linked genes are a. are located on the same chromosome b. have no alleles c. have more alleles than usual d. are located on different chromosomes

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Answer 1

linked genes are located on the same chromosome

Linked genes would be those who reside on the same chromosome. When meiosis occurs, alleles for such genes often segregate collectively unless they could be dispersed through crossing over.

Within the same chromosome could be linked genes. X-linked genes are found on the X chromosome, while genes that are sex-linked have been found on a sex chromosome. Linkage maps that depict the positions of genes across chromosomes are created using the frequency of genome crossing-over.

Genes are referred to as linked once they were located close to one another on the same chromosome. This means that the alleles, as well as gene variants, that are already present on one chromosome would most likely be inherited together.

Therefore, the correct answer will be option (a)

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Related Questions

why is fructose toxic to liver cells, but not muscle cells, in individuals with a defect in the enzyme aldolase b?

Answers

Fructose is toxic to liver cells, but not muscle cells, in individuals with a defect in the enzyme aldolase, because muscle cells employ hexokinase to convert glucose to glucose-6P, which cannot be further metabolized, liver cells cannot.

In the second stage of the metabolism of fructose, aldolase B is in charge of converting the compound fructose-1-phosphate into glyceraldehyde and dihydroxyacetone phosphate. Aldolase B is also involved in the breakdown of the simple sugar glucose, but to a lesser extent. The lack of the enzyme aldolase B is a defining feature of the autosomal recessive condition known as inherited fructose intolerance.

Fructose-1-phosphate is broken down into glyceraldehyde and dihydroxyacetone phosphate by the crucial enzyme aldolase B. Phosphate depletion and fructose 1-phosphate buildup in the liver are symptoms of aldolase B deficiency. As a result, gluconeogenesis and glycogenolysis are suppressed, which inhibits the synthesis of proteins and causes liver failure.

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The nurse places the stethoscope on the 3rd intercostal space at the left sternal border. Which area is the nurse auscultating for heart sounds?.

Answers

The nurses auscultated for heart sounds in the area of Erb point.

The fifth point of auscultation for the heart test, known as "Erb's point," which is occasionally given to the eminent German neurologist Wilhelm Heinrich Erb (1840–1921) without any supporting documentation, is positioned in the third intercostal gap near the sternum. At the third intercostal gap and the left lower sternal border is the auscultation location for heart sounds and heart murmurs known as Erb's point.

The spinal accessory nerve in the posterior nerve triangle is located at Erb's point (also known as the great auricular nerve) at the location where it enters the trapezius muscle. At the end of expiration, the third intercostal gap on the left (Erb's point) is often the ideal place to detect the murmur of aortic regurgitation because it is quiet, high-pitched, early diastolic and decrescendo.

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Passive transport, such as osmosis and facilitated diffusion, ________
require energy. (does/does not)

Answers

Answer:

I think the answer (does not).

Explanation:

I hope this helps.

Here´s more to the answer:

Passive transport is a naturally occurring phenomenon and does not require the cell to expend energy to accomplish the movement.

hat type(s) of hydrophilic amino acids would you expect to find in the transmembrane domain of the chloride channel?

Answers

This collection characteristic may be recognized in number one sequences the use of hydrophilic scales [7,8,9]. The maximum plentiful amino acids in transmembrane areas are leucine, isoleucine, valine, phenylalanine, alanine, glycine, serine, and threonine.

Six hydrophilic amino acids have facet chains which are polar however now no longer charged. These are serine (Ser), threonine (Thr), cysteine (Cys), asparagine (Asn), glutamine (Gln), and tyrosine (Tyr). These amino acids are commonly located on the floor of proteins, as mentioned withinside the Proteins 2 module.

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How does this time scale distort Precambrian time? What other part of the time scale is distorted

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It splits it into its epochs and period. Additionally, it splits it by Era and years before the present.

What do epochs in history mean?

An epoch is the time and date that a computer uses to determine its clock and timestamp values. The Coordinated Universal Time (UTC) at the epoch, which changes from system to system, is traditionally 0 hours, 0 minutes, and 0 seconds (00:00:00).

What do neural network epochs mean?

A single epoch occurs when the neural network only processes an entire dataset ONCE, both forward and backward. We split up an epoch into several smaller batches since it would be too large to feed the machine all at once.

