Frameshift mutation help needed

Frameshift Mutation Help Needed

Answers

Answer 1

1) Insertion of a C: THE BOY CCU THI SLI PAN DAT ETH EHO TDO G. Deletion of an H: THE BOY CUT HIS LIP AND ATE TEH OTD OG. 2) Mutated DNA: TTA  CGG  ACG  ATC  TCA   GGA GCC  TAT  AAT  C. Mutated mRNA: AAU GCC  UGC  UAG  AGU  CCU CGG  AUA UUA  G. Mutated protein: Asn-Ala-Cys.

What are insertion and deletion mutations?

There might occur many mutations during protein synthesis that might involve different codons. As the DNI that codifies for proteins divides into codons of three bases, insertions or deletions in these areas might alter the genes in a way that the message can not be readen in the original correct way.

The mutation in the reading frame is caused by the insertion or deletion of a certain number of nucleotides that are not multiple by three in an aminoacidic sequence.

If a mutation alters the reading frame, an amino acid is placed incorrectly, and the DNI sequence will be readen differently.

Usually occur deletions, which causes a shorter protein. But there are also insertions, which are responsible for the addition of genetic material, involving small or big new fragments.

1) We need to make an insertion of a C and a deletion of an H. So let us propose an example,

Insertion of a C

Original sequence  THE BOY CUT HIS LIP AND ATE THE HOT DOG

Mutated sequence  THE BOY CCU THI SLI PAN DAT ETH EHO TDO G

Deletion of an H

Original sequence  THE BOY CUT HIS LIP AND ATE THE HOT DOG

Mutated sequence  THE BOY CUT HIS LIP AND ATE TEH OTD OG

Insetion of a C and deletion of an H

Original sequence  THE BOY CUT HIS LIP AND ATE THE HOT DOG

Mutated sequence  THE BOY CCU THI SLI PAN DAT ETE HOT DOG

2) Now we will write an original DNA sequence and propose insertion mutations. Then we will compare the mutated protein with the unmutated one.

Original sequence: TAC  GGA  CGA  TCT  CAG  GAG  CCT  ATA  ATC

Mutated sequence: TTA  CGG  ACG  ATC  TCA   GGA GCC  TAT  AAT  C

     mutated mRNA: AAU GCC  UGC  UAG  AGU  CCU CGG  AUA UUA  G

           amino acids: ASN   ALA   CYS   Stop SER  PRO   ARG   ILE   LEU

Original protein: Met-Pro-Ala-Arg-Val-Leu-Gly-Tyr

Mutated protein: Asn-Ala-Cys

Notice that since the insertion was done in the first codon, a new stop codon appeared before the original one, resulting in a shorter protein composed of three amino acids.

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Related Questions

what is called the largest type of lymphatic vessel, which deposits lymph into the subclavian veins

Answers

Answer:

The largest type of lymphatic vessel that deposits lymph into the subclavian veins is called the thoracic duct.

Explanation:

The information carried by a DNA molecule is in __________.
the order of the nucleotides in the molecule
its amino acid sequence
the sugars and phosphates forming its backbone
the total number of nucleotides it contains

Answers

The DNA's nucleotide sequence contains the genetic information. Each DNA molecule is made up of two complementary strands of nucleotides that are joined by hydrogen bonds to create a double helix.

What is DNA?

DNA, which is an abrreviation for deoxyribonucleic acid, is how majority of organisms we know of store their genetic information. Almost every cell in a person contains their unique DNA. Nuclear DNA, which makes up the majority of DNA in a cell, is also present in very small amounts in the mitochondria (where it is called mitochondrial DNA or mtDNA). Food energy is converted by cellular organelles called mitochondria into a form that may be used by cells.

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Which equation best represents photosynthesis in plants?

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d. The molecular formula for photosynthesis is C6H12O6 + 6O2: 6CO2 + 6H2O.

Phototrophs transform chemical energy into light through a process called photosynthesis, which is then used to power cellular processes. Inside the form of sugars, that are made from carbon dioxide and water, the oxidative phosphorylation is kept in reserve. Commonly used notation for photosynthesis is: 6CO2 + 6H2O C6H12O6 + 6O2. This indicates that the reagents, six carbon dioxide molecules & six molecules of water, are transformed into a sugar molecule or six oxygen molecules, the products, by light energy being absorbed via chlorophyll (implied by the arrow). Carbon dioxide + water —> glucose + oxygen —> cellular respiration is a straightforward word equation that may be used to explain the process of photosynthesis: C6H12O6 + 6O2 6CO2 + 6H2O. 6 CO2 + 6 H2O = C6H12O6 + 6 O in photosynthesis.

