不同养殖温度对雌雄翘嘴鳜生长及肝脏脂肪代谢的影响

WATER TEMPERATURE ON GROWTH AND LIPID METABOLISM IN CHINESE MANDARIN FISH

  • 摘要: 为解析翘嘴鳜(Siniperca chuatsi)在不同养殖温度下生长和代谢的差异, 实验研究了不同温度(28℃、35℃和36℃)下雌雄鳜的生长、肝脂肪代谢及氧化应激的影响。结果显示: 在28℃时, 雌性生长较雄性快; 在35℃时, 雌雄鳜生长均显著高于28℃, 且雄鳜的生长速度显著高于雌性, 雌雄鳜生长差异在高温环境中发生显著转变; 在36℃养殖条件下, 雌雄鳜的生长受到严重抑制, 说明36℃是鳜正常生存的临界温度; 雌雄鳜肝脏脂滴数量及TG含量整体呈先增后降的趋势, 在35℃时雄鳜肝脏胰岛素基因、糖异生基因和脂肪分解基因表达升高; 雌雄鳜SOD活性变化相反, 雌鳜SOD活性下降, 而雄鳜SOD活性显著升高, 两者MDA含量均显著升高, 但雌鳜比雄鳜增加了2倍以上; 雌鳜35℃时肝脏中hsp70hsp90ucp2sodcat基因的表达量均显著降低, 雄鳜肝脏中除sod表达量显著升高外, 其他基因表达量与雌鳜变化趋势一致。研究表明, 雌雄鳜的生长可能与二者脂肪利用呈正相关, 在高温养殖条件下, 雄鳜的代谢率增长显著高于雌鳜; 长期高温养殖引起雌雄鳜的生长发生反转, 并挖掘了高温条件下全雄群体的养殖价值。

     

    Abstract: In order to analyze the differences in growth and metabolism of Siniperca chuatsi under different culture temperatures, the present experiment was conducted to investigate the effects of growth, liver fat metabolism, and oxidative stress in male and female S. chuatsi at different temperatures (28℃, 35℃, and 36℃). The results showed that female S. chuatsi grew faster than that of male at 28℃; at 35℃, the growth of both male and female S. chuatsi was significantly higher than that of 28℃, with males growing faster than females, indicating a sex-dependent growth shift under high temperature; the growth was seriously inhibited at 36℃, identifying this as the critical temperature for normal survival. Hepatic lipid droplet number and triglyceride (TG) content in both male and female showed an overall trend of first increasing and then decreasing with temperature, while male S. chuatsi upregulated hepatic genes related to insulin, gluconeogenesis at 35℃. the SOD activities of male and female Siniperca chuatsi were reversed, with female SOD decreased, whereas male SOD increased significantly; hsp70, hsp90, ucp2, sod and cat genes in the liver of female S. chuatsi upregulated at 35℃, while male livers showed consistent expression with females except for significantly elevated sod. The present study demonstrates that the growth of S. chuatsi correlates positively with the fat utilization, and the metabolic rate growth of male was significantly higher than that of female under high temperature; the long-term high-temperature culture induces sex-reversed growth patterns, highlighting the potential of all-male populations under high-temperature culture conditions.

     

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