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Jellyfish Rhopilema esculentum Stock Enhancement in Coastal Shandong Province: Review and Thinking |
JIAO Jinju1, ZHANG Yuqin2, ZHANG Jinhao3, LI Lingzhi4, QIU Shengyao5 |
1.Shandong Modern Fisheries Corporation, Ltd, Yantai 264670, China; 2.Yantai CIMC Blue Ocean Technology Company, Ltd, Yantai 264670, China; 3.Yantai Marine Economic Research Institute, Yantai 264003, China; 4.East China Sea Fisheries Research Institute, Chines Academy of Fishery Sciences, Shanghai 200090, China; 5.Ocean College, Yantai University, Yantai 264005, China |
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Received: 25 November 2019
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[1]王真良.黄海区水母类的生态研究[J].黄渤海海洋,1996,14(1):41-50. [2]农业部水产局,农业部黄海区渔业指挥部.黄、渤海区渔业资源调查与区划[M].北京:海洋出版社,1990. [3]洪惠馨,张士美.中国沿海的食用水母类[J].厦门水产学院学报,1982,1(1):12-17. [4]计光辅.海蜇的药用功效[J].家庭中医药,2007,14(7):68. [5]常颖,李先文.水母资源利用的研究进展[J].食品工业科技,2009,30(7):371-375. [6]Liu X G, Guo L, Yu H H, et al. Mineral composition of fresh and cured jellyfish[J]. Food Analytical Methods,2012,5(2):301-305. [7]Ding J F, Li Y Y, Xu J J, et al. Study on effect of jellyfish collagen hydrolysate on anti-fatigue and anti-oxidation[J]. Food Hydrocolloids,2011,25(5):1350-1353. [8]Yu H H, Li C P, Li R G, et al. Factors influencing hemolytic activity of venom from the jellyfish Rhopilema esculentum Kishinouye[J]. Food and Chemical Toxicology,2007,45(7):1173-1178. [9]金晓石,吴红棉,钟敏,等.海蜇糖胺聚糖提取、纯化及其降血脂作用研究[J].中国海洋药物,2007,26(4):41-44. [10]Dong Z J, Liu D Y, Keesing J K. Contrasting trends in populations of Rhopilema esculentum, and Aurelia aurita in Chinese waters[G]∥Pitt K A, Lucas C H. Jellyfish Blooms. Dordrecht:Springer Netherlands,2013:207-218. [11]Dong J, Jiang L X, Tan K F, et al. Stock enhancement of the edible jellyfish (Rhopilema esculentum Kishinouye) in Liaodong Bay, China:a review[J]. Hydrobiologia,2009,616:113-118. [12]赵国庆,邱盛尧,曲慧敏,等.山东近海海洋渔业资源结构现状浅析[J].烟台大学学报(自然科学与工程版),2018,31(3):239-247. [13]夏雨.海蜇的药用价值[J].中国水产,1983(12):25. [14]李建生,凌建忠,程家骅.中国海域两种大型食用水母利用状况分析及沙海蜇资源量评估[J].海洋渔业,2014,36(3):202-207. [15]张秋华,程家骅,徐汉祥,等. 东海区渔业资源及其可持续利用[M].上海:复旦大学出版社,2007:456-462. [16]信敬福.山东省海蜇资源增殖回顾及有关问题探讨[J].水产科技情报,2004,31(6):260-262. [17]张锡佳,吴兴伟,王茂剑,等.山东省海蜇资源增殖放流的优势及发展目标[J].齐鲁渔业,2005,22(7):45-46. [18]张秀梅,王熙杰,涂忠,等.山东省渔业资源增殖放流现状与展望[J].中国渔业经济,2009,27(2):51-58. [19]张金浩. 山东半岛南部海蜇增殖放流效果评价[D].烟台:烟台大学,2013. [20]程家骅,姜亚洲.海洋生物资源增殖放流回顾与展望[J].中国水产科学,2010,17(3):610-617. [21]李陆嫔,黄硕琳.我国渔业资源增殖放流管理的分析研究[J].