Why do we only see Neanderthal input in non-African genomes? Neanderthals never interbred with Homo sapiens in Africa. Only Y chromosome DNA can be transmitted from Neanderthal genomes.

Answers

Answer 1

There are Neanderthal traces in the genes of people all across the planet. However, an analysis of tens of thousands of Icelanders reveals that the Neanderthal legacy had little to no influence on the majority of their physical characteristics or risk of disease.

What is the Neanderthal input in non-African genomes?

Scientists determined that all modern non-African people have some Neanderthal heritage in their DNA after sequencing the Neanderthal genome.

Researchers at Princeton University have now shown evidence of Neanderthal heritage in African populations as well, and the origin of this ancestry sheds new light on the evolution of humanity.

Therefore, In Africa, Homo sapiens did not interbreed with Neanderthals. Neanderthal genomes can only transmit Y chromosomal DNA.

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Related Questions

summarize the difference you observed between the model of the white eyed fly's dna sequence and the model of the red eyed fly's dna sequence.

Answers

The main difference observed between the DNA sequence models of white-eyed and red-eyed flies is a mutation in the gene responsible for eye color.

What is white eyed flies?

White-eyed flies are flies with white eyes, typically the result of a mutation. These flies are often used in research studies to learn more about genetics, behavior, and development. White-eyed flies are also used in genetic engineering and transgenic studies.

The main difference between the model of the white eyed fly's DNA sequence and the model of the red eyed fly's DNA sequence is that the white eyed fly's DNA sequence contained a mutation in a gene called White, which is responsible for the white eye color trait. The red eyed fly's DNA sequence did not have this mutation, resulting in the fly having red eyes. The mutation responsible for the white-eyed phenotype was caused by a change in a single nucleotide in the DNA sequence, which resulted in a non-functional protein that could not produce the red pigments necessary for the coloration of the eyes.

Therefore, the difference is due to mutation in the gene responsible for eye color.

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which structure consists of a framework of different proteins that work together to provide a scaffold for the cell?

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The cytoskeleton, a network of protein scaffolds, gives the cytoplasm and the cell shape. The cytoskeleton is made up of tubules and strands that crisscross the cytoplasm.

These strands and tubules are visible in the cells of The cytoskeleton is similar to a cellular "skeleton," as its name implies. It assists the cell in keeping its shape and holds internal cell components like organelles in position. In eukaryotes, a network of long, thin protein strands makes up the cytoskeleton. To respond to the continuously changing demands of the cell, these threadlike proteins constantly rebuild. Microtubules, intermediate filaments, and microfilaments are the three primary types of cytoskeleton strands .

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genetic drift is different from natural selection because: a. in natural selection allele frequencies change because some alleles confer higher fitness, whereas in genetic drift allele frequencies change because of chance sampling error. b. natural selection acts primarily in large populations, whereas genetic drift acts primarily in small ones. c. natural selection is a mechanism of evolution, whereas genetic drift is an outcome of evolution. d. natural selection tends to cause rapid evolution, whereas genetic drift tends to cause slow evolution.

Answers

Genetic drift is different from natural selection because in natural selection allele frequencies change because some alleles confer higher fitness, whereas in genetic drift allele frequencies change because of chance sampling error.

Genetic drift does not depend on an allele's beneficial or harmful effects. Instead, drift changes allele frequencies purely by chance, as random subsets of individuals (and the gametes of those individuals) are sampled to produce the next generation. It is different from natural selection because in natural selection allele frequencies change because some alleles confer higher fitness, whereas in genetic drift allele frequencies change because of chance sampling error.

Natural Selection occurs because some alleles confer higher fitness, whereas genetic drift occurs because of sampling error.

Genetic drift is the change in frequency of an existing gene variant in the population due to random chance. Genetic drift may cause gene variants to disappear completely and thereby reduce genetic variation.

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what is the only exception to homologous chromosomes in humans?

