Hox genes Group of answer choices appear to function in similar ways across diverse groups of organisms. function only in fruit flies. control which amino acids get plugged into polypeptide chains. control the development of language in human

Answers

Answer 1

It appears to function in similar ways across diverse groups of organisms.

The Hox gene, a subset of the homeobox gene, is a group of related genes that specify the region of the embryo's body plan along the cranio-caudal axis of the animal. Hox proteins encode and specify "positional" properties to ensure that the right structure is formed in the right place in the body.

The hox genes are a subset of homeotic genes.The function of the hox genes is to control the development of the body plan of an individual during the embryonic stage.Thus, the basic body form of an organism is laid down with the help of these genes.These genes are present in many different species from fruit fly to mice to humans.The reason that they are present in different organisms is that there was a common ancestor that possessed the hox gene cluster and then the genes were passed on to different vertebrates. However, the slight changes that have occurred in these genes are due to duplication events.

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Related Questions

Even when they are not using an electron transport chain (ETC), fermenting bacteria need a proton motive force (PMF) for ______.

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Even when they are not using an electron transport chain (ETC), fermenting bacteria need a proton motive force (PMF) for transport processes.

The proton motive force (PMF) is an electrochemical gradient of protons that bacteria produce and sustain across their cytoplasmic membrane. Numerous crucial bacterial functions, including ATP production, flagellar motility, and transport processes, depend on this PMF. Proton motive force (PMF) is a fundamental component of all bacterial growth and survival in both replicating and non-replicating environments. Energy is conserved during respiration by producing PMF across a proton-impermeable barrier.

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Stem cells isolated from the embryo can be cultured in the laboratory. What should be provided to the cells for their growth and division?


A. Antibiotics
B. Antibodies
C. Electric shock
D. Proteins and sugars

Answers

That should be provided to the cells for their growth and division is Antibodie.

How is stem cell culture done in the laboratory?

This procedure consists of the infusion of hematopoietic stem cells from a donor. For the graft to be successful, it is essential that the infused cells proliferate and form all the blood cells in the recipient.

Stem cells multiply through the process of cell division called meiosis. Umbilical cord tissue is a rich source of young stem cells, which can give rise to a multitude of cell types.

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What happen to plant wound after 2 days

Answers

Answer:it starts healing after 2 days

Explanation:

its hard life being a plant! from pathogens and herbivores are un-favourable wether they are constantly ingured or picked they get eaten when a plant gets a wound it regrows cuz it has the hormones of both male and fe-male so they can re-grow their body parts after 2 days its starts healing

When a neuron is activated by a stimulus, its plasma membrane will change until it reaches a membrane potential of about 40 mV. What is special about this value

Answers

Answer: It is approximately the membrane potential at which the electrochemical gradient for Na+ is zero.

Explanation:

The charge in plasma membrane occurs with diffusion and electric fields.

For example, if there are two solutions, let's assume solution X and Solution Y are separated by a porous barrier (to diffuse in equal proportions).

The fundamental principle of diffusion states that solution from a high concentration diffuses to a lower concentration.

For instance, if the X solution contains 40 sodium ions and 40 chloride ions, the Y solution only has 30 sodium and 30 chloride ions. Due to the diffusion, these two solutions will mix and reach a steady-state.

The like charges repel, and opposite charges attract.

Sebastian has chronic myelogenous leukemia and is being given imatinib (Gleevec). Imatinib blocks specific enzymes and growth factor receptors that affect cancer cell proliferation and belongs to the class of drugs called ____.

Answers

Answer:

signal transduction inhibitors

Which type of human activity is having a major impact on Earth’s climate?
A. consuming processed foods in large amounts
B. creating large quantities of waste
C. burning mass quantities of fossil fuels
D. overfishing the oceans

Answers

Answer:

C. burning mass quantities of fossil fuels

Explanation:

CO2 is a byproduct of burning fossil fuels. There are three isotopes of carbon (C), 12, 13, and 14. The most prevalent carbon is C-12, followed by C-13 and C-14, which are both relatively uncommon. C-12 is preferred by plants over the heavier C-13 and C-14. Global CO2 emissions are increasing. Since fossil fuels are derived from ancient plant deposits, they are rich in C-12 and depleted in C-13 after burning. As a result, there is a greater concentration of C-12 in the CO2 produced by the combustion of fossil fuels. In addition to CO2 levels rising, the ratio of atmospheric carbon isotopes is also shifting, with an increase in the ratio of C-12 to C-13. indicating that the C-12 isotope of CO2 is present in greater amounts than the C-13 isotope in the environment. This makes sense given that fossil fuels, which are high in C-12 and low in C-13, burn when they are burned.

