首页> 外文期刊>Grana: An International Journal of Palynology and Aerobiology >Sporoderm ontogeny in Chamaedorea microspadix (Arecaceae): self-assembly as the underlying cause of development
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Sporoderm ontogeny in Chamaedorea microspadix (Arecaceae): self-assembly as the underlying cause of development

机译:Chamaedorea microspadix(Arecaceae)的孢子皮个体发育:自组装是发育的根本原因

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摘要

The developmental events in the periplasmic space and cytoplasm of microspores of Chamaedorea microspadix during sporoderm ontogeny have been traced in detail from cytokinesis and early tetrad stage to the formation of intine in mature two-celled pollen grains. Several pre-pattern structures as seen in the periplasmic space of early microspores (dark-contrasted globules, ribbon-like striped structures, strings of beads, spherical units, radially oriented columns of spherical units, rod-like units), can easily be read as different types of micelles (spherical, cylindrical micelles, so-called segmented worms) and their intermediate forms (strings, perforated filaments, columns of spherical micelles). Funnel-like procolumellae, arranged as complexes of bent units, appear next at the middle tetrad stage. These ofunnelso possibly correspond to double gyroid phase, typical for a diblock copolymer system, adapted to constraints of the narrow periplasmic space. The foot layer and few endexine lamellae with central white lines appear as laminate (oneato) micelles, with typical gaps between the laminae; they emerge through intermediate forms of micelles as strings of spherical micelles and/or perforated laminae. Strings are probably a preferential intermediate form of micelle formation in the course of exine development in Chamaedorea: they emerge at every ontogenetic step and participate in the appearance of every exine layer. The first (channelled) layer of the two-layered intine beneath the aperture appears probably on the base of cylindrical micelles. The sequence of the sporoderm layer formation can be understood as a sequence of self-assembling mesophases (and their intermediate forms) in the colloidal system of the microspore periplasmic space, unfolding through the ontogenetic time.
机译:从胞质分裂和早期成象早期到成熟的两细胞花粉粒中的肌因的形成,已经详细地描述了孢子体个体发育过程中小球藻的小孢子在周质空间和细胞质中的发育事件。在早期小孢子的周质空间中观察到的几种预模式结构(深色对比球,带状条纹结构,珠串,球形单元,径向取向的球形单元列,杆状单元)作为不同类型的胶束(球形,圆柱形胶束,所谓的分段蠕虫)及其中间形式(线,多孔细丝,球形胶束的列)。漏斗状的前小肠,排列成弯曲单元的复合体,出现在中间四分期阶段。这些unnel可能也对应于双嵌段螺旋体相,这是典型的二嵌段共聚物体系,适合于狭窄的周质空间的约束。足层和很少的带有中央白线的内啡肽片表现为层状(oneato)胶束,层间有典型的缝隙。它们通过胶束的中间形式出现为球形胶束和/或多孔薄片。线可能是Chamaedorea外来发育过程中胶束形成的一种优先的中间形式:线在每个个体发育步骤出现并参与每个外在层的出现。孔下方的两层Intine的第一层(带槽的)层可能出现在圆柱状胶束的底部。孢子体层形成的顺序可以理解为小孢子周质空间的胶体系统中自组装中间相(及其中间形式)的序列,在个体发育时间内展开。

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