What type of mutation results from the addition of extra basesa. Duplicationb. Inversionc. Insertiond. Translocatione. Substitutionf. Deletion

Answers

Answer 1

The addition of one or more nucleotide base pairs into a DNA sequence happens due to polymerase slipping and it's called insertion. Therefore, the correct answer is c. Insertion


Related Questions

A bacterium converts light energy into chemical energy.

A. cellular respiration
B. glycolysis
C. photosynthesis

Answers

According to the research, the correct answer is C. A bacterium converts light energy into chemical energy represents the photosynthesis process.

What is photosynthesis?

It is the process by which light energy is used for the synthesis of carbohydrates from CO2 and a reducing molecule.

In this sense, in nature there is a great diversity of photosynthetic bacterium, which obtain their energy from light to grow through the manufacture of sugars through chemical reactions.

Therefore, we can conclude that some bacteria are photosynthetic microorganisms capable of converts light energy to form sugars for energy.

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pollen tubes multiple choice transport pollen to the stigma. allow sperm to fertilize the egg. are present during spermatogenesis. package sperm into pollen granules. facilitate the growth of pollen.

Answers

Pollen tubes allow sperm to fertilize the egg.

A pollen tube is generated from the pollen that extends down its style into the ovule during pollination process of higher plants. Pollen nuclei move down the pollen tube and fertilize the ovule after the pollen germinates upon that stigmatic surface.

Sperm- An ovum (egg cell), which would be produced by the a biologically female body, is the target of a sperm cell, which is intended to be discharged during sexual activity. Once they are joined, the sperm will enter the egg and fertilize it to produce new genetic material. A pollen grain is a microscopic male gametophyte or male plant (gamete-forming plant). 

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there are no real boundaries for natural systems. explain how this applies to systems in the human body. explain why scientists establish boundaries for natural systems.

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Stabilizing boundaries is an idea to relate that humans can keep the resilience and stability of Ecosystem in mind. If these boundaries are crossed,  That would effect environment and lead to drastic or inevitable planetary changes.

The planetary boundaries have a negative effect on other planetary boundary because of Earth environment. Example include, if their is a change in climatic condition ecosystem may be badly effected and may cause difficulty in human interference.

It is considered that smaller the system, the sharper is its boundary. Large systems may have multiple boundaries as they interface with multiple systems.

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Analyze the graph showing the rate of photosynthesis activity as a function of carbon dioxide level. Select as many of the choices below
that accurately describe the shape of the graph as it relates to photosynthesis.
Rate of photosynthesis
Carbon dioxide
concentration
Carbon dioxide is not needed for the Calvin cycle, so the graph levels off after a certain point
The rate of photosynthesis increases as carbon dioxide levels increase.

Answers

In the photosynthesis graph, the rate of photosynthesis increases as carbon dioxide levels rise.

What is photosynthesis ?Photosynthesis is a process that plants and other organisms use to convert light energy into chemical energy that can then be released to fuel the organism's activities via cellular respiration. Photosynthesis is the process by which plants convert sunlight, water, and carbon dioxide into oxygen and sugar energy. Photosynthesis is the conversion of light energy by phototrophs into chemical energy, which is then used to power cellular activities. Sugars, which are formed from water and carbon dioxide, are used to store chemical energy. Photosynthesis occurs within the chloroplasts found in the mesophyll of the leaves.

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brachydactyly is a shortening of fingers and toes due to unusually short bones. there are many different types of brachydactyly and one type (type d) is due to an autosomal dominant allele, but the homozygous dominant genotype results in embryonic lethality. what is the percent chance ( %) that two individuals with type d brachydactyly will have a child who does not have brachydactyly? enter your answer as a whole number %.

Answers

There will be 1/3% chance that two individuals with type d brachydactyly will have a child who does not have brachydactyly

Brachydactyly type D is a clinically recognized disorder marked by a thumb that is relatively small and spherical with an accompanying broader nail bed. It is also known as short thumb or stub thumb and incorrectly referred to as clubbed thumb.

Because it is a dominant genetic trait, a child can inherit the disorder from either parent. If you have brachydactyly, there is a good chance that your family members do too. Many brachydactyly cases take place in the absence of any additional medical issues.

