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Whole-genome resequencing of Cucurbita pepo morphotypes to discover genomic variants associated with morphology and horticulturally valuable traits

2019

[EN] Cucurbita pepo contains two cultivated subspecies, each of which encompasses four fruit-shape morphotypes (cultivar groups). The Pumpkin, Vegetable Marrow, Cocozelle, and Zucchini Groups are of subsp. pepo and the Acorn, Crookneck, Scallop, and Straightneck Groups are of subsp. ovifera. Recently, a de novo assembly of the C. pepo subsp. pepo Zucchini genome was published, providing insights into its evolution. To expand our knowledge of evolutionary processes within C. pepo and to identify variants associated with particular morphotypes, we performed whole-genome resequencing of seven of these eight C. pepo morphotypes. We report for the first time whole-genome resequencing of the four…

0106 biological sciences0301 basic medicineLinkage disequilibriumFruit shapeEvolutionGenomicsPlantesPlant ScienceHorticultureSubspecies01 natural sciencesBiochemistryGenomeArticleCandidate genesStructural variation03 medical and health sciencesCucurbita pepoSizelcsh:BotanyGenetic variationGeneticslcsh:QH301-705.5GeneticsbiologyRevealsSunHomologsbiology.organism_classificationlcsh:QK1-989Common02.- Poner fin al hambre conseguir la seguridad alimentaria y una mejor nutrición y promover la agricultura sostenibleGenòmicaYabby gene familyGENETICA030104 developmental biologyNatural variation in plantslcsh:Biology (General)Genetic markerStructural variation010606 plant biology & botanyBiotechnology
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Fatty acids produced by Neofusicoccum vitifusiforme and N. Parvum, fungi associated with grapevine botryosphaeria dieback

2018

There is evidence that secondary metabolites are involved in the fungal pathogenicity and virulence of Neofusicoccum spp. Fatty acids may also influence the plant&ndash

0106 biological sciences0301 basic medicineLinoleic acidAzelaic acidLinoleic acidVirulencePlant ScienceBiology01 natural sciences03 medical and health scienceschemistry.chemical_compoundBotanymedicinegrapevine trunk diseaseslcsh:Agriculture (General)Botryosphaeriachemistry.chemical_classificationGrapevine trunk diseaseGC/MSFatty acidfood and beveragesAzelaic acidBotryosphaeriaceaebiology.organism_classificationlcsh:S1-972Neofusicoccum030104 developmental biologychemistryBotryosphaeriaceaeGas chromatography–mass spectrometryAgronomy and Crop Science010606 plant biology & botanymedicine.drugFood ScienceSettore AGR/16 - Microbiologia Agraria
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Gametic embryogenesis through isolated microspore culture in Corylus avellana L.

2015

Haploid technology is a valuable plant breeding tool for obtaining homozygosity particularly in woody plants. Hazelnut, the world’s sixth ranking nut tree crop is a monoecious, anemophilous species. It is characterized by a sporophytic incompatibility system that prevents production of homozygous plants with conventional methods, involving several self-pollination cycles. In this study, gametic embryogenesis, in particular isolated microspore culture, was tried with five genotypes. Two culture media were tested and four temperature stress treatments were applied to the isolated microspores that were cultivated at the vacuolated developmental stage. To our knowledge, this is the first report…

0106 biological sciences0301 basic medicineLocus (genetics)HorticultureBiologyMicrospore-derived embryo01 natural sciences03 medical and health sciencesMicrosporeSelf-pollinationBotanyHaploidPlant reproductive morphologyPlant breedingHazelnutMicrospore-derived embryosTemperature strefungifood and beveragesSporophyteEmbryoSettore AGR/03 - Arboricoltura Generale E Coltivazioni Arboree030104 developmental biologyTemperature stressHaploid; Hazelnut; Microspore-derived embryos; Temperature stress; HorticulturePloidy010606 plant biology & botanyPlant Cell, Tissue and Organ Culture (PCTOC)
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Changes in lipid and carotenoid metabolism in Chlamydomonas reinhardtii during induction of CO2-concentrating mechanism: Cellular response to low CO2…

2020

Photosynthetic organisms strictly depend on CO2 availability and the CO2:O2 ratio, as both CO2/O2 compete for catalytic site of Rubisco. Green alga Chlamydomonas reinhardtii, can overcome CO2 shortage by inducing CO2-concentrating mechanism (CCM). Cells transferred to low-CO2 are subjected to light-driven oxidative stress due to decrease in the electron sink. Response to environmental perturbations is mediated to some extent by changes in the lipid and carotenoid metabolism. We thus hypothesize that when cells are challenged with changes in CO2 availability, changes in the lipidome and carotenoids profile occur. These changes expected to be transient, when CCM is activated, CO2 limitation w…

