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Phytoplankton community structure in relation to environmental factors and ecological assessment of water quality in the upper reaches of the Genhe River in the Greater Hinggan Mountains

机译:浮游植物群落结构与环境因素与水质的环境因素和生态评估,在大辉山山的上游水质

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Phytoplankton assemblages were investigated in 2015 along the seasonal changes of the Genhe River in the Greater Hinggan Mountains. The survey was performed in June (spring), August (summer), and October (autumn) at nine sampling stations to study the community composition, abundance, and biodiversity. The results showed that 61 species belonging to 16 genera were identified, including Bacillariophyta of 31 species, Dinophyta 2 species, Cyanophyta 2 species, Chlorophyta 20 species, Chrysophyta 2 species, and Cryptophyta 1 species; Besides, Bacillariophyta are dominant species. Shannon-Wiener (H) and Pielou (J) indices indicated that phytoplankton community was stable. And these two indices were significantly lower in summer than in spring and autumn. Phytoplankton abundance and biomass show significant differences in each season. The total phytoplankton abundance (1122.3x104 ind/L) and biomass (6.5709mg/L) in summer are much higher than that in spring and autumn. There were few species and low abundance and biomass in the upper reaches of Genhe River; this fact can be explained by the cold climate in the Greater Higgnan Mountains region. Canonical correspondence analysis (CCA) was used to analyze the data. It revealed that Fe3+, Cu2+, pH, and water temperature (WT) were responsible for most of the variation in space in the phytoplankton community. These environmental parameters play an essential role in the community structure variation of phytoplankton in the upper reaches of Genhe River, the strong association between phytoplankton community structure and ecological factors is varied in each season.
机译:2015年沿着盛鹰山的日常河流季节变化调查了浮游植物的集会。该调查在6月(春季),8月(夏季)和10月(秋季)在九个采样站进行,以研究社区成分,丰富和生物多样性。结果表明,61种16属进行了鉴定,其中包括31种硅藻,甲藻2种,蓝藻2种,绿藻20种,金藻门2种,隐藻1种;此外,Bacillariophyta是主要的物种。 Shannon-Wiener(H)和Pielou(J)指数表明,浮游植物群落稳定。这两个指数在夏天比春秋显着降低。 Phytoplankton丰度和生物量显示每个季节的显着差异。夏季的浮游植物(1122.3X104 Ind / L)和生物量(6.5709mg / L)远高于春季和秋季的高得多。河流上游有很少的物种和低丰度和生物量;这一事实可以通过寒冷的气候来解释,较大的HIGGNAN山脉地区。使用规范对应分析(CCA)来分析数据。揭示Fe3 +,Cu2 +,pH和水温(WT)负责浮游植物群落中的大部分空间变异。这些环境参数在全年河流上游浮游植物的社区结构变化中起重要作用,浮游植物群落结构与生态因素之间的强烈关联在每个季节都是多种多样的。

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