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首页> 外文期刊>Journal of Comparative Physiology, B. Biochemical, Systemic, and Environmental Physiology >The adenylate energy charge as a new and useful indicator of capture stress in chondrichthyans
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The adenylate energy charge as a new and useful indicator of capture stress in chondrichthyans

机译:腺苷酸能电荷是软骨鱼类捕获应激的一种新的有用指标

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Quantifying the physiological stress response of chondrichthyans to capture has assisted the development of fishing practices conducive to their survival. However, currently used indicators of stress show significant interspecific and intraspecific variation in species' physiological responses and tolerances to capture. To improve our understanding of chondrichthyan stress physiology and potentially reduce variation when quantifying the stress response, we investigated the use of the adenylate energy charge (AEC); a measure of available metabolic energy. To determine tissues sensitive to metabolic stress, we extracted samples of the brain, heart, liver, white muscle and blood from gummy sharks (Mustelus antarcticus) immediately following gillnet capture and after 3 h recovery under laboratory conditions. Capture caused significant declines in liver, white muscle and blood AEC, whereas no decline was detected in the heart and brain AEC. Following 3 h of recovery from capture, the AEC of the liver and blood returned to "unstressed" levels (control values) whereas white muscle AEC was not significantly different to that immediately after capture. Our results show that the liver is most sensitive to metabolic stress and white muscle offers a practical method to sample animals non-lethally for determination of the AEC. The AEC is a highly informative indicator of stress and unlike current indicators, it can directly measure the change in available energy and thus the metabolic stress experienced by a given tissue. Cellular metabolism is highly conserved across organisms and, therefore, we think the AEC can also provide a standardised form of measuring capture stress in many chondrichthyan species.
机译:量化软骨鱼类捕获的生理应激反应,有助于发展有利于其生存的捕捞方式。但是,当前使用的压力指标显示物种的生理反应和捕获耐受性存在明显的种间和种内变化。为了提高我们对软骨鱼类应力生理的理解,并在量化应力反应时潜在地减少变化,我们研究了腺苷酸能电荷(AEC)的使用。衡量新陈代谢能量的方法。为了确定对代谢压力敏感的组织,我们在捕获刺网后立即在实验室条件下恢复了3小时后,从胶粘鲨(南极人)中提取了大脑,心脏,肝脏,白肌肉和血液的样本。捕获导致肝脏,白肌肉和血液AEC明显下降,而心脏和大脑AEC未检测到下降。从捕获中恢复3小时后,肝脏和血液的AEC恢复到“未施加压力”的水平(对照值),而白肌AEC与捕获后立即的AEC无显着差异。我们的结果表明,肝脏对代谢压力最敏感,而白肌肉为非动物样本动物提供了一种测定AEC的实用方法。 AEC是压力的高度有用的指标,与当前的指标不同,它可以直接测量可用能量的变化,从而测量给定组织所经历的代谢压力。细胞代谢在整个生物体中高度保守,因此,我们认为AEC还可以提供一种测量许多软骨鱼类物种捕获压力的标准化形式。

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