Mazur Ewa, Kurczyńska Ewa U, Friml Jiři
Laboratory of Cell Biology, Faculty of Biology and Environmental Protection, University of Silesia, Jagiellońska 28, 40-032, Katowice, Poland,
Protoplasma. 2014 Sep;251(5):1125-39. doi: 10.1007/s00709-014-0620-5. Epub 2014 Feb 14.
Development of cambium and its activity is important for our knowledge of the mechanism of secondary growth. Arabidopsis thaliana emerges as a good model plant for such a kind of study. Thus, this paper reports on cellular events taking place in the interfascicular regions of inflorescence stems of A. thaliana, leading to the development of interfascicular cambium from differentiated interfascicular parenchyma cells (IPC). These events are as follows: appearance of auxin accumulation, PIN1 gene expression, polar PIN1 protein localization in the basal plasma membrane and periclinal divisions. Distribution of auxin was observed to be higher in differentiating into cambium parenchyma cells compared to cells within the pith and cortex. Expression of PIN1 in IPC was always preceded by auxin accumulation. Basal localization of PIN1 was already established in the cells prior to their periclinal division. These cellular events initiated within parenchyma cells adjacent to the vascular bundles and successively extended from that point towards the middle region of the interfascicular area, located between neighboring vascular bundles. The final consequence of which was the closure of the cambial ring within the stem. Changes in the chemical composition of IPC walls were also detected and included changes of pectic epitopes, xyloglucans (XG) and extensins rich in hydroxyproline (HRGPs). In summary, results presented in this paper describe interfascicular cambium ontogenesis in terms of successive cellular events in the interfascicular regions of inflorescence stems of Arabidopsis.
形成层的发育及其活动对于我们理解次生生长机制至关重要。拟南芥成为进行此类研究的良好模式植物。因此,本文报道了拟南芥花序茎束间区域发生的细胞事件,这些事件导致束间形成层从已分化的束间薄壁组织细胞(IPC)发育而来。这些事件如下:生长素积累的出现、PIN1基因表达、PIN1蛋白在基部质膜上的极性定位以及平周分裂。与髓和皮层内的细胞相比,在分化为形成层薄壁组织细胞的过程中观察到生长素分布更高。PIN1在IPC中的表达总是先于生长素积累。PIN1的基部定位在细胞平周分裂之前就已确立。这些细胞事件在与维管束相邻的薄壁组织细胞内启动,并从该点依次向位于相邻维管束之间的束间区域中部延伸。其最终结果是茎内形成层环的闭合。还检测到IPC细胞壁化学成分的变化,包括果胶表位、木葡聚糖(XG)和富含羟脯氨酸的伸展蛋白(HRGP)的变化。总之,本文呈现的结果从拟南芥花序茎束间区域连续的细胞事件方面描述了束间形成层的个体发育。