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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Electron tomographic analysis of cytokinesis in the brown alga Silvetia babingtonii (Fucales, Phaeophyceae)
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Electron tomographic analysis of cytokinesis in the brown alga Silvetia babingtonii (Fucales, Phaeophyceae)

机译:电子断层摄影术对褐藻Silvetia babingtonii(富查斯,藻科)胞质分裂的分析

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摘要

In brown algae, membrane resources for the new cell partition during cytokinesis are mainly flat cisternae (FCs) and Golgi-derived vesicles. We used electron tomography coupled with rapid freezing/freeze substitution of zygotes to clarify the structure of transient membrane compartments during cytokinesis in Silvetia zygotes. After mitosis, an amorphous membranous structure, considered to be an FC intermediate was observed near endoplasmic reticulum clusters, lying between two daughter nuclei. FCs were arrayed at the cytokinetic plane, and a tubular membranous network was formed around them. This network might be formed by the consecutive fusion of spherical vesicles that are linked to the edges of FCs to form a membranous network (MN). At the initial stage of the formation of a membranous sac (MS) from the MN, the MS had flat and swollen parts, with the latter showing membranous tunnels. Coated pits were detected with high frequency at the swollen parts of the MS. This observation indicated that membranous tunnels disappeared by recycling of excess membrane via endocytosis, and the swollen part became flat. The MN appeared at the edges of the growing MS. MN and the MN-MS complex were observed along the cytokinetic plane in several spaces. TheMS expanded by the incorporation of MN or other MS in its neighborhood. With the maturation of the new cell partition membrane, the thickness of the MS became constant and the membrane cavity disappeared. The changes in the surface area and volume of the transient membrane compartment during cytokinesis were analyzed from the tomographic data.
机译:在褐藻中,胞质分裂过程中用于新细胞分配的膜资源主要是扁平水箱(FCs)和高尔基体来源的囊泡。我们使用电子断层扫描结合受精卵的快速冷冻/冻结替代来阐明西尔维娅受精卵的胞质分裂过程中的瞬时膜区室的结构。有丝分裂后,在两个子核之间的内质网簇附近观察到无定形的膜状结构,被认为是FC中间体。 FC排列在细胞动力学平面上,并在它们周围形成管状的膜状网络。该网络可能是由球形囊泡的连续融合形成的,球形囊泡链接到FC的边缘以形成膜状网络(MN)。在由MN形成的膜囊(MS)的初始阶段,MS具有平坦且肿胀的部分,后者显示出膜状隧道。在MS的肿胀部位以高频率检测到包被的凹陷。该观察结果表明,通过内吞作用回收多余的膜,膜状隧道消失了,并且肿胀的部分变得平坦。 MN出现在生长中的MS的边缘。在几个空间中沿细胞动力学平面观察到了MN和MN-MS复合体。通过在其附近合并MN或其他MS扩展了MS。随着新细胞分隔膜的成熟,MS的厚度变得恒定,膜腔消失了。从层析数据分析细胞分裂过程中瞬时膜区室的表面积和体积的变化。

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