Evolutionary transitions between hermaphroditism and dioecy have occurred numerous times in the land plants. We briefly review the factors thought to be responsible for these transitions, and we provide a synthesis of what has been learned from recent studies of the annual herb Mercurialis annua, in which dioecy (males and females), monoecy (functional hermaphrodites), and androdioecy (males and hermaphrodites) occur in different parts of its geographic range. Previous research on M. annua has revealed the importance of genome duplication and hybridization in the origin of much of the observed variation. Here we show, however, that spatial transitions in the sexual system also occur within the same ploidy level. In particular, we present an...
Dioecy has often broken down in flowering plants, yielding functional hermaphroditism. We reasoned t...
Evolutionary transitions from hermaphroditism to dioecy have been common in flowering plants, <su...
Most plant species are hermaphrodites, with both male and female functions performed by the same ind...
Plants with separate sexes often show "inconstant" or "leaky" sex expression, with females or males ...
Plants with separate sexes often show "inconstant" or "leaky" sex expression, with females or males ...
The allocation of resources to male or female progeny, or to male or female reproductive function mo...
Polyploidization may precipitate dramatic changes to the genome, including chromosome rearrangements...
Separate sexes have evolved on numerous independent occasions from hermaphroditic ancestors in flowe...
Polyploidization may precipitate dramatic changes to the genome, including chromosome rearrangements...
Separate sexes have evolved on numerous independent occasions from hermaphroditic ancestors in flowe...
The allocation of resources to male or female progeny, or to male or female reproductive function mo...
Polyploidization may precipitate dramatic changes to the genome, including chromosome rearrangements...
Polyploidization may precipitate dramatic changes to the genome, including chromosome rearrangements...
Evolutionary transitions from hermaphroditism to dioecy have been common in flowering plants, <su...
Dioecy has often broken down in flowering plants, yielding functional hermaphroditism. We reasoned t...
Dioecy has often broken down in flowering plants, yielding functional hermaphroditism. We reasoned t...
Evolutionary transitions from hermaphroditism to dioecy have been common in flowering plants, <su...
Most plant species are hermaphrodites, with both male and female functions performed by the same ind...
Plants with separate sexes often show "inconstant" or "leaky" sex expression, with females or males ...
Plants with separate sexes often show "inconstant" or "leaky" sex expression, with females or males ...
The allocation of resources to male or female progeny, or to male or female reproductive function mo...
Polyploidization may precipitate dramatic changes to the genome, including chromosome rearrangements...
Separate sexes have evolved on numerous independent occasions from hermaphroditic ancestors in flowe...
Polyploidization may precipitate dramatic changes to the genome, including chromosome rearrangements...
Separate sexes have evolved on numerous independent occasions from hermaphroditic ancestors in flowe...
The allocation of resources to male or female progeny, or to male or female reproductive function mo...
Polyploidization may precipitate dramatic changes to the genome, including chromosome rearrangements...
Polyploidization may precipitate dramatic changes to the genome, including chromosome rearrangements...
Evolutionary transitions from hermaphroditism to dioecy have been common in flowering plants, <su...
Dioecy has often broken down in flowering plants, yielding functional hermaphroditism. We reasoned t...
Dioecy has often broken down in flowering plants, yielding functional hermaphroditism. We reasoned t...
Evolutionary transitions from hermaphroditism to dioecy have been common in flowering plants, <su...
Most plant species are hermaphrodites, with both male and female functions performed by the same ind...