Adaptation strategies of juvenile grass carp (Ctenopharyngodon idella) facing different dissolved oxygen concentrations in a recirculating aquaculture system

IF 5.1 Q1 ENVIRONMENTAL SCIENCES
Xinglei Wu , Dapeng Li , Jiamin Lu , Lu Liu , Qiushi Yang , Rong Tang , Xi Zhang , Li Li
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引用次数: 1

Abstract

Fishes exposed to different dissolved oxygen concentrations over prolonged time periods have different susceptibility and adaptation mechanisms. In this study, healthy grass carp with an average weight of 214.6 ​± ​18.7 ​g were selected for long-term culture in recirculating aquaculture systems at three different dissolved oxygen concentrations, i.e., 3.00 ​mg/L [(2.57 ​± ​0.33) mg/L, DO2.57), 5.00 ​mg/L [(4.61 ​± ​0.11) mg/L, DO4.61], which was the control group, and 7.00 ​mg/L [(6.50 ​± ​0.48) mg/L, DO6.50]. Blood, gill, muscle, and liver samples were collected after 60 ​days. Using hematoxylin-eosin (HE), alcian blue periodic acid Schiff (AB-PAS) staining, determination of respiratory metabolism enzyme activity, and fluorescent quantitative PCR, the adaptability of juvenile grass carp facing different dissolved oxygen levels were explored. The results showed that the respiration rate increased, and hemoconcentration and hemoglobin (Hb), electrolyte and pH changed at DO2.57. Furthermore, gill lamellae became thinner and longer, the distance between them increased, the mucus on them decreased and the interstitial cell mass decreased. In addition, the relative expression of apoptosis-related genes bcl-2 and bcl-xl in gill tissue decreased, while caspase-3 and bax increased. In muscles and liver tissues, lactate dehydrogenase (LDH) activity and lactic acid content (LA) increased, pyruvate dehydrogenase (PDH) activity decreased, and genes related to the respiratory metabolic enzymes PDH-A4 and PDH-E1α also changed accordingly. The oxygen consumption rate decreased significantly (P ​< ​0.05). At DO6.50, the distance between gill lamellae, numbers of red blood cells (RBC) and the content of hemoglobin decreased wheras the mucus on gill lamellae increased. The activity of PDH, the expression of PDH-E1a in liver and oxygen consumption rate increased. Different dissolved oxygen concentrations affected the respiratory behavior, gill tissue structure, blood transport capacity and tissue enzyme activity of juvenile grass carp. In summary, juvenile grass carp showed different adaptation strategies when facing different dissolved oxygen concentrations over prolonged periods in recirculating aquaculture systems.

循环水养殖系统中草鱼幼鱼对不同溶解氧浓度的适应策略
长期暴露于不同溶解氧浓度的鱼类具有不同的易感性和适应机制。在本研究中,健康的草鱼平均体重为214.6​±​18.7​g在三种不同溶解氧浓度(即3.00​mg/L[(2.57​±​0.33)mg/L,DO2.57),5.00​mg/L[(4.61​±​0.11)mg/L,DO4.61],为对照组,7.00​mg/L[(6.50​±​0.48)mg/L,DO6.50]。60后采集血液、鳃、肌肉和肝脏样本​天。采用苏木精-伊红(HE)、阿新蓝-碘酸Schiff(AB-PAS)染色、呼吸代谢酶活性测定和荧光定量PCR技术,探讨了幼鱼对不同溶解氧水平的适应性。结果表明,在DO2.57时,呼吸频率增加,血液浓度、血红蛋白、电解质和pH值发生变化。此外,鳃片层变薄变长,它们之间的距离增加,它们上的粘液减少,间质细胞质量减少。此外,凋亡相关基因bcl-2和bcl-xl在鳃组织中的相对表达减少,而胱天蛋白酶-3和bax增加。在肌肉和肝组织中,乳酸脱氢酶(LDH)活性和乳酸含量(LA)增加,丙酮酸脱氢酶(PDH)活性降低,与呼吸代谢酶PDH-A4和PD-E1α相关的基因也发生了相应的变化。耗氧量明显下降(P​<;​在DO6.50时,鳃片层间的距离、红细胞数和血红蛋白含量降低,而鳃片层上的粘液增加。肝组织PDH活性、PD-E1a表达及耗氧量增加。不同的溶解氧浓度影响幼鱼的呼吸行为、鳃组织结构、血液转运能力和组织酶活性。总之,在循环养殖系统中,当长时间面对不同的溶解氧浓度时,幼鱼表现出不同的适应策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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