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An integrative insight into the synsacral canal of fossil and extant Antarctic penguins
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作者 Piotr JADWISZCZAK Anders SVENSSON-MARCIAL Thomas MÖRS 《Integrative Zoology》 SCIE CSCD 2023年第2期237-253,共17页
The lumbosacral-canal system in birds most likely operates as a sense organ involved in the control of balanced walking and perching,but our knowledge of it is superficial.Penguins constitute interesting objects for th... The lumbosacral-canal system in birds most likely operates as a sense organ involved in the control of balanced walking and perching,but our knowledge of it is superficial.Penguins constitute interesting objects for the study of this system due to their upright walking,but only the Humboldt penguin,Spheniscus humboldti,and some incomplete fossil penguin synsacra have been studied in this respect.Here,we give an integrative comparative in-sight into the synsacral canal of extant Emperor penguin,Aptenodytes forsteri,Adelie penguin,Pygoscelis adeliae,and Eocene giant Anthropornis and/or Palaeeudyptes Antarctic penguins,using computed tomography imaging and associated data-extraction methodologies,complemented by analytical approaches ranging from geometric morphometrics to modularity,curvature,and wavelet analyses.We document that the variability in the number of synsacro-lumbar vertebrae is evolutionarily conserved,and all studied synsacra possess osteological correlates of the lumbosacral-canal system.We also found that Eocene and extant Antarctic penguins were separable on the basis of the main direction of the shape-related(size-independent)variability within said system,and A.forsteri was unique in the entire studied set in terms of the relative cranial shift of this compound structure.Moreover,we suggest that the evolutionary processes,shaping both the terrestrial posture and gait,were responsible,in extant penguins,for the increased simplicity and stability of the synsacral canal cross-sectional periodic patterns,as well as pave the way for the lumbosacral-canal system modularity characterized by reduced atomization/complexity. 展开更多
关键词 ANTARCTICA CENOZOIC lumbosacral canals Sphenisciformes synsacrum
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寒武纪软舌螺壳体形态解剖研究与冠轮动物演化 被引量:4
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作者 刘璠 张志飞 Christian B.Skovsted 《科学通报》 EI CAS CSCD 北大核心 2021年第27期3631-3644,共14页
软舌螺是一类寒武纪出现并于二叠纪末灭绝的古生代海生无脊椎动物,具有重要的地层划分与对比意义.但是对于该动物本身生物属性等问题一直莫衷一是,近年中国寒武纪早期的特异型埋藏化石库中发现了大量保存软躯体的珍稀软舌螺动物化石.结... 软舌螺是一类寒武纪出现并于二叠纪末灭绝的古生代海生无脊椎动物,具有重要的地层划分与对比意义.但是对于该动物本身生物属性等问题一直莫衷一是,近年中国寒武纪早期的特异型埋藏化石库中发现了大量保存软躯体的珍稀软舌螺动物化石.结合华南、华北同期碳酸盐岩沉积地层中的壳体化石,系列报道将软舌螺的化石生物学、壳体矿化和分类系统学研究推到新的高度,为探讨寒武纪大爆发壳体动物的演化,尤其是冠轮动物的系统学提供新的化石证据.澄江动物群的直管螺目三槽螺属化石发现保存有粗大的扇状触手器官,其基部可以在壳体内自由伸缩,与触手基部固定的触手冠动物明显不同,表明软舌螺与触手冠动物具有不同的生理结构和取食机制.综合最新微细结构的发现,支持软舌螺是一类与软体动物关系紧密的冠轮动物.软舌螺新材料的研究对寒武纪大爆发后生动物的演化提出了新的科学问题:后生动物在矿化体制发生演化中到底是整个壳体出现早,还是多骨片的骨骼系出现早——即形态上完整的生物壳体是由多个骨片愈合而成,还是反之.如何将矿化的整壳和骨片系与壳体内部组织器官和显微结构进行有效的极向系统分析,是未来冠轮动物进化生物学和古生物系统学研究的共同挑战. 展开更多
关键词 软舌螺 寒武纪 壳体结构 解剖学 摄食器官 消化道
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