International audienceMany hermaphroditic flowering plants species possess a genetic self-incompatibility (SI) system that prevents self-fertilization and is typically controlled by a single multiallelic locus, the S-locus. The conditions under which SI can be stably maintained in single isolated populations are well known and depend chiefly on the level of inbreeding depression and the number of SI alleles segregating at the S-locus. However, while both the number of SI alleles and the level of inbreeding depression are potentially affected by population subdivision, the conditions for the maintenance of SI in subdivided populations remain to be studied. In this paper, we combine analytical predictions and two different individual-based si...
L'auto-incompatibilité est un mécanisme génétique très répandu chez les Angiospermes. Elle permet au...
We investigate mate availability in different models of multiallelic self-incompatibility systems in...
The stationary frequency distribution and allelic dynamics in finite populations are analyzed throug...
International audienceMany hermaphroditic flowering plants species possess a genetic self-incompatib...
In many hermaphroditic flowering plants self-fertilization is prevented by self-incompatibility (SI)...
International audienceGametophytic self-incompatibility (GSI) is a widespread genetic system, which ...
International audienceGametophytic self-incompatibility (SI) in plants is a widespread mechanism pre...
Gametophytic self-incompatibility is a widespread genetic system, which enables hermaphroditic plant...
The origin and maintaining of self-incompatibility systems in angiosperms are still debated question...
International audienceSelf-incompatibility (SI) is a widespread mechanism that prevents inbreeding i...
Inbreeding in hermaphroditic plants can occur through two different mechanisms: biparental inbreedin...
Self-incompatibility (SI) is a genetically based recognition system that functions to prevent self-f...
Self-incompatibility (SI) is a genetically based recognition system that functions to prevent self-f...
Many hermaphroditic plants avoid self-fertilization by rejecting pollen that express genetically det...
It is known that a single-locus gametophytic self-incompatibility (GSI) system can persist with just...
L'auto-incompatibilité est un mécanisme génétique très répandu chez les Angiospermes. Elle permet au...
We investigate mate availability in different models of multiallelic self-incompatibility systems in...
The stationary frequency distribution and allelic dynamics in finite populations are analyzed throug...
International audienceMany hermaphroditic flowering plants species possess a genetic self-incompatib...
In many hermaphroditic flowering plants self-fertilization is prevented by self-incompatibility (SI)...
International audienceGametophytic self-incompatibility (GSI) is a widespread genetic system, which ...
International audienceGametophytic self-incompatibility (SI) in plants is a widespread mechanism pre...
Gametophytic self-incompatibility is a widespread genetic system, which enables hermaphroditic plant...
The origin and maintaining of self-incompatibility systems in angiosperms are still debated question...
International audienceSelf-incompatibility (SI) is a widespread mechanism that prevents inbreeding i...
Inbreeding in hermaphroditic plants can occur through two different mechanisms: biparental inbreedin...
Self-incompatibility (SI) is a genetically based recognition system that functions to prevent self-f...
Self-incompatibility (SI) is a genetically based recognition system that functions to prevent self-f...
Many hermaphroditic plants avoid self-fertilization by rejecting pollen that express genetically det...
It is known that a single-locus gametophytic self-incompatibility (GSI) system can persist with just...
L'auto-incompatibilité est un mécanisme génétique très répandu chez les Angiospermes. Elle permet au...
We investigate mate availability in different models of multiallelic self-incompatibility systems in...
The stationary frequency distribution and allelic dynamics in finite populations are analyzed throug...