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基干辐鳍鱼类面部肌肉组织的演化

Evolution of the facial musculature in basal ray-finned fishes.

作者信息

Datovo Aléssio, Rizzato Pedro P

机构信息

1Laboratório de Ictiologia, Museu de Zoologia da Universidade de São Paulo (MZUSP), Av. Nazaré, 481, São Paulo, 04263-000 SP Brazil.

2Laboratório de Ictiologia de Ribeirão Preto (LIRP), FFCLRP, Universidade de São Paulo, Av. Bandeirantes, 3900, Ribeirão Preto, SP 14040-901 Brazil.

出版信息

Front Zool. 2018 Oct 25;15:40. doi: 10.1186/s12983-018-0285-6. eCollection 2018.

Abstract

BACKGROUND

The facial musculature is a remarkable anatomical complex involved in vital activities of fishes, such as food capture and gill ventilation. The evolution of the facial muscles is largely unknown in most major fish lineages, such as the Actinopterygii. This megadiverse group includes all ray-finned fishes and comprises approximately half of the living vertebrate species. The Polypteriformes, Acipenseriformes, Lepisosteiformes, Amiiformes, Elopiformes, and Hiodontiformes occupy basal positions in the actinopterygian phylogeny and a comparative study of their facial musculature is crucial for understanding the cranial evolution of bony fishes (Osteichthyes) as a whole.

RESULTS

The facial musculature of basal actinopterygians is revised, redescribed, and analyzed under an evolutionary perspective. We identified twenty main muscle components ontogenetically and evolutionarily derived from three primordial muscles. Homologies of these components are clarified and serve as basis for the proposition of a standardized and unifying myological terminology for all ray-finned fishes. The evolutionary changes in the facial musculature are optimized on the osteichthyan tree and several new synapomorphies are identified for its largest clades, including the Actinopterygii, Neopterygii, and Teleostei. Myological data alone ambiguously support the monophyly of the Holostei. A newly identified specialization constitutes the first unequivocal morphological synapomorphy for the Elopiformes. The myological survey additionally allowed a reinterpretation of the homologies of ossifications in the upper jaw of acipenseriforms.

CONCLUSIONS

The facial musculature proved to be extremely informative for the higher-level phylogeny of bony fishes. These muscles have undergone remarkable changes during the early radiation of ray-finned fishes, with significant implications for the knowledge of the musculoskeletal evolution of both derived actinopterygians and lobe-finned fishes (Sarcopterygii).

摘要

背景

面部肌肉组织是一个非凡的解剖复合体,参与鱼类的重要活动,如捕食和鳃呼吸。在大多数主要鱼类谱系中,如辐鳍鱼纲,面部肌肉的进化情况在很大程度上尚不清楚。这个种类繁多的类群包括所有的硬骨鱼类,约占现存脊椎动物物种的一半。多鳍鱼目、鲟形目、雀鳝目、弓鳍鱼目、海鲢目和齿鳞鱼目在辐鳍鱼系统发育中占据基部位置,对它们的面部肌肉组织进行比较研究对于理解硬骨鱼(硬骨鱼纲)整体的颅骨进化至关重要。

结果

从进化角度对面部肌肉组织进行了修订、重新描述和分析。我们在个体发育和进化上确定了二十个主要肌肉成分,它们源自三块原始肌肉。这些成分的同源性得到了阐明,并为提出所有硬骨鱼类的标准化和统一的肌学术语奠定了基础。面部肌肉组织的进化变化在硬骨鱼系统树上进行了优化,并为其最大的类群,包括辐鳍鱼纲、新鳍亚纲和真骨下纲,确定了几个新的共衍征。仅肌学数据对全骨鱼目的单系性支持不明确。一个新确定的特化特征构成了海鲢目的第一个明确的形态共衍征。肌学调查还允许对鲟形目上颌骨骨化的同源性进行重新解释。

结论

面部肌肉组织被证明对硬骨鱼的高级系统发育极具信息价值。这些肌肉在硬骨鱼类的早期辐射过程中发生了显著变化,这对了解衍生辐鳍鱼和肉鳍鱼(肉鳍鱼纲)的肌肉骨骼进化具有重要意义。

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