上海海洋大学学报,2011,20(5):765-772. [22]Cooper J A G, Ramm A E L, Harrison T D. The estuarine health index:a new approach to scientific information transfer[J]. Ocean & Coast Management,1994,25(2):103-141. [23]Nielsen L A.Methods of marking fish and shellfish [M]. New York:America Fishery Society Specific Publication,1992:23. [24]Wilbur A E, Arnold W S, Bert T M. The genetic assessment of an “enhanced” bay scallop population:do hatchery scallops produce successful recruits[J].Journal of Shellfish Research,2000,19:667-668. [25]Castaüo-Sanchez C, Fuji K, Hayashida K, et al. A set of polymorphic trinucleotide and tetranucleotide microsatellite markers for the Japanese flounder (Paralichthys olivaceus)[J]. Anim Genet,2007,38(1):75-76. [26]Montgomery S S, Brett P A. Tagging eastern rock lob-sters Jasus verreauxi:effectiveness of several types of tag[J]. Fisheries Research,1996,27(4):141-152. [27]Volk E C, Hagen P. An overview of otolith thermal marking[R]. Seattle:North Pacific Anadromous Fish Commission Technical Report,2001:1-2. [28]Tautz D, Renz M. Simple sequences are ubiquitous repetitive components of eukaryotic genomes[J]. Nucleic Acids Research,1984,12(10):4127-4138. [29]周永东,王永顺,黄鸣夏.浙江近海海域海蜇的增殖放流[J].浙江海洋学院学报(自然科学版),2004,23(1):28-30,36. [30]刘春洋,毕远溥.一种验证海蜇增殖放流回捕率方法的探讨[J].水产科学,2006,25(3):150-151. [31]赵国庆,邱盛尧,张玉钦,等.山东半岛南部三疣梭子蟹增殖放流群体贡献率[J].水产科学,2018,37(5):591-598. [32]李国江,提建新,陈荣杰.提高海蜇增殖放流回捕率的措施探讨[J].齐鲁渔业,2008,25(12):51-52. [33]杨珍.渤海主要经济鱼类、梭子蟹、海蜇放流增殖研究取得重要成果[J].海洋信息,1996(6):22. [34]乔凤勤,邱盛尧,张金浩,等.山东半岛南部中国明对虾放流前后渔业资源群落结构[J].水产科学,2012,31(11):651-656. [35]李增,邱盛尧,张金浩,等.山东半岛南部三疣梭子蟹放流前后渔业生物群落结构初步分析[J].烟台大学学报(自然科学与工程版),2014,27(3):184-190. [36]张金浩,邱盛尧,乔凤勤,等.山东南部海蜇资源分布与浮游动物相关性分析[J].水产科学,2013,32(2):98-101. [37]Arai M N. Interactions of fish and pelagic coelenterates[J].Canadian Journal of Zoology,1988,66(9):1913-1927. [38]Marques R, Bouvier C, Darnaude A M, et al. Jellyfish as an alternative source of food for opportunistic fishes[J]. Journal of Experimental Marine Biology and Ecology,2016,485:1-7. [39]姜亚洲,林楠,杨林林,等.渔业资源增殖放流的生态风险及其防控措施[J].中国水产科学,2014,21(2):413-422. [40]程家骅,李圣法,丁峰元,等.东、黄海大型水母暴发现象及其可能成因浅析[J].现代渔业信息,2004,19(5):10-12. [41]孙松.对黄、东海水母暴发机理的新认知[J].海洋与湖沼,2012,43(3):406-410. [42]曲长凤,宋金明,李宁,等.海水中沙海蜇消亡对水体碳、氮、磷的释放与补充[J].应用生态学报,2016,27(1):299-306. [43]孙松,于志刚,李超伦,等.黄、东海水母暴发机理及其生态环境效应研究进展[J].海洋与湖沼,2012,43(3):401-405. [44]孙松.水母暴发研究所面临的挑战[J].地球科学进展,2012,27(3):257-261. [45]李建生,凌建忠,程家骅,等.2008年夏秋季东海区北部沙海蜇资源状况分析[J].海洋渔业,2009,31(4):444-449. [46]程家骅,丁峰元,李圣法,等.东海区大型水母数量分布特征及其与温盐度的关系[J].生态学报,2005,25(3):440-445,660. [47]丁峰元,程家骅.