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Genomic responses to behavioral interactions in an African cichlid fish: mechanisms and evolutionary implications.

机译:基因组对非洲丽鱼科鱼行为相互作用的反应:机制和进化意义。

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Phenotypic plasticity in Astatotilapia burtoni allows individual males to alternate between dominant and subordinate status, two physiologically and behaviorally distinct phenotypes. Because these phenotypes are completely reversible, they provide an excellent model for studying the molecular mechanisms of phenotypic plasticity. The ability to express alternate phenotypes in A. burtoni depends on the ability to regulate gene expression on both short- and long-term time scales. Previous studies have demonstrated that dominant males, who have increased reproductive capacity, have higher expression of several genes involved in reproduction (e.g., genes for steroid receptors). These differences in gene expression and reproductive physiology are controlled by interactions among males. Recently, it was found that the same interactions that lead to stable long-term changes in gene expression also induce short-term and transient changes in expression of egr-1, an immediate-early gene transcription factor. Thisimmediate-early gene response is part of a general mechanism for mediating changes in gene expression that underlie phenotypic plasticity. Longer stable changes in gene expression must involve other mechanisms, such as dynamic modifications of the epigenome. Recent data suggests a direct link between the immediate-early gene response and epigenetic modifications. These mechanisms which link behavioral interactions to changes in gene expression allow phenotypic variation to occur without corresponding changes in the genome and, as a consequence, they have implications for evolution. In the case of A. burtoni, phenotypic plasticity is likely to slow evolution because it produces highly adapted phenotypes under the primary niches encountered in the life-history of the species and the plasticity itself is likely to be an adaptive trait.
机译:burasti burtoni的表型可塑性允许单个雄性在显性和从属状态,两种生理和行为不同的表型之间交替。由于这些表型是完全可逆的,因此它们为研究表型可塑性的分子机制提供了一个极好的模型。 burtoni中表达其他表型的能力取决于在短期和长期尺度上调节基因表达的能力。先前的研究表明,具有较高生殖能力的显性雄性具有与生殖有关的几种基因(例如,类固醇受体的基因)的较高表达。这些基因表达和生殖生理上的差异由雄性之间的相互作用控制。最近,发现导致基因表达稳定长期变化的相同相互作用也诱导了egr-1(即即早基因转录因子)表达的短期和瞬时变化。这种立即早期的基因应答是介导表型可塑性基础的基因表达变化的一般机制的一部分。基因表达的更长久稳定变化必须涉及其他机制,例如表观基因组的动态修饰。最近的数据表明立即早期基因反应和表观遗传修饰之间的直接联系。这些将行为相互作用与基因表达变化联系起来的机制使表型变异发生而基因组中没有相应的变化,因此,它们对进化有影响。对于伯顿曲霉,表型可塑性可能会减慢进化,因为它会在该物种的生活史中遇到的主要生态位下产生高度适应的表型,而可塑性本身很可能是一种适应性状。

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