Search results for "Parthenogenesis"

showing 10 items of 60 documents

Gene regulation in parthenocarpic tomato fruit.

2009

Parthenocarpy is potentially a desirable trait for many commercially grown fruits if undesirable changes to structure, flavour, or nutrition can be avoided. Parthenocarpic transgenic tomato plants (cv MicroTom) were obtained by the regulation of genes for auxin synthesis (iaaM) or responsiveness (rolB) driven by DefH9 or the INNER NO OUTER (INO) promoter from Arabidopsis thaliana. Fruits at a breaker stage were analysed at a transcriptomic and metabolomic level using microarrays, real-time reverse transcription-polymerase chain reaction (RT-PCR) and a Pegasus III TOF (time of flight) mass spectrometer. Although differences were observed in the shape of fully ripe fruits, no clear correlatio…

0106 biological sciencesPhysiologyParthenogenesisPlant Biologyseedless fruitPlant SciencetomatoParthenocarpy01 natural sciencesSolanum lycopersicumGene Expression Regulation PlantGene expressionArabidopsis thalianaHormone metabolismPlant Proteins2. Zero hungerchemistry.chemical_classification0303 health sciencesbiologyfood and beveragesRipeningPlantsPlants Genetically ModifiedResearch PapersBiochemistryMetabolomeBiotechnologyCrop and Pasture ProductionINOPlant Biology & Botanyfruit ripeningGenetically Modified03 medical and health sciencesparthenocarpicAuxinBotanyGeneticsGenetically modified tomatoLycopersicon esculentum030304 developmental biologyNutritionfruit quality fruit ripening INO parthenocarpic seedless fruit tomato.Arabidopsis Proteinsfungifruit qualityPlantbiology.organism_classificationSeedless fruitchemistryGene Expression RegulationFruit010606 plant biology & botanyTranscription Factors
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Linking present environment and the segregation of reproductive modes (geographical parthenogenesis) in Eucypris virens (Crustacea: Ostracoda)

2013

Aim Geographical parthenogenesis – in which parthenogenetic populations are more widely distributed than sexually reproducing populations – is observed in many plant and animal species. Many hypotheses have been proposed to account for this biogeographical pattern, and these often invoke historical processes such as the influence of glaciation. However, there are relatively few empirical studies of the contemporary factors associated with geographical parthenogenesis. The aim of this study was to understand its causes by linking contemporary environmental gradients with reproductive modes in the freshwater ostracod Eucypris virens. Location Europe and North Africa. Methods We sampled popula…

0106 biological sciences[SDV.EE]Life Sciences [q-bio]/Ecology environmenteducation.field_of_studyEcologybiologyEcology010604 marine biology & hydrobiologyPopulationParthenogenesis15. Life on landbiology.organism_classification010603 evolutionary biology01 natural sciencesAsexualitySexual reproduction13. Climate actionOstracodBiological dispersalAdaptationeducationEcology Evolution Behavior and SystematicsComputingMilieux_MISCELLANEOUSInvertebrate
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Review paper: Seasonal variation as a determinant of population structure in rotifers reproducing by cyclical parthenogenesis

1998

Monogonont rotifers live in habitats that display extensively variation in both biotic and abiotic components. Much of this variation is seasonal and therefore predictable for a given pond or lake. In 1972, King proposed one physiological and two genetic models presenting alternative modes of adaptation to this temporal variation. Our purpose in the present paper is to review and evaluate how our knowledge of the seasonal structure of rotifer populations has changed in the past 25 years. Seasonal changes in clone frequencies have been reported from three studies of natural populations using electrophoretic analysis of isozymes. In one of these studies there was evidence for substantial temp…

Abiotic componentEcologymedia_common.quotation_subjectGenetic modelZoologyReproductive isolationParthenogenesisAdaptationBiologyGeneralist and specialist speciesCompetition (biology)Sexual reproductionmedia_common
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The marbled crayfish as a paradigm for saltational speciation by autopolyploidy and parthenogenesis in animals

