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首页> 外文期刊>Marine biotechnology >Effects of Cold Shock on Microtubule Organization and Cell Cycle in Gynogenetically Activated Eggs of Olive Flounder (Paralichthys olivaceus)
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Effects of Cold Shock on Microtubule Organization and Cell Cycle in Gynogenetically Activated Eggs of Olive Flounder (Paralichthys olivaceus)

机译:冷休克对雌性比目鱼(Paralichthys olivaceus)雌核发育卵中微管组织和细胞周期的影响

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摘要

Cytological changes and subsequent mitotic processes were studied in gynogenetically activated eggs of olive flounder subjected to cold-shock treatment using indirect immunofluorescence staining of isolated blastodisks. Obvious differences between controls and treated eggs were detected during early cell division. The developmental process of haploid control was similar to that of the diploid control except several minutes delayed. Spindles disassembled by the cold-shock treatment regenerated soon after treatment, resulting in the occurrence of the first mitosis. The immature daughter centriole was easily depolymerized by cold-shock treatment, leading to the formation of the bipolar spindle in the first cell cycle and the formation of the monopolar spindle in the second cell cycle, resulting in chromosome set doubling. Some two-cell stage eggs had a monopolar spindle in one blastomere and a bipolar spindle in another during the second mitosis. These eggs had a high potency developing into haploid-diploid mosaics. To the best of our knowledge, this study is the first to clarify the mechanism of chromosome set doubling in marine fishes and provides a preliminary cytological basis for developing a reliable and efficient protocol for mitotic gynogenesis induction by cold-shock treatment in olive flounder.
机译:使用分离的胚盘进行间接免疫荧光染色,对经历冷冲击处理的比目鱼的雌核遗传激活卵研究了细胞学变化和随后的有丝分裂过程。在早期细胞分裂过程中,检测到对照组和处理过的卵之间存在明显差异。单倍体对照的发育过程与二倍体对照的相似,只是延迟了几分钟。经冷冲击处理分解后的锭子在处理后不久就再生,从而导致第一次有丝分裂的发生。不成熟的子中心体很容易通过冷休克解聚,导致在第一个细胞周期中形成双极纺锤体,并在第二个细胞周期中形成单极纺锤体,从而导致染色体组倍增。在第二次有丝分裂期间,一些两细胞阶段的卵在一个卵裂球中有一个单极纺锤,在另一个卵裂球中具有一个双极纺锤。这些卵具有发展成单倍体-二倍体镶嵌体的高效能。据我们所知,这项研究是第一个阐明海鱼染色体组倍增的机制,并为开发可靠有效的橄榄比目鱼冷休克疗法诱导有丝分裂性雌核发生的方法提供了初步的细胞学基础。

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