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Characterization of a cinnamoyl-CoA reductase 1 (CCR1) mutant in maize: effects on lignification, fibre development, and global gene expression

机译:玉米中的肉桂酰辅酶A还原酶1(CCR1)突变体的表征:对木质化,纤维发育和全球基因表达的影响

摘要

Cinnamoyl-CoA reductase (CCR), which catalyses the first committed step of the lignin-specific branch of monolignol biosynthesis, has been extensively characterized in dicot species, but few data are available in monocots. By screening a Mu insertional mutant collection in maize, a mutant in the CCR1 gene was isolated named Zmccr1–. In this mutant, CCR1 gene expression is reduced to 31% of the residual wild-type level. Zmccr1– exhibited enhanced digestibility without compromising plant growth and development. Lignin analysis revealed a slight decrease in lignin content and significant changes in lignin structure. p-Hydroxyphenyl units were strongly decreased and the syringyl/guaiacyl ratio was slightly increased. At the cellular level, alterations in lignin deposition were mainly observed in the walls of the sclerenchymatic fibre cells surrounding the vascular bundles. These cell walls showed little to no staining with phloroglucinol. These histochemical changes were accompanied by an increase in sclerenchyma surface area and an alteration in cell shape. In keeping with this cell type-specific phenotype, transcriptomics performed at an early stage of plant development revealed the down-regulation of genes specifically associated with fibre wall formation. To the present authors' knowledge, this is the first functional characterization of CCR1 in a grass species. (Résumé d'auteur)
机译:肉桂酰基辅酶A还原酶(CCR),催化单木酚生物合成的木质素特异性分支的第一步,已在双子叶植物中得到了广泛的表征,但单子叶植物的数据很少。通过筛选玉米中的Mu插入突变体集合,分离出CCR1基因中的突变体,命名为Zmccr1–。在此突变体中,CCR1基因表达降低至残余野生型水平的31%。 Zmccr1 –在不损害植物生长发育的情况下具有增强的消化率。木质素分析显示木质素含量略有下降,木质素结构发生重大变化。对羟基苯基单元大大降低,而丁香基/愈创木基的比例略有增加。在细胞水平上,木质素沉积的变化主要在血管束周围的硬化纤维细胞壁上观察到。这些细胞壁几乎没有间苯三酚染色。这些组织化学变化伴随着硬化壁表面积的增加和细胞形状的改变。与这种细胞类型特异性表型保持一致,在植物发育的早期阶段进行的转录组学揭示了与纤维壁形成特异性相关的基因的下调。就目前的作者所知,这是CCR1在草种中的第一个功能表征。 (Résuméd'auteur)

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