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首页> 外文期刊>Reviews in Fish Biology and Fisheries >Use of GnRHa-delivery systems for the control of reproduction in fish
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Use of GnRHa-delivery systems for the control of reproduction in fish

机译:使用GnRHa递送系统控制鱼类繁殖

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The most commonly observed reproductive dysfunctions in cultured fish are the unpredictability of final oocyte maturation (FOM) in females, and the diminished volume and quality of sperm in males. Gonadotropin-releasing hormone agonists (GnRHa) havebeen used extensively in order to stimulate the release of pituitary luteinizing hormone (LH) required to induce FOM, ovulation and spermiation. Because multiple hormonal treatments are often necessary for a successful response, fish must be monitored and handled extensively, which is labor intensive, stressful to the fish and can often result in broodstock mortalities. To ameliorate this problem, sustained-release delivery systems for GnRHa have been developed during the last two decades and have beenincreasingly applied in controlling reproduction of a variety of cultured fish. Solid implants of cholesterol or poly[ethylene-vinyl acetate], and biodegradable microspheres of poly[lactide-glycolide] or poly[fatty acid dimer-sebasic acid] release GnRHafor a period of time (from a few days to many weeks.) GnRHa-delivery systems do not cause desensitization of the pituitary gonadotrophs in fish, and by stimulating a sustained elevation of plasma LH they induce the natural progression of plasma steroidincreases associated with FOM and spermiation. This method has been used with very encouraging results in females of more than 40 cultured species and has been effective in inducing FOM ovulation or spawning in fish with synchronous, group-synchronous and asynchronous ovarian development. In males, GnRHa-delivery systems have been tested in more than 20 species, producing significant increases in milt production for up to 5 weeks. Future research should focus on the optimization of this technology in terms of (a) using the most potent GnRHa, (b) identifying the most appropriate GnRHa release kinetics according to the reproductive biology of different species, and (c) determining minimum effective doses. Developments in these areas will greatly enhancethe effectiveness and efficiency of GnRHa-delivery systems, while at the same time reducing their cost thus making them more affordable to the aquaculture industry.
机译:养殖鱼中最常见的生殖功能障碍是雌性的最终卵母细胞成熟(FOM)不可预测,雄性的精子数量和质量下降。促性腺激素释放激素激动剂(GnRHa)已被广泛使用,以刺激诱发FOM,排卵和精子的垂体促黄体生成激素(LH)的释放。由于成功进行响应通常需要多种激素治疗,因此必须对鱼类进行广泛的监控和处理,这是劳动密集型的,对鱼类造成压力,并经常导致亲鱼死亡。为了改善这个问题,在过去的二十年中开发了用于GnRHa的缓释递送系统,并将其越来越多地用于控制各种养殖鱼类的繁殖。胆固醇或聚[乙烯-乙酸乙烯酯]的固体植入物,以及聚[丙交酯-乙交酯]或聚[脂肪酸二聚-二元酸]的可生物降解微球在一段时间(从几天到几周)内释放GnRHa。 -递送系统不会引起鱼类垂体促性腺激素的脱敏,并且通过刺激血浆LH的持续升高,它们诱导与FOM和精子化有关的血浆类固醇增加的自然进程。该方法已在40多个养殖物种的雌性中获得了非常令人鼓舞的结果,并已有效地诱导了FOM排卵或通过同步,群体同步和异步卵巢发育在鱼类中产卵。在雄性中,已经对GnRHa递送系统进行了20多个物种的测试,在长达5周的时间内,其mi鱼产量显着增加。未来的研究应集中在这种技术的优化上:(a)使用最有效的GnRHa,(b)根据不同物种的生殖生物学确定最合适的GnRHa释放动力学,以及(c)确定最小有效剂量。这些领域的发展将极大地提高GnRHa传递系统的效率和效率,同时降低其成本,从而使它们更适合水产养殖业。

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