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分布式信息处理中的体现:“固态”植物与“液态”蚁群

Embodiment in distributed information processing: "Solid" plants versus "liquid" ant colonies.

作者信息

van Schijndel Laura, Snoek Basten L, Ten Tusscher Kirsten

机构信息

Laboratory of Genetics, Department of Plant Sciences, Wageningen University, Wageningen, The Netherlands.

Bioinformatics Group, Department of Biology, Utrecht University, Utrecht, The Netherlands.

出版信息

Quant Plant Biol. 2022 Nov 28;3:e27. doi: 10.1017/qpb.2022.22. eCollection 2022.

Abstract

Information processing is an essential part of biology, enabling coordination of intra-organismal processes such as development, environmental adaptation and inter-organismal communication. Whilst in animals with specialised brain tissue a substantial amount of information processing occurs in a centralised manner, most biological computing is distributed across multiple entities, such as cells in a tissue, roots in a root system or ants in a colony. Physical context, called embodiment, also affects the nature of biological computing. While plants and ant colonies both perform distributed computing, in plants the units occupy fixed positions while individual ants move around. This distinction, solid versus liquid brain computing, shapes the nature of computations. Here we compare information processing in plants and ant colonies, highlighting how similarities and differences originate in, as well as make use of, the differences in embodiment. We end with a discussion on how this embodiment perspective may inform the debate on plant cognition.

摘要

信息处理是生物学的重要组成部分,它能够协调诸如发育、环境适应和生物体间通讯等生物体内的各种过程。虽然在具有专门脑组织的动物中,大量信息处理是以集中方式进行的,但大多数生物计算是分布在多个实体之间的,比如组织中的细胞、根系中的根或者蚁群中的蚂蚁。被称为“具身性”的物理环境也会影响生物计算的本质。虽然植物和蚁群都进行分布式计算,但在植物中,计算单元处于固定位置,而单个蚂蚁则四处移动。这种固体与液体脑计算的区别,塑造了计算的本质。在这里,我们比较植物和蚁群中的信息处理,突出相似性和差异是如何源于具身性差异以及如何利用这些差异的。最后,我们讨论这种具身性观点如何为关于植物认知的辩论提供信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d282/10095861/1a172e52a4fc/S2632882822000224_figAb.jpg

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