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大连海洋大学学报  2023, Vol. 38 Issue (3): 504-514    
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大罗圈沟河水生生物多样性及水质评价
赵晨,孙佳伟,尹增强,王慧博,王乐,宋聃,都雪,赵玉财,孙洋,霍堂斌*
1.中国水产科学研究院黑龙江水产研究所,寒地水域水生生物保护与生态修复重点实验室,黑龙江 哈尔滨 150070;2.大连海洋大学 海洋科技与环境学院,辽宁 大连 116023;3.通化县农业农村局,吉林 通化 134100
Aquatic biodiversity and water quality evaluation in the Daluoquangou River
ZHAO Chen,SUN Jiawei,YIN Zengqiang,WANG Huibo,WANG Le,SONG Dan,DU Xue,ZHAO Yucai,SUN Yang,HUO Tangbin*
1.Key Laboratory of Aquatic Organism Protection and Ecological Restoration in Cold Waters,Heilongjiang River Fisheries Research Institute,Chinese Academy of Fishery Sciences,Harbin 150070,China;2.College of Marine Science and Environment,Dalian Ocean University,Dalian 116023,China;3.Tonghua County Agricultural and Rural Bureau,Tonghua 134100,China
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摘要 为探究大罗圈沟河特有鱼类省级水产种质资源保护区水生生物群落分布特征与环境因子间的响应关系,于2021年5—6月在大罗圈沟河及其支流共设置14个采样点,对鱼类、浮游植物、浮游动物和大型底栖动物的群落结构特征及水环境理化现状进行调查。结果表明:大罗圈沟河共调查到鱼类6目8科25种,优势种均为冷水性鱼类,物种丰富度干流优于支流,生物多样性实验区优于核心区;浮游植物共检出4门39种,硅藻门为优势类群,浮游植物生物量存在空间异质性,物种均匀度指数核心区与实验区间存在显著性差异(P<0.05),实验区浮游植物丰度及生物量最高;浮游动物共检出4类32种,轮虫类为优势类群,实验区浮游动物丰度及生物量最高;大型底栖动物共检出2门2纲6目18科26种,水生昆虫为优势类群,优势种为喜清洁水体的蜉蝣目和毛翅目,核心区大型底栖动物密度及生物量最高;非度量多维尺度排序(NMDS)分析显示,麦穗鱼、细小平裂藻、汤匙华哲水蚤和高翔蜉是造成水生生物群落结构组间差异的歧化种;显著影响鱼类群落结构的环境因子为电导率,显著影响浮游植物的环境因子为水温、氨态氮和高锰酸盐指数,显著影响大型底栖动物的环境因子为水温和pH。研究表明,大罗圈沟河水质清洁,整体处于贫-中营养状态,水生生物多样性干流优于支流,大尺度自然生境变化及水文特征是影响大罗圈沟河水生生物群落结构的主要因素。
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赵晨
孙佳伟
尹增强
王慧博
王乐
宋聃
都雪
赵玉财
孙洋
霍堂斌
关键词:  大罗圈沟河  鱼类  浮游植物  浮游动物  大型底栖动物  群落结构  环境因子    
Abstract: In order to explore the relationship between the distribution characteristics of aquatic communities and environmental factors in the provincial aquatic germplasm reserve for endemic fish of the Daluoquangou River, community structure characteristics of fish, phytoplankton, zooplankton and macrozoobenthos, and the physicochemical factors of the water environment were investigated. A total of 14 sampling sites were set up in the Daluoquangou River and its tributaries from May to June 2021. The results showed that 25 fish species, belonging to six orders and eight families were identified, and the dominant species were all cold-water fish. The species richness of fish in the main stream was higher than that in the tributaries, and the biodiversity in the experimental area was higher than that in the core area. 39 species of phytoplankton, belonging to four phyla were identified, and Bacillariophyta was the dominant taxa. There were significant differences in species evenness index between the core area and the experimental area (P<0.05). The phytoplankton biomass was spatially heterogeneous, and the abundance and biomass of phytoplankton was the highest in the experimental area. A total of 32 zooplankton species, belonging to four categories were identified. Rotifer were the dominant taxa, and the abundance and biomass of zooplankton were the highest in the experimental area. A total of 26 species of macrozoobenthos, belonging to two phyla, two classes, six orders, 18 families, were identified. Aquatic insects were the dominant taxa, and the dominant species were Ephemeroptera and Trichoptera that liked clean water. The density and biomass of macrozoobenthos in the core area was the highest. The results of Non-metric multidimensional scaling showed that the Pseudorasbora parvaMerismopedia minimaInocalanus dorrii, and Epeorus sp. were the indicator species that caused the differences in aquatic community structure among groups, respectively. Conductivity was the significantly environmental factor affecting fish community, and water temperature, ammonia nitrogen and permanganate index, and water temperature and pH, were the significantly environmental factors affecting phytoplankton and macroinvertebrate communities, respectively. The results indicated that the water quality of the Daluoquangou River was clean, and the trophic status was oligotrophic to mesotrophic.Aquatic biodiversity of the experimental area was higher than that of core area. Large-scale natural habitat changes and hydrological characteristics were the main factors affecting the structure of aquatic communities in the Daluoquangou River.
Key words:  Daluoquangou River    fish    phytoplankton    zooplankton    macrozoobenthos    community structure    environmental factors
               出版日期:  2023-07-12      发布日期:  2023-07-12      期的出版日期:  2023-07-12
中图分类号:  S 932.2  
基金资助: 农业农村部财政专项“东北地区重点水域渔业资源与环境调查”
引用本文:    
赵晨, 孙佳伟, 尹增强, 王慧博, 王乐, 宋聃, 都雪, 赵玉财, 孙洋, 霍堂斌. 大罗圈沟河水生生物多样性及水质评价[J]. 大连海洋大学学报, 2023, 38(3): 504-514.
ZHAO Chen, SUN Jiawei, YIN Zengqiang, WANG Huibo, WANG Le, SONG Dan, DU Xue, ZHAO Yucai, SUN Yang, HUO Tangbin. Aquatic biodiversity and water quality evaluation in the Daluoquangou River. Journal of Dalian Ocean University, 2023, 38(3): 504-514.
链接本文:  
https://xuebao.dlou.edu.cn/CN/  或          https://xuebao.dlou.edu.cn/CN/Y2023/V38/I3/504
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