Methods in Molecular Biology, ISSN 1064-3745, 2019, Volume 1902, pp. 55 - 66
Genetic transformation of cotton (Gossypium hirsutum L.) is highly dependent on the ability to regenerate fertile plants from transgenic cells through somatic...
Suspension cultures | Gene delivery | Biolistic transformation | Gossypium hirsutum | Cotton | Embryogenic cell | GUS expression | Transformation, Genetic | Gene Transfer Techniques | Biolistics - methods | Gossypium - genetics | Biolistics - instrumentation | Agrobacterium - physiology | Cell Culture Techniques
Suspension cultures | Gene delivery | Biolistic transformation | Gossypium hirsutum | Cotton | Embryogenic cell | GUS expression | Transformation, Genetic | Gene Transfer Techniques | Biolistics - methods | Gossypium - genetics | Biolistics - instrumentation | Agrobacterium - physiology | Cell Culture Techniques
Journal Article
Plant Science, ISSN 0168-9452, 2006, Volume 170, Issue 1, pp. 104 - 112
Multiple meristem cultures of 18 varieties belonging to 5 genome types in (AA, AAA, AAA-h, AAB, ABB) were established by culturing elongated shoots on MS...
Embryogenic frequency | Musa | Meristematic tissue (scalp) | Plant regeneration | Embryogenic cell suspensions | Somatic embryogenesis | TRANSFORMATION | ACUMINATA | AAB | SECONDARY SOMATIC EMBRYOGENESIS | somatic embryogenesis | REGENERATION | BIOCHEMISTRY & MOLECULAR BIOLOGY | embryogenic frequency | PROTOPLASTS | CRYOPRESERVATION | CASSAVA | PLANT SCIENCES | embryogenic cell suspensions | CALLUS | meristematic tissue (scalp) | plant regeneration | CULTURE SYSTEMS | Embryonic development | Acetic acid | Emergency communication systems | Organic acids
Embryogenic frequency | Musa | Meristematic tissue (scalp) | Plant regeneration | Embryogenic cell suspensions | Somatic embryogenesis | TRANSFORMATION | ACUMINATA | AAB | SECONDARY SOMATIC EMBRYOGENESIS | somatic embryogenesis | REGENERATION | BIOCHEMISTRY & MOLECULAR BIOLOGY | embryogenic frequency | PROTOPLASTS | CRYOPRESERVATION | CASSAVA | PLANT SCIENCES | embryogenic cell suspensions | CALLUS | meristematic tissue (scalp) | plant regeneration | CULTURE SYSTEMS | Embryonic development | Acetic acid | Emergency communication systems | Organic acids
Journal Article
Plant Cell, Tissue and Organ Culture (PCTOC), ISSN 0167-6857, 12/2015, Volume 123, Issue 3, pp. 547 - 555
In vitro chromosome doubling techniques have been used to produce polyploids in several species, including table grapes, but limited research in this field has...
Life Sciences | Plant Pathology | Flow cytometry | Tetraploid | Winegrape | Somatic embryogenesis | Plant Physiology | Embryogenic cell suspension culture | Colchicine | Plant Sciences | Plant Genetics & Genomics | REGENERATION | INDUCTION | PLANT SCIENCES | CULTIVARS | PLOIDY LEVEL | ANTHERS | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | MUTATION | OVARIES | POLYPLOIDY | FLOW-CYTOMETRY | Music in education | Plants | Grapes | Biological diversity | Plant production | Ploidy | Polyploidy | Cultures | Genetic diversity | Plantlets | Embryos | Grapevines | Aggregates | Somatic embryos | Chromosomes | Cultivars
Life Sciences | Plant Pathology | Flow cytometry | Tetraploid | Winegrape | Somatic embryogenesis | Plant Physiology | Embryogenic cell suspension culture | Colchicine | Plant Sciences | Plant Genetics & Genomics | REGENERATION | INDUCTION | PLANT SCIENCES | CULTIVARS | PLOIDY LEVEL | ANTHERS | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | MUTATION | OVARIES | POLYPLOIDY | FLOW-CYTOMETRY | Music in education | Plants | Grapes | Biological diversity | Plant production | Ploidy | Polyploidy | Cultures | Genetic diversity | Plantlets | Embryos | Grapevines | Aggregates | Somatic embryos | Chromosomes | Cultivars
Journal Article
In Vitro Cellular and Developmental Biology - Plant, ISSN 1054-5476, 04/2012, Volume 48, Issue 2, pp. 216 - 224
In banana and plantain research, it is essential to establish embryogenic cell suspensions together with a highly efficient regeneration and transformation...
