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Sperm of the giant grouper: cryopreservation physiological and morphological analysis and application in hybridizations with red-spotted grouper

机译:石斑鱼的精子:冷冻保存生理和形态分析及其在与红斑石斑鱼杂交中的应用

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摘要

In order to develop excellent germplasm resources for giant grouper (Epinephelus lanceolatus), cryopreservation of giant grouper sperm was examined in the present study. Firstly, 13 kinds of sperm dilution (ELS1-3, EM1-2, TS-2, MPRS, ELRS0-6) were prepared with physiological salt, sucrose, glucose and fetal bovine serum. The physiological parameters of ELRS3 (ratio of fast motion, ratio of slow motion, time of fast motion, time of slow motion, lifespan and motility) and ELS3 (sperm ratio of slow motion, time of slow motion and motility) were significantly higher than those of the other dilutions (P < 0.05). Secondly, after adding 15% DMSO and 10% FBS to ELRS3 and ELS3, most physiological parameters of frozen sperm were also significantly higher than the other gradients (P < 0.05), and sperm motility was as high as 63.68 ± 4.16% to74.75 ± 12.71% (fresh sperm motility, 80.70 ± 1.37% to 80.71 ± 1.49%). Mixed with the above dilutions, a final volume of 105 ml semen was cryopreserved. Finally, the sperm of giant grouper cryopreserved with cryoprotectants (ELRS3 + 15% DMSO + 10% FBS) was used for electron-microscopic observation and crossbreeding with red-spotted groupers (Epinephelus akaara). The electron-microscopic observation revealed that part of the frozen-thawed sperm was cryodamaged, e.g., flagellum fracturing and mitochondria falling out, while the ultrastructure of sperm membrane, mitochondria and flagellum remained intact. Also, the fertilization and hatchability rates of giant grouper frozen sperm and red-spotted grouper eggs were as high as 94.56% and 75.56%, respectively. Thus, a technique for cryopreservation of giant grouper sperm was successfully developed and applied to crossbreeding with red-spotted grouper eggs.
机译:为了开发巨型石斑鱼(Epinephelus lanceolatus)优良的种质资源,本研究对冷冻保存巨石斑鱼的精子进行了研究。首先,用生理盐,蔗糖,葡萄糖和胎牛血清制备13种精子稀释液(ELS1-3,EM1-2,TS-2,MPRS,ELRS0-6)。 ELRS3(快动比率,慢动比率,快动时间,慢运动时间,寿命和运动能力)和ELS3(慢动精子比率,慢运动时间和运动能力)的生理参数明显高于其他稀释度的那些(P <0.05)。其次,在ELRS3和ELS3中添加15%DMSO和10%FBS后,冷冻精子的大多数生理参数也显着高于其他梯度(P <0.05),精子运动力高达63.68±4.16%至74.75。 ±12.71%(新鲜精子活力,80.70±1.37%至80.71±1.49%)。与上述稀释液混合后,冷冻保存最终体积为105 ml的精液。最后,将冷冻保护剂(ELRS3 + 15%DMSO + 10%FBS)冷冻保存的巨石斑鱼的精子用于电子显微镜观察和与红斑石斑鱼(Epinephelus akaara)的杂交。电镜观察表明,冻融精子的一部分被冷冻破坏,例如鞭毛破裂和线粒体脱落,而精子膜,线粒体和鞭毛的超微结构保持完整。此外,巨型石斑鱼冷冻精子和红斑石斑鱼卵的受精率和孵化率分别高达94.56%和75.56%。因此,成功开发了冷冻保存巨石斑鱼精子的技术,并将其用于与红色斑点的石斑鱼卵杂交。

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