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生化战的图景:由化感相互作用编织而成的空间自组织

Landscapes of Biochemical Warfare: Spatial Self-Organization Woven from Allelopathic Interactions.

作者信息

Carvalho Sylvestre, Mota Henrique, Martins Marcelo

机构信息

Institute for Advanced Studies, University of São Paulo, São Paulo 05508-050, Brazil.

Department of Physics, CFisUC, Center of Physics, University of Coimbra, 3004-516 Coimbra, Portugal.

出版信息

Life (Basel). 2023 Feb 13;13(2):512. doi: 10.3390/life13020512.

Abstract

Evidence shows that diversity and spatial distributions of biological communities are largely driven by the race of living organisms in their adaptation to chemicals synthesized by their neighbors. In this report, the emergence of mathematical models on pure spatial self-organization induced by biochemical suppression (allelopathy) and competition between species were investigated through numerical analysis. For both random and patched initial spatial distributions of species, we demonstrate that warfare survivors are self-organized on the landscape in Turing-like patterns driven by diffusive instabilities of allelochemicals. These patterns are simple; either all species coexist at low diffusion rates or are massively extinct, except for a few at high diffusivities, but they are complex and biodiversity-sustained at intermediate diffusion rates. "Defensive alliances" and ecotones seem to be basic mechanisms that sustain great biodiversity in our hybrid cellular automata model. Moreover, species coexistence and extinction exhibit multi-stationarity.

摘要

有证据表明,生物群落的多样性和空间分布在很大程度上是由生物在适应其邻居合成的化学物质过程中的生存竞争所驱动的。在本报告中,通过数值分析研究了由生化抑制(化感作用)和物种间竞争引起的纯空间自组织数学模型的出现。对于物种的随机和斑块状初始空间分布,我们证明,在化感物质的扩散不稳定性驱动下,战争幸存者以类似图灵的模式在景观中自组织。这些模式很简单;要么所有物种在低扩散率下共存,要么大量灭绝,除了少数在高扩散率下存活的物种,但它们在中等扩散率下是复杂的且生物多样性得以维持。“防御联盟”和生态交错带似乎是我们的混合细胞自动机模型中维持高度生物多样性的基本机制。此外,物种共存和灭绝表现出多稳态性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/907c/9967760/15cd5be0f8c7/life-13-00512-g0A1.jpg

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