Dong Xi-Ping, Duan Baichuan, Liu Jianbo, Donoghue Philip C J
School of Earth and Space Science, Peking University, Beijing 100871, People's Republic of China.
Key Laboratory of Marine Geology and Metallogeny, First Institute of Oceanography, Ministry of Natural Resource, Qingdao 266061, People's Republic of China.
R Soc Open Sci. 2022 Oct 5;9(10):220115. doi: 10.1098/rsos.220115. eCollection 2022 Oct.
The Wangcun fossil Lagerstätte in Hunan, South China, has yielded hundreds of fossilized embryos of representing different developmental stages. Internal tissues have only rarely been observed, impeding further understanding of the soft tissue anatomy, phylogenetic affinity and evolutionary significance of . In this study, we used synchrotron radiation X-ray tomographic microscopy (SRXTM) to study a new collection of fossil embryos from the Wangcun fossil Lagerstätte. We describe specimens exhibiting a spectrum of preservation states, the best of which preserves palisade structures underneath the cuticle of the head and tail, distinct from patterns of centripetal mineralization of the cuticle and centrifugal mineralization of hypha-like structures, seen elsewhere in this specimen and other fossils within the same assemblage. Our computed tomographic reconstruction of these mineralization phases preserves the gross morphology of (i) longitudinal structures associated with the tail spines, which we interpret as the proximal ends of longitudinal muscles, and (ii) a ring-shaped structure internal to the introvert, which we interpret as a ring-shaped brain, as anticipated of the cycloneuralian affinity of . This is the first record of a fossilized nervous system in a scalidophoran, and the first instance in Orsten-style preservation, opening the potential for further such records within this widespread mode of high-fidelity three-dimensional preservation.
中国南方湖南的王村化石库产出了数百个代表不同发育阶段的化石胚胎。内部组织很少被观察到,这阻碍了对其软组织解剖结构、系统发育亲缘关系及进化意义的进一步了解。在本研究中,我们使用同步辐射X射线断层显微镜(SRXTM)来研究王村化石库新采集的化石胚胎。我们描述了呈现一系列保存状态的标本,其中保存最好的标本在头部和尾部的角质层下方保留了栅栏状结构,这与该标本其他部位以及同一组合中的其他化石所见到的角质层向心矿化和菌丝状结构离心矿化模式不同。我们对这些矿化阶段的计算机断层扫描重建保留了(i)与尾刺相关的纵向结构的大致形态,我们将其解释为纵向肌肉的近端,以及(ii)内翻体内部的环形结构,我们将其解释为环形脑,这与预期的旋毛虫亲缘关系相符。这是有颚动物化石神经系统的首次记录,也是奥斯坦式保存的首例,为在这种广泛的高保真三维保存模式下进一步发现此类记录开辟了可能性。