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鉴定拟南芥中用于合成愈伤木酚素的阿魏酰辅酶 A 转移酶。

Identification of an Arabidopsis feruloyl-coenzyme A transferase required for suberin synthesis.

机构信息

Department of Plant Biology, Michigan State University, East Lansing, Michigan 48824, USA.

出版信息

Plant Physiol. 2009 Nov;151(3):1317-28. doi: 10.1104/pp.109.144907. Epub 2009 Sep 16.

Abstract

All plants produce suberin, a lipophilic barrier of the cell wall that controls water and solute fluxes and restricts pathogen infection. It is often described as a heteropolymer comprised of polyaliphatic and polyaromatic domains. Major monomers include omega-hydroxy and alpha,omega-dicarboxylic fatty acids, glycerol, and ferulate. No genes have yet been identified for the aromatic suberin pathway. Here we demonstrate that Arabidopsis (Arabidopsis thaliana) gene AT5G41040, a member of the BAHD family of acyltransferases, is essential for incorporation of ferulate into suberin. In Arabidopsis plants transformed with the AT5G41040 promoter:YFP fusion, reporter expression is localized to cell layers undergoing suberization. Knockout mutants of AT5G41040 show almost complete elimination of suberin-associated ester-linked ferulate. However, the classic lamellar structure of suberin in root periderm of at5g41040 is not disrupted. The reduction in ferulate in at5g41040-knockout seeds is associated with an approximate stoichiometric decrease in aliphatic monomers containing omega-hydroxyl groups. Recombinant AT5G41040p catalyzed acyl transfer from feruloyl-coenzyme A to omega-hydroxyfatty acids and fatty alcohols, demonstrating that the gene encodes a feruloyl transferase. CYP86B1, a cytochrome P450 monooxygenase gene whose transcript levels correlate with AT5G41040 expression, was also investigated. Knockouts and overexpression confirmed CYP86B1 as an oxidase required for the biosynthesis of very-long-chain saturated alpha,omega-bifunctional aliphatic monomers in suberin. The seed suberin composition of cyp86b1 knockout was surprisingly dominated by unsubstituted fatty acids that are incapable of polymeric linkages. Together, these results challenge our current view of suberin structure by questioning both the function of ester-linked ferulate as an essential component and the existence of an extended aliphatic polyester.

摘要

所有植物都产生了角质,这是一种细胞壁的亲脂性屏障,控制着水分和溶质的流动,并限制了病原体的感染。它通常被描述为一种由脂肪族和芳香族结构域组成的杂聚物。主要单体包括ω-羟基和α,ω-二羧酸脂肪酸、甘油和阿魏酸。目前还没有鉴定出芳香族角质途径的基因。在这里,我们证明了拟南芥(Arabidopsis thaliana)基因 AT5G41040,一种酰基转移酶 BAHD 家族的成员,对于阿魏酸掺入角质是必不可少的。在 AT5G41040 启动子:YFP 融合的拟南芥植物中,报告基因的表达定位于正在角质化的细胞层。AT5G41040 的敲除突变体显示出与角质相关的酯键连接的阿魏酸几乎完全消除。然而,根周皮中角质的经典层状结构在 at5g41040 中并未被破坏。在 at5g41040 敲除种子中阿魏酸的减少与含有ω-羟基的脂肪族单体的近似化学计量减少有关。重组 AT5G41040p 催化从阿魏酰辅酶 A 到ω-羟基脂肪酸和脂肪醇的酰基转移,证明该基因编码一种阿魏酸转移酶。CYP86B1 是一种细胞色素 P450 单加氧酶基因,其转录水平与 AT5G41040 的表达相关,也进行了研究。敲除和过表达证实 CYP86B1 是角质生物合成中非常长链饱和的α,ω-双官能脂肪族单体所必需的氧化酶。cyp86b1 敲除种子的角质组成令人惊讶地由无法进行聚合连接的未取代脂肪酸主导。总的来说,这些结果通过质疑酯键连接的阿魏酸作为必需成分的功能以及扩展的脂肪聚酯的存在,挑战了我们目前对角质结构的看法。

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