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A multi-omic map of the lipid-producing yeast Rhodosporidium toruloides

机译:产脂质酵母球形假单胞菌的多组学图谱

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摘要

Triacylglycerols are among the most attractive alternative raw materials for biofuel development. Current oil plant-based technologies are limited in terms of triacylglycerol production capacity and rate. These limitations may be circumvented by biotransformation of carbohydrates into lipids; however, our understanding of microbial oleaginicity remains limited. Here we present the results of a multi-omic analysis of Rhodosporidium toruloides, a robust triacylglycerol-producing fungus. The assembly of genome and transcriptome sequencing data reveals a genome of 20.2 Mb containing 8,171 protein-coding genes, the majority of which have multiple introns. Genes including a novel fatty acid synthase are predicted to participate in metabolic pathways absent in non-oleaginous yeasts. Transcriptomic and proteomic data suggest that lipid accumulation under nitrogen-limited conditions correlates with the induction of lipogenesis, nitrogenous compound recycling, macromolecule metabolism and autophagy. The multi-omic map of R. toruloides therefore provides a valuable resource for efforts to rationally engineer lipid-production pathways.
机译:三酰基甘油是生物燃料开发中最具吸引力的替代原料之一。当前基于石油工厂的技术在三酰基甘油的生产能力和速率方面受到限制。可以通过将碳水化合物生物转化为脂质来避免这些局限性。但是,我们对微生物的含油性的了解仍然有限。在这里,我们介绍了Rhodosporidium toruloides(一种健壮的生产三酰基甘油的真菌)的多组学分析结果。基因组和转录组测序数据的组合揭示了一个20.2 Mb的基因组,其中包含8,171个蛋白质编码基因,其中大多数具有多个内含子。包括新的脂肪酸合酶的基因预计将参与非油性酵母中缺少的代谢途径。转录组学和蛋白质组学数据表明,在氮有限的条件下脂质积累与脂肪生成的诱导,含氮化合物的循环利用,大分子代谢和自噬有关。因此,R。toruloides的多组学图谱为合理设计脂质生产途径的努力提供了宝贵的资源。

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