Cells · 2021 · 19 citations · 32 references
Translocation between sex-chromosomes and autosomes generates multiple sex-chromosome systems. It happens unexpectedly, and therefore, the evolutionary meaning is not clear. The current study shows a multiple sex chromosome system comprising three different chromosome pairs in a Taiwanese brown frog (<i>Odorrana swinhoana</i>). The male-specific three translocations created a system of six sex-chromosomes, ♂X<sub>1</sub>Y<sub>1</sub>X<sub>2</sub>Y<sub>2</sub>X<sub>3</sub>Y<sub>3</sub>-♀X<sub>1</sub>X<sub>1</sub>X<sub>2</sub>X<sub>2</sub>X<sub>3</sub>X<sub>3</sub>. It is unique in that the translocations occurred among three out of the six members of potential sex-determining chromosomes, which are known to be involved in sex-chromosome turnover in frogs, and the two out of three include orthologs of the sex-determining genes in mammals, birds and fishes. This rare case suggests sex-specific, nonrandom translocations and thus provides a new viewpoint for the evolutionary meaning of the multiple sex chromosome system.
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Genetic evidence equating SRY and the testis-determining factor
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Origins and functional evolution of Y chromosomes across mammals
Diego Cortez, Ray M. Marín, Deborah Toledo‐Flores et al. · Nature · 2014 · 570 citations