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you are studying a bacteria plasmid that contains 5 operons and 15 genes. how many transcriptional promoters are on this plasmid and how many start codons?

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Numerous catabolic operons have their transcription controlled by glucose. The three enzymes needed for conversion are encoded by the operon's five structural genes.

How many genes are there in an operon?

Operons have a transcription promoter at the beginning, two to twelve genes on average, and a transcription terminator at the conclusion (Zheng et al. 2002; Lawrence 2003).

Yes, there is just one promoter for operons.

An operon is a group of genes that all use the same transcriptional promoter. Every operon contains regulatory DNA sequences that act as binding sites for regulatory proteins that either promote or inhibit transcription.

The promoter is a 3 or a 5?

An area of DNA known as a promoter is where RNA polymerase starts to transcribe a gene. Promoter sequences are often found directly in the genome.

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all living organisms are defined by: please choose the correct answer from the following choices, and then select the submit answer button. answer choices the ability to consume other organisms and digest their tissues. the ability to replicate and metabolize energy. the presence of water and molecules containing carbon-hydrogen bonds. the presence of a nervous and digestive system. the ability to move and find a mate.

Answers

The ability to replicate and metabolize energy .

What is Carbon-hydrogen bonds ?

Many organic molecules have the carbon-hydrogen bond, which is a chemical link between carbon and hydrogen atoms in chemistry. Since there is just one covalent link present, up to four hydrogen atoms can share the outer valence electrons that belong to carbon. This completes both of their exterior coverings and stabilizes them.

Covalent bonds, commonly known as carbon-hydrogen bonds, are necessary for the bonding of organic components. In order to ensure stability between the two atoms, carbon and hydrogen share an equal number of electrons.

What is Metabolize energy ?

Metabolizable Energy (ME) is the energy that is still accessible for growth and reproduction as well as for sustaining metabolic processes like work (motion) and respiration after fecal and urine energy loss (thermoregulation, maintenance metabolism, HIF).

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The function of hemoglobin is to carry ________ from the lungs throughout the body.

Answers

Answer:

Oxygen

Explanation:

cells with class i major histocompatibility complex (mhc) proteins that contain a foreign antigen will be destroyed after: stimulating the membrane attack complex (mac). being bound by helper t cells. being bound by cytotoxic t cells. releasing histamine.

Answers

Cells with class I major histocompatibility complex (MHC) proteins that contain a foreign antigen will be destroyed after being bounded by cytotoxic t-cells.

What is major histocompatibility complex (MHC)?

Major Histocompatibility Complex (MHC), a collection of genes that produce proteins located on the cell surfaces that aid in the immune system's ability to identify foreign objects. The higher vertebrates include MHC proteins. The complex is also known as the human leukocyte antigen (HLA) system in humans. The purpose of MHC molecules is to bind and display pathogen-derived peptide fragments on the cell surface for recognition by the proper T lymphocytes.

What are cytotoxic t-cells?

A particular class of immune cell that is capable of eliminating specific types of cells, such as virus-infected cells, cancer cells, and alien cells. To destroy cancer cells, cytotoxic T cells can be isolated from other blood cells, cultured in a lab, and then administered to a patient.

Thus from above conclusion we can say that cells with class I major histocompatibility complex (MHC) proteins that contain a foreign antigen will be destroyed after being bounded by cytotoxic t-cells.

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How far each of the following statements is correct with explanation: Spores of fern plant are produced due to mitosis

Answers

Answer:

did u know the answer

Explanation:

define hypertonic, hypotonic and isotonic. is it possible for a solution to be both hypertonic and hypotonic? why or why not? explain what happens to an animal cell in a hypertonic solution? a plant? why is it different? what happens in a hypotonic solution? (create an illustrated representation of hypertonic, hypotonic and isotonic solutions using any plant or animal cell to help distinguish between the three types of environments.)

Answers

If surrounding solution has higher solute concentration compared to inside the cell, then it is called hypertonic solution. A hypertonic solution has a higher concentration of solutes. If surrounding solution has high solvent concentration compared to the inside of the cell, then it is called hypotonic solution. A hypotonic solution has a lower concentration of solutes than cytoplasm of cell. If both surrounding solution and solution inside the cell has same concentration of solvent and solute, then it is known as isotonic solution.

