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首页> 外文期刊>Tissue and Cell >Ultrastructure of late spermatids and spermatozoa during spermiogenesis in longtooth grouper Epinephelus bruneus from Jeju, Korea
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Ultrastructure of late spermatids and spermatozoa during spermiogenesis in longtooth grouper Epinephelus bruneus from Jeju, Korea

机译:来自济州的长齿石斑鱼Epinephelus bruneus在精子发生过程中晚期精子和精子的超微结构

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摘要

Ultrastructural characteristics of late spermatids and spermatozoa during spermiogenesis in longtooth grouper Epinephelus bruneus from Jeju, Korea were investigated using transmission and scanning electron microscopy. The spermiogenesis type of E. bruneus belongs to type I because of nuclear rotation occurrence. The spherical head of late spermatids and spermatozoa ultrastructurally consist of apple-shaped nucleus, nuclear notch (Y or branch-shaped) and nuclear fossa. The midpiece contains the proximal cen-triole (9 + 0 microtubule structure), two centrioles connection structure (three osmophilic filaments), the distal centriole (9+0 microtubule structure), an osmophilic basal foot, two necklaces (six or seven osmophilic particles) and osmophilic alar sheets. It contains six to nine spherical mitochondria showing two rows arrangement type. Also a flagellum (9 + 2 microtubule structure) presents six swelling shaped segments type lateral fins with regular interval. Consequently, ultrastructural features of E. bruneus spermatids and spermatozoa contribute to provide useful systematic characters for taxonomic purpose. It may contribute to study that whether ultrastructural features of cellular organelles (cytoplasmic canal, necklace and lateral fins)correlate to physiological function or not on the duration of motility and survival in fish spermatozoa.
机译:利用透射电子显微镜和扫描电子显微镜研究了来自韩国济州的长齿石斑鱼斑节鱼的精子晚期和精子形成过程中的超微结构特征。由于发生核旋转,布鲁氏大肠杆菌的精子发生类型属于I型。晚期精子和精子的球头超微结构由苹果形核,核缺口(Y形或分支形)和核窝组成。中段包含近端三头肌(9 + 0个微管结构),两个中心连接结构(三层嗜酸性细丝),远端中心(9 + 0个微管结构),一个常温性基底足,两个项链(六个或七个同温性颗粒) )和渗透性的翼片。它包含六到九个球形线粒体,显示两行排列类型。鞭毛(9 + 2微管结构)也呈现六个规则间隔的肿胀形节段型侧鳍。因此,E。bruneus精子和精子的超微结构特征有助于为分类学目的提供有用的系统特征。这可能有助于研究细胞器(细胞质管,项链和侧鳍)的超微结构特征是否与生理功能相关,而这与鱼精子的活力持续时间和存活率无关。

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