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Benthic input rates predict seagrass (Posidonia oceanica) fish farm-induced decline

机译:底栖生物输入速率预测海草(Posidonia oceanica)养鱼场导致的下降

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Fish farms represent a growing source of anthropogenic disturbance to benthic communities, and efficient predictors of such impacts are urgently needed. We explored the effects of fish farm benthic organic and nutrient inputs on the population dynamics of a key seagrass species (Posidonia oceanica) in four Mediterranean deep meadows adjacent to sea bream and sea bass farms. We performed two annual plant censuses on permanent plots at increasing distance from farms and measured benthic sedimentation rates around plots. High shoot mortality rates were recorded near the cages, up to 20 times greater than at control sites. Recruitment rates increased in variability but could not compensate mortality, leading to rapid seagrass decline within the first 100 m from cages. Seagrass mortality increased with total sedimentation rates (K=0.55, p< 0.0002), and with organic matter (K = 0.50, p = 0.001), total nitrogen (K=0.46, p = 0.002) and total phosphorus (K=0.56, p<3 ·10~(-5)) inputs. P. oceanica decline accelerated above a phosphorus loading threshold of 50 mg m~(-2)day~(-1). Phosphorus benthic sedimentation rate seems a powerful predictor of seagrass mortality from fish farming. Coupling direct measurements of benthic sedimentation rates with dynamics of key benthic species is proposed as an efficient strategy to predict fish farm impacts to benthic communities.
机译:养鱼场对底栖生物群落构成了越来越多的人为干扰,迫切需要这种影响的有效预测因子。我们探讨了养鱼场底栖有机物和养分输入对与海鲷和鲈鱼养殖场相邻的四个地中海深草甸中主要海草物种(波西尼亚大洋洲)的种群动态的影响。我们在距农场越来越远的永久性地块上进行了两次年度植物普查,并测量了地块周围的底栖沉积率。在网箱附近记录到高的芽死亡率,比对照地点高出20倍。招聘率的可变性增加,但无法弥补死亡率,导致海草从网箱起头100 m内迅速下降。海草死亡率随着总沉降率(K = 0.55,p <0.0002),有机物(K = 0.50,p = 0.001),总氮(K = 0.46,p = 0.002)和总磷(K = 0.56)而增加。 p <3·10〜(-5))输入。海洋磷的下降加速到磷载量阈值为50 mg m〜(-2)天〜(-1)以上。磷底栖沉积率似乎是鱼类养殖海草死亡率的有力预测指标。建议将底栖沉积速率的直接测量值与关键底栖物种的动态联系起来,作为预测养鱼场对底栖生物影响的有效策略。

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