Search results for "Neurospora crassa"

showing 10 items of 20 documents

Effects of acclimation time and epigenetic mechanisms on growth of Neurospora in fluctuating environments

2017

AbstractReaction norms or tolerance curves have often been used to predict how organisms deal with fluctuating environments. A potential drawback is that reaction norms measured in different constant environments may not capture all aspects of organismal responses to fluctuating environments. We examined growth of the filamentous fungusNeurospora crassain fluctuating temperatures and tested if growth in fluctuating temperatures can be explained simply by growth in different constant temperatures or if more complex models are needed. In addition, as previous studies on fluctuating environments have revealed that past temperatures that organisms have experienced can affect their response to c…

0106 biological sciences0301 basic medicineAcclimatizationMutantEnvironmentMethylation010603 evolutionary biology01 natural sciencesAcclimatizationNeurosporaArticleEpigenesis GeneticNeurospora crassaHistones03 medical and health sciencesGeneticsEpigeneticsGenetics (clinical)030304 developmental biology0303 health sciencesbiologyCell CyclefungiTemperatureAcetylationDNA MethylationModels Theoreticalbiology.organism_classificationFilamentous fungusNeurospora030104 developmental biologyRNA Interference PathwayH3k4 methylationDNA methylationBiophysicsGene-Environment InteractionRNA Interference
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Quantitative genetics of temperature performance curves of Neurospora crassa

2020

AbstractEarth’s temperature is increasing due to anthropogenic CO2emissions; and organisms need either to adapt to higher temperatures, migrate into colder areas, or face extinction. Temperature affects nearly all aspects of an organism’s physiology via its influence on metabolic rate and protein structure, therefore genetic adaptation to increased temperature may be much harder to achieve compared to other abiotic stresses. There is still much to be learned about the evolutionary potential for adaptation to higher temperatures, therefore we studied the quantitative genetics of growth rates in different temperatures that make up the thermal performance curve of the fungal model systemNeuros…

0106 biological sciences0301 basic medicineClimate ChangeQuantitative Trait LocievoluutioAdaptation BiologicalkasvuevolvabilityG‐matrixphenotypic plasticity010603 evolutionary biology01 natural sciencesNeurospora crassa03 medical and health sciencesGenetic variationGeneticsSelection (genetic algorithm)Ecology Evolution Behavior and Systematics030304 developmental biologyAbiotic component0303 health sciencesExperimental evolutionExtinctionModels GeneticNeurospora crassabiologyepigeneettinen periytyminenCrassaTemperatureGenetic VariationQuantitative geneticsbiology.organism_classificationgeneettinen muunteluBiological EvolutionEvolvability030104 developmental biologyreaction norm13. Climate actionEnvironmental sciencefenotyyppilämpötilafungiAdaptationsienetGeneral Agricultural and Biological SciencesBiological systemEvolution
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2020

Abstract The filamentous fungus Neurospora crassa, a model microbial eukaryote, has a life cycle with many features that make it suitable for studying experimental evolution. However, it has lacked a general tool for estimating relative fitness of different strains in competition experiments. To remedy this need, we constructed N. crassa strains that contain a modified csr-1 locus and developed an assay for detecting the proportion of the marked strain using a post PCR high resolution melting assay. DNA extraction from spore samples can be performed on 96-well plates, followed by a PCR step, which allows many samples to be processed with ease. Furthermore, we suggest a Bayesian approach for…

0106 biological sciencesGenetics0303 health sciencesMating typeExperimental evolutionCrassaLocus (genetics)Biologybiology.organism_classification010603 evolutionary biology01 natural sciencesDNA extractionHigh Resolution MeltNeurospora crassa03 medical and health sciencesGeneticsMolecular BiologyGeneGenetics (clinical)030304 developmental biologyG3: Genes|Genomes|Genetics
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Marked Neurospora crassa strains for competition experiments and Bayesian methods for fitness estimates

