Allometric analysis sheds light on the systematics and ontogeny of anurognathid pterosaurs

个体发育 异速滴定 分类学 生物 树上运动 系统发育树 克莱德 动物 少年 姐妹团 进化生物学 系统发育学 生态学 分类学(生物学) 遗传学 基因 生物化学 栖息地
作者
Zixiao Yang,Michael J. Benton,David W. E. Hone,Xing Xu,Maria E. McNamara,Baoyu Jiang
出处
期刊:Journal of Vertebrate Paleontology [Taylor & Francis]
卷期号:41 (5) 被引量:9
标识
DOI:10.1080/02724634.2021.2028796
摘要

Anurognathids are a clade of non-pterodactyloid pterosaurs with generally conservative morphology, but specializations as insectivores. They are represented by a disparate collection of adult and juvenile specimens that range in wingspan from ∼0.24–1 m. There have been concerns about the extent to which ontogenetic variation might affect phylogenetic inference, and indeed how aspects of their ontogeny might relate to the distinctive anurognathid adult morphology. Here we perform allometric analysis on 23 key skeletal dimensions in 13 anurognathid specimens. Our results show that all anurognathids share a common growth trajectory in most dimensions, and that ontogeny affects variation in a minority of characters commonly used in phylogenetic analysis. Excluding these ontogeny-related characters, a new taxon, Cascocauda rong gen. et sp. nov., is established. Based on the ontogenetically corrected dataset, our phylogenetic analysis supports Anurognathidae as the sister-group of Breviquartossa and reveals a general trend of tail reduction in the clade. Allometric growth suggests the anurognathid lifestyle remained consistent throughout ontogeny, maintaining a highly maneuverable flight style by near-isometric development in the wing, small prey (i.e., insects), by strong negative allometry in the skull, and an arboreal habit by strong positive allometry in the claws. This specialized lifestyle suggests retention of plesiomorphic juvenile traits into later ontogeny and facilitated morphological stasis by stabilizing selection during over 40 million years of evolution in the group.
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