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Proteomic and metabolomic insights into the functions of the male reproductive system in fishes

机译:蛋白质组学和代谢组成洞中的雄性生殖系统在鱼类中的功能

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Proteomics and metabolomics are emerging and powerful tools to unravel the complex molecular mechanisms regulating reproduction in male fish. So far, numerous proteins and metabolites have been identified that provide us with valuable information to conduct a comprehensive analysis on seminal plasma and spermatozoa components and their functions. These analyses have allowed a better understanding of the blood-testis barrier functions, the molecular mechanisms underlying spermatogenesis, spermatozoa maturation, motility signaling, and competition as well as the mechanism of cryodamage to sperm structure and functions. To extend, proteins that undergo posttranslational modification, such as phosphorylation and oxidation in response to spermatozoa motility activation and cryopreservation, respectively, have been identified. Proteomic studies resulted in identification of potential proteins that can be used as biomarkers for sperm quality and freezability to enable the control of artificial reproduction, and to improve methods for long-term preservation (cryopreservation) of sperm. The different proteins expressed in the spermatozoa of neomales and normal males can also provide new insights into development of methods for separating X and Y fish sperm, and changes in the protein profiles in haploid and diploid spermatozoa will provide new perspectives to better understand the mechanism of male polyploidy. Overall, the knowledge gained by proteomic and metabolomic studies is important from basic to applied sciences for the development and/or optimisation of techniques in controlled fish reproduction. (C) 2019 Elsevier Inc. All rights reserved.
机译:蛋白质组学和代谢组学是新兴和强大的工具,用于解开雄性鱼中调节繁殖的复杂分子机制。到目前为止,已经确定了许多蛋白质和代谢物,为我们提供了有价值的信息,以对精血生素和精子组分及其功能进行综合分析。这些分析使得更好地了解血液睾丸屏障功能,潜在的精子发生,精子成熟,运动信号传导以及竞争的分子机制以及低温血迹的机制和功能。为了延伸,已经鉴定了经过翻译后修饰的蛋白质,例如磷酸化和氧化,响应于精子毒性活化和冷冻保存,则鉴定出磷酸化和氧化。蛋白质组学研究导致鉴定可用作精子质量和可自由性的生物标志物,以实现人工繁殖,并改善精子的长期保存(冷冻保存)的方法。在NeoMales和正常男性的精子中表达的不同蛋白质也可以为分离X和Y鱼精子的方法的开发提供新的见解,并且单倍体和二倍体精子的蛋白质谱的变化将提供新的视角,以更好地理解机制雄性多倍体。总体而言,蛋白质组学和代谢物研究所获得的知识对于基础来说是应用科学的基础,用于控制鱼繁殖中的技术的开发和/或优化。 (c)2019 Elsevier Inc.保留所有权利。

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