The role of heterotopy and heterochrony during morphological diversification of otocephalan epibranchial organs

IF 2.6 3区 生物学 Q2 DEVELOPMENTAL BIOLOGY Evolution & Development Pub Date : 2022-06-16 DOI:10.1111/ede.12401
Karly E. Cohen, Acacia L. Ackles, L. Patricia Hernandez
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引用次数: 2

Abstract

Epibranchial organs (EBOs), found in at least five of the eight otomorphan families, are used to aggregate small prey inside the buccopharyngeal cavity and range in morphological complexity from a singular, small slit on the pharyngeal roof to several, elongated soft tissue tubes. Despite broad phylogenetic representation, little is known about the origin, development, or evolution of EBOs. We hypothesize that both heterochronic and heterotopic changes throughout the evolution of EBOs are at the root of their morphological diversity. Heterochrony is a foundational explanation in developmental studies, however, heterotopy, a developmental change in spatial or topographical relationships, can have even more profound effects on a given structure but has received relatively little attention. Here, we investigate how developmental mechanisms may drive morphological diversity of EBOs within otomorphan fishes. We compare early pharyngeal development in three species, Anchoa mitchilli (Engraulidae) which has the most basic EBO, B. tyrannus (Clupeidae) which has a more complex EBO, and Hypophthalmichthys molitrix (Cyprinidae) which has the most complex EBO yet described. Using branchial arch growth rates and morphological analyses, we illustrate how both heterochronic and heterotopic mechanisms are responsible for some of the phenotypic diversity seen in otomorphan EBOs. Importantly, we also identify conserved developmental patterns that further our understanding of how EBOs may have first originated and evolved across actinopterygian fishes.

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异位和异时性在耳头鳃外器官形态多样化中的作用
鳃外器官(EBOs),在8个咽形动物科中至少有5个被发现,用于聚集咽腔内的小型猎物,其形态复杂,从咽顶的单个小缝到几个细长的软组织管。尽管具有广泛的系统发育代表性,但对EBOs的起源、发展或进化知之甚少。我们假设,在整个进化过程中的异时性和异位性变化是其形态多样性的根源。异时性是发育研究的一个基本解释,然而异位性是空间或地形关系的发育变化,对给定结构可能产生更深远的影响,但受到的关注相对较少。在这里,我们研究了发育机制如何驱动otomorphan鱼类EBOs的形态多样性。我们比较了三个物种的早期咽部发育:具有最基本EBO的鳀鱼(Engraulidae),具有更复杂EBO的B. tyrannus (Clupeidae)和具有最复杂EBO的Hypophthalmichthys molitrix (Cyprinidae)。通过对鳃弓生长速率和形态学分析,我们说明了异时性和异位性机制是如何导致otomorphan ebo中一些表型多样性的。重要的是,我们还确定了保守的发育模式,这进一步加深了我们对ebo如何在放光翼鱼类中最初起源和进化的理解。
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来源期刊
Evolution & Development
Evolution & Development 生物-发育生物学
CiteScore
6.30
自引率
3.40%
发文量
26
审稿时长
>12 weeks
期刊介绍: Evolution & Development serves as a voice for the rapidly growing research community at the interface of evolutionary and developmental biology. The exciting re-integration of these two fields, after almost a century''s separation, holds much promise as the focus of a broader synthesis of biological thought. Evolution & Development publishes works that address the evolution/development interface from a diversity of angles. The journal welcomes papers from paleontologists, population biologists, developmental biologists, and molecular biologists, but also encourages submissions from professionals in other fields where relevant research is being carried out, from mathematics to the history and philosophy of science.
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