College of Biological Science, China Agricultural University, Beijing, China.
College of Engineering, China Agricultural University, Beijing, China.
PLoS One. 2023 Jul 19;18(7):e0288118. doi: 10.1371/journal.pone.0288118. eCollection 2023.
Spatial localization ability is crucial for free-living animals to fit the environment. As shown by previous studies, planarians can be conditioned to discriminate directions. However, due to their simplicity and primitiveness, they had never been considered to have true spatial localization ability to retrieve locations of objects and places in the environment. Here, we introduce a light maze training paradigm to demonstrate that a planarian worm can navigate to a former recognized place from the start point, even if the worm is transferred into a newly produced maze. This finding identifies the spatial localization ability of planarians for the first time, which provides clues for the evolution of spatial learning. Since the planarians have a primitive brain with simple structures, this paradigm can also provide a simplified model for a detailed investigation of spatial learning.
空间定位能力对于自由生活的动物适应环境至关重要。先前的研究表明,水螅可以被训练来辨别方向。然而,由于它们的简单性和原始性,它们从未被认为具有真正的空间定位能力来检索环境中物体和地点的位置。在这里,我们引入了一个光迷宫训练范式来证明,即使将水螅从起点转移到一个新生成的迷宫中,它也可以导航到以前识别过的位置。这一发现首次确定了水螅的空间定位能力,为空间学习的进化提供了线索。由于水螅具有简单结构的原始大脑,这个范式也可以为详细研究空间学习提供一个简化的模型。