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showing 10 items of 7877 documents

Phosphoglycerate dehydrogenase genes differentially affect Arabidopsis metabolism and development.

2021

[EN] Unlike animals, plants possess diverse L-serine (Ser) biosynthetic pathways. One of them, the Phosphorylated Pathway of Serine Biosynthesis (PPSB) has been recently described as essential for embryo, pollen and root development, and required for ammonium and sulfur assimilation. The first and rate limiting step of PPSB is the reaction catalyzed by the enzyme phosphoglycerate dehydrogenase (PGDH). In Arabidopsis, the PGDH family consists of three genes, PGDH1, PGDH2 and PGDH3. PGDH1 is characterized as being the essential gene of the family. However, the biological significance of PGDH2 and PGDH3 remains unknown. In this manuscript, we have functionally characterized PGDH2 and PGDH3. Ph…

0106 biological sciences0301 basic medicineMutantArabidopsisPlant ScienceGenes Plant01 natural sciencesGene Expression Regulation EnzymologicSerine03 medical and health scienceschemistry.chemical_compoundSulfur assimilationBiosynthesisGene Expression Regulation PlantArabidopsisGeneticsSerinePhosphoglycerate dehydrogenaseGenePhosphoglycerate DehydrogenasePSPbiologyGeneral MedicinePhosphorylated pathway of serine biosynthesisbiology.organism_classificationBiosynthetic Pathways030104 developmental biologyPGDHBiochemistrychemistryEssential geneFISIOLOGIA VEGETALPhosphoserine phosphataseAgronomy and Crop Science010606 plant biology & botanyPlant science : an international journal of experimental plant biology
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Expression of the Intracellular COPT3-Mediated Cu Transport Is Temporally Regulated by the TCP16 Transcription Factor

2018

[EN] Copper is an essential element in plants. When scarce, copper is acquired from extracellular environment or remobilized from intracellular sites, through members of the high affinity copper transporters family COPT located at the plasma membrane and internal membrane, respectively. Here, we show that COPT3 is an intracellular copper transporter, located at a compartment of the secretory pathway, that is mainly expressed in pollen grains and vascular bundles. Contrary to the COPT1 plasma membrane member, the expression of the internal COPT3 membrane transporter was higher at 12 h than at 0 h of a neutral photoperiod day under copper deficiency. The screening of a library of conditionall…

0106 biological sciences0301 basic medicineMutantchemistry.chemical_elementPlant Sciencelcsh:Plant culture01 natural sciencesTCP1603 medical and health sciencesTranscriptional regulationGene expressionBIOQUIMICA Y BIOLOGIA MOLECULARExtracellularmedicinelcsh:SB1-1110COPT3transcriptional regulationheavy metalsTranscription factorSecretory pathwayOriginal ResearchCopper transportmedicine.diseaseCopperCell biology030104 developmental biologyHeavy metalschemistrycopper transportCopper deficiencyIntracellular010606 plant biology & botanyFrontiers in Plant Science
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An Arabidopsis Mutant Over-Expressing Subtilase SBT4.13 Uncovers the Role of Oxidative Stress in the Inhibition of Growth by Intracellular Acidificat…

2020

Intracellular acid stress inhibits plant growth by unknown mechanisms and it occurs in acidic soils and as consequence of other stresses. In order to identify mechanisms of acid toxicity, we screened activation-tagging lines of Arabidopsis thaliana for tolerance to intracellular acidification induced by organic acids. A dominant mutant, sbt4.13-1D, was isolated twice and shown to over-express subtilase SBT4.13, a protease secreted into endoplasmic reticulum. Activity measurements and immuno-detection indicate that the mutant contains less plasma membrane H+-ATPase (PMA) than wild type, explaining the small size, electrical depolarization and decreased cytosolic pH of the mutant but not orga…

0106 biological sciences0301 basic medicineMutantmedicine.disease_cause01 natural sciencesCatalysisInorganic Chemistrylcsh:ChemistryH<sup>+</sup>-ATPase03 medical and health sciencesorganic acidsmedicinePhysical and Theoretical ChemistryMolecular Biologylcsh:QH301-705.5Spectroscopychemistry.chemical_classificationReactive oxygen speciesNADPH oxidasebiologyNADPH oxidaseEndoplasmic reticulumOrganic ChemistryWild typeROSGeneral MedicineComputer Science ApplicationsCell biology030104 developmental biologychemistrylcsh:Biology (General)lcsh:QD1-999biology.proteinactivation-taggingIntracellularOxidative stress010606 plant biology & botanyOrganic acidInternational Journal of Molecular Sciences
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Effects of transgenic expression of Brevibacterium linens methionine gamma lyase (MGL) on accumulation of Tylenchulus semipenetrans and key aminoacid…

