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心脏腔室的进化起源。

The evolutionary origin of cardiac chambers.

作者信息

Simões-Costa Marcos S, Vasconcelos Michelle, Sampaio Allysson C, Cravo Roberta M, Linhares Vania L, Hochgreb Tatiana, Yan Chao Y I, Davidson Brad, Xavier-Neto José

机构信息

Laboratório de Genética e Cardiologia Molecular, Instituto do Coração, Hospital das Clínicas, Faculdade de Medicina, Universidade de São Paulo, São Paulo-SP 05403-900, Brazil.

出版信息

Dev Biol. 2005 Jan 1;277(1):1-15. doi: 10.1016/j.ydbio.2004.09.026.

Abstract

Identification of cardiac mechanisms of retinoic acid (RA) signaling, description of homologous genetic circuits in Ciona intestinalis and consolidation of views on the secondary heart field have fundamental, but still unrecognized implications for vertebrate heart evolution. Utilizing concepts from evolution, development, zoology, and circulatory physiology, we evaluate the strengths of animal models and scenarios for the origin of vertebrate hearts. Analyzing chordates, lower and higher vertebrates, we propose a paradigm picturing vertebrate hearts as advanced circulatory pumps formed by segments, chambered or not, devoted to inflow or outflow. We suggest that chambers arose not as single units, but as components of a peristaltic pump divided by patterning events, contrasting with scenarios assuming that chambers developed one at a time. Recognizing RA signaling as a potential mechanism patterning cardiac segments, we propose to use it as a tool to scrutinize the phylogenetic origins of cardiac chambers within chordates. Finally, we integrate recent ideas on cardiac development such as the ballooning and secondary/anterior heart field paradigms, showing how inflow/outflow patterning may interact with developmental mechanisms suggested by these models.

摘要

确定视黄酸(RA)信号传导的心脏机制、描述海鞘中的同源基因回路以及巩固对第二心脏场的观点,对脊椎动物心脏进化具有根本性但仍未被认识到的意义。利用进化、发育、动物学和循环生理学的概念,我们评估了动物模型以及脊椎动物心脏起源假说的优势。通过分析脊索动物、低等和高等脊椎动物,我们提出了一个范例,将脊椎动物心脏描绘为由负责流入或流出的节段(无论是否有腔室)形成的高级循环泵。我们认为腔室并非作为单个单元出现,而是作为由模式形成事件划分的蠕动泵的组成部分,这与认为腔室是一次发育一个的假说形成对比。认识到RA信号传导是一种潜在的模式形成心脏节段的机制,我们建议将其用作审视脊索动物内心脏腔室系统发育起源的工具。最后,我们整合了有关心脏发育的最新观点,如膨胀和第二/前心脏场范例,展示了流入/流出模式如何与这些模型所提出的发育机制相互作用。

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