Embryogenic cell suspension | Regeneration | Plantain | Agrobacterium-mediated transformation | CAVENDISH BANANA | GRAND NAIN | ACUMINATA | BOMBARDMENT | DEVELOPMENTAL BIOLOGY | SOMATIC EMBRYOGENESIS | PLANT SCIENCES | CELL BIOLOGY | CULTURES | EXPRESSION | GENETIC-TRANSFORMATION | FLOWERS | Embryonic development | Ecosystem components | Antibacterial agents | Analysis | Genes | Cells | Genetic engineering | Microbiology | Transgenic plants
Embryogenic cell suspension | Regeneration | Plantain | Agrobacterium-mediated transformation | CAVENDISH BANANA | GRAND NAIN | ACUMINATA | BOMBARDMENT | DEVELOPMENTAL BIOLOGY | SOMATIC EMBRYOGENESIS | PLANT SCIENCES | CELL BIOLOGY | CULTURES | EXPRESSION | GENETIC-TRANSFORMATION | FLOWERS | Embryonic development | Ecosystem components | Antibacterial agents | Analysis | Genes | Cells | Genetic engineering | Microbiology | Transgenic plants
Journal Article
In Vitro Cellular & Developmental Biology. Plant, ISSN 1054-5476, 7/2014, Volume 50, Issue 4, pp. 442 - 450
Embryogenic cell suspensions of triploid East African Highland bananas (Musa AAA-EA) were initiated and generated using cooking cultivar 'Nakyetengu' belonging...
Cell culture techniques | Callus | Suspension systems | Cell growth | DEVELOPMENTAL BIOLOGY/MORPHOGENESIS | Cell lines | Cultured cells | Plants | Embryonic cells | Embryos | Plant cells | Life Sciences | Plant Breeding/Biotechnology | Embryogenic cell suspensions | Somatic embryogenesis | Developmental Biology | Plant Sciences | Cell Biology | Plant Genetics & Genomics | East African Highland bananas | BOMBARDMENT | PLANT-REGENERATION | DEVELOPMENTAL BIOLOGY | AGROBACTERIUM-MEDIATED TRANSFORMATION | CULTURES | GRANDE NAINE | MALE FLOWERS | PLANT SCIENCES | CELL BIOLOGY | Genetic research | Embryonic development | Raw materials | Genetic engineering | Phytochemistry | Genetically modified organisms | Bananas | Laboratories | Cultivars
Cell culture techniques | Callus | Suspension systems | Cell growth | DEVELOPMENTAL BIOLOGY/MORPHOGENESIS | Cell lines | Cultured cells | Plants | Embryonic cells | Embryos | Plant cells | Life Sciences | Plant Breeding/Biotechnology | Embryogenic cell suspensions | Somatic embryogenesis | Developmental Biology | Plant Sciences | Cell Biology | Plant Genetics & Genomics | East African Highland bananas | BOMBARDMENT | PLANT-REGENERATION | DEVELOPMENTAL BIOLOGY | AGROBACTERIUM-MEDIATED TRANSFORMATION | CULTURES | GRANDE NAINE | MALE FLOWERS | PLANT SCIENCES | CELL BIOLOGY | Genetic research | Embryonic development | Raw materials | Genetic engineering | Phytochemistry | Genetically modified organisms | Bananas | Laboratories | Cultivars
Journal Article
In Vitro Cellular & Developmental Biology. Plant, ISSN 1054-5476, 2/2015, Volume 51, Issue 1, pp. 93 - 101
The acquisition of embryogenic cell suspension (ECS) cultures has been one of the main objectives to maximize clonal propagation of the coffee plant. However,...
