0000000001318659

AUTHOR

Rhonda R. Snook

showing 8 related works from this author

Strength of sexual and postmating prezygotic barriers varies between sympatric populations with different histories and species abundances.

2019

The impact of different reproductive barriers on species or population isolation may vary in different stages of speciation depending on evolutionary forces acting within species and through species' interactions. Genetic incompatibilities between interacting species are expected to reinforce prezygotic barriers in sympatric populations and lead to cascade reinforcement between conspecific populations living within and outside the areas of sympatry. We tested these predictions and studied whether and how the strength and target of reinforcement between Drosophila montana and Drosophila flavomontana vary between sympatric populations with different histories and species abundances. All barri…

0106 biological sciences0301 basic medicineSympatryReproductive IsolationReciprocal crossmedia_common.quotation_subjectPopulationZoologyBiology010603 evolutionary biology01 natural sciences03 medical and health sciencesSexual Behavior AnimalGeneticsAnimalseducationDrosophilaEcology Evolution Behavior and Systematicsmedia_commonPopulation DensityDrosophila montanaeducation.field_of_studyReproductive isolationbiology.organism_classificationBiological EvolutionSpeciationSympatry030104 developmental biologySympatric speciationDrosophilaGeneral Agricultural and Biological SciencesEvolution; international journal of organic evolution
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Reinforcement targets sexual or postmating prezygotic reproductive barriers depending on species abundance and population history

2018

AbstractThe impact of different reproductive barriers on species or population isolation may vary in different stages of speciation depending on evolutionary forces acting within species and through species’ interactions. Genetic incompatibilities between interacting species are expected to reinforce prezygotic barriers in sympatric populations and create character displacement between conspecific populations living within and outside the area of sympatry. The outcome of reinforcement has been suggested to be affected by the strength of postzygotic barriers, the history of species coexistence, and the impact of species abundancies on females’ discrimination against heterospecific males. We …

0106 biological sciencesSympatry0303 health scienceseducation.field_of_studybiologymedia_common.quotation_subjectPopulationReproductive isolationbiology.organism_classification010603 evolutionary biology01 natural sciences03 medical and health sciencesSpeciationEvolutionary biologySympatric speciationCharacter displacementeducationDrosophilaRelative species abundance030304 developmental biologymedia_common
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Debating Sexual Selection and Mating Strategies

2006

Published at full length with the title 'Reproductive behaviour: sexual selection remains the best explanation' in Science E-letters, 6 April 2006

0106 biological sciences0303 health sciencesMultidisciplinarymedia_common.quotation_subject010603 evolutionary biology01 natural sciences03 medical and health sciencesConceptual frameworkSexual behaviorCompetitive behaviorSexual selectionCooperative behaviorReproductionMatingPsychologySocial psychologyGame theory030304 developmental biologymedia_commonScience
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What do we need to know about speciation?

2011

Speciation has been a major focus of evolutionary biology research in recent years, with many important advances. However, some of the traditional organising principles of the subject area no longer provide a satisfactory framework, such as the classification of speciation mechanisms by geographical context into allopatric, parapatric and sympatry classes. Therefore, we have asked where speciation research should be directed in the coming years. Here, we present a distillation of questions about the mechanisms of speciation, the genetic basis of speciation and the relationship between speciation and diversity. Our list of topics is not exhaustive; rather we aim to promote discussion on rese…

SympatrybiologyECOLOGICAL SPECIATIONHeteropatric speciationPOPULATION-SIZEDROSOPHILA-PSEUDOOBSCURAAllopatric speciationPOSTZYGOTIC ISOLATIONIncipient speciationParapatric speciationbiology.organism_classificationSEXUAL SELECTIONEcological speciationDrosophila pseudoobscuraADAPTIVE EVOLUTIONSpecies SpecificityEvolutionary biologyHYBRID INCOMPATIBILITIESGenetic algorithmGeneticsGENE FLOWDOBZHANSKY-MULLER INCOMPATIBILITIESREPRODUCTIVE ISOLATIONEcology Evolution Behavior and SystematicsTrends in Ecology and Evolution
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Reproductive isolation among allopatric Drosophila montana populations

2014

An outstanding goal in speciation research is to trace the mode and tempo of the evolution of barriers to gene flow. Such research benefits from studying incipient speciation, in which speciation between populations has not yet occurred, but where multiple potential mechanisms of reproductive isolation (RI: i.e., premating, postmating-prezygotic (PMPZ), and postzygotic barriers) may act. We used such a system to investigate these barriers among allopatric populations of Drosophila montana. In all heteropopulation crosses we found premating (sexual) isolation, which was either symmetric or asymmetric depending on the population pair compared. Postmating isolation was particularly strong in c…

MaleGeneticseducation.field_of_studyDrosophila montanaReproductive IsolationGenetic SpeciationPopulationAllopatric speciationReproductive isolationIncipient speciationBiologyEcological speciationGene flowEvolutionary biologyGenetic algorithmGeneticsAnimalsta1181DrosophilaFemaleGeneral Agricultural and Biological ScienceseducationEcology Evolution Behavior and SystematicsEvolution
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Strength of sexual and postmating prezygotic barriers varies between sympatric populations with different histories and species abundances

2019

The impact of different reproductive barriers on species or population isolation may vary in different stages of speciation depending on evolutionary forces acting within species and through species’ interactions. Genetic incompatibilities between interacting species are expected to reinforce prezygotic barriers in sympatric populations and lead to cascade reinforcement between conspecific populations living within and outside the areas of sympatry. We tested these predictions and studied whether and how the strength and target of reinforcement between Drosophila montana and Drosophila flavomontana vary between sympatric populations with different histories and species abundances. All barri…

reinforcementcourtship cuelisääntymiskäyttäytyminensukupuolivalintamahlakärpäsetfemale discriminationDrosophilalajiutuminensympatry
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Data from: Strength of sexual and postmating prezygotic barriers varies between sympatric populations with different histories and species abundances

2019

The impact of different reproductive barriers on species or population isolation may vary in different stages of speciation depending on evolutionary forces acting within species and through species’ interactions. Genetic incompatibilities between interacting species are expected to reinforce prezygotic barriers in sympatric populations and lead to cascade reinforcement between conspecific populations living within and outside the areas of sympatry. We tested these predictions and studied whether and how the strength and target of reinforcement between Drosophila montana and Drosophila flavomontana vary between sympatric populations with different histories and species abundances. All barri…

medicine and health careLife SciencesMedicine
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Data from: Reproductive isolation among allopatric Drosophila montana populations

2014

An outstanding goal in speciation research is to trace the mode and tempo of the evolution of barriers to gene flow. Such research benefits from studying incipient speciation, in which speciation between populations has not yet occurred but where multiple potential mechanisms of reproductive isolation (RI: i.e. premating, postmating-prezygotic (PMPZ), and postzygotic barriers) may act. We used such a system to investigate these barriers among allopatric populations of Drosophila montana. In all heteropopulation crosses we found premating (sexual) isolation which was either symmetric or asymmetric depending on the population pair compared. Postmating isolation was particularly strong in cros…

medicine and health careDrosophila montanasexual isolationLife SciencesMedicineGametic isolationpostmating-prezygotic isolationspeciation phenotypes
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