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天鹅洲通江型长江故道“四大家鱼”种群遗传结构研究 被引量:14
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作者 夏德全 杨弘 +4 位作者 吴婷婷 董在杰 简纪常 曹萤 张燕生 《中国水产科学》 CAS CSCD 1996年第4期11-18,共8页
利用淀粉胶电泳技术,对天鹅洲通江型故道青鱼(Mylopharyngodonpiceus)(60尾),草鱼(Ctenopharyngodonidelus)(40尾),鲢(Hypothalmichthysmolitrei... 利用淀粉胶电泳技术,对天鹅洲通江型故道青鱼(Mylopharyngodonpiceus)(60尾),草鱼(Ctenopharyngodonidelus)(40尾),鲢(Hypothalmichthysmolitreix)(40尾),鳙(Aristichthysnobilis)(40尾)的心、眼、脑、白肌、肝五种组织中LDH、MDH、G6PDH及EST四种同工酶进行分析,并对这几种酶的一系列基因座位作了比较和定位,以此分别计算青、草、鲢、鳙的种群遗传变异率,为构建通江型长江故道“四大家鱼”种质资源生态库提供重要依据。 展开更多
关键词 天鹅洲 通江型 长江故道 种群遗传 青鱼 草鱼
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Analysis on Tremella Industrial Development in Tongjiang Based on SWOT Model
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作者 Xlaowei JING Shuhai ZHAO Xiao LI 《Agricultural Science & Technology》 CAS 2017年第1期189-192,共4页
Through field investigation and relevant literature materials, the status and problems of Tremella industrial development in Tongjiang were analyzed by SWOT model. The countermeasures such as strengthening scientific ... Through field investigation and relevant literature materials, the status and problems of Tremella industrial development in Tongjiang were analyzed by SWOT model. The countermeasures such as strengthening scientific and technological innovation, expanding money input, strengthening the brand construction, focusing on the introduction and cultivation of leading enterpdses were put forward, in order to provide theoretical basis and intellectual support for the industrial policy-making of government, and provide references for the sustainable development of tremella industry in Tongjiang. 展开更多
关键词 Tremella in Tongjiang INDUSTRY DEVELOPMENT SWOT model
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Nutrient fluxes in the Changjiang River estuary and adjacent waters——a modified box model approach 被引量:1
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作者 王晓红 俞志明 +3 位作者 樊伟 宋秀贤 曹西华 袁涌铨 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2015年第1期176-193,共18页
To solve nutrient flux and budget among waters with distinct salinity difference for water-salt- nutrient budget, a traditional method is to build a stoichiometrically linked steady state model. However, the tradition... To solve nutrient flux and budget among waters with distinct salinity difference for water-salt- nutrient budget, a traditional method is to build a stoichiometrically linked steady state model. However, the traditional way cannot cope appropriately with those without distinct salinity difference that parallel to coastline or in a complex current system, as the results would be highly affected by box division in time and space, such as the Changjiang (Yangtze) River estuary (CRE) and adjacent waters (30.75°-31.75°N, 122°10′-123°20′E). Therefore, we developed a hydrodynamic box model based on the traditional way and the regional oceanic modeling system model (ROMS). Using data from four cruises in 2005, horizontal, vertical and boundary nutrient fluxes were calculated in the hydrodynamic box model, in which flux fields and the major controlling factors were studied. Results show that the nutrient flux varied greatly in season and space. Water flux outweighs the nutrient concentration in horizontal flux, and upwelling flux outweighs upward diffusion flux in vertical direction (upwelling flux and upward diffusion flux regions overlap largely all the year). Vertical flux in spring and summer are much greater than that in autumn and winter. The maximum vertical flux for DIP (dissolved inorganic phosphate) occurs in summer. Additional to the fluxes of the ChanNiang River discharge, coastal currents, the Taiwan Warm Current, and the upwelling, nutrient flux inflow from the southern Yellow Sea and outflow southward are found crucial to nutrient budgets of the study area. Horizontal nutrient flux is controlled by physical dilution and confined to coastal waters with a little into the open seas. The study area acts as a conveyer transferring nutrients from the Yellow Sea to the East China Sea in the whole year. In addition, vertical nutrient flux in spring and summer is a main source of DIP. Therefore, the hydrodynamic ROMS-based box model is superior to the traditional one in estimating nutrient fluxes in a complicated hydrodynamic current system and provides a modified box model approach to material flux research. 展开更多
关键词 NUTRIENT box model HYDRODYNAMIC Changjiang (Yangtze) River estuary
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