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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >A comparative ultrastructural study of pit membranes with plasmodesmata associated thickenings in four angiosperm species
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A comparative ultrastructural study of pit membranes with plasmodesmata associated thickenings in four angiosperm species

机译:四种被子植物与胞膜相关增厚的凹膜的超微结构比较研究

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摘要

Recent micromorphological observations of angiosperm pit membranes have extended the number and range of taxa with pseudo-tori in tracheary elements. This study investigates at ultrastructural level (TEM) the development of pseudo-tori in the unrelated Malus yunnanensis, Ligustrum vulgare, Pittosporum tenuifolium, and Vaccinium myrtillus in order to determine whether these plasmodesmata associated thickenings have a similar developmental pattern across flowering plants. At early ontogenetic stages, the formation of a primary thickening was observed, resulting from swelling of the pit membrane in fibre-tracheids and vessel elements. Since plasmodesmata appear to be frequently, but not always, associated with these primary pit membrane thickenings, it remains unclear which ultrastructural characteristics control the formation of pseudo-tori. At a very late stage during xylem differentiation, a secondary thickening is deposited on the primary pit membrane thickening. Plasmodesmata are always associated with pseudo-tori at these final developmental stages. After autolysis, the secondary thickening becomes electron-dense and persistent, while the primary thickening turns transparent and partially or entirely dissolves. The developmental patterns observed in the species studied are similar and agree with former ontogenetic studies in Rosaceae, suggesting that pseudo-tori might be homologous features across angiosperms.
机译:最近对被子植物坑膜的微观形态学观察已经扩大了气管元件中带有假鸟嘴的类群的数量和范围。这项研究在超微结构水平(TEM)上研究了不相关的云南海棠,女贞,金缕梅和牛痘苗的假鸟嘴的发育,以确定这些与寄生虫相关的增厚是否在开花植物上具有相似的发育模式。在个体发育的早期阶段,观察到初次增厚的形成,这是由于纤维气管和血管元件中的凹坑膜膨胀所致。由于胞浆肿似乎经常但并非总是与这些初级凹膜增厚有关,因此尚不清楚哪种超微结构特征控制假鸟嘴的形成。在木质部分化的非常后期,次级增厚沉积在初级凹坑膜增厚上。在这些最终发育阶段,疟原虫总是与假鸟嘴有关。自溶后,二次增稠变为电子致密且持久,而一次增稠变为透明,部分或全部溶解。在所研究物种中观察到的发育模式是相似的,并且与蔷薇科以前的个体发育研究一致,这表明假鸟嘴可能是被子植物的同源特征。

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