the plant biotechnology is that in which techniques are used as in animal and produce new and best plant specises.
Biotechnology involves using living organisms or their products to develop new products, processes, or technologies to improve our lives. It can be applied in various fields such as medicine, agriculture, and environmental management.
The father of plant biotechnology is considered to be Norman Borlaug, an American biologist and Nobel laureate known for his work in developing high-yielding and disease-resistant wheat varieties, which helped spark the Green Revolution. His research and innovations in plant breeding and biotechnology have had a lasting impact on agriculture and food production.
Plant biotechnology is a powerful tool for agriculture and the field is gaining momentum quickly. Plant BT has a lot of financial potential. Therefore, it is highly unlikely that anyone would try and invent something that will overthrow plant BT
Biotechnology plays a crucial role in plant breeding by enabling the development of genetically modified (GM) crops with desirable traits such as resistance to pests, diseases, and environmental stresses. Techniques like genetic engineering and gene editing allow for targeted modification of plant genomes to enhance productivity, nutritional value, and sustainability in agriculture. Biotechnology also accelerates the breeding process by providing tools for precise trait introgression and selection in plants.
Biotechnology can be used to engineer plants that produce insecticidal proteins, such as Bt toxins, which are toxic to specific insect pests. By inserting these genes into the plant's genome, the plant becomes resistant to insect damage. This approach reduces the need for chemical pesticides, making it more environmentally friendly.
The definition of biotechnology varies, but a simple definition is the use of organisms by man. One example of biotechnology is cloning. We have been cloning plants for centuries. Each time a leaf is excised from a violet plant and placed in soil to grow a new plant, cloning has occurred. Today, we are not only doing the physical manipulation at the visual level but also on the molecular level. In modern or molecular biotechnology, we physically select the desired characteristic at the molecular level and add it to the organism's genetic makeup.
U. Kumar has written: 'Plant biotechnology and biodiversity conservation' -- subject(s): Plant biotechnology, Plant diversity conservation, Germplasm resources conservation
You would need a bachelors of science in Plant Biotechnology, where you would study the genetic structure and mechanism of various plants. You might want to get a Graduate certificate in plant biotechnology so you would increase your chances of getting a job in this field.
John J. Woodend has written: 'Biotechnology for resource poor farmers in Zimbabwe' -- subject(s): Agricultural innovations, Farms, Small, Plant biotechnology, Small Farms 'Biotechnology and sustainable crop production in Zimbabwe' -- subject(s): Sustainable agriculture, Plant biotechnology
Lara Wiggert has written: 'Biotechnology, genetic engineering for crop plant improvement' -- subject(s): Bibliography, Crops, Genetic engineering, Plant biotechnology
The use of living organisms to make desired products
Biotechnology involves using living organisms or their products to develop new products, processes, or technologies to improve our lives. It can be applied in various fields such as medicine, agriculture, and environmental management.
insert genes that produce anti-insect chemicals into the plant !
biotechnology
The father of plant biotechnology is considered to be Norman Borlaug, an American biologist and Nobel laureate known for his work in developing high-yielding and disease-resistant wheat varieties, which helped spark the Green Revolution. His research and innovations in plant breeding and biotechnology have had a lasting impact on agriculture and food production.
How the hell would i know? :| BTW i don't even understand some of the words :| :P
Investigating the effects of different biotic or abiotic stresses on plant growth and development. Studying the role of plant hormones in regulating plant growth or response to environmental cues. Analyzing the genetic diversity and phylogenetic relationships of plant species using molecular markers. Developing biotechnological approaches for improving crop yield, pest resistance, or abiotic stress tolerance in plants.