The distribution of melanosomes in cells is tightly regulated in animals that rapidly change color. dark-colored cells have melanosomes scattered throughout the cytoplasm while light-colored cells have them aggregated near the nucleus. how could cells use microtubules and motor proteins to change the distribution of melanosomes?

Answers

Answer 1

Microtubules originate on the centre of the cell taking the positive end to the periphery of the cell, while the negative end remains turned to the centre of the cell. The melanosomes move along these microtubules using motor proteins desiganted kinesins and dyneins. The kinesins are responsible for moving the melanosomes to the positive end of the microtubule (periphery of the cell) generating dark-colored cells, whereas dyneins move the melanosomes to the negative end of the microtubule (centre of the cell) generating light-colored cells.

Answer 2

Cells change the distribution of melanosomes using microtubules and motor proteins like dynein and kinesin that act as transportation systems within the cell.

Cells in animals that can rapidly change color use microtubules and motor proteins to change the distribution of melanosomes, which carry pigment. These components function similarly to conveyer belts, transporting various cellular cargo, including pigment-containing vesicles known as melanosomes. The light or dark appearance of the cells is a result of the pattern of melanosome distribution, which is controlled by motor proteins such as dynein and kinesin that move along microtubule tracks. Dynein generally moves cargo towards the center of the cell (retrograde transport), while kinesin moves it towards the periphery (anterograde transport).


Related Questions

Most wind erosion is caused by _____.

saltation
abrasion
traction
plucking

Answers

most wind erosion is caused by abrasion.
Most wind erosion is caused by abrasion. Abrasion is the mechanical scraping of a rock surface by friction between rocks and moving particles during their transport by wind, glacier, waves, gravity, etc.

Soft tissue in the body looks dark on an X-ray image. What does that indicate about how soft tissue interacts with X-rays?

Answers

the more thick the tissue
the more darker on X-Ray image

Hope this help you

Soft tissue looks dark on an X-ray because it absorbs fewer X-rays than dense bone, allowing more X-rays to pass through.

The soft tissue in the body looks dark on an X-ray image because it is less dense than bone and therefore absorbs fewer X-rays. This indicates that soft tissue allows more X-rays to pass through it, resulting in less exposure on the X-ray film or detector and thus a darker appearance on the radiographic image.

X-rays are a form of electromagnetic radiation that can penetrate the body and are absorbed differently by different tissues based on their density and composition. Bones, which are dense and contain calcium, absorb more X-rays and appear light or white on an X-ray image because fewer X-rays reach the film or detector in those areas. In contrast, soft tissues such as muscles, fat, and organs are less dense and contain more water, which has a lower atomic number than calcium. As a result, soft tissues absorb fewer X-rays, allowing more of them to pass through and reach the film or detector. This increased passage of X-rays through soft tissue results in less exposure in these areas, which is represented as darker shades on the X-ray image. Therefore, the darkness of soft tissue on an X-ray image indicates that these tissues interact with X-rays by allowing them to pass through more readily than denser tissues like bone.

How could you determine the solute concentration inside a living cell?

Answers

A liquid that can easily pass through cell membranes is water. That is what is used in determining the concentration of the solute inside a living cell. You can place the cells in different osmotic environments. Then you observe and determine the environment that causes no uptake of water.
Final answer:

To determine solute concentration inside a living cell, one can use osmolarity, electronic cell counting devices, and cell membrane regulation.

Explanation:

To determine the solute concentration inside a living cell, you can use various techniques. One common method is the use of osmolarity, which is the concentration of solute particles in a solution. By comparing the osmolarity of the cell's cytoplasm to that of the surrounding extracellular fluid, you can determine the solute concentration inside the cell.

Another approach is the use of electronic cell counting devices, such as the Coulter counter, which detect changes in electrical resistance caused by the presence of cells in a saline solution.

Additionally, cell membranes have the ability to regulate the concentration of substances inside the cell, including ions, nutrients, and waste products. Through processes such as active transport or diffusion, the cell can maintain the desired solute concentration inside.

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Mary has had several depressive episodes but only one manic episode. she would be diagnosed with:

Answers

Mary suffers from type 2 bipolar disorder.

 there are  2 states of the disorder, "up" (mania) and "down". The "up", is characterized by a high energy mood, accompanied by abnormal behavior that disrupts life and the "down", that is essentially what we know as depression. In this type, the mania isn't as strong as type one bipolar disorder so we call it a hypomanic episode.

A person affected by bipolar II disorder has at least one hypomanic episode in her life but has more often episodes of depression.

