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Isolation of a novel cell wall architecture mutant of rice with defective Arabidopsis COBL4 ortholog BC1 required for regulated deposition of secondary cell wall components

机译:分离具有缺陷拟南芥COBL4 ortholog BC1的水稻新细胞壁结构突变体,用于调节次级细胞壁成分的沉积

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The plant secondary cell wall is a highly ordered structure composed of various polysaccharides, phenolic components and proteins. Its coordinated regulation of a number of complex metabolic pathways and assembly has not been resolved. To understand the molecular mechanisms that regulate secondary cell wall synthesis, we isolated a novel rice mutant, cell wall architecture1 (cwa1), that exhibits an irregular thickening pattern in the secondary cell wall of sclerenchyma, as well as culm brittleness and reduced cellulose content in mature internodes. Light and transmission electron microscopy revealed that the cwa1 mutant plant has regions of local aggregation in the secondary cell walls of the cortical fibers in its internodes, showing uneven thickness. Ultraviolet microscopic observation indicated that localization of cell wall phenolic components was perturbed and that these components abundantly deposited at the aggregated cell wall regions in sclerenchyma. Therefore, regulation of deposition and assembly of secondary cell wall materials, i.e. phenolic components, appear to be disturbed by mutation of the cwa1 gene. Genetic analysis showed that cwa1 is allelic to brittle culm1 (bc1), which encodes the glycosylphosphatidylinositol-anchored COBRA-like protein specifically in plants. BC1 is known as a regulator that controls the culm mechanical strength and cellulose content in the secondary cell walls of sclerenchyma, but the precise function of BC1 has not been resolved. Our results suggest that CWA1/BC1 has an essential role in assembling cell wall constituents at their appropriate sites, thereby enabling synthesis of solid and flexible internodes in rice.
机译:植物二次细胞壁是由各种多糖,酚类成分和蛋白质组成的高度有序的结构。它对许多复杂的代谢途径和组装的协调调节尚未解决。为了了解调节次生细胞壁合成的分子机制,我们分离了一个新的水稻突变体,细胞壁结构1(cwa1),该突变体在硬皮细胞的次生细胞壁上显示出不规则的增厚模式,并且茎秆脆性和纤维素含量降低。成熟的节点间。光和透射电子显微镜显示,cwa1突变植物在节间的皮质纤维的次生细胞壁中具有局部聚集的区域,显示出不均匀的厚度。紫外显微镜观察表明,细胞壁酚类成分的定位受到干扰,并且这些成分大量沉积在硬化组织中聚集的细胞壁区域。因此,二次细胞壁材料即酚类成分的沉积和组装的调节似乎受到cwa1基因突变的干扰。遗传分析显示cwa1与脆性culm1(bc1)等位基因,后者专门在植物中编码糖基磷脂酰肌醇固定的COBRA样蛋白。 BC1是一种调节剂,可控制菌层的次级细胞壁的茎杆机械强度和纤维素含量,但是BC1的确切功能尚未得到解决。我们的结果表明,CWA1 / BC1在组装细胞壁成分的适当位置上具有至关重要的作用,从而能够在水稻中合成坚固而灵活的节间。

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