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智利无须魨幼鱼对热应激的生理和分子响应导致骨骼肌萎缩和氧化损伤。

Physiological and molecular responses to thermal stress in red cusk-eel (Genypterus chilensis) juveniles reveals atrophy and oxidative damage in skeletal muscle.

机构信息

Facultad de Ciencias de la Vida, Universidad Andrés Bello, Santiago, Chile; Interdisciplinary Center for Aquaculture Research (INCAR), Víctor Lamas 1290, PO Box 160-C, Concepción, Chile.

Centro de Investigación Marina Quintay (CIMARQ), Universidad Andrés Bello, Quintay, Chile.

出版信息

J Therm Biol. 2020 Dec;94:102750. doi: 10.1016/j.jtherbio.2020.102750. Epub 2020 Oct 7.

DOI:10.1016/j.jtherbio.2020.102750
PMID:33292991
Abstract

The red cusk-eel (Genypterus chilensis) is a native species with strong potential to support Chilean aquaculture diversification. Environmental stressors, such as temperature, may generate important effects in fish physiology with negative impact. However, no information exists on the effects of thermal stress in Genypterus species or how this stressor affects the skeletal muscle. The present study evaluated for the first time the effect of high temperature stress in red cusk-eel juveniles to determine changes in plasmatic markers of stress (cortisol, glucose and lactate dehydrogenase (LDH)), the transcriptional effect in skeletal muscle genes related to (i) heat shock protein response (hsp60 and hsp70), (ii) muscle atrophy and growth (foxo1, foxo3, fbxo32, murf-1, myod1 and ddit4), and (iii) oxidative stress (cat, sod1 and gpx1), and evaluate the DNA damage (AP sites) and peroxidative damage (lipid peroxidation (HNE proteins)) in this tissue. Thermal stress generates a significant increase in plasmatic levels of cortisol, glucose and LDH activity and induced heat shock protein transcripts in muscle. We also observed an upregulation of atrophy-related genes (foxo1, foxo3 and fbxo32) and a significant modulation of growth-related genes (myod1 and ddit4). Thermal stress induced oxidative stress in skeletal muscle, as represented by the upregulation of antioxidant genes (cat and sod1) and a significant increase in DNA damage and lipid peroxidation. The present study provides the first physiological and molecular information of the effects of thermal stress on skeletal muscle in a Genypterus species, which should be considered in a climate change scenario.

摘要

智利拟金眼鲷(Genypterus chilensis)是一种具有很强潜力支持智利水产养殖多样化的本土物种。环境胁迫因素,如温度,可能会对鱼类生理产生重要影响,带来负面影响。然而,目前还没有关于 Genypterus 物种在热应激下的影响的信息,也不知道这种胁迫因素如何影响骨骼肌。本研究首次评估了高温应激对智利拟金眼鲷幼鱼的影响,以确定应激相关的血浆标志物(皮质醇、葡萄糖和乳酸脱氢酶(LDH))的变化,以及与(i)热休克蛋白反应(hsp60 和 hsp70)、(ii)肌肉萎缩和生长(foxo1、foxo3、fbxo32、murf-1、myod1 和 ddit4)和(iii)氧化应激(cat、sod1 和 gpx1)相关的骨骼肌基因的转录效应,并评估该组织中的 DNA 损伤(AP 位点)和过氧化损伤(脂质过氧化(HNE 蛋白))。热应激会导致皮质醇、葡萄糖和 LDH 活性的血浆水平显著升高,并诱导肌肉中的热休克蛋白转录。我们还观察到萎缩相关基因(foxo1、foxo3 和 fbxo32)的上调和生长相关基因(myod1 和 ddit4)的显著调节。热应激诱导骨骼肌发生氧化应激,表现为抗氧化基因(cat 和 sod1)的上调和 DNA 损伤和脂质过氧化的显著增加。本研究首次提供了 Genypterus 物种骨骼肌热应激影响的生理和分子信息,在气候变化情景下应该考虑这一信息。

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