马拉维慈鲷早期胚胎发生的形态和时间变化有助于物种分化

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-02-07 DOI:10.1111/ede.12429
Aleksandra Marconi, Cassandra Zie Yang, Samuel McKay, M. Emília Santos
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引用次数: 3

摘要

慈鲷是现存最大的脊椎动物科,是快速“爆炸性”适应性辐射和表型多样化的典型例子。尽管遗传分化程度较低,但东非慈鲷在种内和种间形态多样性惊人,包括高度可变的神经嵴(NC)衍生特征,如颜色和颅面骨骼。尽管已经研究了这些表型的遗传和发育基础,但对个体发育中物种特异性差异出现的时间和具体时间的理解仍然有限。由于成体性状通常起源于胚胎发育过程,胚胎发生过程可能是物种特异性变异的潜在来源。因此,我们设计了一个分期系统,通过该系统,我们比较了三种马拉维鲷鱼(astatotilapia calliptera, Tropheops sp. ' mauve '和Rhamphochromis sp. ' chilingali ')的胚胎发生特征,代表了色素沉着和颅面形态的广泛变化。我们的研究结果表明,胚胎发生的多个方面存在根本差异,这可能是成体适应性状的种间差异的基础。首先,我们确定了体质体数量的变化和体质体形成速率的时间变化或异时性特征。在整个个体发育过程中,直到幼鱼阶段,种内和种间的异时性也很明显。最后,已确定的色素沉着和颅面软骨发育的种间差异,存在于其显性形成的最早阶段,提供了令人信服的证据,表明物种特异性轨迹在早期胚胎发生时开始分化,可能在体细胞发育和NC发育期间。总之,我们的研究结果扩展了我们对基础慈鲷生物学的理解,并为脊椎动物形态多样性的发育起源提供了新的见解。
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Morphological and temporal variation in early embryogenesis contributes to species divergence in Malawi cichlid fishes

The cichlid fishes comprise the largest extant vertebrate family and are the quintessential example of rapid “explosive” adaptive radiations and phenotypic diversification. Despite low genetic divergence, East African cichlids harbor a spectacular intra- and interspecific morphological diversity, including the hyper-variable, neural crest (NC)-derived traits such as coloration and craniofacial skeleton. Although the genetic and developmental basis of these phenotypes has been investigated, understanding of when, and specifically how early, in ontogeny species-specific differences emerge, remains limited. Since adult traits often originate during embryonic development, the processes of embryogenesis could serve as a potential source of species-specific variation. Consequently, we designed a staging system by which we compare the features of embryogenesis between three Malawi cichlid species—Astatotilapia calliptera, Tropheops sp. ‘mauve’ and Rhamphochromis sp. “chilingali”—representing a wide spectrum of variation in pigmentation and craniofacial morphologies. Our results showed fundamental differences in multiple aspects of embryogenesis that could underlie interspecific divergence in adult adaptive traits. First, we identified variation in the somite number and signatures of temporal variation, or heterochrony, in the rates of somite formation. The heterochrony was also evident within and between species throughout ontogeny, up to the juvenile stages. Finally, the identified interspecific differences in the development of pigmentation and craniofacial cartilages, present at the earliest stages of their overt formation, provide compelling evidence that the species-specific trajectories begin divergence during early embryogenesis, potentially during somitogenesis and NC development. Altogether, our results expand our understanding of fundamental cichlid biology and provide new insights into the developmental origins of vertebrate morphological diversity.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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