psbA and psbM-psbZ intergenic spacers). Our findings raise some concerns about the discriminant power of the ITS2 nuclear target and place particular emphasis on the psbM-psbZ plastid DNA barcode, which is characterized by high polymorphism, for use in studies addressing intraspecific genetic diversity.
机译:微藻为生产可再生生物柴油和液体燃料提供了更有希望的战略之一。基于使用微藻类的生物柴油生产与废水处理的耦合可以成为实现可持续生产的有效方法。目前有几个针对脂质生产的试点计划正在与斜切线虫一起工作,提供藻类接种的公司数量也在增加。从预处理的渗滤液中分离出斜生曲霉菌株RL01,初步分析表明该菌株生长速度高,最终生物质浓度为1.9 g∙L-1,脂质含量为47%DW。为了与培养物中可用的其他斜叶产油曲霉菌生产商严格区分和明确鉴定新菌株,我们采用了一种DNA条形码方法,靶向常规和非常规基因组区域。使用两个内部转录的间隔子(核ITS1和ITS2序列)和三个选定的叶绿体区域(trnL基因内含子以及rpl20-psbA和psbM-psbZ基因间隔子)进行基因组分析。我们的发现引起了人们对ITS2核靶标的判别能力的关注,并特别强调了psbM-psbZ质体DNA条码,该条码具有高多态性,可用于研究种内遗传多样性。

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