鸡驯化中的软骨颅骨变异

IF 1.8 3区 生物学 Q3 DEVELOPMENTAL BIOLOGY Journal of experimental zoology. Part B, Molecular and developmental evolution Pub Date : 2022-10-03 DOI:10.1002/jez.b.23177
Daniel Núñez-León, Hiroshi Nagashima, Marcelo R. Sánchez-Villagra
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引用次数: 1

摘要

软骨头盖骨是颅骨的一个关键结构,但我们对其胚胎发育的了解主要是基于对整个分类群中几个阶段的研究。软骨颅骨特征的变异是已知的跨物种,但对种内变异或其在驯化背景下的进化知之甚少。在这里,我们在胚胎发育的三个窗口中研究了软骨颅骨的两种特定结构。其中一种结构的解剖结构也在成年鸡和它们的野生祖先(红丛林鸮[RJF])的头骨中进行了比较。圆锥突和鼻前突,以及眶鼻孔周围区域,在整个个体发育过程和成人中呈现变化。从研究的最早阶段到成年阶段,圆锥突表现出明显的变化。眼窝孔的数量也被发现在研究的祖先和品种中是可变的。此外,在早期胚胎发育过程中,不同品种和RJF的鼻前过程相似,但在胚胎发育后期,这种结构呈现不同的状态。这里发现的胚胎和成体变异可能是驯化下种内变异的一个例子,这是由发育过程中不同类型的组织相互关系引起的。
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Chondrocranial variation in chicken domestication

The chondrocranium is a key structure of the skull, but our knowledge of its embryonic development is based mostly on investigations of few stages across taxa. Variation of chondrocranial features is known across species, but little is known about intraspecific variation, or its evolution in the context of domestication. Here, we investigated two specific structures of the chondrocranium in three windows of embryonic development. The anatomy of one of these structures was also compared among adult skulls of chickens and their wild ancestor (red junglefowl [RJF]). The proccesus tectalis and the prenasal process, along with the surrounding area of the orbitonasal foramina, presented variation throughout the ontogeny and in the adults. The processus tectalis showed distinct variation from the earliest stage studied to the adult. The numbers of orbitonasal foramina were also found to be variable in the ancestor and breeds studied. Furthermore, during early embryonic development, the prenasal process is similar across breeds and RJF, but later in embryonic development this structure presents variable states. The embryonic and adult variation found herein could be an example of intraspecific variation under domestication, resulting from different types of tissue interrelationship during development.

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来源期刊
CiteScore
4.80
自引率
9.10%
发文量
63
审稿时长
6-12 weeks
期刊介绍: Developmental Evolution is a branch of evolutionary biology that integrates evidence and concepts from developmental biology, phylogenetics, comparative morphology, evolutionary genetics and increasingly also genomics, systems biology as well as synthetic biology to gain an understanding of the structure and evolution of organisms. The Journal of Experimental Zoology -B: Molecular and Developmental Evolution provides a forum where these fields are invited to bring together their insights to further a synthetic understanding of evolution from the molecular through the organismic level. Contributions from all these branches of science are welcome to JEZB. We particularly encourage submissions that apply the tools of genomics, as well as systems and synthetic biology to developmental evolution. At this time the impact of these emerging fields on developmental evolution has not been explored to its fullest extent and for this reason we are eager to foster the relationship of systems and synthetic biology with devo evo.
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