Suppr超能文献

产油绿微藻的时间分辨转录组分析和脂质途径重建揭示了三酰甘油和脂质超积累模型。

Time-resolved transcriptome analysis and lipid pathway reconstruction of the oleaginous green microalga reveal a model for triacylglycerol and lipid hyperaccumulation.

作者信息

Jaeger Daniel, Winkler Anika, Mussgnug Jan H, Kalinowski Jörn, Goesmann Alexander, Kruse Olaf

机构信息

Algae Biotechnology and Bioenergy, Faculty of Biology, Center for Biotechnology (CeBiTec), Bielefeld University, 33615 Bielefeld, Germany.

Microbial Genomics and Biotechnology, Center for Biotechnology (CeBiTec), Bielefeld University, 33615 Bielefeld, Germany.

出版信息

Biotechnol Biofuels. 2017 Aug 14;10:197. doi: 10.1186/s13068-017-0882-1. eCollection 2017.

Abstract

BACKGROUND

Oleaginous microalgae are promising production hosts for the sustainable generation of lipid-based bioproducts and as bioenergy carriers such as biodiesel. Transcriptomics of the lipid accumulation phase, triggered efficiently by nitrogen starvation, is a valuable approach for the identification of gene targets for metabolic engineering.

RESULTS

An explorative analysis of the detailed transcriptional response to different stages of nitrogen availability was performed in the oleaginous green alga . Transcript data were correlated with metabolic data for cellular contents of starch and of different lipid fractions. A pronounced transcriptional down-regulation of photosynthesis became apparent in response to nitrogen starvation, whereas glucose catabolism was found to be up-regulated. An in-depth reconstruction and analysis of the pathways for glycerolipid, central carbon, and starch metabolism revealed that distinct transcriptional changes were generally found only for specific steps within a metabolic pathway. In addition to pathway analyses, the transcript data were also used to refine the current genome annotation. The transcriptome data were integrated into a database and complemented with data for other microalgae which were also subjected to nitrogen starvation. It is available at https://tdbmn.cebitec.uni-bielefeld.de.

CONCLUSIONS

Based on the transcriptional responses to different stages of nitrogen availability, a model for triacylglycerol and lipid hyperaccumulation is proposed, which involves transcriptional induction of thioesterases, differential regulation of lipases, and a re-routing of the central carbon metabolism. Over-expression of distinct thioesterases was identified to be a potential strategy to increase the oleaginous phenotype of , and furthermore specific lipases were identified as potential targets for future metabolic engineering approaches.

摘要

背景

产油微藻是可持续生产脂质基生物产品以及作为生物柴油等生物能源载体的有前景的生产宿主。由氮饥饿有效触发的脂质积累阶段的转录组学,是鉴定代谢工程基因靶点的一种有价值的方法。

结果

对产油绿藻中氮可用性不同阶段的详细转录反应进行了探索性分析。转录数据与淀粉和不同脂质组分的细胞含量的代谢数据相关联。响应氮饥饿,光合作用明显转录下调,而葡萄糖分解代谢上调。对甘油脂质、中心碳和淀粉代谢途径的深入重建和分析表明,通常仅在代谢途径内的特定步骤发现明显的转录变化。除了途径分析外,转录数据还用于完善当前的基因组注释。转录组数据被整合到一个数据库中,并补充了其他也经历氮饥饿的微藻的数据。可在https://tdbmn.cebitec.uni-bielefeld.de获取。

结论

基于对氮可用性不同阶段的转录反应,提出了三酰甘油和脂质超积累的模型,该模型涉及硫酯酶的转录诱导、脂肪酶的差异调节以及中心碳代谢的重新定向。已确定过表达不同的硫酯酶是增加该产油表型的潜在策略,此外,特定脂肪酶被确定为未来代谢工程方法的潜在靶点。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验