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让我们校准时钟:连接发育机制和异时性的进化后果。

Time to synchronize our clocks: Connecting developmental mechanisms and evolutionary consequences of heterochrony.

机构信息

Department of Life Sciences, Imperial College London, Ascot, UK.

Stowers Institute for Medical Research, Kansas City, Missouri, USA.

出版信息

J Exp Zool B Mol Dev Evol. 2022 Jan;338(1-2):87-106. doi: 10.1002/jez.b.23103. Epub 2021 Nov 26.

Abstract

Heterochrony, defined as a change in the timing of developmental events altering the course of evolution, was first recognized by Ernst Haeckel in 1866. Haeckel's original definition was meant to explain the observed parallels between ontogeny and phylogeny, but the interpretation of his work became a source of controversy over time. Heterochrony took its modern meaning following the now classical work in the 1970-80s by Steven J. Gould, Pere Alberch, and co-workers. Predicted and described heterochronic scenarios emphasize the many ways in which developmental changes can influence evolution. However, while important examples of heterochrony detected with comparative morphological methods have multiplied, the more mechanistic understanding of this phenomenon lagged conspicuously behind. Considering the rapid progress in imaging and molecular tools available now for developmental biologists, this review aims to stress the need to take heterochrony research to the next level. It is time to synchronize the different levels of heterochrony research into a single analysis flow: from studies on organismal-level morphology to cells to molecules and genes, using complementary techniques. To illustrate how to achieve a more comprehensive understanding of phyletic morphological diversification associated with heterochrony, we discuss several recent case studies at various phylogenetic scales that combine morphological, cellular, and molecular analyses. Such a synergistic approach offers to more fully integrate phylogenetic and ontogenetic dimensions of the fascinating evolutionary phenomenon of heterochrony.

摘要

时变,定义为发育事件时间的改变,改变进化的过程,最早由恩斯特·海克尔在 1866 年提出。海克尔最初的定义旨在解释个体发生和系统发生之间的观察到的相似性,但随着时间的推移,他的工作的解释成为了争议的来源。时变在 20 世纪 70-80 年代史蒂文·J·古尔德、佩雷·阿尔贝尔奇和同事们的经典著作中获得了现代意义。预测和描述的时变情景强调了发育变化可以影响进化的许多方式。然而,虽然利用比较形态学方法检测到的重要时变例子已经增加,但对这种现象的更机械的理解却明显滞后。考虑到现在发育生物学家可利用的成像和分子工具的快速进步,这篇综述旨在强调将时变研究提升到一个新的水平的必要性。现在是时候将不同层次的时变研究整合到一个单一的分析流程中了:从生物体水平的形态学研究到细胞到分子和基因,使用互补的技术。为了说明如何更全面地理解与时变相关的系统发育形态多样化,我们讨论了几个最近在不同的系统发育尺度上的案例研究,这些研究结合了形态学、细胞学和分子分析。这种协同方法提供了一种更全面的方式,将进化现象时变的系统发育和个体发生维度整合在一起。

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