Mary has had several depressive episodes but only one manic episode. she would be diagnosed with Bipolar II Disorder.

How are the functions of a carbohydrate and lipid similar

Answers

The body requires fuel and energy to perform the typical brain functions, physical activities, and operating of the organs. Carbohydrates provide the fuel and energy. 

Lipids play a number of roles but one main role is the storage of energy. A lot like Carbohydrates they are incredibly important to our bodies. In that, they store and give us energy throughout the day. 

I hope this helps!

The functions of carbohydrates and lipids are similar as - both are biomolecules and provide energy.

Biomolecules are the biological molecules that are produced by the cell of a living organism. The four major biomolecules are Protein, nucleic acid, carbohydrate, and lipids. All these biomolecules are polymers of their monomers.

Carbohydrates:

an essential and common class of biochemical compounds.They provide or store energy, among other uses.Carbohydrates are built of small monomers called monosaccharidesplay role as a structural component of the cell.

Lipids:

provide a high amount of energymade of fatty acid and TGA monomersplay role as a structural componentchemical messenger

Thus, The functions of carbohydrates and lipids are similar as - both are biomolecules and provide energy.

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What are the main concepts that make up the study of earths science?

Answers

Astronomy, geology, oceanography, and meteorology are the four main branches of earth science.
Hope this helped ☺

How do hydrophobic and hydrophilic regions govern the arrangement of membrane lipids in a bilayer?

Answers

Hydrophobic regions repel water and in the phospholipid bilayer the legs of the phospholipid are hydrophobic and thus face inwards towards the other phospholipid. The hydrophilic heads are attracted towards water and thus are oriented outwards towards the fluid outside of the cell.

Lipids have a hydrophilic head and hydrophobic tail, that is, it is an amphipathic molecule. These characteristics allow lipids to be the appropriate molecules to make up cell membrane structures, as the hydrophilic head of the lipid faces the outside of the cell allowing the cell to come in contact with external substances, however, the hydrophobic lipid tail. faces the interior of the cell, preventing material from inside the cell from spilling out.

Volcanic domes commonly are partially destroyed when

Answers

When you have seen a land formation which is in the shape of a rough circular mound-shaped protrusion resulting from the slow extrusion of viscous lava from a volcano, then most probably what you are seeing is a lava dome or a volcanic dome. Some of these lava domes’ geochemistry vary from basalt to rhyolite. Although the usual content are those mentioned, most of the preserved domes tend to have high silica content. The sleep flanks can partially destroy the domes. These can result to the collapsing and breaking into a jumble of blocks and ash that flow downhill. These domes can also be destroyed due to the explosions inside them. This happens when trapped gas builds up so much inside that it can no longer be held.

Volcanic domes, or lava domes, typically made of highly viscous silica-rich rock, often experience partial destruction during pyroclastic eruptions, which can produce devastating pyroclastic flows. These rapid flows eject volcanic materials at high speeds and temperatures, leading to the fragmentation and collapse of the dome's structure.

Volcanic domes, or lava domes, are formed from silica-rich volcanic rock like rhyolite and obsidian. They are characterized by their high viscosity, which prevents the lava from flowing far, resulting in the accumulation of material around the vent. These structures often emerge within the craters or on the flanks of stratovolcanoes, expanding from within as new lava is extruded. However, as lava domes increase in size, their outer surfaces cool, harden, and eventually become brittle. The continuous expansion and hardening lead to fracturing of the dome's surface, causing it to shatter and send loose fragments downhill.

Volcanic domes are commonly partially destroyed by pyroclastic eruptions, during which hot ash, gas, and rock fragments are ejected at high speeds. This process can generate pyroclastic flows swift, scalding avalanches of volcanic material that strip away parts of the dome. The violent nature of these eruptions can be catastrophic, stripping volcanic domes of their mass and drastically reshaping the landscape. Examples of this phenomenon can be seen at Mount Saint Helens and in other volcanic regions around the world. Among the possible causes for partial destruction of volcanic domes, pyroclastic eruptions and lahars are common, whereas glaciers eroding a dome or the dome growing larger than the crater are less typical triggers for the destruction of a lava dome.

