论文标题

来自两个物种相互交叉喂养模型的部门和螺旋模式的出现

Emergence of sector and spiral patterns from a two-species mutualistic cross-feeding model

论文作者

Lin, Jiaqi., Sun, Hui., Dong, JiaJia

论文摘要

微生物群落的普遍存在标志着了解物种如何在社区中相互作用与它们共存及其空间组织的重要性。我们使用动力学蒙特卡洛模拟研究了两种物种的互助交叉进食模型。我们的模型封装了基本动态过程,例如细胞生长,营养排泄,扩散和吸收。为了关注营养扩散和个体细胞分裂之间的相互作用,我们发现了三个菌落形态的一般类别:共存部门,共存的螺旋和吞噬。当通过高排泄或快速扩散的交叉喂养营养物广泛使用时,会出现稳定的圆形菌落,并出现交替物种扇形。当消费细胞依靠空间靠近生产商时,我们会观察到稳定的螺旋。我们还看到,由于随机波动,物种接口合并时,一个物种被另一个物种吞没。通过调整扩散速率和增长率,我们能够对扇区和螺旋的结构获得定量见解。

The ubiquitous existence of microbial communities marks the importance of understanding how species interact within the community to coexist and their spatial organization. We study a two-species mutualistic cross-feeding model through a stochastic cellular automaton on a square lattice using kinetic Monte Carlo simulation. Our model encapsulates the essential dynamic processes such as cell growth, and nutrient excretion, diffusion and uptake. Focusing on the interplay among nutrient diffusion and individual cell division, we discover three general classes of colony morphology: co-existing sectors, co-existing spirals, and engulfment. When the cross-feeding nutrient is widely available, either through high excretion or fast diffusion, a stable circular colony with alternating species sector emerges. When the consumer cells rely on being spatially close to the producers, we observe a stable spiral. We also see one species being engulfed by the other when species interfaces merge due to stochastic fluctuation. By tuning the diffusion rate and the growth rate, we are able to gain quantitative insights into the structures of the sectors and the spirals.

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