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周淑婵, 黄祥飞, 唐涛, 蔡庆华. 香溪河库湾轮虫现状及水质评价初探[J]. 水生生物学报, 2006, 30(1): 52-57.
引用本文: 周淑婵, 黄祥飞, 唐涛, 蔡庆华. 香溪河库湾轮虫现状及水质评价初探[J]. 水生生物学报, 2006, 30(1): 52-57.
ZHOU Shu-Chan, HUANG Xiang-Fei, TANG Tao, CAI Qing-Hua. PRIMARY STUDIES ON PLANKTON ROTIFERS AND WATER QUALITY ASSESSMENT IN XIANGXI BAY OF THE THREE GORGES RESERVOIR[J]. ACTA HYDROBIOLOGICA SINICA, 2006, 30(1): 52-57.
Citation: ZHOU Shu-Chan, HUANG Xiang-Fei, TANG Tao, CAI Qing-Hua. PRIMARY STUDIES ON PLANKTON ROTIFERS AND WATER QUALITY ASSESSMENT IN XIANGXI BAY OF THE THREE GORGES RESERVOIR[J]. ACTA HYDROBIOLOGICA SINICA, 2006, 30(1): 52-57.

香溪河库湾轮虫现状及水质评价初探

PRIMARY STUDIES ON PLANKTON ROTIFERS AND WATER QUALITY ASSESSMENT IN XIANGXI BAY OF THE THREE GORGES RESERVOIR

  • 摘要: 香溪河是长江三峡水库湖北省最大的支流。通过对香溪河库湾(下游河段)一周年的调查,发现轮虫80种,其中占优势的有13种。轮虫密度在不同样点差异显著,样点Ⅸ最低(仅为68.96 ind./L),样点Ⅵ最高(为1505.83ind./L);对9个样点进行聚类分析,可分为4组,第1组为样点Ⅰ至Ⅴ,第2组为样点Ⅵ,第3组为样点Ⅶ、Ⅷ,第4组为样点Ⅸ;除样点Ⅸ外,沿着水流方向,轮虫密度逐渐降低;在时间上差异也显著(P0.01),9月份最高(2664.17ind./L),12月份最低(85.00ind./L)。水质评价表明香溪河库湾属于中污染。

     

    Abstract: Xiangxi River was the biggest tributary of the Three Gorges Reservoir in Hubei Province,which had a length of 94km,a catchment area of 3, 099km2 and a natural fall of 1540m. Since June 1st, 2003 the segment of Xiangxi River from the rivermouth to Xiakou had been formed the backwater region. In this region the spatial and temporal distribution of plankton rotiferswere investigated at monthly intervals from July, 2003 to June, 2004. Among the 80 rotifer species identified, 13 species werepredominant,which were Synchaeta sp.,Keratella cochlearis, Polyarthra trigla, Conochilus unicorni, Trichocerca lophoessa, Trichocercagracilis, Brachionus angularis, Keratella valga, Tichocerca similes, Brachionus forf icula, Brachionus Calycif lorus, Trichocercaporcellus and Pompholyx sulcata. A maximum density of 2459.23 ind./L was observed in September and the minimum ofrotifer density was found in December(85.00 ind./L). ANOVA was used in the variance analysis of rotifer density in differentmonths, the result was found that rotifer density,Margalef and Shannon-Wiener diversity index significantly different(n= 12, P0101), so the temporal dynamic of rotifer density in Xiangxi Bay was obvious.At the same time, the spatial distribution of rotifersin this region was discussed. The highest density of rotifer was found in Site, the least density was found in Site . Rotiferdensity decreased along the water flow. And all the sites could be divided into 4 groups by the cluster analysis, the first groupwas from Site to |the second group was Site |the third group was Site and⑾, and the fourth group was Site?Rotiferdensity was evidently positive correlation with temperature, but negative correlation with water depth. The main factors regulatingrotifer population were water temperature and food resource.Also in this article the relat ionship between rotifer and waterquality was discussed.

     

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