三峡水库生态渔业发展策略与关键技术研究分析
ANALYSIS ON THE DEVELOPMENT STRATEGIES AND KEY TECHNIQUES OF ECOLOGICAL FISHERIES IN THE THREE GORGES RESERVOIR, CHINA
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摘要: 针对三峡水库蓄水后水体资源丰富、水生态系统发育尚不完善、支流库湾藻类水华问题较严重、鱼类群落结构有待调控、水生生物资源未有效利用和转化的现状, 阐述了三峡水库生态渔业作为生态系统保护途径和绿色产业的必要性与重要性, 提出了三峡水库生态渔业发展的总体目标与基本原则, 认为三峡水库发展生态渔业应以生态安全保障和水质养护为首要任务, 严格控制外来物种的引种移植, 以土著鱼类自然繁殖保护和捕捞管理为主, 动态调控放流增殖的鱼类种类和数量为辅, 建立以鱼类群落合理配置和食物网结构优化为手段的水库生态系统调控技术体系, 促进高效的物质循环和能量流动, 实现环境保护和渔业增效的双赢。作者围绕渔业放流增殖、野生鱼类资源保护、捕捞管理、局部库区渔业调控、渔业生物控藻、社区渔业协调管理、生态渔业总体规划等方面, 分析了现阶段三峡水库生态渔业的重点研究任务与关键技术,同时建议加强相关生态学理论与方法研究、技术示范和成果应用, 为三峡水库以渔养水、渔-水和谐的综合管理提供决策依据。Abstract: In this paper, based on the current status of water environment, living resources and ecosystem structure of the Three Gorges Reservoir (TGR), we clarified the necessity and importance of ecological fisheries in the TGR as a way of ecosystem protection and as green agriculture for local people. We put forward the overall goal and basic principles of ecological fisheries development in the TGR, underlining the priority of ecological security and water quality conservation. The introduction of alien species should be strictly prohibited in the reservoir. Enhancement of indigenous fish resources should be carried out through protection of natural reproduction, fishing management, and stocking with suitable species and number. To achieve a win-win situation for environmental protection and fishery benefit in the TGR, it is necessary to establish feasible ecosystem regulation technologies by optimizing the allocation of fish composition and food web structure and promoting high efficiency of nutrient cycling and energy transfer. We analyzed the main research tasks and key technologies for ecological fisheries in the TGR at the present stage, centering on the relevant aspects including protection of wild fishes, stocking enhancement, fishing management, fishery regulation in tributaries, biomanipulation on algal blooms, coordination of community fishery, and overall fishery planning. We suggested that there should be more studies in the future conducted on the related ecological theories and methods, technology demonstration, and application of key technologies.
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[1] Huang Z L, Wu B F, Ao L G. Study on the Ecological and Environmental Monitoring System for the Three Gorges Project [M]. Beijing: Science Press. 2006, 2132 [黄真理, 吴炳方, 敖良桂. 三峡工程生态与环境监测系统研究. 北京: 科学出版社. 2006, 2132]
[2] Cai Q H, Sun Z Y. Water environment and aquatic ecosystem of Three Gorges Reservoir, China: progress and prospects [J]. Journal of Lake Sciences, 2012, 24(2): 169177 [蔡庆华, 孙志禹. 三峡水库水环境与水生态研究的进展与展望. 湖泊科学, 2012, 24(2): 169177]
[3] Gao X, Zeng Y, Wang J W, Liu H Z. Immediate impacts of the second impoundment on fish communities in the Three Gorges Reservoir [J]. Environmental Biology of Fishes, 2010, 87: 163173
[4] Perera H A C C, Li Z J, De Silva S S, et al. Effect of the distance from the dam on river fish community structure and compositional trends, with reference to the Three Gorges Dam, Yangtze River, China [J]. Acta Hydrobiologica Sinica, 2014, 38(3): 438445 [H. A. C. C. Perera, 李钟杰, S. S. De Silva,等. 三峡水库不同区域对鱼类群落结构和鱼类组成动态的影响. 水生生物学报, 2014, 38(3): 438445]
[5] Zhao S S, Ye S W, Xie S G, et al. The current situation of fishery resources and management suggestions in the Xiangxi River of the Three Gorges Reservoir [J]. Acta Hydrobiologica Sinica, 2015, 39(5): 973982 [赵莎莎, 叶少文, 谢松光, 等. 三峡水库香溪河鱼类资源现状及渔业管理建议. 水生生物学报, 2015, 39(5): 973982]
[6] Cai Q H, Hu Z Y. Studies on eutrophication problem and control strategy in the Three Gorges Reservoir [J]. Acta Hydrobiologica Sinica, 2006, 30(1): 711 [蔡庆华, 胡征宇. 三峡水库富营养化问题与对策研究. 水生生物学报, 2006, 30(1): 711]
[7] Xie P. Silver Carp and Bighead, and Their Use in the Control of Algal Blooms [M]. Beijing: Science Press. 2003, 116 [谢平. 鲢、鳙与藻类水华控制. 北京: 科学出版社. 2003, 116]
[8] Jeppesen E, Sondergaard M, Lauridsen T L. Biomanipulation as a restoration tool to combat eutrophication: recent advances and future challenges [J]. Advances in Ecological Research, 2012, 47: 411488
[9] Wang S Y, Zhou Z J, Wang Z C, et al. Distribution of nutrient elements and its relationship with algal growth in the Three Gorges Reservoir [J]. Acta Hydrobiologica Sinica, 2015, 39(5): : 910919 [王司阳, 周子俊, 汪志聪, 等. 三峡水库营养元素的分布及其与藻类生长的关系. 水生生物学报, 2015, 39(5): 910919]
[10] Liu J K, Cao W X. Fish resources of the Yangtze River Basin and the tactics for their conservation [J]. Resources and Environment in the Yangtze Valley, 1992, 1(1): 1723[刘建康, 曹文宣. 长江流域的鱼类资源及其保护对策. 长江流域资源与环境, 1992, 1(1): 1723]
[11] Lian Y X, Huang G, Godlewska M, et al. Hydroacoustic assessment of fish spatio-temporal distribution and abundance in Xiangxi River [J]. Acta Hydrobiologica Sinica, 2015, 39(5): 920929 [连玉喜, 黄耿, Godlewska M, 等. 基于水声学探测的香溪河鱼类资源时空分布特征评估. 水生生物学报, 2015, 39(5): 920929]
[12] Li W X, Chen Y B, Liu J S, et al. Strategy for the development of fisheries in the Three Gorges Reservoir [J]. Yangtze River, 2008, 39(2): 57 [李文祥, 陈永柏, 刘家寿, 等. 三峡水库渔业发展对策探讨. 人民长江, 2008, 39(2): 57]
[13] King M. Fisheries Biology, Assessment and Management (2nd edition) [M]. Oxford: Blackwell Publishing. 2007, 240
[14] Liu Q G, He G X, Chen M K. Theoretical conception and application example of water conservation fishery [J]. China Fisheries, 2009, 2022 [刘其根, 何光喜, 陈马康. 保水渔业理论构想与应用实例. 中国水产, 2009, 2022]
[15] Jin G, Li Z J, Xie P. Ecological theories for sustainable fishery in lakes and an example [J]. Journal of Lake Sciences, 2003, 15(1): 6975 [金刚, 李钟杰, 谢平. 湖泊渔业可持续发展的生态学基础及一个范例. 湖泊科学, 2003, 15(1): 6975]
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