AI Article Synopsis

  • Advancements in genomic technologies are improving our understanding of speciation genetics beyond traditional model species, allowing for more diverse organisms to be studied.
  • The review highlights the history of speciation genetics, detailing insights gained from both model and non-model organisms and current trends in the field.
  • To close the gap between research on lab-based model organisms and natural non-model organisms, the authors recommend combining genetic studies with existing ecological knowledge from diverse taxa.

Article Abstract

Until recently, our understanding of the genetics of speciation was limited to a narrow group of model species with a specific set of characteristics that made genetic analysis feasible. Rapidly advancing genomic technologies are eliminating many of the distinctions between laboratory and natural systems. In light of these genomic developments, we review the history of speciation genetics, advances that have been gleaned from model and non-model organisms, the current state of the field, and prospects for broadening the diversity of taxa included in future studies. Responses to a survey of speciation scientists across the world reveal the ongoing division between the types of questions that are addressed in model and non-model organisms. To bridge this gap, we suggest integrating genetic studies from model systems that can be reared in the laboratory or greenhouse with genomic studies in related non-models where extensive ecological knowledge exists.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10835617PMC
http://dx.doi.org/10.1101/cshperspect.a041438DOI Listing

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