Liu Jundi, Hou Jie, Chen Huimin, Pei Keliang, Li Yi, He Xin-Qiang
College of Forestry, Gansu Agriculture University, Lanzhou 730070, China.
School of Life Sciences, Peking University, Beijing 100871, China.
Int J Mol Sci. 2017 Aug 6;18(8):1716. doi: 10.3390/ijms18081716.
The change of pectin epitopes during procambium-cambium continuum development was investigated by immunolocalization in poplar. The monoclonal antibody JIM5 labels homogalacturonan (HGA) with a low degree of esterification, and the monoclonal antibody JIM7 labels HGA with a high degree of methyl-esterification. Arabinan, rather than galactan, and HGA with low degree of esterification were located in the cell walls of procambial, while HGA with a low degree of esterification was located in the tangential walls, and galactan was located in both the tangential and radial walls of procambial, yet nearly no arabinan was located in the tangential walls of the cambial cells. The changes in pectin distribution took place when periclinal divisions appeared within a procambial trace. The distribution difference of pectin epitopes was also present in procambium-cambium derivatives. The arabinan existed in all cell walls of primary xylem, but was absent from the tangential walls of secondary xylem cells. The galactan existed only in mature primary phloem. Furthermore, 19 pectin methylesterases (PMEs) genes were identified by RNA sequencing, six genes presented highly differentially and were supposed to be involved in the cell wall esterification process. The results provide direct evidence of the dynamic changes of pectin epitopes during the development of the procambium-cambium continuum in poplar.
通过杨树中的免疫定位研究了原形成层-形成层连续体发育过程中果胶表位的变化。单克隆抗体JIM5标记低酯化度的同型半乳糖醛酸聚糖(HGA),单克隆抗体JIM7标记高甲酯化度的HGA。阿拉伯聚糖而非半乳聚糖以及低酯化度的HGA位于原形成层的细胞壁中,低酯化度的HGA位于切向壁中,半乳聚糖位于原形成层的切向壁和径向壁中,而形成层细胞的切向壁中几乎没有阿拉伯聚糖。当原形成层束内出现平周分裂时,果胶分布发生变化。果胶表位的分布差异在原形成层-形成层衍生物中也存在。阿拉伯聚糖存在于初生木质部的所有细胞壁中,但在次生木质部细胞的切向壁中不存在。半乳聚糖仅存在于成熟的初生韧皮部中。此外,通过RNA测序鉴定了19个果胶甲酯酶(PME)基因,其中6个基因呈现高度差异表达,推测参与细胞壁酯化过程。这些结果为杨树原形成层-形成层连续体发育过程中果胶表位的动态变化提供了直接证据。