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塞内加尔鳎繁殖季节精子质量的细胞水平评估。

Sperm quality evaluation in Solea senegalensis during the reproductive season at cellular level.

机构信息

Department of Molecular Biology, Faculty of Biology, University of León, León, Spain.

出版信息

Theriogenology. 2009 Dec;72(9):1251-61. doi: 10.1016/j.theriogenology.2009.07.021. Epub 2009 Sep 24.

Abstract

Sperm quality seems to be one of the reasons for the reproduction constraints faced by Senegalese sole (Solea senegalensis) aquaculturists. Previous studies in this species indicated that the sperm quality of individuals kept in culture varies throughout the year and that different sperm subpopulations can be identified in ejaculates according to the motility pattern of spermatozoa. Aiming to better understand factors affecting sole sperm quality in captivity, sperm of 11 males was assessed during the reproductive season using different parameters: motility characteristics using CASA analysis; cell plasma membrane resistance to seawater hyperosmolarity; DNA fragmentation with single-cell gel electrophoresis; and early apoptosis, labeled with Annexin-V FITC. Computer-assisted sperm analyses motility data were treated using multivariate analysis to identify the presence of different spermatozoa subpopulations according to their motility pattern. Four distinct sperm subpopulations were obtained: Subpop1, which includes fast linear spermatozoa; Subpop2, made up of fast nonlinear spermatozoa; Subpop3, which includes slow linear spermatozoa; and Subpop4, which contains slow nonlinear spermatozoa. The sperm subpopulation structure varied with time after activation and with male. Low cell resistance to the seawater hyperosmotic conditions was noticed. The Annexin-V assay allowed the identification of an apoptotic population ranging from 6% to 20%. A high percentage of cells (64.1%) showed a DNA fragmentation level below 30%, but these values varied significantly between males. DNA fragmentation appears to be related to cell membrane resistance to hyperosmotic conditions faced by the cells when in contact with seawater. This condition seems to modulate the composition of the motile sperm population and performance after activation. This phenomenon could be related to the spermatozoa maturation process.

摘要

精子质量似乎是塞内加尔鳎(Solea senegalensis)水产养殖者面临繁殖限制的原因之一。该物种的先前研究表明,个体在文化中的精子质量全年都有所不同,并且根据精子运动模式,可以在精液中鉴定出不同的精子亚群。为了更好地了解影响圈养 sole 精子质量的因素,在繁殖季节使用不同参数评估了 11 只雄性的精子:使用 CASA 分析评估运动特征;细胞对海水高渗性的质膜阻力;使用单细胞凝胶电泳评估 DNA 碎片化;用 Annexin-V FITC 标记早期凋亡。使用多元分析处理计算机辅助精子分析运动数据,以根据其运动模式识别不同的精子亚群的存在。获得了四个不同的精子亚群:Subpop1,包括快速线性精子;Subpop2,由快速非线性精子组成;Subpop3,包括缓慢线性精子;和 Subpop4,包含缓慢非线性精子。精子亚群结构随激活后的时间和雄性而变化。注意到细胞对海水高渗条件的抵抗力低。 Annexin-V 测定允许鉴定出范围从 6%到 20%的凋亡群体。高比例的细胞(64.1%)显示 DNA 碎片化水平低于 30%,但这些值在雄性之间差异很大。DNA 碎片化似乎与细胞在接触海水时所面临的高渗条件下的质膜阻力有关。这种情况似乎调节了运动精子群体的组成和激活后的性能。这种现象可能与精子成熟过程有关。

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