In dioecious plants, males and females frequently show 'leaky' sex expression, with individuals occasionally producing flowers of the opposite sex. This leaky sex expression may have enabled the colonization of oceanic islands by dioecious plant species, and it is likely to represent the sort of variation upon which selection acts to bring about evolutionary transitions from dioecy to hermaphroditism. Although leakiness is commonly reported for dioecious species, it is not known whether it has plastic component. The question is interesting because males or females with an ability to enhance their leakiness plastically in the absence of mates would have an advantage of being able to produce progeny by self-fertilization. Here, we demonstrate...
1. Wind pollination is thought to have evolved in response to selection for mechanisms to promote po...
Background and aims Changes in the sex allocation (i.e. in pollen versus seed production) of hermaph...
Dioecy has often broken down in flowering plants, yielding functional hermaphroditism. We reasoned t...
In dioecious plants, males and females frequently show 'leaky' sex expression, with individuals occa...
In dioecious plants, males and females frequently show 'leaky' sex expression, with individuals occa...
Evolutionary transitions from hermaphroditism to dioecy have been common in flowering plants, <su...
Evolutionary transitions from hermaphroditism to dioecy have been common in flowering plants, <su...
Plants are notoriously variable in gender, ranging in sex allocation from purely male through hermap...
Plants are notoriously variable in gender, ranging in sex allocation from purely male through hermap...
Plants are notoriously variable in gender, ranging in sex allocation from purely male through hermap...
Plants are notoriously variable in gender, ranging in sex allocation from purely male through hermap...
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 ...
Background and aims Changes in the sex allocation (i.e. in pollen versus seed production) of hermaph...
Background and aims Changes in the sex allocation (i.e. in pollen versus seed production) of hermaph...
1. Wind pollination is thought to have evolved in response to selection for mechanisms to promote po...
Background and aims Changes in the sex allocation (i.e. in pollen versus seed production) of hermaph...
Dioecy has often broken down in flowering plants, yielding functional hermaphroditism. We reasoned t...
In dioecious plants, males and females frequently show 'leaky' sex expression, with individuals occa...
In dioecious plants, males and females frequently show 'leaky' sex expression, with individuals occa...
Evolutionary transitions from hermaphroditism to dioecy have been common in flowering plants, <su...
Evolutionary transitions from hermaphroditism to dioecy have been common in flowering plants, <su...
Plants are notoriously variable in gender, ranging in sex allocation from purely male through hermap...
Plants are notoriously variable in gender, ranging in sex allocation from purely male through hermap...
Plants are notoriously variable in gender, ranging in sex allocation from purely male through hermap...
Plants are notoriously variable in gender, ranging in sex allocation from purely male through hermap...
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 ...
Background and aims Changes in the sex allocation (i.e. in pollen versus seed production) of hermaph...
Background and aims Changes in the sex allocation (i.e. in pollen versus seed production) of hermaph...
1. Wind pollination is thought to have evolved in response to selection for mechanisms to promote po...
Background and aims Changes in the sex allocation (i.e. in pollen versus seed production) of hermaph...
Dioecy has often broken down in flowering plants, yielding functional hermaphroditism. We reasoned t...