Isomorphic biphasic algal life cycles often occur in the environment at ploidy abundance ratios (Haploid:Diploid) different from 1. Its spatial variability occurs within populations related to intertidal height and hydrodynamic stress, possibly reflecting the niche partitioning driven by their diverging adaptation to the environment argued necessary for their prevalence (evolutionary stability). Demographic models based in matrix algebra were developed to investigate which vital rates may efficiently generate an H:D variability at a fine spatial resolution. It was also taken into account time variation and type of life strategy. Ploidy dissimilarities in fecundity rates set an H:D spatial structure miss-fitting the ploidy fitness ratio. The...
Gamete dynamics theory proposes that anisogamy arises by disruptive selection for gamete numbers ver...
Abstract Background Algal isomorphic biphasic life cycles alternate between free-living diploid (tet...
International audiencePartially clonality is an incredibly common reproductive mode found across all...
We develop and test models for the population dynamics of species that undergo regular alternations ...
We develop and test models for the population dynamics of species that undergo regular alternations ...
Many algal species have life cycles that involve an obligate alternation of generations between near...
Synopsis Many species of marine algae have life cycles that involve multiple separate, free-living p...
Previous modelling of the haploid-to-diploid ratio (H:D) in biphasic life cycles relied on estimates...
The evolutionary stability of haploid-diploid life cycles is still controversial. Mathematical model...
Abstract Background Conditional differentiation is one of the most fundamental drivers of biodiversi...
Many species of marine algae have life cycles that involve multiple separate, free-living phases tha...
Tese de dout., Ciências do Mar, da Terra e do Ambiente (Biologia Populacional), Faculdade de Ciência...
Baker's Law predicts uniparental reproduction will facilitate colonization success in novel habitats...
Baker's Law predicts uniparental reproduction will facilitate colonization success in novel habitats...
Spatial segregation among life cycle stages has been observed in many stage-structured species, incl...
Gamete dynamics theory proposes that anisogamy arises by disruptive selection for gamete numbers ver...
Abstract Background Algal isomorphic biphasic life cycles alternate between free-living diploid (tet...
International audiencePartially clonality is an incredibly common reproductive mode found across all...
We develop and test models for the population dynamics of species that undergo regular alternations ...
We develop and test models for the population dynamics of species that undergo regular alternations ...
Many algal species have life cycles that involve an obligate alternation of generations between near...
Synopsis Many species of marine algae have life cycles that involve multiple separate, free-living p...
Previous modelling of the haploid-to-diploid ratio (H:D) in biphasic life cycles relied on estimates...
The evolutionary stability of haploid-diploid life cycles is still controversial. Mathematical model...
Abstract Background Conditional differentiation is one of the most fundamental drivers of biodiversi...
Many species of marine algae have life cycles that involve multiple separate, free-living phases tha...
Tese de dout., Ciências do Mar, da Terra e do Ambiente (Biologia Populacional), Faculdade de Ciência...
Baker's Law predicts uniparental reproduction will facilitate colonization success in novel habitats...
Baker's Law predicts uniparental reproduction will facilitate colonization success in novel habitats...
Spatial segregation among life cycle stages has been observed in many stage-structured species, incl...
Gamete dynamics theory proposes that anisogamy arises by disruptive selection for gamete numbers ver...
Abstract Background Algal isomorphic biphasic life cycles alternate between free-living diploid (tet...
International audiencePartially clonality is an incredibly common reproductive mode found across all...