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首页> 外文期刊>Algae >Ultrastructural changes of Haematococcus pluvialis (Chlorophyta) in process of astaxanthin accumulation and cell damage under condition of high light with acetate
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Ultrastructural changes of Haematococcus pluvialis (Chlorophyta) in process of astaxanthin accumulation and cell damage under condition of high light with acetate

机译:乙酸盐血吸质累积和细胞损伤过程中血液炎(叶绿藻)的超微结构变化

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Haematococcus pluvialis is a commercial microalga that can produce high quantities of astaxanthin. Under induced conditions, some important changes in the subcellular structures related to astaxanthin accumulation were observable. For example, a large number of astaxanthin granules, oil structures and starch granules appeared in the thick-walled cells; Astaxanthin granules gradually dissolved into the oil structures and spread throughout the entire cell with the fusion and diffusion process of oil structures during the middle and late stages of induction; The plastoglobules were closed to the newly formed structures, and some plastoglobules would abnormally increase in size under stress. Based on observations of cell damage, the degradation of membrane structures, such as chloroplasts, was found to be the primary form of damage during the early stage of induction. During the middle stage of induction, some transparent holes were exposed in the dissolving astaxanthin granules in the cytoplasm. In thick-walled cells, these transparent holes were covered by oil substances dissolving astaxanthin, thereby avoiding further damage to cells. Given the relatively few oil structures, in non-thick-walled cells, the transparent holes expanded to form multiple transparent areas, eventually resulting in the rupture and death of cells. These results suggested that the high level of synthesis and the wide range diffusion of oil explained the expansion of astaxanthin in H. pluvialis.
机译:haematococcus pluvialis是一种商业微藻,可以产生大量的虾青素。在诱导条件下,可观察到与虾青素积累相关的亚细胞结构的一些重要变化。例如,在厚壁的电池中出现了大量虾青素颗粒,油结构和淀粉颗粒;虾青素颗粒逐渐溶解在油结构中,并在诱导中和晚期阶段的融合和扩散过程中融合在整个细胞中;将塑料过塑性闭合到新形成的结构上,一些塑料蛋白在应力下异常增加。基于对细胞损伤的观察,发现膜结构的降解,例如叶绿体,诱导早期损伤的主要形式。在诱导中间阶段,将一些透明孔暴露在细胞质中的溶解虾青素颗粒中。在厚壁电池中,这些透明孔被溶解虾青素的油物质覆盖,从而避免了对细胞的进一步损害。给定相对较少的油结构,在非厚壁电池中,透明孔扩张以形成多个透明区域,最终导致细胞的破裂和死亡。这些结果表明,高水平的合成和宽范围扩散的油解释了虾青素在H.Pluvialis中的扩展。

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