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首页> 外文期刊>Journal of Thermal Biology >Effects of an unprecedented summer heatwave on the growth performance, flesh colour and plasma biochemistry of marine cage-farmed Atlantic salmon (Salmo salar)
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Effects of an unprecedented summer heatwave on the growth performance, flesh colour and plasma biochemistry of marine cage-farmed Atlantic salmon (Salmo salar)

机译:前所未有的夏季热风对海洋笼养大西洋三文鱼(Salmo Salar)生长性能,肉体颜色和等离子体生物化学的影响

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Global seawater temperatures are increasing and becoming more variable, with consequences for all marine animals including those in food production systems. In several countries around the world,arming of Atlantic salmon (Salmo solar) occurs towards the upper end of the thermal tolerance window for this species, and marked effects on salmon production during summers have been experienced but never empirically investigated. This project tracked the effects of an extreme summer heatwave on two different cohorts of fish stocked into farm cages either during early winter (EW) or late winter (LW). The farm site experienced an unprecedented high water temperature event, with a peak water temperature of 22.9 degrees C and 117 days above 18 degrees C. Fish in both EW and LW cohorts experienced a temperature-induced cessation of voluntary feed intake as well as inefficient osmoregulatory, liver and renal function during high temperature periods. Flesh colour declined primarily in the dorsal and ventral regions of the fillet and secondarily along the midline, with over 20% of fish demonstrated a complete loss of flesh colour during the months of March and April. A return to feeding in autumn occurred faster in some fish and caused a marked bimodal size distribution to appear within both the EW and LW cohorts as autumn progressed. However, the LW cohort returned to feeding at seawater temperatures of 20.2 degrees C, compared with 18.6 degrees C for the EW cohort. There was a strong positive relationship between fillet colour recovery and residual condition index (RCI). These findings identified alkaline phosphatase as a potential marker to non-destructively track individual fish for signs of recovery after a thermal stress event, and shed light on the physiological consequences of marine heatwaves on fishes. This study also identified that supporting feed intake or promoting a return to feeding may help mitigate the negative impacts of climate warming on cultured Atlantic salmon.
机译:全球海水温度正在增加,变得更加变化,对所有海洋动物的后果包括食品生产系统。在世界各地的几个国家,大西洋鲑鱼(Salmo太阳能)的武装朝着这种物种的热耐受窗口的上端发生,并且对夏季的鲑鱼产生的显着影响已经经历过,但从未经验过验证。该项目在初冬(EW)或深夜(LW)中,追踪了极端夏季热浪在农场笼中的两种不同鱼类的效果。农场网站经历了前所未有的高水温事件,峰值水温为22.9摄氏度,117天高于18摄氏度,ew和LW群组中的鱼类经历了温度诱导的自愿饲料摄入和效率低下的渗透性,肝脏和肾功能在高温期间。肉颜色主要在圆角的背部和腹侧区域和沿中线的二次下降,超过20%的鱼类在3月和4月期间的肉体颜色的完全丧失。在秋天的鱼类中恢复秋天的喂养速度较快,随着秋季的进展,在EW和LW队列中出现明显的双峰大小分布。然而,LW队列返回到20.2摄氏度的海水温度,而EW队列的18.6摄氏度相比。圆角颜色恢复和残余条件指数(RCI)之间存在强烈的正相关关系。这些发现将碱性磷酸酶鉴定为潜在的标记,以在热应力事件发生热应力事件后的恢复迹象,并阐明鱼类对鱼类的生理结果。本研究还确定支持进料摄入或促进饲料返回的饲料可能有助于减轻气候变暖对培养的大西洋鲑鱼的负面影响。

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