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正负反馈耦合在菌落中产生多种基因表达模式。

Coupled positive and negative feedbacks produce diverse gene expression patterns in colonies.

作者信息

Mitarai Namiko, Jensen Mogens Høgh, Semsey Szabolcs

机构信息

Center for Models of Life, Niels Bohr Institute, University of Copenhagen, Copenhagen, Denmark.

Center for Models of Life, Niels Bohr Institute, University of Copenhagen, Copenhagen, Denmark

出版信息

mBio. 2015 Apr 7;6(2):e00059-15. doi: 10.1128/mBio.00059-15.

Abstract

UNLABELLED

Formation of patterns is a common feature in the development of multicellular organism as well as of microbial communities. To investigate the formation of gene expression patterns in colonies, we build a mathematical model of two-dimensional colony growth, where cells carry a coupled positive-and-negative-feedback circuit. We demonstrate that the model can produce sectored, target (concentric), uniform, and scattered expression patterns of regulators, depending on gene expression dynamics and nutrient diffusion. We reconstructed the same regulatory structure in Escherichia coli cells and found gene expression patterns on the surface of colonies similar to the ones produced by the computer simulations. By comparing computer simulations and experimental results, we observed that very simple rules of gene expression can yield a spectrum of well-defined patterns in a growing colony. Our results suggest that variations of the protein content among cells lead to a high level of heterogeneity in colonies.

IMPORTANCE

Formation of patterns is a common feature in the development of microbial communities. In this work, we show that a simple genetic circuit composed of a positive-feedback loop and a negative-feedback loop can produce diverse expression patterns in colonies. We obtained similar sets of gene expression patterns in the simulations and in the experiments. Because the combination of positive feedback and negative feedback is common in intracellular molecular networks, our results suggest that the protein content of cells is highly diversified in colonies.

摘要

未标注

模式的形成是多细胞生物体以及微生物群落发育中的一个共同特征。为了研究菌落中基因表达模式的形成,我们构建了一个二维菌落生长的数学模型,其中细胞携带一个正负反馈耦合回路。我们证明,根据基因表达动态和营养物质扩散情况,该模型可以产生调控因子的扇形、靶形(同心)、均匀和分散表达模式。我们在大肠杆菌细胞中重建了相同的调控结构,并在菌落表面发现了与计算机模拟产生的类似的基因表达模式。通过比较计算机模拟和实验结果,我们观察到非常简单的基因表达规则可以在生长的菌落中产生一系列明确的模式。我们的结果表明,细胞间蛋白质含量的差异导致菌落中高度的异质性。

重要性

模式的形成是微生物群落发育中的一个共同特征。在这项工作中,我们表明,由正反馈回路和负反馈回路组成的简单遗传回路可以在菌落中产生多种表达模式。我们在模拟和实验中获得了相似的基因表达模式集。由于正反馈和负反馈的组合在细胞内分子网络中很常见,我们的结果表明,菌落中细胞的蛋白质含量高度多样化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c42f/4453545/de47732b9997/mbo0021522690001.jpg

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