School of Life Science, Northwest University, Xi'an 710069, China; State Key Laboratory of Seedling Bioengineering, Ningxia Forestry Institute, Yinchuan 750004, China.
Physiol Plant. 2015 Mar;153(3):419-31. doi: 10.1111/ppl.12255. Epub 2014 Oct 7.
Some species of Allium in Liliaceae have fistular leaves. The fistular lamina of Allium fistulosum undergoes a process from solid to hollow during development. The aims were to reveal the process of fistular leaf formation involved in programmed cell death (PCD) and to compare the cytological events in the execution of cell death to those in the unusual leaf perforations or plant aerenchyma formation. In this study, light and transmission electron microscopy were used to characterize the development of fistular leaves and cytological events. Terminal deoxynucleotidyl transferase-mediated dUTP nick end labeling (TUNEL) assays and gel electrophoresis were used to determine nuclear DNA cleavage during the PCD. The cavity arises in the leaf blade by degradation of specialized cells, the designated pre-cavity cells, in the center of the leaves. Nuclei of cells within the pre-cavity site become TUNEL-positive, indicating that DNA cleavage is an early event. Gel electrophoresis revealed that DNA internucleosomal cleavage occurred resulting in a characteristic DNA ladder. Ultrastructural analysis of cells at the different stages showed disrupted vacuoles, misshapen nuclei with condensed chromatin, degraded cytoplasm and organelles and emergence of secondary vacuoles. The cell walls degraded last, and residue of degraded cell walls aggregated together. These results revealed that PCD plays a critical role in the development of A. fistulosum fistular leaves. The continuous cavity in A. fistulosum leaves resemble the aerenchyma in the pith of some gramineous plants to improve gas exchange.
百合科葱属有些种具有管状叶。葱属的管状叶片在发育过程中经历从实心到空心的转变。本研究旨在揭示涉及编程性细胞死亡(PCD)的管状叶形成过程,并将细胞死亡执行过程中的细胞学事件与异常叶片穿孔或植物通气组织形成过程中的细胞学事件进行比较。在这项研究中,使用光镜和透射电镜来描述管状叶的发育和细胞学事件。末端脱氧核苷酸转移酶介导的 dUTP 缺口末端标记(TUNEL)测定法和凝胶电泳用于确定 PCD 期间核 DNA 断裂。空腔是通过叶片中心的特化细胞(指定的预空腔细胞)降解而产生的。预空腔部位的细胞内细胞核呈 TUNEL 阳性,表明 DNA 断裂是早期事件。凝胶电泳显示,发生了核小体间 DNA 断裂,导致出现特征性 DNA 梯状带。不同阶段细胞的超微结构分析显示,液泡破裂、染色质浓缩的畸形核、细胞质和细胞器降解以及次生液泡的出现。细胞壁最后降解,降解细胞壁的残留物聚集在一起。这些结果表明,PCD 在葱属管状叶的发育中起着关键作用。葱属叶片中的连续空腔类似于某些禾本科植物髓部的通气组织,以改善气体交换。