A tree grows and increases its mass explain why it is not a violation of the law of conservation of mass

Answers

A tree is not an isolated system. It gets nutrients from surrounding environment to grow and build its mass. A total mass of tree plus its environment is constant. 

hich of these characteristics would be part of a fungus? A) cells all contain chloroplasts for photosynthesis B) cells contain a nucleus and cell walls made of chitin C) cells do not contain a nucleus and are all single-celled D) cells do not have a cell wall and may or may not contain a nucleus

Answers

B is the correct answer
B would be the correct answer because of the mention of chitin.

what effect would decreasing water temperatures have on the cod population in the georgia bank

Answers

The answer is More cod would be driven away from the Georges Bank due to the cold temperatures. This is because the colder temperature will cause the concentration of oxygen to drop in the water as solubility increases with temperature

Wegener needed to find_ evidence that the continents were once joined.

Answers

yes so he came up with the theory of continental drift

The cephalic stage of digestion
a. begins when food enters the stomach.
b. is regulated primarily by cck.
c. prepares the mouth and stomach for the arrival of food.
d. a and b are correct.
e. a, b and c are correct.

Answers

It begins before food is eaten, the answer is C.

How many high-energy phosphates are consumed in converting 2 moles of lactate to glucose?

Answers

The ATP (adenoise triphosphate) is the energy rich phosphate molecule that is utilized during the energy requiring reactions while released in the energy reactions. The ATP molecules that are released or consumed in the given conditions are as follows : 1) Converting 1 mole glucose to lactate – this pathway is the anaerobic glycolysis of glucose and this releases 2 molecules of ATP. 2) Converting 2 moles of lactate to glucose – This process of forming glucose to lactate is known as gluconeogenesis and this process requires the ATP molecules. 1 mole of glucose consumes 3 ATP molecules thus, 2 moles consume 6 ATP molecules.

 

Final answer:

In the process of converting 2 moles of lactate to glucose through glycolysis, 6 high-energy phosphates are consumed.

Explanation:

In glycolysis, the conversion of 2 moles of lactate to glucose consumes 6 high-energy phosphates.

The energy-consuming phase of glycolysis uses 2 ATP molecules to transfer 2 phosphates to the glucose molecule, resulting in the formation of two three-carbon compounds, each containing a phosphate.

In the second phase of glycolysis, an additional phosphate is added to each of the three-carbon compounds, consuming another 2 ATP molecules.

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A physician is has a patient that he believes has had foul play. What type of autopsy would the physician request?

Question 15 options:

Medical- legal autopsy


Investigation Autopsy


Medical Autopsy


Evidence Autopsy

Answers

A Medical-Legal Autopsy seeks to find the cause and manner of death. They are generally performed in cases of violent, suspicious or sudden deaths, deaths without medical assistance or during surgical procedures.

In crocodiles the sperm and egg combine inside the body of the female then the female lays the eggs and the young develop outside her body which type of reproduction takes place

Answers

The type of reproduction that takes place in crocodile is called HERMAPHRODITISM.
An hermaphrodite is a living organism which has both the male and the female reproductive organs. Such animals do not need partners to reproduce, they reproduce on their own. Crocodile is an hermaphrodite because it is able to produce both the female and the male gametes on its own.

During an imagine that during your assessment of tina you had heard diminished breath sounds in the lower left lobe (lll) posteriorly. what other assessment techniques would you have used and why?

Answers

Diminished breath sounds actually imply a reduction or lack of air movement. In this case, anterior and posteriorsymmetric chest expansion should be examined to evaluate and compare lung function. Tactile fremituspalpation, percussion, and voice sounds auscultation should also be conducted because these tests reveal the density of underlying tissue.

The other assessment technique is palpation which can be used to check her back.

Further Explanation:

During breathing, various noises are produced by the lungs and are called breath sounds. These sounds can be heard in all areas of the chest with the help of a stethoscope. This is known as auscultation.

The breath sounds heard by a stethoscope can be normal, absent or decreases, and abnormal. The decreased breathing sound could mean the accumulation of fluid or air into the lungs, decreased airflow to various parts of the lungs, or the chest wall has thickened.

To compare and evaluate the function of the lung, posterior and anterior symmetric chest expansion must be tested. palpation, tactile fremitus, voice sounds auscultation, and percussion can also be performed as these tests would examine the density of the tissue present beneath.

The physical examination which is done to determine the size or consistency of the underlying organ is called palpation. It is done by applying pressure through fingers on the surface of the body. Tactile fremitus can be done to assess the lungs for the intensity of the vibration perceived on the chest wall. The vibrations can also be heard by a stethoscope by speaking certain words which creates vocal resonance. Percussion is another method to determine the consistency and size of the organs. It also determines whether the organ consists of fluid or not.