The use of fossil fuels wouldn't immediately cause climate change. Instead, the burning of fossil fuels releases triatomic molecules, whose chemical structure allows them to be both unexcited by UV light and highly stimulated by IR radiation, thereby contributing to the greenhouse effect. (Molecules like methane and carbon dioxide act as windows for UV light while acting as barriers for IR light.) Excited molecules can reduce their level of excitement by releasing photons, which causes them to release some of the energy that was supplied to them in the form of IR radiation.

Answer:

There is overwhelming evidence that human activities, especially burning of fuels, are leading to increased levels of carbon dioxide and other greenhouse gases in the atmosphere, which in turn amplify the natural greenhouse effect, causing the temperature of the Earth's atmosphere, ocean, and land surface to increase

the answer will c

make 2 Punnett squares using these crosses.
AA x aa and Aa x aa

Answers

Answer:

Attached is an image of the two Punnett squares. When making Punnett squares, each parent's alleles are crossed. This results in 4 possible genotypes of the children.

The human intestinal tract is colonized with bacteria that consume resources and usually prevent other harmful bacteria from causing infections. This is an example of ______ among the bacteria.

Answers

Probiotic is an example.

Probiotics are good living bacteria for us, balancing the good and bad gut microbiota, helping digest food, and helping digestive problems such as diarrhea and abdominal pain.

Some probiotic bacteria can produce bacteriocins. Bacteriocin is a small secretory antibacterial protein that inhibits a variety of other bacteria. They are diverse in molecular properties, thermal stability, resistance to enzymes, target bacteria, and antibacterial mechanisms of action.

This is an overview of the major health benefits of probiotics.

Probiotics help balance the friendly bacteria of the digestive system. ...Probiotics may help prevent and treat diarrhea. ...Probiotic supplements improve some mental illnesses. ..

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Which combination of alleles are always involved in the inheritance of a sex-linked trait?

Answers

Alleles that are carried on X and Y chromosomes.

Answer:

alleles that are carried on X and Y chromosomes

Explanation:

Edge

Carbohydrates and fats are considered high-energy foods because they _____. have a lot of electrons associated with hydrogen.

Answers

The reason why Carbohydrates and fats are considered high-energy foods is  because they have a lot of electrons associated with hydrogen.

What are carbohydrates?

The carbohydrates are a class of food that are known to be rich in energy. Carbohydrates are broken down to release energy.

The reason why Carbohydrates and fats are considered high-energy foods is  because they have a lot of electrons associated with hydrogen.

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Jason is having problems with his metabolic rate. He cannot seem to burn calories and gains weight even on a severely reduced caloric intake. What endocrine gland is probably not involved in this problem

Answers

thymus is the answer

Jason is having problems with his metabolic rate. He cannot seem to burn calories and gains weight even on a severely reduced caloric intake thymus endocrine gland is probably not involved in this problem.

Basal metabolic rate (BMR) is the number of calories burned when the body is performing its basic life support function. Also commonly referred to as resting metabolic rate (RMR), this is the calories burned by staying in bed all day long.

The endocrine gland is a gland without a conduit in the endocrine system that secretes its product hormones directly into the blood. The main glands of the endocrine system include the pineal gland, pituitary gland, pancreas, ovaries, testicles, thyroid gland, parathyroid gland, hypothalamus, and adrenal gland.

Your thymus is also part of your endocrine system. Your endocrine system produces and releases hormones that control the functioning of your body. The thymus produces and releases a variety of hormones, including Thymopoietin: Which promotes the production of T cells and directs the pituitary gland to release hormones.

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what is biology ? ky​

Answers

Answer:

It's the study of living organisms; you could remember the word bio which means life.

Explanation:

hope it helps

sry if I'm wrong

The study of living organisms

The growth of___________around axons speeds neurotransmission, enabling better communication between the frontal lobe and other brain regions.

Answers

The growth of myelin around axons speeds neurotransmission, enabling better communication between the frontal lobe and other brain regions.