Answers

[tex]\huge\underline{\red{A}\green{n}\blue{s}\purple{w}\pink{e}\orange{r} →}[/tex]

They are the sex chromosomes "X" and "Y".

Explanation:

Hope it helps you~

In humans, the only exception to homologous chromosomes is the sex chromosomes (X and Y).

In humans, the sex chromosomes are the X and Y chromosomes. While females have two X chromosomes, males have one X and one Y chromosome. This means that the X and Y chromosomes are not homologous, as they do not have the same size, shape, or genetic information. All of the other chromosomes in humans are homologous, meaning that they have the same size, shape, and genetic information.

In summary, the only exception to homologous chromosomes in humans is the sex chromosomes, X and Y.

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The evolution of cuticle presented land plants with a challenge that threatened their ability to live on land. Describe this challenge, and explain why stomata represent a solution. Compare and contrast stomata with pores found in liverworts.

Answers

Although stomata were a crucial adaptation that helped plants to adapt to life on land, the more primitive liverwort pores are a more primitive trait.

A stomate, also known as a stoma, is any of the minuscule pores or openings in the epidermis of leaves and young stems; the plural of stoma is stoma or stomas. Stomata are more common on the underside of leaves. They allow gases to move back and forth between the atmosphere outside and the leaf's branching system of linked air canals. A stomate's two sausage-shaped guard cells that surround it open and close due to internal pressure. The interior wall of a guard cell is thicker than the outer wall. As the guard cell becomes turgid and filled with water, the outer wall of the cell extends outward, pushing the inner wall along with it and widening the stomate.

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contraction of the intrinsic laryngeal muscles can group of answer choices move the cricoid cartilage. move food from the larynx to the esophagus. close the glottis. constrict the trachea. assist in breathing during exercise.

Answers

Contraction of the intrinsic laryngeal muscles can  close the glottis Sound generation and the movements of the laryngeal cartilages and folds itself are controlled by the larynx's intrinsic muscles option 3)

The intrinsic laryngeal muscles are in charge of sound generation as well as the motions of the laryngeal cartilages and folds. Its attachments are located between the laryngeal cartilages. These muscles are paired bilaterally, with the exception of the transverse arytenoid muscle.

These muscles work in pairs to expand and close, or extend and shorten, the vocal folds: Adductors and abductors are two types of people. The lateral cricoarytenoid muscles pull the muscular processes anteriorly, rotating the arytenoid cartilages and swinging the vocal processes medially.

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Full Question: Contraction of the intrinsic laryngeal muscles can group of answer choices

move the cricoid cartilage. move food from the larynx to the esophagus. close the glottis. constrict the trachea. assist in breathing during exercise.

What is the correct statement regarding the function of platelets?

Answers

Blood cells called platelets, sometimes known as thrombocytes, have the job of clumping and clotting blood vessel damage to halt bleeding.

Humans and other mammals, including horses, have platelets in their blood, which are tiny, colourless cell fragments. They develop in the bone marrow and are crucial to hemostasis, the process of blood clotting. When a blood artery is injured, platelets are activated and collect at the wound site to form a plug that aids in stopping the bleeding and sealing the wound. They achieve this by producing substances like thromboxane A2 and ADP, which make the blood arteries tighten and become sticky, assisting the platelets in adhering to the injured area. Platelets have a variety of different purposes in the body in addition to helping to maintain hemostasis.

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The above question is incomplete. The complete question is given below-
Which of the following statements is true regarding platelets?
a) Platelets are also called thrombocytes.
b)Platelets are tiny blood cells that help your body form clots to stop bleeding.
c)Platelets are a component of blood.
d)All of the above.

the body cells of scorpions have proteins that connect together. in one scorpion, the structure of the proteins in the body cells changed, but the amount of that type of protein in the cell stayed the same. what happened to the function of that type of protein?

