Department of Biomedical and Clinical Sciences, Linköping University, Linköping, Sweden.
Department of Molecular Biology, Umeå University, Umeå, Sweden.
PLoS Biol. 2021 Apr 1;19(4):e3001101. doi: 10.1371/journal.pbio.3001101. eCollection 2021 Apr.
Here, we reveal that the regulation of Drosophila odorant receptor (OR) expression during the pupal stage is permissive and imprecise. We found that directly after hatching an OR feedback mechanism both directs and refines OR expression. We demonstrate that, as in mice, dLsd1 and Su(var)3-9 balance heterochromatin formation to direct OR expression. We show that the expressed OR induces dLsd1 and Su(var)3-9 expression, linking OR level and possibly function to OR expression. OR expression refinement shows a restricted duration, suggesting that a gene regulatory critical period brings olfactory sensory neuron differentiation to an end. Consistent with a change in differentiation, stress during the critical period represses dLsd1 and Su(var)3-9 expression and makes the early permissive OR expression permanent. This induced permissive gene regulatory state makes OR expression resilient to stress later in life. Hence, during a critical period OR feedback, similar to in mouse OR selection, defines adult OR expression in Drosophila.
在这里,我们揭示了果蝇气味受体 (OR) 在蛹期的表达调控是许可和不精确的。我们发现,在刚孵化后,OR 反馈机制既指导又细化 OR 的表达。我们证明,与在小鼠中一样,dLsd1 和 Su(var)3-9 平衡异染色质形成以指导 OR 表达。我们表明,表达的 OR 诱导 dLsd1 和 Su(var)3-9 的表达,将 OR 水平和可能的功能与 OR 表达联系起来。OR 表达的细化显示出有限的持续时间,表明一个基因调控的关键时期使嗅觉感觉神经元分化结束。与分化的变化一致,关键时期的应激会抑制 dLsd1 和 Su(var)3-9 的表达,并使早期许可的 OR 表达永久化。这种诱导的许可基因调控状态使 OR 表达对以后生活中的应激具有弹性。因此,在关键时期的 OR 反馈中,类似于在小鼠 OR 选择中,决定了果蝇的成年 OR 表达。