2017

Key message Carrizo transgenic plants overexpressing methionine-gamma-lyase produced dimethyl sulfide. The transgenic plants displayed more resistance to nematode attacks (Tylenculus semipenetrans) and may represent an innovative strategy for nematode control. Abstract Tylenchulus semipenetrans is a nematode pest of many citrus varieties that causes extensive damage to commercial crops worldwide. Carrizo citrange vr. (Citrus sinensis L. Usb × Poncirus trifoliate L. Raf) plants overexpressing Brevibacterium linens methionine-gamma-lyase (BlMGL) produced the sulfur volatile compound dimethyl sulfide (DMS). The aim of this work was to determine if transgenic citrus plants expressing BlMGL show…

0106 biological sciences0301 basic medicineNematodesPlant BiologyPlant ScienceGenetically modified crops01 natural sciencesPlant Rootschemistry.chemical_compoundMethionineMethionine gamma lyaseBrevibacteriumAmino AcidsNematodeCitrus sinensibiologySulfur volatilefood and beveragesGeneral MedicinePlantsPlants Genetically ModifiedTylenchulus semipenetransAmino AcidHorticultureCarbon-Sulfur LyasesBiochemistryCarbon-Sulfur LyasePlant LeaveCitrus × sinensisCitrus sinensisTylenchidaMethionine gamma-lyaseSulfideTransgenePlant Biology & BotanyPlant DiseaseGenetically ModifiedSulfidesArticle03 medical and health sciencesGeneticSulfur volatilesGeneticsAnimalsPlant DiseasesMethionineAnimalfungiPlant RootBrevibacteriumbiology.organism_classificationBrain DisordersPlant Leaves030104 developmental biologychemistryGlycineBiochemistry and Cell BiologyAgronomy and Crop Science010606 plant biology & botany
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Evolutionary diversification of type-2 HDAC structure, function and regulation in Nicotiana tabacum

2018

Ministère de l'Education Nationale et de la Recherche ; Conseil Régional de Bourgogne (PARI AGRALE8) ; Association pour la Recherche sur les Nicotianacées ; Conseil Régional de Bourgogne; International audience; Type-2 HDACs (HD2s) are plant-specific histone deacetylases that play diverse roles during development and in responses to biotic and abiotic stresses. In this study we characterized the six tobacco genes encoding HD2s that mainly differ by the presence or the absence of a typical zinc finger in their C-terminal part. Of particular interest, these HD2 genes exhibit a highly conserved intron/exon structure. We then further investigated the phylogenetic relationships among the HD2 gen…

0106 biological sciences0301 basic medicineNicotiana tabacumPlant Science01 natural sciencesEvolution MolecularType-2 HDAC (HD2)03 medical and health sciencesPhylogeneticsZinc fingerTobaccoGeneticsArabidopsis thalianaGene family[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyAmino Acid SequenceGenePhylogenySolanaceaePlant ProteinsZinc fingerGeneticsbiologyModels GeneticIntronZinc FingersGeneral MedicineSalt Tolerancebiology.organism_classificationSalt stress responseComplementation030104 developmental biologyHistone DeACetylase (HDAC)Agronomy and Crop ScienceSequence Alignment010606 plant biology & botany
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Defense Priming in Nicotiana tabacum Accelerates and Amplifies ‘New’ C/N Fluxes in Key Amino Acid Biosynthetic Pathways

2020

: In the struggle to survive herbivory by leaf-feeding insects, plants employ multiple strategies to defend themselves. One mechanism by which plants increase resistance is by intensifying their responsiveness in the production of certain defense agents to create a rapid response. Known as defense priming, this action can accelerate and amplify responses of metabolic pathways, providing plants with long-lasting resistance, especially when faced with waves of attack. In the work presented, short-lived radiotracers of carbon administered as 11CO2 and nitrogen administered as 13NH3 were applied in Nicotiana tabacum, to examine the temporal changes in &lsquo

0106 biological sciences0301 basic medicineNicotiana tabacumamino acid metabolismPlant Science01 natural sciencesplant insect herbivorySerine03 medical and health scienceschemistry.chemical_compoundBiosynthesislcsh:Botanynitrogen-13Shikimate pathwaycarbon-11Secondary metabolismEcology Evolution Behavior and SystematicsX-ray fluorescence imagingchemistry.chemical_classificationEcologybiologydefense primingJasmonic acidfungifood and beveragesbiology.organism_classificationlcsh:QK1-989Amino acidMetabolic pathway030104 developmental biologychemistryBiochemistryisotope ratio analysis010606 plant biology & botanyPlants
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The specific role of plastidial glycolysis in photosynthetic and heterotrophic cells under scrutiny through the study of glyceraldehyde-3-phosphate d…

