At the conclusion of the calvin cycle, the ATP and NADPH molecules still contain the energy that was initially derived from light.
Adenosine triphosphate provides the energy that cells use and store. The nucleoside triphosphate structure of ATP is composed of the nitrogenous base ribose sugar, which also comprises an adenine base. ATP plays a crucial role in the entry and exit of macromolecules like proteins and lipids from the cell. Effective transportation mechanisms that are propelled by the energy generated during ATP hydrolysis move these particles through a concentration gradient.
As a result, the light-derived energy is still present in the ATP and NADPH molecules at the end of the calvin cycle.
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What qualifies as medical expenses for tax deductions?
The IRS permits us to write off as eligible medical expenses any unreimbursed costs for procedures, treatments, operations, and dental and eye care.
Additionally, we can write off any out-of-pocket costs associated with visiting a psychologist or a psychiatrist. Deductible expenses include the cost of hearing aids, glasses, contacts, fake teeth, and prescription drugs that are not reimbursed.
We are also allowed to deduct from our taxes the expenditures of traveling for medical treatment, such as gas, bus fares, and parking fees.
Depending on your income, there are different medical expense deduction amounts. In 2022, if taxpayers itemize their deductions using IRS Schedule A, the IRS will permit them to write off all permissible unreimbursed medical care costs that exceed 7.5% of their adjusted gross income.
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What assumption do we make about an isolated bacterial colony that formed on an agar plate?
When an isolated bacterial colony is discovered on an agar plate, there are a few assumptions that are typically made.
Firstly, it is assumed that the bacteria are a single species, which means that all of the bacteria in the colony are genetically related. This allows scientists to identify the bacteria by its unique characteristics, such as its color and size. Secondly, it is assumed that the bacteria are capable of reproducing, since it is only possible for the colony to form if the bacteria are able to divide and multiply. Lastly, it is assumed that the bacteria are not contaminated with any other microorganisms, since the bacteria need to be isolated in order to form a colony.
These assumptions allow scientists to accurately identify the bacteria and gain a better understanding of its characteristics. This knowledge can then be used to further research and study the bacteria, as well as develop treatments or vaccines if necessary. Therefore, these assumptions are essential in understanding the biology of the bacteria and its potential implications on human health.
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What makes a leaf change color?
Leaves change color due to changes in the pigments that are present in the leaf. The most common pigments in leaves are chlorophyll, carotenoids, and anthocyanins.
Chlorophyll is the pigment primarily responsible for the green color of leaves and is present in all leaves. The level of chlorophyll in a leaf decreases as the days get shorter and temperatures cool in the fall, revealing other pigments. Carotenoids are pigments that give leaves their yellow and orange colors. These pigments are always present in leaves, but become more visible as the chlorophyll breaks down in the fall. Anthocyanins are pigments that give leaves their red, purple and blue colors. These pigments are produced by the plant in response to certain environmental stressors such as drought, high sunlight, and low temperatures. Additionally to these pigments, other factors such as nutrient availability and water stress can also affect the color of leaves.
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What does the plant start with in light-independent reactions?
The plant begins with carbon dioxide and ends with glyceraldehyde-3-phosphate in the light-independent processes (G3P). Energy is obtained from the light-dependent processes in the form of ATP and NADPH.
The photochemical process of photosynthesis involves a number of light-independent biochemical events light-independent reactions that result in plant the formation of organic compounds from carbon dioxide. This metabolic pathway is propelled by the energy released from the ATP created during the light reactions. Photosystems I and II, which are both found in the thylakoid membranes of chloroplasts, are plant responsible for using light energy. The light-independent reactions ,chemical energy obtained during the light-dependent processes is used to construct carbohydrate molecules from plant carbon dioxide in light-independent reactions (the Calvin cycle).
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The sequence of one strand of DNA is ACCTGC. What is the sequence of the complimentary strand of DNA
What type of expense are food clothing and medical expenses?
Answer:
These are variable expenses.
