Development of efficient transformation protocols is becoming a complementary strategy to conventional breeding techniques for the improvement of crops. Thus, Transgenic Plants - Advances and Limitations covers the recent advances carried on improvement of transformation methods together with assessment of the impact of genetically transformed crops on biosafety. Each chapter has been written by one or more experienced researchers in the field and then carefully edited to ensure throughness and consistency
Current methods for creating transgenic varieties are labor and time intensive, comprised of the gen...
Due to rapid population growth, climate change, and decreasing natural resources, growing sufficient...
The history of transgenic crops at present can be divided in two parts. The first era deals with the...
Transgenesis is an important adjunct to classical plant breeding, in that it allows the targeted man...
Transgenic crops are the basis of modern agricultural biotechnology. Traits impossible to introduce ...
Transfer of genes from heterologous species provides the means of selectively introducing new traits...
Transgenic plants have already been produced in about 60 plant species. A number of these transgenic...
The techniques of plant transformation are discussed. They are bacterial-mediated, electroporation t...
Recombinant DNA technology has great potential to enhance and extend the advantages of conventional ...
Genetic transformation is a powerful tool for plant breeding and genetical, physiological or biochem...
Transgenic plants creation methodology developed for several decades has gained significant advances...
Plant transformation remains the most sought-after technology for functional genomics and crop genet...
Recombinant DNA technology has great potential to enhance and extend the advantages of conventional ...
The green revolution led to the development of improved varieties of crops, especially cereals, and ...
Genetic transformation has emerged as an important tool for the genetic improvement of valuable plan...
Current methods for creating transgenic varieties are labor and time intensive, comprised of the gen...
Due to rapid population growth, climate change, and decreasing natural resources, growing sufficient...
The history of transgenic crops at present can be divided in two parts. The first era deals with the...
Transgenesis is an important adjunct to classical plant breeding, in that it allows the targeted man...
Transgenic crops are the basis of modern agricultural biotechnology. Traits impossible to introduce ...
Transfer of genes from heterologous species provides the means of selectively introducing new traits...
Transgenic plants have already been produced in about 60 plant species. A number of these transgenic...
The techniques of plant transformation are discussed. They are bacterial-mediated, electroporation t...
Recombinant DNA technology has great potential to enhance and extend the advantages of conventional ...
Genetic transformation is a powerful tool for plant breeding and genetical, physiological or biochem...
Transgenic plants creation methodology developed for several decades has gained significant advances...
Plant transformation remains the most sought-after technology for functional genomics and crop genet...
Recombinant DNA technology has great potential to enhance and extend the advantages of conventional ...
The green revolution led to the development of improved varieties of crops, especially cereals, and ...
Genetic transformation has emerged as an important tool for the genetic improvement of valuable plan...
Current methods for creating transgenic varieties are labor and time intensive, comprised of the gen...
Due to rapid population growth, climate change, and decreasing natural resources, growing sufficient...
The history of transgenic crops at present can be divided in two parts. The first era deals with the...