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Ultrastructure of Cyanobacterium Nostoc sp f. Blasia Cell Forms in Persisting Populations

机译:蓝藻Nostoc sp f的超微结构。持续种群中的Blasia细胞形式

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Cell clusters formed in persistent populations of Nostoc sp. f. Blasia, a cyanobacterium capable of cell differentiation, under prolonged storage in the dark at low temperatures were studied for the first time. Cell reorganization was observed, including changes in the ultrastructure of thylakoids, the cell wall peptidoglycan layer, and carboxysomes. Subcellular structures involved in intercellular communication within the clusters were revealed (structures similar to microplasmodesms and contact pores, secretory vesicles, etc.) Persistence of cyanobacterial populations was concluded to result from formation not only of specialized dormant cells (akinetes), but also L-forms, as well as from the modification changes of the clustered vegetative cells. A cluster containing the vegetative cells and L-like forms within a common intercellular matrix is considered a structural unit at the supracellular level, which is responsible for survival of cyanobacterial populations when mass akinete formation does not occur.
机译:在Nostoc sp。的持久种群中形成细胞簇。 F。首次研究了在黑暗中于低温下长时间储存​​下能够分化的蓝细菌Blasia。观察到细胞重组,包括类囊体,细胞壁肽聚糖层和羧基体的超微结构的变化。揭示了簇内参与细胞间通讯的亚细胞结构(结构类似于微胞藻和接触孔,分泌小泡等)。蓝藻种群的持久性不仅是由专门的休眠细胞((鱼)形成,而且还由于L-形式,以及簇状营养细胞的修饰变化。在共同的细胞间基质中,包含营养细胞和L样形式的簇被认为是细胞上水平的结构单元,当不形成大规模的小红杉时,它负责蓝细菌种群的生存。

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