Key Lab of Bamboo and Rattan Science & Technology, International Center for Bamboo and Rattan, Beijing, 100102, China.
Planta. 2018 Oct;248(4):849-858. doi: 10.1007/s00425-018-2931-9. Epub 2018 Jun 25.
Both G units and S units deposited in the whole lignification process of xylem fiber. The topochemical variations in newly formed xylem and phloem of Populus × euramericana were investigated by combined microscopic techniques. During xylem formation, earlier cell wall deposition in vessel and afterwards in the neighboring fiber was observed in situ. Raman images in xylem fiber emphasized that cell wall deposition was an ordered process which lignification started in cell corner following carbohydrates deposition. Higher deposition speed of carbohydrates was revealed at the beginning of the cell wall differentiation, and the syringyl (S) units deposition was more pronounced compared with guaiacyl (G) units at the earlier stage of lignification. The comparative analysis of cell wall composition in phloem fiber indicated that phloem formed earlier than xylem and the distribution of lignin monomers varied significantly with phloem fiber location. Furthermore, an interesting phenomenon was found that the outermost phloem fiber near the periderm displayed a multilayered structure with alternating broad and narrow layer, and the broad lamellae showed higher concentration of carbohydrates and S lignin. The cytological information including cell wall composition and lignin structure of xylem and phloem might be helpful to understand the wood growth progresses and facilitate utilization of woody plants.
在木质部纤维的整个木质化过程中,G 单元和 S 单元都有沉积。采用显微技术联合研究了欧美山杨新形成的木质部和韧皮部的表面化学变化。在木质部形成过程中,观察到导管中较早的细胞壁沉积,随后是相邻纤维中的细胞壁沉积。木质部纤维中的拉曼图像强调了细胞壁沉积是一个有序的过程,木质化从碳水化合物沉积后的细胞角开始。在细胞壁分化的早期,发现碳水化合物的沉积速度更高,与木质化早期相比,愈创木基(S)单元的沉积更为明显。韧皮部纤维细胞壁成分的比较分析表明,韧皮部比木质部形成得更早,木质素单体的分布与韧皮部纤维的位置有很大的差异。此外,还发现了一个有趣的现象,即靠近周皮的最外层韧皮部纤维呈现出交替的宽层和窄层的多层结构,宽层显示出更高浓度的碳水化合物和 S 型木质素。木质部和韧皮部的细胞壁成分和木质素结构的细胞学信息可能有助于理解木材的生长进程,并促进木本植物的利用。