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《Wetland Science》 2004-02
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Response of the Wetland Vegetation to Dry-Wet Alternating Habitat in the Songnen Plain of China

TIAN Xun 1, BU Zhao Jun 2, YANG Yun Fei 1, LANG Hui Qing 2 (1. Institute of Grassland Science, Northeast Normal University, Key Laboratory for Vegetation Ecology, Ministry of Education, Changchun, Jilin 130024, China; 2. College of Urban and Environmental Sciences, Northeast Normal University, Changchun, Jilin 130024, China)  
Soil moisture condition was non equably distributed in Zhalong wetland and Xianghai wetland in the Songnen Plains, and there was a dry wet alternation among serial habitats in the two wetlands. There was distinct difference in succession series of vegetation communities from xerophilization habitat to hygrocolization habitat. Fifteen fixed quadrates were established on vegetation segment of dry wet interface, including meadow and marsh vegetation in Zhalong wetland and Xianghai wetland respectively. Size of all quadrates was designed as 1m×1m. The results of vegetation observation from May to August showed that the number of Leymus chinensis population reduced sharply from xerophilization to hygrocolization habitat and disappeared in wet habitat not only in Zhalong wetland but also in Xianghai wetland. The number of Carex duriuscula population distributed like a parabola with two peak value along the dry wet habitat in Zhalong wetland, but no Carex duriuscula in Xianghai wetland. The number of Phragmites australis population increased from xerophilization to hygrocolization habitat in Zhalong wetland. The edge of hydrophytic habitat was dominated by Phragmites australis , whereas Typha angustifolia was the dominance population in the hydrophytic habitat in Xianghai wetland. Analysis of dynamic of population and relative dominance demonstrated that Leymus chinensis is the dominance population in xerophilization habitat, but Phragmites australis in hygrocolization habitat in the Songnen Plains. Mutual succession occurred in Leymus chinensis meadow vegetation and Phragmites australis marsh vegetation with following dry wet alternation. Vegetation succession was influenced by both soil moisture fluctuation and biological characteristic of dominance population.
【Fund】: 国家自然科学基金 ( 5 0 13 92 10 )项目资助
【CateGory Index】: Q948
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