What was the ancestral sex-determining mechanism in amniote vertebrates?
Language English Country England, Great Britain Media print-electronic
Document type Journal Article, Review
PubMed
25424152
DOI
10.1111/brv.12156
Knihovny.cz E-resources
- Keywords
- Sauropsida, environmental sex determination, phylogeny, polyphenism, reptiles, sex chromosomes, sex ratio, sexual dimorphism,
- MeSH
- Biological Evolution * MeSH
- Vertebrates genetics physiology MeSH
- Sex Chromosomes genetics MeSH
- Sex Determination Processes genetics physiology MeSH
- Environment MeSH
- Animals MeSH
- Check Tag
- Male MeSH
- Female MeSH
- Animals MeSH
- Publication type
- Journal Article MeSH
- Review MeSH
Amniote vertebrates, the group consisting of mammals and reptiles including birds, possess various mechanisms of sex determination. Under environmental sex determination (ESD), the sex of individuals depends on the environmental conditions occurring during their development and therefore there are no sexual differences present in their genotypes. Alternatively, through the mode of genotypic sex determination (GSD), sex is determined by a sex-specific genotype, i.e. by the combination of sex chromosomes at various stages of differentiation at conception. As well as influencing sex determination, sex-specific parts of genomes may, and often do, develop specific reproductive or ecological roles in their bearers. Accordingly, an individual with a mismatch between phenotypic (gonadal) and genotypic sex, for example an individual sex-reversed by environmental effects, should have a lower fitness due to the lack of specialized, sex-specific parts of their genome. In this case, evolutionary transitions from GSD to ESD should be less likely than transitions in the opposite direction. This prediction contrasts with the view that GSD was the ancestral sex-determining mechanism for amniote vertebrates. Ancestral GSD would require several transitions from GSD to ESD associated with an independent dedifferentiation of sex chromosomes, at least in the ancestors of crocodiles, turtles, and lepidosaurs (tuataras and squamate reptiles). In this review, we argue that the alternative theory postulating ESD as ancestral in amniotes is more parsimonious and is largely concordant with the theoretical expectations and current knowledge of the phylogenetic distribution and homology of sex-determining mechanisms.
References provided by Crossref.org
Environmental (and Random?) Sex Determination in Endangered and Invasive Phelsuma Geckos
Sex chromosome evolution among amniotes: is the origin of sex chromosomes non-random?
Poorly differentiated XX/XY sex chromosomes are widely shared across skink radiation
Cytogenetic Analysis of the Asian Box Turtles of the Genus Cuora (Testudines, Geoemydidae)
Conserved sex chromosomes and karyotype evolution in monitor lizards (Varanidae)