Genetically modified organisms, or GMOs, include crops which have been genetically engineered in the laboratory. Genes for desirable traits, such as the resistance to certain insects, can be inserted into the DNA of cells that divide for plant growth. Which is MOST LIKELY to be an ethical concern about GMOs? Responses Desirable traits are given to crops. Desirable traits are given to crops. Local insects may not be able to eat crops. Local insects may not be able to eat crops. Organisms with new genotypes may appear. Organisms with new genotypes may appear. Scientists can't predict how these changes affect the local ecosystem.

Answers

Answer 1

The ethical concern about GMOs is :

Desirable traits are given to crops.Organisms with new genotypes may appear.

What is meant by GMOs?

Biological entities (plants, animals, or microorganisms) that have had their genetic material (DNA) altered in a way that does not happen normally through mating and/or natural recombination are known as genetically modified organisms (GMOs).

Today's GMO crops were primarily created to aid farmers in weed management, crop loss prevention, and food preservation. The following are the top three characteristics of GMO crops: resistance to several harmful insects. Tolerance of specific weed-killing herbicides

The term "GMO" (genetically modified organism) is now frequently used by consumers and the media to refer to foods that were produced via genetic engineering.

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Related Questions

Which proportionality does Kepler’s third law describe?

T2 d
T d
T3 d2
T2 d3

Answers

The proportionality which Kepler’s third law of planetary motion describes is: D. T² ∝ d³

What is a planet?

In Science, a planet can be defined as a terminology which is used to describe a large astronomical (celestial) object that has sufficient mass to allow for self-gravity and make it assume a nearly circular shape or spherical shape.

What is Kepler's third law?

Kepler's third law of planetary motion states that the square of any planetary body's orbital period (T) is directly proportional to the cube of its orbit's semi-major axis (a).

Mathematically, Kepler's third law of planetary motion is represented or modeled by this mathematical expression:

T² = d³

Where:

T represents the orbital period.d represents the semi-major axis.

In conclusion, planet Earth has 1 astronomical unit (AU) in 1 year of time.

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Complete Question:

Which proportionality does Kepler’s third law describe?

T² ∝ d

T ∝ d

T³ ∝ d²

T² ∝ d³

3) when a piece of chromosome breaks off and reattaches at another site on the same or another chromosome, this is called

Answers

When a piece of chromosome breaks off and reattaches at another site on the same or another chromosome, this is called chromosomal translocation.

In the field of science, chromosomal translocation can be described as a process in which a region of genes that is present on one chromosome have the ability to break and jump from to another chromosome and join to the other chromosomes.

These genes that take part in the process of chromosomal translocation are referred to as the jumping genes. It is due to the phenomenon of chromosomal translocation that same regions of genes in one chromosome can be found in another chromosome as well.

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assuming resting conditions at sea level, what is the partial pressure of carbon dioxide in systemic veins

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Assuming resting conditions at sea level, the partial pressure of carbon dioxide in systemic veins is 46 mm Hg.

What is the carbon dioxide partial pressure in systemic veins?

In systemic veins, the partial pressure of carbon dioxide is 46 mm Hg. Alveoli have a low partial pressure of carbon dioxide compared to lung capillaries.

Carbon dioxide concentration is high in the veins as compared to the arteries because veins carry deoxygenated blood from body to the heart chambers. Thus, amount of oxygen is low in comparison to carbon dioxide.

Using network of arteries, veins and capillaries, the blood carries carbon dioxide to lungs and picks up oxygen.

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Genomic imprinting, dna methylation, and histone acetylation are all examples of?

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Genomic imprinting, DNA methylation, and histone acetylation are all examples of Epigenetic phenomena.

Epigenetic phenomena is the field of science which determines how behaviors tend to change with environment and how it affects our gene functions and expression. Though these changes are not irreversible in nature, yet they determine the DNA sequence indirectly. DNA methylation refers to the addition of a methyl group, to the part of the DNA molecule which inhibits expression of certain genes. Genomic imprinting is the biological condition in which only one copy of gene is expressed while other is either suppressed or hidden. For example: Silver-Russell syndrome. Histone acetylation is a form of epigenetic change in which the chromatin architecture varies and regulates gene expression.

