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Acute Exposure to Key Aquaculture Environmental Stressors Impaired the Aerobic Metabolism of Carassius auratus gibelio

机译:急性暴露于关键的水产养殖环境胁迫因素会破坏of鱼的有氧代谢

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摘要

is an omnivore favored for its flavor and is commonly used as a benthic species in traditional pond polyculture. This study investigated the effects of common aquaculture stressors, such as high ammonia, high nitrite, high pH, and hypoxia on the aerobic metabolism of . The results showed that the standard metabolic rate (SMR) was positively correlated with ammonia, nitrite, and pH, while the maximum metabolic rate (MMR) was negatively correlated with all four stressors. Thus, aerobic scope (AS) was reduced when was exposed to high ammonia, high nitrite, high pH, and hypoxia. The peak of post-prandial O consumption was positively correlated with nitrite, pH, and the occurrence of the peak metabolic rate post-prandial was delayed in high ammonia, high nitrite, hypoxia, and high pH conditions. These findings indicated that, in experimental conditions, exposure to these environmental stressors can influence aerobic metabolism in . With more energy required to maintain standard metabolic rates, less will be available for growth. While the is one of the most hypoxia tolerance species, the reduction we observed in AS caused by stressors that commonly occur in ponds and in nature will likely affect growth in ponds and fitness in nature. These data have provided insight into the optimal, fitness-maximizing thresholds for these common stressors in this species of interest.
机译:是一种杂食动物,因其风味而受青睐,通常在传统的池塘混养中用作底栖物种。这项研究调查了常见的水产养殖应激源,如高氨,高亚硝酸盐,高pH和低氧对有氧代谢的影响。结果表明,标准代谢率(SMR)与氨,亚硝酸盐和pH呈正相关,而最大代谢率(MMR)与所有四个应激源均呈负相关。因此,当暴露于高氨,高亚硝酸盐,高pH和缺氧条件下,需氧范围(AS)降低。餐后O消耗的峰值与亚硝酸盐,pH呈正相关,并且在高氨,高亚硝酸盐,低氧和高pH条件下,餐后峰值代谢率的出现被延迟。这些发现表明,在实验条件下,暴露于这些环境应激因素可影响体内有氧代谢。维持标准代谢率所需的能量更多,因此可用于生长的能量更少。尽管它是最耐缺氧的物种之一,但我们观察到的AS降低是由于通常在池塘和自然环境中出现的应激源引起的,可能会影响池塘的生长和自然适应性。这些数据提供了对这些关注物种中这些常见应激源的最佳适应性最大化阈值的洞察力。

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