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首页> 外文期刊>Fisheries Research >Relationships between environmental features, distribution and abundance of the Argentine anchovy, Engraulis anchoita, on the South West Atlantic Continental Shelf
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Relationships between environmental features, distribution and abundance of the Argentine anchovy, Engraulis anchoita, on the South West Atlantic Continental Shelf

机译:西南大西洋大陆架上阿根廷an鱼Engraulis anchoita的环境特征,分布和丰度之间的关系

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Marine fisheries in Brazil follow a similar trend as the rest of the world, with reduced catches of most stocks. Although extensive, the Brazilian coast is poorly assessed, and marine fishery resources are not properly managed. Small pelagic fishes are secondary consumers, which feed on zooplankton and serve as foraging species for large, carnivorous fishes. The anchovy (Engraulis anchoita) is an abundant, small pelagic fish found in abundance in Brazilian waters as it migrates along the Brazilian, Uruguayan and Argentine shelves. In 2010, five acoustic assessment cruises were conducted to estimate anchovy biomass in the southernmost part of the Brazilian coast. Hydroacoustic data were obtained using a SIMRAD EK 500 echo sounder along parallel transects. CD (conductivity temperature depth) casts and mid-water trawl hauls were used to collect environmental and biological data. Anchovy biomass was estimated using NASC values, the fish target strength by size and the dimension of the surveyed area. For each survey, a GLM binomial was fitted to anchovy presence and the following explanatory variables: surface salinity and temperature, bottom salinity and temperature, and depth. Anchovy biomass ranged between 73,000 (June) and 814,000 (August) tons. We observed a mean temperature decrease of similar to 3 degrees C during the June and August surveys. This sharp environmental change was followed by a distinct increase in adult anchovy biomass from the first to the second survey. Fitted GLM models indicated that the bottom layers of cold, saline water had a positive effect on anchovy presence in August but not in June. Furthermore, during the August survey, a sharp change in the surface layer waters was observed on the Southern Brazilian Shelf, as the result of a low-salinity water inflow to this area. This phenomena was due to the Patos Lagoon runoff and also to the coastal winds over the Argentine Shelf, which forces the northward spreading of the Plate River plume to lower latitudes. This inflow increases primary productivity and, subsequently, the occurrence of fishes within the area. (C) 2015 Elsevier B.V. All rights reserved.
机译:巴西的海洋渔业发展趋势与世界其他地区相似,大多数鱼类的捕捞量减少。巴西海岸虽然面积很大,但评估却很差,海洋渔业资源也得不到适当的管理。小型中上层鱼类是次要消费者,它们以浮游动物为食,并作为大型肉食性鱼类的觅食物种。 cho鱼(Engraulis anchoita)是一种丰富的小型远洋鱼类,在巴西水域中大量繁殖,它们沿巴西,乌拉圭和阿根廷的大陆架迁移。 2010年,进行了五次声学评估巡游,以估计巴西海岸最南端的an鱼生物量。使用SIMRAD EK 500回声测深仪沿平行样条线获得水声数据。 CD(电导率温度深度)模型和中层拖网拖缆用于收集环境和生物学数据。使用NASC值,按尺寸和被调查区域的尺寸确定鱼的目标强度来估计鱼的生物量。对于每个调查,将GLM二项式拟合到an鱼的存在和以下解释变量:表面盐度和温度,底部盐度和温度以及深度。 cho鱼生物量介于73,000吨(6月)和814,000吨(8月)之间。在六月和八月的调查中,我们观察到平均温度下降了约3摄氏度。在这种急剧的环境变化之后,从第一次到第二次调查,成年an鱼的生物量明显增加。拟合的GLM模型表明,在8月而不是6月,底层冷盐水对on鱼的存在有积极影响。此外,在八月份的调查中,由于盐度低的盐分流入该地区,巴西南部陆架的表层水也发生了急剧变化。造成这种现象的原因是Patos泻湖径流以及阿根廷大陆架上的沿海风,这迫使Plate River烟羽向北扩展到低纬度地区。这种流入增加了初级生产力,进而提高了该区域内鱼类的数量。 (C)2015 Elsevier B.V.保留所有权利。

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