Klimenko Alexandra, Matushkin Yury, Kolchanov Nikolay, Lashin Sergey
BMC Evol Biol. 2015;15 Suppl 1(Suppl 1):S3. doi: 10.1186/1471-2148-15-S1-S3. Epub 2015 Feb 2.
Multiscale approaches for integrating submodels of various levels of biological organization into a single model became the major tool of systems biology. In this paper, we have constructed and simulated a set of multiscale models of spatially distributed microbial communities and study an influence of unevenly distributed environmental factors on the genetic diversity and evolution of the community members.
Haploid Evolutionary Constructor software http://evol-constructor.bionet.nsc.ru/ was expanded by adding the tool for the spatial modeling of a microbial community (1D, 2D and 3D versions). A set of the models of spatially distributed communities was built to demonstrate that the spatial distribution of cells affects both intensity of selection and evolution rate.
In spatially heterogeneous communities, the change in the direction of the environmental flow might be reflected in local irregular population dynamics, while the genetic structure of populations (frequencies of the alleles) remains stable. Furthermore, in spatially heterogeneous communities, the chemotaxis might dramatically affect the evolution of community members.
将各级生物组织的子模型整合到单个模型中的多尺度方法成为系统生物学的主要工具。在本文中,我们构建并模拟了一组空间分布微生物群落的多尺度模型,并研究了分布不均的环境因素对群落成员遗传多样性和进化的影响。
通过添加微生物群落空间建模工具(一维、二维和三维版本),对单倍体进化构建器软件http://evol-constructor.bionet.nsc.ru/进行了扩展。构建了一组空间分布群落模型,以证明细胞的空间分布会影响选择强度和进化速率。
在空间异质群落中,环境流方向的变化可能反映在局部不规则的种群动态中,而种群的遗传结构(等位基因频率)保持稳定。此外,在空间异质群落中,趋化作用可能会极大地影响群落成员的进化。