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应用DGGE技术研究扇贝养殖海域微型真核浮游生物多样性

吴寅嵩 李赟 王娜 王崇明

水产学报2012,Vol.36Issue(1):140-147,8.
水产学报2012,Vol.36Issue(1):140-147,8.DOI:10.3724/SP.J.1231.2012.27616

应用DGGE技术研究扇贝养殖海域微型真核浮游生物多样性

Application of denaturing gradient gel electrophoresis(DGGE) to study the diversity of eukarytic nanoplankton in the sea area for scallop culture

吴寅嵩 1李赟 1王娜 1王崇明2

作者信息

  • 1. 中国海洋大学海水养殖教育部重点实验室,山东青岛266003
  • 2. 中国水产科学研究院黄海水产研究所,山东青岛266071
  • 折叠

摘要

Abstract

In order to study the diversity of eukarytic nanoplankton in the sea area for scallop culture, and clarify the relationship between eukaryotic nanoplankton and transmission of zhikong scallop ( Chlamys farreri) acute viral necrosis virus( AVNV) ,seawater samples were collected monthly in 2009 and 2010 from Qingdao Liuqing River Bay' s sea area. 3-25 μm plankton components were filtered and amplified 18S rDNA variable region sequences from filtered samples were analyzed by DGGE technique. The results show that the main eukaryotic nanoplankton in the sea area included Dinozoa, Ciliophora, Euglenozoa, Haptophyta,Ochrophyta,Labyrinthulomycota,Cryptista,Choanozoa,Amoebozoa and Cercozoan. The amount of Dinozoa and Ciliophora was the highest at 41% and 38. 2% ,respectively. The cluster analysis based on mensal DGGE bands shows that the plankton community from May to November 2009 is similar in the diversity of eukarytic nanoplankton. According to the studied results on scallop AVNV, Skeletonema costatum was taken to be a vector of transmission of AVNV,and it distributed during the period of scallop massive death. However, the role of Dinozoa and Ciliophora during the transmission of AVNV has yet to be determined.

关键词

浮游生物/栉孔扇贝/急性病毒性坏死病毒/变性梯度凝胶电泳

Key words

plankton/ Chlamys farreri/ acute viral necrosis virus (AVNV)/ DGGE

分类

生物科学

引用本文复制引用

吴寅嵩,李赟,王娜,王崇明..应用DGGE技术研究扇贝养殖海域微型真核浮游生物多样性[J].水产学报,2012,36(1):140-147,8.

基金项目

现代农业产业技术体系专项资金项目(CARS-48) (CARS-48)

水产学报

OA北大核心CSCDCSTPCD

1000-0615

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