0106 biological sciences0301 basic medicineLow-CO stressChlamydomonas reinhardtiimedicine.disease_cause01 natural sciences03 medical and health sciencesCarotenogenesisLipid dropletmedicineBetaine lipidsCarotenoidchemistry.chemical_classificationCCMbiologyRuBisCOChlamydomonasBiochemistry and Molecular BiologyLipid metabolismLipidomebiology.organism_classificationLipid droplets030104 developmental biologyMicrobiology (Microbiology in the medical area to be 30109)chemistryBiochemistryXanthophyllbiology.proteinAgronomy and Crop ScienceOxidative stressBiokemi och molekylärbiologi010606 plant biology & botany
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Extraction and Analysis of Carotenoids from Escherichia coli in Color Complementation Assays

2017

A common method to investigate the function of genes putatively involved in carotenoid biosynthesis is the so called color complementation assay in Escherichia coli (see, e.g., Cunningham and Gantt, 2007). In this assay, the gene under investigation is expressed in E. coli strains genetically engineered to synthesize potential carotenoid substrates, followed by analysis of the pigment changes in the carotenogenic bacteria via high-performance liquid chromatography (HPLC). Two crucial steps in this method are (i) the quantitative extraction of the carotenoids out of E. coli and (ii) the reproducible and complete separation of the pigments by HPLC. Here, we present a protocol for the extracti…

0106 biological sciences0301 basic medicineLuteinStrategy and Managementmedicine.disease_cause01 natural sciencesIndustrial and Manufacturing Engineering03 medical and health scienceschemistry.chemical_compoundProtein-fragment complementation assayMethods ArticlemedicineCarotenoidEscherichia colichemistry.chemical_classificationChromatographyMechanical EngineeringExtraction (chemistry)Metals and Alloysfood and beveragesComplementationZeaxanthin030104 developmental biologychemistryXanthophyll010606 plant biology & botanyBIO-PROTOCOL
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The Role of Phospholipase D and MAPK Signaling Cascades in the Adaption of Lichen Microalgae to Desiccation: Changes in Membrane Lipids and Phosphopr…

2016

Classically, lichen phycobionts are described as poikilohydric organisms able to undergo desiccation due to the constitutive presence of molecular protection mechanisms. However, little is known about the induction of cellular responses in lichen phycobionts during drying. The analysis of the lipid composition of the desiccated lichen microalga Asterochloris erici revealed the unusual accumulation of highly polar lipids (oligogalactolipids and phosphatidylinositol), which prevents the fusion of membranes during stress, but also the active degradation of cone-shaped lipids (monogalactosyldiacylglycerol and phosphatidylethanolamine) to stabilize membranes in desiccated cells. The level of pho…

0106 biological sciences0301 basic medicineMAPK/ERK pathwayLichensPhysiologyMAP Kinase Signaling SystemMembrane lipidsPlant ScienceBiology01 natural sciencesDesiccation toleranceDephosphorylation03 medical and health scienceschemistry.chemical_compoundMembrane LipidsChlorophytaOsmotic PressureMicroalgaePhospholipase DPhosphorylationProtein kinase ADehydrationPhospholipase DKinaseCell BiologyGeneral MedicinePhosphatidic acidPhosphoproteinsAdaptation Physiological030104 developmental biologychemistryBiochemistrylipids (amino acids peptides and proteins)010606 plant biology & botanyPlantcell physiology
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Expression of miR159 Is Altered in Tomato Plants Undergoing Drought Stress.

2019

In a scenario of global climate change, water scarcity is a major threat for agriculture, severely limiting crop yields. Therefore, alternatives are urgently needed for improving plant adaptation to drought stress. Among them, gene expression reprogramming by microRNAs (miRNAs) might offer a biotechnologically sound strategy. Drought-responsive miRNAs have been reported in many plant species, and some of them are known to participate in complex regulatory networks via their regulation of transcription factors involved in water stress signaling. We explored the role of miR159 in the response of Solanum lycopersicum Mill. plants to drought stress by analyzing the expression of sly-miR159 and …

0106 biological sciences0301 basic medicineMYB transcription factorsSequeresDrought tolerance<i>P5CS</i>Plant Sciencedrought01 natural sciencesArticle03 medical and health sciencesSolanum lycopersicumGene expressionTomàquetsColorado potato beetleputrescineMYBprolineTranscription factorEcology Evolution Behavior and SystematicsEcologybiologybusiness.industryColorado potato beetle<i>Solanum lycopersicum</i>fungiBotanyfood and beveragesP5CSbiology.organism_classificationmiR159Biotechnology030104 developmental biologyQK1-989RNASolanumbusinessTranscription Factor GeneSolanaceae010606 plant biology & botanyPlants (Basel, Switzerland)
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Unravelling the biosynthesis of pyriculol in the rice blast fungus Magnaporthe oryzae

