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高温对海草波喜荡草间期细胞和分裂细胞超微结构及微管组织的影响。

Effects of high temperature on the ultrastructure and microtubule organization of interphase and dividing cells of the seagrass Cymodocea nodosa.

作者信息

Koutalianou M, Orfanidis S, Katsaros C

机构信息

Faculty of Biology, University of Athens, Athens, 157 84, Greece.

Hellenic Agricultural Organization-Demeter, Fisheries Research Institute, 640 07 Nea Peramos, Kavala, Greece.

出版信息

Protoplasma. 2016 Mar;253(2):299-310. doi: 10.1007/s00709-015-0809-2. Epub 2015 Apr 15.

DOI:10.1007/s00709-015-0809-2
PMID:25874590
Abstract

Short-time temperature effects (34-40 °C) on microtubule (MT) organization and on cell structure of young epidermal leaf cells of the seagrass Cymodocea nodosa were investigated under laboratory conditions using transmission electron microscopy (TEM) and tubulin immunofluorescence. The interphase MT network was affected by the increased temperature, the effect being time dependent and expressed in both the form and the orientation of the MT bundles. After 1 h at 38 °C, there was also a severe disturbance in dividing cells with thick and short MTs in the mitotic spindle and atypically organized phragmoplasts, while after 2 h at 38 °C the mitotic index was tenfold reduced compared with the control material. After 6 h at 38 °C, a large number of telophase cells were observed, meaning that cytokinesis was blocked. TEM observation revealed cells with uncompleted cell plates consisting of swollen vesicles and branched cisternae, with no phragmoplast MTs. These cells bear a nucleolus with segregated fibrillar and granular zones, an increased number of swollen mitochondria, and numerous parallel arrays of endoplasmic reticulum cisternae in the cortical cytoplasm. The possible relationship of these changes in C. nodosa with a response mechanism in order to face elevated temperature effects of climate change is discussed.

摘要

在实验室条件下,利用透射电子显微镜(TEM)和微管蛋白免疫荧光技术,研究了短期温度效应(34-40°C)对海草波喜荡草幼嫩表皮叶细胞微管(MT)组织和细胞结构的影响。间期微管网受到温度升高的影响,这种影响具有时间依赖性,并表现在微管束的形式和取向上。在38°C处理1小时后,分裂细胞也出现严重紊乱,有丝分裂纺锤体中的微管粗短,成膜体组织异常;而在38°C处理2小时后,有丝分裂指数与对照材料相比降低了十倍。在38°C处理6小时后,观察到大量末期细胞,这意味着胞质分裂受阻。透射电镜观察显示,细胞的细胞板未完成,由肿胀的囊泡和分支的潴泡组成,没有成膜体微管。这些细胞有一个核仁,其纤维区和颗粒区分开,线粒体肿胀数量增加,皮质细胞质中有许多平行排列的内质网潴泡。本文讨论了波喜荡草的这些变化与应对气候变化高温影响的响应机制之间可能的关系。

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