(Which of the following equations represents photosynthesis?

a. 6H2O + 6O2 → C6H12O6 + 6CO2

b. C6H12O6 + 6O2 → 6CO2 + 6H2O

c. 6CO2 + 6H2O → C6H12O6 + 6O2

d. 6CO2 + 6O2 → C6H12O6 + 6H2O

e. C6H12O6 + 6CO2 → 6O2 + 6H2O)

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which two of the following statements regarding heterotrophs are true? a. amino acids may be a good carbon source for a teterotroph. b. most heterotrophs are restricted to just a few caron substrates

Answers

Amino acids may be a good carbon source for a heterotroph

What roles do heterotrophs play?

There is no doubt that heterotrophs serve as consumers in the food chain. Additionally, they obtain nutrition through holozoic, saprotrophic, and parasitic sources. They also enjoy dissecting sophisticated organic molecules.

As heterotrophs are unable to produce their own food, they must consume it or absorb it. Heterotrophs are also referred to as consumers because of this. Contrary to autotrophs, which must use some of their energy for carbon fixation, heterotrophs are able to utilise all of the energy they acquire from food for growth and reproduction by eating reduced carbon molecules.

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Explain how rocks play a major role in both relative and numerical dating

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Relative dating is the process of assigning a date based on the rock layer and any known objects discovered at a similar level. The amount of half-lives that a rock has had can be used in numerical dating to determine the rock's age.

The practice of estimating an object's age based on its surroundings is known as relative dating. A billion-year-old rock will probably be buried deeper in the earth than the most recent smartphone that you just dropped, according to the fundamental and overarching notion. There are numerous approaches to doing this. To put it another way, items of the same age usually have the same depth. But, numerical dating gives us a more precise way to establish an object's age. Rocks, fossils, and artifacts don't come with birth certificates stating when they were made, so we utilize a range of other techniques to establish their ages, including radioactive dating.

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Write the complementary pair for this sequence


3' ATGGCTACAAAGCC5'

Answers

The complementary of A is T and for G is C, therefore the complementary sequence should be …. TACCGAACT

What is the complementary sequence for 5 ATCG 3?

Adenine builds the double bond with thymine while guanine makes the triple bond with cytosine which method adenine and thymine complementary base pairs and cytosine and guanine are complementary base pairs. The complementary sequence for the DNA shore 5' ATCGAACGT 3' is 3' TAGCTTGCA 5'.

Because of complementary base-pairing, this action generates a new strand of mRNA that is ordered in the 3' to 5' direction. As the RNA polymerase continues

So we can conclude that For the DNA strand 5'-TACGATCATAT-3' the right complementary DNA ... First write the accurate base pairing below the original sequence and ...

Missing:

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Neutrophils remove invading microorganisms through a process called options:a. phagocytosis. b. passive transport.c. pinocytosis. d. facilitated diffusion.

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The correct choice is a. Cells eat and disintegrate particles, such as bacteria and other cells, through a process called phagocytosis.

As it aids in defending the body from external intruders, it is an essential part of the immune system. As part of the process of phagocytosis, the particles must first be recognized, then they must be bound to, then they must be engulfed, and ultimately they must be digested and discarded. In order to defend themselves, cells like white blood cells employ a process called phagocytosis to take in and digest foreign substances like bacteria and viruses. Innate immune responses to infection, such as phagocytosis, are crucial because they assist in removing and destroying invasive microorganisms.

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the nutritive tissue of the seeds of angiosperms is ________, while the nutritive tissue in the seed of a gymnosperm is______.

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Angiosperm seeds have triploid nutritive tissue, whereas gymnosperm seeds have haploid nutritive tissue.

The nutritive tissue of the seeds of angiosperms is the endosperm, while the nutritive tissue in the seed of a gymnosperm is usually the female gametophyte, also known as the megagametophyte or the "nucleus" of the ovule.

In angiosperms, the endosperm is formed after fertilization and provides nutrients for the developing embryo, which will eventually grow into a new plant. In some species, such as corn and wheat, the endosperm is part of the seed that is harvested for food.

