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显生宙幸存者:通过二叠纪-三叠纪和三叠纪-侏罗纪大灭绝事件的肉鳍鱼类演化。

Phanerozoic survivors: Actinopterygian evolution through the Permo-Triassic and Triassic-Jurassic mass extinction events.

机构信息

Department of Earth Sciences, University of Bristol, Bristol BS8 1TQ, United Kingdom.

出版信息

Evolution. 2018 Feb;72(2):348-362. doi: 10.1111/evo.13421.

Abstract

Actinopterygians (ray-finned fishes) successfully passed through four of the big five mass extinction events of the Phanerozoic, but the effects of these crises on the group are poorly understood. Many researchers have assumed that the Permo-Triassic mass extinction (PTME) and end-Triassic extinction (ETE) had little impact on actinopterygians, despite devastating many other groups. Here, two morphometric techniques, geometric (body shape) and functional (jaw morphology), are used to assess the effects of these two extinction events on the group. The PTME elicits no significant shifts in functional disparity while body shape disparity increases. An expansion of body shape and functional disparity coincides with the neopterygian radiation and evolution of novel feeding adaptations in the Middle-Late Triassic. Through the ETE, small decreases are seen in shape and functional disparity, but are unlikely to represent major changes brought about by the extinction event. In the Early Jurassic, further expansions into novel areas of ecospace indicative of durophagy occur, potentially linked to losses in the ETE. As no evidence is found for major perturbations in actinopterygian evolution through either extinction event, the group appears to have been immune to two major environmental crises that were disastrous to most other organisms.

摘要

肉鳍鱼类(有鳞鱼)成功地经历了显生宙的四大灭绝事件中的四个,但这些危机对该群体的影响还知之甚少。许多研究人员认为,尽管二叠纪-三叠纪灭绝事件(PTME)和三叠纪末灭绝事件(ETE)对许多其他群体造成了毁灭性影响,但对肉鳍鱼类的影响很小。在这里,使用了两种形态计量技术,几何形态(体型)和功能形态(颌骨形态),来评估这两个灭绝事件对该群体的影响。PTME 没有引起功能差异的显著变化,而体型差异增加。体型和功能差异的扩大与新鳍鱼辐射和中-晚三叠世新型摄食适应的进化相吻合。在 ETE 期间,体型和功能差异略有减少,但不太可能代表灭绝事件带来的重大变化。在早侏罗世,进一步扩展到新的生态位,表明存在硬骨鱼类的食性改变,可能与 ETE 期间的损失有关。由于没有证据表明在这两个灭绝事件中,肉鳍鱼类的进化发生了重大干扰,因此该群体似乎对这两个对大多数其他生物造成灾难性影响的重大环境危机具有免疫力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0566/5817399/7cffd207b3e3/EVO-72-348-g001.jpg

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