Dark Matter Carried by Sinorhizobium meliloti phiLM21-like Prophages

Maria E Vladimirova1, Marina L Roumiantseva1, Alla S Saksaganskaia1

  • 1Laboratory of Genetics and Selection of Microorganisms, Federal State Budget Scientific Institution All-Russia Research Institute for Agricultural Microbiology (FSBSI ARRIAM), 196608 Saint Petersburg, Russia.

Insights

Most Sinorhizobium meliloti prophages (phiLM21-LPhs) are fragmented, with limited overlap to the phiLM21 phage genome. These prophages contain significant genetic "dark matter" with unknown functions, suggesting complex evolutionary origins.

Area of Science:

  • Microbiology
  • Virology
  • Genomics

Background:

  • Sinorhizobium meliloti is a key symbiotic partner for Fabaceae plants.
  • phiLM21-like prophages (phiLM21-LPhs) are prevalent in S. meliloti populations.
  • Understanding prophage diversity is crucial for host-bacterium interactions.

Purpose of the Study:

  • To conduct a comparative analysis of phiLM21-LPh nucleotide and amino acid sequences.
  • To investigate the genomic content and integration patterns of these prophages.
  • To explore the origins and functional implications of prophage genetic diversity.

Main Methods:

  • Comparative sequence analysis of 25 phiLM21-LPhs from 36 S. meliloti strains.
  • Identification of integrated prophages within host tRNA genes.
  • Analysis of open reading frames (ORFs) and regulatory elements.

Main Results:

  • Nucleotide sequences of phiLM21-LPhs covered only 34% of the phiLM21 genome.
  • Prophages integrated into tRNA genes but lacked typical tRNA-dependent lysogeny features.
  • Over half of the prophage ORFs had undetermined functions ('genetic dark matter').
  • Prophage diversification likely results from recombination with other phages and bacteria.

Conclusions:

  • Intact phiLM21-like prophages in S. meliloti are highly fragmented and genetically diverse.
  • A significant portion of their genome represents 'genetic dark matter' with unknown biological roles.
  • The evolutionary pathways and functional significance of this prophage diversity require further investigation.

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