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比较代谢组学和转录组学整合揭示的提高菥蓂种子油产量的有效机制

Effective Mechanisms for Improving Seed Oil Production in Pennycress ( L.) Highlighted by Integration of Comparative Metabolomics and Transcriptomics.

作者信息

Johnston Christopher, García Navarrete Leidy Tatiana, Ortiz Emmanuel, Romsdahl Trevor B, Guzha Athanas, Chapman Kent D, Grotewold Erich, Alonso Ana Paula

机构信息

Department of Biological Sciences, BioDiscovery Institute, University of North Texas, Denton, TX, United States.

Department of Biochemistry and Molecular Biology, Michigan State University, East Lansing, MI, United States.

出版信息

Front Plant Sci. 2022 Jul 14;13:943585. doi: 10.3389/fpls.2022.943585. eCollection 2022.

Abstract

Pennycress is a potentially lucrative biofuel crop due to its high content of long-chain unsaturated fatty acids, and because it uses non-conventional pathways to achieve efficient oil production. However, metabolic engineering is required to improve pennycress oilseed content and make it an economically viable source of aviation fuel. Research is warranted to determine if further upregulation of these non-conventional pathways could improve oil production within the species even more, which would indicate these processes serve as promising metabolic engineering targets and could provide the improvement necessary for economic feasibility of this crop. To test this hypothesis, we performed a comparative biomass, metabolomic, and transcriptomic analyses between a high oil accession (HO) and low oil accession (LO) of pennycress to assess potential factors required to optimize oil content. An evident reduction in glycolysis intermediates, improved oxidative pentose phosphate pathway activity, malate accumulation in the tricarboxylic acid cycle, and an anaplerotic pathway upregulation were noted in the HO genotype. Additionally, higher levels of threonine aldolase transcripts imply a pyruvate bypass mechanism for acetyl-CoA production. Nucleotide sugar and ascorbate accumulation also were evident in HO, suggesting differential fate of associated carbon between the two genotypes. An altered transcriptome related to lipid droplet (LD) biosynthesis and stability suggests a contribution to a more tightly-packed LD arrangement in HO cotyledons. In addition to the importance of central carbon metabolism augmentation, alternative routes of carbon entry into fatty acid synthesis and modification, as well as transcriptionally modified changes in LD regulation, are key aspects of metabolism and storage associated with economically favorable phenotypes of the species.

摘要

由于富含长链不饱和脂肪酸,且利用非常规途径实现高效产油,菥蓂是一种具有潜在高利润的生物燃料作物。然而,需要进行代谢工程来提高菥蓂的种子含油量,使其成为经济上可行的航空燃料来源。有必要开展研究以确定进一步上调这些非常规途径是否能进一步提高该物种的产油量,这将表明这些过程是有前景的代谢工程靶点,并可为该作物经济可行性所需的改进提供支持。为了验证这一假设,我们对菥蓂的高油材料(HO)和低油材料(LO)进行了生物量、代谢组和转录组的比较分析,以评估优化含油量所需的潜在因素。在HO基因型中,观察到糖酵解中间产物明显减少、氧化戊糖磷酸途径活性提高、三羧酸循环中苹果酸积累以及回补途径上调。此外,苏氨酸醛缩酶转录本水平较高,这意味着存在丙酮酸旁路机制用于生成乙酰辅酶A。HO中核苷酸糖和抗坏血酸的积累也很明显,表明两种基因型之间相关碳的命运不同。与脂滴(LD)生物合成和稳定性相关的转录组变化表明,这有助于HO子叶中脂滴排列更紧密。除了增强中心碳代谢的重要性外,碳进入脂肪酸合成和修饰的替代途径以及脂滴调控中的转录修饰变化,是与该物种经济有利表型相关的代谢和储存的关键方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b49/9330397/06af6e8df436/fpls-13-943585-g001.jpg

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