A primary difference between transcription and replication is that transcription

Answers

Answer 1

Answer: Replication is the duplication of two-strands of DNA.

Explanation:

Transcription is the formation of single, identical RNA from the two-stranded DNA.

Answer 2
Transcription and replication are two closely related processes that are essential for the functioning of cells. However, they are not the same thing and have some important differences.

Transcription is the process by which the information in a gene is copied into a molecule of RNA. This involves the enzyme RNA polymerase binding to a specific sequence on the DNA molecule and using the information in the DNA to synthesize an RNA molecule that is complementary to the DNA. Transcription is the first step in the process of gene expression, which is the way that cells convert the information in genes into proteins and other functional molecules.

Replication, on the other hand, is the process by which cells make copies of their DNA. This is necessary for cells to divide and produce new cells, and it also plays a crucial role in maintaining the integrity of the genetic information over time. Replication involves the enzyme DNA polymerase binding to the DNA molecule and using it as a template to synthesize new strands of DNA. This process results in two identical copies of the DNA molecule, one for each of the daughter cells that will be produced during cell division.

In summary, the primary difference between transcription and replication is that transcription involves the synthesis of RNA from DNA, whereas replication involves the synthesis of DNA from DNA. Transcription is a crucial step in gene expression, whereas replication is essential for cell division and the maintenance of genetic information.

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Related Questions

Order the steps that occur as a protein is synthesized within a cell and finally excreted for use outside of the cell.

Answers

Answer:

1. The protein is synthesized within the cell using the information in the cell's DNA.

2. The protein is folded into its final shape.

3. The protein is transported to the cell membrane.

4. The protein is excreted from the cell, typically with the help of special protein-transporting molecules.

5. The protein is now outside of the cell and can be used for its intended purpose.

Explanation:

Why are the differences between prokaryotic and eukaryotic translation of mRNA useful to humans?

Answers

For the regulation of genes during nutritional shortage and stress, development and differentiation, nervous system function, aging, and illness, translational control in eukaryotic cells is essential. Prokaryotes are able to respond quickly to environmental cues because transcription and translation happen simultaneously in the cytoplasm.

what are Prokaryotes ?

Any organism without internal membranes is referred to as a prokaryote, usually written procaryote. These organisms lack a defined nucleus and other organelles.

what is eukaryotic ?

eukaryotic can be explained as a living things with nuclei in their cells. Eukaryotes include all animals, all plants, all fungi, and many unicellular creatures.

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The founder effect is an example of _______.

Answers

Answer:

The founder effect is an example of genetic drift

explanation:

A population has members with the same appearance and features, such members encounter similar problems in the environment they live in. Some members of the population start living in a different place due to some reason. In that new area, they form a colony and start to adapt to different environments. This is called the founder effect. This brings change into sets of genes causing genetic drift.

Our sense of taste originally was thought to involve only the following four
sensations
A) sweet, salty, starch, and bitter.
B) salty, fatty, bitter, and sweet.
C) sour, bitter, sweet, and starchy.
D) bitter, sweet, sour, and salty.
E) fruity, fatty, silky, and coarse.

Answers

Answer:

D) bitter, sweet, sour, and salty

Explanation:

Our sense of taste originally was thought to involve only the following four sensations: bitter, sweet, sour, and salty. These four sensations are the primary tastes that humans can detect, and they are thought to be the basis of our sense of taste. Other tastes, such as fat and umami (savory), are thought to be detected by other senses, such as touch and smell.

Answer: C

Explanation:

Which of the following is a characteristic of offspring produced by meiosis, and does not characterize offspring produced by mitosis?

A.
four haploid cells with chromosomes and alleles that are genetically different than the parents

B.
four haploid cells with chromosomes and alleles that are genetically identical to the parents

C.
two diploid cells with chromosomes and alleles that that are genetically different than the parents

D.
two diploid cells with chromosomes and alleles that are genetically identical to the parents

Answers

Answer:

the answer is B I did this last week

Explain why the potential energy increases when ice starts to melt and becomes liquid water.
Enter your answer in the space below.
swer inside this box

Answers

Answer:

Explanation:

While the ice melts kinetic energy is being added to the particles. This breaks the bond and causes a change of state making the solid become a liquid.

Select all true statements regarding gamma decay.

Answers

Gamma rays are the spectral particles with the highest energy and shortest wavelength. This form of decay does not result in the release of any particles from the nucleus.

What is a nucleus, and what does it do?

The spindle holds the alleles, which are the structures that house the genetic traits, and governs and regulates the functions of the cell. The nucleoplasm is the gel-like membrane that contains the nuclear parts are suspended.

Why is the nucleus the most significant cell?

Due to its role in the storage, retrieval, and copying of genetic material, the nucleus is regarded as among the most significant components of eukaryotic cells. The genetic material is housed in an organelle with two membranes.

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sexual selection in a population choose one: a. can lead to physical differences between the males and females of a species. b. does not lead to evolution. c. reduces genetic variation in the population. d. always favors individuals with a higher survival potential.

Answers

The right response is option a, which states that morphological distinctions between males and females of a species can result from sexual selection in a population.

The tail of a peacock is a good illustration of partner selection. Peahens choose peacocks with huge, vibrant tails, which allows those peacocks to mate more frequently and produce younger ones. The genes for a long, colourful tail will be passed down from the father to the male peachicks, who will inherit these genes and develop comparable tails. There are two main factors that influence sexual selection. One is the preference of one sex (typically females) for members of the opposite sex who display particular features. The other is higher strength, which (often in males) results in better success in courting females.

So, we can conclude that option a, which claims that sexual selection can lead to physical differences between males and females of a species in a population, is the appropriate response.

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the dna with the gene of interest for a cloning experiment was left on the lab bench overnight (instead of storing it in the freezer). as a result, it was degraded. they didn't know the dna was left out and used it in the experiment. the plasmid, however, was stored correctly. the vector contains a gene for ampicillin resistance. after the transformation procedure, the bacteria were plated on media containing ampicillin. what results are expected from this faulty molecular cloning experiment?

Answers

In a molecular cloning procedure, the DNA to be copied is extracted from a target organism and split into smaller DNA fragments in a test tube using enzymes.

These pieces are subsequently joined with vector DNA to produce recombinant DNA molecules. After that, a host organism is given the recombinant DNA (typically an easy-to-grow,strain of E. coli bacteria). Recombinant DNA molecules will be duplicated alongside the host DNA in the resulting population of organisms. These are transgenic or genetically modified organisms because they have foreign DNA pieces. Thus, the term "clone" is frequently used to describe both the bacterial population and the recombinant DNA molecule. In actuality, molecular cloning refers to the scientific techniques utilised to put them together.The idea arose that different DNA sequences could be inserted into a plasmid and that these foreign sequences would be carried into bacteria and digested as part of the plasmid. That is, these plasmids could serve as cloning vectors to carry genes.

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