东海区沙海蜇的动态分布[J].中国水产科学,2007,14(1):83-89. [48]李惠玉,李建生,丁峰元,等.东海区沙海蜇和浮游动物的分布特征[J].生态学杂志,2007,26(12):1974-1980. [49]徐敬俊,覃恬恬,韩立民.海洋“碳汇渔业”研究述评[J].资源科学,2018,40(1):161-172. [50]Nellemann C, Corcoran E, Duarte C M, et al. Blue Carbon[R]. Nairobi:United Nations Environment Programme,2009. [51]佘远安,孙昭宁.渔业的碳汇功能及发展渔业碳汇路径初探[J].中国水产,2010(9):23-24. [52]唐启升.碳汇渔业与又好又快发展现代渔业[J].江西水产科技,2011(2):5-7. [53]刘春洋,王彬,李轶平,等.海蜇不同生长阶段的摄食方式和摄食习性[J].水产科学,2011,30(8):491-494. [54]Arai M N. Predation on pelagic coelenterates:a review[J]. Journal of the Marine Biological Association of the United Kingdom,2005,85(3):523-536. [55]Purcell J E. Jellyfish and ctenophore blooms coincide with human proliferations and environmental perturbations [J]. Annual Review of Marine Science,2012,4:209-235. [56]赵家兴,张晨捷,高权新,等.人工饲养条件下额外投喂海蜇对银鲳生长及代谢酶活性的影响[J].海洋渔业,2018,40(3):333-341. [57]Lorenzen K, Beveridge M C M, Mangel M. Cultured fish:integrative biology and management of domestication and interactions with wild fish[J]. Biological Reviews of the Cambridge Philosophical Society,2012,87(3):639\|660. [58]Van Poorten B T, Arlinghaus R, Daedlow K, et al. Social-ecological interactions, management panaceas, and the future of wild fish populations [J]. Proceedings of the National Academy of Sciences of the United States of America,2011,108(30):12554-12599. [59]Eby L A, Roach W J, Crowder L B, et al. Effects of stocking-up freshwater food webs [J]. Trends in Ecology & Evolution,2006,21(10):576-584. [60]Simon K S, Townsend C R. Impacts of freshwater invaders at different levels of ecological organisation, with emphasis on salmonids and ecosystem consequences [J]. Freshwater Biology,2003,48(6):982-994. [61]张思锋,刘晗梦.生态风险评价方法述评[J].生态学报,2010,30(10):2735-2744. [62]卢亚灵,许学工.生态风险与生态安全的评价方法及前景[J].安全与环境学报,2010,10(1):132-137. [63]Lorenzen K, Leber K M, Blankenship H L. Responsible approach to marine stock enhancement:an update [J]. Reviews in Fisheries Science,2010,18(2):189-210. [64]Cow X G. Stocking strategies[J]. Fisheries Management and Ecology,1994,1(1):15\|30. [65]李继龙,王国伟,杨文波,等.国外渔业资源增殖放流状况及其对我国的启示[J].中国渔业经济,2009,27(3):111\|123. [66]聂永康,陈丕茂,周艳波,等.水生生物增殖放流生态风险评价研究进展[J].生态科学,2017,36(4):236-243. [67]祁剑飞,曾志南,宁岳,等.底栖动物增殖放流生态风险评价[J].水产学报,2016,40(7):1099-1105. [68]邵帅. 渔业增殖放流风险评估框架体系的构建与应用[D].上海:上海海洋大学,2015. [69]吴婧慈,赵晟,朱爱意.基于层次分析法(AHP)的增殖放流风险评估框架构建探究[J].农村经济与科技,2017,28(22):236-238,227. [70]王九江. 大亚湾增殖放流生态与经济效果评价[D].舟山:浙江海洋大学,2019. [71]王绪峨,宋向军,张云尚,等.莱州湾海蜇放流增殖的回捕率和效益分析[J].现代渔业信息,1995,10(2):27-29. |
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