Therefore, there will be 1/3% chance that two individuals with type d brachydactyly will have a child who does not have brachydactyly.

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Explain the function of organelles present in a prokaryotic cell.

Answers

Explanation:

i think you will satisfy with it

Labeling the human Skeleton system and labeling nervous system

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Completed! Finnnnnnnnn

Which of these is a statement of opinion?
(A.) While exact figures are unknown, experts estimate that approximately 200 deaths have occurred on Mount Everest since 1920s.
(B.) Tens of thousands of amateur climbers flock to Mount Everest each year with the ambition to climb to the summit.
(C.)Efforts to cleanse Mount Everest of a century's worth of human waste will only be effective if new methods of waste disposal are put into place.
(D.)The Everest Cleaning Campaign is an organization that includes representatives from both the Nepalese government and the Everest Summiteers Association.​

Answers

Answer: B

Explanation:

It states amateur climbers ( srry if I got it wrong )

you do a mutant hunt to screen for histidine mutants in a fungus population and isolate 15 mutants. you find that the histidine phenotype is recessive in mutants 1-14, but dominant in mutant 15. you then organize the mutants based on complementation groups (groups that will complement each other) a) describe how you would determine the complementation groups for each mutant. b) explain what it means if two mutants are in the same complementation group as opposed to in different groups

Answers

A complementation group is made up of mutants and meaning of same complementation group can be described by an experiment of biosynthetic pathway of histidine.

The complementation test is used to determine whether the mutations are in different genes or the same gene.

a) The biosynthetic pathway of histidine is the subject of our experiment.

Histidine biosynthesis is a series of steps mediated by various enzymes whose codes are encoded by various genes. The next step in the pathway is determined by the product of one gene.

Therefore, mutants with a gene X mutation will be unable to synthesize histidine. Histidine is necessary for the growth of those mutants.

+ refers to prototrophs that can grow in minimal media; - refers to auxotroph that need histidine to grow (MM). When mutant A1 mated with itself, the resulting diploid remains auxotrophic due to its homozygous status for the defective allele.

The prototrophy was restored when mutant A1 and mutant A2 were mated, complementing each other.

The same holds true for the other mutants.

This allows us to determine which his-phenotype is recessive in mutants 1 through 14.

b) If a mutant has a mutation in gene X that codes for an enzyme A and another mutant has a mutation in gene Y that codes for an enzyme B. Since both genes are necessary for the histidine biosynthesis pathway, neither mutant can make histidine on its own. However, when mutations are combined, a mutant with a normal copy of gene X on one chromosome will produce ENZYME A, while a mutant with a mutant copy of ENZYME 2 They are grouped together as the same complementation.

c) Mutants that do not complement one another will also be placed in the same group (group 1): A1, A3, A5 group 2, A2, A4, A6 group 3, A7, A8 group 4, A9, and A10.

This makes a total of four complementation groups.

You do a second mutant hunt to screen for histidine mutants and isolate 15 mutants. You find that the his- phenotype is recessive in mutants 1-14, but dominant in mutant 15. You then organize the mutants based on complementation groups

a) Describe the experiment that you performed and the results that you obtained which allowed you to determine that the his-phenotype is recessive in mutants 1-14, but dominant in mutant 15

b) Describe how you would determine complementation groups for each of your mutants and explain what it means if two mutant are in the same complementation group as opposed to in different complementation groups

c) The following is the result of a complementation assay. Here (-) represent no growth on minimal media and (+) represent growth on minimal media. Based on the information provided, arrange the mutants into complementation groups. A1. A2 A3 A4 A5 A7 A8 A9 A10.

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a mutant e. coli cell expresses z, y, and a genes at the same levels in the presence and absence of lactose. these levels correspond to those observed in wild-type e. coli cells in the presence of lactose. which region of the dna could contain the mutation?

Answers

The i gene region of the dna could contain the mutation. The i gene codes for the repressor of the lac operon.

The repressor of the lac operon is encoded by the I gene. The hydrolysis of the lactose disaccharide into its monomeric components, galactose and glucose, is predominantly carried out by the enzyme -galactosidase, which is encoded by the Z gene.