Explanation:
These are needs. They are necessary because one can't survive without them.
What color of leaf absorbs more light?
Chlorophyll, which is the pigment primarily responsible for the green color of leaves, absorbs light most efficiently in the blue and red parts of the spectrum.
Chlorophyll absorbs light in the blue and red regions of the spectrum because these are the wavelengths of light that are most useful for photosynthesis. The chlorophyll reflects green light, which is why leaves appear green. Other pigments such as carotenoids and anthocyanins, which give the leaves yellow, orange, and red colors respectively, also reflect certain colors and absorb other colors. In general, a leaf that appears darker in color will absorb more light than a leaf that appears lighter in color, because a darker leaf has more pigments that can absorb light. However, it is important to note that a leaf's color is not the only factor that determines how much light it can absorb. The thickness of the leaf, the angle of the light, and the presence of other substances on the leaf surface can also affect how much light the leaf can absorb.
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What was indicated in the Mendel's first hypothesis?
Mendel was greatly involved in the field of genetics, and provided first hypothesis or law named as law of segregation.
Mendel's First Law, also known as the Law of Segregation, states that the alleles for a trait separate during the formation of gametes and randomly unite at fertilization. This means that when two parents with different alleles for a trait produce offspring, each offspring will receive one allele from each parent. This law helps to explain why certain traits are inherited, as well as why the ratio of certain traits can be predicted.
The Mendel made all the observation for the hypothesis or law using Pea plant, that was the best model he selected by careful observation skill that he possessed. The Law of segregation was proven by the pea plant as plant producing violet flower having heterozygous condition could give rise to white flowers in next generation, confidently explaining the process of segregation.
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What is the function of the repressor in the E. coli lac operon?
O A repressor is a type of DNA sequence which activates or inactivates the expression of the lac operon genes by acting as a protein binding site. O A repressor is a type of protein that inactivates the expression of the lac operon genes by binding to the DNA of the lac operon. O A repressor is a type of DNA sequence that is located outside the lac operon and expresses the protein that controls lactose gene expression. O A repressor is a type of DNA sequence that activates the expression of the lactose genes by acting as an RNA polymerase binding site for the lac operon.
Ded by a DNA sequence called as a repressor. A repressor is a DNA sequence that activates expression.
What is protein?Explain protein. Protein makes up the majority of the body's organs, tissues, and body parts, include muscle, bones, skin, and fur. It helps to produce enzymes, which power countless chemical reactions, and hemoglobin, which carries oxygen in the blood.
What benefits does protein offer?Protein is an essential part of the processes that give you energy and enable your blood to carry oxygen throughout your body. In addition, it encourages the creation of antibodies that fight off illnesses and infections, keeps
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or each sequence of DNA is shown. Write the complementary RNA sequence underneath the letters, thenuse the codon chart to determine the amino acid sequence:DNA → A C A T T T C A G A C C G T C
Answer:
UGU-AAA-GUC-UGG-CAG
Cys, Lys, Val, Trp, Gln
Explaination:
Apples Under Trees
That sentence will make sense in a second,
A(Adenine) goes with T(Thymine)
G(Guanine) goes with C(Cytosine)
Ex: CAT
->GTA
That's DNA's complementary DNA sequence.
For DNA converting to RNA
(Where Apples Under Trees comes in)
T(Thymine) will be replaced with U(Uracil)
Ex: CAT
->GUA
Codon chart:
For the codon chart, I like to use the circle one.
Steps:
We will be finding the sequence GUA :)
1. Find the first FOUR boxes in the middle. (Color Coded tan)
We have G first, so go on to the next section.
(as you can see the codon chart is split into four sections)
2. Find the next letters (Color coded light green) and find U because that's the letter after G.
3. Find the next letters (Color coded white) and find the amino acid the letter matchs to.
If you got VAL you did it correctly :)
Do nutrition labels provide relevant information?
Explanation:
Yes, they do they let consumers know about possible allergens and nutritional value.They can also assist those keeping to a diet.
