Liu Li, He Xin-Yu, Fu Jun-Ke, Yang Yan-Jun, Mi Wen-Mei, Shi Jun-Qiong, Wu Zhong-Xing
Key Laboratory of Eco-environments in Three Gorges Reservoir Region(Ministry of Education), Chongqing Key Laboratory of Plant Ecology and Resources Research in Three Gorges Reservoir Region, Southwest University, Chongqing 400715, China.
Huan Jing Ke Xue. 2019 Aug 8;40(8):3577-3587. doi: 10.13227/j.hjkx.201901017.
In order to study changes in benthic diatom communities and their relationships with environmental factors during different hydrological periods, 32 sites were sampled in the main stream of the Three Gorges Reservoir during the non-storage period (July 2015 to September 2015) and the storage period (December 2015 to March 2016). Results showed that there were significant differences in water temperature (WT), underwater light intensity (PAR), pH, conductivity (Spc), dissolved oxygen (DO), redox potential (ORP), turbidity (Tur), transparency (SD), flow rate (), and permanganate index between the storage and non-storage periods. Ninety-six species of benthic diatoms, belonging to 28 genera, were identified during the two hydrological periods. Thirteen dominant species and three dominant species were identified during the non-storage period and the storage period, respectively, suggesting that some differences existed in the composition and distribution of dominant species between the two periods. However, , an -polluting and eutrophic species, was dominant during both of the hydrological periods. Redundancy analysis (RDA) found that pH, flow rate, and orthophosphate (PO-P) were the main environmental factors affecting the composition of benthic diatom communities, and a significant difference was found between up- and down-stream areas during the non-storage period. In comparison, water temperature, turbidity, permanganate index, and dissolved oxygen (DO) were the main environmental factors influencing the patterns of benthic diatoms communities, for which an insignificant difference was observed between up- and down-stream areas during the storage period. These results suggest that water storage in the Three Gorges Reservoir has an important impact on the composition of benthic diatom communities, and that this results in a change in community structure.
为研究三峡水库不同水文时期底栖硅藻群落变化及其与环境因子的关系,于非蓄水期(2015年7月至2015年9月)和蓄水期(2015年12月至2016年3月)在三峡水库干流选取32个采样点进行采样。结果表明,蓄水期与非蓄水期的水温(WT)、水下光强(PAR)、pH值、电导率(Spc)、溶解氧(DO)、氧化还原电位(ORP)、浊度(Tur)、透明度(SD)、流速()和高锰酸盐指数存在显著差异。在两个水文时期共鉴定出96种底栖硅藻,分属28个属。非蓄水期和蓄水期分别鉴定出13种优势种和3种优势种,表明两个时期优势种的组成和分布存在一定差异。然而,在两个水文时期,污染兼富营养化物种均占优势。冗余分析(RDA)发现,pH值、流速和正磷酸盐(PO-P)是影响底栖硅藻群落组成的主要环境因子,非蓄水期上下游区域存在显著差异。相比之下,水温、浊度、高锰酸盐指数和溶解氧(DO)是影响底栖硅藻群落格局的主要环境因子,蓄水期上下游区域差异不显著。这些结果表明,三峡水库蓄水对底栖硅藻群落组成有重要影响,并导致群落结构发生变化。