The common chromosomal periodicity of transcriptomes is correlated with the bacterial growth rate

Author:

Nagai Motoki,Kurokawa Masaomi,Ying Bei-Wen

Abstract

AbstractThe growth rate, representing the fitness of a bacterial population, is determined by the whole transcriptome. Chromosomal periodicity is a representative overall feature of the whole transcriptome; however, whether and how it is associated with the bacterial growth rate are unknown. To address these questions, we analyzed a total of 213 transcriptomes of genetically differentiated Escherichia coli strains growing in an assortment of culture conditions varying in terms of temperature, nutrition level and osmotic pressure. Intriguingly, the Fourier transform identified a common chromosomal periodicity of transcriptomes, which was independent of the variation in genomes and environments. In addition, fitting of the theoretical model found that the amplitudes of the periodic transcriptomes were significantly correlated with the growth rates. This novel finding successfully identified a single parameter representing the global pattern of the whole transcriptome for the first time and indicated that bacterial growth was correlated with the magnitude of chromosomal differentiation in gene expression. These results provided an alternative global parameter for evaluating the adaptiveness of a growing bacterial population and provided a quantitative rule that makes it possible to predict the growth dynamics according to the gene expression pattern.

Publisher

Cold Spring Harbor Laboratory

Reference42 articles.

1. Baba, T. , Ara, T. , Hasegawa, M. , et al. 2006, Construction of Escherichia coli K-12 in-frame, single-gene knockout mutants: the Keio collection. Molecular systems biology, 2, 2006 0008.

2. Emergent Properties of Reduced-Genome Escherichia coli

3. Construction of consecutive deletions of the Escherichia coli chromosome

4. Indispensability of Horizontally Transferred Genes and Its Impact on Bacterial Genome Streamlining

5. Correlation between genome reduction and bacterial growth;DNA research: an international journal for rapid publication of reports on genes and genomes,2016

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