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气候变化对鱼类繁殖的影响是通过脑垂体性腺轴的多个层次来调节的。

Climate change impacts on fish reproduction are mediated at multiple levels of the brain-pituitary-gonad axis.

机构信息

Ifremer, Univ Brest, CNRS, IRD, LEMAR, F-29280 Plouzane, France.

Comparative Endocrinology and Integrative Biology, Centre of Marine Sciences, Universidade do Algarve, Campus de Gambelas, 8005-139 Faro, Portugal.

出版信息

Gen Comp Endocrinol. 2020 May 15;291:113439. doi: 10.1016/j.ygcen.2020.113439. Epub 2020 Feb 12.

Abstract

Anthropogenic emissions of carbon dioxide in the atmosphere have generated rapid variations in atmospheric composition which drives major climate changes. Climate change related effects include changes in physico-chemical proprieties of sea and freshwater, such as variations in water temperature, salinity, pH/pCO and oxygen content, which can impact fish critical physiological functions including reproduction. In this context, the main aim of the present review is to discuss how climate change related effects (variation in water temperature and salinity, increases in duration and frequency of hypoxia events, water acidification) would impact reproduction by affecting the neuroendocrine axis (brain-pituitary-gonad axis). Variations in temperature and photoperiod regimes are known to strongly affect sex differentiation and the timing and phenology of spawning period in several fish species. Temperature mainly acts at the level of gonad by interfering with steroidogenesis, (notably on gonadal aromatase activity) and gametogenesis. Temperature is also directly involved in the quality of released gametes and embryos development. Changes in salinity or water acidification are especially associated with reduction of sperm quality and reproductive output. Hypoxia events are able to interact with gonad steroidogenesis by acting on the steroids precursor cholesterol availability or directly on aromatase action, with an impact on the quality of gametes and reproductive success. Climate change related effects on water parameters likely influence also the reproductive behavior of fish. Although the precise mechanisms underlying the regulation of these effects are not always understood, in this review we discuss different hypothesis and propose future research perspectives.

摘要

大气中二氧化碳的人为排放导致大气成分发生快速变化,从而引发重大气候变化。与气候变化相关的影响包括海水和淡水的理化性质发生变化,例如水温、盐度、pH 值/pCO2 和含氧量的变化,这些变化会影响鱼类的关键生理功能,包括繁殖。在这种情况下,本综述的主要目的是讨论与气候变化相关的影响(水温和盐度变化、缺氧事件持续时间和频率增加、水酸化)如何通过影响神经内分泌轴(脑垂体性腺轴)来影响繁殖。众所周知,温度和光照周期的变化强烈影响着许多鱼类的性别分化以及产卵期的时间和物候。温度主要通过干扰类固醇生成(特别是对性腺芳香酶活性)和配子发生来作用于性腺水平。温度还直接参与释放的配子和胚胎发育的质量。盐度或水酸化的变化尤其与精子质量和生殖产量的降低有关。缺氧事件能够通过作用于类固醇前体胆固醇的可用性或直接作用于芳香酶作用来与性腺类固醇生成相互作用,从而影响配子的质量和生殖成功。与气候变化相关的水参数变化可能还会影响鱼类的繁殖行为。尽管调节这些影响的精确机制并不总是被理解,但在本综述中,我们讨论了不同的假设,并提出了未来的研究方向。

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