The American lobster genome reveals insights on longevity, neural, and immune adaptations.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 34162536.
- Also identified by DOI 10.1126/sciadv.abe8290 and PMC identifier 8221624.
- Licence recorded as CC BY-NC.
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Abstract
The American lobster, <i>Homarus americanus</i>, is integral to marine ecosystems and supports an important commercial fishery. This iconic species also serves as a valuable model for deciphering neural networks controlling rhythmic motor patterns and olfaction. Here, we report a high-quality draft assembly of the <i>H. americanus</i> genome with 25,284 predicted gene models. Analysis of the neural gene complement revealed extraordinary development of the chemosensory machinery, including a profound diversification of ligand-gated ion channels and secretory molecules. The discovery of a novel class of chimeric receptors coupling pattern recognition and neurotransmitter binding suggests a deep integration between the neural and immune systems. A robust repertoire of genes involved in innate immunity, genome stability, cell survival, chemical defense, and cuticle formation represents a diversity of defense mechanisms essential to thrive in the benthic marine environment. Together, these unique evolutionary adaptations contribute to the longevity and ecological success of this long-lived benthic predator.
Medical subject headings
- Longevity
- Nephropidae