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how many taxonomic groups do gorilla and human share

Answers

Answer:

the answer to the question is six

how to calculate alpha value in case we got mixed type of inhibition and how to relate it with non-competitive and un-competitive inhibition?

Answers

One method for doing it is to utilize nonlinear least-squares relapse to fit the whole informational index worldwide to the underneath condition to acquire best-fit values for every one of the motor constants.

For mixed-type inhibition, the convergence in the plot is given by [I] = −Ki and (v)/v= −Ki/K'i in the third quadrant, and in the extraordinary situation where Ki = K'i (noncompetitive inhibition) the crossing points happen where [I] = −Ki and (v)/v= −1. Noncompetitive inhibition is a unique sort of blended restraint, where the inhibitor predicaments both the free catalyst and the compound substrate complex with an equivalent proclivity. In such a circumstance, the response will fall, yet they will stay unaltered. Serious and non-cutthroat inhibitors can be distinguished by what they mean for a protein's action at various substrate focuses. Assuming an inhibitor is cutthroat, it will diminish response rate when there's very little substrate, but rather can be "out-contended" by bunches of the substrate.

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which cranial nerves are classified as predominantly motor? multiple select question. viii iv v x i xi iii vii xii ix ii vi

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Cranial nerves that are classified as predominantly motor are:

IV , VI , III , XII , XI.

The cranial nerves are a group of 12 paired nerves located in the back of the brain. Cranial nerves transmit electrical signals from your brain to your face, neck, and torso. Your cranial nerves assist you in tasting, smelling, hearing, and feeling sensations. They also assist you in making facial expressions, blinking your eyes, and moving your tongue.

Some have special sensory functions, while others have somatic sensory functions, autonomic functions, somatic motor functions, or a mixture of the aforementioned functions. Motor functions are controlled by the oculomotor nerve, the trochlear nerve, the mandibular branch of the trigeminal nerve (V3), the abducens nerve, the facial nerve, the glossopharyngeal nerve, the vagus nerve, the spinal accessory nerve, and the hypoglossal nerve.

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based on the information that you found on mesosaurus, how do you think this animal might have gotten distributed in this pattern?

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Mesosaurus got distributed in this pattern because of the extinction of Pangea 250 million years ago.

The genus of extinct aquatic animals known as Mesosaurus, which means middle lizard, lived in the southern hemisphere during the early Permian period. Mesosaurus fossils can be found in Africa and South America. They were separated during the 250 million-year breakup of Pangea. Strong evidence for the existence of Pangea is provided by the identical fossils found in both locations.

After early tetrapods arrived on land in the Late Devonian or later in the Paleozoic, Mesosaurus was one of the first known reptiles to return to the water. It had webbed feet, a streamlined body, and a long tail that may have supported a fin. It was about 3.3 feet long. It probably used its flexible tail and long hind legs to move through the water.

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which of these organisms convert atmospheric nitrogen gas to a form that can be utilized by plants?
a. bacteria
b. animals
c. fungi
d.protists

Answers

The organisms that convert atmospheric nitrogen gas into a form that can be utilized by plants are the bacteria that are present in Option a, the bacteria that are present either freely or in association.

What is nitrogen fixation?

The nitrogen fixation is caused by bacteria that can convert the atmospheric nitrogen into the usable form of nitrogen, and these bacteria can show mutualism by being present in the root nodules or living freely and doing nitrogen fixation.

Hence, the organisms that convert atmospheric nitrogen gas into a form that can be utilized by plants are the bacteria that are present in Option a.

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Two processes that are commonly used to seperate mixtures are

Answers

Answer:

Evaporation and Distillation

which type of environmental scientist is likely to study methods of water conservation and decontamination? a. hydrologist b. toxicologist c. oceanographer d. ecologist please select the best answer from the choices provided a b c d

Answers

Hydrologist is likely to study methods of water conservation and decontamination.

A person who studies the distribution, quality circulation, and "physical properties" of the water on Earth's surface is known as a hydrologist. They investigate the reactions that occur when water reaches the surface of the earth, such as how snow and rainwater penetrate the soil and become groundwater. They investigate how surface water and groundwater evaporate back into the atmosphere or ultimately reach the oceans, as well as how rain, snow, and other forms of precipitation affect river flows or groundwater levels.

