食品科学

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氢化物原子荧光法分析不同地区刺参总硒和无机硒含量及分布规律

李秀梅1,2,孙国华2,杨建敏2,*,任利华2,马元庆2,谷伟丽2,张 健2,刘兆存3   

  1. 1.上海海洋大学水产与生命学院,上海 201306;2.山东省海洋资源与环境研究院,山东省海洋生态修复重点实验室,
    山东 烟台 264006;3.山东华春渔业有限公司,山东 东营 257236
  • 出版日期:2015-06-25 发布日期:2015-06-12
  • 通讯作者: 杨建敏
  • 基金资助:

    山东省自然科学基金项目(ZR2013CM029);山东省现代农业产业技术体系刺参创新团队项目(SDAIT-08);
    山东省优秀中青年科学家基金项目(Y231041011);烟台市科技发展计划项目(2012133);
    海洋经济创新发展区域示范项目(20130125);国家海洋局海洋公益性行业科研专项(201205027;201105029)

Analysis of Total Selenium and Inorganic Selenium in Apostichopus japonicus from Different Regions by Hydride Generation-Atomic Fluorescence Spectrometry

LI Xiumei1,2, SUN Guohua2, YANG Jianmin2,*, REN Lihua2, MA Yuanqing2, GU Weili2, ZHANG Jian2, LIU Zhaocun3   

  1. 1. College of Fisheries and Life Science, Shanghai Ocean University, Shanghai 201306, China;
    2. Shandong Provincial Key Laboratory of Restoration for Marine Ecology, Shandong Marine Resource and Environment Research
    Institute, Yantai 264006, China; 3. Shandong Huachun Fisheries Co. Ltd., Dongying 257236, China
  • Online:2015-06-25 Published:2015-06-12
  • Contact: YANG Jianmin

摘要:

为测定我国黄渤海海域刺参群体硒含量并探索其分布规律,采用氢化物原子荧光光谱法进行含量分析。结果显示,呼吸树为总硒和无机硒含量最高的组织,平均值分别为(14.171±3.412) mg/kg和(6.194±3.829) mg/kg,不同组织内的总硒、无机硒含量变化呈现一致的规律,硒含量由高到低为:呼吸树>消化道>肌肉>内壁>外壁,同时刺参体壁和肌肉(食用部分)中有机硒比例在75.6%~89.4%之间(除东营地区刺参群体肌肉组织的有机硒比例最低为53.6%);5 个地区刺参群体同一组织内的总硒及无机硒含量有显著性差异,东营地区呼吸树、消化道和肌肉中无机硒含量较高。

关键词: 氢化物原子荧光光谱法, 刺参, 总硒, 无机硒, 有机硒

Abstract:

This study aimed to explore the selenium status of Apostichopus japonicus from the Yellow Sea and the Bohai
Sea. Total selenium and inorganic selenium were detected by hydride generation-atomic fluorescence spectrometry (HGAFS).
This method had a wide linear dynamic range and good precision and accuracy, so it was suitable for the determination
of different forms of selenium in aquatic products. Selenium levels in four populations of Apostichopus japonicus from
Dalian, Dongying, Yantai, Qingdao, and Rizhao respectively were examined. Among five tissues investigated, respiratory
tree contained the highest levels of organic selenium and inorganic selenium which were averaged at (14.171 ± 3.412) and
(6.194 ± 3.829) mg/kg, respectively, and both of which followed the same decreased order of respiratory tree > digestive
tract > muscle > inner body wall > outer body wall. The proportions of organic selenium in body wall and muscle (the edible
part) were between 75.6% and 89.4%, except for Apostichopus japonicas muscle from Dongying containing the lowest level
(53.6%) of organic selenium. There were significant differences in the contents of total selenium and inorganic selenium in
the same tissues from different regions, and the contents of inorganic selenium in respiratory tree, digestive tract and muscle
were higher in Dongying population than in those from other regions.

Key words: hydride generation-atomic fluorescence spectrometry (HG-AFS), Apostichopus japonicus, total selenium, inorganic selenium, organic selenium

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