Pharmaceuticals combine DNA technology and medicine.
Genetics.
Biotechnology combines DNA technology and agriculture by using genetic engineering to create crops with specific traits. Currently, most are modified to be resistant to herbicides or to produce an insecticide in the plant itself.
The invention of DNA technology has revolutionized fields such as medicine, forensics, and agriculture. DNA testing allows for personalized medicine and early disease detection, while forensic DNA analysis helps solve crimes. In agriculture, DNA technology has improved crop yield and disease resistance. Overall, the invention of DNA technology has the potential to improve and impact many aspects of human life.
the single cell when a sperm's DNA combines with the egg's DNA is called fertilization
In DNA sequencing, Adenine and Guanine are known as "base pairs", and are purines, which form the building blocks of DNA and RNA. Guanine combines with Adenine in DNA sequencing.
The field of genetic engineering or recombinant DNA technology was created when recombined DNA was first made in the 1970s. This technology allows scientists to manipulate and modify genes, creating genetically modified organisms for various applications in medicine, agriculture, and biotechnology.
r DNA technology is technology of creating new combination of DNA. While pcr is one of techniques used in r DNA technology for amplification of perticuler DNA fragment
DNA Plant Technology ended in 2002.
DNA technology is useful because it allows for the manipulation, analysis, and modification of genetic material. It has revolutionized fields such as medicine, forensics, agriculture, and biotechnology by enabling researchers to study genes, diagnose diseases, create genetically modified organisms, and identify individuals through DNA profiling with a high degree of accuracy.
genetic engineering
sugar
Thymine combines with adenine in DNA through hydrogen bonding to form a base pair. These base pairs are a key component of the double helix structure of DNA.