Genetic engineering is also known as genetic modification, which is the direct manipulation of an organism's genome using modern biotechnology.
It is a set of technologies used to change the genetic structure of the cells, which includes the transfer of genes within and across species boundaries to produce improved or novel organisms.
New DNA may be inserted into the host genome by first isolating and copying the genetic material of interest using molecular cloning methods to generate a DNA sequence, or by synthesising the DNA, and then inserting this construct into the host organism. Genes may be removed, or "knocked out", using a nuclease.
Gene targeting is a different technique that uses homologous recombination to change an endogenous gene and can be used to delete a gene, remove exons, add a gene, or introduce point mutations.
An organism which is generated by applying genetic engineering is called as genetically modified organism (GMO).The first GMO were Bacteria generated in 1973 and GM mice in 1974."
Matrices and calculus
Physics
Physics laboratory
Chemistry
Chemistry laboratory
Basic civil engineering
Multiple integrals and differential equations
Material science
Principles of environmental science
Cell biology and cytogenetics
Biochemistry
Cytogenetics laboratory
Biochemistry laboratory
Principles of genetics microbiology
Immunology
Molecular biology of gene
Basic chemical engineering i – stochiometry,
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Training in laboratory safety
Microbiology laboratory
Biostatistics
Basic chemical engineering ii – mechanical operation,
Momentum and mass transfer
Molecular techniques in genetic engineering bioprocess principles
Molecular techniques laboratory
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Recombinant dna technology human genetics
Plant genetic engineering
Enzyme engineering
Recombinant dna technology laboratory
Plant genetic engineering laboratory
Industrial training i (training)
Bioprocess engineering
Bioseparation engineering and Lab.
Stem cell biology and gene therapy
Seminar/working model
Gene expression laboratory
Bioinformatics
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Research methodology
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Animal cell culture laboratory
Bioinformatics laboratory
Industrial training ii (training)
Uses of Genetic engineering
It is widely used in medicine, research, industry and agriculture, along with that it is used for range of plants, animals and micro organisms.
Medicine – In the field of medicine it is used in manufacturing drugs. Various laboratory research and gene therapy need help of genetic engineering.
Agriculture – Genetic engineering is also used to create genetically modified crops or genetically modified organisms in order to produce genetically modified foods.
Research – It is used by Scientists in various researches. Genes from various organisms are converted into bacteria for storage and modification, creating genetically modified bacteria.
You can find below the specialization offered in the field of genetic engineering:
Genetic engineering is a specialization of biotechnology. It can also be studied as a separate specialization.
There are many undergraduate and postgraduate courses available in this field.
Some of the most sought courses opted by students for genetic engineering are given below:
Under graduate courses:
B.E in Genetic Engineering
B.tech in Genetic Engineering
B.Sc in Genetic Engineering
Post Graduate courses:
M.E in Genetic Engineering
M.Tech in Genetic Engineering
M.Sc in Genetic Engineering
Year wise Fees Bifurcation
What is the career option after genetic engineering?
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