A solution can be both hypertonic and hypotonic depending on type of cell or substance kept in solution. If cell has more solutes than solution then it may swell and if it has less solutes than solution then it may shrink.

If animal or plant cell is kept in hypertonic solution that is solution with higher solute concentration than water molecules will move outside of the cell from inside of the cell ie; exosmosis will take place. Due to this reason, both animal as well as plant cell will shrink. Plant cell is said to become plasmolysed.

In hypotonic solution, animal and plant cell will swell as solution has lower solute concentration than inside of the cell present in solution. Animal cell will swell and ultimately burst ie cell will lysed but, plant cell will not burst it will swell and develop turgor pressure. Hence, plant cell becomes turgid in hypotonic solution. It is normal condition of plant cell.

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1. The enzyme invertase breaks down sucrose into its two component monosaccharides. (a) The effect of pH on the initial rate of the reaction catalyzed by invertase was investigated at 25°C. (i) Suggest why the temperature was kept at 25°C. (2)​

Answers

Rate of reaction is at it's highest when in 25c.

What is composed of cells that produce hormones and secrete them into the bloodstream?.

Answers

Endocrine glands have composed of cells that produce hormones and secrete them into the bloodstream.

Endocrine glands are also known as hormone-producing glands.  These glands are scattered in various parts of the body and have their respective roles in regulating organ systems.  Therefore, their health needs to be maintained in order to function normally.

Various Glands in Endocrine Glands

1. Pituitary Gland

The pituitary gland is a small gland located at the base of the brain.  Despite its small size, the function of this gland is very large in the endocrine system.  This gland is considered the 'leader' of all endocrine glands, as it can produce various hormones that regulate the functions of other endocrine glands.

2. Thyroid Gland

The thyroid gland produces the hormones thyroxine (T4) and triiodothyronine (T3) which are responsible for regulating the body's metabolic processes.  In addition, this hormone also plays a role in the formation of bone tissue, body temperature regulation, and the development of the brain and nervous system.

3. Parathyroid glands

This gland releases parathyroid hormone which plays a role in regulating calcium levels in the blood.  The task of this hormone is assisted by the hormone calcitonin which is produced by the thyroid gland.

4. Adrenal glands

The adrenal glands are divided into two parts, namely the cortex and the medulla.  The cortex is responsible for producing steroid hormones that regulate metabolism, the immune system, the body's response to stress, and the development and function of sexual organs.

Meanwhile, the medulla plays a role in producing the hormone epinephrine or adrenaline to increase blood pressure and heart rate.

5. Pancreatic gland

The pancreas gland produces two hormones, namely the hormone glucagon and the hormone insulin.  Glucagon functions to store and increase blood sugar levels, while insulin functions to lower blood sugar levels.

6. Reproductive glands

The male reproductive glands or testes are located in the testicles or scrotum, while the female reproductive glands, the ovaries or ovaries, are located in the pelvis.

The testes produce the hormone testosterone to produce sperm, while the ovaries produce the hormones estrogen and progesterone which play a role in supporting pregnancy and regulating the process of ovulation and menstruation.

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occasionally, a bismuth preparation is added to the treatment regimen for duodenal ulcers. what are bismuth's effects against h. pylori organisms.

Answers

H. pylori is resistant to bismuth's antimicrobial properties.

What kind of infection is H. pylori?

In addition to ulcers, H pylori bacteria can also cause persistent stomach inflammation (gastritis) or damage to the upper part of the small intestine (duodenitis). A uncommon form of stomach lymphoma or stomach cancer can also occasionally develop as a result of H pylori.

How do you feel after having H. pylori?

Only 20% of persons with the infection exhibit symptoms. A dull or scorching stomach ache, unintentional weight loss, and bloody vomiting are all symptoms. Antibiotic and proton pump inhibitor regimens are frequently used to treat ulcers brought on by H. pylori.

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which vessel is highlighted?internal carotid artery external jugular vein vertebral artery internal jugular vein

Answers

It is an vertebral artery. The brain and spine are supplied with blood through the vertebral arteries there in neck.

