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Investigating links between thermal tolerance and oxygen supply capacity in shark neonates from a hyperoxic tropical environment

机译:从一种超氧热带环境中调查鲨鱼新生儿的热容耐氧气供应能力的联系

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摘要

Temperature and oxygen limit the distribution of marine ectotherms. Haematological traits underlying blood-oxygen carrying capacity are thought to be correlated with thermal tolerance in certain fishes, and this relationship is hypothesised to be explained by oxygen supply capacity. We tested this hypothesis using reef shark neonates as experimental models because they live near their upper thermal limits and are physiologically sensitive to low oxygen conditions. We first described in situ associations between temperature and oxygen at the study site (Moorea, French Polynesia) and found that the habitats for reef shark neonates (Carcharhinus melanopterus and Negaprion acutidens) were hyperoxic at the maximum recorded temperatures. Next, we tested for in situ associations between thermal habitat characteristics and haematological traits of neonates. Contrary to predictions, we only demonstrated a negative association between haemoglobin concentration and maximum habitat temperatures in C. melanopterus. Next, we tested for ex situ associations between critical thermal maximum (CT_(Max)) and haematological traits, but only demonstrated a negative association between haematocrit and CT_(Max) in C. melanopterus. Finally, we measured critical oxygen tension (P_(crit)) ex situ and estimated its temperature sensitivity to predict oxygen-dependent values of CT_(Max). Estimated temperature sensitivity of P_(crit) was similar to reported values for sharks and skates, and predicted values for CT_(Max) equalled maximum habitat temperatures.These data demonstrate unique associations between haematological traits and thermal tolerance in a reef shark that are likely not explained by oxygen supply capacity. However, a relationship between oxygen supply capacity and thermal tolerance remains to be demonstrated empirically.
机译:温度和氧气限制海洋疗法的分布。血液 - 氧携带能力的血液学性状被认为与某些鱼类中的热耐受性相关,并且假设这种关系被氧气供应能力解释。我们使用Reef Shark Neonates作为实验模型测试了这一假设,因为它们居住在其上热限制附近,并且在生理学上对低氧气条件敏感。我们首先在研究现场(Moorea,法属植物质)的温度和氧气之间的原位协会描述,发现礁鲨新生儿(Carcharhinus melanopterus和angaprion acutidens)的栖息地在最大记录的温度下进行过氧。接下来,我们在热栖息地特征与新生儿的血液神学性状之间进行了测试。与预测相反,我们只证明了血红蛋白浓度与C.Melanopterus的最大栖息地温度之间的负关联。接下来,我们在临界热最大值(CT_(MAX))和血液神学性状之间进行的EX原位关联,但只证明了血细胞比容和CT_(MAX)之间的阴性关联在C.Melanopterus中。最后,我们测量了临界氧气张力(P_(CRIT))EX原位并估计其温度敏感性,以预测CT_(MAX)的氧依赖值。 P_(CRIT)的估计温度敏感性与报道的鲨鱼和冰鞋的值类似,并且CT_(MAX)的预测值等于最大栖息地温度。这些数据展示了可能没有的血液神学性状和热容差之间的独特关联通过氧气供应能力解释。然而,氧气供应能力和耐热性之间的关系仍有待证明仍然展示。

著录项

  • 来源
    《Science of the total environment》 |2021年第15期|146854.1-146854.12|共12页
  • 作者单位

    Australian Research Council Centre of Excellence for Coral Reef Studies James Cook University Townsville Queensland 4811 Australia PSL Research University EPHE-UPVD-CNRS USR 3278 CRIOBE Universite de Perpignan 58 Avenue Paul Alduy 66860 Perpignan Cedex France;

    Department of Marine Science University of Otago Dunedin 9016. New Zealand;

    PSL Research University EPHE-UPVD-CNRS USR 3278 CRIOBE Universite de Perpignan 58 Avenue Paul Alduy 66860 Perpignan Cedex France;

    PSL Research University EPHE-UPVD-CNRS USR 3278 CRIOBE Universite de Perpignan 58 Avenue Paul Alduy 66860 Perpignan Cedex France;

    PSL Research University EPHE-UPVD-CNRS USR 3278 CRIOBE Universite de Perpignan 58 Avenue Paul Alduy 66860 Perpignan Cedex France Laboratoire d'Excellence 'CORAIL' EPHE PSL Research University UPVD CNRS USR 3278 CRIOBE Papetoai Moorea French Polynesia Universite de Corse Pasquale Paoli UMS 3514 Plateforme Marine Stella Mare 20620 Biguglia France;

    PSL Research University EPHE-UPVD-CNRS USR 3278 CRIOBE Universite de Perpignan 58 Avenue Paul Alduy 66860 Perpignan Cedex France Laboratoire d'Excellence 'CORAIL' EPHE PSL Research University UPVD CNRS USR 3278 CRIOBE Papetoai Moorea French Polynesia;

    Centre for Sustainable Tropical Fisheries and Aquaculture & College of Science and Engineering James Cook University Townsville Queensland 4811 Australia;

    Australian Research Council Centre of Excellence for Coral Reef Studies James Cook University Townsville Queensland 4811 Australia;

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

    Critical thermal maximum; Haematocrit; Haemoglobin; Oxygen supply capacity; P_(crit); Reef sharks;

    机译:临界热最大值;分血器;血红蛋白;氧气供应能力;p_(crit);礁石鲨鱼;
  • 入库时间 2022-08-19 02:23:45

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