Cortical Localization of α- and γ-Tubulin and the Assembly of Cortical Microtubule Cytoskeleton in Hypotrichous Ciliate Euplotes eurystomus

IF 1.5 4区 生物学 Q4 MICROBIOLOGY Acta Protozoologica Pub Date : 2017-12-13 DOI:10.4467/16890027AP.17.013.7494
Xin Sheng, Yan Sheng, Yuehua Liu, Junhua Wang
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Abstract

This study aimed to investigate the assembly characteristics of ciliature and cortical microtubules and the localization of tubulins in different depths and regions of the cortex. The hypotrichous ciliates have closely arranged cilia and a highly complex microtubular system. Direct fluorescence and immunofluorescence labeling were used to observe ciliary organelles and cortical microtubular cytoskeleton in Euplotes eurystomus. An immunofluorescence analysis demonstrated that α-tubulin localized to the ventral and dorsal ciliary organelles and their associated microtubules, while γ-tubulin localized to the basal bodies of ciliary organelles, macronuclear membrane, and excretory pore of a contractile vacuole in the interphase. A direct fluorescence analysis showed that the ciliature and cortical microtubules in the deep cortex were more clearly marked by fluorescent taxoid (FLUTAX). Interestingly, α- and γ-tubulins also colocalized to the ringlike ciliary base–associated microtubules of dorsal kineties. The short microtubular bundles between the bases of transverse cirri could be marked by FLUTAX and γ-tubulin rather than α-tubulin, suggesting that tubulins in cortical microtubules in E. eurystomus varied, and the differentiation of cortical microtubules in the hypotrichous ciliate tended to be versatile. Also, during morphogenesis, γ-tubulin also localized to the base of ciliary primordium, where new basal bodies were formed, suggesting that the endocellular position of γ-tubulin in ciliates was related to basal bodies and regulated by the cell cycle. This study might help understand the assembly characteristics and tubulin composition of microtubules in different depths and regions of the cortex in hypotrichous ciliate E. eurystomus.
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次毛纤毛虫皮层α-和γ-微管蛋白的定位和皮层微管细胞骨架的组装
本研究旨在研究纤毛和皮层微管的组装特征,以及微管蛋白在皮层不同深度和区域的定位。低毛纤毛虫具有紧密排列的纤毛和高度复杂的微管系统。用直接荧光和免疫荧光标记法观察了游仆虫纤毛细胞器和皮层微管细胞骨架。免疫荧光分析表明,α-微管蛋白定位于纤毛器的腹侧和背侧及其相关微管,而γ-微管蛋白则定位于纤毛细胞器的基体、大核膜和间期收缩液泡的排泄孔。直接荧光分析表明,荧光紫杉醇(FLUTAX)能更清楚地标记皮层深层的纤毛和皮层微管。有趣的是,α-和γ-微管蛋白也与环状纤毛基底相关的背侧运动微管共定位。横向纤毛基部之间的短微管束可以用FLUTAX和γ-微管蛋白而不是α-微管蛋白标记,这表明E.eurystomus皮层微管中的微管蛋白是不同的,并且低毛纤毛虫皮层微管的分化趋向于多功能的。此外,在形态发生过程中,γ-微管蛋白也定位于纤毛原基的基底,在那里形成了新的基体,这表明γ-微管素在纤毛虫中的细胞内位置与基体有关,并受细胞周期的调节。这项研究可能有助于了解低毛纤毛虫E.eurystomus皮层不同深度和区域微管的组装特征和微管蛋白组成。
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来源期刊
Acta Protozoologica
Acta Protozoologica 生物-微生物学
CiteScore
2.00
自引率
0.00%
发文量
8
审稿时长
>12 weeks
期刊介绍: Acta Protozoologica - International Journal on Protistology - is a quarterly journal that publishes current and comprehensive, experimental, and theoretical contributions across the breadth of protistology, and cell biology of Eukaryote microorganisms including: behaviour, biochemistry and molecular biology, development, ecology, genetics, parasitology, physiology, photobiology, systematics and phylogeny, and ultrastructure. It publishes original research reports, critical reviews of current research written by invited experts in the field, short communications, book reviews, and letters to the Editor.
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