Maleszka Ryszard, Mason Paul H, Barron Andrew B
Brief Funct Genomics. 2014 May;13(3):191-202. doi: 10.1093/bfgp/elt050. Epub 2013 Dec 12.
Researchers in the field of epigenomics are developing more nuanced understandings of biological complexity, and exploring the multiple pathways that lead to phenotypic expression. The concept of degeneracy-referring to the multiple pathways that a system recruits to achieve functional plasticity-is an important conceptual accompaniment to the growing body of knowledge in epigenomics. Distinct from degradation, redundancy and dilapidation; degeneracy refers to the plasticity of traits whose function overlaps in some environments, but diverges in others. While a redundant system is composed of repeated identical elements performing the same function, a degenerate system is composed of different elements performing similar or overlapping functions. Here, we describe the degenerate structure of gene regulatory systems from the basic genetic code to flexible epigenomic modifications, and discuss how these structural features have contributed to organism complexity, robustness, plasticity and evolvability.
表观基因组学领域的研究人员正在对生物复杂性形成更细致入微的理解,并探索导致表型表达的多种途径。简并性概念——指系统为实现功能可塑性而采用的多种途径——是表观基因组学中不断增长的知识体系的一个重要概念补充。与降解、冗余和破旧不同;简并性指的是性状的可塑性,其功能在某些环境中重叠,但在其他环境中则不同。虽然冗余系统由执行相同功能的重复相同元件组成,但简并系统由执行相似或重叠功能的不同元件组成。在这里,我们描述了从基本遗传密码到灵活的表观基因组修饰的基因调控系统的简并结构,并讨论了这些结构特征如何促成了生物体的复杂性、稳健性、可塑性和进化能力。