2016

The cellular compartmentalization of metabolic processes is an important feature in plants where the same pathways could be simultaneously active in different compartments. Plant glycolysis occurs in the cytosol and plastids of green and non-green cells in which the requirements of energy and precursors may be completely different. Because of this, the relevance of plastidial glycolysis could be very different depending on the cell type. In the associated study, we investigated the function of plastidial glycolysis in photosynthetic and heterotrophic cells by specifically driving the expression of plastidial glyceraldehyde-3-phosphate dehydrogenase (GAPCp) in a glyceraldehyde-3-phosphate de…

0106 biological sciences0301 basic medicineNitrogenArabidopsisDehydrogenasePlant Science01 natural sciencesPlant RootsSerine03 medical and health scienceschemistry.chemical_compoundBiosynthesisSerineGlycolysisPlastidsPlastidPhosphorylationPhotosynthesisGlyceraldehyde 3-phosphate dehydrogenasebiologyGlyceraldehyde-3-Phosphate DehydrogenasesCompartmentalization (fire protection)CarbonArticle AddendumCytosol030104 developmental biologychemistryBiochemistryMutationbiology.proteinGlycolysis010606 plant biology & botany
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The phosphorylated pathway of serine biosynthesis links plant growth with nitrogen metabolism

2021

Abstract Because it is the precursor for various essential cellular components, the amino acid serine is indispensable for every living organism. In plants, serine is synthesized by two major pathways: photorespiration and the phosphorylated pathway of serine biosynthesis (PPSB). However, the importance of these pathways in providing serine for plant development is not fully understood. In this study, we examine the relative contributions of photorespiration and PPSB to providing serine for growth and metabolism in the C3 model plant Arabidopsis thaliana. Our analyses of cell proliferation and elongation reveal that PPSB-derived serine is indispensable for plant growth and its loss cannot b…

0106 biological sciences0301 basic medicineNitrogenPhysiologyNitrogen assimilationCell RespirationArabidopsisPlant DevelopmentPlant Science01 natural sciencesSerine03 medical and health scienceschemistry.chemical_compoundPlant Growth RegulatorsBiosynthesisGlutamine synthetaseSerineGeneticsPhosphorylationResearch ArticlesCell Proliferationchemistry.chemical_classificationbiologyChemistryMetabolismBiosynthetic PathwaysAmino acid030104 developmental biologyBiochemistrybiology.proteinPhotorespirationGlutamine oxoglutarate aminotransferase010606 plant biology & botanyPlant Physiology
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Woody Plant Declines. What’s Wrong with the Microbiome?

2020

National audience; Woody plant (WP) declines have multifactorial determinants as well as a biological and economic reality. The vascular system of WPs involved in the transport of carbon, nitrogen, and water from sources to sinks has a seasonal activity, which places it at a central position for mediating plant–environment interactions from nutrient cycling to community assembly and for regulating a variety of processes. To limit effects and to fight against declines, we propose: (i) to consider the WP and its associated microbiota as an holobiont and as a set of functions; (ii) to consider simultaneously, without looking at what comes first, the physiological or pathogenic disorders; and (…

0106 biological sciences0301 basic medicineNitrogenecological engineering[SDV]Life Sciences [q-bio]microbiomePlant ScienceBiology01 natural scienceswoody plant decline03 medical and health scienceshomeostasisMicrobiomeSoil MicrobiologyComputingMilieux_MISCELLANEOUSholobiont2. Zero hungerEcologyMicrobiotaPlants15. Life on landEconomic realityEcological engineeringCarbonHolobiont030104 developmental biology[SDE]Environmental Sciencesrhizosphere010606 plant biology & botanyWoody plantTrends in Plant Science
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Transcriptome Response of Metallicolous and a Non-Metallicolous Ecotypes of Noccaea goesingensis to Nickel Excess

2020

Root transcriptomic profile was comparatively studied in a serpentine (TM) and a non-metallicolous (NTM) population of Noccaea goesingensis in order to investigate possible features of Ni hyperaccumulation. Both populations were characterised by contrasting Ni tolerance and accumulation capacity. The growth of the TM population was unaffected by metal excess, while the shoot biomass production in the NTM population was significantly lower in the presence of Ni in the culture medium. Nickel concentration was nearly six- and two-fold higher in the shoots than in the roots of the TM and NTM population, respectively. The comparison of root transcriptomes using the RNA-seq method indicated disti…

0106 biological sciences0301 basic medicineNoccaea goesingensisPopulationecotypeschemistry.chemical_elementPlant ScienceBiology01 natural sciencesArticleShoot biomassTranscriptome03 medical and health scienceslcsh:Botanynickel (Ni)BotanyeducationGeneEcology Evolution Behavior and Systematicseducation.field_of_studytoleranceEcologyEcotypeEthylene metabolismlcsh:QK1-989Nickel030104 developmental biologychemistryShoot<i>Noccaea goesingensis</i>transcriptome010606 plant biology & botanyPlants
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