PLANT TISSUE CULTURE | EST-contigs | Baby Boom | Gene expression | Embryogenic cell suspensions | TRANSCRIPTION FACTORS | DNA-BINDING PROTEINS | DEVELOPMENTAL BIOLOGY | PHYLOGENETIC TREES | LOW-TEMPERATURE | RESPONSIVE ELEMENT | PLANT SCIENCES | CELL BIOLOGY | AP2 DOMAIN | SOMATIC-EMBRYOGENESIS | MEDICAGO-TRUNCATULA | APETALA2-LIKE GENE | ARABIDOPSIS | Genes | Genomics | Proteins | Transcription factors | Algae | Genomes | Coffee | Embryos | Acquisitions & mergers
PLANT TISSUE CULTURE | EST-contigs | Baby Boom | Gene expression | Embryogenic cell suspensions | TRANSCRIPTION FACTORS | DNA-BINDING PROTEINS | DEVELOPMENTAL BIOLOGY | PHYLOGENETIC TREES | LOW-TEMPERATURE | RESPONSIVE ELEMENT | PLANT SCIENCES | CELL BIOLOGY | AP2 DOMAIN | SOMATIC-EMBRYOGENESIS | MEDICAGO-TRUNCATULA | APETALA2-LIKE GENE | ARABIDOPSIS | Genes | Genomics | Proteins | Transcription factors | Algae | Genomes | Coffee | Embryos | Acquisitions & mergers
Journal Article
BioTechnologia, ISSN 0860-7796, 2019, Volume 100, Issue 1, pp. 5 - 18
In this study, established embryogenic cell suspensions of three gentian species, Gentiana cruciata L., Gentiana kurroo Royle, and Gentiana lutea L., cultured...
embryogenic cell suspensions | transformants | timentin | kanamycin resistance | L-glutamine | gentians
embryogenic cell suspensions | transformants | timentin | kanamycin resistance | L-glutamine | gentians
Journal Article
Vitis - Journal of Grapevine Research, ISSN 0042-7500, 2012, Volume 51, Issue 2, pp. 73 - 78
Embryogenic cell suspensions of grapevine (Has sp.) have been proposed as the best target to approach genetic transformation challenges. However, optimal phase...
Genetic transformation | Plant regeneration | Vitis vinifera | Nutrient consumption | Growth kinetics | Embryogenic cell suspensions | HORTICULTURE | plant regeneration | growth kinetics | PLANT-REGENERATION | genetic transformation | nutrient consumption | SOMATIC EMBRYOGENESIS | GRAPEVINE | CULTURES
Genetic transformation | Plant regeneration | Vitis vinifera | Nutrient consumption | Growth kinetics | Embryogenic cell suspensions | HORTICULTURE | plant regeneration | growth kinetics | PLANT-REGENERATION | genetic transformation | nutrient consumption | SOMATIC EMBRYOGENESIS | GRAPEVINE | CULTURES
Journal Article
Plant Molecular Biology Reporter, ISSN 0735-9640, 2014, Volume 32, Issue 1, pp. 176 - 184
The acquisition of embryogenic cell suspension cultures (ECS) has been the objective of studies on in vitro induction of somatic embryogenesis with...
