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Conducting tissues and phyletic relationships of bryophytes

机译:苔藓植物的传导组织与种系关系

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摘要

Internal specialized conducting tissues, if present, are restricted to the gametophytic generation in liverworts while they may occur in both generations in mosses. Conducting tissues are unknown in the anthocerotes. Water-conducting cells (WCCs) with walls perforated by plasmodesma-derived pores occur in the Calobryales and Pallaviciniaceae (Metzgeriales) among liverworts and in Takakia among mosses. Imperforate WCCs (hydroids) are present in bryoid mosses. A polarized cytoplasmic organization and a distinctive axial system of microtubules is present in the highly specialized food-conducting cells of polytrichaceous mosses (leptoids) and in less specialized parenchyma cells of the leafy stem and seta in other mosses including Sphagnum. A similar organization, suggested to reflect specialization in long-distance symplasmic transport of nutrients, also occurs in other parts of the plant in mosses, including rhizoids and caulonemata, and may be observed in thallus parenchyma cells of liverworts. Perforate WCCs in the Calobryales, Metzgeriales and Takakia, and hydroids in bryoid mosses, probably evoked independently. Because of fundamental differences in developmental design, homology of any of these cells with tracheids is highly unlikely. Likewise, putative food-conducting of bryophytes present highly distinctive characteristics and cannot be considered homologous with the sieve cells of tracheophytes. [References: 85]
机译:内部专门的导电组织(如果存在)仅限于苔类植物的配子体生成,而它们可能同时出现在苔藓的两个世代中。软骨组织中的导电组织是未知的。壁线虫的毛孔穿壁的水传导细胞(WCC)发生在苔草中的Calobryales和Pallaviciniaceae(Metzgeriales)中以及苔藓中的Takakia中。环状苔藓中存在无孔的WCC(类氢化合物)。在高度多食的苔藓藓类植物(类脂体)的高传导性食物传导细胞中,以及在包括苔藓植物在内的其他苔藓中,叶状茎和刚毛的较不专门的薄壁实质细胞中存在极化的细胞质组织和独特的微管轴向系统。一个类似的组织,被建议用来反映营养素的长距离同质运输的专业化,也出现在苔藓植物的其他部位,包括根状茎和刺突,也可能出现在苔类植物的薄壁薄壁细胞中。 Calobryales,Metzgeriales和Takakia中的穿孔WCCs和Bryoid mosses中的水合物可能是独立引起的。由于发育设计的根本差异,这些细胞与气管的同源性极不可能。同样,苔藓植物的推定食物传导具有非常独特的特征,不能被认为与气管植物的筛细胞同源。 [参考:85]

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