A layer or sheath called myelin made up of protein and substances develop around nerve cells, including those in the brain and spinal cord.

Myelin can function as an insulator because of its low capacitance and high electrical resistance qualities. That’s why it is also called as an insulating layer.

Since axons are insulated by the myelin sheath, which makes it possible for them to carry electrical signals more quickly than they would be able to otherwise.

Thus, the speed of electrical transmission increases with an axon's degree of myelination.

These myelinated nerves can have a signal transmission speed of up to 100 m/s.

And this high speed of neurotransmission also enables better communication between the frontal lobe and other brain regions.

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Which quadrant number and
location of the pig's ears is the
only one that works in increments
of 1?
A. Bottom of the ear close to the tip
B. Top of the ear close to the tip
C. Bottom of the ear close to the jaw
D. Top of the ear close to the forehead

Answers

i think that the correct answer is c

The quadrant number and location of the pig's ears is the only one that works in increments of 1 Bottom of the ear close to the tip.

Location of pig ears:-

the backside of the ear near the end the pinnacle of the ear close to the end bottom of the ear close to the jawtop of the ear close to the brow

Ear-notching helps discover a pig's muddle and which one of the muddles its miles, giving each pig a completely unique identity number. Notches are positioned in one of five places in the pig's proper ear to show the clutter range and in certainly one of 3 places inside the left ear.

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why does a fresh wound on the skin bleed more on a hot sunny day than on a cold chilly day

Answers

Answer:

Explanation:

When your skin is cut, scraped, or , you usually start to bleed. Within minutes or even seconds, blood cells start to clump together and clot, protecting the wound and preventing further blood loss. These clots, which turn into dry wounds as they dry, are created by a type of blood cell called a platelet.

______________ epithelium appears to have multiple layers of cells with nuclei at differing heights, but all the cells are in contact with the basement membrane.

Answers

Answer:

pseudostratified columnar

Explanation:

The passage of IgG antibodies from mother to fetus illustrates: A. natural immunity. B. cell-mediated immunity. C. passive immunity. D. nonspecific immunity.

Answers

The passage of IgG antibodies from mother to fetus illustrates:

C. passive immunity.

Antibodies produced outside the body can protect a person from contracting a disease, or they can give passive immunity.Because antibodies are not regenerated as frequently as they would be in a person with a functioning immune system, passive immunity is typically transient.Immunity that is transferred from mother to kid is known as maternal passive immunity or natural passive immunity. Antibodies are transferred to the unborn child by the placenta while they are still in the womb and can offer protection against the corresponding infections in the weeks and months after delivery.An infant's passive immunity to disease is maintained after birth due to antibodies contained in breast milk, particularly in colostrum, the protein-rich milk produced in the first few days after birth. The importance of maternal passive immunity for safeguarding infants until their own immune system is mature enough to protect them.

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If the average length of a woman's ovarian cycle is 30 days, the average length of her uterine cycles is most likely ____ days.

Answers

If the average length of a woman's ovarian cycle is 30 days, the average length of her uterine cycles is most likely 28 days.

What is the ovarian cycle?

The female ovarian cycle refers to the sequence or cycle that controls the production and release of eggs as well as the the monthly secretion of the hormones estrogen and progesterone.

Hence, if the average length of a woman's ovarian cycle is 30 days, the average length of her uterine cycles is most likely 28 days.

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During the complete catabolism of a molecule of glucose by aerobic cellular respiration, oxidative phosphorylation accounts for how many times more ATP than does substrate-level phosphorylation

Answers

About 4 times more ATP is generated during oxidative phosphorylation than substrate-level phosphorylation.

Oxidative phosphorylation:

In the metabolism process known as oxidative phosphorylation, also known as electron transport-linked phosphorylation or terminal oxidation, cells employ catalysts to oxidize carbohydrates, liberating chemical energy and producing adenosine triphosphate (ATP) as a consequence.

According to some modern studies, the ATP output after aerobic respiration is only approximately 30-32 ATP molecules /molecule of glucose, rather than 36-38, because:

During oxidative phosphorylation,

the ATP: NADH+H+ and ATP: FADH2 ratios appear to be 2.5 and 1.5 instead of 3 and 2, respectively. Substrate level phosphorylation:Substrate-level phosphorylation is a metabolic activity that produces ATP or GTP by the direct transfer of a phosphoryl (PO3) group from another phosphorylated chemical to ADP or GDP.Substrate level phosphorylation happens via glycolysis and the Krebs cycle. It happens in two phases during glycolysis, and because 2 molecules are involved, it eventually creates 4 ATP from a glucose molecule.As a result, the total ATP molecules generated from substrate-level phosphorylation of a glucose molecule during aerobic respiration will be 4+2 = 6.

