南极小须鲸(Balaenoptera bonaerensis)生精细胞中卵母细胞活化因子的获得及微授精小鼠卵母细胞减数分裂恢复的研究

K. Amemiya, Y. Iwanami, Toshihiro Kobayashi, T. Terao, Y. Fukui, H. Ishikawa, S. Ohsumi, M. Hirabayashi, S. Hochi
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引用次数: 6

摘要

通过评估小鼠微授精卵母细胞减数分裂恢复情况,确定南极小须鲸单倍体生精细胞中存在或不存在精子性卵母细胞激活因子(SOAF)。小鼠、牛和鲸鱼的成熟精子恢复BDF1小鼠卵母细胞减数分裂的相对能力分别为90.5%、84.6%和76.5%,而未处理或注射缓冲液的卵母细胞在培养90分钟后未发生核变化。在鲸鱼中,后期拉长的精子和睾丸精子以相似的速率触发小鼠卵母细胞的减数分裂恢复(卵母细胞激活率;分别为68.0和62.5%)。早期细长精子的卵母细胞激活能力显著降低(25.0%),圆形精子完全不激活小鼠卵母细胞。这一结果表明,南极小须鲸的SOAF活性是在精子发生的早期阶段获得的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Acquirement of Oocyte-activating Factor in Antarctic Minke Whale (Balaenoptera bonaerensis) Spermatogenic Cells, Assessed by Meiosis Resumption of Microinseminated Mouse Oocytes
The presence or absence of sperm-borne oocyte-activating factor (SOAF) in the Antarctic minke whale haploid spermatogenic cells was determined by assessing the meiosis resumption of microinseminated mouse oocytes. The relative capacity of mature spermatozoa from mouse, cattle and whale to resume the meiosis of BDF1 mouse oocytes was, respectively, 90.5, 84.6 and 76.5%, while nuclear changes in non-treated or buffer-injected oocytes did not occur after 90-min culture. In the whales, the late-stage elongating spermatids as well as the testicular spermatozoa triggered the meiosis resumption of mouse oocytes at similar rates (oocyte activation rates; 68.0 and 62.5%, respectively). The oocyte activating capacity of the early-stage elongating spermatids was significantly lower (25.0%), and the round spermatids did not activate mouse oocytes at all. This result suggests that the SOAF activity in the Antarctic minke whales is acquired during the early phase of spermiogenesis.
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