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一个最小生物体中经验依赖行为的多尺度感觉运动模型。

A multiscale sensorimotor model of experience-dependent behavior in a minimal organism.

机构信息

Department of Medicine and Life Sciences, Universitat Pompeu Fabra, Barcelona, Spain.

Department of Psychiatry and Legal Medicine, Universitat Autònoma de Barcelona, Cerdanyola del Vallès, Spain; Hospital del Mar Research Institute (IMIM), Barcelona, Spain.

出版信息

Biophys J. 2024 Jun 18;123(12):1654-1667. doi: 10.1016/j.bpj.2024.05.008. Epub 2024 May 29.

Abstract

To survive in ever-changing environments, living organisms need to continuously combine the ongoing external inputs they receive, representing present conditions, with their dynamical internal state, which includes influences of past experiences. It is still unclear in general, however 1) how this happens at the molecular and cellular levels and 2) how the corresponding molecular and cellular processes are integrated with the behavioral responses of the organism. Here, we address these issues by modeling mathematically a particular behavioral paradigm in a minimal model organism, namely chemotaxis in the nematode C. elegans. Specifically, we use a long-standing collection of elegant experiments on salt chemotaxis in this animal, in which the migration direction varies depending on its previous experience. Our model integrates the molecular, cellular, and organismal levels to reproduce the experimentally observed experience-dependent behavior. The model proposes specific molecular mechanisms for the encoding of current conditions and past experiences in key neurons associated with this response, predicting the behavior of various mutants associated with those molecular circuits.

摘要

为了在不断变化的环境中生存,生物需要不断地将它们接收到的持续外部输入(代表当前条件)与它们的动态内部状态(包括过去经验的影响)结合起来。然而,目前还不清楚这种情况在分子和细胞水平上是如何发生的,以及相应的分子和细胞过程是如何与生物体的行为反应相整合的。在这里,我们通过对一个最小模型生物——线虫 C. elegans 的特定行为范式进行数学建模来解决这些问题。具体来说,我们使用了该动物中关于盐趋性的一系列长期优雅实验,其中迁移方向取决于其先前的经验。我们的模型整合了分子、细胞和机体水平,以再现实验观察到的依赖经验的行为。该模型提出了特定的分子机制,用于在与该反应相关的关键神经元中对当前条件和过去经验进行编码,预测与这些分子回路相关的各种突变体的行为。

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