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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Ultrastructure of Cosmarium strains (Zygnematophyceae, Streptophyta) collected from various geographic locations shows species-specific differences both at optimal and stress temperatures
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Ultrastructure of Cosmarium strains (Zygnematophyceae, Streptophyta) collected from various geographic locations shows species-specific differences both at optimal and stress temperatures

机译:从不同地理位置收集的Co菌株(Zygnematophyceae,Streptophyta)的超微结构显示在最佳温度和胁迫温度下物种特异性差异

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摘要

Plant species collected from various climatic zones and stressed in vitro at various temperatures reveal changes in cellular ultrastructure which are in accordance with the climate at their sampling sites. This observation initiated the investigation to establish if stress at different temperatures may cause diverse extents of changes in the ultrastructure of microalgal strains originating from different geographic zones. The study revealed that the six Cosmarium strains demonstrated ultrastructural characteristics that were consistent with their source location under optimal, low and high temperature conditions, pointing to their preference to specific climatic niches. Interestingly, chloroplasts of all of the Cosmarium strains correspond to a sun-adapted type, which is concomitant with earlier statements that these strains are rendered as high-light adapted algae. The Cosmarium strains developed multiple ultrastructural responses which enabled them to cope with excessive temperatures, occasionally occurring in desmid natural habitats. The appearance of cubic membranes and increased number of plastoglobules may represent the first line in protection against high-temperature stress, which is accompanied by the alteration of protein synthesis and the appearance of stress granules in order to preserve cell homeostasis. However, the prolonged warm- or cold-temperature stress obviously initiated the programmed cell death, as concluded from the appearance of several ultrastructural features observed in all of the Cosmarium strains. The fair acclimation possibilities and the ability to undergo programmed cell death in order to save the population, certainly favor the cosmopolitan distribution of the genus Cosmarium.
机译:从不同气候区收集并在体外在不同温度下承受压力的植物物种揭示了细胞超微结构的变化,这些变化与采样地点的气候相符。这项发现启动了研究,以确定不同温度下的压力是否会导致源自不同地理区域的微藻菌株超微结构的变化程度不同。研究表明,六种s菌株在最佳,低温和高温条件下均显示出与它们的来源位置一致的超微结构特征,表明它们偏爱特定的气候生态位。有趣的是,所有Co菌株的叶绿体均对应于适应日光的类型,这与较早的陈述有关,即这些菌株被制成高光适应藻类。 Cosmarium菌株产生了多种超微结构响应,使它们能够应对极端自然栖息地中偶尔发生的过高温度。立方膜的出现和质体球数量的增加可能代表了抵御高温胁迫的第一道防线,其伴随着蛋白质合成的改变和应力颗粒的出现,以保持细胞稳态。然而,长时间的高温或低温胁迫显然引发了程序性细胞死亡,这是从在所有Co类菌株中观察到的几种超微结构特征的出现得出的结论。公平的适应可能性和进行程序性细胞死亡以拯救种群的能力,无疑有利于s类的国际化分布。

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