Therefore, it is concluded that ATP generated during oxidative phosphorylation is 30-6=24 or 32-6=26 i.e., about 4 times than substrate-level phosphorylation.

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Why are groups of small cells better than one large cell at moving material in and out?
A) they have a lower surface to volume ratio
B) they have a smaller volume
C) they have more cell structures
D) they have a greater surface to volume ratio

Answers

Groups of small cells better than one large cell at moving material in and out because they have a lower surface to volume ratio. Option D

What is cell?

A cell can be defined as the simplest, basic, structural and functional unit of life. The study of cell is known as cytology.

There are two types of living organisms based on the numbers of cells they have; these are

Unicellular organismsMulticellular organisms

Therefore, groups of small cells better than one large cell at moving material in and out because they have a lower surface to volume ratio.

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The right optic tract: A. carries information from the lateral halves of both retinae. B. carries information from the medial halves of both retinae. C. carries information from the lateral half of the retina (right eye) and the medial half of the retina (left eye).

Answers

The right optic tract carries information from the lateral half of the retina (right eye) and the medial half of the retina (left eye).

The optic tract is a continuation of the brain's optic nerve. It starts where the signals from the left and right eyes cross (or "decussate") to produce a whole visual image.The left and right optic tracts make up the optic tract, which is actually made up of two independent tracts. Information from the temporal retinal fibers in the left eye and the nasal retinal fiber in the right eye is sent by the left optic tract. The temporal retinal fibers from the right eye and the nasal retinal fibers from the left eye transmit information to the right optic tract.Homonymous hemianopsia, a disorder that results in a partial loss of sight affecting either the right or left eye, can be brought on by damage to the optic tract.

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Iron released from hemoglobin is transported through the blood by ______________ to the ______________.

Answers

Iron released from hemoglobin is transported through the blood by transferrin to the bone marrow.

Transport of Iron

The cellular iron homeostasis is controlled by the iron and heme transport proteins. They work with chaperones, ferrireductases, and ferroxidases which guide the movement of iron within and in & out of the cells. In the blood, the ion released from the hemoglobin molecule is bound to the transport protein transferrin which carries the iron into the bone marrow. Inside the bone marrow, the iron is delivered to the precursors of RBCs, the erythrocyte progenitor cells. Inside the bone marrow, the heme units in the EPC take up the iron to which oxygen will bind as they become mature RBCs. The flow of iron in the blood plasma is controlled by the protein hepcidin whose production is positively influenced by transferrin in the plasma. In the case of damaged RBCs, they are processed by the macrophages of the spleen, liver, and bone marrow which releases the iron molecule.

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What term represents the six anatomical locations of predictable movement patterns where movement dysfunctions can be detected? Spinal column Kinetic chain checkpoints Skeletal landmarks Joints of articulation

Answers

The term that represents the six anatomical locations of predictable movement patterns where movement dysfunctions can be detected is the Kinetic chain checkpoints.

What is Kinetic chain checkpoints?

Kinetic chain checkpoints are those points in the body that are used to effectively and professionally describe the movement processes of the human body.

The various checkpoints are:

the feet and ankles,

the knees,

the hip and pelvis,

the shoulders, and

the head.

These locations are used to predict movement patterns where movement dysfunctions can be detected.

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Kinetic chain checkpoints represents the six anatomical locations of predictable movement patterns and is denoted as option B

What is Kinetic chain checkpoints?

These are groups of body segments, connecting joints, etc which have a connection to the spine in the human body.

They work together to ensure body parts are easily moved and makes the detection of movement dysfunctions easier.

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If you see a diseased plant, it is most likely in the stage of its life cycle.
O death
Ogrowth
Obeginning
adult ?

Answers

Answer:

death

Explanation:

it's diseased so it's not growing nor beginning adult

Bonds between animo acids are what type of bonds?
A. Covalent
B. Peptide
C. Hydrogen
D. Ionic

Answers

The bonds between amino acids are PEPTIDE chemical bonds (Option B).

