Identification of Prophages within the Mycobacterium avium 104 Genome and the Link of Their Function Regarding to

Miao Zhao1, Kerrigan Gilbert2, Lia Danelishvili2

  • 1Program of Biology, Oregon State University, Corvallis, OR, USA.

Advances in Microbiology
|July 23, 2021
PubMed

Insights

Prophage genes in Mycobacterium avium 104 enhance biofilm formation and acid resistance in M. smegmatis. These findings shed light on the role of prophages in bacterial adaptation and pathogenicity.

Area of Science:

  • Microbiology
  • Genetics
  • Bacteriology

Background:

  • Mycobacterium avium is an opportunistic pathogen with environmental lifestyle.
  • Prophages, integrated viral DNA, comprise 10-20% of bacterial genomes and can contribute to pathogenicity.

Purpose of the Study:

  • To identify prophages in the M. avium 104 genome.
  • To evaluate the functional roles of identified prophage genes in bacterial phenotype and environmental stress tolerance.

Main Methods:

  • Bioinformatic analysis of M. avium 104 genome to identify prophage sequences.
  • Cloning of prophage genes into Mycobacterium smegmatis for gain-of-function assays.
  • Real-Time PCR to assess gene expression during biofilm formation and stress conditions.

Main Results:

  • Three prophage sequences were identified in M. avium 104.
  • Two prophage genes (MAV_0696 and MAV_2265) enhanced biofilm formation in M. smegmatis.
  • MAV_2265 conferred increased survival at pH 5.0 and showed higher expression during biofilm formation.

Conclusions:

  • Prophages in M. avium 104 contribute to biofilm formation and acid resistance.
  • MAV_0696 and MAV_2265 are key prophage genes involved in these traits.
  • Further research is needed to elucidate the precise mechanisms of prophage function in M. avium pathogenicity.

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