Digest: Neo‐sex chromosome underlying the Faster‐Z effect in a species of Lepidoptera *
Homa Papoli Yazdi
Abstract
Open-access reader
Homa Papoli Yazdi
Abstract
Open-access reader
Do Z chromosomes evolve at a faster rate than autosomes in Lepidoptera? Mongue et al. show that Z-linked genes in two Lepidopteran species evolve faster than autosomal genes. However, the neo-sex chromosome differs from the ancestral chromosome and shows adaptive evolution for genes with a biased expression in the heterogametic sex. These findings indicate that studying molecular evolutionary patterns in sex-linked sequences at different evolutionary stages is essential to understand the dynamics of sex chromosome evolution.
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Do Z chromosomes evolve at a faster rate than autosomes in Lepidoptera? Mongue et al. show that Z-linked genes in two Lepidopteran species evolve faster than autosomal genes. However, the neo-sex chromosome differs from the ancestral chromosome and shows adaptive evolution for genes with a biased expression in the heterogametic sex. These findings indicate that studying molecular evolutionary patterns in sex-linked sequences at different evolutionary stages is essential to understand the dynamics of sex chromosome evolution.
Key concepts: Heterogametic sex, Biology, Autosome, Lepidoptera genitalia, Sex linkage, W chromosome, Chromosome, Genetics