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A-Adenine

C-Cytosine

T-thymine

G-guanine

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How many different nitrogen bases are there?

There are four different nitrogen bases found in DNA: adenine (A), thymine (T), cytosine (C), and guanine (G). These nitrogen bases are the building blocks that make up the genetic code of an organism.


How thousands of different genes can be formed with just 4 nucleotides?

Gene is the functional part of DNA, i.e. gene is made up of DNA and DNA is made of nucleotides in which there are sugar, phosphate group and bases. For DNA four bases are required Adinine, Guanine, Thyamine, Cytosine. They can be arranged in different sequence to form different protein of DNA, so the different sequential arrangement of bases lead to the formation of thousands of different gene from four bases.


How many different types of nitrogen bases are in dna?

There are four major types of bases in DNA. They include adenine, guanine, cytosine and thymine (A,G,C,T). However, we now know by a recent report in Science journal there are at least 8 bases in DNA. They include methylated C bases, and two intermediates of the methylation process. One might predict that other modifications of DNA probably occur, and will be discovered as the fine structure of DNA is examined more closely. Therefore, it is probably more scientifically correct to say that there are four MAJOR types of bases in DNA.


The DNA molecule has four different kinds of these?

The DNA molecule has four different kinds of nucleotides: adenine (A), thymine (T), cytosine (C), and guanine (G). These nucleotides combine in specific sequences to form the genetic code that determines an organism's traits.


How many DNA bases are present in 8 DNA nucleotides?

There are 32 DNA bases in 8 DNA nucleotides.

Related Questions

How many bases are in DNA and what are the names of the bases?

There are 4 bases in DNA: adenine, thymine, cytosine, and guanine.


What is the base in organizer?

DNA has 4 different organic bases - Thymine, Adenine, Cytosine and Guanine.


How many comdinations of DNA nitrogens bases are possible in a DNA triplet code?

A DNA triplet code consists of three nucleotide bases, and there are four different nitrogenous bases in DNA: adenine (A), thymine (T), cytosine (C), and guanine (G). Since each position in the triplet can be occupied by any of the four bases, the total number of combinations is 4 x 4 x 4, which equals 64 possible combinations of DNA triplet codes.


What are the 4 bases the make up the rungs of the DNA ladder?

what are 4 bases that make up the rungs of the DNA ladder


If there were 4 guanine bases in a DNA model how many cytosine bases would there be?

If there are 4 adenines on one side of the DNA, there will be 4 thyamines on the other side. In RNA, there would be 4 uracil's.


What are the 4 bases that a DNA nucleotide could have?

The four DNA bases are: Adenine Thymine Cytosine Guanine


What are the 4 DNA?

AdenineThymineCytosineGuanineThese are the four nitrogen bases found in DNA.


How do birds and dogs both use DNA as instruction for building their bodies even though they are very different organisms?

Their DNA has the same nucleotide bases, but in different patterns. DNA forms the building blocks of all living things, regardless of species.


How many different nitrogen bases are there?

There are four different nitrogen bases found in DNA: adenine (A), thymine (T), cytosine (C), and guanine (G). These nitrogen bases are the building blocks that make up the genetic code of an organism.


How how does a nitrogen bases in the DNA molecule?

its 4


How many different nitrogenous bases exist and are found in Dna?

There are only 4 nitrogenous bases in DNA. These are adenine, thymine, guanine, and cytosine. Adenine will only pair with thymine, and guanine will only pair with cytosine.


How thousands of different genes can be formed with just 4 nucleotides?

Gene is the functional part of DNA, i.e. gene is made up of DNA and DNA is made of nucleotides in which there are sugar, phosphate group and bases. For DNA four bases are required Adinine, Guanine, Thyamine, Cytosine. They can be arranged in different sequence to form different protein of DNA, so the different sequential arrangement of bases lead to the formation of thousands of different gene from four bases.