plant development | competence | phylogenetic trees | receptor-like kinases | expression | identification | gene family | leucine-rich repeat | somatic-embryogenesis | molecular characterization | Life Sciences | Somatic embryogenesis receptor kinase | Metabolomics | Biotechnology | Plant Breeding/Biotechnology | Real-time PCR | Proteomics | Embryogenic cell suspensions | EST-contigs | Plant Sciences | Bioinformatics | MOLECULAR CHARACTERIZATION | BIOCHEMICAL RESEARCH METHODS | LEUCINE-RICH REPEAT | PLANT DEVELOPMENT | COMPETENCE | IDENTIFICATION | PHYLOGENETIC TREES | PLANT SCIENCES | SOMATIC-EMBRYOGENESIS | RECEPTOR-LIKE KINASES | GENE FAMILY | EXPRESSION | Chemical properties | Plant physiology | Analysis | Genomics
plant development | competence | phylogenetic trees | receptor-like kinases | expression | identification | gene family | leucine-rich repeat | somatic-embryogenesis | molecular characterization | Life Sciences | Somatic embryogenesis receptor kinase | Metabolomics | Biotechnology | Plant Breeding/Biotechnology | Real-time PCR | Proteomics | Embryogenic cell suspensions | EST-contigs | Plant Sciences | Bioinformatics | MOLECULAR CHARACTERIZATION | BIOCHEMICAL RESEARCH METHODS | LEUCINE-RICH REPEAT | PLANT DEVELOPMENT | COMPETENCE | IDENTIFICATION | PHYLOGENETIC TREES | PLANT SCIENCES | SOMATIC-EMBRYOGENESIS | RECEPTOR-LIKE KINASES | GENE FAMILY | EXPRESSION | Chemical properties | Plant physiology | Analysis | Genomics
Journal Article
Vitis - Journal of Grapevine Research, ISSN 0042-7500, 2014, Volume 53, Issue 2, pp. 89 - 94
Regeneration of grapevine (Vitis vinifera L.) from embryogenic cultures after gene transfer is traditionally linked to a selection procedure using antibiotic...
Biolistics | Kanamycin | Antibiotic selection | Genetic transformation | Hygromycin | Embryogenic cell suspensions | MEDIATED GENETIC-TRANSFORMATION | SENSITIVITY | kanamycin | RAPD MARKERS | SOMATIC EMBRYOGENESIS | embryogenic cell suspensions | HORTICULTURE | CULTIVARS | COAT PROTEIN | GROWTH | biolistics | hygromycin | genetic transformation | EFFICIENCY | CULTURES
Biolistics | Kanamycin | Antibiotic selection | Genetic transformation | Hygromycin | Embryogenic cell suspensions | MEDIATED GENETIC-TRANSFORMATION | SENSITIVITY | kanamycin | RAPD MARKERS | SOMATIC EMBRYOGENESIS | embryogenic cell suspensions | HORTICULTURE | CULTIVARS | COAT PROTEIN | GROWTH | biolistics | hygromycin | genetic transformation | EFFICIENCY | CULTURES
Journal Article
Physiologia Plantarum, ISSN 0031-9317, 08/1996, Volume 97, Issue 2, pp. 285 - 290
There are very few reports on the establishment of long‐term embryogenic cell cultures of banana, especially of triploid cultivars of commercial interest....
micropropaganon | Musa | somatic embryogenesis | embryogenic cell suspension | Banana | micropropagation | banana | REGENERATION | GROWTH | BIOREACTOR | SOMATIC EMBRYOS | CULTURES | PLANT SCIENCES
micropropaganon | Musa | somatic embryogenesis | embryogenic cell suspension | Banana | micropropagation | banana | REGENERATION | GROWTH | BIOREACTOR | SOMATIC EMBRYOS | CULTURES | PLANT SCIENCES
Journal Article
In Vitro Cellular & Developmental Biology - Plant, ISSN 1054-5476, 4/2012, Volume 48, Issue 2, pp. 216 - 224
In banana and plantain research, it is essential to establish embryogenic cell suspensions together with a highly efficient regeneration and transformation...
Life Sciences | Embryogenic cell suspension | Regeneration | Plantain | Plant Breeding/Biotechnology | Agrobacterium- mediated transformation | Developmental Biology | Plant Sciences | Cell Biology | Plant Genetics & Genomics
Life Sciences | Embryogenic cell suspension | Regeneration | Plantain | Plant Breeding/Biotechnology | Agrobacterium- mediated transformation | Developmental Biology | Plant Sciences | Cell Biology | Plant Genetics & Genomics
Journal Article
In Vitro Cellular & Developmental Biology. Plant, ISSN 1054-5476, 9/2010, Volume 46, Issue 5, pp. 403 - 410
The 'Da Jiao' cultivar of banana (Musa paradisiacal ABB Linn.) is an ideal germplasm to produce new banana varieties resistant to Fusarium oxysporum f. sp....
