The presence of DNA in the cell educates about its eventual role. The difference in organisms occurs because of their difference in the genes.
What are the functions of cell?
Cell is the building blocks of living organisms. They mostly helps in providing
Structure and supportGrowthTransportEnergy productionMetabolismreproductionDNA gives instructions to the cell through the DNA informing messenger RNA (mRNA) that is used in protein production. The transfer of information occurs through two processes transcription and translation.
The major difference between organisms is the genes. But monozygotic twins are genetically identical to each other they only differ in biological processes. Mutation is the process that changes the sequence of genes in DNA which made living organisms different. Another source is gene flow which is the movement of genes between different groups of organisms.
Hence DNA is the genetic material that instructs the role of cells and made organisms look different to each other.
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After an mrna molecule is constructed from a dna template, which two statements explain what happens next?.
The elongation period of transcription creates.
DNA is double-stranded, however best one strand serves as a template for transcription at any given time. This template strand is known as the noncoding strand. The nontemplate strand is referred to as the coding strand because its collection may be the same as that of the new RNA molecule.
The ability of every strand of a DNA molecule to behave as a template for producing a complementary strand allows a mobile to copy, or replicate, its genes earlier than passing them directly to its descendants.
One of the strands of the DNA double helix then acts as a template for the synthesis of an RNA molecule. As in DNA replication, the nucleotide sequence of the RNA chain is decided via the complementary base pairing between incoming nucleotides and the DNA template.
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What was found in the trap of the miller–urey apparatus that supports a hypothesis for the beginning of early life?.
Miller and Urey demonstrated that a variety of chemical compounds, including amino acids, are created when methane, ammonia.
They discovered that the volcano-like experiment had generated the greatest amount of organic molecules, including 22 amino acids, 5 amines, and numerous hydroxylated molecules. which may have been made by hydroxyl radicals produced by the electrified steam.
The well-known Miller-Urey experiment showed that amino acids, crucial components of biological proteins, may be produced under simulated primordial terrestrial settings from basic starting elements.
The first proof that organic molecules required for life might be created from inorganic elements was supplied by the Miller-Urey experiment. The RNA world hypothesis, which contends that RNA was the primordial form of life, is backed by certain scientists.
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How would you expect the rate of speciation of an allopatric case to compare to the rate of speciation of a sympatric case involving formation of allopolyploid offspring?
A) The allopatric case would occur at a much slower rate than the sympatric case involving allopolyploid offspring.
B) More information would be needed to make a prediction.
C) The allopatric case would occur at a much faster rate than the sympatric case involving allopolyploid offspring.
D) Both would occur at the same slow rate.
A) The allopatric case would occur at a much slower rate than the sympatric case involving allopolyploid offspring.
A rate of speciation is a measurement about the number of new species appear that can appear in an interval of time within a given taxon and a given habitat or ecosystem. A rate of speciation can also be a comparative measure, not time dependent , relating to how one taxon seems to diversify relative to another.
Allopatric speciation, is considered as the most common form of speciation, when populations of a species are geographically isolated. Or in other case when populations become separated, gene flow between them ceases.
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How would you expect the rate of speciation of an allopatric case to compare to the rate of speciation of a sympatric case involving formation of allopolyploid offspring?
A) The allopatric case would occur at a much slower rate than the sympatric case involving allopolyploid offspring.
A rate of speciation is a measurement about the number of new species appear that can appear in an interval of time within a given taxon and a given habitat or ecosystem. A rate of speciation can also be a comparative measure, not time dependent , relating to how one taxon seems to diversify relative to another.
Allopatric speciation, is considered as the most common form of speciation, when populations of a species are geographically isolated. Or in other case when populations become separated, gene flow between them ceases.
The above question is incomplete
How would you expect the rate of speciation of an allopatric case to compare to the rate of speciation of a sympatric case involving formation of allopolyploid offspring?
A) The allopatric case would occur at a much slower rate than the sympatric case involving allopolyploid offspring.
B) More information would be needed to make a prediction.
C) The allopatric case would occur at a much faster rate than the sympatric case involving allopolyploid offspring.
D) Both would occur at the same slow rate.
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Why must microtubules both assemble and disassemble for mitosis to occur properly?.
The assembly and disassembly of microtubules is necessary for the chromosomes to move to opposite poles during mitosis.
Microtubules are the part of the cytoskeleton that are hollow tube-like in structure. They are dynamic molecules and hence undergo assembly and disassembly. They are essential for cell growth, cell movement and also some signaling events.
Chromosomes are the compact form of packaged DNA. It is comprised of DNA and the histone proteins. A chromosome is composed of two sister chromatids joined together at the centromere. This compact form of DNA is the one that gets transferred from the parent to the offspring.
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the species of finches that charles darwin found on different galápagos islands varied in certain structural adaptations. one of the most significant adaptations that darwin noted was the:______.