2019

AbstractThe filamentous fungusNeurospora crassa, a model microbial eukaryote, has a life cycle with many features that make it suitable for studying experimental evolution. However, it has lacked a general tool for estimating relative fitness of different strains in competition experiments. To remedy this need, we constructedN. crassastrains that contain a modifiedcsr-1locus and developed an assay for detecting the proportion of the marked strain using a post PCR high resolution melting assay. DNA extraction from spore samples can be performed on 96-well plates, followed by a PCR step, which allows many samples to be processed with ease. Furthermore, we suggest a Bayesian approach for estim…

0106 biological sciencesGenetics0303 health sciencesMating typeExperimental evolutionbiologyevoluutiobiologiaCrassaLocus (genetics)QH426-470biology.organism_classification010603 evolutionary biology01 natural sciencesDNA extractionhigh resolution meltingNeurospora crassacompetitive fitness03 medical and health sciencesGeneticsfungiexperimental evolutionAllelesienetGene030304 developmental biology
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Epigenetic control of phenotypic plasticity in a filamentous fungus Neurospora crassa

2016

AbstractPhenotypic plasticity is the ability of a genotype to produce different phenotypes under different environmental or developmental conditions. Phenotypic plasticity is an ubiquitous feature of living organisms, and is typically based on variable patterns of gene expression. However, the mechanisms by which gene expression is influenced and regulated during plastic responses are poorly understood in most organisms. While modifications to DNA and histone proteins have been implicated as likely candidates for generating and regulating phenotypic plasticity, specific details of each modification and its mode of operation have remained largely unknown. In this study, we investigated how e…

0106 biological sciencesGenetics0303 health sciencesPhenotypic plasticitybiologyContext (language use)biology.organism_classification01 natural sciencesNeurospora crassa03 medical and health sciencesHistoneHistone methylationDNA methylationbiology.proteinEpigeneticsGene030304 developmental biology010606 plant biology & botany
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Epigenetic Control of Phenotypic Plasticity in the Filamentous Fungus Neurospora crassa

2016

Abstract Phenotypic plasticity is the ability of a genotype to produce different phenotypes under different environmental or developmental conditions. Phenotypic plasticity is a ubiquitous feature of living organisms, and is typically based on variable patterns of gene expression. However, the mechanisms by which gene expression is influenced and regulated during plastic responses are poorly understood in most organisms. While modifications to DNA and histone proteins have been implicated as likely candidates for generating and regulating phenotypic plasticity, specific details of each modification and its mode of operation have remained largely unknown. In this study, we investigated how e…

0301 basic medicineRNA-interferenssiGenotypeInvestigationsQH426-470MethylationModels BiologicalHistone methylationEpigenesis GeneticNeurospora crassaHistonesGene Knockout Techniques03 medical and health sciencesRNA interferenceHistone demethylationGene Expression Regulation FungalHistone methylationGeneticshistone deacetylationEpigeneticshistone methylationGenetikMolecular BiologyGeneCrosses GeneticGenetic Association StudiesGenetics (clinical)Histone deacetylationGeneticsAnalysis of VariancePhenotypic plasticityModels StatisticalDNA methylationNeurospora crassabiologyAcetylationbiology.organism_classificationDNA-metylaatioPhenotype030104 developmental biologyHistonereaction normMutationDNA methylationbiology.proteinta1181fungisienetAlgorithmsG3: Genes, Genomes, Genetics
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Sedimentation properties of chitosomal chitin synthetase from the wild-type strain and the 'slime' variant of Neurospora crassa.

