模型纤毛虫詹宁草履虫偶联过程中的核事件

IF 5.1 Q1 ENVIRONMENTAL SCIENCES
Xue Zhang , Ruitao Gong , Yaohan Jiang , Xiaoteng Lu , Chenyin Wu , Lihan Wang , Hongwei Ma , Zhengxiang Zhang , Weibo Song , Khaled A.S. Al-Rasheid , Adriana Vallesi , Feng Gao
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引用次数: 0

摘要

纤毛虫是一种高度分化的单细胞真核生物,具有特殊的性过程(结合和自交配),依赖于其独特的核二态性,即在单个细胞中同时存在种系微核(MIC)和体细胞大核(MAC)。不同纤毛虫的性过程表现出高度的多样性。为了更好地了解亲缘关系密切的物种的性过程的分化和进化,我们研究了詹宁斯草履虫GZ菌株接合过程中的核事件,该菌株是著名的金黄色葡萄复合体的近亲,研究较少。主要结果包括:(1)共轭过程大约需要48​h、 包括三个合子前分裂(减数分裂I、II和有丝分裂)和三个合子后分裂;(2) MIC在减数分裂I前期以“降落伞”期为主;(3) 减数分裂II后,数量可变的细胞核进行第三次合子前分裂,靠近口锥的两个产物成为遗传上相同的迁移和固定原核;(4) 同核细胞分裂三次形成MIC和MAC原基,但只有第一次受精后分裂的一个核产物完成了接下来的两次分裂;和(5)需要额外的细胞分裂来完成接合的最后一步,在此过程中,两个MIC原基经历有丝分裂,而两个MAC原基分布在没有分裂的子细胞之间。对寡膜虫纲代表的接合过程中的核事件的比较表明,通常有三个受精前分裂和数量不等的受精后分裂。然而,每次分裂后选择和分化的细胞核的数量因物种而异。该研究为进一步研究减数分裂过程中的细胞核选择、分化以及细胞核形态提供了一个新的纤毛虫模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nuclear events during conjugation in the poorly studied model ciliate Paramecium jenningsi

Ciliated protists are highly differentiated unicellular eukaryotes that possess special sexual processes (conjugation and autogamy) that rely on their unique nuclear dimorphism, i.e., the presence of both a germline micronucleus (MIC) and a somatic macronucleus (MAC) in a single cell. The sexual processes show a high diversity in different ciliates. To better understand the differentiation and evolution of sexual processes in closely related species, we investigated the nuclear events during conjugation in Paramecium jenningsi strain GZ, a poorly studied close relative of the well-known P. aurelia complex. The main results include: (1) the conjugation process takes about 48 ​h, including three prezygotic divisions (meiosis I, II, and mitosis) and three postzygotic divisions; (2) the MICs are dominated by the “parachute” phase at the prophase of meiosis I; (3) after meiosis II, a variable number of nuclei undergo the third prezygotic division, and the two products near the paroral cone become the genetically identical migratory and stationary pronuclei; (4) the synkaryon divides three times to form the MIC and the MAC anlagen, but only one nuclear product of the first postzygotic division completes the next two divisions; and (5) an extra cell division is required to complete the last step of conjugation, during which two MIC anlagen undergo mitotic division while two MAC anlagen are distributed between the daughter cells without division. The comparison of the nuclear events during conjugation in representatives of the class Oligohymenophorea reveals that usually there are three prezygotic divisions and a variable number of postzygotic divisions. However, the number of selected and differentiated nuclei after each division differs among species. This study provided a new model ciliate for further investigations of nuclear selection and differentiation as well as nuclear morphology during meiosis.

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