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FILL IN THE BLANK. ________ enhances protein synthesis, decreases glucose use, and promotes the destruction of fats.

Answers

Growth hormone enhances protein synthesis, decreases glucose use, and promotes the destruction of fats.

what is Growth hormone ?

Growth hormone promotes early development and aids in the survival of tissues and organs through life. It is produced by the pituitary gland, a tiny organ at the bottom of the brain. However, the pituitary gland gradually reduces the amount of growth hormone it generates starting in middle life.

This natural slowdown has generated interest in the use of artificial human growth hormone (HGH) as a method of avoiding some of the aging-related changes, such as a decline in bone and muscle mass.

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the enzyme rubisco can catalyze two seemingly conflicting reactions. it is both a carboxylase and an oxygenase. when the enzyme first evolved, why was this probably less of a problem?

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The enzyme rubisco can catalyze two seemingly conflicting reactions, it is both a carboxylase and an oxygenase because when the enzyme first evolved there was very little oxygen in the primitive atmosphere.

What is a biological enzyme catalyst?

A biological enzyme catalyst is a protein capable of reducing the activation energy requires to carry out a chemical reaction such as in this case the rubisco enzyme which acts both as oxygenase and carboxylase.

An oxygenase is an enzyme that catalyzes the addition of molecular oxygen, while a carboxylase is an enzyme that catalyzes the addition of carbon, which was facilitated in the primitive highly rich carbon atmosphere.

Therefore, with this data, we can see that a biological enzyme catalyst such as rubisco is able to catalyze the addition of oxygen and carbon, which was likely due to the conditions of the primitive atmosphere.

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Which of the following helps in conserving and preserving the biodiversity?

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Biodiversity is all the different kinds of life you’ll find in one area—the variety of animals, plants, fungi, and even microorganisms like bacteria that make up our natural world. Each of these species and organisms work together in ecosystems, like an intricate web, to maintain balance and support life.

Some of the ways to protect biodiversity are:

1Conserve your water use: Fresh bodies of water are essential to biodiversity. Reducing the amount of water you use, by having a 5-minute shower or not running the water when washing up the dishes, can help protect vital wetlands.Plant scientists are also working to help conserve by developing crop varieties that use less water.

2Protect natural habitats: Human impact on the earth can have a devastating impact on biodiversity. Small steps like keeping to walking paths, and not stepping through flowers or crops, can help protect what is growing there.

3Support farmers: Farmers play a key role in conserving biodiversity.

With the help of biotechnology and plant science, farmers can grow more food on the same amount of land. This takes the pressure off the need to convert natural habitats into farmland.

4Reduce, reuse and recycle: Recycling reduces pollution by decreasing energy, electricity, and water consumption and the need for landfills. Not only can you recycle bottles and cans, but your local recycling center will usually allow you to recycle clothes, electrical goods and batteries.Programs around the world have collected and recycled almost 800,000 metric tons of empty pesticide containers and agricultural plastics in the last thirteen years. That is more than the weight of 100 Eiffel Towers.

5Plant local flowers, fruits and vegetables: Research the plants and vegetables that are local to your area and grow a variety. Each plant and vegetable helps to protect biodiversity and supports the wider ecosystem of your local area.

6Help the bees: Bees pollinate nearly 90% of plant species and they contribute to more than 35% of the world’s food supply, but they’re under threat from varroa mites. Plant scientists are developing cutting edge crop protection products to help farmers control the mites and protect precious bee populations.

)Educate yourself and others: Educating people about the importance of biodiversity conservation increases public awareness of the issue. As public awareness increases, people become more involved in caring about their environment.

Simple diffusion requires energy to move materials through the membrane that is why it is called passive.a. Trueb. False

Answers

False (b). Diffusion is a kind of process that does not require energy.

Microorganisms, plants, and animals all benefit from the diffusion of tiny molecules as well as macromolecules (like proteins) in aqueous solutions. Diffusion plays a significant role in the drying of liquid mixes and solutions as well as the preparation of food. For example, during evaporations, scent components in fruit juice, coffee, and tea diffuse from solutions.

Products, waste, and occasionally enzymes diffuse out during fermentation while nutrients, oxygen, and sugar diffuse to the microbes. Urea, creatinine, and extra fluid are all removed from the blood by the kidneys. Patients with dysfunctional kidneys receive renal dialysis to eliminate waste materials from their blood.

