Womble Mandy, Pickett Melissa, Nascone-Yoder Nanette
Department of Molecular Biomedical Sciences, North Carolina State University, Raleigh, NC 27607, United States.
Department of Molecular Biomedical Sciences, North Carolina State University, Raleigh, NC 27607, United States.
Semin Cell Dev Biol. 2016 Mar;51:92-105. doi: 10.1016/j.semcdb.2016.02.001. Epub 2016 Feb 3.
The digestive system comprises numerous cells, tissues and organs that are essential for the proper assimilation of nutrients and energy. Many aspects of digestive organ function are highly conserved among vertebrates, yet the final anatomical configuration of the gut varies widely between species, especially those with different diets. Improved understanding of the complex molecular and cellular events that orchestrate digestive organ development is pertinent to many areas of biology and medicine, including the regeneration or replacement of diseased organs, the etiology of digestive organ birth defects, and the evolution of specialized features of digestive anatomy. In this review, we highlight specific examples of how investigations using Xenopus laevis frog embryos have revealed insight into the molecular and cellular dynamics of digestive organ patterning and morphogenesis that would have been difficult to obtain in other animal models. Additionally, we discuss recent studies of gut development in non-model frog species with unique feeding strategies, such as Lepidobatrachus laevis and Eleutherodactylous coqui, which are beginning to provide glimpses of the evolutionary mechanisms that may generate morphological variation in the digestive tract. The unparalleled experimental versatility of frog embryos make them excellent, integrative models for studying digestive organ development across multiple disciplines.
消化系统由众多对营养物质和能量的正常吸收至关重要的细胞、组织和器官组成。消化器官功能的许多方面在脊椎动物中高度保守,但肠道的最终解剖结构在不同物种之间差异很大,尤其是那些具有不同饮食的物种。深入了解协调消化器官发育的复杂分子和细胞事件与生物学和医学的许多领域相关,包括患病器官的再生或替换、消化器官出生缺陷的病因以及消化解剖学特殊特征的进化。在这篇综述中,我们重点介绍了一些具体例子,说明利用非洲爪蟾胚胎进行的研究如何揭示了消化器官模式形成和形态发生的分子和细胞动力学,而这些在其他动物模型中很难获得。此外,我们讨论了最近对具有独特摄食策略的非模式蛙类物种(如光滑爪蟾和寇氏雨蛙)肠道发育的研究,这些研究开始让我们瞥见可能导致消化道形态变异的进化机制。蛙胚胎无与伦比的实验多功能性使其成为跨多学科研究消化器官发育的优秀综合模型。