Extensive Genomic Rearrangement of Catalase-Less Cyanobloom-Forming Microcystis aeruginosa in Freshwater Ecosystems

Extensive Genomic Rearrangement of Catalase-Less Cyanobloom-Forming Microcystis aeruginosa in Freshwater Ecosystems
  • Kim, Minkyung; 
  • Jung, Jaejoon; 
  • Kim, Wonjae; 
  • Park, Yerim; 
  • Jeon, Che Ok; 
  • 외 1명
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초록

Many of the world's freshwater ecosystems suffer from cyanobacteria-mediated blooms and their toxins. However, a mechanistic understanding of why and how Microcystis aeruginosa dominates over other freshwater cyanobacteria during warmer summers is lacking. This paper utilizes comparative genomics with other cyanobacteria and literature reviews to predict the gene functions and genomic architectures of M. aeruginosa based on complete genomes. The primary aim is to understand this species' survival and competitive strategies in warmer freshwater environments. M. aeruginosa strains exhibiting a high proportion of insertion sequences (~ 11%) possess genomic structures with low synteny across different strains. This indicates the occurrence of extensive genomic rearrangements and the presence of many possible diverse genotypes that result in greater population heterogeneities than those in other cyanobacteria in order to increase survivability during rapidly changing and threatening environmental challenges. Catalase-less M. aeruginosa strains are even vulnerable to low light intensity in freshwater environments with strong ultraviolet radiation. However, they can continuously grow with the help of various defense genes (e.g., egtBD, cruA, and mysABCD) and associated bacteria. The strong defense strategies against biological threats (e.g., antagonistic bacteria, protozoa, and cyanophages) are attributed to dense exopolysaccharide (EPS)-mediated aggregate formation with efficient buoyancy and the secondary metabolites of M. aeruginosa cells. Our review with extensive genome analysis suggests that the ecological vulnerability of M. aeruginosa cells can be overcome by diverse genotypes, secondary defense metabolites, reinforced EPS, and associated bacteria. © 2024. The Author(s), under exclusive licence to Microbiological Society of Korea.

키워드

Comparative genomics; Cyanobacterial bloom; Cyanobacterial metabolism; Genome plasticity; Microcystin; Oxidative stress; TOXIC CYANOBACTERIUM; HYDROGEN-PEROXIDE; OXIDATIVE-STRESS; AQUATIC SYSTEMS; BLOOM; BIOSYNTHESIS; EVOLUTION; GENES; EXOPOLYSACCHARIDES; ERGOTHIONEINE
제목
Extensive Genomic Rearrangement of Catalase-Less Cyanobloom-Forming Microcystis aeruginosa in Freshwater Ecosystems
제목 (타언어)
Extensive Genomic Rearrangement of Catalase-Less Cyanobloom-Forming Microcystis aeruginosa in Freshwater Ecosystems
저자
Kim, Minkyung; Jung, Jaejoon; Kim, Wonjae; Park, Yerim; Jeon, Che Ok; Park, Woojun
DOI
10.1007/s12275-024-00172-7
발행일
2024-11
유형
Review; Early Access
저널명
Journal of Microbiology
권
62
호
11
페이지
933 ~ 950