The hemodialysis procedure involves pumping the patient's blood through a dialyzer while waste diffuses to the aqueous cleaning fluid across a semipermeable membrane.

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aniridia is a dominant genetic disorder leading to congenital severe vision impairment. a child is born with aniridia. the father has normal vision. what are the possible genotypes of the child, the mother, and the father?

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A child is born with aniridia. the father has normal vision. The possible genotypes of the child, the mother, and the father are aa, AA or Aa and Aa respectively.

Aniridia is an eye condition in which the colored part of the eye (the iris) is either completely or partially absent. The pupils may be abnormal or misshapen as a result of these iris abnormalities. Visual acuity, or sharpness of vision, can be affected, as can photophobia, and increased sensitivity to light.

Aniridia is acquired in an autosomal dominant pattern, and that implies one duplicate of the adjusted quality in every cell is adequate to cause the problem. The mutation is passed down from one affected parent in approximately two-thirds of cases.

Father genotype is - aa.(normal vision)

Mother genotype is - AA or Aa (deseased vision)

child's genotype should be Aa (A comes from mother and a comes from father)

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how do living organisms create macromolecules, organelles, cells, tissues, and complex higher-order structures?

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Living organisms create macromolecules, organelles, cells, tissues, and complex higher-order structures by recycling and reusing energy from the sun.

A cell has 3 elements: the cell membrane, the nucleus, and the cytoplasm. . The nucleus is a structure inside the cell that incorporates the nucleolus and the maximum of the cellular's DNA. it's also in which maximum RNA is made.

Cells are the basic constructing blocks of all residing things. They offer shape for the body, absorb nutrients from meals, convert those vitamins into electricity, and perform specialized functions.

Cells provide shape and function for all dwelling matters, from microorganisms to people. Cells residence the organic equipment that makes the proteins, chemical substances, and indicators chargeable for the whole thing that occurs interior our bodies.

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?which animal has the highest weight-specific total rate of evaporative water loss chicken hummingbird ostrich screech owl

Answers

b) Hummingbirds have the highest weight-specific total rate of evaporative water loss.

In the field of biology, hummingbirds can be described as small birds that have the ability to fly just like the majority of other birds. In order to fly, hummingbirds need to have a weight-specific rate for the loss of water.

This weight-specific loss of water by evaporation is higher in hummingbirds because in order to fly, the weight-to-surface ratio of the hummingbirds needs to be small. Hence, a higher amount of water is lost by evaporation in hummingbirds to maintain the specific weight required for flying.

Other options, like chicken, are not correct as chickens do not need to be weight-specific as they do not fly, and hence much of their water is stored rather than being evaporated.

The question will correctly be written as:

Which animal has the highest weight-specific total rate of evaporative water loss?

a) chicken

b) hummingbird

c) ostrich

d) screech

e) owl

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how do hydrogen ions (h+) and chloride ions (cl–) get into the lumen of the stomach?

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Cl- diffuses from parietal cells into the lumen of the stomach, while H+ is actively transported from parietal cells into the lumen.

HCl is secreted by parietal cells at a concentration of about 160 mM, which is equivalent to a pH of 0.8. Large cannaliculi, deep plasma membrane invaginations that run parallel to the stomach's lumen, are where the acid is secreted.

Conductance channels transport chloride and potassium ions into the cannaliculus lumen, which is necessary for acid secretion. The proton pump moves hydrogen ions out of the cell and into the lumen in exchange for potassium; As a result, potassium is effectively recycled.

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What is the age of a fish fossil that is 0.0 carbon-14

Answers

Answer:

Up to about 50,000 years old.

Explanation:

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how many protons are translocated across the membrane by complex i for every pair of electrons that are passed from nadh to coqh2?

Answers

Each pair of electrons that Complexes I and III send across the membrane is exchanged for four protons.

Explain the mechanism of Oxidative Phosphorylation?

The majority of the useable energy released after the breakdown of fats or carbohydrates is produced by the mitochondrial process known as oxidative phosphorylation. For instance, the citric acid cycle and glycolysis's breakdown of glucose result in the production of two molecules of FADH2, ten molecules of NADH, and four molecules of ATP.

