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Waddingtons canalization revisited: Developmental stability and evolution

机译:重温沃丁顿的运河化:发展的稳定性和演变

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摘要

Most species maintain abundant genetic variation and experience a range of environmental conditions, yet phenotypic variation is low. That is, development is robust to changes in genotype and environment. It has been claimed that this robustness, termed canalization, evolves because of long-term natural selection for optimal phenotypes. We show that the developmental process, here modeled as a network of interacting transcriptional regulators, constrains the genetic system to produce canalization, even without selection toward an optimum. The extent of canalization, measured as the insensitivity to mutation of a network's equilibrium state, depends on the complexity of the network, such that more highly connected networks evolve to be more canalized. We argue that canalization may be an inevitable consequence of complex developmental–genetic processes and thus requires no explanation in terms of evolution to suppress phenotypic variation.
机译:大多数物种保持丰富的遗传变异并经历一系列环境条件,但表型变异较低。即,发育对于基因型和环境的变化是健壮的。有人声称,这种鲁棒性(称为渠化)是由于长期自然选择最佳表型而发展而来的。我们表明,这里的发展过程被建模为相互作用的转录调节因子的网络,它限制了遗传系统产生渠化,即使没有向最佳选择。渠化的程度(以对网络平衡状态突变的不敏感度来衡量)取决于网络的复杂性,因此,连接程度更高的网络将变得更加渠化。我们认为,渠化可能是复杂的发育-遗传过程的必然结果,因此不需要就抑制表型变异的进化进行解释。

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