An optimal growth law for RNA composition and its partial implementation through ribosomal and tRNA gene locations in bacterial genomes
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This paper proposes a growth law for bacterial RNA composition, driven by optimal resource allocation into ribosomes and tRNA, and demonstrates its partial implementation via gene location influencing gene dosage.
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Abstract
The distribution of cellular resources across bacterial proteins has been quantified through phenomenological growth laws. Here, we describe a complementary bacterial growth law for RNA composition, emerging from optimal cellular resource allocation into ribosomes and ternary complexes. The predicted decline of the tRNA/rRNA ratio with growth rate agrees quantitatively with experimental data. Its regulation appears to be implemented in part through chromosomal localization, as rRNA genes are typically closer to the origin of replication than tRNA genes and thus have increasingly higher gene dosage at faster growth. At the highest growth rates in E. coli , the tRNA/rRNA ratio appears to be regulated entirely through this effect.
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- europepmc
- last seen: 2026-05-19T01:45:01.086888+00:00
- unpaywall
- last seen: 2026-06-05T02:00:03.366016+00:00