Search results for " somatic embryogenesis"

showing 6 items of 6 documents

Priming maritime pine megagametophytes during somatic embryogenesis improved plant adaptation to heat stress

2021

In the context of global climate change, forest tree research should be addressed to provide genotypes with increased resilience to high temperature events. These improved plants can be obtained by heat priming during somatic embryogenesis (SE), which would produce an epigenetic-mediated transgenerational memory. Thereby, we applied 37 °C or 50 °C to maritime pine (Pinus pinaster) megagametophytes and the obtained embryogenic masses went through the subsequent SE phases to produce plants that were further subjected to heat stress conditions. A putative transcription factor WRKY11 was upregulated in priming-derived embryonal masses, and also in the regenerated P37 and P50 plants, suggesting …

0106 biological sciences0301 basic medicine<i>Pinus pinaster</i>Somatic embryogenesisContext (language use)Pinus pinasterPlant SciencePriming (agriculture)BiologyPhotosynthesis01 natural sciencesArticleheat stress03 medical and health scienceschemistry.chemical_compoundheat stress ; HSP ; hormones ; Pinus pinaster ; photosynthesis ; priming ; ROS ; somatic embryogenesis ; transgenerational memory ; WRKYHSPprimingBiologyEcology Evolution Behavior and SystematicsphotosynthesisEcologyhormonesfungiBotanyWRKYfood and beveragesROStransgenerational memorysomatic embryogenesisbiology.organism_classificationHsp70Horticulture030104 developmental biologychemistryQK1-989ChlorophyllCytokinin<i>HSP</i>Pinus pinaster<i>WRKY</i>010606 plant biology & botany
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Microspore Embryogenesis Through Anther Culture in Citrus clementina Hort. ex Tan.

2016

Anther culture is a biotechnological method that allows to obtain, in one step, homozygous plants, very important to plant breeding, due to their numerous applications in mutation research, selection, genome sequencing, genetic analysis, and transformation. To induce the microspores, i.e., the immature male gametes, to switch from the normal gametophytic pathway to the sporophytic one, it is necessary to submit them to a type of stress, such as high or low temperature, starvation, or magnetic field. Stress can be applied to the donor plants and/or the fl oral buds or the anthers or the isolated microspores, before or during the culture. In this chapter, the protocol to induce gametic embryo…

0106 biological sciences0301 basic medicineClementineAnther cultureCitruStamenMicrospore embryogenesiPlant DevelopmentGerminationBreedingHaploidyBiologymedicine.disease_cause01 natural sciencesGenetic analysis03 medical and health sciencesMicrosporePollenBotanyGeneticsmedicinePlant breedingCultivarMolecular BiologyPlant Somatic Embryogenesis TechniqueSomatic embryogenesifungiEmbryogenesisGametic embryogenesifood and beveragesSettore AGR/03 - Arboricoltura Generale E Coltivazioni ArboreeTransformation (genetics)030104 developmental biologyIsolated microspore cultureDoubled haploidPollenTissue Culture TechniqueGenome Plant010606 plant biology & botany
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Autotetraploid Emergence via Somatic Embryogenesis in Vitis vinifera Induces Marked Morphological Changes in Shoots, Mature Leaves, and Stomata

2021

Polyploidy plays an important role in plant adaptation to biotic and abiotic stresses. Alterations of the ploidy in grapevine plants regenerated via somatic embryogenesis (SE) may provide a source of genetic variability useful for the improvement of agronomic characteristics of crops. In the grapevine, the SE induction process may cause ploidy changes without alterations in DNA profile. In the present research, tetraploid plants were observed for 9.3% of ‘Frappato’ grapevine somatic embryos regenerated in medium supplemented with the growth regulators β-naphthoxyacetic acid (10 µM) and N6-benzylaminopurine (4.4 µM). Autotetraploid plants regenerated via SE without detectable changes in the …

0106 biological sciences0301 basic medicineSomatic embryogenesisQH301-705.5Biology01 natural sciencesArticlePolyploidy03 medical and health sciencesGuard cellautopolyploidy grapevine molecular analysis ploidy variability somatic embryogenesis stomatal characteristicsSettore AGR/07 - Genetica AgrariaBotanyVitismolecular analysisGenetic variabilityBiology (General)Abiotic componentploidy variabilitystomatal characteristicsfungiautopolyploidyfood and beveragesGeneral Medicinesomatic embryogenesisgrapevineChloroplastPlant LeavesSettore AGR/03 - Arboricoltura Generale E Coltivazioni Arboree030104 developmental biologyShootPlant StomataAdaptationPloidyPlant Shoots010606 plant biology & botanyCells
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In vitro anther culture of several cultivars of Citrus sinensis and Citrus clementina.

2012

Settore AGR/03 - Arboricoltura Generale E Coltivazioni ArboreeAnther culture somatic embryogenesis gametic embryogenesis Citrus
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Somatic embryogenesis through in vitro anther culture ofCitrus sinensisL. Osbeck ‘Moro’

2019

In many crops, anther culture is the most used method to induce gametic embryogenesis, aimed to regenerate homozygous plants. However, also somatic embryogenesis can be obtained by this method, when somatic tissue is involved in regeneration process. Many factors can affect this procedure, such as genotype, pre-treatments applied to floral buds, pollen developmental stage, donor plant states, culture media composition and growth culture conditions. Anthers of Citrus sinensis L. Osbeck, cv. Moro, were collected at the vacuolate stage, and after a chilling (4°C) pre-treatment of 7 days, were placed on the same medium, evaluating different temperature stresses applied after the placing in cult…

Somatic embryogenesisSomatic cellfungiStamenfood and beveragesAnther culture Molecular markers Ploidy analysis Somatic embryogenesisEmbryoHorticultureBiologymedicine.disease_causeSettore AGR/03 - Arboricoltura Generale E Coltivazioni ArboreeHorticulturePollenmedicineCultivarPloidyCitrus × sinensisActa Horticulturae
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GAMETIC AND SOMATIC EMBRYOGENESIS BY ANTHER CULTURE TECHNIQUE IN CITRUS AND IN OTHER MEDITERRANEAN FRUIT TREES

2010

cametic and somatic embryogenesis breeding plant tissue culture
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