1989

Marked differences in the pattern of sedimentation of cellular structures were observed after isopycnic centrifugation of crude cell-free preparations from the Neurospora crassa wall-less 'slime' variant and mycelial wild-type strain. Kinetic studies of particle sedimentation showed that the various types of subcellular components, as revealed by turbidity, UV absorption, polypeptide patterns, and chitin synthetase activity determinations, sediment independently of one another. An important feature was the finding that chitin synthetase from 'slime' peaked at a median specific gravity of 1.1201 +/- 0.0036, whereas that from wild-type strain sedimented at a higher buoyant density (specific g…

BiophysicsCentrifugation IsopycnicBiochemistryNeurospora crassaCell wallchemistry.chemical_compoundChitinCentrifugation Density GradientMolecular BiologyPolyacrylamide gel electrophoresisSpecific GravityDifferential centrifugationChitin SynthaseOrganellesbiologyStrain (chemistry)Neurospora crassafungiCrassaGenetic VariationSedimentationbiology.organism_classificationcarbohydrates (lipids)Molecular WeightKineticsMicroscopy ElectronNeurosporaBiochemistrychemistryGlucosyltransferasesElectrophoresis Polyacrylamide GelSpectrophotometry UltravioletBiochimica et biophysica acta
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Further characterization of the histidine gene cluster of Streptomyces coelicolor A3(2): nucleotide sequence and transcriptional analysis of hisD.

1992

We have further characterized the genomic region of Streptomyces coelicolor A3(2) that contains genes involved in the biosynthesis of histidine. A 2,357-base pair fragment contained in plasmid pSCH3328 that complemented hisD mutations has been sequenced. Computer analysis revealed an open reading frame that encodes a protein with significant homology to the Escherichia coli, Salmonella typhimurium and Mycobacterium smegmatis hisD product, Saccharomyces cerevisiae HIS4C, and Neurospora crassa his3 gene products. Two other contiguous open reading frames oriented divergently with respect to hisD did not show significant similarity with any of the his genes or to other sequences included in the…

GeneticsDNA BacterialbiologyBase SequenceTranscription GeneticStreptomyces coelicolorMolecular Sequence DataRestriction MappingNucleic acid sequenceGeneral MedicineIn Vitro Techniquesbiology.organism_classificationMicrobiologyPrimer extensionStreptomycesNeurospora crassaOpen reading frameOpen Reading FramesCistronGenes BacterialGene clusterHistidineMolecular BiologyGene
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Stability of chitin synthetase in cell-free preparations of a wild-type strain and a 'slime' variant of Neurospora crassa.

1991

Chitin synthetase activity in cell-free preparations from a wild-type strain and a 'slime' variant of Neurospora crassa was monitored over many days in samples stored at 0 degrees C. Total activity in whole-cell-free extracts and low-speed supernatants from both organisms was very unstable, losing more than 90% of the initial activity on storage at 0 degrees C for 96 h. Chitin synthetase detection was not masked by chitinase activity present in the preparations. Gel-filtration chromatography of these preparations increased the stability of the activity from the 'slime' variant, whereas removal of particulate structures by high-speed centrifugation stabilized the chitin synthetase activity i…

MicrobiologyCell-free systemMicrobiologyNeurospora crassachemistry.chemical_compoundChitinEnzyme StabilityGeneticsCentrifugationMolecular Biologychemistry.chemical_classificationChitin SynthasebiologyCell-Free SystemNeurospora crassafungiWild typeGenetic VariationChitin synthasebiology.organism_classificationcarbohydrates (lipids)KineticsEnzymechemistryBiochemistryChitinasebiology.proteinFEMS microbiology letters
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Parental effects in a filamentous fungus : Phenotype, fitness and mechanism

2023

AbstractAdaptation to changing environments often requires meaningful phenotypic modifications to match the current conditions. However, obtaining information about the surroundings during an organism’s own lifetime may only permit accommodating relatively late developmental modifications. Therefore, it may be advantageous to rely on inter-generational or trans-generational cues that provide information about the environment as early as possible to allow development along an optimal trajectory. Transfer of information or resources across generations, known as parental effects, is well documented in animals and plants but not in other eukaryotes, such as fungi. Understanding parental effects…

Neurospora crassatransgenerational effectintergenerational effectGeneticssukupolvetfungisienetEcology Evolution Behavior and Systematicsfungal sporeitiöt
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