Department of Biology, University of Konstanz, Konstanz, Germany.
School of Biology and Environmental Science, University College Dublin, Dublin, Ireland.
J Morphol. 2024 Jan;285(1):e21663. doi: 10.1002/jmor.21663.
Pelvic fins are a characteristic structure of the vertebrate Bauplan. Yet, pelvic fin loss has occurred repeatedly across a wide diversity of other lineages of tetrapods and at least 48 times in teleost fishes. This pelvic finless condition is often associated with other morphological features such as body elongation, loss of additional structures, and bilateral asymmetry. However, despite the remarkable diversity in the several thousand cichlid fish species, none of them are characterized by the complete absence of pelvic fins. Here, we examined the musculoskeletal structure and associated bilateral asymmetry in Midas cichlids (Amphilophus cf. citrinellus) that lost their pelvic fins spontaneously in the laboratory. Due to this apparent mutational loss of the pelvic girdle and fins, the external and internal anatomy are described in a series of "normal" Midas individuals and their pelvic finless sibling tankmates. First, other traits associated with teleost pelvic fin loss, the genetic basis of pelvic fin loss, and the potential for pleiotropic effects of these genes on other traits in teleosts were all reviewed. Using these traits as a guide, we investigated whether other morphological differences were associated with the pelvic girdle/fin loss. The mean values of the masses of muscle of the pectoral fin, fin ray numbers in the unpaired fins, and oral jaw tooth numbers did not differ between the two pelvic fin morphotypes. However, significant differences in meristic values of the paired traits assessed were observed for the same side of the body between morphotypes. Notably, bilateral asymmetry was found exclusively for the posterior lateral line scales. Finally, we found limited evidence of pleiotropic effects, such as lateral line scale numbers and fluctuating asymmetry between the Midas pelvic fin morphotypes. The fast and relatively isolated changes in the Midas cichlids suggest minor but interesting pleiotropic effects could accompany loss of cichlid pelvic fins.
鱼类的偶鳍是脊椎动物体轴构型的一个特征结构。然而,在其他四足动物谱系的广泛多样性中,以及在至少 48 次的硬骨鱼类中,偶鳍已经反复消失。这种无偶鳍的状态通常与其他形态特征相关,例如身体的伸长、其他结构的缺失以及双侧不对称。然而,尽管有 3000 多种慈鲷鱼类的显著多样性,它们中没有一种是完全没有偶鳍的特征。在这里,我们检查了在实验室中自发失去偶鳍的 Midas 慈鲷(Amphilophus cf. citrinellus)的肌肉骨骼结构和相关的双侧不对称性。由于这种明显的骨盆带和鳍的突变性缺失,我们在一系列“正常”的 Midas 个体及其无偶鳍的同窝兄弟姐妹的鱼中描述了外部和内部解剖结构。首先,我们回顾了与硬骨鱼类偶鳍缺失相关的其他特征、偶鳍缺失的遗传基础以及这些基因对硬骨鱼类其他特征的潜在多效性影响。使用这些特征作为指导,我们研究了是否存在其他形态差异与骨盆带/鳍缺失相关。两种偶鳍形态类型的胸鳍肌肉质量、未配对鳍的鳍条数量和口腔颌齿数量的平均值没有差异。然而,在形态类型之间,同一侧的配对特征的分类值存在显著差异。值得注意的是,双侧不对称性仅在后部侧线鳞片中发现。最后,我们发现了多效性影响的有限证据,例如 Midas 慈鲷偶鳍形态类型之间的侧线鳞片数量和波动不对称性。Midas 慈鲷的快速且相对孤立的变化表明,伴随慈鲷偶鳍缺失可能会出现较小但有趣的多效性影响。