Answers

It is likely that the function of a protein was altered if the structure of a protein in a scorpion's body cells changed but the amount of that protein in the cell remained the same.

Body cells of scorpionsThe function of a proteins is governed by its structure, which is made up of extensive amino acid chains that fold into particular three-dimensional configurations.The three-dimensional structure and hence the function of a protein can be altered by even minor alterations to its amino acid sequence. Therefore, if the protein's structure altered within the scorpion's body cells, this might have an impact on how the protein interfaces with other molecules and performs biological activities.The particular protein in question and its function in cellular processes would determine the precise impact of this alteration in protein structure on the scorpion's body cells. For instance, if the protein was an enzyme, the structural alteration might impair the protein's capacity to catalyze chemical reactions. If the protein changed structure, the physical characteristics of the cell or the organism as a whole might be impacted.In conclusion, even if the quantity of a protein in a scorpion's body cells remains constant, a change in the protein's structure could alter its function and possibly have an impact on the creature.

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Prevertebral ganglia are located only in the abdominopelvic cavityTrue or False

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False. Prevertebral ganglia are actually located outside of the abdominopelvic cavity, along the vertebral column.

They are part of the sympathetic nervous system, which is responsible for the body's "fight or flight" response, and they play an important role in regulating various bodily functions, such as heart rate, blood pressure, and digestion. The prevertebral ganglia receive input from preganglionic sympathetic neurons, which originate in the spinal cord and travel through sympathetic chains before synapsing with the postganglionic neurons in the prevertebral ganglia. Prevertebral ganglia, also known as collateral ganglia, are a group of ganglia located outside of the central nervous system, specifically along the vertebral column. They are part of the autonomic nervous system, which regulates many involuntary bodily functions, including heart rate, blood pressure, digestion, and other visceral processes.

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How does a spreading center ridge like the East Pacific Rise explain the existence of the Marianas Trench?

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The existence of the Marianas Trench and the spreading center ridge of the East Pacific Rise are two different expressions of plate tectonic activity, with the Marianas Trench being a site of subduction and the East Pacific Rise being a site of sea-floor spreading.

What is the Marianas Trench?

A spreading center ridge, such as the East Pacific Rise, is a place where magma rises from the mantle and pushes the Earth's crust apart. The magma solidifies to form new oceanic crust, which spreads away from the ridge in opposite directions. Over time, this process creates new oceanic crust and increases the size of the ocean basin.

The presence of a spreading center ridge, like the East Pacific Rise, and the existence of the Marianas Trench are related through plate tectonics. The plate tectonic theory explains that the Earth's crust is divided into a number of large, moving plates that interact with each other at plate boundaries. At the boundary between the Pacific Plate and the Mariana Plate, the Pacific Plate is being subducted beneath the Mariana Plate, forming the Marianas Trench. On the other side of the Mariana Plate, the East Pacific Rise is spreading new oceanic crust and increasing the size of the Pacific Ocean.

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what are the grain components that are sometimes used because they are gluten free?

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Gluten is a protein found in wheat, barley, and rye, and it is responsible for the elastic texture of the dough and the rise of baked goods.

For people with celiac disease or gluten intolerance, consuming gluten can cause serious health problems. Therefore, many gluten-free alternatives have become popular in recent years, and some of the grain components that are sometimes used as gluten-free alternatives include:

Rice: Rice is a popular gluten-free grain that is used in many dishes around the world. It is often ground into flour to make gluten-free baked goods and is also a common ingredient in gluten-free pasta.Quinoa: Quinoa is a seed that is often referred to as a "superfood" because of its high nutrient content. It is gluten-free and is often used as a substitute for grains like rice and couscous.Buckwheat: Despite its name, buckwheat is not a type of wheat and is naturally gluten-free. It is often used to make gluten-free flour and is a common ingredient in gluten-free pancakes and waffles.Amaranth: Amaranth is a seed that is high in protein and naturally gluten-free. It can be ground into flour and used as a substitute for wheat flour in many recipes.Corn: Corn is a staple food in many parts of the world and is naturally gluten-free. It is often used to make gluten-free tortillas, chips, and other snacks.Millet: Millet is a gluten-free grain that is often used in gluten-free bread, cereals, and other baked goods. It has a mild, nutty flavor and a slightly crunchy texture.

