The instructions for making all the proteins are carried by the DNA, these proteins determine one's traits.
The genetic code determines the proteins manufactured by the cell. The proteins refers to the strands of amino acids. The DNA sequence of the genes determines the order of amino acids in a protein. This is the direct association between the traits and the genes.
It is the DNA, which carries all the instructions for the manufacturing of the proteins, these proteins determine the traits. DNA does not possess the tendency to leave the nucleus, thus mRNA copies the message of DNA and carries it to a ribosome. The mRNA is read by the tRNA that brings in the appropriate amino acid to produce the protein. This protein determine a trait.
Thus, DNA sequence determine a trait, as they provide instructions for the manufacturing of the proteins, these proteins further determine a trait.
Find out more information about the importance of DNA sequence here:
Answer:The sequence of nucleotides in DNA genes determines the order of amino acids in a protein. This is the direct connection between your genes and your traits. ... Then cellular structures, the ribosomes, translate the RNA into proteins.
Explanation:
Answer:
Genotype of offspring: bb
Phenotype of offspring: white
Percentage of white offspring: 100%
Percentage of black offspring: 0%
Explanation:
Black with allele B is dominant to white with allele b.
Homozygous white will have the genotype bb.
Crossing two homozygous white cats:
bb x bb = bb, bb, bb, and bb
All the offspring will be homozygous white with bb genotype.
Percentage of the offspring that are white = 100%
Percentage of the offspring that are black = 0%
Answer:
The offspring will also be white and homozygous.
Explanation:
If the two cats are white and homozygous where the gene B is for black color and dominant, gene b is for white color and recessive. In this case the genotypes of the two cats are going to be "bb" which can only lead to the same genotypes and phenotypes in their offspring. They will also be white and homozygous.
I hope this answer helps.