Cell culture techniques | Callus | Protoplasts | Somatic embryogenesis | Somatic embryos | Protoplast culture | EMBRYOGENESIS/SOMATIC EMBRYOGENESIS | Cultured cells | Plants | Embryonic cells | Plant cells | Life Sciences | Plant Breeding/Biotechnology | Musa paradisiacal | Protoplast | Embryogenic cell suspensions | Feeder layer culture | Developmental Biology | Plant Sciences | Plant Genetics & Genomics | Cell Biology | Immature male inflorescence | DEVELOPMENTAL BIOLOGY | INDUCTION | CARROT | PLANT SCIENCES | CELL BIOLOGY | SPP | GROWTH | ABSCISIC-ACID | CULTURES | MAS AA | Abscisic acid | Embryonic development | Nurses | Genetically modified organisms | Embryos | Subcultures | Cultivars
Cell culture techniques | Callus | Protoplasts | Somatic embryogenesis | Somatic embryos | Protoplast culture | EMBRYOGENESIS/SOMATIC EMBRYOGENESIS | Cultured cells | Plants | Embryonic cells | Plant cells | Life Sciences | Plant Breeding/Biotechnology | Musa paradisiacal | Protoplast | Embryogenic cell suspensions | Feeder layer culture | Developmental Biology | Plant Sciences | Plant Genetics & Genomics | Cell Biology | Immature male inflorescence | DEVELOPMENTAL BIOLOGY | INDUCTION | CARROT | PLANT SCIENCES | CELL BIOLOGY | SPP | GROWTH | ABSCISIC-ACID | CULTURES | MAS AA | Abscisic acid | Embryonic development | Nurses | Genetically modified organisms | Embryos | Subcultures | Cultivars
Journal Article
Acta Societatis Botanicorum Poloniae, ISSN 0001-6977, 2014, Volume 83, Issue 3, pp. 247 - 250
Two-dimensional gel electrophoresis was used to compare protein expression profiles between various stages of Gentiana kurroo Royle somatic embryos. Seven...
Embryogenic cell suspension | Protein studies | Gentiana kurroo | Two-dimensional gel electrophoresis | PLANT | protein studies | embryogenic cell suspension | two-dimensional gel electrophoresis | PLANT SCIENCES | Proteins | Cell suspensions | Gels | Gel electrophoresis | Somatic embryos | Isoelectric focusing | pH effects | Embryos | Molecular weight
Embryogenic cell suspension | Protein studies | Gentiana kurroo | Two-dimensional gel electrophoresis | PLANT | protein studies | embryogenic cell suspension | two-dimensional gel electrophoresis | PLANT SCIENCES | Proteins | Cell suspensions | Gels | Gel electrophoresis | Somatic embryos | Isoelectric focusing | pH effects | Embryos | Molecular weight
Journal Article
Plant Cell, Tissue and Organ Culture, ISSN 0167-6857, 9/2007, Volume 90, Issue 3, pp. 265 - 273
Efficient Agrobacterium tumefaciens-mediated transformation was achieved using embryogenic suspension cultures of sweetpotato (Ipomoea batatas (L.) Lam.) cv....
Life Sciences | Embryogenic cell suspension | Genetic transformation | Sweetpotato | Agrobacterium tumefaciens | Plant Physiology | Transgenic plant | Plant Sciences | PLANT-REGENERATION | PROTOPLASTS | PROTEIN GENE | sweetpotato | SOMATIC EMBRYOGENESIS | PLANT SCIENCES | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | genetic transformation | EXPRESSION | embryogenic cell suspension | GENETIC-TRANSFORMATION | transgenic plant
Life Sciences | Embryogenic cell suspension | Genetic transformation | Sweetpotato | Agrobacterium tumefaciens | Plant Physiology | Transgenic plant | Plant Sciences | PLANT-REGENERATION | PROTOPLASTS | PROTEIN GENE | sweetpotato | SOMATIC EMBRYOGENESIS | PLANT SCIENCES | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | genetic transformation | EXPRESSION | embryogenic cell suspension | GENETIC-TRANSFORMATION | transgenic plant
Journal Article
Plant Cell, Tissue and Organ Culture, ISSN 0167-6857, 11/2008, Volume 95, Issue 2, pp. 155 - 161
The influence of environment in the culture vessel is a factor that has very little study in the process of somatic embryogenesis. The present research was...
