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首页> 外文期刊>Plant physiology >Engineering Monolignol p-Coumarate Conjugates into Poplar and Arabidopsis Lignins
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Engineering Monolignol p-Coumarate Conjugates into Poplar and Arabidopsis Lignins

机译:工程单木香酚对香豆酸酯共轭为白杨和拟南芥木质素。

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摘要

Lignin acylation, the decoration of hydroxyls on lignin structural units with acyl groups, is common in many plant species. Monocot lignins are decorated with p-coumarates by the polymerization of monolignol p-coumarate conjugates. The acyltransferase involved in the formation of these conjugates has been identified in a number of model monocot species, but the effect of monolignol p-coumarate conjugates on lignification and plant growth and development has not yet been examined in plants that do not inherently possess p-coumarates on their lignins. The rice (Oryza sativa) p-COUMAROYL-Coenzyme A MONOLIGNOL TRANSFERASE gene was introduced into two eudicots, Arabidopsis (Arabidopsis thaliana) and poplar (Populus alba 3 grandidentata), and a series of analytical methods was used to show the incorporation of the ensuing monolignol p-coumarate conjugates into the lignin of these plants. In poplar, specifically, the addition of these conjugates did not occur at the expense of the naturally incorporated monolignol p-hydroxybenzoates. Plants expressing the p-COUMAROYL-Coenzyme A MONOLIGNOL TRANSFERASE transgene can therefore produce monolignol p-coumarate conjugates essentially without competing with the formation of other acylated monolignols and without drastically impacting normal monolignol production.
机译:木质素酰化是木质素结构单元上带有酰基的羟基修饰,在许多植物中都很常见。通过单木香酚对香豆酸酯共轭物的聚合,用对香豆酸酯修饰单子叶植物木质素。已经在许多模型单子叶植物物种中鉴定了参与这些缀合物形成的酰基转移酶,但尚未在固有地不具有p-香豆素的植物中研究了单木酚对香豆酸酯缀合物对木质化以及植物生长和发育的影响。香豆酸盐的木质素。将水稻(Oryza sativa)对-香豆素-辅酶A MONOLIGNOL TRANSFERASE基因引入到两个拟南芥中,拟南芥(Arabidopsis thaliana)和杨树(Populus alba 3 grandidentata),并使用一系列分析方法显示了随后的结合。将单木酚对香豆酸酯缀合物结合到这些植物的木质素中。具体地,在杨树中,这些缀合物的添加并未以天然掺入的单木酚对羟基苯甲酸酯为代价发生。因此,表达对-香豆酰基-辅酶A-单羟基转移酶转基因的植物基本上可以产生单木香酚对香豆酸酯缀合物,而不会与其他酰化单木香酚的形成竞争,并且不会显着影响正常的单木香酚的生产。

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