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WRINKLED transcription factors orchestrate tissue-specific regulation of fatty acid biosynthesis in Arabidopsis.

机译:WRINKLED转录因子在拟南芥中协调脂肪酸生物合成的组织特异性调节。

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Acyl lipids are essential constituents of all cells, but acyl chain requirements vary greatly and depend on the cell type considered. This implies a tight regulation of fatty acid production so that supply fits demand. Isolation of the Arabidopsis thaliana WRINKLED1 (WRI1) transcription factor established the importance of transcriptional regulation for modulating the rate of acyl chain production. Here, we report the isolation of two additional regulators of the fatty acid biosynthetic pathway, WRI3 and WRI4, which are closely related to WRI1 and belong to the APETALA2-ethylene-responsive element binding protein family of transcription factors. These three WRIs define a family of regulators capable of triggering sustained rates of acyl chain synthesis. However, expression patterns of the three WRIs differ markedly. Whereas only WRI1 activates fatty acid biosynthesis in seeds for triacylglycerol production, the three WRIs are required in floral tissues to provide acyl chains for cutin biosynthesis and prevent adherence of these developing organs and subsequent semisterility. The targets of these WRIs encode enzymes providing precursors (acyl chain and glycerol backbones) for various lipid biosynthetic pathways, but not the subsequent lipid-assembling enzymes. These results provide insights into the developmental regulation of fatty acid production in plants.
机译:酰基脂质是所有细胞的必需成分,但是酰基链的要求差异很大,并且取决于所考虑的细胞类型。这意味着要严格控制脂肪酸的生产,以便供应符合需求。拟南芥WRINKLED1(WRI1)转录因子的分离确立了转录调节对于调节酰基链产生速率的重要性。在这里,我们报告了脂肪酸生物合成途径的另外两个调节剂WRI3和WRI4的分离,它们与WRI1密切相关,属于转录因子APETALA2-乙烯反应性元素结合蛋白家族。这三个WRI定义了一系列能够触发酰基链合成持续速率的调节剂。然而,三个WRI的表达模式明显不同。尽管只有WRI1激活种子中脂肪酸的生物合成以产生三酰甘油,但花组织中需要三个WRI,以提供用于角质素生物合成的酰基链并防止这些发育器官的粘附和随后的半不育。这些WRI的靶标编码提供各种脂质生物合成途径的前体(酰基链和甘油主链)的酶,但不提供随后的脂质组装酶。这些结果为植物脂肪酸生产的发育调控提供了见识。

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