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有神经系统和无神经系统情况下的时间动态:植物生理学、通讯与运动

Temporal Dynamics With and Without a Nervous System: Plant Physiology, Communication, and Movement.

作者信息

Bianchi Margherita, Guerra Silvia, Bonato Bianca, Avesani Sara, Ravazzolo Laura, Simonetti Valentina, Dadda Marco, Castiello Umberto

机构信息

Department of General Psychology, University of Padua.

DAFNAE-Department of Agronomy, Food, Natural Resources, Animals and Environment, University of Padua.

出版信息

Cogn Sci. 2025 Jun;49(6):e70079. doi: 10.1111/cogs.70079.

Abstract

The concept of time has long been the subject of complex philosophical reflections and scientific research, which have interpreted it differently based on the starting question, context, and level of analysis of the system under investigation. In the present review, we first explore how time has been studied among different scientific fields such as physics, neuroscience, and bioecological sciences. We emphasize the fundamental role of an organism's ability to perceive the passage of time and dynamically adapt to its environment for survival. Growth, reproduction, and communication processes are subject to spatiotemporal variability, and the sense of time allows organisms to structure their interactions, track past, and anticipate future events. Specifically, building on a relational and multilevel approach, this paper proposes an analysis of various aspects of the temporal dimension of plants-ranging from their growth and adaptation rates to behavioral strategies and modes of communication-culminating in a focused examination of research based on the kinematical analysis of plant movement. By adopting a comparative and critical approach, we raise several questions about the temporality of processes from different perspectives. Further insights into the timing of physiological and communication processes in plants will help to recognize the central role of temporality in life and to discover mechanisms, processes, and behavioral strategies that may be common (or similar) across species or unique (species-specific) for some organisms, both with and without nervous systems.

摘要

时间概念长期以来一直是复杂的哲学思考和科学研究的主题,这些思考和研究根据起始问题、背景以及所研究系统的分析层面,对时间有着不同的解读。在本综述中,我们首先探讨时间在诸如物理学、神经科学和生物生态学等不同科学领域中是如何被研究的。我们强调生物体感知时间流逝并动态适应环境以生存的能力的根本作用。生长、繁殖和交流过程都受到时空变异性的影响,而时间感使生物体能够构建它们的相互作用、追溯过去并预测未来事件。具体而言,基于一种关系性和多层次的方法,本文对植物时间维度的各个方面进行了分析——从它们的生长和适应速率到行为策略和交流方式——最终聚焦于基于植物运动运动学分析的研究。通过采用比较和批判性的方法,我们从不同角度对过程的时间性提出了几个问题。对植物生理和交流过程时间安排的进一步深入了解,将有助于认识时间性在生命中的核心作用,并发现可能在有神经系统和无神经系统的物种中都普遍存在(或相似)或某些生物体特有的(物种特异性)机制、过程和行为策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c31/12183673/713c9603bd14/COGS-49-e70079-g003.jpg

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