The term vertebral describes the location of the arteries along the vertebrae, or spine bones. There are two vertebral arteries that flow through the spinal column, one on each side. A stroke occurs when the subsequent loss of brain function is irreversible (an infarction or brain attack).

A stroke can be caused by a blood clot in the vertebral or anterior artery or by a particle of plaque (embolus) breaking off and traveling downstream, blocking a portion of both the blood supply to the brain. Blood penetrates between vertebral artery layers during a dissection, resulting in decreased blood flow.

This can result in a stroke, headache and vertigo, vision difficulties, and a variety of other neurological problems. The vertebral artery carries blood to the vertebrae of the neck, the upper spinal column, and the region surrounding the exterior of the skull. It also transports blood to two critical areas of the brain: the behind fossa and or the occipital lobes.

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Which of the following shows the correct sequence of the cell cycle "The Circle of Life"? (Starting with a new cell)

The Circle Of Life — Mindfully Connected

a
Go, G1, S-Phase, G2, Mitosis, Cytokinesis, S-Phase
b
G1, S-Phase, G2, Mitosis, Cytokinesis
c
S-Phase, G1, G2, Mitosis, Cytokinesis
d
Cytokinesis, Mitosis, G1, S-Phase, G2

Answers

The correct sequence is G1, S-Phase, G2, Mitosis, Cytokinesis .

First phase of the cell cycle is G1 phase, the cell grows physically and increases the volume of both protein and organelles. after that In S phase, the cell copies its DNA to produce two sister chromatids and replicates its nucleosomes. Finally, G2 phase involves further cell growth.

Phase that is active after G2 is mitosis. Mitosis is the process of a cell dividing into two equal daughter cells with same genetic information. This process is crucial as it helps in regeneration of cells that might be damaged or destroyed . After that cytokinesis helps to from two different homologous pair of cells .

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in which ventricular dysrhythmia do three or more pvcs occur in a row with a ventricular rate greater than 100 bpm?

Answers

The ventricles can cause ventricular tachycardia, a rapid dysrhythmia with heart rates of 100 to 250 per minute.

What is ventricular heartbeat?

Extra heartbeats known as premature ventricular spasms (PVCs) start within one of the brain's two lower pump chambers (ventricles). The normal pulse rhythm is disrupted by these extra beats, which can occasionally make the chest feel as though it is fluttering or skipping beats.

What is a normal ventricular?

The heart's left ventricle serves as its primary pumping chamber. It forces air blood up into the aorta, the main artery in your body, to supply the rest of your body. Based on the American Heart Association, a typical ejection fraction ranges from 50% to 75%. An ejection fraction that is on the edge can be from 41% and 50%.

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what do cellular respiration and photosynthesis have in common? answer unselected both use glucose. unselected both take place in animal cells. unselected both require sunlight. unselected both produce (and use) atp.

Answers

The majority of life on Earth depends on two biological processes: photosynthesis and cellular respiration. Both of these processes utilise a number of similar chemicals, including oxygen (O2), carbon dioxide (CO2), water (H2O), glucose (C6H12O6), and adenosine triphosphate, as well as other complex steps (ATP).

What three aspects of photosynthesis and respiration are similar?

The trading of gases is a part of both procedures. The cell's organelle, which was once believed to be an endosymbiotic critter, is where both processes take place.

What are the parallels and differences between photosynthesis and cellular respiration?

In the environment, photosynthesis and respiration are complementary reactions. Actually, they are the same reactions that happened in reverse.

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you are using a variety of techniques to study how the risc complex differs between sirnas and mirnas. you found that what distinguishes a risc complex containing an sirna from one containing an mirna is that

Answers

RISC carrying siRNA differs from miRNA in having different argonaute proteins, as RISC (siRNA) can have argonaute 2 whereas the RISC (miRNA) can have argonaute 1-4.

A multiprotein complex called the RNA-induced silencing complex (RISC) contains one strand of a small interfering RNA (siRNA) or micro RNA (miRNA). The siRNA or miRNA serves as a template for RISC, which recognizes complementary mRNA. When it locates a complementary strand, RNase is triggered, and the RNA is cut. The RISC complex is similar for miRNA and siRNA, except in the type of protein (argonaute) associated.

