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细鳞圆腹鲱精子的超微结构;硬骨鱼纲,鲱形目,鲱科。

Ultrastructure of the sperm of blue sprat, Spratelloides gracilis; Teleostei, Clupeiformes, Clupeidae.

作者信息

Gwo J-C, Lin C-Y, Yang W-L, Chou Y-C

机构信息

Department of Aquaculture, Taiwan National Ocean University, #2, Pei-Nin Road, Keelung 20224, Taiwan.

出版信息

Tissue Cell. 2006 Oct;38(5):285-91. doi: 10.1016/j.tice.2006.06.006. Epub 2006 Sep 26.

Abstract

The general sperm structure of the investigated clupeoids possess an oliviform head with a distinct deep nuclear fossa, a midpiece with one mitochondrion and a posterior flagellum. They are characterized by two apomorphies: an annular or C-shaped mitochondrion and ITDs (intratubular differentiation) in the A tubules of the axonemal doublets. The fine structure of the spermatozoa of blue sprat, Spratelloides gracilis, was investigated to see if resulting data conformed to the current hypotheses of the taxonomy of the Clupeidae. The mature sperm is characterized by the following features: (1) the nucleus is oliviform; its prominent deep nuclear fossa encloses the initial portion of flagellum, (2) a proximal centriole has not been identified, (3) a single spherical mitochondrion is located laterally in relation to the flagellum and (4) no cytoplasmic canal is present. Our blue sprat-spermatozoan morphology data suggest that the blue sprat has Clupeomorpha affinities, while indicating no close affinity with Elopomorpha. Clupeoid sperm exhibit morphological variations with the nucleus and mitochondrion being particularly variable. This study provides useful systematic characters to the existing knowledge of comparative spermatology and may provide additional clue to Euteleost phylogeny.

摘要

所研究的鲱形目鱼类的精子一般结构包括一个具明显深核窝的橄榄形头部、一个含单个线粒体的中段和一条后部鞭毛。它们具有两个衍征:一个环形或C形线粒体以及轴丝双联体A微管中的管内分化(ITDs)。对细鳞圆腹鲱(Spratelloides gracilis)精子的精细结构进行了研究,以查看所得数据是否符合当前鲱科分类学的假设。成熟精子具有以下特征:(1)细胞核呈橄榄形;其明显的深核窝包围着鞭毛的起始部分,(2)未发现近端中心粒,(3)单个球形线粒体相对于鞭毛位于侧面,(4)不存在细胞质通道。我们关于细鳞圆腹鲱精子形态的数据表明,细鳞圆腹鲱与鲱形亚目有亲缘关系,同时表明与海鲢亚目没有密切亲缘关系。鲱形目鱼类的精子表现出形态变异,细胞核和线粒体尤其多变。本研究为现有的比较精子学知识提供了有用的系统特征,并可能为真骨鱼类系统发育提供额外线索。

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