The Experts below are selected from a list of 24015 Experts worldwide ranked by ideXlab platform
John E. Preece - One of the best experts on this subject based on the ideXlab platform.
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Thidiazuron: a potent cytokinin for woody Plant Tissue Culture
Plant Cell Tissue and Organ Culture, 1993Co-Authors: Carl A. Huetteman, John E. PreeceAbstract:Thidizuron (TDZ) is among the most active cytokinin-like substances for woody Plant Tissue Culture. It facilitates efficient micropropagation of many recalcitrant woody species. Low concentrations (
Carl A. Huetteman - One of the best experts on this subject based on the ideXlab platform.
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Thidiazuron: a potent cytokinin for woody Plant Tissue Culture
Plant Cell Tissue and Organ Culture, 1993Co-Authors: Carl A. Huetteman, John E. PreeceAbstract:Thidizuron (TDZ) is among the most active cytokinin-like substances for woody Plant Tissue Culture. It facilitates efficient micropropagation of many recalcitrant woody species. Low concentrations (
Shagufta Naz - One of the best experts on this subject based on the ideXlab platform.
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Nanotechnology and Plant Tissue Culture
Nanoagronomy, 2020Co-Authors: Amina Tariq, Saiqa Ilyas, Shagufta NazAbstract:Nanotechnology is amongst one of the recent technologies of the twenty-first century. This technology has enabled the utilization of nanoparticles in various fields of sciences, not only physical sciences but natural sciences as well. Plant Tissue Culture is one of the leading technologies being used in agronomy for improvement of Plants. It is also used for secondary metabolites production, germplasm conservation etc. Nanoparticles find their applications in Plant Tissue Culture as disinfectants and as nutrients. Conservation of germplasm is a matter of great concern nowadays. The application of nanotechnology in conservation of Plant germplasm has led to development of another useful aspect of nanotechnology.
Daniela Valenzuela Bustamante - One of the best experts on this subject based on the ideXlab platform.
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Nanotechnology and Plant Tissue Culture
Plant Nanobionics, 2019Co-Authors: Sandra Pérez Álvarez, Marco Antonio Magallanes Tapia, María Esther González Vega, Eduardo Fidel Héctor Ardisana, Jesús Alicia Chávez Medina, Gabriela Lizbeth Flores Zamora, Daniela Valenzuela BustamanteAbstract:Plant biotechnology is a great tool in several fields of human life such as medicine, pharmacology, agriCulture, biomass, and biofuels. The use of nanotechnology represent and improvement in Plant Tissue Culture that is a technique mostly used to produce clones of a Plant in a method known as micropropagation with different stages. In this chapter Tissue Culture in modern agriCulture and the use of nanomaterials for genetic transformation of Plants; nanosilver as antimicrobial agent; nanomaterials for callus induction, organogenesis, and somatic embryogenesis; and titanium dioxide nanoparticles to remove bacterial contaminants will be discussed.
Naseem Ahmad - One of the best experts on this subject based on the ideXlab platform.