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neurons 4591 and 4592 were just like all the other millions of neurons in the brain's center that are created during the first weeks of pregnancy. but in time neuron 4591 became part of the brain that controls logic, while neuron 4592 was in an area of the brain that manages emotion. which process does this describe?

Answers

The process that is described in this scenario is neuronal differentiation.

During the early stages of development, the human brain undergoes a complex process of neuronal proliferation, migration, and differentiation, which ultimately gives rise to the highly specialized regions of the brain that are responsible for various cognitive and emotional functions.

In this example, neurons 4591 and 4592 were created in the same way as millions of other neurons during the early stages of pregnancy. However, as the brain developed and differentiated, these neurons took on distinct roles in different areas of the brain. Neuron 4591 became part of the brain that controls logic, while neuron 4592 was in an area of the brain that manages emotion. This differentiation is likely due to the different signals and molecular cues that the two neurons received as they developed and migrated to their final locations.

Overall, the process of neuronal differentiation is critical for the formation of the highly specialized circuits and regions of the brain that underlie complex cognitive and emotional processes.

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traits that are modified from the ancestral condition and can therefore be diagnostic of particular evolutionary relationships are called traits.

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Traits that are modified from the ancestral condition and can therefore be diagnostic of particular evolutionary relationships are called traits. True

What do you name evolutionary relationships?

The evolutionary history and relationships of an organism or collection of organisms are referred to as its phylogeny in scientific terms. A phylogeny describes an organism's relationships, such as which organisms it is assumed to have evolved from, which species it is most closely related to, and so on.

Humans and chimps share a common ancestor, but it is not as recent as that of gorillas. Gorillas are connected to chimps just as much as they are to humans. Orangutans are the most distantly related to humans of the species depicted.

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Full Question: Traits that are modified from the ancestral condition and can therefore be diagnostic of particular evolutionary relationships are called traits. True / false

true or false. carbohydrates can play a structural role in animal cells.

Answers

It is TRUE that carbohydrates can play a structural role in animal cells.

One of the four most significant macromolecules in living things and a biological molecule, carbohydrates. Like most biological molecules, carbohydrates are made up of organic compounds. They therefore have both carbon and hydrogen in them. Oxygen is a third element that is present in carbohydrates. Simple sugar molecules called saccharides make up carbohydrates. A monosaccharide is hence a single monomer of carbohydrates.

All plants and animals require carbohydrates because they give us the much-needed energy, primarily in the form of glucose, that we need to survive.

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What happens when sunlight bends as it passes through raindrops?


A ]The wavelength of UV rays increases.

B]The wavelength of the visible light increases.

C]Colors of light separate based on their wavelength.

D}Colors of UV rays separate based on their wavelength.

Answers

C]Colors of light separate based on their wavelength. When sunlight passes through raindrops, the light is refracted and separated into its component colors based on their different wavelengths.

What is wavelength?

Wavelength is the distance between two successive crests or troughs of a wave. It is a measure of the length of a wave and is usually measured in meters (m). Wavelength is an important property of waves that can be used to identify and classify them. Wavelength is related to frequency, which is the number of waves that pass a certain point in a certain amount of time. Higher frequencies result in shorter wavelengths, and vice versa. Wavelength is an important property of light, sound, and other forms of energy, and is used to measure the speed of a wave or the energy of a wave. Wavelength is also related to the color of light and the pitch of sound.

This is why rainbows appear when sunlight is refracted through raindrops.