Life Sciences | Plant Pathology | Embryogenic cell suspensions | Somatic embryos | Plant Physiology | Cell differentiation | Coffee | Plant Sciences | Plant Genetics & Genomics | CYCLAMEN-PERSICUM MILL | cell differentiation | somatic embryos | RICE ORYZA-SATIVA | REGENERATION | LIQUID CULTURE | DISSOLVED-OXYGEN CONCENTRATION | PLANT SCIENCES | embryogenic cell suspensions | ETHYLENE | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | coffee | GROWTH | Embryonic development | Analysis | Carbon dioxide
Life Sciences | Plant Pathology | Embryogenic cell suspensions | Somatic embryos | Plant Physiology | Cell differentiation | Coffee | Plant Sciences | Plant Genetics & Genomics | CYCLAMEN-PERSICUM MILL | cell differentiation | somatic embryos | RICE ORYZA-SATIVA | REGENERATION | LIQUID CULTURE | DISSOLVED-OXYGEN CONCENTRATION | PLANT SCIENCES | embryogenic cell suspensions | ETHYLENE | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | coffee | GROWTH | Embryonic development | Analysis | Carbon dioxide
Journal Article
African Journal of Biotechnology, ISSN 1684-5315, 06/2007, Volume 6, Issue 11, pp. 1352 - 1357
The improvement of East African highland bananas (EAHBs) using conventional breeding methods is difficult due to their biology and therefore focus on improving...
N6-benzylaminopurine | Thidiazuron | Scalps | Embryogenic cell suspensions | Banana | banana | scalps | AAA | TISSUE-CULTURE | BOMBARDMENT | PROLIFERATION | CYTOKININ | AGROBACTERIUM-MEDIATED TRANSFORMATION | thidiazuron | embryogenic cell suspensions | MUSA | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | GENETIC-TRANSFORMATION
N6-benzylaminopurine | Thidiazuron | Scalps | Embryogenic cell suspensions | Banana | banana | scalps | AAA | TISSUE-CULTURE | BOMBARDMENT | PROLIFERATION | CYTOKININ | AGROBACTERIUM-MEDIATED TRANSFORMATION | thidiazuron | embryogenic cell suspensions | MUSA | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | GENETIC-TRANSFORMATION
Journal Article
Plant Cell, Tissue and Organ Culture (PCTOC), ISSN 0167-6857, 5/2009, Volume 97, Issue 2, pp. 131 - 139
Establishment of an efficient protocol for regeneration and genetic transformation is required in banana for the incorporation of useful traits. Therefore an...
Life Sciences | Plant Pathology | Agrobacterium | GUS | Plant Physiology | Plant Sciences | Plant Genetics & Genomics | Banana | Embryogenic cells | Fluorometric assay | GRAND NAIN | ACUMINATA | REGENERATION | BOMBARDMENT | SOMATIC EMBRYOGENESIS | PLANT SCIENCES | PLANTAIN CULTIVARS MUSA | SPP | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | GROWTH | EXPRESSION | GENETIC-TRANSFORMATION | Cell culture | Callus | Genetic transformation | UidA gene | Centrifugation | Somatic embryogenesis | Cultures | Antisense | Flowers | Gene expression | Embryos | Transgenic plants | Embryonic growth stage | Ripening | Disease resistance | Regeneration | Embryogenesis | Suspension culture | Agronomy | Cell size | Semisolids | Cultivars
Life Sciences | Plant Pathology | Agrobacterium | GUS | Plant Physiology | Plant Sciences | Plant Genetics & Genomics | Banana | Embryogenic cells | Fluorometric assay | GRAND NAIN | ACUMINATA | REGENERATION | BOMBARDMENT | SOMATIC EMBRYOGENESIS | PLANT SCIENCES | PLANTAIN CULTIVARS MUSA | SPP | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | GROWTH | EXPRESSION | GENETIC-TRANSFORMATION | Cell culture | Callus | Genetic transformation | UidA gene | Centrifugation | Somatic embryogenesis | Cultures | Antisense | Flowers | Gene expression | Embryos | Transgenic plants | Embryonic growth stage | Ripening | Disease resistance | Regeneration | Embryogenesis | Suspension culture | Agronomy | Cell size | Semisolids | Cultivars
Journal Article
Plant Cell, Tissue and Organ Culture, ISSN 0167-6857, 3/2008, Volume 92, Issue 3, pp. 261 - 271
An efficient method for Agrobacterium-mediated genetic transformation of embryogenic cell suspension cultures of Santalum album L. is described. Embryogenic...
