Zhou Ya-Fu, Mao Shao-Li, Li Si-Feng, Ni Xi-Lu, Li Bin, Liu Wen-Zhe
Xi'an Botanical Garden of Shaanxi Province, Institute of Botany of Shaanxi Province, Xi'an 710061, China; Key Laboratory of Resource Biology and Biotechnology in Western China, Ministry of Education, School of Life Science, Northwest University, Xi'an 710069, China.
Xi'an Botanical Garden of Shaanxi Province, Institute of Botany of Shaanxi Province, Xi'an 710061, China.
Plant Sci. 2014 Aug;225:147-60. doi: 10.1016/j.plantsci.2014.06.007. Epub 2014 Jun 20.
The formation of secretory cavities in Rutaceae has been the subject of great interest. In this study, cytological events that are involved in the lysigenous formation of the secretory cavities in the leaves of Dictamnus dasycarpus are characterized by an interesting pattern of programmed cell death (PCD). During the developmental process, clusters of cells from a single protoepidermal cell embark on different trajectories and undergo different cell death fates: the cell walls of the secretory cells have characteristics of thinning or complete breakdown, while the sheath cells present a predominantly thick-walled feature. A DAPI assay shows deformed nuclei that are further confirmed to be TUNEL-positive. Gel electrophoresis indicates that DNA cleavage is random and does not result in ladder-like DNA fragmentation. Ultrastructurally, several remarkable features of PCD have been determined, such as misshapen nuclei with condensed chromatin and a significantly diffused membrane, degenerated mitochondria and plastids with disturbed membrane systems, multivesicular bodies, plastolysomes, vacuole disruption and lysis of the center secretory cell. Cytological evidence and Nile red stains exhibit abundant essential oils accumulated in degenerated outer secretory cells after the dissolution of the center secretory cell. In addition, explanations of taxonomic importance and the relationship between PCD and oil droplet accumulation in the secretory cavities are also discussed.
芸香科植物中分泌腔的形成一直是人们非常感兴趣的课题。在本研究中,白鲜叶中分泌腔溶生形成过程中涉及的细胞学事件具有一种有趣的程序性细胞死亡(PCD)模式。在发育过程中,来自单个原表皮细胞的细胞簇走上不同的轨迹并经历不同的细胞死亡命运:分泌细胞的细胞壁具有变薄或完全分解的特征,而鞘细胞则主要呈现厚壁特征。一种4',6-二脒基-2-苯基吲哚(DAPI)检测显示细胞核变形,进一步证实其为TUNEL阳性。凝胶电泳表明DNA切割是随机的,不会导致梯状DNA片段化。在超微结构上,已确定了PCD的几个显著特征,如染色质浓缩且细胞核形状畸形、膜明显扩散、线粒体和质体退化且膜系统紊乱、多泡体、质溶体、液泡破裂以及中央分泌细胞裂解。细胞学证据和尼罗红染色显示,中央分泌细胞溶解后,退化的外部分泌细胞中积累了大量精油。此外,还讨论了分类学重要性的解释以及PCD与分泌腔中油滴积累之间的关系。