Skawiński Tomasz, Skórzewski Grzegorz, Borczyk Bartosz
Department of Evolutionary Biology and Conservation of Vertebrates, University of Wroclaw, Wrocław, Poland.
Museum of Natural History, University of Wroclaw, Wrocław, Poland.
PeerJ. 2021 Jun 17;9:e11621. doi: 10.7717/peerj.11621. eCollection 2021.
Despite the long history of embryological studies of squamates, many groups of this huge clade have received only limited attention. One such understudied group is the anguimorphs, a clade comprising morphologically and ecologically very diverse lizards. We describe several stages of embryonic development of , a limbless, viviparous anguimorph. Interestingly, in several clutches we observe high morphological variation in characters traditionally important in classifying embryos into developmental stages. The causes of this variation remain unknown but environmental factors do not seem to be very important. Additionally, we describe the state of ossification in several perinatal specimens of . The cranial skeleton is relatively poorly ossified around the time of birth, with all of the bones constituting the braincase unfused. On the other hand, the vertebral column is well ossified, with the neurocentral sutures closed and the neural arches fused in all postatlantal vertebrae. Such an advanced state of ossification may be related to the greater importance of the vertebral column in locomotion in limbless species than in ones with fully-developed limbs. Numerous factors seem to affect the state of ossification at the time of hatching or birth in squamates, including phylogenetic position, mode of reproduction and, potentially, limblessness. However, data from a greater number of species are needed to reach firmer conclusions about the relative importance of these variables in certain clades.
尽管有鳞目动物的胚胎学研究历史悠久,但这个庞大分支中的许多类群受到的关注仍然有限。其中一个研究不足的类群是蛇蜥类,这是一个包含形态和生态上非常多样化蜥蜴的分支。我们描述了一种无肢、胎生蛇蜥类动物胚胎发育的几个阶段。有趣的是,在几个窝中,我们观察到在传统上对将胚胎分类到发育阶段很重要的特征上存在高度的形态变异。这种变异的原因仍然未知,但环境因素似乎不太重要。此外,我们描述了该物种几个围产期标本的骨化状态。出生时颅骨骨骼的骨化相对较差,构成脑壳的所有骨头都未融合。另一方面,脊柱骨化良好,神经中央缝线闭合,所有寰椎后的椎骨神经弓融合。这种先进的骨化状态可能与无肢物种中脊柱在运动中的重要性比有完全发育肢体的物种更大有关。许多因素似乎会影响有鳞目动物孵化或出生时的骨化状态,包括系统发育位置、繁殖方式以及可能的无肢状态。然而,需要来自更多物种的数据才能就这些变量在某些类群中的相对重要性得出更确凿的结论。