Changes in Metabolic Rate, Excretion, Energy Reserves, and Starvation Response of Diploid and Triploid Salvelinus Fontinalis and Diploid O. Mykiss after LongTerm Exposure to Elevated Temperature

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Abstract

Background: In fish culture metabolic rate (oxygen consumption), and excretion of particular and dissolved waste products are important parameters limiting the production capacity and influencing the environment. Data on their changes in response to elevated temperature are important for future management of fish farms. Therefore, these parameters were investigated in diploid (2n) and triploid (3n) Salvelinus fontinalis and 2n Oncorhynchus mykiss exposed to 20°C for 32 d in comparison to fish acclimated to 9 °C. Additionally energy reserves were investigated as important indicators for fish performance. Results: At 20°C routine metabolic rate (RMR) of 2n S. fontinalis decreased with increasing exposure time and after 32 d it did not differ from 9 °C. Also, in O. mykiss RMR decreased with exposure time but remained 60 % higher than at 9°C. In 3n S. fontinalis exposed to 20°C RMR was constantly increased for 120%. For all species/ploidy levels faeces dry weight and phosphorus concentration and quantities of excreted dissolved nitrogen and phosphate did not differ between 9°C and 20°C. Lipid concentration of faeces was decreased at 20°C. With exception of O. mykiss also faeces protein was decreased at 20°C. In all species/ploidy levels liver glycogen and visceral fat was decreased at 20°C, while liver triglycerides and adenylate energy charge were not affected. In 2n and 3n S. Salvelinus temperature related responses to 5-d starvation were investigated. In 2n S. fontinalis RMR decreased in starving fish in comparison to fed ones at 9°C and increased at 20°C. RMR of 3n S. fontinalis did not change. For both ploidy levels, dissolved excretion was decreased due to starvation at 9°C and 20°C. Visceral fat decreased due to starving at 9°C, liver glycogen and triglycerides at 20°C. Conclusion: In Salmonidae species and ploidy dependent types of metabolic thermal compensation occurred after exposure to 20°C. Effects on waste products were minor for all investigated species and ploidy levels. Exposure to 20°C represented an energetic stress situation as the visceral fat and liver glycogen depots were depleted. Consequently, at elevated temperature starving can result in a critical energetic stress situation which might lead to complete exhaustion of energy resources.
二倍体、三倍体扁豆和二倍体扁豆长期高温暴露后代谢率、排泄、能量储备和饥饿反应的变化
背景:在鱼类养殖中,代谢率(耗氧量)和特定废物和溶解废物的排泄是限制生产能力和影响环境的重要参数。关于它们随温度升高而变化的数据对未来养鱼场的管理很重要。因此,将二倍体(2n)和三倍体(3n) Salvelinus fontinalis和2n Oncorhynchus mykiss暴露于20°C下32 d,并与驯化于9°C下的鱼进行比较,研究了这些参数。此外,能量储备作为鱼类生产性能的重要指标进行了研究。结果:在20℃时,常规代谢率(RMR)随暴露时间的增加而降低,32 d后与9℃时无显著差异。此外,在O. mykiss中,RMR随暴露时间的增加而降低,但仍比9°C时高60%。在暴露于20°C的3n fontinalis中,RMR不断增加120%。在9°C和20°C之间,所有物种/倍性水平的粪便干重和磷浓度以及排泄的溶解氮和磷酸盐的数量没有差异。粪便脂质浓度在20°C时降低。除O. mykiss外,粪便蛋白在20°C时也有所下降。在所有物种/倍体水平中,在20°C时肝糖原和内脏脂肪减少,而肝脏甘油三酯和腺苷酸能量电荷不受影响。在2n和3n s下,研究了Salvelinus对5 d饥饿的温度相关反应。在2n . S. fontinalis中,与喂食鱼相比,饥饿鱼的RMR在9°C时下降,在20°C时增加。3n的RMR没有变化。在9°C和20°C的饥饿条件下,两种倍性水平的溶解排泄物均减少。内脏脂肪在9°C时因饥饿而减少,肝糖原和甘油三酯在20°C时因饥饿而减少。结论:在暴露于20°C后,沙门氏菌种类和倍体依赖类型发生代谢性热补偿。对所有被调查物种和倍性水平的废物的影响都很小。暴露于20°C时,内脏脂肪和肝糖原储备被耗尽,这是一种能量应激情况。因此,在高温下,饥饿会导致严重的能量应激状态,可能导致能量资源的完全耗尽。
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