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首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Reconstructing ecosystem dynamics in the central Pacific Ocean, 1952-1998. II. A preliminary assessment of the trophic impacts of fishing and effects on tuna dynamics
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Reconstructing ecosystem dynamics in the central Pacific Ocean, 1952-1998. II. A preliminary assessment of the trophic impacts of fishing and effects on tuna dynamics

机译:1952-1998年,在太平洋中部重建生态系统动态。二。初步评估捕鱼的营养影响及其对金枪鱼动力的影响

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Pelagic fisheries in the Pacific Ocean target both large (Thunnus spp.) and small tunas (juveniles of Thunnus spp; Katsuwonus pelamis) but also take billfishes (Xiphias gladius, Makaira spp., Tetrapturus spp., Istiophorus platypterus) and sharks (Prionace glauca, Alopias superciliosus, Isurus oxyrinchus, Carcharhinus longimanus, Galeocerdo cuvieri) as bycatch. We developed a multispecies model using the Ecopath with Ecosim software that incorporated time-series estimates of biomass, fishing mortality, and bycatch rates (1952-1998) to evaluate the relative contributions of fishing and trophic impacts on tuna dynamics in the central Pacific (0degreesN to 40degreesN and 130degreesE to 150degreesW). The Ecosim model reproduced the observed trends in abundance indices and biomass estimates for most large tunas and billfishes. A decline in predation mortality owing to depletion of large predators was greatest for small yellowfin tuna and could possibly account for apparent increases in biomass. For other tunas, however, predicted changes in predation mortality rates were small (small bigeye) or were overwhelmed by much larger increases in fishing mortality (skipjack and small albacore). Limited evidence of trophic impacts associated with declining apex predator abundance likely results from the difficulties of applying detailed trophic models to open ocean systems in which ecological and fishery data uncertainties are large.
机译:太平洋中的远洋渔业既针对大型金枪鱼(Thunnus spp。),也针对小型金枪鱼(Thunnus spp; Katsuwonus pelamis),但也捕捞比目鱼(Xiphias gladius,Makaira spp。,Tetrapturus spp。,Istiophorus platypterus)和鲨鱼。 ,兼收并归的动物有:Alopias superciliosus,Isurus oxyrinchus,Carcharhinus longimanus,Galeocerdo cuvieri。我们使用Ecopath软件和Ecosim软件开发了一个多物种模型,该模型结合了生物量,捕捞死亡率和兼捕率的时间序列估计值(1952-1998年),以评估捕捞和营养影响对太平洋中部金枪鱼动力学的相对贡献(0°N到40度N和130度E至150度W)。 Ecosim模型再现了大多数大型金枪鱼和比目鱼丰度指数和生物量估计值的观测趋势。对于大型黄鳍金枪鱼,由于大型天敌的消耗而导致的捕食死亡率的下降最大,这可能解释了生物量的明显增加。然而,对于其他金枪鱼,捕食死亡率的预测变化很小(小大眼),或者捕捞死亡率的大得多的增长(ski鱼和小长鳍金枪鱼)不堪重负。与顶点捕食者数量下降相关的营养影响的有限证据可能是由于难以将详细的营养模型应用于生态和渔业数据不确定性较大的开放海洋系统所致。

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