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首页> 外文期刊>International review of hydrobiology >PCR-DGGE Fingerprinting Analysis of Plankton Communities and Its Relationship to Lake Trophic Status
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PCR-DGGE Fingerprinting Analysis of Plankton Communities and Its Relationship to Lake Trophic Status

机译:浮游生物群落的PCR-DGGE指纹分析及其与湖泊营养状态的关系

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摘要

Plankton communities in eight lakes of different trophic status near Yangtze, China were characterized by using denatured gradient gel electrophoresis (DGGE). Various water quality parameters were also measured at each collection site. Following extraction of DNA from plankton communities, 16S rRNA and 18S rRNA genes were amplified with specific primers for prokaryotes and eukaryotes, respectively; DNA profiles were developed by DGGE. The plankton community of each lake had its own distinct DNA profile. The total number of bands identified at 34 sampling stations ranged from 37 to 111. Both prokaryotes and eukaryotes displayed complex fingerprints composed of a large number of bands: 16 to 59 bands were obtained with the prokaryotic primer set; 21 to 52 bands for the eukaryotic primer set. The DGGE-patterns were analyzed in relation to water quality parameters by canonical correspondence analysis (CCA). Temperature, pH, alkalinity, and the concentration of COD, TP and TN were strongly correlated with the DGGE patterns. The parameters that demonstrated a strong correlation to the DGGE fingerprints of the plankton community differed among lakes, suggesting that differences in the DGGE fingerprints were due mainly to lake trophic status. Results of the present study suggest that PCR-DGGE fingerprinting is an effective and precise method of identifying changes to plankton community composition, and therefore could be a useful ecological tool for monitoring the response of aquatic ecosystems to environmental perturbations.
机译:利用变性梯度凝胶电泳(DGGE)对中国长江附近八个营养状态不同的湖泊中的浮游生物群落进行了表征。在每个收集地点还测量了各种水质参数。从浮游生物群落中提取DNA后,分别用原核生物和真核生物的特异性引物扩增16S rRNA和18S rRNA基因。 DNA谱由DGGE开发。每个湖泊的浮游生物群落都有自己独特的DNA谱。在34个采样站鉴定出的条带总数为37至111。原核生物和真核生物均显示出由许多条带组成的复杂指纹:使用原核引物组获得了16至59条条带。真核引物组的21至52条带。通过规范对应分析(CCA)分析了与水质参数相关的DGGE模式。温度,pH,碱度以及COD,TP和TN的浓度与DGGE模式密切相关。显示与浮游生物群落的DGGE指纹高度相关的参数在不同湖泊之间也有所不同,这表明DGGE指纹的差异主要是由于湖泊的营养状态造成的。本研究的结果表明,PCR-DGGE指纹图谱是鉴定浮游生物群落组成变化的有效且精确的方法,因此可能是监测水生生态系统对环境扰动的有用的生态工具。

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