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Changes of macrobenthos community and their relationships with environmental factors along cascading reservoirs of Xiangxi River Basin, China.

LI Bin1,2, SHEN Heng-lun1,2, ZHANG Min3, CAI Qing-hua1**, SHAO Mei-ling4   

  1. (1State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan 430072, China; 2University of Chinese Academy of Sciences, Beijing 100049, China; 3Changjiang Water Resources Protection Institute, Wuhan 430051, China; 4College of Life Sciences, Anhui Normal University, Wuhu 241000, Anhui, China)
  • Online:2013-08-10 Published:2013-08-10

Abstract: An investigation was made on the macrobenthos communities in three cascading reservoirs in Xiangxi River Basin in October, 2005 and 2011, respectively, aimed to explore the changes of the macrobenthos communities and their relationships with the environment. As compared with that in 2005, the macrobenthos community in the three reservoirs in 2011 changed to some extent. In Gudongkou Reservoir I, Oligochaeta was still dominant, and the total macrobenthos density increased. In Gudongkou Reservoir Ⅱ, the dominance degree of Chironomidae descended, while the total macrobenthos density ascended. Meanwhile, the relative abundance of Procladius sp. declined dramatically from 94.5% to 35.5%, while that of Limnodrilus hoffmeisteri increased to 36%. The macrobenthos community in Xiangxi Bay had great change. Since Chironomidae replaced Tubificidae as the absolutely preponderant species, the relative abundance of Chironomidae reached 89%, but the total macrobenthos density decreased. These changes were attributed to the drastic water level fluctuation of the ThreeGorges Reservoir. The canonical correspondence analysis (CCA) on the relationships between the macrobenthos community and environmental factors in the three reservoirs showed that Procladius sp. preferred the waters with higher turbidity, while Limnodrilus hoffmeisteri and Tubifex tubifex preferred the waters with higher water column stability and lower bottom water temperature.

Key words: fertilizing regime, apple orchard soil, calcium carbonate, orchard planting age, watersoluble calcium, exchangeable calcium.