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拟南芥 cer26 突变体与 cer2 突变体一样,特异性地影响超长链脂肪酸的延伸过程。

The Arabidopsis cer26 mutant, like the cer2 mutant, is specifically affected in the very long chain fatty acid elongation process.

机构信息

Laboratoire de Biogenèse Membranaire, Université de Bordeaux, UMR5200, F-33000, Bordeaux, France.

出版信息

Plant J. 2013 Mar;73(5):733-46. doi: 10.1111/tpj.12060. Epub 2013 Feb 14.

DOI:10.1111/tpj.12060
PMID:23384041
Abstract

Plant aerial organs are covered by cuticular waxes, which form a hydrophobic crystal layer that mainly serves as a waterproof barrier. Cuticular wax is a complex mixture of very long chain lipids deriving from fatty acids, predominantly of chain lengths from 26 to 34 carbons, which result from acyl-CoA elongase activity. The biochemical mechanism of elongation is well characterized; however, little is known about the specific proteins involved in the elongation of compounds with more than 26 carbons available as precursors of wax synthesis. In this context, we characterized the three Arabidopsis genes of the CER2-like family: CER2, CER26 and CER26-like . Expression pattern analysis showed that the three genes are differentially expressed in an organ- and tissue-specific manner. Using individual T-DNA insertion mutants, together with a cer2 cer26 double mutant, we characterized the specific impact of the inactivation of the different genes on cuticular waxes. In particular, whereas the cer2 mutation impaired the production of wax components longer than 28 carbons, the cer26 mutant was found to be affected in the production of wax components longer than 30 carbons. The analysis of the acyl-CoA pool in the respective transgenic lines confirmed that inactivation of both genes specifically affects the fatty acid elongation process beyond 26 carbons. Furthermore, ectopic expression of CER26 in transgenic plants demonstrates that CER26 facilitates the elongation of the very long chain fatty acids of 30 carbons or more, with high tissular and substrate specificity.

摘要

植物地上器官被角质层蜡质覆盖,形成疏水的晶体层,主要作为防水屏障。角质层蜡质是脂肪酸衍生的非常长链脂质的复杂混合物,主要链长为 26 至 34 个碳原子,这是由酰基辅酶 A 延长酶活性产生的。伸长的生化机制已经很好地描述;然而,对于作为蜡合成前体的超过 26 个碳原子的化合物的伸长所涉及的特定蛋白质知之甚少。在这种情况下,我们对拟南芥 CER2 样家族的三个基因进行了表征:CER2、CER26 和 CER26-like。表达模式分析表明,这三个基因在器官和组织特异性方面以不同的方式表达。使用单个 T-DNA 插入突变体,以及 cer2 cer26 双突变体,我们表征了不同基因失活对角质层蜡质的具体影响。特别是,虽然 cer2 突变会影响长于 28 个碳原子的蜡质成分的产生,但 cer26 突变体发现长于 30 个碳原子的蜡质成分的产生受到影响。在各自的转基因系中酰基辅酶 A 池的分析证实,两个基因的失活都特异性地影响了 26 个碳原子以上的脂肪酸伸长过程。此外,CER26 在转基因植物中的异位表达表明 CER26 促进 30 个碳原子或更多的非常长链脂肪酸的伸长,具有高组织和底物特异性。

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