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盘基网柄菌的发育表现出一种新颖的进化保守模式。

Dictyostelium development shows a novel pattern of evolutionary conservation.

机构信息

Department of Biology, Washington University in St. Louis, St. Louis, USA.

出版信息

Mol Biol Evol. 2013 Apr;30(4):977-84. doi: 10.1093/molbev/mst007. Epub 2013 Jan 16.

Abstract

von Baer's law states that early stages of animal development are the most conserved. More recent evidence supports a modified "hourglass" pattern in which an early but somewhat later stage is most conserved. Both patterns have been explained by the relative complexity of either temporal or spatial interactions; the greatest conservation and lowest evolvability occur at the time of the most complex interactions, because these cause larger effects that are harder for selection to alter. This general kind of explanation might apply universally across independent multicellular systems, as supported by the recent finding of the hourglass pattern in plants. We use RNA-seq expression data from the development of the slime mold Dictyostelium to demonstrate that it does not follow either of the two canonical patterns but instead tends to show the strongest conservation and weakest evolvability late in development. We propose that this is consistent with a version of the spatial constraints model, modified for organisms that never achieve a high degree of developmental modularity.

摘要

冯·贝尔法则指出,动物发育的早期阶段是最保守的。最近的证据支持一种经过修正的“沙漏”模式,即在稍早的阶段中,保守性最高。这两种模式都可以通过时间或空间相互作用的相对复杂性来解释;在最复杂的相互作用时期,发生最大的保守性和最低的可进化性,因为这些相互作用会产生更大的影响,选择更难改变。这种一般性的解释可能普遍适用于独立的多细胞系统,最近在植物中发现的沙漏模式也支持了这一点。我们使用从黏菌盘基网柄菌的发育过程中获得的 RNA-seq 表达数据来证明,它既不符合两种典型模式,也不符合空间约束模型,而是在发育后期表现出最强的保守性和最弱的可进化性。我们提出,这与一种空间约束模型的版本一致,该模型经过修改,适用于从未达到高度发育模块化的生物体。

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