科摩罗群岛斑尾蛛(两栖纲:无尾目:蝠鲼科)的描述骨骼解剖

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2019-11-30 DOI:10.1163/18759866-20191405
Javier H. Santos-Santos, Mireia Guinovart-Castán, D. Vieites
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引用次数: 2

摘要

蝠鲼是马达加斯加和科摩罗特有的广泛适应性辐射,是形态和生态多样性最强的蝠鲼亚科。蝠鲼科呈现出与其独特繁殖行为相关的关键创新进化特征,包括股腺和衍生的犁鼻器官的存在。此外,先前的研究指出,大小分化在物种的传播能力和地理范围的形成中发挥着重要作用。尽管在该分支中观察到高表型变异,但迄今为止,尚未对其解剖结构进行详尽的形态学分析,更不用说与内部结构的关系了。在这里,我们对来自印度洋马约特岛的一种被覆盖的物种,即跨海布隆默西亚进行了全面的骨骼描述,与其他布隆默亚物种相比,该物种可能经历了中度巨人症的过程。我们利用μCT扫描的非破坏性体积渲染描述了其种内骨骼变异,并表征了骨骼结构中性别二态性和大小协变的存在。值得注意的是,我们发现了许多高铁矿化的迹象,这是一种新的覆盖骨结构:锁骨突,以及几个阑尾籽骨的存在。我们的研究结果表明,该属的骨骼表型变异可能与生殖和运动的生物力学功能有关。
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Descriptive skeletal anatomy of Blommersia transmarina (Amphibia: Anura: Mantellidae) from the Comoro Islands
Mantellid frogs present an extensive adaptive radiation endemic to Madagascar and Comoros, being the subfamily Mantellinae the most morphologically and ecologically diverse. The Mantellinae present key innovative evolutionary traits linked to their unique reproductive behavior, including the presence of femoral glands and a derived vomeronasal organ. In addition, previous studies pointed to size differentiation in playing an important role in species’ dispersal capacities and shaping of their geographic ranges. Despite the high phenotypic variation observed in this clade, to date an exhaustive morphological analysis of their anatomy has still not been performed, much less in relation to internal structures. Here, we present a comprehensive skeletal description of a mantellid species, Blommersia transmarina, from the island of Mayotte in the Indian Ocean, which has potentially undergone a process of moderate gigantism compared to other Blommersia species. We describe its intraspecific skeletal variation utilizing non-destructive volume renderings from μCT-scans, and characterize the presence of sexual dimorphism and size covariation in skeletal structures. Notably, we found numerous signs of hyperossification, a novel structure for mantellids: the clavicular process, and the presence of several appendicular sesamoids. Our findings suggest that skeletal phenotypic variation in this genus may be linked to biomechanical function for reproduction and locomotion.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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