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Transcriptome sequencing and annotation of the microalgae Dunaliella tertiolecta: Pathway description and gene discovery for production of next-generation biofuels

机译:微型藻类杜氏藻的转录组测序和注释:下一代生物燃料生产的途径描述和基因发现

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Background Biodiesel or ethanol derived from lipids or starch produced by microalgae may overcome many of the sustainability challenges previously ascribed to petroleum-based fuels and first generation plant-based biofuels. The paucity of microalgae genome sequences, however, limits gene-based biofuel feedstock optimization studies. Here we describe the sequencing and de novo transcriptome assembly for the non-model microalgae species, Dunaliella tertiolecta, and identify pathways and genes of importance related to biofuel production. Results Next generation DNA pyrosequencing technology applied to D. tertiolecta transcripts produced 1,363,336 high quality reads with an average length of 400 bases. Following quality and size trimming, ~ 45% of the high quality reads were assembled into 33,307 isotigs with a 31-fold coverage and 376,482 singletons. Assembled sequences and singletons were subjected to BLAST similarity searches and annotated with Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) orthology (KO) identifiers. These analyses identified the majority of lipid and starch biosynthesis and catabolism pathways in D. tertiolecta. Conclusions The construction of metabolic pathways involved in the biosynthesis and catabolism of fatty acids, triacylglycrols, and starch in D. tertiolecta as well as the assembled transcriptome provide a foundation for the molecular genetics and functional genomics required to direct metabolic engineering efforts that seek to enhance the quantity and character of microalgae-based biofuel feedstock.
机译:背景技术由微藻产生的脂质或淀粉衍生的生物柴油或乙醇可以克服以前归因于石油基燃料和第一代植物基生物燃料的许多可持续性挑战。然而,微藻基因组序列的缺乏限制了基于基因的生物燃料原料优化研究。在这里,我们描述了非模型微藻物种杜氏杜氏藻的测序和从头转录组装配,并鉴定了与生物燃料生产相关的重要途径和基因。结果应用于D. tertiolecta转录本的下一代DNA焦磷酸测序技术产生了1,363,336个高质量读段,平均长度为400个碱基。在对质量和大小进行修整后,将约45%的高质量读段组装成33,307个isotig,覆盖范围为31倍,单峰为376,482个。对组装的序列和单例进行BLAST相似性搜索,并用基因本体论(GO)和《京都议定书》的基因与基因组百科全书(KEGG)正交学(KO)标识符进行注释。这些分析确定了D. tertiolecta中大多数脂质和淀粉的生物合成和分解代谢途径。结论参与D. tertiolecta中脂肪酸,三酰基甘油和淀粉的生物合成和分解代谢的代谢途径的构建以及组装的转录组为指导试图增强代谢的代谢工程工作所需的分子遗传学和功能基因组学奠定了基础微藻类生物燃料原料的数量和特性。

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