Which method of food production is sustainable

Answers

Answer 1
Answer:

Answer: Improving food storage facilities

Explanation:


Related Questions

What does it mean for the brain to process information contralaterally? What about ipsilaterally? How does the corpus callosum play a role in theseprocesses (both contralateral and ipsilateral)? What happens when someone has a split-brain procedure?
An increase in cell size results in an increase in surface area to volume ration.a. trueb. false
Which best describes probability?O A. The number of offspring with a trait o OB. The number of alleles a parent has C. The likelihood of an event occurring O D. The most likely possible outcome
The table in Figure 12–3 shows the results of measuring the percentages of the four bases in the DNA of several different organisms. Some of the values are missing from the table. Based on Chargaff’s rule, the percentages of thymine bases in chicken DNA should be aroundA. 28.8%. B. 19.9%. C. 21.5%. D. 13.4%.
What structure is only found in animal cells

Which of these best orders the rock layers from the youngest to the oldest? (1 point)1) Layer A - Layer B – Layer C – Layer D
O2) Layer A - Layer D - Layer B - Layer C
O 3) Layer D - Layer C - Layer B - Layer A
4) Layer D - Layer A - Layer C - Layer B

Answers

Answer:

D-C-B-A

Explanation:

Oldest crust on the bottom

3) layer D, layer C, layer B, layer A

Which of the following best describes the effect of cancer-causing mutations on the cell cycle? The mutations increase the speed of the cycle. The mutations cause the cell to bypass checkpoints in the cycle The mutations eliminate one or more stages of the cycle. The mutations interfere with S stage of the cycle. None of these.

Answers

Answer:

None of these.

Explanation:

Cancer mutations affect cell cycle regulators.

Cell cycle is a highly regulated process by the regulators that can promote cell cycle or inhibit the cycle. Genes that encode for those regulators are classified into two groups:

  • proto-oncogenes-encode for positive regulators such as growth factor receptor. If a cancer mutation occurs in the proto-oncogene it becomes oncogene and its product is overactivated. The increased avtivity of positive regulators leads to abnormal cell division.
  • tumor suppresor-the products of such genes blocks the cell cycle, but after the mutation they become inactive, which leads to uncontrolled cell cycle.

The earth’s radiation budget is:

Answers

The balance between the energy flowing in from the sun and the energy leaving the earth as thermal (longwave) and reflected (shortwave) energy is known as the Earth Radiation Budget, which is located at the top of the atmosphere. The only way to measure it is from space.

1. What purpose does the regulatory portion of the gene have? 2. In this simulation, the DNA molecule’s different strands are represented as different
colors one blue and one red. What is the significance of the two different
strands? Are they both used in transcription?

3. There are two required components to initiate transcription on the gene. What are they,
and where do they bind on the DNA strand?

4. How would you know if transcription has been successful?

5. How do negative transcription factors impact transcription?

6.Explain the difference in transcription between Gene 1 and Gene 2. Hypothesize the reason for the difference.

Answers

Answer:

Here are my answers to your questions:

The regulatory portion of the gene is a sequence of DNA that controls the expression of the gene. It may contain binding sites for transcription factors, which are proteins that activate or repress transcription. The regulatory portion of the gene may also include elements such as enhancers, silencers, and insulators, which can influence the rate and specificity of transcription12.

The two different strands of the DNA molecule are called the template strand and the coding strand. The template strand is the one that is used by RNA polymerase to make a complementary RNA transcript during transcription. The coding strand is the one that is not used by RNA polymerase, but has the same sequence as the RNA transcript (except for T instead of U). Both strands are important for transcription, but only one is directly copied34.

The two required components to initiate transcription on the gene are RNA polymerase and a promoter. RNA polymerase is the enzyme that synthesizes RNA from a DNA template. A promoter is a sequence of DNA near the start of a gene that signals RNA polymerase where to begin transcription. RNA polymerase binds to the promoter with the help of general transcription factors, which are proteins that recognize specific features of the promoter15.

Transcription has been successful if a complete and accurate RNA transcript has been produced from the DNA template. The RNA transcript can be detected by various methods, such as hybridization with a complementary DNA probe, electrophoresis on a gel, or sequencing1.

Negative transcription factors are proteins that repress transcription by binding to DNA and preventing RNA polymerase or other activators from accessing the gene. Negative transcription factors can regulate gene expression by turning off genes that are not needed or harmful in certain conditions67.

Gene 1 and Gene 2 have different transcription rates because they have different regulatory elements and transcription factors. Gene 1 has an enhancer and an activator that increase its transcription, while Gene 2 has a silencer and a repressor that decrease its transcription. These elements and factors may respond to different signals from inside or outside the cell, such as hormones, nutrients, or stress68.

Answer:

1. The coding region of a gene is used to make RNA molecules. This region is controlled by regulatory portions of the gene, which are located upstream of the coding region and determine when, where, and how much they are expressed. When it is time to express a gene (turn it on), when it's not the right time to express a gene (turn it off), lastly if expression needs to be enhanced (increase the amount of protein being produced).

2. In this diagram, one strand represents the coding strand, while the other represents the template strand. The template strand acts as a model for RNA polymerase to synthesize mRNA. The template strand is read by the polymerase, and complementary bases are added to form the mRNA.

3. Two components are required to initiate transcription, including RNA polymerase and transcription factors. In addition, there is also a promoter on the gene, which acts as a sort of "entrance" for the RNA polymerase to bind and begin transcription.

4. If transcription is successful, then you would expect to see RNA being produced.

5. In order to begin transcription, the RNA polymerase/general transcription factor must bind to the promoter. There are different types of transcription factors such as activators and repressors. If a repressor binds to the promoter, this effectively "blocks" the RNA polymerase.

6. There is a difference in transcription rates between Gene 1 and Gene 2 due to differences in regulatory elements and transcription factors. There are enhancers and activators that increase Gene 1's transcription, while silencers and repressors decrease Gene 2's transcription. Signals coming from inside or outside the cell, such as hormones, nutrients, or stress, may trigger these elements and factors.

The blank process helps fuel your metabolism with oxygen

Answers

Answer:

Cellular Respiration

Explanation:

Metabolism is the sum of chemical reactions taking place in the living organisms. Cellular respiration is one such metabolic process.  Cellular respiration takes place in in the all organisms in which respiratory substrate such as glucose is oxidised completely in presence of oxygen to produce carbon dioxide, water and energy (ATP). Cellular respiration begins in cytoplasm and completes in the mitochondria of the cell.  The energy is used to do work.

The oxidation reaction is given below:

         C₆H₁₂O₆+ 6O₂ → 6CO₂+ 6H₂O + Energy  

Answer:

Oxidation is the answer

Will give brainlistEarth's surface is constantly changing, and new landforms are constantly taking shape due to natural processes. Which landform is most likely caused by deposition?
A. caves
B. valleys
C. Deltas
D. lakes

Answers

Answer:

C. Deltas

Hope it helped :)