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Murine Pheromone Proteins Constitute a Context-Dependent Combinatorial Code Governing Multiple Social Behaviors

机译:鼠信息素蛋白组成了一种上下文相关的组合代码,用于控制多种社会行为

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摘要

During social interactions, an individual's behavior is largely governed by the subset of signals emitted by others. Discrimination of "self" from "other" regulates the territorial urine countermarking behavior of mice. To identify the cues for this social discrimination and understand how they are interpreted, we designed an olfactory-dependent countermarking assay. We find major urinary proteins (MUPs) sufficient to elicit countermarking, and unlike other vomeronasal ligands that are detected by specifically tuned sensory neurons, MUPs are detected by a combinatorial strategy. A chemosensory signature of "self" that modulates behavior is developed via experience through exposure to a repertoire of MUPs. In contrast, aggression can be elicited by MUPs in an experience-independent but contextdependent manner. These findings reveal that individually emitted chemical cues can be interpreted based on their combinatorial permutation and relative ratios, and they can transmit both fixed and learned information to promote multiple behaviors.
机译:在社交互动中,一个人的行为很大程度上受他人发出的信号的支配。将“自我”与“其他”区分开来,可调节小鼠的尿液反制行为。为了确定这种社会歧视的线索并理解它们的解释方式,我们设计了一种依赖嗅觉的抗标记法。我们发现主要的尿蛋白(MUPs)足以引起抗标记作用,并且与通过特定调整的感觉神经元检测到的其他犁鼻配体不同,MUPs通过组合策略检测。通过暴露于MUP的全部经验,可以开发出调节行为的“自我”的化学感觉特征。相反,MUP可以以与经验无关但与上下文有关的方式引发侵略。这些发现表明,可以根据它们的组合排列和相对比率来解释单独发出的化学线索,并且它们可以传递固定和学习的信息以促进多种行为。

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