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The Evolution and Fossil History of Sensory Perception in Amniote Vertebrates

机译:羊水脊椎动物感官感知的演变与化石史

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Sensory perception is of crucial importance for animals to interact with their biotic and abiotic environment. In amniotes, the clade including modern mammals (Synapsida), modern reptiles (Reptilia), and their fossil relatives, the evolution of sensory perception took place in a stepwise manner after amniotes appeared in the Carboniferous. Fossil evidence suggests that Paleozoic taxa had only a limited amount of sensory capacities relative to later forms, with the majority of more sophisticated types of sensing evolving during the Triassic and Jurassic. Alongside the evolution of improved sensory capacities, various types of social communication evolved across different groups. At present there is no definitive evidence for a relationship between sensory evolution and species diversification. It cannot be excluded, however, that selection for improved sensing was partially triggered by biotic interactions, e.g., in the context of niche competition, whereas ecospace expansion, especially during the Mesozoic, might also have played an important role.
机译:感官感知对于动物与生物和非生物环境相互作用至关重要。在羊膜中,包括现代哺乳动物(Scanapsida),现代爬行动物(爬虫动物)和它们的化石亲属,在羊膜生动术中出现在石炭系中,感官感知的演变的演变。化石证据表明,古生代的分类卡在三叠系和侏罗纪期间的大多数更复杂类型的感官的感官能力只有有限的感官能力。除了改进的感官能力的演变之外,各种类型的社交沟通在不同的群体中发展出来。目前,感觉进化和物种多样化之间的关系没有明确的证据。然而,它不能被排除在外,改善感测的选择是通过生物互动的部分引发,例如,在利基竞争的背景下,虽然Ecospace扩张,特别是在中生代,可能也起到了重要作用。

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