空间排斥导致了微通道内的竞争性物种之间的"拉战"生态动态
Jeremy Rothschild1, Tianyi Ma1,2, Joshua N Milstein1,2
1Department of Physics, University of Toronto, Ontario, Canada.
PLoS computational biology
|December 1, 2023
概括
微通道中的空间排除加快了物种的固定,并减少了入侵的成功,而与混合良好的模型相比. 这影响了受限生态系统中的微生物多样性维护.
科学领域:
- 微生物生态学 微生物生态学
- 进化生物学 进化生物学
- 生物物理学的生物物理.
背景情况:
- 微生物竞争塑造了社区结构和多样性.
- 像莫兰模型这样的经典模型研究固定和入侵动态.
- 在狭窄空间中的细胞竞争需要包含空间相互作用的模型.
研究的目的:
- 通过将细胞的机械相互作用纳入1D微通道来扩展莫兰模型.
- 研究空间排斥如何影响物种竞争,固定和入侵.
- 了解在密集的细胞生态系统中维持物种多样性的影响.
主要方法:
- 开发了一个基于莫兰模型的空间排除模型,用于1D开放微通道中分裂的细胞.
- 特征集体细胞生长和驱逐动力学.
- 分析了固定时间,固定/灭绝概率以及在空间约束下入侵概率.
主要成果:
- 空间排除显著加快了平均固定时间,对系统大小进行了对数缩放,与混合模型中的代数缩放不同.
- 固定/灭绝的概率变得高度依赖于最初的分数丰度.
- 侵入性物种的成功大大减少,并且由于"拉战"和雪崩动态,适应性差异对固定动态的影响减弱.
结论:
- 微通道中的空间排斥与混合模型相比,从根本上改变了竞争动态.
- 这些发现解释了空间结构微生物群落中改变的固定和入侵概率.
- 结果可以在微流体设备中进行测试,并对理解生物膜和肠道密室的多样性产生影响.
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