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蜀葵早期减数分裂前期雄配子体细胞中膜结合内含物的形成及其与细胞质通道的关联

Formation of membrane-bound inclusions and their associations with cytoplasmic channels in early prophase male meiocytes of Althaea rosea (L.) Cavan.

作者信息

Luo Xin Juan, Liu Xu Hao, Wang Chong Ying, Wang Xin Yu

机构信息

Institute of Cell Biology, School of Life Science, Lanzhou University, 222 Southern Tianshui Road, Lanzhou, Gansu, PR China.

出版信息

Cell Biol Int. 2008 Apr;32(4):374-83. doi: 10.1016/j.cellbi.2007.12.006. Epub 2008 Jan 9.

Abstract

To characterize the cytoplasmic structure reorganization during plant meiosis, the male meiocytes of Althaea rosea (L.) Cavan were examined under the combination of light and electron microscopy. Light microscopic observation of the toluidine blue-stained thick resin sections of young anthers revealed that the meiocytes of sporogenous cell stage were extremely voluminous and variable in shape and division plane. The cell walls (CWs) between some meiocytes were discontinuous at one or several site(s). These discontinuous portions varied between 0.2 and 3.0 microm in length. In addition, it was found that some meiocytes were able to produce protuberances that extended into another meiocyte. When transversally sectioned, the protuberance extending to another cell looked like a small cell lying in another cell. Transmission electron microscopy (TEM) showed that there were many long flat ER cisternae that were actively wrapping around a portion of cytoplasm in the male meiocytes at the sporogenous cell stage. During pre-meiosis interphase and early prophase I, a number of huge (0.5-1.0 microm diameter) spherical membrane-bound inclusions (MBIs) lined by single or double layer(s) of membrane were formed, each membrane actually representing one tightly appressed endoplasmic reticulum (ER) cisterna. The MBIs contained many granular, lamellar and fibrillar structures, and even small MBIs. Moreover, it was found that the MBIs could associate with the cytoplasmic channels (CCs) on CWs to release their contents into the cytoplasm of the opposite cell or directly extend from one cell to another through the CC. Taking all the data together, it is suggested that association of the MBIs and other organelles with CCs possibly functions in eliminating the non-identity of cytoplasm of the male meiocytes caused probably by the random asymmetric division observed at sporogenous cell phase, so as to ensure production of a large number of identical functional male gametes required for successful fertilization.

摘要

为了描述植物减数分裂过程中的细胞质结构重组,在光学显微镜和电子显微镜的联合观察下,对蜀葵的雄配子母细胞进行了研究。对幼嫩花药经甲苯胺蓝染色的厚树脂切片进行光学显微镜观察发现,造孢细胞期的减数分裂细胞体积极大,形状和分裂面各不相同。一些减数分裂细胞之间的细胞壁在一个或几个部位不连续。这些不连续部分的长度在0.2至3.0微米之间变化。此外,还发现一些减数分裂细胞能够产生延伸到另一个减数分裂细胞中的突起。横向切片时,延伸到另一个细胞的突起看起来就像位于另一个细胞中的小细胞。透射电子显微镜(TEM)显示,在造孢细胞期的雄配子母细胞中,有许多长的扁平内质网池,它们活跃地包裹着一部分细胞质。在减数分裂前间期和前期I早期,形成了许多直径巨大(0.5 - 1.0微米)的球形膜结合内含物(MBIs),每个MBI由单层或双层膜构成,每层膜实际上代表一个紧密贴合的内质网池。MBIs包含许多颗粒状、层状和纤维状结构,甚至还有小的MBIs。此外,还发现MBIs可以与细胞壁上的细胞质通道(CCs)相连,将其内容物释放到对面细胞的细胞质中,或者通过CCs直接从一个细胞延伸到另一个细胞。综合所有数据表明,MBIs和其他细胞器与CCs的关联可能起到消除造孢细胞期观察到的随机不对称分裂可能导致的雄配子母细胞细胞质不一致性的作用,从而确保产生大量成功受精所需的相同功能的雄配子。

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