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土壤下毛目纤毛虫(参考分类地位:原生生物界,纤毛门)包囊形成过程中的细胞结构分化。

The differentiation of cellular structure during encystment in the soil hypotrichous ciliate cf. (Protista, Ciliophora).

作者信息

Li Qili, Sun Qianqian, Fan Xinpeng, Wu Na, Ni Bing, Gu Fukang

机构信息

School of Life Sciences, East China Normal University, Shanghai, China.

出版信息

Anim Cells Syst (Seoul). 2016 Dec 7;21(1):45-52. doi: 10.1080/19768354.2016.1262896. eCollection 2017.

Abstract

Ciliates are able to form resting cysts as a survival strategy in response to stressful environmental factors. Studies on the characteristics of cellular structure during encystment may provide useful information for further understanding of the regulatory mechanism of cellular patterns and supply new clues regarding the phylogeny of ciliates. Scanning and transmission electron microscopies were used to observe the ultrastructure of cells during encystment of the soil ciliate cf. . The dedifferentiation of ciliature was revealed for the first time. Ciliary shafts first shortened, and the remaining ciliature, including basal bodies and the fibrillar cirral basket, retracted into the cytoplasm and was surrounded by the autophagic vacuoles and then gradually digested. A large number of autophagic vacuoles were observed in mature resting cysts. Autophagy might not only be necessary for the differentiation of cellular structures during encystment but might also be important to sustain the basic life activities in the resting stage. cf. formed a kinetosome-resorbing cyst and contained four layers in the cyst wall: the ectocyst, mesocyst, endocyst and granular layer. The ciliature resorbing state and the number of layers in the cyst wall were consistent with those found in other oxytrichous ciliates. However, the phenomenon wherein the two macronuclear nodules are not fused during encystment is not commonly observed among oxytrichids. Additionally, the octahedral granules in the mesocyst of this species exhibit different morphology from the congeners.

摘要

纤毛虫能够形成休眠包囊,作为应对压力环境因素的一种生存策略。对包囊形成过程中细胞结构特征的研究,可能为进一步了解细胞模式的调控机制提供有用信息,并为纤毛虫的系统发育提供新线索。利用扫描电子显微镜和透射电子显微镜观察了土壤纤毛虫cf.包囊形成过程中细胞的超微结构。首次揭示了纤毛器的去分化现象。纤毛杆首先缩短,其余的纤毛器,包括基体和纤维状纤毛篮,缩回细胞质中,被自噬泡包围,然后逐渐被消化。在成熟的休眠包囊中观察到大量自噬泡。自噬可能不仅是包囊形成过程中细胞结构分化所必需的,而且对于维持休眠阶段的基本生命活动也很重要。cf.形成了一种吸收动基体的包囊,包囊壁有四层:外囊、中囊、内囊和颗粒层。纤毛器的吸收状态和包囊壁的层数与其他尖毛科纤毛虫一致。然而,在包囊形成过程中两个大核结节不融合的现象在尖毛科中并不常见。此外,该物种中囊中八面体颗粒的形态与同属其他物种不同。

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