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"the most common form of human multiple birth is twins but cases of triplets,quadruplets,quintuplets,sextuplets,septuplets,and octuplets have all been recorded with all being born alive".how are they born?

Answers

Answer:

the uterus expands depending on the size or sizes of the baby or babies the babies will most likely live but the mother would be in great pain

Explanation:

Answer:

Explanation: The most common are strictly fraternal triplets, which come from a polyzygotic pregnancy of three eggs. Less common are triplets from a dizygotic pregnancy, where one zygote divides into two identical fetuses, and the other does not. Least common are identical triplets, three fetuses from one egg.

describe the new type of protein synthesis that occurs in eukaryotic cells as a result of its evolution.

Answers

The locations during a cell where protein synthesis occurs are called ribosomes. Cells create proteins through a process mentioned as protein synthesis.

Both transcription and translation take place at once. The conversion of genetic information from DNA to mRNA within the nucleus is understood as transcription. Initiation, elongation, and termination are its three stages.

What about eukaryotic cells?Every multicellular organism, like animals, plants, and humans, also as some single-celled organisms (such as protozoa), begins with a eukaryotic cell, or an organism whose cells contain membrane-bound organelles.Eukaryotes are organisms whose cells have membrane-bound organelles in addition to a nucleus.Eukaryotic creatures are available in an excellent variety, including most algae, all animals, plants, fungus, and protists.Eukaryotes are often single cells or multicellular.In contrast to prokaryotic cells, eukaryotic cells contain the next features: A membrane-bound nucleus, a central cavity encircled by membrane, and a nucleus that's housed within the nucleus.Eukaryotes are often unicellular; a standard misconception is that all eukaryotes are multicellular.Instead, some eukaryotes have a selection of membrane-bound organelles and compartments with specific activities that float in the cytoplasm.Eukaryotes are often either unicellular or multicellular, but prokaryotes are invariably unicellular creatures.As an example, the majority of protists are eukaryotes with one cell.In eukaryotic cells, the nuclear membrane encloses the nucleus.During a eukaryotic cell, the locomotory organs are flagella and cilia.The outermost layer of eukaryotic cells is known as a cell wall.The cells divide through a procedure mentioned as mitosis.

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which color in the visible spectrum will cause the most plant growth and which will cause the least

Answers

According to appearances, Green had the least amount of plant growth, while Blue had the greatest.

According to Petronus's (2016), for photosynthesis to occur, a cellular component like the pigment must be present because it gives plants their colour and traps sunlight in the process. The light spectrum, which is employed in most virtual labs for experimentation, has a tendency to have both long and short waves that contain various colours. Chlorophyll helps the photosynthesizing plant capture both blue and red light, according to Couto. This study makes the assumption that if a plant were exposed to an endless supply of sunshine while wearing a blue light filter, it would grow to its largest feasible size. The text outlines the various hues in the light spectrum that are important for plant growth.

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hat is the purpose of the paper chromatography experiment? a.to separate photosynthetic pigments b.what is the independent variable in this experiment? c.what is the dependent variable in this experiment?

Answers

The correct answer is a. To separate photosynthetic pigments. Chromatography in general refers to the movement of certain analytes through a stationary phase, almost as carried by some mobile phase.

Chromatography is used to separate particles from one another. In a paper chromatography experiment, a little amount of a sample solution is put on a strip of chromatography paper. The chromatography paper is then suspended in a solvent. As the solvent proceeds up the paper, the individual components of the sample solution disparate into bands of individual colour.

Variables:-

Independent variable: different brands of black felt-tip pen ink.

Dependent variable: distance travelled by each pigment in the ink mixture.

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When someone is having a blood test done to see if they are hiv-positive, what specifically is being looked for in the blood sample?.

Answers

When someone is having a blood test done to see if they are hiv-positive, the antibodies to the virus are specifically being looked for in the blood sample.

What are Antibodies?

This is referred to as immunoglobulin and they are protective proteins which are produced by the immune system. They normally attach to the antigens and use different mechanisms to eliminate or fight against it.

In the laboratory , blood test is done to see if they are hiv-positive and they look out for antibodies to the virus which depicts that it is present in the body system of the individual.

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when someone is having blood test done for hiv-positive. the test looks for both antibodies and antigen in the blood sample.

what are antibodies?

