Related Experiment Video
Updated: May 1, 2026

C. elegans Gonad Dissection and Freeze Crack for Immunofluorescence and DAPI Staining
Published on: September 16, 2022
Meiotic gene evolution: can you teach a new dog new tricks?
Andrew H Lloyd1, Marion Ranoux2, Sonia Vautrin3
1INRA, UMR1318, Institut Jean-Pierre Bourgin, Versailles, FranceAgroParisTech, Institut Jean-Pierre Bourgin, Versailles, France.
Abstract:
Meiosis, the basis of sex, evolved through iterative gene duplications. To understand whether subsequent duplications have further enriched the core meiotic "tool-kit," we investigated the fate of meiotic gene duplicates following whole genome duplication (WGD), a common occurrence in eukaryotes. We show that meiotic genes return to a single copy more rapidly than genome-wide average in angiosperms, one of the lineages in which WGD is most vividly exemplified. The rate at which duplicates are lost decreases through time, a tendency that is also observed genome-wide and may thus prove to be a general trend post-WGD. The sharpest decline is observed for the subset of genes mediating meiotic recombination; however, we found no evidence that the presence of these duplicates is counterselected in two recent polyploid crops selected for fertility. We therefore propose that their loss is passive, highlighting how quickly WGDs are resolved in the absence of selective duplicate retention.
Related Concept Videos
Gene Conversion
Gene Conversion
Genome Size and the Evolution of New Genes
Exon Recombination
Exon shuffling follows “splice frame rules.” Each exon...
In-vitro Mutagenesis
Meiosis I
Prophase I is the most extended and complex step of meiosis I characterized by synapsis, chromosome pairing, and recombination of the homologous chromosomes. This process is facilitated by a proteinaceous structure called the...

