Barandela Marta, Núñez-González Carmen, Suzuki Daichi G, Jiménez-López Cecilia, Pombal Manuel A, Pérez-Fernández Juan
CINBIO, Universidade de Vigo, Neurocircuits Group, Campus universitario Lagoas, Marcosende, Vigo, Spain.
Faculty of Life and Environmental Sciences, University of Tsukuba, Tsukuba, Japan.
Front Cell Dev Biol. 2023 Oct 26;11:1298486. doi: 10.3389/fcell.2023.1298486. eCollection 2023.
Animals constantly redirect their gaze away or towards relevant targets and, besides these goal-oriented responses, stabilizing movements clamp the visual scene avoiding image blurring. The vestibulo-ocular (VOR) and the optokinetic reflexes are the main contributors to gaze stabilization, whereas the optic tectum integrates multisensory information and generates orienting/evasive gaze movements in all vertebrates. Lampreys show a unique stepwise development of the visual system whose understanding provides important insights into the evolution and development of vertebrate vision. Although the developmental emergence of the visual components, and the retinofugal pathways have been described, the functional development of the visual system and the development of the downstream pathways controlling gaze are still unknown. Here, we show that VOR followed by light-evoked eye movements are the first to appear already in larvae, despite their burrowed lifestyle. However, the circuits controlling goal-oriented responses emerge later, in larvae in non-parasitic lampreys but during late metamorphosis in parasitic lampreys. The appearance of stabilizing responses earlier than goal-oriented in the lamprey development shows a stepwise transition from simpler to more complex visual systems, offering a unique opportunity to isolate the functioning of their underlying circuits.
动物不断地将目光从相关目标移开或转向相关目标,除了这些目标导向的反应外,稳定运动还能固定视觉场景以避免图像模糊。前庭眼反射(VOR)和视动反射是实现目光稳定的主要因素,而视顶盖整合多感官信息并在所有脊椎动物中产生定向/逃避性目光运动。七鳃鳗的视觉系统呈现出独特的逐步发育过程,对其的了解为脊椎动物视觉的进化和发育提供了重要见解。尽管已经描述了视觉组件和视网膜传出通路的发育出现情况,但视觉系统的功能发育以及控制目光的下游通路的发育仍然未知。在这里,我们表明,尽管七鳃鳗幼虫过着穴居生活方式,但VOR以及光诱发的眼球运动在幼虫阶段就已首先出现。然而,控制目标导向反应的神经回路稍后才出现,在非寄生性七鳃鳗的幼虫阶段出现,而在寄生性七鳃鳗的变态后期出现。七鳃鳗发育过程中稳定反应比目标导向反应更早出现,这表明从较简单的视觉系统到更复杂的视觉系统存在逐步转变,为分离其潜在神经回路的功能提供了独特的机会。