2015

ABSTRACT The parthenogenetic all-female marbled crayfish is a novel research model and potent invader of freshwater ecosystems. It is a triploid descendant of the sexually reproducing slough crayfish, Procambarus fallax, but its taxonomic status has remained unsettled. By cross-breeding experiments and parentage analysis we show here that marbled crayfish and P. fallax are reproductively separated. Both crayfish copulate readily, suggesting that the reproductive barrier is set at the cytogenetic rather than the behavioural level. Analysis of complete mitochondrial genomes of marbled crayfish from laboratory lineages and wild populations demonstrates genetic identity and indicates a single o…

AutopolyploidyMitochondrial DNAQH301-705.5ScienceMarbled meatmedia_common.quotation_subjectParthenogenesisChromosomal speciationMarbled crayfishZoologyGenomeGeneral Biochemistry Genetics and Molecular BiologyBiology (General)Saltational evolutionShellfishmedia_commonbiologymusculoskeletal neural and ocular physiologyQAquatic animalParthenogenesisbiology.organism_classificationCrayfishFecunditySpeciationnervous systemMicrosatelliteEpigeneticsProcambarus fallaxGeneral Agricultural and Biological SciencesResearch Article
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Sex in an uncertain world: environmental stochasticity helps restore competitive balance between sexually and asexually reproducing populations

2014

Like many organisms, individuals of the freshwater ostracod species Eucypris virens exhibit either obligate sexual or asexual reproductive modes. Both types of individual routinely co-occur, including in the same temporary freshwater pond (their natural habitat in which they undergo seasonal diapause). Given the well-known two-fold cost of sex, this begs the question of how sexually reproducing individuals are able to coexist with their asexual counterparts in spite of such overwhelming costs. Environmental stochasticity in the form of 'false dawn' inundations (where the first hydration is ephemeral and causes loss of early hatching individuals) may provide an advantage to the sexual subpop…

Balance (metaphysics)Stochastic ProcessesObligateEcologyClimatePopulation DynamicsParthenogenesisEnvironmentBiologyDiapauseModels BiologicalSpecies SpecificityHabitatSpainCrustaceaReproduction AsexualSpiteAnimalsPopulation growthSexMatrix projectionEcology Evolution Behavior and SystematicsJournal of Evolutionary Biology
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Identification of a gene overexpressed in aphids reared under short photoperiod.

2003

Most aphids develop a cyclic parthenogenesis life-cycle. After several generations of viviparously produced parthenogenetic females, follows a single annual generation of sexual individuals, usually in autumn, that mate and lay the sexual eggs. Shortening of photoperiod at the end of the summer (together with temperature) is a key factor inducing the sexual response. Currently no genes involved in the cascade of events that lead to the appearance of sexual forms have been reported. After a Differential Display RT-PCR survey performed on Acyrthosiphon pisum aphids, we identified a gene that is overexpressed in aphids reared under short photoperiod conditions that induce sexuality in this spe…

DNA ComplementaryPhotoperiodMolecular Sequence DataBiologyBiochemistrySexual Behavior AnimalComplementary DNAAnimalsCircadian rhythmAmino Acid SequenceCloning MolecularMolecular BiologyGeneDNA PrimersphotoperiodismGeneticsDifferential displayBase SequenceSequence Homology Amino Acidfood and beveragesParthenogenesisbiology.organism_classificationAcyrthosiphon pisumInsect ScienceAphidsGABAergicInsect ProteinsInsect biochemistry and molecular biology
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Expression profiling of uniparental mouse embryos is inefficient in identifying novel imprinted genes

