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Transcript and Metabolite Profiling for the Evaluation of Tobacco Tree and Poplar as Feedstock for the Bio-based Industry

机译:成绩单和代谢物谱图用于评估以烟叶和白杨为原料的生物产业

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摘要

The global demand for food, feed, energy, and water poses extraordinary challenges for future generations. It is evident that robust platforms for the exploration of renewable resources are necessary to overcome these challenges. Within the multinational framework MultiBioPro we are developing biorefinery pipelines to maximize the use of plant biomass. More specifically, we use poplar and tobacco tree (Nicotiana glauca) as target crop species for improving saccharification, isoprenoid, long chain hydrocarbon contents, fiber quality, and suberin and lignin contents. The methods used to obtain these outputs include GC-MS, LC-MS and RNA sequencing platforms. The metabolite pipelines are well established tools to generate these types of data, but also have the limitations in that only well characterized metabolites can be used. The deep sequencing will allow us to include all transcripts present during the developmental stages of the tobacco tree leaf, but has to be mapped back to the sequence of Nicotiana tabacum. With these set-ups, we aim at a basic understanding for underlying processes and at establishing an industrial framework to exploit the outcomes. In a more long term perspective, we believe that data generated here will provide means for a sustainable biorefinery process using poplar and tobacco tree as raw material. To date the basal level of metabolites in the samples have been analyzed and the protocols utilized are provided in this article.
机译:全球对食物,饲料,能源和水的需求对子孙后代构成了巨大的挑战。显然,要克服这些挑战,就必须有强大的勘探可再生资源的平台。在跨国框架MultiBioPro中,我们正在开发生物精炼管道,以最大程度地利用植物生物质。更具体地说,我们将杨树和烟草树(Nicotiana glauca)用作目标作物,以改善糖化,类异戊二烯,长链碳氢化合物含量,纤维质量以及木脂蛋白和木质素含量。用于获得这些输出的方法包括GC-MS,LC-MS和RNA测序平台。代谢物管道是建立此类数据的成熟工具,但也存在局限性,因为只能使用特征明确的代谢物。深度测序将使我们能够包括烟草树叶片发育阶段中存在的所有转录本,但必须将其重新映射回烟草的序列。通过这些设置,我们旨在基本理解基本流程并建立可利用结果的产业框架。从更长远的角度来看,我们认为此处生成的数据将为以杨树和烟树为原料的可持续生物精炼过程提供手段。迄今为止,已经分析了样品中代谢物的基础水平,并在本文中提供了所使用的方案。

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