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Methyl-CpG binding domain proteins inhibit interspecies courtship and promote aggression in Drosophila

机译:甲基-CpG结合域蛋白抑制果蝇之间的求偶并促进果蝇的侵略性

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摘要

Reproductive isolation and speciation are driven by the convergence of environmental and genetic variation. The integration of these variation sources is thought to occur through epigenetic marks including DNA methylation. Proteins containing a methyl-CpG-binding domain (MBD) bind methylated DNA and interpret epigenetic marks, providing a dynamic yet evolutionarily adapted cellular output. Here, we report the Drosophila MBD-containing proteins, dMBD-R2 and dMBD2/3, contribute to reproductive isolation and survival behavioral strategies. Drosophila melanogaster males with a reduction in dMBD-R2 specifically in octopamine (OA) neurons exhibit courtship toward divergent interspecies D. virilis and D. yakuba females and a decrease in conspecific mating success. Conspecific male-male courtship is increased between dMBD-R2-deficient males while aggression is reduced. These changes in adaptive behavior are separable as males with a hypermethylated OA neuronal genome exhibited a decrease in aggression without altering male-male courtship. These results suggest Drosophila MBD-containing proteins are required within the OA neural circuitry to inhibit interspecies and conspecific male-male courtship and indicate that the genetically hard-wired neural mechanisms enforcing behavioral reproductive isolation include the interpretation of the epigenome.
机译:生殖隔离和物种形成是由环境和遗传变异的趋同驱动的。这些变异源的整合被认为是通过表观遗传标记(包括DNA甲基化)发生的。含有甲基CpG结合域(MBD)的蛋白质结合甲基化的DNA并解释表观遗传标记,从而提供动态而又进化适应的细胞输出。在这里,我们报告果蝇含MBD的蛋白质dMBD-R2和dMBD2 / 3,有助于生殖分离和生存行为策略。果蝇黑腹果蝇雄性,尤其是章鱼胺(OA)神经元中的dMBD-R2减少,表现出对不同种间的D. virilis和D. yakuba雌性的求爱,而同种交配成功率降低。 dMBD-R2缺陷型男性之间的同种雄性求爱增加,而侵略性降低。这些适应性行为的变化是可分离的,因为具有高甲基化OA神经元基因组的雄性表现出侵略性的降低,而没有改变雄性-雄性的求爱。这些结果表明,果蝇含有MBD的蛋白质在OA神经回路中是必需的,以抑制种间和同种雌雄之间的求偶关系,并表明实施行为生殖隔离的遗传硬连线神经机制包括表观基因组的解释。

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