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ISSN 1674-5566

主管 上海市教委

主办 上海海洋大学

2016—2020年太湖鱼类群落结构变化及对太湖水环境的响应

熊满辉 任泷 陈永进 詹政军 刘鹏飞 徐东坡

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熊满辉, 任泷, 陈永进, 詹政军, 刘鹏飞, 徐东坡. 2022. 2016—2020年太湖鱼类群落结构变化及对太湖水环境的响应. 上海海洋大学学报, 31(6): 1478-1487. doi: 10.12024/jsou.20210203302
引用本文: 熊满辉, 任泷, 陈永进, 詹政军, 刘鹏飞, 徐东坡. 2022. 2016—2020年太湖鱼类群落结构变化及对太湖水环境的响应. 上海海洋大学学报, 31(6): 1478-1487. doi: 10.12024/jsou.20210203302
XIONG Manhui, REN Long, CHEN Yongjin, ZHAN Zhengjun, LIU Pengfei, XU Dongpo. 2022. Community structure and diversity of fish in Taihu Lake from 2016 to 2020 and their relationship with water environment. Journal of shanghai ocean university, 31(6): 1478-1487. doi: 10.12024/jsou.20210203302
Citation: XIONG Manhui, REN Long, CHEN Yongjin, ZHAN Zhengjun, LIU Pengfei, XU Dongpo. 2022. Community structure and diversity of fish in Taihu Lake from 2016 to 2020 and their relationship with water environment. Journal of shanghai ocean university, 31(6): 1478-1487. doi: 10.12024/jsou.20210203302

2016—2020年太湖鱼类群落结构变化及对太湖水环境的响应

  • 基金项目:

    国家重点研发计划(2020YFD0900500);中国水产科学研究院院级基本科研业务费专项(2020XT13,2020TD61)

详细信息
    作者简介:

    熊满辉(1984—),女,硕士研究生,研究方向为水生态监测与评价工作。E-mail:xiongmanhui@126.com

    通讯作者: 徐东坡, E-mail: xudp@ffrc.cn
  • 中图分类号: Q958.1

Community structure and diversity of fish in Taihu Lake from 2016 to 2020 and their relationship with water environment

  • Fund Project: 国家重点研发计划(2020YFD0900500);中国水产科学研究院院级基本科研业务费专项(2020XT13,2020TD61)
More Information
  • 基于2016—2020年太湖10个鱼类采样站位和33个水环境站点监测数据,分析研究了近年来太湖鱼类群落结构变化及其对水环境的响应。调查结果表明,2020年共在太湖调查发现鱼类56种,主要优势种为刀鲚、鲫、鲤,相对重要性指数分别为9 219.28、1 698.78和1 075.27。太湖87.9%的鱼类全长在200 mm以下,88.2%的鱼类体质量在50 g以下。2016年以来,共在太湖发现鱼类68种,太湖水环境总体保持稳定,但鱼类群落结构发生了较大变化,优势种发生明显改变。统计结果表明,2016年以来太湖鱼类群落结构多样性指数与主要水环境指标之间无显著相关性,太湖外排水量、人工增殖放流对太湖鱼类群落结构具有重要影响。研究表明,需结合太湖水环境状况建立太湖鱼类精细化捕捞方案及鲢鳙鱼增殖放流方案,引导太湖鱼类群落结构恢复并最大程度发挥太湖鲢鳙鱼控藻潜力。
  • 加载中
  • MAO Z G, GU X H, ZENG Q F, et al. Status and changes of fishery resources(2009-2010) in Lake Taihu and their responses to water eutrophication[J]. Journal of Lake Science, 2011, 23(6):967-973.

    ZHU G W, QIN B Q, ZHANG Y L, et al. Variation and driving factors of nutrients and chlorophyll-a concentrations in northern region of Lake Taihu, China, 2005-2017[J]. Journal of Lake Science, 2018,30(2):279-295.

    GU X H, ZENG Q F, MAO Z G, et al. Water environment change over the period 2007-2016 and the strategy of fishery improve the water quality of Lake Taihu[J]. Journal of Lake Science, 2019, 31(2):305-318.

    ANTTILA S, KETOLA M, KUOPPAMÄKI K, et al. Identification of a biomanipulation-driven regime shift in Lake Vesijärvi:implications for lake management[J]. Freshwater Biology. 2013, 58(7):1494-1502.

    AUBER A, TRAVERS-Trolet M, VILLANUEVA M C, et al. Regime shift in an exploited fish community related to natural climate oscillations[J]. Plose One. 2015, 10(7):e129883.

    MAO Z G, GU X H, ZENG Q F, et al. Community structure and diversity of fish in Lake Taihu[J]. Chinese Journal of Ecology, 2011, 30(12):2836-2842.

    XU D P, FAN Y C, ZHOU Y F, et al. Spatial and temporal variations of Acheilognathinae in Lake Taihu[J]. Journal of Shanghai Ocean University, 2018, 27(1):115-125.

