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Ultrastructure of Calcareous Dinophytes (Thoracosphaeraceae, Peridiniales) with a Focus on Vacuolar Crystal-Like Particles

机译:钙质藻类植物(胸果科,Peridiniales)的超微结构,其重点是液泡晶体样颗粒

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摘要

Biomineralization in calcareous dinophytes (Thoracosphaeracaea, Peridiniales) takes place in coccoid cells and is presently poorly understood. Vacuolar crystal-like particles as well as collection sites within the prospective calcareous shell may play a crucial role during this process at the ultrastructural level. Using transmission electron microscopy, we investigated the ultrastructure of coccoid cells at an early developmental stage in fourteen calcareous dinophyte strains (corresponding to at least ten species of Calciodinellum, Calcigonellum, Leonella, Pernambugia, Scrippsiella, and Thoracosphaera). The shell of the coccoid cells consisted either of one (Leonella, Thoracosphaera) or two matrices (Scrippsiella and its relatives) of unknown element composition, whereas calcite is deposited in the only or the outer layer, respectively. We observed crystal-like particles in cytoplasmic vacuoles in cells of nine of the strains investigated and assume that they are widespread among calcareous dinophytes. However, similar structures are also found outside the Thoracosphaeraceae, and we postulate an evolutionarily old physiological pathway (possibly involved in detoxification) that later was specialized for calcification. We aim to contribute to a deeper knowledge of the biomineralization process in calcareous dinophytes.
机译:钙质附生植物(胸果纲,Peridiniales)中的生物矿化发生在球状细胞中,目前知之甚少。液泡状晶体颗粒以及预期钙质壳内的收集位点可能在超微结构水平的过程中起着至关重要的作用。使用透射电子显微镜,我们研究了十四种钙质植物的菜豆球囊细胞在早期发育阶段的超微结构(对应于至少十种钙钙藻,Calcigonellum,Leonella,Pernambugia,Scripsipsiella和Thoracosphaera)。球状细胞的壳由一个(未知元素组成的)(莱昂内拉菌属,胸腔孢子菌)或两个基质(Scrippsiella及其亲属)组成,而方解石分别沉积在唯一或外层。我们在所研究的九个菌株的细胞中观察到细胞质液泡中的晶体状颗粒,并假设它们在钙质植物中广泛存在。然而,在胸果科之外也发现了类似的结构,我们推测了一个进化上古老的生理途径(可能参与了排毒),后来专门用于钙化。我们的目标是加深对钙质附生植物生物矿化过程的了解。

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