Are men or women more at risk for cardiovascular disease?
Men have more risk for cardiovascular diseases.
Recent studies have highlighted an alarming trend – cardiovascular disease is becoming an increasingly common health problem among both men and women.
While men may have historically been seen as more at risk for heart-related issues, women are also increasingly being diagnosed with conditions such as heart attack, stroke, and coronary heart disease.
The risk factors for both genders are similar, including poor diet, lack of exercise, smoking, and heavy alcohol consumption.
It is important for both men and women to be aware of the risks associated with cardiovascular disease and to take steps to reduce their risk through lifestyle changes, such as eating a healthy diet, exercising regularly, and quitting smoking.
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How do clams oysters and snails protect themselves?
Organisms like clam, oysters and snails are all species of the phylum Mollusca who protect themselves from their enemies by hiding inside their shells.
Mollusca is the second largest phylum of the Animal kingdom that possess all invertebrate organisms. These are all aquatic organisms hat may be marine or freshwater resident. All the organisms of the phylum possess a solid shell that protects them.
Shells of the species of phylum Mollusca is a hard calcareous structure found on the external portion of the body. The main chemical component of the shell is calcium carbonate. Some animals have shell only on the upper side of the body while some have shells on both sides and are called bivalves.
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Antigen presenting cells in the human immune system work with T cells to kill invading pathogens (bacteria and viruses). Antigen presenting cells will identify the pathogen and present the antigen, which is a unique protein "name tag" of the pathogen, to the T Cell so that the T cell can find and kill the pathogen. This type of communication between the antigen presenting cell and the T cell is known as.
a. Direct contact b. Local signaling c. Long distance signaling d. Transduction signaling
This type of communication between the antigen presenting cell and the T cell is known as Transduction signaling, hence the correct option is d.
The act of a cell showing an antigen bound by major histocompatibility complex (MHC) proteins on its surface is known as antigen presentation, sometimes known as antigen presentation. Antigen presenting cell process antigens before they are presented to T cells. Antigens can be expressed in some form by almost all cell types. While cells that are infected with viruses (or cancer cells) can offer cytotoxic T cells with antigens that originate inside the cell, professional antigen-presenting cells, such as macrophages, B cells, and dendritic cells, provide helper T cells with exterior antigens. They may be found in several types of tissues. Through their T cell receptors, T cells may be able to recognise these complexes (TCRs).
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rock fragments transported in a streambed
Rock fragments transported in a streambed are Sediment loads that are eroded by water(streams).
What sediments are carried by streams?Streams are among the most powerful surface agents for eroding rock and sediment. Waterborne rock fragments, gravel, and sediment have an impact. The total amount of sediment transported is referred to as the load. The river has three types of sediment load: dissolved, suspended, and bed load.
When rock fragments carried by the swift current collide with bedrock channel walls, they knock off rock chips. Bedload particles follow the flow of water by sliding or bouncing along the bottom. The portion of sediment transport that rolls, slides, or bounces along the bottom of a waterway is referred to as bedload.
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which one of the following elements in the energy balance equation is under individual control?
ADH factors in the equation of energy balance are a person's personal control and do not count as an adverse effect of ephedra.
What connection exists between the amount of ADH and water reabsorption in the tubules?The kidneys are the target organ of ADH as it moves through the bloodstream. The renal tubules become more porous as a result. This implies that more water can exit the kidney tubule for selective reabsorption back into the circulation.
Does aldosterone make you more hypertensive?Your kidneys release (excrete) sodium through your urine as a result of aldosterone. Water retention results from an increase in salt in your bloodstream. The renin-angiotensin-aldosterone pathway is thus completed, increasing blood volume and blood pressure.
The whole query is:
Food-based energy intake.
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What is the probability of the offspring being purple and white flowers answer in percentage?
These would have phenotypes (PP and Pp) of 75% purple and 25% white (pp). The colour of the pea plant's blooms was one of the important characteristics Mendel examined.
