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首页> 外文期刊>European Journal of Lipid Science and Technology >Transcriptional regulation of fatty acid production in higher plants: Molecular bases and biotechnological outcomes
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Transcriptional regulation of fatty acid production in higher plants: Molecular bases and biotechnological outcomes

机译:高等植物脂肪酸生产的转录调控:分子基础和生物技术成果

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摘要

Acyl lipids are essential constituents found in every plant cell, where they fulfill diverse biological functions. Requirements for acyl chains depend on the cell type considered and vary greatly, implying a tight regulation of de novo fatty acid production in the plastids so that supply fits demand. Data generated by extensive transcriptome analyses carried out in various plant species and the characterization of the WRINKLED 1 transcription factor in the model plant Arabidopsis ihaliana have first established the importance of transcriptional regulation for modulating the rate of fatty acid production. The fatty acid biosynthetic pathway is indeed subjected to a system of global transcriptional control that coordinates the expression of most genes encoding enzymes of the pathway. Although much remains to be elucidated, the framework of the regulatory system controlling fatty acid biosynthesis in plants is coming into focus. Practical applications: Fatty acids constitute the most abundant form of reduced carbon chains available from nature and plant oils represent the main renewable resource of these fatty acids. Plant oils therefore represent a highly valuable agricultural commodity, the demand for which is increasing rapidly. They are primarily used for food and feed, but they are increasingly being utilized as renewable sources of industrial feedstock and fuel. Knowledge regarding the regulation of fatty production is extensively exploited in the frame of genetic engineering for oilseed crop improvement.
机译:酰基脂质是每个植物细胞中必需的成分,它们在其中具有多种生物学功能。酰基链的要求取决于所考虑的细胞类型,并且相差很大,这意味着对质体中从头生产脂肪酸的严格调节,以使供应适合需求。通过在各种植物物种中进行的大量转录组分析以及模型植物拟南芥中WRINKLED 1转录因子的表征生成的数据首先确定了转录调控对于调节脂肪酸产生速率的重要性。脂肪酸生物合成途径确实受到全局转录控制系统的控制,该系统协调编码该途径酶的大多数基因的表达。尽管还有很多地方需要阐明,但控制植物中脂肪酸生物合成的调节系统的框架已成为人们关注的焦点。实际应用:脂肪酸构成了自然界中还原碳链的最丰富形式,而植物油则代表了这些脂肪酸的主要可再生资源。因此,植物油是一种非常有价值的农产品,其需求正在迅速增加。它们主要用于食品和饲料,但越来越多地用作工业原料和燃料的可再生资源。在油料作物改良的基因工程框架中,关于脂肪生产调控的知识得到了广泛的利用。

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