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Answer Details:

Grade: Higher secondary

Subject: Biology

Chapter:Respiratory Assessment

Keywords:

Breathing, breath sounds, lungs, auscultation, palpation, voice sound auscultation, tactile fremitus, percussion.

which of these is a body fossil a. dinosaur nest b.shrimp burrow c. leaf imprint d. claw print

Answers

Which of these is a body fossil?

Answer: D claw print because a claw is part of a body unlike the other options.

Body remains and traces of remains Body fossils are made up of bones, teeth, and shells. The majority of dinosaur fossils are body fossil collections. Thus, option D is correct.

What is the claw print as a body fossil?

Rocks that have preserved traces of biological activity are known as trace fossils. They are only the remnants of organisms; they are not fossilized remains.

The term "ichnite" refers to preserved footprints, which are a sort of trace fossil and a window into the existence of dinosaurs. They developed similarly to how our imprints do when we walk on squishy surfaces like mud.

Trace fossils are further preserved traces of a plant or animal. Dinosaur traces left behind include footprints, skin or feather imprints, and coprolites, which are the remains of their feces.

Therefore, claw print because a claw is part of a body unlike the other options.

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All amino acids contain a central carbon atom surrounded by ________ parts.

Answers

All amino acids have four parts that attach to the central carbon. The hydrogen atom, the NH2 group (the amino group), the -COOH group (the acid), and the R group are all attached to the central carbon. The R group defines exactly which amino acid is being expressed.

We would expect a newlywed couple to have high levels of which hormone?
a. cortisol
b. oxytocin
c. serotonin
d. norepinephrine

Answers

b. Oxytocin 
aka the "Love Hormone"

What needs to happen to jeff's post-synaptic membrane to remedy his paralysis? physiologically what do we need more of, and where?

Answers

Final answer:

To alleviate Jeff's paralysis, pharmacological intervention might involve increasing the presence of calcium-impermeable AMPA receptors or using partial antagonists like memantine to prevent excitotoxicity without triggering counterproductive homeostatic plasticity.

Explanation:

To remedy Jeff's paralysis caused by synaptic dysfunction, it's essential to address the excitotoxicity and calcium influx at the post-synaptic membrane. The overactivation of calcium-permeable AMPA receptors can cause an excessive influx of calcium ions which leads to neuronal damage and dysfunction. Thus, increasing the presence of calcium-impermeable AMPA receptors, by involving the enzyme ADAR2 that edits the GluA2 RNA, can reduce excitotoxicity. Alternatively, pharmacological agents like memantine, which act as partial antagonists of NMDA receptors, could help alleviate excitotoxic effects by preventing the excessive calcium influx without triggering homeostatic plasticity mechanisms that can counteract the treatment's effects.

Furthermore, maintenance of glutamate concentrations in synaptic and extracellular spaces is crucial as deregulation can lead to excitotoxicity. Enhancing the efficiency of glutamate reuptake transporters or reducing excitatory neurotransmitter levels could mitigate the harmful overstimulation of post-synaptic glutamate receptors.

Considering the intricate mechanisms involved, multifaceted therapeutic strategies are likely required to manage such conditions effectively, targeting both the glutamatergic synapse vulnerabilities and the neuronal calcium regulation.

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To remedy Jeff's paralysis, his post-synaptic membrane needs more acetylcholine receptors to enhance synaptic transmission, facilitate muscle activation, and promote movement. Increasing the number of these receptors and ensuring efficient neurotransmitter release are key physiological changes required.

To remedy Jeff's paralysis, we need to initiate specific changes at the post-synaptic membrane of his motor neurons. Physiologically, Jeff's post-synaptic membrane requires an increase in acetylcholine receptors (AChRs) at the motor end plate. Here are the steps involved:

When an action potential reaches the motor neuron's axon terminal, it causes an influx of calcium ions (Ca²⁺).The increased Ca²⁺ concentration allows synaptic vesicles containing acetylcholine (ACh) to fuse with the presynaptic membrane and release ACh into the synaptic cleft.ACh then binds to the upregulated AChRs on the motor end plate, generating a depolarization event termed the end plate potential (EPP).The EPP initiates an action potential in the muscle fibre, leading to muscle contraction.

By increasing the number of acetylcholine receptors and ensuring efficient neurotransmitter release, we can enhance synaptic transmission at the neuromuscular junction, which is crucial for muscle activation and movement.

The state of energy balance is determined by subtracting the calories expended from the calories consumed.
a. True
b. False

Answers

True is the answer to this question hope that helps you

Dna paternity testing has become the most widely accepted method for establishing who the father of a child is when there are doubts. in one case the mother refused to supply a sample of her dna, but the man claiming to be the father had his dna and that of the baby's taken and analyzed. is it possible to establish who the father is in this method even if the mother's dna is not available to compare?