When two heterozygous tall pea plants with purple flowers are crossed, it is possible that one of the offspring may be short with white flowers. This is similar to the monohybrid cross and depends on the individual probabilities of the traits. This means that there is a 1/4 chance that one of their progeny will be short and a 1/4 chance that one will have white flowers (in case of monohybrid cross). The genotypes of the offspring born from the union of a heterozygous purple flower (Rr) and a recessive white flower (rr) are (Rr), (Rr), (rr), and (rr). Consequently, half of the progeny have purple flowers (Rr), while half have white blooms (rr).
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Directions: Choose any river in the world. Conduct an internet search and list the following information on your river.
1. Name of river, its source (beginning of river), and outlet (where the river flows to)
2. Location of the source (state, county, country, etc.) and its watershed (flow pattern). Include states or areas the river flows through, including major cities or lakes
3. Direction the river flows, names of tributaries that join the river
4. Names of any structures that affect the river's flow (dams, levees, etc.)
5. What is the condition of the water in the river? List and describe any environmental concerns.
The river that will be explained is the Mississippi River.
Name of river: The Mississippi RiverSource: Lake Itasca, MinnesotaOutlet: Gulf of MexicoLocation of source: Itasca State Park, Clearwater County, MinnesotaDirection: Flows southTributaries: The Missouri River, the Ohio River, the Tennessee River, the Arkansas River, the Red River.What is the Mississippi River about?The Mississippi River watershed includes parts of 31 states and two Canadian provinces. It flows through states including Minnesota, Wisconsin, Iowa, Illinois, Missouri, Kentucky, Tennessee, Arkansas, Mississippi, and Louisiana. Major cities along the river include Minneapolis, St. Louis, Memphis, and New Orleans. It also flows through the Great Lakes, including Lake Superior and Lake Michigan.
The Mississippi River has been subject to water pollution from various sources, including agricultural runoff, industrial waste, and sewage. The river also suffers from high levels of nutrient pollution, which can lead to harmful algal blooms and low oxygen levels. The river also faces problems of invasive species, such as Asian carp, which have disrupted the ecosystem. The US Army Corps of Engineers has been working on the Mississippi River and Tributaries Project which is a comprehensive flood control program that aims to reduce the risk of flooding along the Mississippi River.
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What if the bunnie i wa breeding had the genotype of WW and WWLL. How many generation would I need to wait to get a hort haired black bunny?
The generation that must be waited for the offspring of the short-haired black rabbit is the second generation with a probability of 6.25% or 1/16
WW white rabbit genotype, ww black rabbit genotype, LL long hair, ll short hair. If the genotype of a WWll rabbit is crossed with a wwLL then:
Parents: WWll >< wwwLL
Gametes: Wl><wL
Filial: WwLl
100% of their offspring will be white with long hair (WwLl)
If we cross two offspring to create a second generation (both WwLl), we get the following punnett squares:
Parents: WwLl >< WwLl
Gametes: WL, Wl, wL, w >< WL, Wl, wL, wl
Second Filial:
WWLL (white with long hair)
WWL (white with long hair)
WwLL (white with long hair)
Wwll (white with short hair)
WWL (white with long hair)
WWll (white with short hair)
Wwll (white with short hair)
Wwll (white with short hair)
WwLL (white with long hair)
WwLl (white with long hair)
wwLL (black with long hair)
wwLl (black with long hair)
WwLl (white with long hair)
Wwll (white with long hair)
wwlL (black with long hair)
wwll (black with short hair)
The phenotypic ratio of the second generation is 9 (white with long hair) : 3 white with short hair): 3 (black with long hair) : 1 (black with short hair)
The complete questions:
What if the bunnies I was breeding had the genotypes of WWll and wwLL. How many generations would I need to wait to get a short-haired black bunny? Use Punnett Squares to show why.
