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燕麦绒毡层的分化。I. 细胞表面。

Differentiation of the tapetum in Avena. I. The cell surface.

作者信息

Steer M W

出版信息

J Cell Sci. 1977 Jun;25:125-38. doi: 10.1242/jcs.25.1.125.

DOI:10.1242/jcs.25.1.125
PMID:893555
Abstract

The development of the tapetal cell surface and associated structures in Avena has been followed from cell formation to senescence. Plasmodesmata initially connect the tapetal cells to each other, the pollen mother cells, and the inner loculus wall cells. These connexions are subsequently severed, those to the sporogenous cells being broken first at the pollen mother cell surface during callose wall formation. Loss of cellulose from the tapetal walls was followed using the decline in the ability of the wall to bind the fluorescent brightener, Calcofluor White M2R New. Subplasma-membrane microtubules persist after loss of the cellulose wall. The tapetal plasma membrane facing the meiocytes then develops a series of depressions, or cups, over its surface, which are later the site of pro-orbicule formation. Sporopollenin is laid down over the pro-orbicules, to form orbicules, and over other tapetal cell surfaces. No morphological evidence was found for the intracytoplasmic formation of pro-orbicules or polymerized sporopollenin precursors. These observations on Avena are compared with those on other plants. The changes in the cell wall and associated structures, plasmodesmata and microtubules, are considered in detail, while the general significance of cell wall loss to the water relations of the tissue are assessed. Proposals that pro-orbicule formation results from non-specific accumulation of lipid at a free cell surface are rejected, instead this formation is considered to be related to the presence of a specially modified plasmamembrane surface.

摘要

对燕麦绒毡层细胞表面及相关结构从细胞形成到衰老的发育过程进行了追踪研究。胞间连丝最初将绒毡层细胞彼此相连,也与花粉母细胞和小孢子囊内壁细胞相连。这些连接随后会断开,在胼胝质壁形成过程中,与造孢细胞的连接首先在花粉母细胞表面断开。利用绒毡层细胞壁结合荧光增白剂钙黄素白M2R New能力的下降来追踪细胞壁中纤维素的流失情况。纤维素壁消失后,亚质膜微管仍会留存。面向减数分裂细胞的绒毡层质膜随后在其表面形成一系列凹陷或杯状结构,这些结构后来成为原球状体形成的部位。孢粉素沉积在原球状体上,形成球状体,并沉积在其他绒毡层细胞表面。未发现原球状体或聚合孢粉素前体在细胞质内形成的形态学证据。将燕麦的这些观察结果与其他植物的进行了比较。详细探讨了细胞壁及相关结构、胞间连丝和微管的变化,同时评估了细胞壁丧失对组织水分关系的总体意义。原球状体形成是由于脂质在自由细胞表面非特异性积累的观点被否定,相反,这种形成被认为与特殊修饰的质膜表面的存在有关。

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