What is a peptide bond?

A peptide bond is a special type of chemical bond between adjacent amino acids in a polypeptide chain.

Peptide bonds are known to be formed by a chemical process called dehydration synthesis.

In conclusion, amino acids bind by PEPTIDE chemical bonds (Option B).

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what does a pyramid of biomass represent?
a. amount of living tissue within a tropic area
b. range of food webs found in one tropic level
c. number of total organisms within each tropic level
d. percentage of energy that's passed through each tropic level

Answers

A pyramid of biomass represents the amount of living tissue within a tropic area (Option a).

What is biomass?

Biomass refers to the amount of mass instead of energy contian in a given ecosystem/tropic level.

Biomass is mainly dependent on the number of producer organisms (e.g., plants) in the ecosystem.

In conclusion, a pyramid of biomass is the living tissue within a tropic area (Option a).

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How do vaccines work if the pathogen in them is dead?
A. The immune system holds on to the dead pathogen from the vaccine, and if you are infected again, the new pathogen recognizes the dead
form of itself and becomes inactive so that it is not killed as well.
B. It causes antibodies to be generated that take the form of the pathogen, so the next time it is encountered, the antibodies make the pathogen
think the body is friendly and not a target.
C. It causes memory cells to be generated so that next time the pathogen is encountered the immune response is very fast, killing the pathogen
before it can do any harm.
D. The vaccine alters your body chemistry so that whichever pathogen you are vaccinated against cannot even enter your body in the first place.

Answers

Answer:

B

Explanation:

Vaccination is the conferring of immunity to an individual by artificial means. A vaccine can be in the form of weakened or dead disease causing micro organisms. In the body, the dead pathogens stimulate the production of specific antibodies by the body such that next time the body gets infected by the actual pathogens, there will be no serious illness caused.  

What does happen with a human body after death?

Answers

Answer:

Once the heart stops beating, that means the blood in the body is no longer circulated, meaning that gravity starts to do its work. The blood starts to pool (liver mortis) at the bottom of wherever the body was positioned (which can help indicate if a body has been moved since they died in homicide cases etc.), and the body starts to turn that green-ish blue color, with a dark-purpley color forming at the bottom of wherever gravity takes it (for example, if the body died and remained in a position standing up, then the blood would pool at the feet, whereas if the body died and remained laying on its back, then the pooling would occur in the back area of the body). Additionally, rigor mortis (you can remember it as being rigid) occurs, which is when the body locks up, so the joints lock and are unable to move, which is why it is often hard to get rid of/pack up and throw away a body because over the span of several hours the body locks up (it eventually wears off). Lastly, we have algor mortis, which is the change in temperature of the cadaver. Since the blood is no longer circulating, the body has nothing to retain a constant temperature anymore. The body will begin to change the temperature accordingly based on the surrounding temperature (environments that are hotter than the body will heat it up and similarly to cooler environments). If the body is found before it reaches the local temperature, then the current temperature can be used to help estimate and determine the time of death (there is a formula for this, but I'll leave it up to you if you want to look into it). After a few days, the body will start to decompose, and it will inhabit insects, especially flies and such, and the stage of development of the larvae and/or fly can also help estimate and determine the time and date of death.

I hope this helps :) lmk if you need anything else

What cell has a cell wall, cell membrane, and mitochondria
1. Eukaryotic
2. Prokaryotic
3. Bacteria
4. An Animal cell

Answers

Plant cell which is Eukaryotic

Cell wall, cell membrane and mitochondria are all found in a eukaryotic cell. The correct answer is option 1.

Large and complex organisms are made up of eukaryotic cells, which have a nucleus enclosed within the nuclear membrane. Eukaryotic cells are found in fungi, plants, animals, and protozoa.

The cell wall comprises cellulose, hemicellulose, proteins and pectin.  Function of the cell wall is to maintain the shape of the cell and helps in interacting with other cell.

The cell membrane or the plasma membrane works as a check post for the material entering and exiting the cells. While the mitochondria processes the energy unit.

Therefore, a eukaryotic cell posses a cell wall, plasma membrane and mitochondria. The correct answer is option 1.

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which combinations of alleles are always involved in the inheritance of a sex-linked trait?

Answers

Answer:

The "x" and "y"

Explanation:

Answer:

alleles that are carried on X and Y chromosomes

Explanation:

Edge

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