    XU D P, YAND Y P, ZHOU Y F, et al. Spatial-temporal feature of Gobioninae fishes in Lake Taihu[J]. Resources and Environment in the Yangtze Basin, 2018, 27(2):371-379.

    -10.

    QIN B, PAERL H W, BROOKES J D, et al. Why Lake Taihu continues to be plagued with cyanobacterial blooms through 10 years (2007-2017) efforts[J]. Science Bulletin. 2019, 64(6):354-356.

    ZHU W, HU S Y, FENG G Y, et al. Effects of great floods on phosphorus in shallow lakes:a case study of Lake Taihu in 2016[J]. Journal of Lake Science, 2020,32(2):325-336.

    HE J, GU X H, WANG X L, et al. Fish stocking quantities and structures of the fishery resources enhancement in Lake Taihu[J]. Journal of Lake Science, 2012, 24(1):104-110.

    ZHAO K, ZHOU Y F, JIANG Z L, et al. Changes of aquatic vegetation in Lake Taihu since 1960[J]. Journal of Lake Science, 2017,29(2):351-362.

    JONE S. Assessing the long-term effects of changes in fishing effort and mesh size from length composition data[J]. ICESCN. 1974(33):1-13.

    WU B, FANG C L, HE G, et al. FiSAT II software supported length based cohort analysis[J]. South China Fisheries Sciences, 2013, 9(4):94-98.

    YU G L, LIU J, XU Y X, et al. Estimation on abundance of egg-predatory fishes in the spawning ground of Chinese sturgeon below the Gezhouba Dam[J]. Acta Hydrobiologica Sinica, 2002, 26(6):591-599.

    (3):70-73.

    YU J L, HE H, LI K Y, et al. Seasonal variations in the diets of Coilia ectenes taihuensis Yen et Lin in Gonghu Bay of Lake Taihu[J]. Journal of Lake Science, 2012,24(5):765-770.

    WANG Y P, GU X H, ZENG Q F, et al. Seasonal variations in the diet composition of Coilia ectenes taihuensis in different ecotypes of Lake Taihu[J]. Journal of Lake Science, 2016, 28(5):1078-1085.

    LIU E S, LIU Z G, CHEN W M, et al. A study on the chaise of Lake Anchovy(Coilia ectenes taihuensis Yen et Lin) catches and its mutual relationship to the biological environment in Lake Taihu[J]. Journal of Lake Science, 2005, 17(4):340-345.

    LIU E S, LIU Z W, BAO C H.The changes of catches of Carassius auratus and relationship with environment in Lake Taihu, China[J]. Journal of Lake Science, 2007, 19(3):345-350.

    LIU E S, LIU Z W, CHEN W M, et al. Changes in the yield and composition of the fish catches and their relation to the environmental factors in Lake Taihu[J]. Journal of Lake Science, 2005, 17(3):251-255.

    ZHU G W, ZOU W,GUO C X, et al. Long-term variations of phosphorus concentration and capacity in Lake Taihu,2005-2018:Implications for future phosphorus reduction target management[J]. Journal of Lake Science, 2020,32(1):21-35.

    ZHU G W,XU H,ZHU M Y, et al. Changing characteristics and driving factors of trophic state in lakes at the middle and lower reaches of Yangtze River in the past 30 years[J]. Lake Sci,2019,31(6):1510-1524.

    ZHAO X H, XU D P, REN L, et al. Assessment of the ecological carrying capacity of silver and bighead carp in the Taihu Lake based on Ecopath model[J]. Journal of Fishery Sciences of China, 2021, 28(6):785-795.

    WANG H, CHEN H X, XU Z A, et al. Variation trend of total phosphorus and its controlling factors in Lake Taihu, 2010-2017[J]. Journal of Lake Science, 2019, 31(4):919-929.

    (3):85-92.

    ZHOU X Y, ZHANG G F, LIU Q G, et al. Effects of Hyriopsis cumingii and Aristichthys nobilis on the enclosures phytoplankton community of Hypophthalmichthys molitrix pond[J]. Journal of Fisheries of China, 2011,35(5):729-737.

    GUO L, WANG Q, XIE P, et al. A non-classical biomanipulation experiment in Gonghu Bay of Lake Taihu:control of Microcystis blooms using silver and bighead carp[J]. Aquaculture Research, 2015, 9(46):2211-2224.

    (3):277-280.

    WANG Y P, GU X H, ZENG Q F, et al. Growth and photosynthetic activity of Microcystis colonies after gut passage through silver carp and bighead carp[J]. Acta Ecologica Sinica, 2014, 34(7):1707-1715.

    MEI X Y, VLADIMIR R,LARS G R, et al. Effects of omnivorous fish on benthic-pelagic habitats coupling in shallow aquatic ecosystems:A minireview[J]. Journal of Lake Science, 2021, 33(3):667-674.

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出版历程
收稿日期:  2021-02-20
修回日期:  2022-02-02

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