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拟南芥成熟种子中从头脂肪酸合成的调控

Regulation of de novo fatty acid synthesis in maturing oilseeds of Arabidopsis.

作者信息

Baud Sébastien, Lepiniec Loïc

机构信息

INRA, AgroParisTech, Laboratoire de Biologie des semences, Institut Jean-Pierre Bourgin, UMR204, Versailles, France.

出版信息

Plant Physiol Biochem. 2009 Jun;47(6):448-55. doi: 10.1016/j.plaphy.2008.12.006. Epub 2008 Dec 16.

Abstract

As a Brassicaceae, Arabidopsis thaliana constitutes an excellent model system to investigate oil biosynthesis in seeds. Extensive tools for the genetic and molecular dissection of this model species are now available. Together with analytical procedures adapted to its tiny seeds, these tools have allowed major advances in isolating and characterising the factors that participate in the metabolic and developmental control of seed filling. Once the biochemical pathways producing storage lipids, namely triacylglycerols, were elucidated, the question of the regulation of this metabolic network has arisen. The coordinated up regulation of genes encoding enzymes of the fatty acid biosynthetic pathway observed at the onset of seed maturation suggests that the pathway may be subjected to a system of global transcriptional regulation. This has been further established by the study of master regulators of the maturation program like LEAFY COTYLEDON2 and the characterisation of the WRINKLED1 transcription factor. These factors have been shown to participate in a regulatory cascade controlling the induction of the genes involved in fatty acid biosynthesis at the onset of the maturation phase. Although much remains to be elucidated, the framework of the regulatory system controlling fatty acid biosynthesis in Arabidopsis seeds is coming into focus.

摘要

作为十字花科植物,拟南芥是研究种子中油脂生物合成的优秀模式系统。现在已有大量用于对该模式物种进行遗传和分子剖析的工具。这些工具与适用于其微小种子的分析方法相结合,在分离和鉴定参与种子充实代谢和发育控制的因子方面取得了重大进展。一旦阐明了产生储存脂质(即三酰甘油)的生化途径,就出现了该代谢网络的调控问题。在种子成熟开始时观察到的脂肪酸生物合成途径中编码酶的基因的协同上调表明,该途径可能受到全局转录调控系统的作用。通过对成熟程序的主要调节因子如LEAFY COTYLEDON2的研究以及对WRINKLED1转录因子的表征,这一点得到了进一步证实。这些因子已被证明参与了一个调控级联反应,该反应控制着成熟阶段开始时参与脂肪酸生物合成的基因的诱导。尽管仍有许多有待阐明,但控制拟南芥种子中脂肪酸生物合成的调控系统框架正逐渐明晰。

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