2006

AbstractImprinted genes are expressed from only one allele in a parent-of-origin-specific manner. We here describe a systematic approach to identify novel imprinted genes using quantification of allele-specific expression by Pyrosequencing, a highly accurate method to detect allele-specific expression differences. Sixty-eight candidate imprinted transcripts mapping to known imprinted chromosomal regions were selected from a recent expression profiling study of uniparental mouse embryos and analyzed. Three novel imprinted transcripts encoding putative non-protein-coding RNAs were identified on the basis of parent-of-origin-specific monoallelic expression in E11.5 (C57BL/6 × Cast/Ei)F1 and in…

DNA ComplementaryTranscription GeneticGenomic imprintingMouseParthenogenesisGene ExpressionGenomicsMice Inbred StrainsUniparental embryoBiologyPolymorphism Single NucleotideChromosomesMicePregnancyDatabases GeneticGeneticsAnimalsRNA MessengerAlleleGeneAllelesCrosses GeneticGeneticsModels GeneticChromosome MappingGenetic VariationPyrosequencingEmbryoParthenogenesisDNAEmbryo MammalianGene expression profilingGene expression profilingMice Inbred C57BLPyrosequencingRNAFemaleGenomic imprintingPrader-Willi SyndromeSoftwareGenomics
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Sex Allocation in Haplodiploid Cyclical Parthenogens with Density‐Dependent Proportion of Males

1998

Departament de Microbiologia i Ecologia, Universitat de Birky and Gilbert 1971; Wallace and Snell 1991), which Valencia, E46100-Burjassot (Valencia), Spain includes an asexual (amictic) and a sexual (mictic) phase, the diapausing form being the sexually produced resting Submitted September 22, 1997; Accepted April 21, 1998 egg. Habitat colonization begins when the resting eggs hatch and emerge from the sediments. With these hatchlings, the amictic phase starts, which is a repeated sequence of amictic females parthenogenetically produc

Density dependentEcologyHaplodiploidyColonizationParthenogenesisBiologyHatchlingEcology Evolution Behavior and SystematicsSex allocationThe American Naturalist
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Starvation tolerance of rotifers produced from parthenogenetic eggs and from diapausing eggs: a life table approach

2006

Monogonont rotifers have to cope with environmental variation by producing diapausing stages.Cyclically, parthenogenetic rotifers produce females by (i) parthenogenetic eggs and (ii) sexuallyproduced eggs. Parthenogenetic eggs hatch shortly after ovoposition, frequently while they are carriedby their mothers. Sexual eggs go into dormancy and hatch in the sediment, in response to specificenvironmental cues. Therefore, it is expected that post-diapause and parthenogenetic offspring wouldface different environments. Moreover, resource allocation is higher in diapausing eggs than inparthenogenetic eggs. In this study, the response to starvation of females obtained from partheno-genetic eggs and …

EcologyHatchingEcologyOffspringmedia_common.quotation_subjectLongevityZoologyRotiferParthenogenesisAquatic ScienceDiapauseBiologyBrachionusbiology.organism_classificationembryonic structuresDormancyEcology Evolution Behavior and Systematicsmedia_commonJournal of Plankton Research
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Investigating the origin of parthenogenesis and ploidy level in Dahlica fennicella (Lepidoptera: Psychidae)

2013

The theories for the predominance of sexual reproduction predict that parthenogens should have no long-term evolutionary potential due to the lack of genetic recombination, despite short term advantages. Although parthenogenesis is rare among high order animals, true parthenogens can be found in various taxa. The intriguing question of the proliferation and persistence of parthenogenetic species needs investigation. An ideal species for such research is a parthenogenetic mont Dahlica fennicella that appears to be as equally successful as other coexisting sexual species. We investigated whether high ploidy level of D. fennnicella is due to hybridization between closely related sexual species…

EcologyPhylogenetic treepartenogeneesiParthenogenesisperhosetZoologyParthenogenesisBiologyGenetic recombinationSexual reproductionLepidoptera genitaliaLepidopteraTaxonta1181Animal Science and ZoologyPloidyHigh orderEcology Evolution Behavior and SystematicsNature and Landscape Conservation
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