In gymnosperms, the female gametophyte is formed before fertilization and serves as a source of nutrients for the developing embryo. It is typically smaller than the endosperm of angiosperms and is not as important for food production.

The complete question is:-

The nutritive tissue of the seeds of angiosperms is ________, while the nutritive tissue in the seed of a gymnosperm is______.

A. diploid, haploid

B. triploid, diploid

C. haploid, diploid

D. triploid, haploid

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All living cells, both prokaryotic and eukaryotic, have the following cell structures: plasma membrane, cytosol, ribosomes, and at least one chromosome. Choose any one of these. Describe its basic structure (including molecular composition) as well as the function. Explain why a cell could not exist without the function(s) performed by this cell structure.

Answers

Prokaryotic cells and eukaryotic cells are the two fundamental types of cells. The primary distinction between eukaryotic and prokaryotic cells is the presence of a nucleus in eukaryotic cells.

The nucleus stores DNA, the genetic material found in cells. The nucleus is surrounded by a membrane. Prokaryotic cells do not have nuclei. Their DNA, on the other hand, is floating around inside the cell. Prokaryotes are organisms that have prokaryotic cells.

All prokaryotes are single-celled (unicellular) organisms. Bacteria and archaea are the only prokaryotes. Eukaryotes are organisms that have eukaryotic cells. Protists, fungi, plants, and animals are all examples of eukaryotes. Eukaryotes are multicellular organisms. Eukaryotes can only have one cell. Bacterial and eukaryotic cell architectures are similar.

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in which strand of cellular nucleic acids would you expect to find 2'-hydroxyls groups on the riboses?

Answers

The correct answer is option C. TATATATATA.

The DNA strand, which is made up of four separate nitrogenous bases, adenine (A), cytosine (C), guanine (G), and thymine (G), contains the 2-hydroxyl groups on the riboses (T). Thymine (T), a repeating nitrogenous nucleotide, makes up the whole of DNA strand C. TATATATATA.

Consequently, it may be inferred that this DNA strand includes 2-hydroxyl groups since thymine (T), one of DNA's four nitrogenous bases, is present in it.

The five-carbon sugar ribose, which maintains the nitrogenous base in place on the DNA strand, is where the 2-hydroxyl groups are found.

In contrast to RNA, which has a ribose sugar with one oxygen atom in place of a hydrogen atom, this strand of DNA's ribose sugar is made up of 2-hydroxyl groups, which is a crucial distinction to make.

Complete Question:

In which strand of cellular nucleic acids would you expect to find 2- hydroxyls groups on the riboses?

A. AGGCTTAGCC

B. CAATTGGCAC

C. TATATATATA

D. UACCAUGGCA

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birds have reduce the energetic cost of flying. this example best illustrates which major theme in biology?

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Birds have reduced the energetic cost of flying. This example best demonstrates Evolution which is a major theme in biology.

Evolution is the modification in heritable traits of biological populations over successive generations. Evolutionary processes give drift to diversity at every biological organization level. Many morphological and behavioral characteristics of birds have evolved which lessen the energy expenditure of the flight. Examples are wing shape, the usage of thermals and tail winds, geographic lift, and V-formation flight. Instead of heavy jaws and teeth, they have light beaks. And instead of fur, they have feathers.

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the major reason that anti-parallel beta-stranded protein structures are more stable than parallel beta-stranded structures is that the latter:

Answers

They have weaker hydrogen bonds laterally between adjacent strands. Antiparallel ß sheets are a little more stable than parallel ß sheets because the hydrogen bonding structure is more perfect in them. Click the image below to view parallel and antiparallel ß sheet diagrams.

Protein structure is the three-dimensional arrangement of the atoms within an amino acid-chain molecule. Proteins, or more specifically polypeptides, are made up of amino acid sequences that function as the polymer's monomers. Since an amino acid monomer serves as the basic building block of a polymer, it is occasionally referred to as a residue. Amino acids undergo condensation processes, losing one water molecule each time, in order to form peptide linkages with one another and generate proteins. A peptide, as opposed to a protein, is a chain of amino acids that contains fewer than 30 amino acids.

The complete question is:

The major reason that antiparallel β-stranded protein structures are more stable than parallel β-stranded structures is that the latter:

A) are in a slightly less extended configuration than antiparallel strands.

B) do not have as many disulfide crosslinks between adjacent strands.

