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Although designed for undergraduates with an interest in molecular
biology, biotechnology, and bioengineering, this book-Techniques in
Genetic Engineering-IS NOT: a laboratory manual; nor is it a
textbook on molecular biology or biochemistry. There is some basic
information in the appendices about core concepts such as DNA, RNA,
protein, genes, and genomes; however, in general it is assumed that
the reader has a background on these key issues. Techniques in
Genetic Engineering briefly introduces some common genetic
engineering techniques and focuses on how to approach different
real-life problems using a combination of these key issues.
Although not an exhaustive review of these techniques, basic
information includes core concepts such as DNA, RNA, protein,
genes, and genomes. It is assumed that the reader has background on
these key issues. The book provides sufficient background and
future perspectives for the readers to develop their own
experimental strategies and innovations. This easy-to-follow book
presents not only the theoretical background of molecular
techniques, but also provides case study examples, with some sample
solutions. The book covers basic molecular cloning procedures;
genetic modification of cells, including stem cells; as well as
multicellular organisms, using problem-based case study examples.
Although designed for undergraduates with an interest in molecular
biology, biotechnology, and bioengineering, this book-Techniques in
Genetic Engineering-IS NOT: a laboratory manual; nor is it a
textbook on molecular biology or biochemistry. There is some basic
information in the appendices about core concepts such as DNA, RNA,
protein, genes, and genomes; however, in general it is assumed that
the reader has a background on these key issues. Techniques in
Genetic Engineering briefly introduces some common genetic
engineering techniques and focuses on how to approach different
real-life problems using a combination of these key issues.
Although not an exhaustive review of these techniques, basic
information includes core concepts such as DNA, RNA, protein,
genes, and genomes. It is assumed that the reader has background on
these key issues. The book provides sufficient background and
future perspectives for the readers to develop their own
experimental strategies and innovations. This easy-to-follow book
presents not only the theoretical background of molecular
techniques, but also provides case study examples, with some sample
solutions. The book covers basic molecular cloning procedures;
genetic modification of cells, including stem cells; as well as
multicellular organisms, using problem-based case study examples.
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