
Ratio between triple and double Hydrogen-bond nucleotide base pairs in a palindrome recognized by EcoRI.
A.\[3:2\]
B.\[2:1\]
C.\[1:2\]
D.\[3:1\]
Answer
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Hint: We know that the genes encode commands for importantly building proteins. Sequences of DNA that encode a protein, called genes, mainly are copied right into a molecule referred to as messenger within a gene, every three consecutive letters of DNA, referred to as a codon, specifies a sort of particular amino acid, demonstrating that sequences of DNA.
Complete answer:
Nucleon for the maximum part became first observed by using Friedrich Meischer, or so for all intents and functions. It mainly turned into the period used to essentially describe the nuclear fabric, which nowadays honestly is called DNA, which in reality is reasonably full-size. Watson and Crick proposed the double-stranded, for all intents and functions helical structure of DNA, which simply is reasonably massive. They for all intents and purposes showed that DNA includes nucleotides (sugar + bases + phosphate), simply opposite to popular belief.
Molecular basis of inheritance is the study of genes, hereditary and genetic variations which explains how an offspring looks similar to its maternal or paternal features. DNA, RNA and genetic code are the fundamental parts of the molecular basis of inheritance and are responsible to transmit genes from parents to the offspring. Various traits get inherited from one generation to another generation where variations also come into picture due to recombination.
With lots of research and studies, it is found out that the genetic material of most of the organisms is called DNA (Deoxyribonucleic Acid) and it is responsible for the transfer of traits from one to another. The ratio of double and triple bonds of hydrogen in the nucleotides is \[2:1\] as because the site of restriction is GAATTC which means G has triple bonds with C and A has double bonds with T.
Hence, the correct option is B.
Note:
Remember that the genetic code for the maximum element is the term we use for the manner that the four bases of DNA-the A, C, G, and Ts-are strung collectively in a way that the cellular equipment, the ribosome, can examine them and for the most component flip them right into a protein in a subtle way within the genetic code.
Complete answer:
Nucleon for the maximum part became first observed by using Friedrich Meischer, or so for all intents and functions. It mainly turned into the period used to essentially describe the nuclear fabric, which nowadays honestly is called DNA, which in reality is reasonably full-size. Watson and Crick proposed the double-stranded, for all intents and functions helical structure of DNA, which simply is reasonably massive. They for all intents and purposes showed that DNA includes nucleotides (sugar + bases + phosphate), simply opposite to popular belief.
Molecular basis of inheritance is the study of genes, hereditary and genetic variations which explains how an offspring looks similar to its maternal or paternal features. DNA, RNA and genetic code are the fundamental parts of the molecular basis of inheritance and are responsible to transmit genes from parents to the offspring. Various traits get inherited from one generation to another generation where variations also come into picture due to recombination.
With lots of research and studies, it is found out that the genetic material of most of the organisms is called DNA (Deoxyribonucleic Acid) and it is responsible for the transfer of traits from one to another. The ratio of double and triple bonds of hydrogen in the nucleotides is \[2:1\] as because the site of restriction is GAATTC which means G has triple bonds with C and A has double bonds with T.
Hence, the correct option is B.
Note:
Remember that the genetic code for the maximum element is the term we use for the manner that the four bases of DNA-the A, C, G, and Ts-are strung collectively in a way that the cellular equipment, the ribosome, can examine them and for the most component flip them right into a protein in a subtle way within the genetic code.
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