A further 32–34 ATP molecules are subsequently produced by oxidative phosphorylation using the electrons that were previously transferred from NADH and FADH2, along with a transfer of electrons from molecular oxygen. The inner mitochondrial membrane, which eventually acts as the primary source of cellular energy, is home to protein complexes that are essential for electron transport and oxidative phosphorylation.

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describe what happens in the embryonic stage of development. describe what happens in the fetal stage of development.

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The embryonic stage of gestation is the period after implantation, during which all the major organs and structures within the growing mammal are formed. Once the embryo is fully formed, it expands, grows, and continues to develop in what is known as the fetal development stage.

The initial stages of a multicellular organism's development. In sexually reproducing mammals, embryonic development begins as soon as the male sperm cell fertilizes the female egg cell. The zygote, which is made up of these two cells together, divides repeatedly to produce blastomere cells. The blastocoel, a hollow structure made of fluid that eventually fills the solid ball-shaped morula that make up the blastomeres. The object is subsequently referred to as a blastula or, in the case of animals, a blastocyst.

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explain the presence of specialized digestive organs in the animals studied in this laboratory given that they all have a coelom and a complete digestive system with a separate mouth and anus.

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The digestive tract consists of the oral cavity and its associated organs (lips, teeth, tongue, and salivary glands),

The esophagus, the ruminant forestomachs (reticulum, rumen, omasum), and the true stomach in all species, the small intestine, the liver, the exocrine pancreas, the large intestine, and the rectum and anus.

Food could only travel through the body in one direction if the mouth and anus were separate. This improved digesting efficiency. An animal might continue to feed while digesting food and eliminating waste. Different regions of the digestive tract may become specialized for certain digestive tasks.

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The symptoms of diphtheria are due to an exotoxin that blocks proteins synthesis in host cells.

a. Trueb. False

Answers

A diphtheria exotoxin prevents host cells from synthesizing proteins, which causes the symptoms of the disease. This assertion is accurate.

Diphtheria is a dangerous bacterial illness that often affects the nose and throat mucous membranes (dif-THEER-e-uh). Because the illness is widely immunized against in modern nations like the US, diphtheria is incredibly uncommon. Signs and symptoms of diphtheria often appear 2 to 5 days after an individual contracts the disease. A thick, gray membrane that covers the tonsils and throat is one sign and symptom of tonsillitis. a raspy voice, a painful throat enlarged lymph nodes and swollen glands in the neck fast breathing or difficulty breathing nasal dripping, fatigue, chills, and fever. Similarly to other bacterial skin infections, a second kind of diphtheria can damage the skin, resulting in discomfort, redness, and swelling. greyish rash covering the sores.

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bicoid mrna is expressed in a gradient in drosophila embryos. loss of bicoid function leads to embryos with two posterior ends. what if researchers in

Answers

With no anterior-posterior body axis, the infant would most likely grow into type D, according to the statement.

What does the bicoid protein do?

Bicoid protein promotes the expression of anterior gap genes such hunchback, orthodenticle, & buttonhead while suppressing the translation of downstream mRNA.

Briefing:

This embryo lacks workable bicoid mRNA and has bicoid mRNA pumped at the posterior end. Because it lacks fully functioning bicoid mRNA, the anterior end cannot develop, while the posterior end these have bicoid mRNA injected, the posterior tail won't develop, resulting in the absence of an anterior-posterior body axis. Normally, bicoid casein prevents the development of the posterior end and inhibits the establishment of the tail in.

Since there is no anterior-posterior body axis, the correct answer is D.

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the effective circulating volume is the major regulator of water balance in the body. what else does it regulate?

Answers

Apart from being the major regulator of water balance in the body the effective circulating volume regulates sodium levels in the body as well.

The portion of the ECF that is inside the vascular space and efficiently perfusing the tissues is referred to as the effective circulating volume. Effective circulation volume and ECF volume both fluctuate with total body sodium storage, and both parameters do as well. Volume expands when sodium is added, and volume shrinks when sodium is removed.

