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Production of functionally sterile triploid Nibe croaker Nibea mitsukurii induced by cold-shock treatment with special emphasis on triploid aptitude as surrogate broodstock

机译:生产功能性无菌三倍体Nibe Crokaker Nibea Mitsukurii,由冷休克治疗诱导,特别强调三倍体耐受性作为代替代亲属

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摘要

Among the pelagic egg spawning marine teleosts, spermatogonial transplantation techniques were first developed in the Nibe croaker Nibea milsukurii; however, production of donor-derived offspring had not yet been achieved. In salmonids, when triploid individuals were used as recipients, the resulting surrogate broodstock produced only donor-derived gametes, as the triploids were incapable of producing their own gametes. Therefore, in the present study, we determined the optimal parameters for cold-shock inducing triploidy through the suppression of meiosis II resulting in retention of the second polar body in fertilized Nibe croaker eggs. It was determined that cold-shock treatment, which was carried out at 10 degrees C for a period of 15 min beginning 5 min after fertilization, following pre-shock treatment at 22 degrees C achieved a 100% triploidization rate as well as hatching rates of which were high enough for practical application in the pelagic egg spawning marine teleost (16.4 +/- 10.4%). Average chromosome numbers of cold-shock treated larvae counted using mitotic figures found on the fin membrane of 1 day post-hatch larvae were 67.3 +/- 0.7, which was approximately 1.5 times larger than that of control larvae (46.8 +/- 1.1), suggesting that triploidy had been induced. No differences in survival rates of hatched larvae during the rotifer-feeding stage existed between treated and non-treated groups. Gonadosomatic index and gametogenesis were impaired in both sexes of triploid Nibe croaker. Although triploids produced small amounts of gametes, no progeny from crosses between triploids and diploids survived later than 24 h subsequent to hatching. These results indicated that the triploid Nibe croaker developed in this study could be effectively used as surrogate recipients in spermatogonial transplantation.
机译:在Pelagic卵产卵海绵中,精子移植技术首先在Nibe Croker Nibea Milsukurii开发;但是,尚未实现捐赠者衍生的后代的生产。在鲑鱼中,当三倍体个体用作受体时,所得替代的替代金店仅生产供体衍生的配子,因为三倍体不能产生自己的配子。因此,在本研究中,我们通过抑制了减数分裂II来确定冷冲击诱导三倍体的最佳参数,导致在受精挖掘龙虾鸡蛋中保持第二极体体。确定冷休克治疗,在施肥后5分钟的10℃下在10摄氏度下进行15分钟,在22℃的预冲击处理之后实现了100%的三倍化率以及孵化率这足够高,以便在Pelagic卵产卵海洋电信(16.4 +/- 10.4%)中的实际应用。使用在孵化液后幼虫的翅片膜上发现的有丝分裂器的冷冲击治疗幼虫的平均染色体数为67.3 +/- 0.7,比对照幼虫的约1.5倍(46.8 +/- 1.1) ,建议诱导三倍体。在处理和未处理的基团之间存在转子喂养阶段期间阴影幼虫的存活率差异。在三倍体NIBE Crokaker两性中,GonadoSomatic指数和配子发生。虽然三倍体产生少量配子,但在三倍体和二倍体之间没有来自三倍体和二倍体之间的后代在孵化后的24小时后存活。这些结果表明,在本研究中开发的三倍体Nibe Crokaker可以有效地用作精根移植中的替代受体。

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