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Nutrient enrichment and fisheries exploitation: interactive effects on estuarine living resources and their management

机译:营养丰富和渔业开发:对河口生物资源及其管理的互动影响

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Both fisheries exploitation and increased nutrient loadings strongly affect fish and shellfish abundance and production in estuaries. These stressors do not act independently; instead, they jointly influence food webs, and each affects the sensitivity of species and ecosystems to the other. Nutrient enrichment and the habitat degradation it sometimes causes can affect sustainable yields of fisheries, and fisheries exploitation can affect the ability of estuarine systems to process nutrients. The total biomass of fisheries landings in estuaries and semi-enclosed seas tends to increase with nitrogen loadings in spite of hypoxia, but hypoxia and other negative effects of nutrient over-enrichment cause declines in individual species and in parts of systems most severely affected. More thoroughly integrated management of nutrients and fisheries will permit more effective management responses to systems affected by both stressors, including the application of fisheries regulations to rebuild stocks negatively affected by eutrophication. Reducing fishing mortality may lead to the recovery of depressed populations even when eutrophication contributes to population declines if actions are taken while the population retains sufficient reproductive potential. New advances in modeling, statistics, and technology promise to provide the information needed to improve the understanding and management of systems subject to both nutrient enrichment and fisheries exploitation. Keywords Eutrophication - Hypoxia - Fisheries - Estuary - Management Guest editors: J. H. Andersen & D. J. Conley Eutrophication in Coastal Ecosystems: Selected papers from the Second International Symposium on Research and Management of Eutrophication in Coastal Ecosystems, 20–23 June 2006, Nyborg, Denmark
机译:渔业开发和养分含量的增加都强烈影响河口鱼类和贝类的丰度和产量。这些压力源不是独立行动的。相反,它们共同影响食物网,并且每个都影响物种和生态系统对彼此的敏感性。养分富集及其有时引起的栖息地退化会影响渔业的可持续产量,而渔业开发会影响河口系统处理养分的能力。尽管缺氧,但河口和半封闭海域的渔业上岸总生物量往往会随着氮负荷的增加而增加,但是低氧和养分过度富集的其他负面影响会导致单个物种和受影响最严重的部分系统下降。对养分和渔业进行更彻底的综合管理,将使管理者对受两个压力因素影响的系统做出更有效的管理反应,包括应用渔业法规重建受富营养化不利影响的种群。如果在保持足够的繁殖潜力的情况下采取行动,则即使富营养化导致人口减少,降低捕鱼死亡率也可能导致贫困人口的恢复。建模,统计和技术方面的新进展有望提供所需的信息,以增进对受养分丰富和渔业开发的系统的了解和管理。富营养化-低氧-渔业-河口-管理客座编辑:J. H. Andersen&D. J. Conley沿海生态系统富营养化:选自第二届国际沿海生态系统富营养化研究与管理研讨会,2006年6月20-23日,丹麦尼堡

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