Most repressor binding site mutation result in decreased repressor affinity and thus reduced binding. Thus, these changes enable constitutive expression, which allows the lac operon to continue to be transcribed (and subsequently expressed) even in the absence of an inducer.

Therefore, the i gene region of the dna could contain the mutation. The i gene codes for the repressor of the lac operon.

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apply what you know about cooling rates to explain differences in crystal sizes

Answers

The rate of cooling is inversely proportional to the crystal size. The faster the cooling rate, the smaller is the crystal size and the slower the cooling rate, the larger is the crystal.

Rate of cooling can be defined as the elimination or removal of the high temperature from any object. This removal and be slow and gradual, therefore slow rate of cooling; or it cab quick and instant, therefore, fast rate of cooling.

Crystals are the solid components whose molecules are arranges in a regular fashion, giving it an ideal 3 dimensional pattern. They are symmetrical in nature. The examples of crystals are sugars, salt, etc.

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The diagram below shows many of the processes involved in the carbon cycle. Which of the processes shown releases carbon into the atmosphere?

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The process which release carbon dioxide to the atmosphere are animal respiration, combustion of fossil fuels, volcanic activity, plant respiration. natural combustion.

What is volcanic activity?

Gas emissions, non-explosive lava emissions, and extremely intense explosive bursts that may persist for several hours are all examples of volcanic activity. Volcano shapes and sizes are influenced by the types of eruptions in terms of relative quantities, types, and lava flow patterns.

An eruption of lava may include

an eruptive pulse, which is essentially an explosion with an eruption plume as well as lave surges without an explosion. From a few seconds to minutes, a pulse can occur.

a prolonged eruptive phase made composed of multiple eruptive pulses that may alternate between explosions and lava surges and continue anywhere from a few hours to days;

a single eruption or eruptive occurrence that lasts several days, months, or years and is made up of different phases (Fisher and Schmincke, 1984). For nine years, Paricutin, Mexico, was erupting. Over 2000 years have passed since the last eruption of Stromboli, Italy.

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which medical imaging technique do you find most interesting? why?​

Answers

Answer:

Patrick De Potter, in Clinical Ophthalmic Oncology, 2007

Content

Information on the content of the lesion (cystic or solid; homogeneous or heterogeneous) can be obtained by both CT and MR imaging techniques. Both techniques also detect the presence of fluid–fluid or fluid–air levels. When lesion density is higher than that of the vitreous, CT images identify the lesion as solid. As wide range of tissue densities on CT scans or signal intensities on MR images relate to the internal architecture and the presence of proteinaceous or blood products, it is not always possible to differentiate a solid from a cystic orbital lesion. MRI images identify tissue compounds such as melanin, methemoglobin, deoxyhemoglobin, ferritin, and proteinaceous material. Punctate or conglomerate increased densities on CT scans or foci of signal void on MRI may be seen in trauma, vascular tumors, optic nerve sheath tumors (meningioma), epithelial lacrimal gland tumors, and malignant osseous tumors (osteosarcoma). In general, MR images provide more information about the content of the lesion and than do CT images. However, CT is best suited for the detection of calcification.

I have to say and answer this in a voice message HELP

Answers

aerobic respiration takes place in presence of oxygen, while anaerobic respiration takes place in absence of oxygen.

Answer:

Aerobic Respiration — Takes place in the presence of oxygen. Anaerobic Respiration –Takes place in the absence of oxygen.

The images show two different types of Galapagos tortoises that scientists believe descended from the same species. The first type (left) are found on islands that have high vegetation and few grasses. The second type (right) are found on an island that has large amounts of grasses and low-lying shrubs. What explains the type of turtle found on the islands with high vegetation?

Answers

The correct explanation for the type of turtle found on Galapagos islands having high vegetation is that (C) the turtles having genes encoding for long necks were able to survive better till they attained reproductive age.

The two types of turtle which can be found on Galapagos islands is largely determined by their feeding habits. The distinct shape of necks which can be observed in these two types of turtle mainly depends upon the type of adaptation that each species has acquired in response to its surrounding environment.

The turtles found on the islands with high vegetation possessed longer necks as compared to the other type. Since the second type of turtle were found in a region with low-lying vegetation, the need to raise the head in order to feed was eliminated in these type of turtle.