Answers

Solely by this method, it is not possible. Several other additional DNA testing must be preformed if there isn't the mother's DNA.
The mother's DNA serves to make sure that all the resulting parts from the father's DNA can be completed by the mother's DNA when matching it all with the child's DNA. For this method, the child's DNA is "cut" in specific sites by restriction enzymes. This restriction enzymes are put to "cut" also the mother's DNA and the father's DNA. It is expected that all the resulting segments from the child's DNA can be found either on the mother's side or the father's side. All segments that can be matched to the mother's DNA segments, should be matched to the father's DNA segments. That's why the mother's DNA is so important for this method.

What is the name of the structure whose primary function is to store and concentrate bile?

Answers

The function is Hepatocytes

The gallbladder is the organ responsible for storing and concentrating bile, a digestive fluid necessary for fat digestion. It releases concentrated bile into the duodenum through the common bile duct in response to fat intake.

The structure whose primary function is to store and concentrate bile is known as the gallbladder. This small sac-like organ is positioned beneath the liver and plays a crucial role in the digestive process. The bile, produced by the liver, is essential for fat digestion and is concentrated in the gallbladder by removing some of its water content. When needed, particularly after a meal containing fats, the concentrated bile is released into the duodenum of the small intestine through the common bile duct to facilitate digestion.

Moreover, the gallbladder aids in the regulation of bile salts, which are important for the emulsification of dietary fats, ensuring that they can be properly broken down and absorbed by the body. The release of bile from the gallbladder is triggered when chyme containing fatty acids enters the duodenum, signaling the need for its digestive functions.

In the Earth’s biomes, plants and animals must adjust to different amounts of sunlight and different lengths of seasons because of __________.

A.
weather
B.
climate
C.
elevation
D.
latitude

Answers

I would say D I think

Answer:

A Weather

Explanation:

Because the seasons inculde weather

cause of the change of temperature

Assume a certain molecule of dna is composed of exactly 22 percent adenine. how much cytosine would you expect to find in this molecule

Answers

The amount of purine is always equal to the amount of pyramidine in a certain DNA molecule or can be written as:

[A] + [G] = [C] + [T]

where A is adenine, G is guanine, C is cytosine and T is thymine

 

But according to Chargaff’s rule, the amount of Guanine is equal to Cytosine, so that:

[G] = [C]

 

Hence,

[A] + [C] = [C] + [T]

 

Cancel [C]:

[T] = [A]

[T] = 22%

 

So that means:

[G] = [C] = 28%

 

So there is 28% Cytosine

Which scientist disproved the idea that life comes from nonlife?

Answers

Louis Pasteur, disproved that idea

Answer:

    There were several scientists that studied this matter, but the most recognized one is Louis Pasteur.

Explanation:

     Pasteur was a French scientist that disproved the idea that life comes from nonlife by creating a very curious and smart experiment using a scientific tool called swan neck . By using this, he refuted the hyphotesis that the (ether) was on the air, he boiled the water with the swan neck connected to the frask, this way the air could enter the frask, refuting Needham on this matter mentioned above. After that, the abiogenesis wasn't a thing at the time anymore, and the next step was taken, to discover how life really happens.

what type of rock has parallel bands of dark and light mineral grains

Answers

I believe the answer would be sedimentary rocks. 
sedimentary rocks is the answer


i hope this helps and have a great day!!

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What would be the main problem with reproduction if meiosis did not take place to form sex cells?

A. The zygote would have two nuclei.
B. Fertilization would result in a zygote with half as many chromosomes as the parents.
C. Fertilization would result in a zygote with twice as many chromosomes as the parents.
D. The zygote would have no nucleus.

Answers

I believe it is C. Hope this helps
Fertilization in that case would make a tetraploid zygote. 
To maintain the diploid 2n number for the species, that zygote would then have to undergo a reduction division that evicted half the chromosomes in an organized manner. I don't know if that helps or not, i found that on a good website to be honest i couldn't find a clear answer.

What is causing the initial discoloration of the chicken?

Answers

Meat and meat products have very short shelf life. These are easily spoiled by microbial contamination. Any discoloration in meat and meat products is a sign of bacterial contamination. Thus, it is very important to inspect the uncooked meat before cooking it.
The discoloration of chicken to shades of gray or dark color or yellowish color indicates food spoilage.

Answer: The initial coloration of chicken is caused by the growth of Pseudomonas.
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