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Recently, researchers from Stanford University have changed mouse skin cells into mouse nerve cells. This was accomplished by inserting genes that control the synthesis of certain proteins into the skin cells. This type of research is often successful in advancing knowledge regarding the functioning of human cells because:
In this examination, the compound courier would be the yeast-glucose arrangement. The yeast-glucose arrangement would have the option to change the pH of the fluid in the cup since it contains a substance that can do as such.
in the event that an end is legitimate, comparable examinations by different researchers ought to bring about a similar end. which proclamation best depicts a theory?
Homeostasis is a unique balance that is kept up within body tissues and organs. It is dynamic since it is continually acclimating to the progressions that the frameworks experience.
As the yeast benefits from sugar, it produces carbon dioxide. With no spot to go except for up, this gas gradually fills the inflatable. A very much-like cycle occurs as the bread rises. Carbon dioxide from yeast fills great many inflatable-like air pockets in the mixture.
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Ligaments ere very strong but resistant to stretch Which protein fiber probably predominates?
a. Collagen b. Elastic c. Reticular d. Adipose
Ligaments are extremely strong but not stretchable. Most likely, collagen protein fiber is predominant.
Which of the aforementioned structures resists stretching?The primary structural element of connective tissue, collagens withstand tensile or stretching stresses. There are about 40 different forms of collagens, but four of them are the most prevalent.
What distinguishes the holocrine gland from the merocrine and apocrine secretions?Products are produced and then secreted by merocrine glands. Apocrine gland cells store its fluids until they rupture and discharge their contents, whereas apocrine gland cells release secretions by clamping off the apex region of the cell. In this instance, the cell joins the secretion.
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Which of the following results best refutes the alternative hypothesis that selective permeability is a consequence of the cell wall
The results which best refutes the alternative hypothesis that selective permeability is a consequence of the cell wall is: when beetroot cells are placed in a solution with cellulase, the solution remains clear.
A cell wall are those parts of a cell that holds the cell together and it has a definite structure.
Furthermore, a cell membrane is not affected by the process of cellulose digestion, but this process hurts the cell wall structure and damages it.
As a result of this, when a beetroot cell is put in a solution that contains cellulase, the solution does not remain clear because selective permeability is a consequence of the cell wall.
The cell membrane's selective permeability is its capacity to distinguish between various types of molecules, permitting some to pass while preventing others. This selective quality is somewhat influenced by the inherent membrane diffusion rates of certain compounds.
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which of the following is the most accurate comment on the earth's carrying capacity for people?
(a) K is smaller now than it was a thousand years ago.
(b)The human population is still a long way from K.
(c)Our technology has allowed us to keep increasing K.
(d)When it comes to humans, the concept of K is irrelevant.
We can keep raising K thanks to technology. The best assessment of how many people the earth can support is the following.
Whereabouts is the Earth?Earth's location in the universe is determined by the Hercules Supercluster of galaxies. A supercluster is a group of galaxies bound together by gravity. Within this supercluster, a smaller group of galaxies called the Local Group includes us. Earth is situated in the Night Sky, the second-largest galactic in the Bike Club.
What does the actual name of Earth mean?Contrary to common opinion, Earth lacks a globally recognized name. A common misinterpretation of the planet's scientifically known is "Terra." "Earth" is the planet's common surname as it is referred to in science.
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Use this graphic to answer the question.
An environmentalist uses a bar graph, a diagram, and a map as part of a presentation to Congress about global
warming.
Based on the process outlined in the diagram, what has most likely caused the higher levels of global surface
temperature since the 1980s, as shown in the bar chart?
O decreased ocean temperatures
O increased levels of greenhouse gases
O decreased solar and mermal radiation
O increased global surface temperatures
The various greenhouse gases' varying contributions to global warming are as follows: planting trees can reduce CO2 by 60%. More carbon dioxide is removed from the atmosphere by trees than is released.
What effects of global warming have you personally noticed? How has it influenced the planet thus far?Storms, heat waves, floods, and droughts are just a few of the disasters that are getting worse as a result of rising temperatures. Warmer temperatures produce an atmosphere that can hold onto, release, and gather more water. This alters weather patterns such that wet areas get wetter and dry ones to get drier.
