Mooney Ethan D, Maho Tea, Rowe Dylan C T, Scott Diane, Reisz Robert R
Department of Biology, University of Toronto Mississauga, 3359 Mississauga Rd., Mississauga, ON L5l 1C6 Canada.
Dinosaur Evolution Research Center, International Center of Future Science, Jilin University, 2699 Qianjin Str., Changchun, 130012 Jilin China.
Swiss J Palaeontol. 2025;144(1):44. doi: 10.1186/s13358-025-00382-5. Epub 2025 Aug 4.
Ontogeny and patterns of growth provide crucial insights into the evolution of dinosaurs and their biology, however, ontogenetic changes of the postcranial skeleton are generally poorly known and restricted to few species. Here, we report on the discovery of embryonic, eggshell, and hatchling material of the Early Jurassic sauropodomorph and provide new insights into the early life stages of early-diverging sauropodomorphs. The embryos described here represent a more advanced developmental stage than previously known embryonic materials and together show eggshells with progressive degrees of resorption correlating to embryonic development. The prominent "thumb" typical of early-diverging sauropodomorph dinosaurs also appears to be precociously ossified and ontogenetically variable. Together, these new embryos and hatchling indicate a quadrupedal posture and the resulting growth trajectory points to an important ontogenetically influenced ecological shift predicated on a continuum of locomotory dependent postural change, from obligate quadrupeds to obligate bipeds Other Late Triassic and Early Jurassic sauropodomorph dinosaurs known from few ontogenetic stages also fit well on the extensive growth trajectory of with only modest variations in skull, neck, and limb proportions. This generally conservative body plan of early-diverging sauropodomorphs likely suggests a similar postural change for the early members of this large clade that preceded the obligate quadruped sauropods.
The online version contains supplementary material available at 10.1186/s13358-025-00382-5.
个体发育和生长模式为恐龙的进化及其生物学特性提供了至关重要的见解,然而,颅后骨骼的个体发育变化通常鲜为人知,且仅限于少数物种。在此,我们报告了早侏罗世蜥脚形亚目恐龙胚胎、蛋壳和幼体材料的发现,并为早期分化的蜥脚形亚目恐龙的早期生命阶段提供了新的见解。此处描述的胚胎代表了比先前已知胚胎材料更高级的发育阶段,并且共同显示出蛋壳的吸收程度逐渐增加,这与胚胎发育相关。早期分化的蜥脚形亚目恐龙典型的突出“拇指”似乎也过早骨化且在个体发育上存在差异。总之,这些新的胚胎和幼体表明其具有四足姿势,由此产生的生长轨迹指向一种重要的受个体发育影响的生态转变,这种转变基于从专性四足动物到专性两足动物的一系列与运动相关的姿势变化。其他已知个体发育阶段较少的晚三叠世和早侏罗世蜥脚形亚目恐龙也很好地符合这一广泛的生长轨迹,在头骨、颈部和肢体比例上只有适度变化。早期分化的蜥脚形亚目恐龙这种总体保守的身体结构可能表明,在专性四足蜥脚类恐龙之前,这个大型类群的早期成员也有类似的姿势变化。
在线版本包含可在10.1186/s13358-025-00382-5获取的补充材料。