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Into which two subcategories can bulk transport be divided?
answer choices
a. Endocytosis and osmosis
b. Endocytosis and exocytosis
c. Exocytosis and passive transport
d. Osmosis and facilitated diffusion

Answers

Option B, Bulk transport is a cellular process in which large molecules, particles, or even entire cells are transported into or out of the cell. It can be divided into two subcategories: endocytosis and exocytosis.

Endocytosis is the process by which cells take in molecules or particles from the outside environment. The cell membrane invaginates, forming a vesicle that surrounds the material to be taken in. There are three types of endocytosis: phagocytosis, pinocytosis, and receptor-mediated endocytosis. Exocytosis is the process by which molecules or particles are released from the cell. It involves the fusion of vesicles with the cell membrane, allowing the contents of the vesicles to be expelled from the cell. Both endocytosis and exocytosis require energy, and are therefore considered active transport processes. In contrast, osmosis and facilitated diffusion are passive transport processes that do not require energy. Osmosis is the movement of water across a selectively permeable membrane, while facilitated diffusion is the movement of molecules across a membrane with the help of transport proteins.

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10.during which growth phase would you most likely find the production of endospores? a. lag b. exponential c. stationary

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The stationary phase of growth is when endospore formation is most likely to occur.

When the environment is adverse, certain bacteria develop endospores, which are inactive structures. When bacteria are in the exponential phase, they are aggressively expanding while diverting little resources towards the development of endospores.

During the lag phase, bacteria are responding to their environment. When the population has grown to its maximum size and the bacteria are in the stationary phase, they begin to manufacture endospores as a kind of defence.

Because endospores can withstand high heat and cold, organisms can endure until more hospitable circumstances return.

Endospores are generated during the stationary phase and subsequently released, allowing the bacteria to spread and eventually recolonize new areas. The endospores can germinate and the bacteria can once more enter the exponential growth phase when the conditions are right.

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Which description gives an example of acute exposure to a toxicant?
OA. A child experiences developmental delays from years of contact
with lead.
OB. A rescue worker experiences respiratory damage from smoke
inhalation at a fire.
C. A factory worker falls ill after repeated, very small doses of a
chemical product.
OD. A person develops lung cancer after a lifetime of smoking
cigarettes.

Answers

Answer:

C. A factory worker falls ill

Explanation:

Acute exposure is a short contact with a chemical. It may last a few seconds or a few hours. For example, it might take a few minutes to clean windows with ammonia, use nail polish remover or spray a can of paint. The fumes someone might inhale during these activities are examples of acute exposures.

Answer: b.  A rescue worker experiences respiratory damage from smoke inhalation at a fire.

Explanation: just did it

the double coiled, staircase shape of dna is called a

Answers

The double coiled staircase shape of DNA is called a double helix .

The DNA double helix biopolymer of nucleic acid is held together by nucleotides which base pair together. In B-DNA, the most common double helical structure found in nature, the double helix is right-handed with about 10–10.5 base pairs per turn. Each molecule of DNA is a double helix formed from two complementary strands of nucleotides held together by hydrogen bonds between G-C and A-T base pairs. Duplication of the genetic information occurs by the use of one DNA strand as a template for formation of a complementary strand . DNA is a double helix formed by base pairs attached to a sugar-phosphate backbone. The double helix of DNA has these features: It contains two polynucleotide strands wound around each other. The backbone of each consists of alternating deoxyribose and phosphate groups. Each chromosome is made up of DNA tightly coiled many times around proteins called histones that support its structure. DNA in each human cell is packaged into 46 chromosomes arranged into 23 pairs.

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Paleontologists are studying a specific type of fossil from an organism found in the bottom rock layer of a cliff. Later they notice the same type of fossil in a higher layer on the same cliff. The rock layers are undisturbed – no folding or faulting has taken place. Which of the following is the BEST explanation for why fossils of this organism can be found in multiple rock layers in this cliff? SC.7.E.6.3
A. This particular type of organism lived for a long period of time in the same area
B. The cliff has many faults that have broken down the rocks and moved the fossils
C. This particular type of organism was present in multiple locations on Earth
Why did you choose this answer?

