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Epigenetic Inheritance and Its Role in Evolutionary Biology: Re-Evaluation and New Perspectives

机译:表观遗传学及其在进化生物学中的作用:重新评价和新观点

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Epigenetics increasingly occupies a pivotal position in our understanding of inheritance, natural selection and, perhaps, even evolution. A survey of the PubMed database, however, reveals that the great majority (>93%) of epigenetic papers have an intra-, rather than an inter-generational focus, primarily on mechanisms and disease. Approximately ~1% of epigenetic papers even mention the nexus of epigenetics, natural selection and evolution. Yet, when environments are dynamic (e.g., climate change effects), there may be an “epigenetic advantage” to phenotypic switching by epigenetic inheritance, rather than by gene mutation. An epigenetically-inherited trait can arise simultaneously in many individuals, as opposed to a single individual with a gene mutation. Moreover, a transient epigenetically-modified phenotype can be quickly “sunsetted”, with individuals reverting to the original phenotype. Thus, epigenetic phenotype switching is dynamic and temporary and can help bridge periods of environmental stress. Epigenetic inheritance likely contributes to evolution both directly and indirectly. While there is as yet incomplete evidence of direct permanent incorporation of a complex epigenetic phenotype into the genome, doubtlessly, the presence of epigenetic markers and the phenotypes they create (which may sort quite separately from the genotype within a population) will influence natural selection and, so, drive the collective genotype of a population.
机译:表观遗传学在我们对遗传,自然选择甚至进化的理解中日益占据举足轻重的地位。然而,对PubMed数据库的一项调查显示,大多数(> 93%)表观遗传学论文主要是在机制和疾病上关注代内而非代际的。约1%的表观遗传学论文甚至提到表观遗传学,自然选择和进化之间的联系。然而,当环境是动态的(例如,气候变化影响)时,通过表观遗传而不是基因突变对表型转换可能具有“表观遗传优势”。表观遗传的特征可以在许多个体中同时出现,而不是具有基因突变的个体。此外,短暂的表观遗传修饰的表型可以很快“消失”,个体可以恢复到原始表型。因此,表观遗传表型转换是动态的和暂时的,可以帮助缓解环境压力。表观遗传可能直接或间接地促进进化。尽管尚不存在将复杂的表观遗传表型直接永久整合到基因组中的不完全证据,但毫无疑问,表观遗传标记和它们产生的表型的存在(可能与种群中的基因型完全不同)会影响自然选择和因此,驱动人口的集体基因型。

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