Department of Plant and Environmental Sciences, DynaMo Center, University of Copenhagen, Thorvaldsensvej, Frederiksberg C, Denmark.
J Exp Bot. 2019 Aug 19;70(16):4305-4317. doi: 10.1093/jxb/erz176.
The phloem cap of Arabidopsis thaliana accumulates glucosinolates that yield toxic catabolites upon damage-induced hydrolysis. These defence compounds are stored in high concentrations in millimetre long S-cells. At early stages of development, S-cells initiate a process indicative of programmed cell death. How these cells are maintained in a highly turgescent state following this process is currently unknown. Here, we show that S-cells undergo substantial morphological changes during early differentiation. Vacuolar collapse and rapid clearance of the cytoplasm did not occur until senescence. Instead, smooth endoplasmic reticulum, Golgi bodies, vacuoles, and undifferentiated plastids were observed. Lack of chloroplasts indicates that S-cells depend on metabolite supply from neighbouring cells. Interestingly, TEM revealed numerous plasmodesmata between S-cells and neighbouring cells. Photoactivation of a symplasmic tracer showed coupling with neighbouring cells that are involved in glucosinolate synthesis. Hence, symplasmic transport might contribute to glucosinolate storage in S-cells. To investigate the fate of S-cells, we traced them in flower stalks from the earliest detectable stages to senescence. At late stages, S-cells were shown to deposit thick secondary cell walls and transform into phloem fibres. Thus, phloem fibres in the herbaceous plant Arabidopsis pass a pronounced phase of chemical defence during early stages of development.
拟南芥韧皮帽积累了硫代葡萄糖苷,在损伤诱导水解时会产生有毒的分解产物。这些防御化合物以毫米长的 S 细胞中高浓度储存。在发育的早期阶段,S 细胞启动了一个程序性细胞死亡的过程。在这个过程之后,这些细胞如何保持在高度肿胀的状态是目前未知的。在这里,我们表明 S 细胞在早期分化过程中经历了显著的形态变化。液泡崩溃和细胞质的快速清除直到衰老才发生。相反,观察到光滑内质网、高尔基体、液泡和未分化的质体。缺乏叶绿体表明 S 细胞依赖于邻近细胞的代谢物供应。有趣的是,TEM 显示 S 细胞和邻近细胞之间有许多胞间连丝。用共质体示踪剂进行光激活显示与参与硫代葡萄糖苷合成的邻近细胞偶联。因此,共质体运输可能有助于 S 细胞中硫代葡萄糖苷的储存。为了研究 S 细胞的命运,我们从最早可检测到的阶段到衰老,在花茎中追踪它们。在晚期,S 细胞被证明沉积了厚厚的次生细胞壁,并转化为韧皮纤维。因此,草本拟南芥中的韧皮纤维在发育的早期阶段经历了一个明显的化学防御阶段。