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When considering different hypotheses, usually the
_______ one which can account for the
________ is the correct one.

Answers

Answer:
Simplistic, information

Answer:

simplest, information

pLS help me it's due tomorrow!​

Answers

Hemostasis is your body’s normal reaction to an injury that causes bleeding.

What is hemostasis?Your body's natural response to an injury that results in bleeding is hemostasis. This response stops the bleeding, allowing your body to begin healing the wound. You must have this talent to survive, especially if you have severe wounds. However, the mechanisms that regulate hemostasis can occasionally break down, leading to potentially serious or even dangerous issues with bleeding or clotting.Primary hemostasis and secondary hemostasis are the two components of hemostasis. Unstable hemostatic platelet plug development results from primary hemostasis employing vascular endothelial cells and platelets. In secondary hemostasis, activation of the coagulation cascade leads to the creation of a stable fibrin clot. Hemostasis generally results in the injury site's bleeding ceasing. To prevent blood clots from forming at the site of an injury, natural anticoagulants are required. After the healing process, the blood clot must be removed in order to restore blood flow. One of the key elements needed to remove a clot is the fibrinolysis system. To guarantee an efficient response to vascular injury that is restricted to the injured spot, procoagulant and anticoagulant components interacted intricately.

Therefore, your body's natural response to an injury that results in bleeding is hemostasis.

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in the light dependent reactions, when light strikes the pigments and excided electrons are passed to p700 or p680 chlorophyll molecules what is the immediate result? excited electrons are passed to electron acceptors electrons are fused to form atp glucose is produced carbon fixation occurs

Answers

In light-dependent reactions, when light strikes the pigments and excited electrons are passed to p700 or p680 chlorophyll molecules, chlorophyll absorbs energy from sunlight and then converts it into chemical energy with the use of water.

Within the light-dependent responses, which take put in the thylakoid film, chlorophyll absorbs energy from daylight and after that changes over it into chemical vitality with the utilization of water.

The light-dependent responses discharge oxygen as a byproduct as water is broken and separated.

Each photosystem is adjusted by the light-harvesting complex, which passes vitality from daylight to the response center. It comprises numerous radio wire proteins that contain a blend of 300–400 chlorophyll a and b particles as well as other colors like carotenoids.

The photon causes an electron within the chlorophyll to end up “excited.” The vitality given to the electron permits it to break free from a molecule of the chlorophyll atom.

Chlorophyll is in this manner said to “donate” an electron. The retention of a single photon or particular amount or “packet” of light by any of the chlorophylls pushes that particle into an energized state.

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an individual who is heterozygous for an autosomal dominant condition has a child with an individual who does not have the autosomal dominant condition. what is the percent chance that their child will have the disease? (enter a whole number, not a decimal or fraction.)

Answers

The percentage of their child having the disease will be 50%.

An autosomal dominant condition means that the disease will still occur in the individual if he is heterozygous for the trait. The punnet square between a heterozygous autosomal dominant parent and  autosomal recessive parent will be made to check for the chances in their offspring to carry that condition:

          a         a      

A       Aa         Aa

a         aa        aa

The alleles for the heterozygous autosomal dominant parent are Aa and those for the autosomal recessive parent of the condition are aa.

The results show that there are 50% chance that the children will be heterozygous autosomal dominant for the trait.

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In roses assume that red or yellow flower color is controlled by a single gene with two alleles. Crossing roses with yellow flowers with each other yields only offspring that produce yellow flowers, but when you cross roses with red flowers with each other you sometimes get offspring that produce yellow flowers. If you take a rose plant that is heterozygous for the flower color gene and cross it with another rose plant with red flowers that has had yellow-flowered offspring in the past, what are the predicted fractions for the possible phenotypes of the offspring?.

Answers

The predicted fractions for the possible phenotypes of the offspring are 3/4 red and 1/4 yellow.

The genotypes of the offspring of this hybrid can be used to predict the proportions of phenotypes. Offspring with either the PP or Pp gene will have the red-flower phenotype because P is dominant to p.

The yellow-flower phenotype can only be inherited through the pp genotype. As a result, with this cross, you would anticipate that three of the four (75%) progeny will have red flowers and one of the four (25%) would have yellow flowers. Mendel obtained the same percentages in his initial experiment.

