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首页> 外文期刊>Journal of Bryology >Amorphous silica biomineralizations in Polytrichum strictum Menzies ex Brid. (Bryophyta)
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Amorphous silica biomineralizations in Polytrichum strictum Menzies ex Brid. (Bryophyta)

机译:Brid的Polytrichumstrictum Menzies中的无定形二氧化硅生物矿化。 (苔藓植物)

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摘要

In this study, the presence of amorphous silica biomineralizations (silicophytoliths) in individuals of Polytrichum strictum collected from Tierra del Fuego, Argentina was analysed. Gametophyte and sporophyte samples were subjected to calcination andstaining techniques, through which the biomineralizations obtained were observed and described by optical and scanning electron microscopes. Lastly, their composition was analysed by energy dispersive spectroscopy. In both gametophyte and sporophyte silica skeletons comprising thin elongated silicophytoliths with blunt, round or acute ends were observed. These morphologies may correspond to the silicification of the costa or midrib region of the leaves (in the gametophyte) and the seta (in the sporophyte) and to the silicification of the awns of the leaves. The other morphologies found were silica skeletons comprising silicified walls of tabular polygonal cells, probably derived from the silicification of the cells of the unistratose lamina of leaves.Energy dispersive spectroscopy analyses and the use of a phenol-staining technique confirmed the silicon composition of these biomineralizations. The results obtained comprise the first description of amorphous silica biomineralization in mosses and theimplications of the silicification process in this taxon are discussed. The data obtained will be relevant not only for anatomical, but also for palaeobotanical studies, since the preservation of these structures in the soil after the decomposition of organic matter, might allow the identification of mosses in the fossil record.
机译:在这项研究中,分析了从阿根廷火地岛收集的严格Poly草个体中无定形二氧化硅生物矿化(硅藻土)的存在。对配子体和孢子体样品进行煅烧和染色技术,通过光学和扫描电子显微镜观察和描述获得的生物矿化。最后,通过能量色散光谱法分析了它们的组成。在配子体和孢子体中,均观察到了二氧化硅骨架,包括细长的硅质植物石,末端钝,圆形或尖锐。这些形态可能对应于叶片的肋骨或中脉区域(在配子体中)和刚毛(硅藻体)的硅化,以及叶片的芒的硅化。发现的其他形态是二氧化硅骨架,其包含板状多边形细胞的硅化壁,可能源自叶片无规层片状细胞的硅化作用。能量色散光谱分析和酚染色技术的使用证实了这些生物矿化的硅成分。获得的结果包括对苔藓中无定形二氧化硅生物矿化的首次描述,并讨论了该分类单元中硅化过程的意义。所获得的数据不仅与解剖学有关,而且与古植物学研究有关,因为有机物分解后将这些结构保存在土壤中,可能有助于鉴定化石记录中的苔藓。

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