Evolution of novel mimicry polymorphisms through Haldanes sieve and rare recombination
Deshmukh, R.; Baral, S.; Kizhakke, A. G.; Kuwalekar, M.; Kunte, K.
Show abstract
Origins of phenotypic novelty represent a paradox. Maintenance of distinct, canalized morphs usually requires a complex array of polymorphisms, whose co-retention requires a genetic architecture resistant to recombination, involving inversions and master regulators. Here, we reveal how such a constraining architecture can still accommodate novel morphs in evolving polymorphisms using the classic polymorphic Batesian mimicry in Papilio polytes, whose supergene-like genetic architecture is maintained in a large inversion. We show that rapidly evolving alleles of the conserved gene, doublesex, within this inversion underlie the genetic basis of this polymorphism. Using precisely dated phylogeny and breeding experiments, we show that novel adaptive mimetic morphs and underlying alleles evolved in a sequentially dominant manner, undergoing selective sweeps in the mimetic species as predicted under Haldanes sieve. Furthermore, we discovered that mimetic forms share precise inversion breakpoints, allowing rare exon swaps between the universally dominant and a recessive allele to produce a novel, persistent intermediate phenotype, ultimately facilitating the acquisition of phenotypic novelty. Thus, genetic dominance, selective sweeps, rapid molecular divergence, and rare recombination promote novel forms in this iconic evolving polymorphism, resolving the paradox of phenotypic novelty arising even in highly constrained genetic architectures.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Ecological specialisation and evolutionary reticulation in extant Hyaenidae 97%
- Y-linked copy number polymorphism of target of rapamycin(TOR) is associated with sexual size dimorphism in seed beetles 96%
- Genomic analyses capture the human-induced demographic collapse and recovery in a wide-ranging cervid 96%
Similar papers in this journal
- Repeated loss of variation in insect ovary morphology highlights the role of developmental constraint in life-history evolution 96%
- Extensive hybridization reveals multiple coloration genes underlying a complex plumage phenotype 96%
- Genetic coupling of signal and preference facilitates sexual isolation during rapid speciation 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.