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3 期                     杨海乐,等:中华鲟的死亡螺旋和改出螺旋的可能性探讨                                        50 卷

                    along the Yangtze River after being released into the Yangtze  Luo H H. Study on key environmental factors and suitability of
                    River Estuary[J]. Journal of Lake Sciences. 2025, 37(5): 1722-  Chinese  sturgeon  reproduction[D].  Beijing:  China  Research
                    1732 (in Chinese).                              Institute  of  Water  Resources  and  Hydropower,  2013  (in
              [49]   张辉. 中华鲟自然繁殖的非生物环境      [D]. 武汉: 华中农业大          Chinese).
                    学, 2009.                                  [55]   常涛, 高欣, 刘焕章. 梯级调度下宜昌江段径流变化对中华鲟
                    Zhang  H.  Abiotic  environment  for  natural  reproduction  of  繁殖活动影响  [J]. 水生生物学报, 2019, 43(S1): 97-103.
                    Chinese  sturgeon  (Acipenser  sinensis)[D].  Wuhan:  Huazhong
                                                                    Chang T, Gao X, Liu H Z. Variation of runoff in the Yichang
                    Agricultural University, 2009 (in Chinese).
                                                                    reach of  Yangtze  River  and  its  influence  to  the  Chinese   stur-
              [50]   Jiao W J, Zhang P, Chang J B, et al. Variation in the suitability
                                                                    geon  spawning  under  the  cascaded  hydropower  operation[J].
                    of Chinese sturgeon spawning habitat after construction of dams
                                                                    Acta Hydrobiologica Sinica, 2019, 43(S1): 97-103 (in Chinese).
                    on the Yangtze River[J]. Journal of Applied Ichthyology, 2019,
                                                              [56]   Huang A Y, Yao J Z, Zhu J Z, et al. Optimization of the flow
                    35(3): 637-643.
                                                                    conditions  in  the  spawning  ground  of  the  Chinese  sturgeon
              [51]   Zhou Y J, Li Z J, Yao S M, et al. Case study: influence of Three
                                                                    (Acipenser  sinensis)  through  Gezhouba  Dam  generating
                    Gorges Reservoir impoundment on hydrological regime of the
                                                                    units[J]. Scientific Reports, 2021, 11(1): 14403.
                    Acipenser sinensis spawning ground, Yangtze River, China[J].
                                                              [57]   Zhang P, Qiao Y, Grenouillet G, et al. Responses of spawning
                    Frontiers in Ecology and Evolution, 2021, 9: 624447.
                                                                    thermal suitability to climate change and hydropower operation
              [52]   刘文成, 李君轶, 李鹏程, 等. 三峡蓄水以来葛洲坝下中华鲟
                                                                    for typical fishes below the Three Gorges Dam[J]. Ecological
                    产卵场河床质特征变化规律       [J]. 水生生物学报, 2024, 48(4):
                                                                    Indicators, 2021, 121: 107186.
                    568-578.
                                                              [58]   王煜, 李金峰, 翟振男. 优化中华鲟产卵场水动力环境的梯级
                    Liu W C, Li J Y, Li P C, et al. Variation regularity of bottom
                                                                    水库联合调度研究     [J]. 水利水电科技进展, 2020, 40(1): 56-
                    substrate characteristics  in  spawning  ground  of  Chinese   stur-
                                                                    63.
                    geon downstream the Gezhouba Dam from impounding of the
                                                                    Wang Y, Li J F, Zhai Z N. Research on joint operation of cas-
                    Three  Gorge  Reservoir[J].  Acta  Hydrobiologica  Sinica,  2024,
                                                                    cade  reservoirs  to  optimize  hydrodynamic  environment  for
                    48(4): 568-578 (in Chinese).
                                                                    Chinese sturgeon spawning ground[J]. Advances in Science and
              [53]   陈永柏. 三峡水库运行影响中华鲟繁殖的生态水文学机制及
                    其保护对策研究    [D]. 武汉: 中国科学院研究生院   (水生生物           Technology  of  Water  Resources,  2020,  40(1):  56-63  (in
                                                                    Chinese).
                    研究所), 2007.
                                                              [59]   方冬冬, 杨海乐, 张辉, 等. 长江石首江段鱼类群落结构年际
                    Chen  Y  B.  Studies  on  the  influences  of  the  operation  of  the
                    Three  Gorges  Dam  on  reproduction  of  the  Chinese  sturgeon,  变化及禁渔效果  [J]. 长江流域资源与环境, 2023, 32(11):
                    Acipenser sinensis: the ecohydrological mechanism and conser-  2338-2347.
                    vation strategy[D]. Wuhan: Institute of Hydrobiology, Chinese  Fang D D, Yang H L, Zhang H, et al. Interannual variation of
                    Academy of Sciences, 2007 (in Chinese).         fish  community  structure  in  Shishou  section  of  Yangtze
              [54]   骆辉煌. 中华鲟繁殖的关键环境因子及适宜性研究          [D]. 北        River[J].  Resources  and  Environment  in  the  Yangtze  Basin,
                    京: 中国水利水电科学研究院, 2013.                           2023, 32(11): 2338-2347 (in Chinese).



                 Seeking the chance of escaping from the population depression spiral for
                                      Chinese sturgeon (Acipenser sinensis)


                                                   *
                                       YANG Haile  ,     XU Jianan ,     ZHENG Yueping
                           (Shanghai Aquatic Wildlife Conservation and Research Center, Shanghai 200092, China)


              Abstract: Chinese sturgeon (Acipenser sinensis) are the flagship species of the Yangtze River aquatic ecosystem and the indic-
              ator species for indicating the degradation of the Yangtze River aquatic ecosystem in recent decades. The Gezhou Dam, con-


              中国水产学会主办  sponsored by China Society of Fisheries                          https://www.china-fishery.cn
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