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程序性细胞死亡逐步塑造了从绒毡层开始的花药孢子体组织的发育,并在花粉粒成熟过程中被触发。

Programmed cell death progressively models the development of anther sporophytic tissues from the tapetum and is triggered in pollen grains during maturation.

作者信息

Varnier Anne-Lise, Mazeyrat-Gourbeyre Florence, Sangwan Rajbir S, Clément Christophe

机构信息

Laboratory of Plant Stress Defence and Reproduction, URVVC EA 2069, University of Reims, P.O. Box 1039, 51687 Reims Cedex 2, France.

出版信息

J Struct Biol. 2005 Nov;152(2):118-28. doi: 10.1016/j.jsb.2005.07.011. Epub 2005 Oct 7.

Abstract

To characterize the spatial and temporal occurrence of programmed cell death (PCD) in Lilium anther tissues, we used both microscopical and molecular markers of apoptosis for developmental stages from meiosis to pollen release. The first hallmarks of PCD include cell condensation and shrinkage of the cytoplasm, separation of chromatin into delineated masses, and DNA fragmentation in the tapetum as early as the premeiosis stage. PCD then extended to other anther sporophytic tissues, leading to anther dehiscence. Although the PCD clearly affected the endothecium and the epidermis, these two cell layers remained alive until anther dehiscence. In pollen, no sign of PCD was found until pollen mitosis I, after what apoptotic features developed progressively in the vegetative cell. In addition, DNA ladders were detected in all sporophytic tissues and cell types throughout pollen development, whereas in the male gametophyte DNA ladders were only detected during pollen maturation. Our data suggest that PCD is a progressive and active process affecting all the anther tissues, first being triggered in the tapetum.

摘要

为了描述百合花药组织中程序性细胞死亡(PCD)的时空发生情况,我们使用了从减数分裂到花粉释放各个发育阶段的细胞凋亡的显微镜和分子标记。PCD的最初标志包括细胞浓缩和细胞质收缩、染色质分离成界限分明的团块,以及早在减数分裂前期绒毡层中的DNA片段化。PCD随后扩展到花药的其他孢子体组织,导致花药开裂。虽然PCD明显影响了纤维层和表皮,但这两层细胞在花药开裂前一直存活。在花粉中,直到花粉有丝分裂I都未发现PCD迹象,之后营养细胞中逐渐出现凋亡特征。此外,在整个花粉发育过程中,在所有孢子体组织和细胞类型中都检测到了DNA梯带,而在雄配子体中,仅在花粉成熟期间检测到DNA梯带。我们的数据表明,PCD是一个影响所有花药组织的渐进性和活跃过程,首先在绒毡层中触发。

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