Exploiting lipid droplet metabolic pathway to foster lipid production: oleosin in focus.

IF 5.3 2区 生物学 Q1 PLANT SCIENCES
Manmehar Kaur, Kshitija Sinha, Peter J Eastmond, Rupam Kumar Bhunia
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引用次数: 0

Abstract

In the past decade, there has been an emerging gap between the demand and supply of vegetable oils globally for both edible and industrial use. Lipids are important biomolecules with enormous applications in the industrial sector and a major source of energy for animals and plants. Hence, to elevate the lipid content through metabolic engineering, new strategies have come up for triacylglycerol (TAG) accumulation and in raising the lipid or oil yield in crop plants. Increased levels of energy density can be achieved by single and multiple gene strategies that re-orient the carbon flux into TAG. Transcription factors and enzymes of the metabolic pathways have been targeted to foster lipid production. Oleosin, a structural protein of the lipid droplet plays a vital role in its stabilization and subsequently in its mobilization for seed germination and seedling growth. Maintenance of increased lipid content with optimal composition is a major target. Knowledge gained from genetic engineering strategies suggests that oleosin co-expression can result in a significant shift in carbon allocation to LDs. In this review, we present a detailed analysis of the recent advancements in metabolic engineering of plant lipids with emphasis on oleosin with its distinct patterns and functions in plants.

利用脂滴代谢途径促进脂质生成:重点研究油蛋白。
在过去的十年中,全球食用和工业用植物油的需求和供应之间出现了新的差距。脂类是一种重要的生物分子,在工业领域有着广泛的应用,也是动植物的主要能量来源。因此,通过代谢工程提高油脂含量,为提高作物甘油三酯(TAG)的积累和油脂产量提出了新的策略。通过将碳通量重新定向到TAG的单基因和多基因策略可以提高能量密度水平。代谢途径的转录因子和酶已经成为促进脂质产生的目标。油蛋白是脂滴的一种结构蛋白,在其稳定和随后的动员种子萌发和幼苗生长中起着至关重要的作用。以最佳成分维持增加的脂质含量是一个主要目标。从基因工程策略中获得的知识表明,油蛋白共表达可以导致碳分配向低密度脂蛋白的显著转变。本文综述了近年来植物脂类代谢工程的研究进展,重点介绍了油脂蛋白及其在植物中的独特模式和功能。
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来源期刊
Plant Cell Reports
Plant Cell Reports 生物-植物科学
CiteScore
10.80
自引率
1.60%
发文量
135
审稿时长
3.2 months
期刊介绍: Plant Cell Reports publishes original, peer-reviewed articles on new advances in all aspects of plant cell science, plant genetics and molecular biology. Papers selected for publication contribute significant new advances to clearly identified technological problems and/or biological questions. The articles will prove relevant beyond the narrow topic of interest to a readership with broad scientific background. The coverage includes such topics as: - genomics and genetics - metabolism - cell biology - abiotic and biotic stress - phytopathology - gene transfer and expression - molecular pharming - systems biology - nanobiotechnology - genome editing - phenomics and synthetic biology The journal also publishes opinion papers, review and focus articles on the latest developments and new advances in research and technology in plant molecular biology and biotechnology.
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