Effective circulating volume, which relates to the capillary circulation's rate of perfusion, is not a quantity that can be measured. By adjusting cardiac output, renal sodium and water excretion, and vascular resistance, effective circulation volume is kept constant. Venous return, cardiac output, and blood pressure all drop with a decrease in effective circulation volume. Special volume receptors in the cardiopulmonary circulation and kidney detect decreases in volume and pressure and increase sympathetic tone, increasing arterial and venous constriction as well as cardiac contractility and heart rate.

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mechanisms used by human cytomegalovirus (cmv) that prevent the presentation of viral antigens to cd8 t cells?

Answers

CMV, like other herpesviruses, can also evade immune detection in some cells by silencing viral gene antigen expression through establishment of latency.

In the science of immunology, an antigen (Ag) is a molecule, chemical structure, foreign particle, pollen grain, or other foreign substance that can attach to a particular antibody or T-cell receptor. The body's antigens have the power to initiate an immunological response. Antigen is the name given to a substance that causes the body to produce antibodies. Proteins, polysaccharides (chains of simple sugars), peptides (amino acid chains), lipids, and nucleic acids can all be antigens.

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genetic variation among humans is relatively small when compared to other species. where in the human genome does most of the diversity occur? in sequences that code for tRNA in the homeotic genes in the mitochondrial DNA in single nucleotide-polymorphisms
a. in squences that code for tRNA
b. in the homeotics gene
c. in the mitocondrial DNA
d. in single nucleotide polymorphisms

Answers

The difference in DNA between individuals or communities is known as genetic variation. Mutation and genetic recombination are two of the many processes that cause genetic variation. Genetic variation is mostly caused through mutations, but other processes like genetic drift also play a role.

single nucleotide polymorphisms are found in the tRNA-coding sequences of the homeotic genes in the mitochondrial DNA.

When a single nucleotide in the genome sequence is changed, a variation in DNA sequence is created that is present in at least 1% of the population.

SNPs are allegedly present between genes in the DNA. They are sometimes referred to as biological markers since they enable researchers to find genes linked to disease. Therefore, SNPs that affect a gene's function may have a more immediate impact on disease when they occur within a gene or in a regulatory region close to a gene.

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increasing concentrations of a drug produces the following flow cytometry plots of the cell cycle. what is the drug likely doing?

Answers

Drug seeking and usage that is obsessive, or difficult to control, despite negative effects, characterizes addiction as a chronic condition.

Most people choose to use drugs voluntarily at first, but continued drug use can result in brain changes that make it difficult for an addict to maintain self-control and interfere with their capacity to withstand strong desires to use drugs. Drug addiction is seen as a "relapsing" disease because of these potentially long-lasting brain changes; those in recovery from drug use disorders are more likely to relapse even after years of abstinence.

The brain adjusts as a person uses drugs by lowering the ability of cells in the reward circuit to react to it. As a result, the person experiences a lower high than they did when they initially started using the drug. This is a phenomenon known as tolerance. To try to get the same high, they can use more of the substance. These brain changes frequently result in the person's ability to enjoy formerly enjoyable activities like eating, sex, or social interactions diminishing with time.

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which action could help a biologist determine whether a particular plant population had been attacked by a bacterial pathogen in the recent past?

Answers

In tissues of plants sampled from across the population, search for increased amounts of PR protein bacterial pathogen in mRNA transcripts.

Which plant cells are examples of sink and source cells?

Sources: Green stems, full leaves, and photosynthetic tissues. Storage organs that are emptying their stockpiles - storage tissues in seeds that are germination - tap tubers or roots at the beginning of the growth session. Sinks: Growing or absorbing mineral ions from the soil utilizing energy from cell respiration.

What evolutionary benefit might a plant experience if it uses double fertilization rather than just one?

Instead of a single dose, the zygote receives two doses of genetic material. By only providing a food source for zygotes once they successfully develop, the plant is able to conserve energy.

