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Co-option of bacteriophage lysozyme genes by bivalve genomes.

Qian RenChunyang WangMin JinJiangfeng LanTing YeKaimin HuiJingmin TanZheng WangGerald J WyckoffWen WangGuan-Zhu Han
Published in: Open biology (2017)
Eukaryotes have occasionally acquired genetic material through horizontal gene transfer (HGT). However, little is known about the evolutionary and functional significance of such acquisitions. Lysozymes are ubiquitous enzymes that degrade bacterial cell walls. Here, we provide evidence that two subclasses of bivalves (Heterodonta and Palaeoheterodonta) acquired a lysozyme gene via HGT, building on earlier findings. Phylogenetic analyses place the bivalve lysozyme genes within the clade of bacteriophage lysozyme genes, indicating that the bivalves acquired the phage-type lysozyme genes from bacteriophages, either directly or through intermediate hosts. These bivalve lysozyme genes underwent dramatic structural changes after their co-option, including intron gain and fusion with other genes. Moreover, evidence suggests that recurrent gene duplication occurred in the bivalve lysozyme genes. Finally, we show the co-opted lysozymes exhibit a capacity for antibacterial action, potentially augmenting the immune function of related bivalves. This represents an intriguing evolutionary strategy in the eukaryote-microbe arms race, in which the genetic materials of bacteriophages are co-opted by eukaryotes, and then used by eukaryotes to combat bacteria, using a shared weapon against a common enemy.
Keyphrases
  • genome wide
  • genome wide identification
  • dna methylation
  • copy number
  • genome wide analysis
  • bioinformatics analysis
  • transcription factor
  • pseudomonas aeruginosa
  • stem cells
  • gene expression
  • bone marrow