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首页> 外文期刊>Journal of evolutionary biology >Life in the unthinking depths: energetic constraints on encephalization in marine fishes
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Life in the unthinking depths: energetic constraints on encephalization in marine fishes

机译:难以想象的深处的生活:海洋鱼类脑性化的能量约束

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摘要

Several hypotheses have been proposed to explain the limitation of brain size in vertebrates. Here, we test three hypotheses of brain size evolution using marine teleost fishes: the direct metabolic constraints hypothesis (DMCH), the expensive tissue hypothesis and the temperature-dependent hypothesis. Our analyses indicate that there is a robust positive correlation between encephalization and basal metabolic rate (BMR) that spans the full range of depths occupied by teleosts from the epipelagic (<200m), mesopelagic (200-1000m) and bathypelagic (>4000m). Our results disentangle the effects of temperature and metabolic rate on teleost brain size evolution, supporting the DMCH. Our results agree with previous findings that teleost brain size decreases with depth; however, we also recover a negative correlation between trophic level and encephalization within the mesopelagic zone, a result that runs counter to the expectations of the expensive tissue hypothesis. We hypothesize that mesopelagic fishes at lower trophic levels may be investing more in neural tissue related to the detection of small prey items in a low-light environment. We recommend that comparative encephalization studies control for BMR in addition to controlling for body size and phylogeny.
机译:已经提出了几种假设来解释脊椎动物的脑大小限制。在这里,我们使用海洋硬骨鱼类测试了三种大脑大小进化的假说:直接代谢限制假说(DMCH),昂贵的组织假说和温度依赖性假说。我们的分析表明,脑硬化与基础代谢率(BMR)之间存在稳固的正相关关系,其涵盖了上颚骨(<200m),中上颚骨(200-1000m)和水下上颚骨(> 4000m)的硬骨占据的整个深度范围。我们的研究结果揭示了温度和代谢速率对硬骨症大脑大小演变的影响,从而支持DMCH。我们的结果与以前的发现一致,即硬骨的大脑尺寸随深度而减少;然而,我们也恢复了中视层区域营养水平与脑病之间的负相关性,这一结果与昂贵的组织假说的预期背道而驰。我们假设,营养水平较低的中生鱼类可能在与弱光环境下检测小型猎物有关的神经组织上投入更多。我们建议比较性脑病研究除了控制体重和系统发育外,还应控制BMR。

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