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you have been tasked with the creation and design of a network that must support a minimum of 5000 hosts. which network accomplishes this goal? Mildred has been struggling with feelings of chronic depersonalization and derealization for several years. If she has depersonalization/derealizaton disorder, she most likelySelect one:a. has impaired memory functioning.b. is not employed.c. has experienced some abuse at an earlier age.d. has a well-developed sense of self, just feelings of not being present.c. has experienced some abuse at an earlier age. the nurse is assessing a client. what assessment finding is the clearest indicator of autonomic function? Suppose a program is supposed to do the following:Set the sign flag (SF) to 1 if the original value in al is negative, otherwise SF should be set to 0.All of the options below will correctly do this EXCEPT:not alxor al, 0and al, alor al, 0not al How do I solve this problem and if u could explain it from step by step? 2/3 (2 - 6 ) = a home care nurse counsels a client with amyotrophic lateral sclerosis (als). which information would the nurse include in their discussion? select all that apply. one, some, or all responses may be correct. a client has been newly diagnosed with primary hypertension. which medication classification represented in the client's current medication regime should the nurse question when considering the treatment for this new diagnosis? Classical physics defines the vacuum as a state of absence: a vacuum is said to exist in a region of space if there is nothing in it. In the quantum field theories that describe the physics of elementary particles, the vacuum becomes somewhat more complicated. Even in empty space, particles can appear spontaneously as a result of fluctuations of the vacuum. For example, an electron and a positron, or antielectron, can be created out of the void. Particles created in this way have only a fleeting existence; they are annihilated almost as soon as they appear, and their presence can never be detected directly. They are called virtual particles in order to distinguish them from real particles, whose lifetimes are not constrained in the same way, and which can be detected. Thus it is still possible to define the vacuum as a space that has no real particles in it. Repeat Exercise 8.9 for the following repeating sequence of lw addresses (given in hexadecimal) and cache configurations. The cache capacity is still 16 words. 74 A0 78 38C AC 84 88 8C 7C 34 38 13C 388 18C (a) direct mapped cache, b = 1 word(b) fully associative cache, b = 2 words(c) two-way set associative cache, b = 2 words(d) direct mapped cache, b = 4 words What is the importance of the rising action in a story?A. During the rising action, complications in the plot help build narrative tension.B. During the rising action, events always foreshadow the outcome of the story.C. During the rising action, the moment of greatest suspense occurs.D. During the rising action, suspense over the outcome of the story is resolved. when property managers are looking to lease residential units to households whose prior history indicates a probability of long-term occupancy, they are seeking what is referred to as: In looking at bargaining positions of business and government, when the economy is bad for a community, it usually means less bargaining leverage for business. (272)False - The market conditions made lead to desperation of the local government for the jobs and tax revenues of a potential business enterprise. sets.6. Which of the following BEST completes thestatement: "Net Income is a measure of..."[A] the overall decrease in wealth over a periodand can be calculated by subtracting grossincome from expenses.[B] the overall increase in expenses.[C] the overall increase in liabilities over a periodand can be calculated by subtracting incomefrom expenses.[D] the overall increase in wealth over a periodand can be calculated by subtracting expensesfrom gross income.[E] the overall decrease in expenses. fill in the blank. the minimum daytime temperature typically occurs ___ the time of maximum outgoing earth energy. A mixed cost has:only variable cost components, both within and outside of the relevant range.either fixed or variable cost components, but not both.both fixed and variable cost components.only fixed cost components, both within and outside of the relevant range. You throw a rock downward into water with a speed of 3mg/k, where k is the coefficient in Eq. f=k vf=kv. Assume that the relationship between fluid resistance and speed is as given in Eq. f=k vf=kv, and calculate the speed of the rock as a function of time. You want to make 100mL of a 0.1M KCl solution. How many grams of KCl are needed? Note that the compound consists of potassium and chlorine, not potassium, carbon and iodine.1). 74.5g2). 7.45g3). 0.745g4). 0.0745g The selection process is the first part of the management system that spans the lifetime of the project. This system has been described as a series of ______ that a project must pass through in order to be completed.gates 1. A phone is reduced by 30% to a price of 120. Calculate the original cost of the system.2. What is of 240?3. Write 48 as a product of its prime factors in index form.4. Factorise x -2x-35.5. Write 210,000,000 in standard form.6. Solve: 2x + 7 -1.7. Use prime factors to find the lowest common multiple of 270 and 84.8. List the first 5 terms of the sequence 8n + 2.9. Find the total perimeter of the sector shown, correct to one decimal place.6cm12410. Calculate (4.85x1025)+(1.7109), giving your answer in standard form correct to twosignificant figures. owner participation is often a key factor in the approval of a construction loan. what does owner participation refer to?