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首页> 外文期刊>Plant physiology >A coumaroyl-ester-3-hydroxylase insertion mutant reveals the existence of nonredundant meta-hydroxylation pathways and essential roles for phenolic precursors in cell expansion and plant growth
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A coumaroyl-ester-3-hydroxylase insertion mutant reveals the existence of nonredundant meta-hydroxylation pathways and essential roles for phenolic precursors in cell expansion and plant growth

机译:香豆酰基酯-3-羟化酶插入突变体揭示了非冗余的元羟化途径的存在以及酚类前体在细胞扩增和植物生长中的重要作用

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Cytochromes P450 monooxygenases from the CYP98 family catalyze the meta-hydroxylation step in the phenylpropanoid biosynthetic pathway. The ref8 Arabidopsis ( Arabidopsis thaliana) mutant, with a point mutation in the CYP98A3 gene, was previously described to show developmental defects, changes in lignin composition, and lack of soluble sinapoyl esters. We isolated a T-DNA insertion mutant in CYP98A3 and show that this mutation leads to a more drastic inhibition of plant development and inhibition of cell growth. Similar to the ref8 mutant, the insertion mutant has reduced lignin content, with stem lignin essentially made of p-hydroxyphenyl units and trace amounts of guaiacyl and syringyl units. However, its roots display an ectopic lignification and a substantial proportion of guaiacyl and syringyl units, suggesting the occurrence of an alternative CYP98A3-independent meta-hydroxylation mechanism active mainly in the roots. Relative to the control, mutant plantlets produce very low amounts of sinapoyl esters, but accumulate flavonol glycosides. Reduced cell growth seems correlated with alterations in the abundance of cell wall polysaccharides, in particular decrease in crystalline cellulose, and profound modifications in gene expression and homeostasis reminiscent of a stress response. CYP98A3 thus constitutes a critical bottleneck in the phenylpropanoid pathway and in the synthesis of compounds controlling plant development. CYP98A3 cosuppressed lines show a gradation of developmental defects and changes in lignin content (40% reduction) and structure ( prominent frequency of p-hydroxyphenyl units), but content in foliar sinapoyl esters is similar to the control. The purple coloration of their leaves is correlated to the accumulation of sinapoylated anthocyanins.
机译:CYP98家族的细胞色素P450单加氧酶催化苯丙烷类生物合成途径中的间羟基化步骤。先前描述的ref8拟南芥(拟南芥)突变体在CYP98A3基因中有一个点突变,显示出发育缺陷,木质素组成的变化和可溶性芥子酸酯的缺乏。我们在CYP98A3中分离了一个T-DNA插入突变体,并显示此突变导致对植物发育和细胞生长的抑制作用更加剧烈。与ref8突变体相似,插入突变体的木质素含量降低,茎木质素主要由对羟基苯基单元和痕量的愈创木基和丁香基单元组成。然而,它的根部表现出异位木质化和相当大比例的愈创木基和丁香基单元,这表明存在主要在根部起作用的另一种不依赖CYP98A3的间羟基化机制。相对于对照,突变的小植株产生非常少量的芥子酰基酯,但是积累了黄酮醇苷。细胞生长的减少似乎与细胞壁多糖丰度的变化有关,尤其是结晶纤维素的减少,以及基因表达和体内平衡的深刻改变,使人联想到应激反应。因此,CYP98A3构成了苯丙烷途径和控制植物发育的化合物合成中的关键瓶颈。 CYP98A3共抑制的品系显示发育缺陷的等级以及木质素含量(降低40%)和结构(对羟基苯酯单元的突出频率)的变化,但叶芥子基酯中的含量与对照相似。他们的叶子的紫色与芥子化的花青素的积累有关。

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