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首页> 外文期刊>Comparative biochemistry and physiology, Part A. Molecular and integrative physiology >Triploidy in white sturgeon (Acipenser transmontanus): Effects of acute stress and warm acclimation on physiological performance
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Triploidy in white sturgeon (Acipenser transmontanus): Effects of acute stress and warm acclimation on physiological performance

机译:白色鲟鱼(Acipenser Transontanus)的三倍体:急性应激和温暖适应对生理性能的影响

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Previous studies have demonstrated reduced performance in triploid fish when reared under suboptimal conditions, which may be the result of a higher susceptibility to stressors when compared to diploids. The goal of this project was to investigate differences in the capacity of diploid (8 N) and triploid (12 N) white sturgeon, Acipenser transmontanus, to respond to both warm acclimation (6-weeks of acclimation to either 18 or 22 degrees C) and a subsequent acute stress (10-min low water stress). Following the 6-week acclimation, fish were sampled either before or following an acute low water stress. Bioindices of the primary and secondary stress response, hematology and cellular metabolic status were measured. We also sought to determine if time to peak cortisol levels were similar between diploid and triploid sturgeon after exposure to a severe acute stressor (netting stress). While both ploidies had similar primary and secondary responses to acute stress, both with and without warm acclimation, warm acclimation impacted the ability of diploid and triploid white sturgeon to mount a typical stress response to an acute stressor. In response to warm acclimation, triploids exhibited little change in branchial lactate dehydrogenase activity, while diploids increased activity. After exposure to an acute water reduction stress, diploids increased citrate synthase activity, yet triploids showed a decrease in activity. Differences in metabolic enzyme activity in response to warm acclimation and acute stress suggest triploid white sturgeon may have a reduced cellular metabolic capacity under chronic and acute stress, which may impact performance of triploid sturgeon in suboptimal conditions.
机译:在次优的条件下饲养时,以前的研究表明三倍体鱼中的性能降低,这可能是与二倍体相比的对压力源较高的结果。该项目的目标是调查二倍体(8N)和三倍体(12n)白色鲟鱼,acipenser Transontanus的能力的差异,以响应温暖的适应(6周适应于18或22摄氏度)随后的急性应力(10分钟低水胁迫)。在6周的适应后,在急性低水胁迫之前或之后对鱼进行进行。测量了初级和次级应力响应,血液学和细胞代谢状态的生物indices。我们还试图确定在暴露于严重急性应激源(网应力)后二倍体和三倍体鲟鱼之间的时间在峰值皮质醇水平。虽然两个族有类似的主要和次要反应对急性应激,但没有温暖的适应,温暖的适应性影响二倍体和三倍体白色鲟鱼的能力,以便对急性应激源施加典型的应力响应。响应于温暖的适应性,三倍体在鳃乳酸脱氢酶活性方面表现出几乎变化,而二倍体的活性增加。暴露于急性水还原应力后,二倍体增加柠檬酸盐合酶活性,但三倍体显示出现降低。代谢酶活性响应于温暖的适应和急性应激的差异表明三倍体白色鲟鱼可能在慢性和急性胁迫下具有降低的细胞代谢能力,这可能会影响三倍体鲟的性能在次优条件下。

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