C) do not stack in sheets as well as antiparallel strands.

D) have fewer lateral hydrogen bonds than antiparallel strands.

E) have weaker hydrogen bonds laterally between adjacent strands.

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How do butterflies maintain homeostasis?

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Butterflies are able to maintain homeostasis primarily by migrating away from the sun to find warmth. All animals have the ability to maintain body homeostasis. This is how animals keep everything in balance to survive.

How do butterflies regulate their body temperature?

Butterflies are cold-blooded animals and have no way of regulating their body temperature. Instead, they must rely on their behavioral instincts to warm themselves up in order to fly. This is also known as thermoregulation.

How do butterflies adapt to their environment?

Some butterflies protect themselves with camouflage. By folding the wings, the underside is exposed and blends in with its surroundings. This strategy, known as crypsis, makes them nearly invisible to predators. However, bright colors and distinctive wing patterns can be advantageous. 

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Identify the three types of these types of technology implemented at the Gautrain

Answers

Answer:

Tunnel Boring Machine

Emergency Access Shafts

The use of Contactless Smart Cards for passenger payments

Explanation:

When pollen of a flower is transferred to the stigma of another flower of the same plant, the pollination is referred to as
A. geitonogamy
B. autogamy
C. allogamy
D. xenogamy

Answers

The correct option is A. Geitonogamy

Geitonogamy refers to the movement of pollen grains from the anther of one flower to the stigma of another blossom on the same plant.

The process of moving pollen grains from an anther to the stigma of a pistil is known as pollination. It is a method of bringing non-motile male and female gametes together for fertilisation. Self-pollination is the pollination process in which pollen grains from the anther combine with the stigma of the same flower or a different blossom on the same plant.

Autogamy and geitonogamy are the two types of self-pollination. Geitonogamy is the movement of pollen grains from one flower's anther to the stigma of another on the same plant. This transmission is aided by a pollinating agent. Because the pollen grains are derived from the same plant, it is genetically equivalent to autogamy.

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what is the likely source for reservoir of organisms that grew best at 35c, and how do they survive at room temperature without nutrients?

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Organisms that grow best at 35°C are often mesophilic, meaning they thrive in moderate temperatures. The likely sources for a reservoir of such organisms are many, including soil, water, food, and the human body.

As for how they survive at room temperature without nutrients, many mesophilic organisms have developed strategies to adapt to changing environmental conditions. One such strategy is the formation of spores. Bacterial spores are dormant, non-reproductive structures that allow bacteria to withstand harsh environmental conditions such as high temperatures, radiation, and lack of nutrients.

When conditions improve, spores can germinate and grow into new bacteria. However, not all mesophilic organisms are capable of spore formation. Some may have other mechanisms to survive in adverse conditions, such as entering a dormant state or reducing their metabolic activity until more favorable conditions arise.

In addition, some mesophilic organisms can tolerate a wide range of temperatures, including room temperature. They may be able to maintain their cellular structures and function at low levels for extended periods of time until nutrients become available.

Overall, the survival mechanisms of mesophilic organisms are diverse, and can include spore formation, dormancy, reduced metabolic activity, and temperature tolerance, among others.

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what is the advantage of a mature red blood cell having aflattened shaperather than a spherical shape?

Answers

The flattened shape of red blood cells is critical for their ability to efficiently transport oxygen and carbon dioxide throughout the body.

The advantage of a mature red blood cell having a flattened, discoid shape rather than a spherical shape is that the flattened shape provides a larger surface area-to-volume ratio, allowing for more efficient gas exchange.

Red blood cells, or erythrocytes, are responsible for transporting oxygen from the lungs to the tissues and carbon dioxide from the tissues to the lungs. The flattened shape of red blood cells allows them to stack and form a biconcave shape, which provides a larger surface area for gas exchange to occur. This is important because it allows for more efficient diffusion of oxygen and carbon dioxide across the cell membrane. Additionally, the flattened shape of red blood cells allows them to be more flexible and better able to navigate through the narrowest capillaries and blood vessels, which is essential for their function in delivering oxygen to tissues throughout the body.

If red blood cells were spherical, their surface area-to-volume ratio would be lower, making gas exchange less efficient. They would also be less flexible and have a harder time navigating through narrow capillaries and blood vessels.

