School of Environmental Science and Engineering, Shandong University, Jinan 250061, China.
J Environ Sci (China). 2012;24(8):1394-402. doi: 10.1016/s1001-0742(11)60964-9.
Nansi Lake is located on the east line of the South-to-North Water Diversion Project in China. A comprehensive study was carried out to investigate the spatial and temporal distribution of cyanobacteria in the lake from June 2008 to May 2011 based on monthly sample monitoring from five stations. The effect of environmental factors on cyanobacterial abundance was also evaluated. The cyanobacterial community contained 15 genera and 23 species. The cyanobacterial abundance of each monitoring station ranged from 0 to 1.53 x 10(7) cells/L with an average of 1.45 x 10(6) cells/L, which accounted for 11.66% of the total phytoplankton abundance. The dominant species of cyanobacteria were Pseudanabaena (32.94%) and Merismopedia (19.85%), not the bloom-forming algae such as Microcystis and Anabaena. In addition, the cyanobacterial community structure and water quality variables changed substantially over the survey period. Redundancy analysis (RDA) suggested that temperature and phosphorus were important environmental factors that affected cyanobacteria. Temperature was the most important factor affecting cyanobacterial abundance. The effect of phosphorus on cyanobacterial abundance was more notable in warm periods than in periods with low temperature.
南四湖位于中国南水北调东线工程上。2008 年 6 月至 2011 年 5 月,通过对五个监测点每月的样本监测,对该湖的蓝藻时空分布进行了综合研究,并评估了环境因素对蓝藻丰度的影响。蓝藻群落包含 15 属 23 种。各监测站蓝藻丰度范围为 0 至 1.53×10(7)个细胞/L,平均值为 1.45×10(6)个细胞/L,占总浮游植物丰度的 11.66%。蓝藻的优势种为拟柱胞藻(32.94%)和微囊藻(19.85%),而非微囊藻和鱼腥藻等形成水华的藻类。此外,蓝藻群落结构和水质变量在调查期间发生了很大变化。冗余分析(RDA)表明,温度和磷是影响蓝藻的重要环境因素。温度是影响蓝藻丰度的最重要因素。磷对蓝藻丰度的影响在高温期比低温期更为显著。