Ontogenetic trajectories and sexual dimorphism of a neotropical ground snake genus Erythrolamprus (Serpentes: Dipsadidae)

IF 1.6 3区 生物学 Q2 ZOOLOGY
Zoology Pub Date : 2025-02-12 DOI:10.1016/j.zool.2025.126248
Daniel Silva Fernandes , Cristiane Barros Régis
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引用次数: 0

Abstract

Allometry and sexual dimorphism are potential sources of intraspecific morphological variation. Advances in the methodological framework of geometric morphometrics allow in-depth analysis of these issues, enabling the descriptions and comparisons between groups of multivariate phenotypic attributes and the visualization of allometric trajectories. In the present study, we evaluated the presence of secondary sexual dimorphism in Erythrolamprus miliaris merremi, a semi-aquatic snake occurring in the Atlantic Forest of southeastern Brazil. We assessed linear body measurements and digitized landmarks in the dorsal view of the head of 107 specimens grouped into four categories combining ontogenetic stages and sex. We performed linear models and principal component analyses to estimate and visualize head shape variation and the allometric trajectories of these categories. Adults from both sexes and immature females showed significant static allometry, while immature males showed isometric growth. Although we recovered no sexual dimorphism for head shape, ontogenetic trajectories of both sexes are distinct, with females showing head shape variation throughout ontogenetic development, while males exhibited more conspicuous changes only after sexual maturity. Comparisons with literature data suggest a high degree of variation in ontogenetic allometry of snakes, depending on the phylogenetic group or structure (head/skull) analyzed, while the results for static allometry are more similar between the studied taxa. Only the collection of data on distinct groups of snakes will provide more clues as to whether there is any allometric pattern to these structures, and which factors (evolutionary, ecological or both) are prevalent over it, especially for ontogenetic allometry.
异形和性二态是种内形态变异的潜在来源。几何形态计量学方法框架的进步允许对这些问题进行深入分析,从而能够描述和比较多变量表型属性组之间的差异,并可视化异长轨迹。在本研究中,我们评估了巴西东南部大西洋森林中的一种半水栖蛇类 Erythrolamprus miliaris merremi 是否存在第二性异形。我们评估了 107 个标本的身体线性测量值和头部背面的数字化地标,并将其分为四个类别,结合了个体发育阶段和性别。我们通过线性模型和主成分分析来估计和观察这些类别的头型变化和异速轨迹。成年雌雄个体均表现出显著的静态异长,而未成熟雄体则表现出等距生长。虽然我们没有发现头型的性别二态性,但雌雄个体的个体发育轨迹是不同的,雌性个体在整个个体发育过程中都表现出头型的变化,而雄性个体只有在性成熟后才表现出更明显的变化。与文献数据的比较表明,蛇类的个体发育几何学差异很大,这取决于所分析的系统发育类群或结构(头部/头骨),而所研究类群之间的静态几何学结果较为相似。只有收集不同蛇类群的数据,才能提供更多线索,说明这些结构是否存在任何几何模式,以及哪些因素(进化因素、生态因素或两者兼而有之)对其起主导作用,特别是对个体发育的几何模式。
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来源期刊
Zoology
Zoology 生物-动物学
CiteScore
3.90
自引率
0.00%
发文量
37
审稿时长
70 days
期刊介绍: Zoology is a journal devoted to experimental and comparative animal science. It presents a common forum for all scientists who take an explicitly organism oriented and integrative approach to the study of animal form, function, development and evolution. The journal invites papers that take a comparative or experimental approach to behavior and neurobiology, functional morphology, evolution and development, ecological physiology, and cell biology. Due to the increasing realization that animals exist only within a partnership with symbionts, Zoology encourages submissions of papers focused on the analysis of holobionts or metaorganisms as associations of the macroscopic host in synergistic interdependence with numerous microbial and eukaryotic species. The editors and the editorial board are committed to presenting science at its best. The editorial team is regularly adjusting editorial practice to the ever changing field of animal biology.
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