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引用本文:王恩辉,张晓黎,张 莹,龚 骏,刘东艳,王玉珏.山东半岛北岸不同生境潮间带浮游细菌多样性研究[J].海洋科学,2016,40(6):8-16.
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山东半岛北岸不同生境潮间带浮游细菌多样性研究
王恩辉1,2, 张晓黎1, 张 莹1,2, 龚 骏1, 刘东艳1, 王玉珏1
1.中国科学院 烟台海岸带研究所 海岸带环境过程与生态修复重点实验室;2.中国科学院大学
摘要:
通过提取山东半岛北岸不同类型潮间带海水样品的总DNA, 构建16S rDNA 文库, 利用群落相似性分析(ANOSIM)和非度量多维尺度转换排序(NMDS), 探究潮间带类型对浮游细菌群落结构的影响,并对比了与近海浮游细菌群落结构的差异。分析结果显示, 浮游细菌的丰度及多样性受到潮间带类型的影响, 烟台养马岛泥滩、石滩、辛安河沙滩、黄河三角洲碱蓬区和天鹅湖海草区以变形菌门占优势,而黄河三角洲米草区以拟杆菌门为优势菌, 其中, 天鹅湖海草区浮游细菌的丰富度和多样性最高。潮间带海水中浮游细菌的组成与近海存在显著差异, 潮间带浮游细菌的丰度及多样性均显著高于近海。推测季节因素、植被类型、有机质来源可能是造成潮间带不同生境与近海浮游细菌多样性差异的重要因素。
关键词:  潮间带  浮游细菌  多样性  核糖体DNA
DOI:10.11759/hykx20150911001
分类号:
基金项目:中国科学院战略先导研究项目(XDA11020405); 国家自然科学基金面上项目(41376121); 山东省自然科学杰出基金(JQ201414)
Bacterioplankton diversity in different littoral habitats along the coast of the northern Shandong peninsula
WANG En-hui,ZHANG Xiao-li,ZHANG Ying,GONG Jun,LIU Dong-yan,WANG Yu-jue
Abstract:
The community structure and diversity of bacterioplankton from different littoral habitats around the Shandong Peninsula were investigated by constructing 16S rDNA clone libraries. To visualize the differences in the community structure among habitats, non-metric multidimensional scaling (NMDS) was conducted on the basis of a Bray–Curtis similarity matrix. Analysis of similarity (ANOSIM) was performed to test for statistically significant differences. There was a significant difference between samples from littoral zones and coastal waters. In comparison, bacterioplankton samples in littoral zones displayed higher abundance and diversity, particularly in seagrass areas. Proteobacteria dominated in the muddy flat, rocky, and sandy habitats of Yantai; wetlands inhabited by Suaeda in the Yellow River Delta; and wetlands with seagrass in Swan Lake. Bacteroidetes was the most abundant in wetlands inhabited by Sparina in the Yellow River Delta. The results suggest that seasonal variation, the type of vegetation, and the source of organic matter may be key factors regulating the bacterioplankton community structure in different littoral and coastal habitats.
Key words:  littoral habitats  bacterioplankton  diversity  rDNA
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