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Ecophysiological biomarkers defining the thermal biology of the Caribbean lobster Panulirus argus

机译:定义加勒比龙虾Panulirus argus热生物学的生态生理生物标记

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摘要

Tropical populations of marine species are predicted to be the most impacted by global warming because they are likely adapted to a narrow range of temperatures in their local environment. In the present study, we investigated the thermal range at which activity metabolic rate (AMR) is maximal, pejus, and critical in the spiny lobster Panulirus argus using different ecophysiological biomarkers. Lobsters were acclimated at constant temperatures (18, 22, 26 and 30 degrees C; N = 150) at laboratory conditions for 35 days; after that time thermal biology was evaluated. Results obtained demonstrated that, in P. argus the temperature where AMR was maximal does not coincide with temperature that promotes the maximum growth rate (26 degrees C). In fact, the preferred temperature, determined in a horizontal gradient was around the mean value of 27.5 degrees C, 5.5 degrees C above the temperature where animals showed their maximum metabolic scope, growth and thermal preference. Lactate and redox imbalance showed its maximum values in animals acclimated at 30 degrees C indicating that lobsters where in pejus thermal ranges. Although lobsters are adapted to tolerate temperatures beyond 28 degrees C, results indicated that temperature and exposure time play important roles in the way organisms respond to thermal challenges. It is likely that the difference in the responses of different ectothermic organisms and the thermal response is linked to the way these effects are measured. These results can help generate predictive models to anticipate changes in the P. argus fishery derived from likely changes in distribution and abundance of this species under warming scenarios of tropical oceans. (C) 2017 Elsevier Ltd. All rights reserved.
机译:预计海洋物种的热带种群受全球变暖的影响最大,因为它们很可能适应了当地环境的狭窄温度范围。在本研究中,我们使用不同的生态生理生物标记物研究了在多刺龙虾Panulirus argus中活动代谢率(AMR)最大,pejus和临界的热范围。将龙虾在实验室条件下于恒定温度(18、22、26和30摄氏度; N = 150)适应35天;在那之后,对热生物学进行了评估。获得的结果表明,在阿美假单胞菌中,AMR最高的温度与促进最大生长速率的温度(26摄氏度)不一致。实际上,以水平梯度确定的优选温度约为27.5摄氏度的平均值,比动物表现出最大代谢范围,生长和热偏好的温度高5.5摄氏度。乳酸和氧化还原失衡在适应30度温度的动物中显示出最大值,表明龙虾在Pejus温度范围内。尽管龙虾可以耐受28摄氏度以上的温度,但结果表明,温度和暴露时间在生物体应对热挑战的方式中起着重要作用。不同的外热生物的反应和热反应的差异可能与这些效应的测量方式有关。这些结果可以帮助生成预测模型,以预测在热带海洋变暖的情况下该物种分布和丰度可能发生变化而引起的阿古斯丁斯渔业的变化。 (C)2017 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Ecological indicators》 |2017年第7期|192-204|共13页
  • 作者单位

    Univ Nacl Autonoma Mexico, Fac Quim, Unidad Quim Sisal, Sisal, Yucatan, Mexico|CONACyT, Lab Nacl Resiliencia Costera LANRESC, Mexico City, DF, Mexico;

    Fac Quim, Ciencias Mar & Limnol, Sisal, Yucatan, Mexico;

    Ctr Invest Cient & Educ Super Ensenada, Dept Biotecnol Marina, Lab Ecofisiol Organismos Acuat, Ensenada, Baja California, Mexico;

    Univ Nacl Autonoma Mexico, Fac Ciencias, Unidad Multidisciplinaria Docencia & Invest, Puerto Abrigo S-N, Sisal, Yucatan, Mexico|CONACyT, Lab Nacl Resiliencia Costera LANRESC, Mexico City, DF, Mexico;

    Univ Nacl Autonoma Mexico, Fac Ciencias, Unidad Multidisciplinaria Docencia & Invest, Puerto Abrigo S-N, Sisal, Yucatan, Mexico|CONACyT, Lab Nacl Resiliencia Costera LANRESC, Mexico City, DF, Mexico;

    Univ Nacl Autonoma Mexico, Fac Ciencias, Unidad Multidisciplinaria Docencia & Invest, Puerto Abrigo S-N, Sisal, Yucatan, Mexico;

    Univ Austral Chile, Inst Acuicultura, Puerto Montt, Chile;

    Univ Nacl Autonoma Mexico, Fac Ciencias, Unidad Multidisciplinaria Docencia & Invest, Puerto Abrigo S-N, Sisal, Yucatan, Mexico|CONACyT, Lab Nacl Resiliencia Costera LANRESC, Mexico City, DF, Mexico;

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

    Thermal biology; Panulirus argus; Metabolism; REDOX system;

    机译:热生物学;阿古斯丹;代谢;氧化还原系统;

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