Answers

The BEST explanation for why fossils of this organism can be found in multiple rock layers in this cliff is: This particular type of organism lived for a long period of time in the same area. option A is the correct answer.

What are fossils?

This refers to the traces of ancient life that have been preserved by natural processes, from spectacular skeletons to tiny sea shells. Fossils are formed in a number of different ways, but most are formed when a plant or animal dies in a watery environment and is buried in mud and silt.

The best explanation for why fossils of this organism can be found in multiple rock layers in the same cliff without any folding or faulting taking place is that this particular type of organism lived for a long period of time in the same area. This phenomenon is known as the Law of Superposition, which states that in undisturbed rock layers, the oldest rocks are on the bottom and the youngest rocks are on the top.

Over time, as new sediment is added to an area, organisms can be buried and preserved in multiple layers, resulting in their fossils being found in multiple rock layers. Therefore, option A is the correct answer.

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a serving of soup contains 4.0 g of fat, 12.0 g of carbohydrates, and 4.0 g of protein. determine how many calories (cal) are contained in this serving.

Answers

The quantity of calories in fat is 36 calories, carbs are 48 calories, and proteins are 16 calories.

According to the USDA:

Carbohydrates have 4 calories per gramme, whereas protein has 4 calories per gramme and fat contains 9 calories per gramme.

We are given the following:

Fat content of a soup serving = 4.0 g

12.0 g carbohydrate mass per soup serving

Protein content in a soup serving = 4.0 g

Using the unitary method:

1 gramme of fat has 9 calories.

As a result, 4.0 gramme of fat will supply = 9 *4 = 36 Cal

Carbs: Each gramme of carbohydrates contains 4 calories.

As a result, 12.0 gramme of carbs provides = 12 * 4 = 48Cal

Proteins: 1 gramme of protein has 4 calories.

As a result, 4.0 gramme of protein will supply = 4 * 4 = 16Cal

As a result, the quantity of calories in fat is 36 calories, carbs are 48 calories, and proteins are 16 calories.

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Which statement best describes a monohybrid cross?
O a cross in which no characteristics are studied
O a cross in which traits of several different characteristics are studied
O a cross in which the traits of a single characteristic are studied
O a cross that studies only the offspring of one homozygous and one heterozygous parent

Answers

The statement which best describes a monohybrid cross is that it is a cross in which the traits of a single characteristic are studied and is therefore denoted as option C.

What is a Monohybrid cross?

This is referred to as a cross between two organisms with different variations at one genetic locus of interest.

The character being studied in a monohybrid cross are governed by two or multiple variations for a single location of a gene which is therefore the reason why option C was chosen as the correct choice.

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Which tissue type covers body surfaces and lines the inside of organs and body cavities? A) Epithelial B) Nervous C) Muscle D) Connective E) None of the choices

Answers

Its A :) Epithelial tissues form the covering of all body surfaces, line body cavities and hollow organs, and are the major tissue in glands.

Frameshift mutation help needed

Answers

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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all five sensory systems send information to the brain through the cranial nerves, but one sensory system sends information to the brain through the spinal nerves as well. which of our sensory systems can also send information to the brain through the spinal nerves?

Answers

Touch sensation can also send information to the brain through the spinal nerves.

PathwayThe somatosensory and autonomic nervous systems make up the peripheral nervous system. Spinal nerves are a part of the sensory pathway of the somatosensory system, which sends data about the external environment to the spinal cord.The lemniscal pathway is the pathway that controls proprioception and touch. The initial axon in this pathway travels along the spinal nerve's dorsal root before ascending the spinal cord's dorsal column.The dorsal column pathway, which transmits information about fine touch, vibration, proprioception, and two-point discrimination, and the spinothalamic or anterolateral pathway, which transmits information about rough touch, pain, and temperature, are the two main sensory pathways.