2017

Pyriculol was isolated from the rice blast fungus Magnaporthe oryzae and found to induce lesion formation on rice leaves. These findings suggest that it could be involved in virulence. The gene MoPKS19 was identified to encode a polyketide synthase essential for the production of the polyketide pyriculol in the rice blast fungus M. oryzae. The transcript abundance of MoPKS19 correlates with the biosynthesis rate of pyriculol in a time-dependent manner. Furthermore, gene inactivation of MoPKS19 resulted in a mutant unable to produce pyriculol, pyriculariol and their dihydro derivatives. Inactivation of a putative oxidase-encoding gene MoC19OXR1, which was found to be located in the genome cl…

0106 biological sciences0301 basic medicineMagnaportheMutantSecondary Metabolism01 natural sciencesMicrobiologyMicrobiology03 medical and health sciencesPolyketideGene Expression Regulation FungalPolyketide synthaseAxenicGenePlant DiseasesRegulation of gene expressionbiologyFungal geneticsfood and beveragesOryzabiology.organism_classificationPlant LeavesMagnaporthe030104 developmental biologyBenzaldehydesMultigene FamilyPolyketidesbiology.proteinFatty AlcoholsPolyketide SynthasesTranscription FactorsResearch Article010606 plant biology & botanyMicrobiology
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Transcriptomic responses to biotic stresses in Malus x domestica: a meta-analysis study.

2017

AbstractRNA-Seq analysis is a strong tool to gain insight into the molecular responses to biotic stresses in plants. The objective of this work is to identify specific and common molecular responses between different transcriptomic data related to fungi, virus and bacteria attacks in Malus x domestica. We analyzed seven transcriptomic datasets in Malus x domestica divided in responses to fungal pathogens, virus (Apple Stem Grooving Virus) and bacteria (Erwinia amylovora). Data were dissected using an integrated approach of pathway- and gene- set enrichment analysis, Mapman visualization tool, gene ontology analysis and inferred protein-protein interaction network. Our meta-analysis revealed…

0106 biological sciences0301 basic medicineMalusKnowledge BasesArabidopsislcsh:MedicineSecondary MetabolismErwiniaGenes Plant01 natural sciencesArticleTranscriptome03 medical and health sciencesPlant Growth RegulatorsGene Expression Regulation PlantStress PhysiologicalSettore AGR/07 - Genetica AgrariaProtein Interaction Mapslcsh:ScienceSecondary metabolismGeneCrosses GeneticPlant ProteinsGeneticsMultidisciplinarybiologyGene Expression Profilinglcsh:RfungiMalus transcriptomic biotic stressfood and beveragesBiotic stressbiology.organism_classificationSettore AGR/03 - Arboricoltura Generale E Coltivazioni ArboreeGene expression profiling030104 developmental biologyGene OntologyMalustranscriptomic responses biotic stress meta-analysis RNA-seq plantsInactivation Metaboliclcsh:QTranscriptomeApple stem grooving virus010606 plant biology & botanyTranscription FactorsScientific reports
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Gaining Insight into Exclusive and Common Transcriptomic Features Linked with Biotic Stress Responses in Malus

2017

Identifying key information in transcriptomic data is very important, especially when the “omic” study deals with plant responses to stresses in field conditions where a high number of variables and disturbing factors may affect the analysis. In this meta-analysis we collected 12 transcriptomic works in Malus in order to identify which key genes, proteins, gene categories are involved in general plant pathological conditions and those features linked with exclusive biotic stress responses. Those genes that are only related with molecular responses to pathogen attacks and those linked with other plant physiological processes were identified. A pipeline composed by pathway and gene set enrich…

0106 biological sciences0301 basic medicineMalusPlant ScienceComputational biologylcsh:Plant cultureErwinia01 natural sciencesTranscriptometranscriptomics03 medical and health sciencesSettore AGR/07 - Genetica AgrariaHeat shock proteinBotanylcsh:SB1-1110GeneTranscription factorOriginal Researchbiologybiotic stresses; Malus; meta-analysis; protein-protein interaction network; transcriptomicsfood and beveragesBiotic stressbiotic stressesbiology.organism_classificationmeta-analysisCrosstalk (biology)030104 developmental biologyMalusbiotic stresses Malus meta-analysis protein-protein interaction network transcriptomicsprotein-protein interaction network010606 plant biology & botanyFrontiers in Plant Science
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