Life Sciences | β-Glucuronidase | Embryogenic cell suspension cultures | Agrobacterium tumefaciens | Plant Physiology | Recombinant protein | Plant Sciences | Santalum album | ANTIBODIES | PLANT-CELL | recombinant protein | TISSUE-CULTURES | EXPRESSION SYSTEM | STRATEGIES | PLANT SCIENCES | SEEDS | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | RECOMBINANT PROTEINS | GROWTH | embryogenic cell suspension cultures | beta-glucuronidase | ACCUMULATION | VACCINES | Genetic research
Life Sciences | β-Glucuronidase | Embryogenic cell suspension cultures | Agrobacterium tumefaciens | Plant Physiology | Recombinant protein | Plant Sciences | Santalum album | ANTIBODIES | PLANT-CELL | recombinant protein | TISSUE-CULTURES | EXPRESSION SYSTEM | STRATEGIES | PLANT SCIENCES | SEEDS | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | RECOMBINANT PROTEINS | GROWTH | embryogenic cell suspension cultures | beta-glucuronidase | ACCUMULATION | VACCINES | Genetic research
Journal Article
In Vitro Cellular & Developmental Biology - Plant, ISSN 1054-5476, 10/2017, Volume 53, Issue 5, pp. 449 - 460
Grapevine (Vitis genus) is one of the economically most important fruits worldwide. Some species and cultivars are rare and have only a few vines, but...
Plant Genetics and Genomics | Genetic resource | Vitis | Shoot tips | Cell Biology | Life Sciences | Plant Breeding/Biotechnology | Cryopreservation | Embryogenic cell suspensions | Virus-free | Developmental Biology | Plant Sciences | Cryotherapy | PATHOGEN ERADICATION | ENCAPSULATION-DEHYDRATION | L CV CHARDONNAY | DROPLET-VITRIFICATION | DEVELOPMENTAL BIOLOGY | SUBSEQUENT PLANT-REGENERATION | PLANT SCIENCES | CELL BIOLOGY | EMBRYOGENIC-CELL-SUSPENSIONS | VITIS-VINIFERA L | IN-VITRO | LONG-TERM STORAGE | GROWN SHOOT TIPS | Usage | Forests and forestry | Health aspects | Natural disasters | Pathogens | Seeds | Preservation | Vines | Genetic resources | Viruses | Leaves | Germplasm | Agricultural production | Flowers & plants | Cultivars
Plant Genetics and Genomics | Genetic resource | Vitis | Shoot tips | Cell Biology | Life Sciences | Plant Breeding/Biotechnology | Cryopreservation | Embryogenic cell suspensions | Virus-free | Developmental Biology | Plant Sciences | Cryotherapy | PATHOGEN ERADICATION | ENCAPSULATION-DEHYDRATION | L CV CHARDONNAY | DROPLET-VITRIFICATION | DEVELOPMENTAL BIOLOGY | SUBSEQUENT PLANT-REGENERATION | PLANT SCIENCES | CELL BIOLOGY | EMBRYOGENIC-CELL-SUSPENSIONS | VITIS-VINIFERA L | IN-VITRO | LONG-TERM STORAGE | GROWN SHOOT TIPS | Usage | Forests and forestry | Health aspects | Natural disasters | Pathogens | Seeds | Preservation | Vines | Genetic resources | Viruses | Leaves | Germplasm | Agricultural production | Flowers & plants | Cultivars
Journal Article