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which of the statements do you think best describes the way that base pairing stabilizes the double helix of dna? A. A-T pairs have fewer H-bonds to break, so it requires less energy. B. One base pair has an effect on another. C.Two factors are mainly responsible for the stability of the DNA

Answers

The statement that best describes the way that base pairing stabilizes the double helix of DNA is B. One base pair has an effect on another.

The double helix structure of DNA is stabilized by the complementary base pairing between nucleotide bases. Adenine (A) always pairs with thymine (T) and guanine (G) always pairs with cytosine (C). The bases are held together by hydrogen bonds between the nitrogenous base pairs, with A-T forming two hydrogen bonds and G-C forming three hydrogen bonds.

The interaction between the base pairs is what provides the stability to the DNA double helix. The complementary base pairs fit together like a lock and key, and the hydrogen bonds between the bases provide an attractive force that keeps the two strands of the helix together.

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Why are there so few ecosystems with more than four levels of consumers?
A) Predators at the highest trophic levels simply are not intelligent enough to hunt other top predators.
B) Consumers at these highest trophic levels typically form social groups that stop reproducing at high densities.
C) Top consumers compete with and kill each other with increasing population size.
D) Biomass decreases by about 90% at each trophic level, moving upward

Answers

D) Biomass decreases by about 90% at each trophic level, moving upward is true.

The amount of energy that is available at each trophic level in an ecosystem determines how many levels there can be. Because of inefficient energy transfer between organisms and metabolic processes, energy is lost at every trophic level. Approximately 10% of the energy at one trophic level is typically transferred to the next level, and this energy loss results in less energy being available for the consumers at the next trophic level. At each trophic level as you move upward, biomass declines by around 90%.

There are fewer individuals and less diversity in this region of the food chain at the highest trophic levels due to the poor energy availability and low biomass of top consumers.

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Does protein expression begin with transcription or translation?
a. translation
b. transcription

Answers

Option B, transcription describes protein expression begin with.

Protein expression is the process by which a gene is transformed into a functional protein, and it begins with transcription. Transcription is the first step in the process and evolution the transfer of genetic information from DNA to RNA, specifically messenger RNA (mRNA). The mRNA molecule carries a copy of the genetic information from the DNA to the ribosome, where translation occurs. Translation is the process by which the genetic information in the mRNA is used to construct a protein molecule. The ribosome reads the sequence of codons in the mRNA and uses it to assemble the corresponding evolution of amino acids to form a protein. Thus, transcription is the first step in the process of protein expression, and it must occur before translation can take place.

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in the cardiac myocyte the phase of rapid depolarization is due to ___

Answers

Option B is correct. The step of rapid depolarization in the cardiac myocyte is brought on by a net inflow of positive ions, Na+, into the cell.

The five phases of the cardiac action potential are generated by the cardiovascular or venticular myocyte. Phase 0 is when rapid depolarization takes place. The output across the membrane of the cardiac cell experiences a quick change during this phase that only lasts for a very brief time. It happens as a result of a net flow, or capillary permeability, of Na+ ions into the heart's cells from outside the organ. Therefore, option B should be selected.

Pacemaker cells are the ones that create the nerve impulse in the heart. The majority of the time, quasi cells outside of the heart are what activate the transmission of positive ions like sodium ions to the cell and cause rapid depolarization.

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Complete question-

In the cardiac myocyte, the phase of rapid depolarization is due to

A. increased permeability to Ca2+

B. increased permeability to Na+

C. Reduced permeability to Cl-

D. None of the above are correct.

Glycerol
A fat molecule is composed of two types of smaller molecules: ___ and fatty acids.

Answers

A glycerol backbone and three fatty acid tails make up the two types of components that make up a fat molecule. A fatty acid is made up of a long hydrocarbon chain connected to a carboxyl group, whereas glycerol is a tiny chemical molecule containing three hydroxyl (OH) groups.

Natural fatty acids between 4 and 28 have an unbranched chain with an even number of carbon atoms in the majority of cases. Fatty acids can account for as much as 70% of the total weight of the lipids in some species, such as microalgae. In other species, fatty acids, such as triglycerides, phospholipids, and cholesteryl esters, are not present in their purest form. In all of these forms, fatty acids are vital cellular building components and one of the main nutritional sources of energy for animals.

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What are the inner mass cells of blastocyst?

