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Effects of salinity and ph of seawater on the reproduction of the sea urchin paracentrotus Lividus

机译:海水盐度与pH对海胆繁殖的繁殖的影响

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摘要

Fertilization and early development are usually the most vulnerable stages in the life of marine animals, and the biological processes during this period are highly sensitive to the environment. In nature, sea urchin gametes are shed in seawater, where they undergo external fertilization and embryonic development. In a laboratory, it is possible to follow the exactmorphological and biochemical changes taking place in the fertilized eggs and the developing embryos. Thus, observation of successful fertilization and the subsequent embryonic development of sea urchin eggs can be used as a convenient biosensor to assess the quality of the marine environment. In this paper, we have examined how salinity and pH changes affect the normal fertilization process and the following development of Paracentrotus lividus. The results of our studies using confocal microscopy, scanning and transmission electron microscopy, and time-lapse Ca~(2+) image recording indicated that both dilution and acidification of seawater have subtle but detrimental effects on many aspects of the fertilization process. They include Ca~(2+) signaling and coordinated actin cytoskeletal changes, leading to a significantly reduced rate of successful fertilization and, eventually, to abnormal or delayed embryonic development.
机译:施肥和早期发展通常是海洋动物生活中最脆弱的阶段,此期间的生物过程对环境非常敏感。本质上,海胆配子在海水中脱落,在那里他们接受外部施肥和胚胎发育。在实验室中,可以遵循受精卵和发育胚胎中的精确晶体和生化变化。因此,观察成功的施肥和随后的海胆蛋的胚胎发育可用作方便的生物传感器,以评估海洋环境的质量。在本文中,我们研究过盐度和pH的变化如何影响正常的施肥过程和以下对ParacoreRotus Lividus的开发。我们使用共聚焦显微镜,扫描和透射电子显微镜的研究结果,以及时间流逝Ca〜(2+)图像记录表明,海水的稀释和酸化对受精过程的许多方面具有微妙而有害的影响。它们包括CA〜(2+)信号和协调的肌动蛋白细胞骨骼变化,导致成功施肥率显着降低,最终对胚胎发育异常或延迟。

著录项

  • 来源
    《Oceanographic Literature Review 》 |2020年第10期| 2205-2205| 共1页
  • 作者单位

    Department of Research Infrastructures for Marine Biological Resources Italy;

    Department of Research Infrastructures for Marine Biological Resources Italy;

    Department of Research Infrastructures for Marine Biological Resources Italy;

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  • 正文语种 eng
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