Kong Que, Yang Yuzhou, Guo Liang, Yuan Ling, Ma Wei
School of Biological Sciences, Nanyang Technological University, Singapore, Singapore.
National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan, China.
Front Plant Sci. 2020 Feb 4;11:24. doi: 10.3389/fpls.2020.00024. eCollection 2020.
Most plant species generate and store triacylglycerol (TAG) in their seeds, serving as a core supply of carbon and energy to support seedling development. Plant seed oils have a wide variety of applications, from being essential for human diets to serving as industrial renewable feedstock. WRINKLED1 (WRI1) transcription factor plays a central role in the transcriptional regulation of plant fatty acid biosynthesis. Since the discovery of gene () in 2004, the function of WRI1 in plant oil biosynthesis has been studied intensively. In recent years, the identification of WRI1 co-regulators and deeper investigations of the structural features and molecular functions of WRI1 have advanced our understanding of the mechanism of the transcriptional regulation of plant oil biosynthesis. These advances also help pave the way for novel approaches that will better utilize WRI1 for bioengineering oil production in crops.
大多数植物物种在其种子中生成并储存三酰甘油(TAG),作为支持幼苗发育的碳和能量的核心供应源。植物种子油有广泛的应用,从对人类饮食至关重要到用作工业可再生原料。皱叶1(WRI1)转录因子在植物脂肪酸生物合成的转录调控中起核心作用。自2004年发现该基因以来,对WRI1在植物油生物合成中的功能进行了深入研究。近年来,WRI1共调节因子的鉴定以及对WRI1结构特征和分子功能的更深入研究,加深了我们对植物油生物合成转录调控机制的理解。这些进展也有助于为更好地利用WRI1进行作物生物工程油脂生产的新方法铺平道路。