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首页> 外文期刊>Reviews in Fish Biology and Fisheries >Gamete physiology, fertilization and egg activation in teleost fish [Review]
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Gamete physiology, fertilization and egg activation in teleost fish [Review]

机译:硬骨鱼的配子生理,受精和卵活化[综述]

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摘要

The fertilization and activation of fish oocytes are vital, but unfortunately overlooked, processes in fisheries research. This paper sets out to review our present understanding of these important events in teleost fish and, drawing comparisons with mammalian research, to highlight areas in which research effort is urgently required. Presently, the commercial culture of many important freshwater, but especially marine, teleosts is beset by problems associated with fertilization, hatching and early embryonic development. These problems have been particularly acute in certain species leading to the application of spawning induction technologies in an effort to optimize production. Increased knowledge of the processes of egg activation and fertilization in these groups of fish is likely to make significant contribution to commercial aquaculture. Studies of a wide variety of animal and plant species has demonstrated that development at fertilization is triggered by an increase in intracellular Ca2+ concentration within the egg that occurs as either a single transient or a series of distinctive oscillations depending upon the species under investigation. This increase in intracellular Ca2+ activates the egg and also appears to play an important role in later embryonic development. Teleost reproductive strategies and more importantly, teleost oocytes and spermatozoa, exhibit a remarkable variety of adaptations. Currently, studies of egg activation in teleosts are confined to laboratory species such as medaka Oryzias latipes and zebrafish Brachydanio rerio. Nevertheless, even between these two species, although an increase in intracellular Ca2+ appears to be the trigger in both cases, the mechanism of Ca2+ release may be quite different. Activation in medaka is initiated only through direct contact with conspecific sperm, suggesting the involvement of a sperm-specific factor, while zebrafish eggs appear to require only contact with the external spawning medium. In view of the highly variable fertility rates evident in many commercially cultured teleosts, it could be very rewarding to investigate the mechanism of egg activation in representative teleost groups using the findings and theories emerging from other animal groups as a starting point. In order to successfully conduct such an investigation, it will be necessary to employ a combination of physiological, molecular and recombinant approaches.
机译:鱼卵母细胞的受精和激活在渔业研究中是至关重要的,但不幸的是被忽略了。本文着手回顾我们目前对硬骨鱼这些重要事件的理解,并与哺乳动物研究进行比较,以突出说明迫切需要研究的领域。目前,许多重要的淡水,尤其是海洋硬骨鱼的商业养殖受到与施肥,孵化和早期胚胎发育有关的问题的困扰。这些问题在某些物种中尤为严重,导致应用产卵诱导技术以优化产量。对这些鱼类中卵的活化和受精过程的了解增加,可能对商业水产养殖做出重大贡献。对多种动植物物种的研究表明,受精卵的发育是由卵内细胞内Ca2 +浓度增加触发的,取决于所研究的物种,该浓度以单个瞬态或一系列独特的振荡形式出现。细胞内Ca2 +的增加激活了卵,并且在后来的胚胎发育中似乎也起着重要作用。硬骨鱼类的繁殖策略,更重要的是,硬骨卵母细胞和精子具有多种适应性。目前,硬骨鱼中卵活化的研究仅限于实验室物种,如(Medaka Oryzias latipes)和斑马鱼Brachydanio rerio。尽管如此,即使在这两个物种之间,尽管在两种情况下细胞内Ca2 +的增加似乎都是触发因素,但Ca2 +释放的机制可能完全不同。在medaka中的激活仅通过直接与同种精子直接接触而开始,这暗示了精子特异因子的参与,而斑马鱼卵似乎只需要与外部产卵培养基接触。鉴于许多商业化养殖的硬骨鱼的生育率变化很大,以其他动物群体的发现和理论为基础,研究代表性硬骨鱼群体的卵活化机制可能是非常有益的。为了成功进行此类研究,将有必要采用生理,分子和重组方法的组合。

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