How are climate change and global warming-related?The heat from the sun gets trapped on Earth as a result of greenhouse gas production. Global warming and climate change result from this. The rate of global warming is presently higher than it has ever been. Weather patterns are shifting as a result of warming temperatures, which is also upsetting the natural order.
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Does a green leaf absorb or reflect blue light?
A green leaf absorbs blue light and reflects green light. Chlorophyll, the pigment primarily responsible for the green color of leaves, absorbs light most efficiently in the blue and red parts of the spectrum.
It absorbs blue light and reflects green light. The chlorophyll reflects green light, which is why leaves appear green. This is because chlorophyll absorbs light in the blue and red regions of the spectrum because these are the wavelengths of light that are most useful for photosynthesis. A leaf that appears darker in color will absorb more light than a leaf that appears lighter in color, because a darker leaf has more pigments that can absorb light. However, it is important to note that a leaf's color is not the only factor that determines how much light it can absorb. The thickness of the leaf, the angle of the light, and the presence of other substances on the leaf surface can also affect how much light the leaf can absorb.
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How might a hole between the ide of the heart affect the functioning of the cardiovacular ytem ?
The hole allows oxygen-rich blood to return to the lungs rather of leaving them to the rest of the body. Blood with and without oxygen now blend together.
The blood pressure within the arteries that supply the lungs may rise if the pulmonary valve defect is significant. To pump blood, the heart thus has to exert more effort. The hole increases that volume of blood passing through the lungs, which over time might harm the blood vessels there. Adult issues, such as excessive blood pressure with in lungs as well as heart failure, may result from damage to the blood veins in the lungs. The left side of the heart may pump too hard and the lungs may get overfilled with blood from a significant atrial septal defect. The left side of the heart ultimately enlarges and weakens if untreated. Pulmonary hypertension can also develop as a result of elevated blood tension in the arteries that supply the lungs.
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How many chromatids are there after meiosis 2?
Answer:
Try 2 sister chromatids.
Explanation:
Mesosaurus was a freshwater reptile whose fossil was found in the northwest part of South America and __________. Alfred Wegener used the placement of this fossil as scientific proof of his continental drift theory.
Mesosaurus was a freshwater reptile whose fossil was found in the northwest part of South America and the southeast part of Africa Alfred Wegener used the placement of this fossil as scientific proof of his continental drift theory .
Alfred Wegener amassed a plethora of data to back up his idea, including geological "fit" and fossil evidence. It is crucial to note that Wegener did not present the following particular fossil data to support his claim.
Wegener did not gather the fossils, but he drew attention to the concept of utilizing scientific documents saying that there were remains of species extant on several continents to support his argument.
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What can be known about Mendel's five part hypothesis it is an answer to a scientific question and is based mostly on H?
It is a response to a scientific query that is largely supported by research.
Gregor Mendel's scientific research on pea plants led him to the fundamental ideas of heredity. He came to the conclusion that genes were inherited as distinct, paired units from each parent. Mendel observed how parental genes separated and if they showed up in dominant or recessive qualities in the children.Mendel's theory of partial inheritance.The inherited phenotypes, according to his prediction, do not converge across generations. Instead, he proposed that the progeny get distinct "particles." The dominant phenotype would manifest itself if one of these particles has the upper hand.
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Is substitution a missense or nonsense?
Substitution is an example of missense mutation.
Substitution is considered as a type of mutation in which their is a replacement of one nucleotide with different nucleotide. It can also be defined as the replacement of one amino acid in a protein with totally different amino acid.
In general, missense mutation takes place when there is a fault in the DNA code and as a result that one of the DNA base pairs is changed, for example, A is swapped for C. This change in the DNA sequence due to Substitution results in change means that the DNA now encodes for a different amino acid. One kind of substitution mutation is called a point mutation, that occurs which a single nucleotide is substituted.
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