AI Article Synopsis

  • Genome architecture refers to the arrangement of genes and features in genomes, which is shaped by evolutionary pressures and impacts processes like gene expression and chromosomal segregation.
  • The new tool, Genome Decomposition Analysis (GDA), helps characterize these architectures and is user-friendly for exploring novel aspects of genome assemblies.
  • GDA is particularly effective for studying the genome architectures of single-celled eukaryotic parasites in the Apicomplexa phylum and can handle large genomes efficiently.

Article Abstract

Genome architecture describes how genes and other features are arranged in genomes. These arrangements reflect the evolutionary pressures on genomes and underlie biological processes such as chromosomal segregation and the regulation of gene expression. We present a new tool called Genome Decomposition Analysis (GDA) that characterises genome architectures and acts as an accessible approach for discovering hidden features of a genome assembly. With the imminent deluge of high-quality genome assemblies from projects such as the Darwin Tree of Life and the Earth BioGenome Project, GDA has been designed to facilitate their exploration and the discovery of novel genome biology. We highlight the effectiveness of our approach in characterising the genome architectures of single-celled eukaryotic parasites from the phylum Apicomplexa and show that it scales well to large genomes.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9131526PMC
http://dx.doi.org/10.1186/s12864-022-08616-3DOI Listing

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