Answer:
★ C. fossils of marine organisms are found at the top of some mountains
Explanation:
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Answer:
Tt - 2/4 = 1/2 or 50% Heterozygous TALL
tt - 2/4 = 1/2 or 50% Homozygous Dwarf
Explanation:
So let's make a Punnett for this so you can see what the outcome is yourself:
Tall is <u>dominant</u> - T
Dwarf is <u>recessive</u> - t
Heterozygous means that they have one of each allele. The genotype of one parent would be then Tt.
***It is heterozygous tall because Tall is a dominant trait so if it is accompanied by the recessive trait dwarf, then the Tall allele would mask it.
The other parent is a dwarf plant. The genotype would then be tt.
*** Now for a recessive trait to appear, it should not have a dominant trait mixed with it, which could mask it. The result then is homozygous recessive or homozygous Dwarf.
So now that we know the genotypes of the parent plants, we can put it into a Punnet:
t t
T Tt Tt
t tt tt
As you can see, out of the 4 outcomes we have:
Tt - 2/4 = 1/2 or 50% Heterozygous TALL
tt - 2/4 = 1/2 or 50% Homozygous Dwarf
When mRNA exits the nucleus, it travels to a ribosome, which is made up of proteins and rRNA. The ribosome reads the mRNA's codon sequence. The correct sequence of amino acids is delivered to the ribosome by tRNA molecules. A ribosome is responsible for translating the codons in mRNA into a chain of amino acids.
Initiation, elongation, and termination are the three main stages of translation. The small subunit and the big subunit are two distinct subunits that make up the ribosome. The tiny subunit binds to the mRNA's 5' end during initiation.
Then it shifts in a 5' x 3' direction. The TR when RNA that has an amino acid linked to it binds to the mRNA. They participate in translation because they are molecules that are involved in protein synthesis, which is translation. And those molecules that link the minor assets Holden's RNA from M. with. The mRNA is now bound to the tRNA by antipodean.
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Obtaining mRNA from the cell, then using reverse transcriptase enzyme to convert it into a stable cDNA (or copy of DNA) molecule for insertion into the bacterial cell.
I hope this helps!