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埃奇沃思关于颅肌发育的遗产,并对鳐形鱼类(软骨鱼纲:鳐目)腹侧鳃弓区域的肌肉进行分析。

Edgeworth's legacy of cranial muscle development with an analysis of muscles in the ventral gill arch region of batoid fishes (Chondrichthyes: Batoidea).

作者信息

Miyake T, McEachran J D, Hall B K

机构信息

Department of Biology, Dalhousie University, Halifax, Nova Scotia, Canada.

出版信息

J Morphol. 1992 Jun;212(3):213-56. doi: 10.1002/jmor.1052120304.

Abstract

A series of studies by Edgeworth demonstrated that cranial muscles of gnathostome fishes are embryologically of somitic origin, originating from the mandibular, hyoid, branchial, epibranchial, and hypobranchial muscle plates. Recent experimental studies using quail-chick chimeras support Edgeworth's view on the developmental origin of cranial muscles. One of his findings, the existence of the premyogenic condensation constrictor dorsalis in teleost fishes, has also been confirmed by molecular developmental studies. Therefore, developmental mechanisms for patterning of cranial muscles, as described and implicated by Edgeworth, may serve as structural entities or regulatory phenomena responsible for developmental and evolutionary changes. With Edgeworth's and other studies as background, muscles in the ventral gill arch region of batoid fishes are analyzed and compared with those of other gnathostome fishes. The spiracularis is regarded as homologous at least within batoid fishes, but its status within elasmobranchs remains unclear; developmental modifications of the spiracularis proper are evident in some batoid fishes and in several shark groups. The peculiar ventral extension of the spiracularis in electric rays and some stingrays may represent convergence, probably facilitating ventilation and/or feeding in both groups. The evolutionary origin of the "internus" and "externus" remains uncertain, despite the fact that a variety of forms of the constrictor superficiales ventrales in batoid fishes indicates an actual medio-ventral extension of the "externus." The intermandibularis is probably present only in electric rays. The "X" muscle occurs only in electric rays and is considered to be Edgeworth's intermandibularis profundus. Its association with the adductor mandibular complex in narkinidid and narcinidid electric rays may relate to its functional role in lower jaw movement. Contrary to common belief, in most batoid fishes as well as some sharks, muscles that originate from the branchial muscle plate and extend medially in the ventral gill arches do exist: the medial extension of the interbranchiales in most batoid fishes and some sharks and the "Y" muscle in the pelagic stingrays Myliobatos and Rhinoptera. The latter is another example of the medial extension of the "internus." Whether the interbranchiales and "Y" muscle are homologous within elasmobranchs and whether homologous with the obliques ventrales and/or transversi ventrales of osteichthyan fishes await further research. Four hypobranchial muscles are recognized in batoid fishes: the coracomandibularis, coracohyoideus, coracoarcualis, and coracohyomandibularis. The coracohyoideus is discrete from the coracoarcualis; its complete structural separation from the latter occurs in several groups of batoid fishes.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

埃奇沃思的一系列研究表明,有颌类鱼类的颅部肌肉在胚胎学上起源于体节,源自下颌、舌、鳃、鳃上和鳃下肌板。最近使用鹌鹑 - 鸡嵌合体进行的实验研究支持了埃奇沃思关于颅部肌肉发育起源的观点。他的一项发现,即硬骨鱼类中存在原肌凝聚背侧缩肌,也已得到分子发育研究的证实。因此,埃奇沃思所描述和暗示的颅部肌肉模式形成的发育机制,可能是负责发育和进化变化的结构实体或调节现象。以埃奇沃思的研究及其他研究为背景,对鳐形目鱼类腹侧鳃弓区域的肌肉进行了分析,并与其他有颌类鱼类的肌肉进行了比较。旋肌至少在鳐形目鱼类中被认为是同源的,但其在板鳃亚纲中的地位仍不清楚;旋肌本身的发育变化在一些鳐形目鱼类和几个鲨鱼类群中很明显。电鳐和一些鲼形鳐中旋肌独特的腹侧延伸可能代表趋同进化,可能有利于两组鱼类的呼吸和/或摄食。“内肌”和“外肌”的进化起源仍然不确定,尽管鳐形目鱼类中腹侧浅缩肌的多种形式表明“外肌”实际上有向中腹侧延伸。下颌间肌可能仅存在于电鳐中。“X”肌仅存在于电鳐中,被认为是埃奇沃思所说的下颌间深肌。它在电鲼科和单鳍电鲼科电鳐中与下颌收肌复合体的关联可能与其在下颌运动中的功能作用有关。与普遍看法相反,在大多数鳐形目鱼类以及一些鲨鱼中,确实存在起源于鳃肌板并在腹侧鳃弓中向内侧延伸的肌肉:大多数鳐形目鱼类和一些鲨鱼中鳃间肌的内侧延伸,以及远洋鲼形鳐Myliobatos和Rhinoptera中的“Y”肌。后者是“内肌”内侧延伸的另一个例子。鳃间肌和“Y”肌在板鳃亚纲中是否同源,以及是否与硬骨鱼类的腹侧斜肌和/或腹侧横肌同源,还有待进一步研究。在鳐形目鱼类中识别出四块鳃下肌:喙下颌肌、喙舌骨肌、喙弓肌和喙舌颌肌。喙舌骨肌与喙弓肌是分开的;在几组鳐形目鱼类中,它与后者完全在结构上分离。(摘要截于400字)

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