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首页> 外文期刊>Fish Physiology and Biochemistry >Thermal tolerance, oxygen consumption and haemato-biochemical variables of Tor putitora juveniles acclimated to five temperatures
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Thermal tolerance, oxygen consumption and haemato-biochemical variables of Tor putitora juveniles acclimated to five temperatures

机译:托氏托氏ju幼虫适应五个温度的热耐受性,耗氧量和血液生化变量

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摘要

A 30-day acclimation trial was conducted using Tor putitora to elucidate its thermal tolerance, oxygen consumption, haemato-biochemical variables and selected enzymatic activities at five acclimation temperatures (AT). Juveniles of T. putitora were randomly distributed among five treatment groups (20, 23, 26, 29 and 32 ± 0.5 °C). There was a significant curvilinear increase in critical thermal maxima (CTmax) (y = −0.0693x 2 + 1.7927x + 34.628, R 2 = 0.996) and lethal thermal maxima (LTmax) (y = −0.1493x 2 + 2.3407x + 35.092, R 2 = 0.991) with increasing AT. The oxygen consumption rate increased significantly with increasing AT. The Q 10 values were 1.16 between 20 and 23 °C, 3.09 between 23 and 26 °C, 1.31 between 26 and 29 °C and 1.76 between 29 and 32 °C of AT. The acclimation response ratios were ranged between 0.37 and 0.59. Catalase, superoxide dismutase and ATPase activities were increased linearly in liver, gill and kidney, while brain acetylcholine esterase activity decreased linearly with increasing AT. Blood glucose remained unchanged up to AT of 26 °C and increased significantly at AT of 29 and 32 °C. Haemoglobin content was increased linearly with increasing AT. The highest WBC count was observed at 20 °C, and no significant changes found till AT of 26 °C and significantly decreased at 32 °C. Total serum protein and globulin were significantly decreased with increasing AT. Highest values were observed at 20 °C and remained consistent till 26 °C, then decreased significantly. There was no significant change in A/G ratio through the AT 20–29 °C and increased significantly at 32 °C. The increase in CTmax, LTmax and oxygen consumption rate with increasing AT may suggest that the thermal tolerance of T. putitora is dependent on its prior thermal exposure history, and it could adapt to higher AT by altering its haemato-biochemical variables.
机译:进行了为期30天的驯化试验,目的是在5个驯化温度(AT)下使用Put Toritora阐明其耐热性,耗氧量,血液生化指标和选定的酶活性。恶臭T幼虫随机分布在五个治疗组中(20、23、26、29和32±0.5°C)。临界热极大值(CTmax)(y = −0.0693x 2 + 1.7927x + 34.628,R 2 = 0.996)和致命热极大值(LTmax)(y = −0.1493x 2 + 2.3407x + 35.092)的曲线显着增加,R 2 = 0.991),随着AT的增加。耗氧率随着AT的增加而显着增加。 Q 10值在AT的20至23°C之间为1.16,在23至26°C之间为3.09,在26至29°C之间为1.31,在29至32°C之间为1.76。驯化响应比介于0.37和0.59之间。肝脏,ase和肾脏中的过氧化氢酶,超氧化物歧化酶和ATPase活性呈线性增加,而脑乙酰胆碱酯酶活性随AT呈线性下降。血糖在26°C时保持不变,而在29和32°C时则显着增加。血红蛋白含量随AT的增加呈线性增加。在20°C时观察到最高的WBC计数,直到AT为26°C时才发现明显变化,而在32°C时则显着下降。总血清蛋白和球蛋白随AT升高而显着降低。在20°C时观察到最高值,直到26°C都保持恒定,然后显着下降。在AT 20–29°C下,A / G比没有显着变化,而在32°C时,A / G比明显增加。随着AT的增加,CTmax,LTmax和耗氧率的增加可能表明恶臭T的热耐受性取决于其先前的热暴露史,并且可以通过改变其血液生化变量来适应更高的AT。

著录项

  • 来源
    《Fish Physiology and Biochemistry》 |2013年第6期|1387-1398|共12页
  • 作者单位

    Fish Nutrition Laboratory DCFR">(1);

    Division of Fish Nutrition Biochemistry and Physiology Central Institute of Fisheries Education">(2);

    Division of Fish Nutrition Biochemistry and Physiology Central Institute of Fisheries Education">(2);

    Division of Fish Nutrition Biochemistry and Physiology Central Institute of Fisheries Education">(2);

    Division of Fish Nutrition Biochemistry and Physiology Central Institute of Fisheries Education">(2);

    Fish Nutrition Laboratory DCFR">(1);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Acclimation temperature; Catalase; CTmax; LTmax; Oxygen consumption; Tor putitora;

    机译:适应温度过氧化氢酶;最大CT;LTmax;耗氧量;普托托拉;

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