欢迎访问《生态学杂志》官方网站,今天是 分享到:

生态学杂志

• 研究报告 • 上一篇    下一篇

海洋酸化对日本虎斑猛水蚤抗氧化性指标和繁殖发育的影响

陈瑶*,董炜峰,戴红,杨毕铖,陈章飞   

  1. (国家海洋局厦门海洋环境监测中心站, 福建厦门 361008)
  • 出版日期:2017-01-10 发布日期:2017-01-10

Influence of CO2induced seawater acidification on the antioxidant parameters, development and reproduction in Tigriopus japonicus.

CHEN Yao*, DONG Wei-feng, DAI Hong, YANG Bi-cheng, CHEN Zhang-fei   

  1. (Xiamen Marine Environmental Monitoring Center, Xiamen 361008, Fujian, China).
  • Online:2017-01-10 Published:2017-01-10

摘要: 本文选取海洋桡足类日本虎斑猛水蚤(Tigriopus japonicus)为模式生物,采用生化测定和实验生态学方法,研究不同酸化胁迫对桡足类体内抗氧化性指标\[超氧化物歧化酶(SOD)、过氧化氢酶(CAT)、谷胱甘肽硫转移酶(GST)和脂质过氧化(LPO)\]、幼体发育时间、世代发育时间和产后代数的影响。结果表明:海水酸化可显著诱导桡足类的抗氧化性酶(SOD和CAT)的活性,而GST活性不受酸化影响,同时酸化可显著提高桡足类的LPO水平,可见该桡足类可通过SOD和CAT活性的提高来抵抗酸化胁迫引起的氧化胁迫;另外,酸化显著缩短桡足类的幼体发育时间和世代发育时间,并显著抑制其产后代数,提示酸化可以影响海洋桡足类的种群补充和动态;酸化引起该桡足类氧化胁迫的出现,继而对细胞生物大分子(如蛋白质、核酸等)造成氧化损伤,最终影响到该动物的个体水平和种群动态(如缩短发育时间和抑制繁殖力)。

Abstract: This study, via biochemical and ecological methods, investigated the influence of CO2induced acidification on the antioxidant parameters (i.e., superoxide dismutase, SOD; catalase, CAT; glutathione Stransferase, GST; and lipid peroxidation, LPO), development time and fecundity in marine copepod Tigriopus japonicus. The results showed that acidification significantly induced the antioxidant enzyme (SOD and CAT) activities, and increased LPO level in the copepod, while the GST activity was not affected, indicating that T. japonicus might increase the activities of SOD and CAT to fight against oxidative stress caused by acidification. In addition, development time for nauplius phase and development time to maturation in T. japonicus were strikingly shortened by acidification, which significantly inhibited the copepod’s fecundity. Thus, acidification could affect the population level of this copepod, i.e., population replenishment and dynamics. In summary, this study demonstrated that ocean acidification could cause oxidative stress on copepod T. japonicus, hence inducing oxidative damage to biological macromolecules (such as proteins, nucleic acids, etc.), and ultimately affecting its individual level and population dynamics (e.g., shortened development time and suppressed fecundity).