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A hydroxycinnamoyltransferase responsible for synthesizing suberin aromatics in Arabidopsis

机译:负责合成拟南芥中的木脂蛋白芳烃的羟肉桂酰基转移酶

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摘要

Suberin, a polyester polymer in the cell wall of terrestrial plants, controls the transport of water and nutrients and protects plant from pathogenic infections and environmental stresses. Structurally, suberin consists of aliphatic and aromatic domains; p-hydroxycin-namates, such as ferulate, p-coumarate, and/or sinapate, are the major phenolic constituents of the latter. By analyzing the "wall-bound" phenolics of mutant lines of Arabidopsis deficient in a family of acyl-CoA dependent acyltransferase (BAHD) genes, we discovered that the formation of aromatic suberin in Arabidopsis, primarily in seed and root tissues, depends on a member of the BAHD superfamily of enzymes encoded by At5g41040. This enzyme exhibits an ω-hydroxyacid hydroxycinnamoyltransferase activity with an in vitro kinetic preference for feruloyl-CoA and 16-hydroxypalmitic acid. Knocking down or knocking out the At5g41040 gene in Arabidopsis reduces specifically the quantity of ferulate in suberin, but does not affect the accumulation of p-coumarate or sinapate. The loss of the suberin phenolic differentially affects the aliphatic monomer loads and alters the permeability and sensitivity of seeds and roots to salt stress. This highlights the importance of suberin aromatics in the polymer's function.
机译:Suberin是陆生植物细胞壁中的聚酯聚合物,可控制水和养分的运输,并保护植物免受病原体感染和环境胁迫。在结构上,木栓质由脂肪族和芳香族结构域组成;对羟基cin-namate,例如阿魏酸盐,对香豆酸盐和/或芥子酸酯是后者的主要酚类成分。通过分析缺乏酰基-CoA依赖性酰基转移酶(BAHD)基因家族的拟南芥突变体系的“壁结合”酚醛树脂,我们发现拟南芥中主要在种子和根组织中形成芳香族香木素的过程取决于At5g41040编码的酶的BAHD超家族的成员。该酶具有ω-羟酸羟基肉桂酰基转移酶活性,在体外对阿魏酸-CoA和16-羟基棕榈酸具有动力学偏好。敲除或敲除拟南芥中的At5g41040基因可特异性降低木栓中阿魏酸的含量,但不会影响对香豆酸盐或芥子酸盐的积累。木质素酚醛的损失差异地影响脂肪族单体的负载并改变种子和根系对盐胁迫的渗透性和敏感性。这突显了在木质素的功能上,木质素芳烃的重要性。

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