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Epigenetic resolution of the ‘curse of complexity’ in adaptive evolution of complex traits

机译:复杂性状适应性进化中复杂性诅咒的表观遗传学解析

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摘要

The age of most genes exceeds the longevity of their genomic and physiological associations by many orders of magnitude. Such transient contexts modulate the expression of ancient genes to produce currently appropriate and often highly distinct developmental and functional outcomes. The efficacy of such adaptive modulation is diminished by the high dimensionality of complex organisms and associated vast areas of neutrality in their genotypic and developmental networks (and, thus, weak natural selection). Here I explore whether epigenetic effects facilitate adaptive modulation of complex phenotypes by effectively reducing the dimensionality of their deterministic networks and thus delineating their developmental and evolutionary trajectories even under weak selection. Epigenetic effects that link unconnected or widely dispersed elements of genotype space in ecologically relevant time could account for the rapid appearance of functionally integrated adaptive modifications. On an organismal time scale, conceptually similar processes occur during recurrent epigenetic reprogramming of somatic stem cells to produce, recurrently and reversibly, a bewildering array of differentiated and persistent cell lineages, all sharing identical genomic sequences despite strongly distinct phenotypes. I discuss whether close dependency of onset, scope and duration of epigenetic effects on cellular and genomic context in stem cells could provide insights into contingent modulation of conserved genomic material on a much longer evolutionary time scale. I review potential empirical examples of epigenetic bridges that reduce phenotype dimensionality and accomplish rapid adaptive modulation in the evolution of novelties, expression of behavioural types, and stress-induced ossification schedules.
机译:大多数基因的年龄超过其基因组和生理学关联的寿命许多数量级。这种短暂的环境调节了古代基因的表达,从而产生了当前适当的,通常是高度不同的发育和功能结果。复杂生物的高维性及其相关的基因型和发育网络中的广大中性区域(因而,自然选择较弱)削弱了这种自适应调节的功效。在这里,我探讨了表观遗传效应是否通过有效地降低其确定性网络的维数,从而描绘出它们的发展和进化轨迹,从而促进复杂表型的自适应调制,即使在选择不力的情况下也是如此。在生态相关的时间内将基因型空间的未连接或广泛分散的元素联系在一起的表观遗传效应可以解释功能整合的适应性修饰的迅速出现。在生物时间尺度上,在体细胞干细胞的反复表观遗传重编程期间,概念上类似的过程发生,以反复可逆地产生令人困惑的分化和持久性细胞谱系,尽管表型明显不同,它们都共享相同的基因组序列。我讨论了表观遗传效应的发生,范围和持续时间对干细胞中细胞和基因组环境的紧密依赖性是否可以在更长的进化时间尺度上提供对保守基因组材料的偶然调节的见解。我回顾了表观遗传桥梁的潜在经验示例,这些例子可以减少表型维数,并在新颖性,行为类型的表达和应激诱导的骨化过程中实现快速的自适应调节。

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