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光照强度对团头鲂幼鱼生长、免疫反应、抗氧化能力及抗病力的影响

Effects of light intensity on growth, immune responses, antioxidant capability and disease resistance of juvenile blunt snout bream Megalobrama amblycephala.

作者信息

Tian Hong-Yan, Zhang Ding-Dong, Xu Chao, Wang Fei, Liu Wen-Bin

机构信息

Key Laboratory of Aquatic Nutrition and Feed Science of Jiangsu Province, College of Animal Science and Technology, Nanjing Agricultural University, No.1 Weigang Road, Nanjing, Jiangsu Province 210095, PR China.

Key Laboratory of Aquatic Nutrition and Feed Science of Jiangsu Province, College of Animal Science and Technology, Nanjing Agricultural University, No.1 Weigang Road, Nanjing, Jiangsu Province 210095, PR China.

出版信息

Fish Shellfish Immunol. 2015 Dec;47(2):674-80. doi: 10.1016/j.fsi.2015.08.022. Epub 2015 Aug 22.

Abstract

Light is necessary for many fish species to develop and grow normally since most fishes are visual feeders. However, too intense light may be stressful or even lethal. Thus, this study was conducted to evaluate the effect of light intensity on growth, immune response, antioxidant capability and disease resistance of juvenile blunt snout bream Megalobrama amblycephala. Fish (18.04 ± 0.22 g) randomly divided into 5 groups were exposed to a range of light intensities (100, 200, 400, 800 and 1600 lx) in cultures for 8 weeks. After the feeding trial, fish were challenged by Aeromonas hydrophila and cumulative mortality was recorded for the next 96 h. The results demonstrated that fish subjected to 400 lx showed the greatest weight gain (125.70 ± 5.29%). Plasma levels of glucose and lactate increased with light intensity rising from 100 lx to 1600 lx while the lowest plasma levels of cortisol was observed at 400 lx group. Post-challenged haemato-immunological parameters (including plasma lysozyme and alternative complement activities, as well as plasma nitric oxide level and globulin contents) improved with light intensity increasing from 100 lx to 400 lx, and then decreased with further increasing light intensity. However, antioxidant biomarkers such as liver catalase and malondialdehyde showed an opposite trend with immune response with the lowest values observed at 400 lx groups. The application of light intensity at 1600 lx significantly lowered liver glutathione activity to 76.78 ± 6.91 μmol g(-1). Within a range of light intensity from 100 to 400 lx, no differences were observed in liver total superoxide dismutase and glutathione peroxidase activities while they were significantly higher at 800 and 1600 lx. After challenge, the lowest mortality was observed in fish exposed to 400 lx. It was significantly lower than that of fish exposed to 100 and 1600 lx. The results of the present study indicated that high light intensities (more than 800 lx) not only produced poor growth, but also led to stress response, as might consequently result in the elevated liver oxidation rates and depress immunity of this species. Although no stress response was observed, fish subjected to low light intensities (lower than 400 lx) also showed oxidative stress, immunosuppression and reduced disease resistance. Taken together, the optimal light intensity to enhance growth and boost immunity of this species at juvenile stage is 400 lx.

摘要

由于大多数鱼类是视觉捕食者,光照对于许多鱼类的正常发育和生长是必需的。然而,过强的光照可能会造成压力甚至致命。因此,本研究旨在评估光照强度对团头鲂幼鱼生长、免疫反应、抗氧化能力和抗病性的影响。将随机分为5组的鱼(体重18.04±0.22克)置于不同光照强度(100、200、400、800和1600勒克斯)的养殖环境中8周。投喂试验结束后,用嗜水气单胞菌对鱼进行攻毒,并记录接下来96小时的累计死亡率。结果表明,处于400勒克斯光照强度下的鱼体重增加最多(125.70±5.29%)。随着光照强度从100勒克斯升至1600勒克斯,血浆葡萄糖和乳酸水平升高,而400勒克斯组的血浆皮质醇水平最低。攻毒后的血液免疫参数(包括血浆溶菌酶和替代补体活性,以及血浆一氧化氮水平和球蛋白含量)随着光照强度从100勒克斯增加到400勒克斯而改善,然后随着光照强度进一步增加而下降。然而,肝脏过氧化氢酶和丙二醛等抗氧化生物标志物与免疫反应呈现相反趋势,在400勒克斯组中观察到最低值。1600勒克斯的光照强度显著降低了肝脏谷胱甘肽活性至76.78±6.91微摩尔/克(-1)。在100至400勒克斯的光照强度范围内,肝脏总超氧化物歧化酶和谷胱甘肽过氧化物酶活性未观察到差异,而在800和1600勒克斯时显著更高。攻毒后,400勒克斯光照下的鱼死亡率最低。它显著低于100勒克斯和1600勒克斯光照下的鱼。本研究结果表明,高光强(超过800勒克斯)不仅会导致生长不佳,还会引发应激反应,进而可能导致该物种肝脏氧化率升高和免疫力下降。虽然未观察到应激反应,但处于低光强(低于400勒克斯)下的鱼也表现出氧化应激、免疫抑制和抗病性降低。综上所述,在幼鱼阶段提高该物种生长和免疫力的最佳光照强度为400勒克斯。

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