赵思佳, 张媛媛, 余克服, 俞小鹏, 陈飚, 许勇前, 葛瑞琪. 南海珊瑚礁区棘冠海星重金属含量及其生物积累特征分析[J]. 海洋环境科学, 2022, 41(4): 579-585. DOI: 10.12111/j.mes.2021-x-0063
引用本文: 赵思佳, 张媛媛, 余克服, 俞小鹏, 陈飚, 许勇前, 葛瑞琪. 南海珊瑚礁区棘冠海星重金属含量及其生物积累特征分析[J]. 海洋环境科学, 2022, 41(4): 579-585. DOI: 10.12111/j.mes.2021-x-0063
ZHAO Si-jia, ZHANG Yuan-yuan, YU Ke-fu, YU Xiao-peng, CHEN Biao, XU Yong-qian, GE Rui-qi. Analysis of heavy metal contents and bioaccumulation characteristics of Acanthaster planci in coral reef of South China Sea[J]. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 2022, 41(4): 579-585. DOI: 10.12111/j.mes.2021-x-0063
Citation: ZHAO Si-jia, ZHANG Yuan-yuan, YU Ke-fu, YU Xiao-peng, CHEN Biao, XU Yong-qian, GE Rui-qi. Analysis of heavy metal contents and bioaccumulation characteristics of Acanthaster planci in coral reef of South China Sea[J]. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 2022, 41(4): 579-585. DOI: 10.12111/j.mes.2021-x-0063

南海珊瑚礁区棘冠海星重金属含量及其生物积累特征分析

Analysis of heavy metal contents and bioaccumulation characteristics of Acanthaster planci in coral reef of South China Sea

  • 摘要: 棘冠海星(Acanthaster planci)是珊瑚的天敌,可以对珊瑚礁生态系统造成重大的危害,但迄今尚未见其重金属含量与生物积累特征的报道。本文以南海珊瑚礁区的棘冠海星为研究对象,利用电感耦合等离子体质谱仪测定其12种重金属(含类金属As)的含量,通过主成分分析、Kruskal-Wallis方差检验的方法解析其分布特征。结果表明,因棘冠海星各组织器官的结构与功能差异,V、Cr、Cu、As、Cd、Fe、Zn、Mo主要富集在幽门盲囊、胃和生殖腺等内质中;Mn、Co、Ni、Pb主要富集在骨骼、棘刺和体壁。棘冠海星极易通过生物富集与放大效应积累环境中的Zn、As、Cd,其积累特征也与个体的代谢活性及生理调控特性有关。本文的研究结果为了解棘冠海星的暴发过程与保护珊瑚礁生态系统提供了科学依据。

     

    Abstract: As a natural enemy of corals, Acanthaster planci has caused significant harms to the coral reef ecosystem. However, the heavy metal contents and bioaccumulation characteristics of Acanthaster planci have not been reported. In this paper, the contents of 12 heavy metals (including metalloid As) were determined by inductively coupled plasma mass spectrometry (ICP-MS) in Acanthaster planci collected from coral reefs in the South China Sea. The distribution characteristics were analyzed by Kruskal-Wallis test and principal component analysis. The results showed that V, Cr, Cu, As, Cd, Fe, Zn, Mo were mainly accumulated in the pyloric caeca, gonad and stomach; Mn, Co, Ni, Pb were mainly concentrated in the skeleton, spines and body wall of Acanthaster planci, due to the structural and functional differences of various tissues and organs. Acanthaster planci can easily accumulate Zn, As and Cd in the environment through bioconcentration and biomagnification, and the accumulation characteristics are related to individual metabolic activity and physiological regulation characteristics. The results can provide a scientific basis for understanding the outbreak process of Acanthaster planci and protecting the coral reef ecosystem.

     

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