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you examine a tissue sample under the microscope and discover that the tissue appears to be striated muscle. what can be concluded from this observation?

Answers

Skeletal muscle is the sole form of multinucleated muscle tissue. This is congruent with response choice "a". Skeletal muscle is also characterized by being long, unbranched, striated, and bearing a t-tubule system.

The only muscle tissues that exhibit striations are the skeletal and cardiac muscles, yet their activities are fundamentally different. The cardiac muscle is not voluntary, but the skeletal muscle is.

Many people associate all of this with their treating physician when it comes to the diagnosis and treatment of diseases. There is a lot that goes into identifying an illness, and pathology and histology play a big part in that.

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Full Question;

While examining a sample of muscle tissue under a microscope, you notice that the cells are multinucleated. They are long, unbranched, striated, and contain a developed transverse tubule system. Which muscle type does this sample contain?

a. Skeletal muscle.

b. Smooth muscle.

c. Cardiac muscle.

d. Striated muscle.

heat is capable of causing a change in the 3-d shape of a protein. when this occurs, we describe the change as:

Answers

A protein's 3-D shape can be altered by heat. We refer to that as "denaturation" when it happens.

A biological process called denaturation changes the molecular makeup of proteins. To achieve denaturation, many of the weak connections or links that give proteins their highly organized structure in their initial (natural) state must be broken. The majority of denatured proteins are insoluble and have a looser, more erratic structure. Denaturation can be caused by a variety of factors, including heating, contact with alkalis, acids, urea, or detergents, as well as strong shaking. When the denaturing agent is withdrawn and the conditions that favor the native form are once again available, some proteins can reassemble into their original structure. Blood saline Some of the proteins that can undergo this renaturation process include albumin, ribonuclease, and hemoglobin. One of many proteins that have undergone permanent denature is egg white. Biological activity is lost during denaturation, which is one of its frequent negative impacts.

The proper question is:

Heat is capable of causing a change in the 3-d shape of a protein. when this occurs, we describe the change as __________.

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1) Roots in plants absorb air needed for respiration through --------.
2) the respiration which takes without oxygen is called --------- respiration.
3) the tiny pores on the leaves of a plant through which gaseous exchange occurs are called ------.
4) the microscopic organism like yeast and bacteria obtain energy from aerobic respiration called -------.

Answers

Answer:

1.) soil

2.) anaerobic respiration

3.) stoma

4.) Fermentation (I hope)

I’m really good at biology so If you need help just message me maybe.

Which term means a twisting of the intestine on itself that causes and obstruction

Answers

The term that means a twisting of the intestine on itself that causes an obstruction is "volvulus."

Volvulus is a medical emergency that can occur in various parts of the gastrointestinal tract, including the stomach, small intestine, and colon. When a segment of the intestine twists, it can lead to a blockage of the normal flow of food, fluid, and gas, which can cause pain, distention, vomiting, and potentially life-threatening complications such as bowel ischemia, perforation, or sepsis.

Treatment for volvulus typically involves urgent surgical intervention to untwist the affected portion of the intestine and remove any necrotic or damaged tissue.

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explain the gas exchange between the circulatory and respiratory systems.

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Oxygen is taken up by the respiratory system and delivered to a circulatory system (blood).

As part of cellular respiration, the circulatory system transports nutrients from of the digestive system and oxygen to the cells. The blood then transports this carbon dioxide waste material back to the lungs where it is expelled.

During this process, carbon dioxide travels from of the blood to the lungs. This occurs in the lungs here between alveoli and a collection of blood capillaries known as capillaries that are found inside the alveolar walls. Oxygen is taken up by the respiratory system and delivered to a circulatory system (blood).

(Explain how the circulatory and respiratory systems work together in order for cellular respiration to occur?)

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