Annelid Comparative Genomics and the Evolution of Massive Lineage-Specific Genome Rearrangement in Bilaterians
Research article published in Molecular biology and evolution (2024)
Abstract
The organization of genomes into chromosomes is critical for processes such as genetic recombination, environmental adaptation, and speciation. All animals with bilateral symmetry inherited a genome structure from their last common ancestor that has been highly conserved in some taxa but seemingly unconstrained in others. However, the evolutionary forces driving these differences and the processes by which they emerge have remained largely uncharacterized. Here, we analyze genome organization across the phylum Annelida using 23 chromosome-level annelid genomes. We find that while many annelid lineages have maintained the conserved bilaterian genome structure, the Clitellata, a group containing leeches and earthworms, possesses completely scrambled genomes. We develop a rearrangement index to quantify the extent of genome structure evolution and show that, compared to the last common ancestor of bilaterians, leeches and earthworms have among the most highly rearranged genomes of any currently sampled species. We further show that bilaterian genomes can be classified into two distinct categories-high and low rearrangement-largely influenced by the presence or absence, respectively, of chromosome fission events. Our findings demonstrate that animal genome structure can be highly variable within a phylum and reveal that genome rearrangement can occur both in a gradual, stepwise fashion, or rapid, all-encompassing changes over short evolutionary timescales.
Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.
Summary
The organization of genomes into chromosomes is critical for processes such as genetic recombination, environmental adaptation, and speciation.
Why This Matters for Hirudotherapy
This comparative genomic study analyzed chromosome-level genome organization across the phylum Annelida using 23 genomes, finding that Clitellata (leeches and earthworms) possess highly scrambled genomes compared to the conserved bilaterian ancestral structure. The authors developed a rearrangement index showing leech and earthworm genomes are among the most rearranged sampled, classifiable into high- and low-rearrangement categories driven largely by chromosome fission events. For ASH, this study has only the most tangential relevance: understanding leech genome architecture could theoretically support future genomic research on salivary compounds, but the abstract reports nothing about anticoagulants, the leech secretome, hirudotherapy, or any therapeutic application. This is a genome-structure and evolutionary-biology study with no direct connection to ASH's domain of interest.
Citation
Annelid Comparative Genomics and the Evolution of Massive Lineage-Specific Genome Rearrangement in Bilaterians
Lewin TD et al. · Molecular biology and evolution, 2024
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