Answers

An embryo's early development includes a component known as the inner cell mass (ICM), also known as the embryoblast (or pluriblast in marsupials). The blastocyst's mass of cells is what eventually gives rise to the fetus's distinct structures.

What is cells of blastocyst?

A ball of cells known as a blastocyst develops in the first five to six days of pregnancy, shortly after a sperm fertilizes an egg. It embeds itself in the uterine wall, developing into an embryo and subsequently a fetus. An important stage in the development of an amphibian embryo is the blastocoel. It allows for cell movement during gastrulation and prevents premature interaction between the cells below and above the blastocoel.

What cells make up blastocyst?

The blastocyst is made up of three cell lineages: extraembryonic TE cells, primitive endoderm (PE) cells, and pluripotent epiblast (EPI) cells, which contribute to the placenta or yolk sac, respectively.

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the system of membranous saccules that is studded with ribosomes and capable of producing proteins is the

Answers

The system of membranous saccules that is studded with ribosomes and capable of producing proteins is termed as rough endoplasmic reticulum, or rough ER .

Function of rough endoplasmic reticulum :-

The endoplasmic reticulum can either be smooth or rough, and in general its function is to produce proteins for the rest of the cell to function. The rough endoplasmic reticulum has on it ribosomes, which are small, round organelles whose function it is to make those proteins.

Structure of the Rough Endoplasmic Reticulum -

The structure of the rough ER is also intimately involved with the presence of cytoskeletal elements – especially microtubules. When microtubule structure is temporarily disrupted, the ER network collapses and reforms only after the cytoskeleton is reestablished. Changes to the pattern of microtubule polymerization are also reflected in changes to ER morphology.

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Under what conditions would the butterflyfish be unable to adapt to the change in the food sourcer

Answers

The reef butterflyfish is well suited to life on the reef. Its compressed body allows for darting in and out of coral. The small, protractile mouth is specifically adapted to crevice feeding.

what is the scientific name for the northern lights?

Answers

The northern lights, also known as aurora borealis, are a magnificent, multicolored light show that can frequently be seen in the northern hemisphere's night sky.

The aurora australis, or southern lights, are the name for auroras that occur in the southern hemisphere. Due to their proximity to Earth's magnetic poles, the northern and southern lights are both polar lamps, or aurora polaris. A truly breathtaking natural occurrence, polar lights (aurora polaris) can be seen in the both northern and southern hemispheres. The scientific name for the northern lights is aurora borealis, and the name for the southern lights is aurora australis. Thankfully, they happen frequently. Landlord of the northern lights tour operator Lights Over Finland and photographer Chad Blakely said, "The lights are happening twenty-four hours a day, seven days per week, 365 days a year."

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Which statement describes plant-like protists?

Answers

Answer:

Algae are plant-like protists

Explanation:

Plant-like protists are called algae. They include single-celled diatoms and multicellular seaweed. Like plants, algae contain chlorophyll and make food by photosynthesis. Types of algae include red and green algae, euglenids, and dinoflagellates.

in a food chain, snakes consume mice, which in turn feed on grasshoppers. the grasshoppers consume grass. how great a biomass of mice could 10,000 kg of grass likely support?

Answers

The biomass of mice that 10,000 kg of grass might possibly support is difficult to predict. This is due to how inefficiently energy is transferred between each trophic level.

For instance, 10 kilogrammes of grass is required to maintain 1 kg of grasshoppers, and 10 kg of grasshoppers are required to support 1 kg of mice.

Thus, the 10,000 kg of grass could sustain around 1000 kg of grasshoppers, who in turn could sustain about 100 kg of mice. This number is approximate since the environment and the species involved can affect how well energy is transferred from one trophic level to the next.

The biomass of mice that 10,000 kg of grass could support is therefore likely to be somewhere between 100-1000 kg.

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What specific neurotransmitter is released during neuromuscular junction?

Answers

Acetylcholine is a specific neurotransmitter is released during neuromuscular junction.

NeurotransmitterAlthough motoneurons and presynaptic terminals of rodent endplates from the extensor digitorum longus (EDL) and soleus muscles are positive for glutamate labelling, acetylcholine (ACh) is still the main neurotransmitter at the vertebrate neuromuscular junction (NMJ).Acetylcholine serves as the primary neurotransmitter in the parasympathetic nervous system, a component of the autonomic nervous system (a branch of the peripheral nervous system) that slows the heart rate, relaxes smooth muscles, widens blood vessels, and produces more body secretions.It contributes to neuroplasticity, memory, arousal, and learning. Additionally, it helps people maintain focus and helps the brain's reward system work by activating sensory functions when they first awake.

