Lee Tracy, Weinberg-Wolf Hannah, Zapadka Thomas E, Rudenko Andrii, Demb Jonathan B, Kim In-Jung
Department of Ophthalmology and Visual Science, Yale University School of Medicine, New Haven, CT 06511, USA.
Department of Cellular and Molecular Physiology, Yale University School of Medicine, New Haven, CT 06511, USA.
PNAS Nexus. 2024 Sep 24;3(10):pgae423. doi: 10.1093/pnasnexus/pgae423. eCollection 2024 Oct.
While encountering a visual threat, an animal assesses multiple factors to choose an appropriate defensive strategy. For example, when a rodent detects a looming aerial predator, its behavioral response can be influenced by a specific environmental context, such as the availability of a shelter. Indeed, rodents typically escape from a looming stimulus when a shelter is present; otherwise, they typically freeze. Here we report that context-dependent behavioral responses can be initiated at the earliest stage of the visual system by distinct types of retinal ganglion cells (RGCs), the retina's output neurons. Using genetically defined cell ablation in mature mice, we discovered that some RGC types were necessary for either escaping (alpha RGCs) or freezing (intrinsically photosensitive RGCs) in response to a looming stimulus but not for both behaviors; whereas other RGC types were not required for either behavior (direction-selective RGCs preferring vertical motion). Altogether, our results suggest that specific RGC types regulate distinct behavioral responses elicited by the same threatening stimulus depending on contextual signals in the environment. These findings emphasize the unique contribution of early visual pathways to evolutionally conserved behavioral reactions.
当遇到视觉威胁时,动物会评估多种因素以选择合适的防御策略。例如,当啮齿动物察觉到空中有逼近的捕食者时,其行为反应会受到特定环境背景的影响,比如是否有遮蔽物。的确,当有遮蔽物时,啮齿动物通常会从逼近的刺激物处逃离;否则,它们通常会静止不动。在此我们报告,视网膜神经节细胞(RGCs)作为视网膜的输出神经元,其不同类型可在视觉系统的最早阶段引发依赖于环境背景的行为反应。通过在成年小鼠中进行基因定义的细胞消融,我们发现一些RGC类型对于响应逼近刺激时的逃离(αRGCs)或静止不动(内在光敏RGCs)是必需的,但并非对两种行为都必需;而其他RGC类型对这两种行为都不是必需的(偏好垂直运动的方向选择性RGCs)。总之,我们的结果表明,特定的RGC类型根据环境中的背景信号调节由相同威胁刺激引发的不同行为反应。这些发现强调了早期视觉通路对进化上保守的行为反应的独特贡献。