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do all human cells obtain glucose in the same way 

Answers

Answer:

Animal cells (including humans ofcourse), heterotrophs, derive their energy from coupled oxidation-reduction reactions. Glucose is a primary fuel for heterotrophs. Energy derived from glucose is stored in the form of high-energy phosphate bonds in ATP, or other nucleotide triphosphates, and as energy-rich hydrogen atoms associated with the co-enzymes NADP and NAD .

Glucose is unable to diffuse across the cell membrane without the assistance of transporter proteins. At least 13 hexose transporter proteins with different functions have been identified. Some hexose transporters allow glucose to flow passively from high to low concentration without requiring the expenditure of cell energy. Those that move glucose against its concentration gradient consume energy, generally in the form of ATP.

D-Glucose is the natural form used by animal cells.

So yes it is present inside human cells .

The diploid number of chromosomes for human skin cells is 46. If the cells undergo mitosis, what will be the diploid number of chromosomes in the new skin cells?.

Answers

Answer:

23 perhaps

Explanation:

not too sure..

Answer:

46

Explanation:

they stay  the same

you would like to produce a strain of wheat that has alleles for high gluten content by artificially selecting for high gluten in an existing population. from which population should you sample to maximize the likelihood that your new strain has alleles for high gluten?

Answers

(C) "Population that has variable gluten levels (high and low) regardless of soil quality" is where you should sample to maximize the likelihood that your new strain has alleles for high gluten.

The degree to which genetic variations among persons may adequately explain the variations in their attributes is known as heritability. Characteristics like height, eye color, and IQ are examples of traits, as are illnesses like schizophrenia and autism spectrum disorder.

Heritability is to blame for it. Heritability is a measurement of the extent to which genetic variations contribute to the phenotypic variance of a characteristic in the progeny:

It is measured from 0 to 1

H2 = Vg/Vp

Vg = Genetic variation

Vp = Vg + Ve

Ve = Environmental variation

So if the environmental variation is low, Heritability will be high.

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Question correction:

You would like to produce a strain of wheat that has alleles for high gluten content by artificially selecting for high gluten in an existing population. From which population should you sample to maximize the likelihood that your new strain has alleles for high gluten?

A. Population with high gluten when grown with fertilizer, but low gluten when grown in normal soil.

B. Population that always has average gluten levels regardless of soil quality

C. Population that has variable gluten levels (high and low) regardless of soil quality

D. Population with low gluten levels regardless of soil quality.

How did DDT nearly drive the peregrine Falcon to extinction in the 1950s and 60’s?

Answers

It was frequently employed in the 1950s and 1960s to get rid of insects that ate crops.

Briefing:

However, DDT was essentially outlawed in the United States in 1972 after researchers found that birds like the peregrine falcon and bald eagle were eating the pesticide and were unable to hatch offspring due to eggshell weakening.

Is peregrine falcon the fastest animal?

The peregrine falcon, the fastest bird and fastest animal in the world, is best renowned for its diving speed when flying, which may reach more than 300 km/h (186 mph). The underparts are white to yellowish white, with black bands on the bluish gray upper parts of the bird.

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What is the name of the enzyme that some viruses use to turn their RNA into DNA?

Answers

Answer:

The answer is C, Reverse transcriptase

Explanation:

It is an enzyme encoded from the genetic material of retroviruses that catalyzes the transcription of retrovirus RNA (ribonucleic acid) into DNA (deoxyribonucleic acid).

The name of the enzyme that viruses use to turn their RNA into DNA is c) Reverse Transcriptase

The DNA polymerase enzyme reverse transcriptase (RT), also referred to as RNA-dependent DNA polymerase, converts single-stranded RNA into DNA. Once the RNA has been reverse-transcribed in the first step into a single-strand DNA, this enzyme can create a double helix DNA.

Reverse transcriptases are utilized by eukaryotic cells to lengthen the telomeres at the ends of their linear chromosomes, by retrotransposon mobile genetic elements to multiply inside the host genome, and by viruses like HIV, Corona Virus, and hepatitis B to duplicate their genomes.

So, viruses use Reverse Transcriptase to turn their RNA into DNA.

