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Seawater acidification induced immune function changes of haemocytes in Mytilus edulis: a comparative study of CO2 and HCl enrichment

机译:海水酸化引起紫花苜蓿血细胞免疫功能变化:CO2和HCl富集的比较研究

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摘要

The present study was performed to evaluate the effects of CO2− or HCl-induced seawater acidification (pH 7.7 or 7.1; control: pH 8.1) on haemocytes of Mytilus edulis, and the changes in the structure and immune function were investigated during a 21-day experiment. The results demonstrated that seawater acidification had little effect on the cellular mortality and granulocyte proportion but damaged the granulocyte ultrastructure. Phagocytosis of haemocytes was also significantly inhibited in a clearly concentration-dependent manner, demonstrating that the immune function was affected. Moreover, ROS production was significantly induced in both CO2 and HCl treatments, and four antioxidant components, GSH, GST, GR and GPx, had active responses to the acidification stress. Comparatively, CO2 had more severe destructive effects on haemocytes than HCl at the same pH level, indicating that CO2 stressed cells in other ways beyond the increasing H+ concentration. One possible explanation was that seawater acidification induced ROS overproduction, which damaged the ultrastructure of haemocytes and decreased phagocytosis.
机译:进行本研究以评估CO2-或HCl诱导的海水酸化(pH 7.7或7.1;对照组:pH 8.1)对紫花苜蓿血细胞的影响,并在21-天实验。结果表明,海水酸化对细胞死亡率和粒细胞比例几乎没有影响,但破坏了粒细胞的超微结构。血红细胞的吞噬作用也以明显的浓度依赖性方式被显着抑制,表明免疫功能受到影响。此外,在CO2和HCl处理中均显着诱导了ROS的产生,并且四种抗氧化剂成分GSH,GST,GR和GPx对酸化胁迫具有活性。相比之下,在相同的pH值下,CO2对血细胞的破坏作用比HCl更严重,这表明CO2可以通过其他方式对细胞施加压力,而H + 浓度却没有增加。一种可能的解释是,海水酸化会导致ROS过度产生,从而破坏血细胞的超微结构并减少吞噬作用。

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