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Members of which bacterial phylum share a unique morphology?a. Spirochaetes
b. Firmicutes
c. Chlamydias
d. Cyanobacteria

Answers

Spirochaetes, which have a unique corkscrew shape, this members of bacterial phylum share a unique morphology.

They are gram negative bacteria with helical coiled shaped cells, they are also motile and are generally in watery environment.

They are bacteria, which are pathogens and cause diseases like as syphilis, yaws, Lyme disease, and relapsing fever.

spirochaetes comes under the type of bacteria within the phylum Spirochetes

The shape is like that because of endoflagella and axial filament that gives the spirochete its unique spiral/twisting

The axial filament present  attaches to an opposite end which curls around the body of the cells and then which is enclosed by an envelope

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Help ASAP............. which theory claims that the death of jesus provides humanity with an example of the great love of god? the file utility contains the following data about the cost of electricity during july of a recent year for a random sample of 50 one- bedroom apartments in a large city: 96 171 202 178 147 102 153 197 127 82 157 185 90 116 172 111 148 213 130 165 141 149 206 175 123 128 144 168 109 167 95 163 150 154 130 143 187 166 139 149 108 119 183 151 114 135 191 137 129 158 a. construct a histogram and a percentage polygon. b. construct a cumulative percentage polygon. c. around what amount does the monthly electricity cost seem to be concentrated? technician a says that the p in a p-metric radial size means performance. technician b says that european tires do not display a p at the front of their tire rating. who is correct? under the proportionate method the proceeds from the sale of debt with detachable stock warrants should be allocated between the two securities based on the: under the proportionate method the proceeds from the sale of debt with detachable stock warrants should be allocated between the two securities based on the: face value of the bonds. the proportionate share of the fair market value of each security to total fair market value of the both bonds and stock warrants. fair market value of the bonds. face value of the bonds and market value of the warrants. Find the number of positive integers that satisfy both the following conditions:* Each digit is a 1 or a 2 or a 3* The sum of the digits is 4. muscular strength activities such as sprinting and power lifting use which type of muscle fibers? A courious contest, the nature of which eluded me, was developing between my father and the sheriff. What Atticus and Heck argue about? From theri argument whay do they learn about Bob Ewells death? Wo killed him? How do we know? What happens during a condensation reaction?O A water molecule is consumed and a monomer is released.OA water molecule is released and a monomer is attached.O A water molecule and a monomer are both released.OA water molecule is consumed and a monomer is attached.1 of 8 QUESTIC The tree grew from 32 ft to 45 ft in the span of ten years. Find the percent change to the nearest whole percent Where on the physical activity pyramid do sedentary activities belong? a. A b. B c. C d. D please select the best answer from the choices provided. 6. Focusing on characterization, discuss the diction (word choice)of the followingpassage and inferences one can make from the word choice. Use a dictionary to define anyunfamiliar words. "Sometimes [Daisy] and Miss Baker talked at once, unobtrusively andwith a bantering inconsequence that was never quite chatter, that was as cool as their whitedresses and their impersonal eyes in the absence of all desire" (12). Suppose the economy is producing 180 tons of wheat and 200 trucks. Does this imply the economy is operating efficiently, the economy is not producing as much as it could, the demand for trucks is low, or that economic growth would help the economy move to its production possibilities frontier? describe zhu yuanzhangs life before he became the first emperor of the ming dynasty and renamed himself hongwu five times a number is at most 15 what are the possible values for the number Factor out the Greatest Common Factor (GCF): 64d^(5)-24d^(2) An organic chemist measures the temperature T of a solution in a reaction flask. Here is the result.T= 128. CConvert T to SI units. Be sure your answer has the correct number of significant digits. Isosceles trapezoid KRWT is shownGiven KRWT is an isosceles trapezoid with KR and TW Prove: WK = TRAn incomplete two-column proof is shownAnswer Choices:----What is the missing statement in step 3More info is in the picture Thank you for any help! explain how variation in hemoglobin maximizes oxygen absoprtion in humans and other placental mammals at various life stages An ecologist recorded 12 white-tailed deer per one square mile in one woodlot and 20 per one square mile in another woodlot. What was the ecologist comparing?