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作 者:姜宏波[1] 包杰[1] 丛岩懿 申旭东[1] 潘帝希 于业辉[1] 李晓东[1,2]
机构地区:[1]沈阳农业大学畜牧兽医学院,沈阳110866 [2]盘锦光合蟹业有限公司,辽宁盘锦124200
出 处:《生态学杂志》2016年第8期2202-2207,共6页Chinese Journal of Ecology
基 金:辽宁省教育厅科学研究一般项目(L2014254)资助
摘 要:为了研究中华小长臂虾(Palaemonetes sinensis)对温度的耐受性及温度对其呼吸代谢的影响,利用逐渐升降温的方式获得了中华小长臂虾的温度耐受范围,在此基础上以静水密闭式方法研究了温度对中华小长臂虾耗氧率(OCR)、排氨率(AER)和窒息点(AP)的影响。结果表明:中华小长臂虾具有较强的温度耐受能力,耐受范围为0~37℃。低温组在5℃时活力开始减弱,下降到0℃时中华小长臂虾失去运动能力,0℃保持6 h后恢复室温则全部死亡;高温组在31℃时活力开始下降,34℃时出现异常反应,37℃开始死亡并在39℃全部死亡;温度对中华小长臂虾的OCR、AER和AP均具有极显著影响(P〈0.01);在温度为10~30℃范围内,随着温度的升高,中华小长臂虾的OCR和AER逐渐升高,回归分析表明,OCR与温度(T)的回归方程为OCR=-0.077+0.018T(R^2=0.955);AER与T的回归方程为AER=-0.008+0.002T(R2=0.915)。AP则是随着温度的升高,出现了先升高后下降的变化趋势,在本实验的温度条件下,窒息点的范围为0.19~0.31 mg·L^-1;中华小长臂虾氧氮比(O/N)在各个温度处理组的变化范围为7.61~13.24,说明中华小长臂虾在实验温度条件下主以蛋白质为供能物质,脂肪供能所占的比率较小。In order to understand temperature tolerance and respiratolT metabolism of Palae- monetes sinensis, effects of temperature on survival and oxygen consumption rate (OCR) , ammo- nia excretion rate (AER) , asphyxiation point (AP) of P. siueusis were studied in laboratory. The results showed that P. sinensis possessed strong temperature tolerance. Tolerance range of temper- ature was 0-37 ℃. In low temperature groups, P. sineusis began to decrease activity when tem- perature fell to 5 ℃ and lost motor ability at 0 ℃. All shrimps were dead after keeping 6 h at 0 ℃ then transferring to room temperature. In high temperature groups, P. siuensis began to decrease activity when temperature increased to 31 ℃ and an abnormal reaction appeared at 34 ℃. Some of shrimps died at 37 ℃ and all shrimps were dead when temperature increased to 39 ℃. Temperature had extremely significant effects on OCR, AER and AP (P 〈0.01 ). The OCR and AER of P. sinensis increased with the increase of temperature at 10-30 ℃(2. Regression analysis showed that OCR and AER had a significant linear correlation with temperature. The equations were OCR = -0.077+0.018T ( R^2 = 0.955 ) and AER = -0.008+0.002T ( R^2 = 0.915 ), respective- ly. With increasing temperature, AP of P. sinensis increased at first and decreased subsequently. The range of AP was 0.19-0.31 mg· L^-1 at 10-30 ℃. The range of O/N ratio at different tem- peratures was 7.61-13.24, indicating that P. sinensis took protein as the major energy source and fat as secondary .
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