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胁迫诱导的装甲甲藻褶皱臂尾轮虫蜕皮和囊泡形成。

Stressor-induced ecdysis and thecate cyst formation in the armoured dinoflagellates Prorocentrum cordatum.

机构信息

Laboratory of Cytology of Unicellular Organisms, Institute of Cytology of the Russian Academy of Sciences, Saint Petersburg, Russia.

出版信息

Sci Rep. 2020 Oct 27;10(1):18322. doi: 10.1038/s41598-020-75194-3.

Abstract

Ecdysis, the process of extensive cell covering rearrangement, represents a remarkable physiological trait of dinoflagellates. It is involved in the regulation of the population and bloom dynamics of these microorganisms, since it is required for the formation of their thin-walled cysts. This study presents laboratory data on ecdysis in Prorocentrum cordatum, a harmful dinoflagellate species of high environmental significance. We studied external stressors triggering this process and changes in the cell ultrastructure accompanying it. Our experiments showed that mass ecdysis and formation of cysts in P. cordatum could be induced by centrifugation, temperature decrease, changes in salinity, and treatment by 2,6-dichlorobenzonitrile, whereas temperature increase, changes in pH and treatment by tetracycline did not have this effect. Obtained cysts of P. cordatum did not contain the pellicular layer and were formed in the end of the first stage of this process, i.e. removal of the plasma membrane and the outer amphiesmal vesicle membrane, whereas its second stage, removal of theca, represented excystment. Based on our findings, we conclude that such cysts can be attributed to thecate cysts and suggest P. cordatum as a promising model organism for the investigation of cellular and molecular aspects of ecdysis in dinoflagellates.

摘要

蜕皮,即广泛的细胞覆盖排列的重新排列,是甲藻的一个显著生理特征。它参与了这些微生物的种群和爆发动态的调节,因为它是形成它们薄壁胞囊所必需的。本研究介绍了关于原甲藻(一种具有高环境意义的有害甲藻物种)蜕皮的实验室数据。我们研究了触发这一过程的外部胁迫因素以及伴随这一过程的细胞超微结构变化。我们的实验表明,离心、温度下降、盐度变化和 2,6-二氯苯腈处理均可诱导原甲藻大规模蜕皮并形成胞囊,而温度升高、pH 值变化和四环素处理则没有这种效果。获得的原甲藻胞囊没有膜层,并且是在这个过程的第一阶段结束时形成的,即质膜和外膜泡膜的去除,而第二阶段,即囊壳的去除,代表着出囊。基于我们的发现,我们得出结论,这种胞囊可以归因于有壳胞囊,并建议原甲藻作为研究甲藻蜕皮的细胞和分子方面的有前途的模式生物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e937/7591879/8eb3bfde8657/41598_2020_75194_Fig1_HTML.jpg

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