An antibodies is a blood protein produced in response to and counteracting a specific antigen. antibodies mixes chemically in the body  with substances which the body recognizes as alien.

what is an antigen?

An antigen is a toxic substances which induces an immune response in the body.

 In conclusion HIV antibodies are disease-fighting protein that the immune system makes when you have an HIV infection.

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Which molecule is the source of basic material used for the production of ATP in the Kreb Cycle?
A. NADH
B. Oxygen
C. Water
D. FADPH

Answers

The basic material used for the production of ATP in the Krep cycle is  Oxygen

oxygen is a an atomic number 8 chemical element that is a colorless, odorless reactive gas that is necessary for life.

What is the kreb cycle

The citric acid cycle, sometimes referred to as the Krebs Cycle, is the s Since the Krebs cycle is an aerobic process that needs oxygen to function, it starts by combining carbon and oxygen in the respiration pathway: second significant step in the aerobic

The second important phase in the aerobic oxidation of glucose inside living organisms is the Krebs Cycle, sometimes referred to as the citric acid cycle. The majority of creatures rely mostly on glucose as a fuel source; nevertheless, they must break down this glucose and store the energy in molecules like ATP and other compounds.

The Kreb's Cycle can be utilized by organisms in the presence of oxygen.

Because the NADH and [FADH2] generated by the Kreb's Cycle can be oxydized in the electron transport chain (ETC), which replenishes the supply of NAD+ and [FAD], oxygen is necessary.

However, the Kreb's Cycle, commonly known as the TCA cycle, is where most of a n organism's energy comes from. An aerobic procedure called the Kreb's Cycle has eight distinct phases

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you are observing a population of sea urchins experiencing logistic growth. what is the carrying capacity (k)?

Answers

A typical echinoderm boat is 20 to 30 feet long and can carry 2,000 to 6,000 pounds.

In logistic growth, a population's rate of per capita growth declines because it approaches the carrying capacity, a limit imposed by the environment's finite resources ( K).

What about sea urchins?You may suffer major health effects if your injury is severe or if you do not properly treat it. Echinoderm stings can result in tissue necrosis, death, paralysis, and respiratory failure. Skin cells that do not receive enough oxygen or blood perish and cause tissue necrosis. Echinoderm stings hurt right away. They often create puncture wounds on the skin, which if not treated immediately can quickly become infections. The sting site may swell and switch crimson. If the skin is penetrated (which happens frequently), the puncture site is usually bruised and appears blue-black. Echinoderm or uni because it is more generally known by its Japanese name, are often eaten in a variety of ways, including as a savoury complement to pasta dishes and as a part of a sushi feast. The buttery flavour and (pleasantly) slimy texture of uni, however, are best experienced fresh from the shell. Echinoderm has a little saltiness without being too salty. Once they are fresh, they ought to have a sweet, saltwater flavor and taste of iron and zinc. Uni features a strong mineral and seaweed flavor and ought to have a creamy texture. Older ones taste quite harsh and have a slimy texture on the tongue.

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using fluorescent microscopy, you observe the expected results, with protein secretion in normal cells, er accumulation in mutant a, and golgi apparatus accumulation in mutant b. you also express the gfp-fusion protein in double-mutant yeast cells containing mutations in both the gene underlying mutant a and the gene underlying mutant b. what is the correct location and explanation for where the gfp-fusion protein will accumulate in these a and b double-mutant yeast cells?

Answers

Using fluorescent microscopy, you observe the expected results, with protein secretion in normal cells, er accumulation in mutant.

Clathrin as well as adaptor protein complexes, typically assemble on the cytoplasmic side of membranes and make up the coats of caveolin vesicles. While assembling into a lattice-like structure resembling a basket, clathrin functions structurally by deforming the membrane and promoting vesicle budding.

Every protein starts its production in the cytoplasm. However, some are moved to other cellular locations while the majority remain there permanently. Certain are entirely produced in the cytoplasm.

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The function of hemoglobin is to carry ________ from the lungs throughout the body.

Answers

The function of hemoglobin is to carry oxygen from the lungs throughout the body.

Hemoglobin can be described as a structure, that is iron-rich and present inside the red blood cells.

