Avian models and the study of invariant asymmetry: how the chicken and the egg taught us to tell right from left.

Anne H Monsoro-Burq, Michael Levin
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引用次数: 14

Abstract

While the external vertebrate body plan appears bilaterally symmetrical with respect to anterior-posterior and dorsal-ventral axes, the internal organs are arranged with a striking and invariant left-right asymmetry. This laterality is important for normal body function, as alterations manifest as numerous human birth defect syndromes. The left-right axis is set up very early during embryogenesis by an initial and still poorly understood break in bilateral symmetry, followed by a cascade of molecular events that was discovered 20 years ago in the chick embryo model. This gene regulatory network leads to activation of the pitx2 gene on the left side of the embryo which ultimately establishes asymmetric organogenesis of the heart, gut, brain, and other organs. In this review, we highlight the crucial contributions of the avian model to the discovery of the differential transcriptional cascades operating on the Left and Right sides, as well as to the physiological events operating upstream of asymmetric gene expression. The chick was not only instrumental in the discovery of mechanisms behind left-right patterning, but stands poised to facilitate inroads into the most fundamental aspects that link asymmetry to the rest of evolutionary developmental biology.

鸟类模型和不变不对称的研究:鸡和蛋如何教会我们分辨左右。
虽然外部脊椎动物的身体平面相对于前后轴和背腹轴似乎是两侧对称的,但内部器官的排列却具有显著且不变的左右不对称。这种侧边对正常的身体功能很重要,因为许多人类出生缺陷综合征都表现出这种改变。左右轴是在胚胎发生的早期建立起来的,这是由于最初的双边对称的破坏,人们对这种破坏知之甚少,随后是20年前在鸡胚胎模型中发现的一系列分子事件。这种基因调控网络导致胚胎左侧pitx2基因的激活,最终建立心脏、肠道、大脑和其他器官的不对称器官发生。在这篇综述中,我们强调了鸟类模型在发现左右两侧的差异转录级联反应以及不对称基因表达上游的生理事件方面的重要贡献。这只小鸡不仅有助于发现左右模式背后的机制,而且还有助于研究将不对称与进化发育生物学的其他部分联系起来的最基本方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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