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If an oak tree has 6 chromosomes in its reproductive cells, then it means that it has 12 chromosomes in its ________cells.

Answers

If an oak tree has 6 chromosomes in its reproductive cells, then it means that it has 12 chromosomes in its somatic cells. This is like this because reproductive cells are generated by meiosis, which is a reductional cell division, producing four cells with half of the genetic material of the original cell and different from each other.

the free energy released by atp hydrolysis can be used to drive endergonic reactions, such as the conversion of glutamic acid to glutamine. as you saw in the video, the synthesis of glutamine from glutamic acid is a two-step process: atp phosphorylates glutamic acid. ammonia displaces the phosphate group, forming glutamine. how does the phosphorylation of glutamic acid (glu) provide energy for the rest of the reaction to occur?

Answers

When a phosphate is added to glutamate, a phosphorylated intermediate with higher free energy is created. Thus, the phosphate can be replaced by ammonia in an exergonic process.

What are exergonic reactions?

A reaction is considered exergonic if free energy is released during the reaction (for example, during cellular respiration). The line depicts the reaction's progression. The process is slowed down by activation energy (1).

What kinds of reactions are exergonic examples?

Exergonic reactions happen on their own (no outside energy is required to start them). Exothermic reactions, such as the combining of sodium and chlorine to create table salt, combustion, and chemiluminescence are examples of exergonic reactions (light is the energy that is released).

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if a bacterial cell is competent, it means that a. it is ready to undergo transduction b. the bacterium is ready to conjugate c. the bacterium is able to replicate its dna and undergo cell fission. d. the bacterium can import free dna fragments from the environment. e. two of the above are correct

Answers

Option d.) Bacteria can take up free fragments of DNA from the environment. This is the correct answer.

Competent cells are bacterial cells that take up extrachromosomal DNA or plasmids from the environment. Competent cell generation can be done in two ways- natural competence and artificial competence. Natural competence is the genetic ability of bacteria to take up environmental DNA under natural or in vitro conditions. Bacteria can also be artificially rendered capable of being temporarily permeabilized by DNA through chemical treatment and heat shock. Natural Competence dates back to 1928, when Frederick Griffith discovered that thermal cells prepared from pathogenic bacteria could transform non-pathogenic cells into pathogenic cells.

However, natural capacity and transformation are valid for linear molecules such as chromosomal DNA, but not for circular plasmid molecules.

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which gas makes up the majority of air pollutants?A. carbon monoxide B. sodium hydroxide C. nitrous oxideD. sulfuric acid

Answers

The answer is A. carbon monoxide, and, as you say, that pollutant is mainly caused by the burn of fossil fuels providing from the energy transformation industries, like petrol we use in cars for our transportation, for example.

Answer: carbon monoxide

Explanation: trust bro, trust.

Why is there a need to produce okazaki fragments on the lagging strand, but not on the leading strand of dna?.

Answers

There is a need to produce Okazaki fragments on the lagging stand, but not the leading strand of the DNA because the two parental strands of DNA are antiparallel and DNA polymerase makes DNA in the 5' to 3' direction only.

The leading strand of the DNA can be described as a strand that is in the 5' to 3' direction. As the DNA polymerase that is required for replication works in this direction hence there is no need of Okazaki fragments to be formed for the leading strand.

The lagging strand, on the other hand, is in the 3' to 5' direction which is the opposite of the working of DNA polymerase. Hence, for the lagging strand, Okazaki fragments are formed which are then joined by the DNA ligase to make the new strand from the lagging strand.

Although a part of your question is missing, you might be referring to this question:

Why is there a need to produce Okazaki fragments on the lagging strand, but not on the leading strand of DNA?

-The leading strand opens first, and so Okazaki fragments are not needed. The lagging strand unwinds second resulting in the need to produce Okazaki fragments.

-The two parental strands of DNA are antiparallel and DNA polymerase makes DNA in the 5′ to 3′ direction only.

-It is substantially more efficient to make several shorter strands rather than one longer strand of DNA.

-By having one leading strand and one lagging strand the cell can limit the amount of DNA polymerase used for chromosomal replication.

-There is not enough cellular DNA ligase for bonding Okazaki fragments together if they were produced from both parental strands.

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