(a) Write the DNA double strand. (b) Assuming the gel pattern represents the template strand, transcribe and translate the DNA. (c) Write the anticodon sequence.
Molecular Techniques
Molecular techniques are methods employed in molecular biology, genetics, biochemistry, and biophysics to manipulate and analyze nucleic acids (deoxyribonucleic acid (DNA) and ribonucleic acid (RNA)), protein, and lipids. Techniques in molecular biology are employed to investigate the molecular basis for biological activity. These techniques are used to analyze cellular properties, structures, and chemical reactions, with a focus on how certain molecules regulate cellular reactions and growth.
DNA Fingerprinting and Gel Electrophoresis
The genetic makeup of living organisms is shown by a technique known as DNA fingerprinting. The difference is the satellite region of DNA is shown by this process. Alex Jeffreys has invented the process of DNA fingerprinting in 1985. Any biological samples such as blood, hair, saliva, semen can be used for DNA fingerprinting. DNA fingerprinting is also known as DNA profiling or molecular fingerprinting.
Molecular Markers
A known DNA sequence or gene sequence is present on a chromosome, and it is associated with a specific trait or character. It is mainly used as a genetic marker of the molecular marker. The first genetic map was done in a fruit fly, using genes as the first marker. In two categories, molecular markers are classified, classical marker and a DNA marker. A molecular marker is also known as a genetic marker.
DNA Sequencing
The most important feature of DNA (deoxyribonucleic acid) molecules are nucleotide sequences and the identification of genes and their activities. This the reason why scientists have been working to determine the sequences of pieces of DNA covered under the genomic field. The primary objective of the Human Genome Project was to determine the nucleotide sequence of the entire human nuclear genome. DNA sequencing selectively eliminates the introns leading to only exome sequencing that allows proteins coding.
![(a) Write the DNA double strand.
(b) Assuming the gel pattern represents the template strand, transcribe and
translate the DNA.
(c) Write the anticodon sequence.
A
G
2nd (middle) Base of a Codon
1*
3rd
U
A
G
Base
Base
UUU - Phe
U
UUC - Phe
UCU - Ser
UCC - Ser
UAU - Tyr
UAC - Tyr
UGU - Cys
UGC - Cys
UUA - Leu
UCA- Ser
UAA - STOP
UGA - STOP
UUG -Leu
CUU - Leu
CUC - Leu
UCG-Ser
CCU - Pro
CCC- Pro
UAG- STOP
CAU - His
САC - His
UGG- Trp
CGU - Arg
CGC - Arg
CGA - Arg
CGG- Arg
CỦA - Leu
ССА-Pro
CAA - Gin
CAG- Gin
AAU - Asn
CUG - Leu
CCG-Pro
AUU - Ile
ACU - Thr
АCC - Th
ACA - Thr
AGU – Ser
A
AGC - Ser
AGA - Arg
AGG - Arg
GGU - Gly
GGC - Gly
GGA - Gly
GGG - Gly
AUC - lle
AAC - Asn
AAA - Lys
AAG - Lys
GAU - Asp
GAC - Asp
GAA - Glu
AUA- lle
AUG - Met
ACG - Thr
G
GUU - Val
GCU - Ala
GCC - Ala
GUC - Val
GUA- Val
GCA - Ala
GUG - Val
GCG - Ala
GAG - Glu
PUAGPCAGUCACUCAG
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