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From gametogenesis to spawning: How climate-driven warming affects teleost reproductive biology

机译:从配子发生到产卵:气候驱动的变暖如何影响紧邻长期的生殖生物学

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Ambient temperature modulates reproductive processes, especially in poikilotherms such as teleosts. Consequently, global warming is expected to impact the reproductive function of fish, which has implications for wild population dynamics, fisheries and aquaculture. In this extensive review spanning tropical and cold-water environments, we examine the impact of higher-than-optimal temperatures on teleost reproductive development and physiology across reproductive stages, species, generations and sexes. In doing so, we demonstrate that warmer-than-optimal temperatures can affect every stage of reproductive development from puberty through to the act of spawning, and these responses are mediated by age at spawning and are associated with changes in physiology at multiple levels of the brain-pituitary-gonad axis. Response to temperature is often species-specific and changes with environmental history/transgenerational conditioning, and the amplitude, timing and duration of thermal exposure within a generation. Thermally driven changes to physiology, gamete development and maturation typically culminate in poor sperm and oocyte quality, and/or advancement/delay/inhibition of ovulation/spermiation and spawning. Although the field of teleost reproduction and temperature is advanced in many respects, we identify areas where research is lacking, especially for males and egg quality from "omics" perspectives. Climate-driven warming will continue to disturb teleost reproductive performance and therefore guide future research, especially in the emerging areas of transgenerational acclimation and epigenetic studies, which will help to understand and project climate change impacts on wild populations and could also have implications for aquaculture.
机译:环境温度调节繁殖过程,尤其是在诸如Teactosts的Poikilotherms中。因此,预计全球变暖会影响鱼类的生殖功能,这对野生种群动态,渔业和水产养殖具有影响。在这一广泛的综述热带和冷水环境中,我们研究了在生殖阶段,物种,世代和性别的高度最佳温度对高度最佳的温度的影响。在这样做时,我们证明了较高比最佳的温度可能影响青春期的生殖发展阶段,以便产卵的行为,并且这些反应由生育者的年龄介导,并且与多个水平的生理变化有关大脑 - 垂体 - 性腺轴。对温度的响应通常是特异性的,并且与环境历史/转基因调节的变化以及一代内的热暴露的幅度,时序和持续时间。热驱动的生理学,配子开发和成熟的变化通常达到较差的精子和卵母细胞质量,和/或排卵/美容和产卵的推进/延迟/抑制。尽管紧邻繁殖和温度领域在许多方面都是先进的,但我们识别缺乏研究的地区,特别是对于“OMIC”的观点来说,特别是雄性和卵质。气候驱动的变暖将继续扰乱Textost生殖性能,因此导致未来的研究,特别是在转基因适应和表观遗传研究的新兴领域,这将有助于理解和项目对野生种群的影响,并且也可能对水产养殖产生影响。

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