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耳形类上鳃器官的比较解剖学

Comparative anatomy of otomorphan epibranchial organs.

作者信息

Evans Allyson J, Egan Joshua P, Huie Jonathan M, Hernandez L Patricia

机构信息

Department of Biological Sciences, The George Washington University, Washington, DC, USA.

Bell Museum of Natural History, University of Minnesota, Saint Paul, Minnesota, USA.

出版信息

Anat Rec (Hoboken). 2026 Jan;309(1):82-104. doi: 10.1002/ar.25663. Epub 2025 Mar 31.

Abstract

Certain microphagous fishes possess an epibranchial organ (EBO), a paired muscular pocket-like structure in the posterior pharynx, that facilitates the aggregation of small food items entering the oropharyngeal cavity. Morphologically complex and phylogenetically diverse, the anatomy of EBOs has been described in a small number of taxa that possess this structure, in many cases without a thorough investigation at the microscopic and ultrastructural level. Additionally, the evolution of EBOs has not been rigorously examined within a phylogenetic comparative context, leaving many unanswered questions about how the morphological diversity of EBOs relates to historical patterns and ecology. We characterized the anatomy, histological architecture, and structural patterns of EBOs in 13 otomorphan species belonging to the orders Clupeiformes, Gonorynchiformes, and Characiformes; this sampling includes Cetengraulis edentulus, Nematalosa come, and Tenualosa thibaudeaui, in which the presence of an EBO has not been previously documented. We then conducted a preliminary investigation of relationships between otomorphan EBO anatomy, phylogeny, and diet. Patterns of anatomical diversity were best explained by variation along five morphological axes: shape, size, associated gill rakers, muscularity, and adiposity. EBOs consisted of bilaterally paired diverticula surrounded by layers of circumferential and longitudinal muscle and varying amounts of adipose tissue. Papillae were found in the epithelium lining the diverticulum of each organ; they varied in length and width along the proximodistal axis of the diverticulum and were studded with mucus-producing cells. We found that EBO anatomy was not strongly correlated with phylogenetic relatedness but was moderately correlated with diet in some instances. We hypothesize that EBOs have independently evolved in Otomorpha multiple times via a conserved developmental pathway that makes use of the same underlying tissue types to construct morphologically diverse structures. These findings suggest that there are multiple ways to build an EBO using the same basic anatomical components to achieve the same functional goal-the aggregation of small prey.

摘要

某些食微鱼类拥有鳃上器官(EBO),这是一种位于咽后部的成对的肌肉袋状结构,有助于聚集进入口咽腔的小食物颗粒。鳃上器官在形态上复杂且系统发育多样,少数拥有该结构的分类群已对其解剖结构进行了描述,但在许多情况下,并未在微观和超微结构层面进行深入研究。此外,鳃上器官的进化尚未在系统发育比较的背景下进行严格审查,这使得关于鳃上器官的形态多样性如何与历史模式和生态相关的许多问题仍未得到解答。我们对鲱形目、鼠鱚目和脂鲤目13种骨鳔鱼类的鳃上器官的解剖结构、组织学结构和结构模式进行了表征;该样本包括无齿小公鱼、长吻棱鳀和蒂氏棱鳀,此前尚未记录到它们存在鳃上器官。然后,我们对骨鳔鱼类鳃上器官的解剖结构、系统发育和饮食之间的关系进行了初步研究。解剖多样性模式最好通过沿五个形态轴的变化来解释:形状、大小、相关鳃耙、肌肉发达程度和脂肪含量。鳃上器官由双侧成对的憩室组成,周围环绕着环形和纵向肌肉层以及不同数量的脂肪组织。在每个器官憩室的上皮中发现了乳头;它们在憩室的近端到远端轴上长度和宽度各不相同,并布满了分泌黏液的细胞。我们发现,鳃上器官的解剖结构与系统发育关系没有很强的相关性,但在某些情况下与饮食有适度的相关性。我们假设,鳃上器官在骨鳔鱼类中通过一条保守的发育途径多次独立进化,该途径利用相同的基础组织类型构建形态多样的结构。这些发现表明,使用相同的基本解剖成分构建鳃上器官有多种方式,以实现相同的功能目标——聚集小型猎物。

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