The hemoglobin inside the red blood cells is the site where oxygen molecules form temporary binds so that the oxygen can be transported to the different body parts through the blood. When a bond between oxygen and hemoglobin is formed in order for transporting oxygen, then this hemoglobin is referred to as oxyhemoglobin.

Without hemoglobin, the red blood cells will be unable to transport oxygen to various tissues inside the body of an individual.

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Figure 2 shows some structures involved in the coordination of a reflex action.

Describe how the structures shown in Figure 2 help to coordinate a reflex action.

Answers

Answer:

You got this!

Determine which equation is false, based on the solution set S:{4}.

3t = 12

3m + 7 = 14

4(4c + 1) = 68

9 = 5p − 11

Explanation:

which branch of taxonomy deals with the sorting of life-forms into bins (categories) based on genetic relatedness and traits of the organisms?

Answers

The taxonomy branch of classification works with grouping life forms into categories based on genetic similarity and characteristics of the organisms.

What are an example and an organism?

A living creature that has an organized structure, is capable of responding to stimuli, can reproduce, develop, adapt, and preserve homeostasis is referred to as an organism. Therefore, every animal, plant, fungus, protist, bacterium, or archaeon found on Earth would be considered an organism.

What kind of organism is the best example?

Organisms are unique forms of life. For instance, every tree in a forest is a living thing.  The terms "microorganisms" are often used to refer to single-celled prokaryotes and eukaryotes .  

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if mexico has a weak peso relative to the dollar, what is the impact for u.s. companies importing inputs from mexico that are priced in pesos? multiple choice the u.s. company will lose money. The green basilisk enclosure will include a rectangular pond in one corner. The width of thepond will be 3 inches less than the width, w, of the enclosure.W-3The area of the water's surface is given by this expression: w - w - 6.QuestionQuestion 1Factor the area expression, w - w - 6.Replace the values of A and B to write the expression in factored form.(w - A) (w + B) A cap 6.000 cm in diameter plugs an opening in a spherical container 1.000 m in diameter at atmospheric pressure. The container is submerged to a depth of 10.00 ft in water. Assume the plug is planar and the pressure over the container is equalized. The force needed to remove the plug is closest to? If m/AGD = 72, then what is m/DGB?17737. CAEDHa105G/13/2FB4Please provide an explanation. a nurse is caring for a client with sepsis who was recently transferred to the intensive care unit following the development of disseminated intravascular coagulation (dic). the nurse understands that dic is most likely secondary to the infection causing the release of cytokines, which can cause: ce4. Six foot tall pine trees were planted during theschool's observation of Earth Awareness Week in1990. The trees have grown at an average rate of3/4 foot per year. How tall would they be in 2010? the hyphae of arbuscular mycorrhizal fungi (amf) form bushy structures after making contact with the plasma membrane of a root cell. what is the function of these structures? Write log A as a natural logarithm. Choose the list that shows the temperatures in order from warmest to coldest.A) 11F, 12F, -11F, -12FB) 12F, 11F, -12F, -11FC) 12F, 11F, -11F, -12FD) 12F, -12F, 11F, -11F prior to recording adjusting entries, the office supplies account had a $359 debit balance. a physical count of the supplies showed $105 of unused supplies available. the required adjusting entry is: PLSSS HELP IF YOU TURLY KNOW THISS PLSS HELP!!!!!!!Tell what you know about what comparative anatomy is and how this study provides evidence for change over time. HELP!I will name you the BRAINLIEST!The thing is in the photo.I do not understand it because it looks like it has "!" Please help. Colin buys a car for 45500. It depreciates at a rate of 6% per year. How much will it be worth in 3 years? Give your answer to the nearest penny where appropriate. a rectangle has length 3 cm greater than its width. If it has an area of 28cm 2, find the dimensions of the rectangle do you think it is possible for government to outlaw everything that businesses could do wrong? if so, why does government not do that? if not, how can regulation stay ahead of rogue businesses that push the limits of the system until it breaks? An employment situation that pays bills but is largely unfulfilling is for a binomial experiment, how many outcomes are possible for each trial? what are the possible outcomes? one; success three; success, failure, or neither two; success or failure one; failure (X^2 + 9) / (x-3)Synthetic Division Pls show work you are creating the project's cost baseline. ultimately, what document will be the outcome of this process?