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Plant Tissue Culture: Propagation, Conservation and Crop Improvement - Plant Tissue Culture: Propagation, Conservation and Crop Improvement
2016Co-Authors: Mohammad Anis, Naseem AhmadAbstract:Section A: In vitro regeneration -- Plant Tissue Culture: A journey from Research to Commercialization -- Propagation strategies and clonal fidelity of small fruit crop germplasm -- Selection of Elites and in vitro Propagation of Selected High Value Himalayan Medicinal Herbs for Sustainable Utilization and Conservation -- In Vitro Approaches for Conservation and Sustainable Utilization of Podophyllum hexandrum and Picrorhiza kurroa- An overview on these Endangered Medicinal herbs of Western Himalaya -- Effect of Plant growth regulators and additives on indirect organogenesis of Simarouba glauca DC -- Biotechnological Applications for Characterization, Mass Production and Improvement of a Non-conventional Tree legume [Parkia timoriana (DC.) Merr.] -- A to Z on banana micropropagation and field practices -- In vitro Plant regeneration in dainty spur [Rhinacanthus nasutus (L.) Kurz.] by organogenesis -- Application of Tissue Culture for Laburnum anagyroides Medic. propagation -- Recent advances in Asteraceae Tissue Culture -- Section B: Tree Biotechnology -- Plant Tissue Culture Approach for Cloning and Conservation of Some Important RET Medicinal Plants -- Biotechnological Approaches for the Improvement of “Eucalyptus" -- Biotechnology of Tropical Tree Crops -- Section C: Genetic Engineering -- In Vitro Regeneration of Salt Tolerant Plants -- Plant Tissue Culture – A tool for in vitro mutagenesis, large scale propagation and genetic transformation -- Genetic engineering for insect resistance in economically important vegetable crops -- RNA interference (RNAi) and its role in crop improvement - A Review -- In vitro Selection of Disease Resistant Plants -- Role of rol genes: Potential route to manipulate Plants for Genetic improvement -- Section D: Crop Improvement -- Synthesis of Silver Nanoparticles from Particles from Plants and Their Applications -- Biotechnological Approaches for Improvement and Conservation of Alnus glutinosa (L.) Gaertner -- Isolated microspore Culture and its applications in Plant breeding and genetics -- Indirect Somatic Embryogenesis and Plant Regeneration from Mature Seed Embryos of Bambusa arundinacea (Retz.) Wild -- Section E: Plant Conservation -- Micropropagation Technology and Its Applications for Crop Improvement -- Improvement of Green Leafy Vegetables – The role of Plant Tissue Culture and Biotechnology -- Non-zygotic Embryogenesis for Plant Development -- Somatic hybridization and microspore Culture in Brassica improvement.
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Plant Tissue Culture propagation conservation and crop improvement
Published in 2016, 2016Co-Authors: Mohammad Anis, Naseem AhmadAbstract:Section A: In vitro regeneration -- Plant Tissue Culture: A journey from Research to Commercialization -- Propagation strategies and clonal fidelity of small fruit crop germplasm -- Selection of Elites and in vitro Propagation of Selected High Value Himalayan Medicinal Herbs for Sustainable Utilization and Conservation -- In Vitro Approaches for Conservation and Sustainable Utilization of Podophyllum hexandrum and Picrorhiza kurroa- An overview on these Endangered Medicinal herbs of Western Himalaya -- Effect of Plant growth regulators and additives on indirect organogenesis of Simarouba glauca DC -- Biotechnological Applications for Characterization, Mass Production and Improvement of a Non-conventional Tree legume [Parkia timoriana (DC.) Merr.] -- A to Z on banana micropropagation and field practices -- In vitro Plant regeneration in dainty spur [Rhinacanthus nasutus (L.) Kurz.] by organogenesis -- Application of Tissue Culture for Laburnum anagyroides Medic. propagation -- Recent advances in Asteraceae Tissue Culture -- Section B: Tree Biotechnology -- Plant Tissue Culture Approach for Cloning and Conservation of Some Important RET Medicinal Plants -- Biotechnological Approaches for the Improvement of “Eucalyptus" -- Biotechnology of Tropical Tree Crops -- Section C: Genetic Engineering -- In Vitro Regeneration of Salt Tolerant Plants -- Plant Tissue Culture – A tool for in vitro mutagenesis, large scale propagation and genetic transformation -- Genetic engineering for insect resistance in economically important vegetable crops -- RNA interference (RNAi) and its role in crop improvement - A Review -- In vitro Selection of Disease Resistant Plants -- Role of rol genes: Potential route to manipulate Plants for Genetic improvement -- Section D: Crop Improvement -- Synthesis of Silver Nanoparticles from Particles from Plants and Their Applications -- Biotechnological Approaches for Improvement and Conservation of Alnus glutinosa (L.) Gaertner -- Isolated microspore Culture and its applications in Plant breeding and genetics -- Indirect Somatic Embryogenesis and Plant Regeneration from Mature Seed Embryos of Bambusa arundinacea (Retz.) Wild -- Section E: Plant Conservation -- Micropropagation Technology and Its Applications for Crop Improvement -- Improvement of Green Leafy Vegetables – The role of Plant Tissue Culture and Biotechnology -- Non-zygotic Embryogenesis for Plant Development -- Somatic hybridization and microspore Culture in Brassica improvement.