The species of finches that Charles Darwin found on different Galápagos islands varied in certain structural adaptations. One of the most significant adaptations that Darwin noted was the: difference in the beaks of the finches.
Adaptation is defined as the change or modification that an organism makes upon itself or its lifestyle in order to survive in its surroundings in amore better and efficient manner. Adaptations once established are passed on from one generation to another.
Beaks are the external structure present at the mouth of the birds. It is also called bill. The different shape and structure of beaks enables the bird to have a better intake of their food. Beaks were the distinguishing factor of the Darwin's finches.
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URGENT NEED HELP
Which results from an increase in the greenhouse effect?
a. continental shifts
b. wildfires
c. volcanic eruptions
d. global warming
Answer:
global warming
Explanation:
The simple greenhouse effect definition is the natural process when gases in the Earth's atmosphere trap the Sun's heat. Since global warming is the overall temperature of the planet in the long-term, that answer would make the most sense.
what is the most likely mechanism of inheritance for the rare genetic disorder represented in the pedigree?
X - linked recessive is the most likely mechanism of inheritance for the rare genetic disorder represented in the pedigree.
The pedigree reveals that all girls and 50% of sons with normal parents are unaffected, indicating that the disease's allele should be present in the recessive condition. The condition is present in the mother on her X-chromosome, who acts as the carrier mother and conveys the trait to 50% of sons. The father exhibits all recessive traits because he has one copy of both the X and Y chromosomes. The kids would have displayed it equally frequently in both sexes had it been an autosomal feature. Additionally, the offspring of the sick father and unaffected mother are normal, indicating that the disorder is an X-linked recessive one.The condition does not manifest in a heterozygous daughter since the diseased father has passed the affected X-chromosome on to daughters who inherit the second copy of the X-chromosome from the healthy mother. However, these daughters will act as the disease's carriers. The illness known as Duchenne muscular dystrophy causes the muscles to gradually deteriorate. It is a sex-related condition. Only homozygous genotypes can express the disorder's allele; heterozygous genotypes cannot. Recessive alleles are those that can express themselves in homozygous genotypes but not in heterozygotes, as is well known.To know more about Heterozygous check the below link:
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What could cause bad gut bacteria to grow?
A. Eating unhealthy food too often
B. Yogurt with active cultures
C. Taking supplements
D. Growing up
Answer:
A. Eating unhealthy food too often
Explanation:
Answer:
a) Eating unhealthy food too often
Explanation:
Eating unhealthy food too often will cause bad gut bacteria to grow. The diet given to our body with food should be healthy to avoid such bacteria from growing. Hence, the option (a) is the correct answer.
which of the following is released into the lumen of the gastrointestinal tract? a) pepsinogen b) gastrin c) secretin
Secretin is a gastrointestinal hormone that inhibits intestinal motility and the discharge of gastric acid, and stimulates the secretion of pancreatic fluid.
Secretin has three important functions: law of gastric acid, law of pancreatic bicarbonate, and osmoregulation. The most important physiological moves of secretin are stimulation of pancreatic fluid and bicarbonate secretion. S cells withinside the small gut emit secretin.
Secretin is secreted from S cells withinside the duodenum in reaction to H+ and fatty acids withinside the lumen. Specifically, a pH much less than 4.five indicators arrival of gastric contents, which initiates the discharge of secretin. GLP-1 is likewise produced withinside the small gut and secreted from L cells.
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why can't the results shown here be used as proof that the two different forms of the enhancer are important in determining dark versus blond hair?
An enhancer's DNA sequence that differs by a single nucleotide and is located more than 350,000 base pairs from the gene's coding region.
Explain about the enhancer?Enhancers are DNA-regulatory components that increase the transcription of a gene or genes more than it would be the case without them. These elements act remotely by generating chromatin loops that put the enhancer and target gene close together23.
The regulatory mechanisms by which cells develop patterns of gene expression are supported by enhancer function. According to recent research, enhancers are defined by specific chromatin marks in pluripotent cells. These chromatin marks can be changed later in development to change patterns of gene expression and cell differentiation options.
Enhancer sequences are regulatory DNA sequences that promote the transcription of a related gene when they are bound by particular proteins known as transcription factors.
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considering the innervation of the circular muscles of the bladder neck, which classification of drug is used to treat bladder neck obstruction?
For the treatment of primary bladder neck blockage, alpha blockers are frequently employed.
How is bladder outlet blockage treated?Through the urethra, a catheter-shaped tube is introduced into the bladder. To remove the obstruction, this is done. To drain the bladder, a catheter will occasionally be inserted through the belly area. The term for this is a suprapubic tube.
Which drug improves urine flow through the bladder neck?Tricyclic antidepressants include imipramine (Tofranil). It causes the smooth muscles at the bladder neck to contract while relaxing the bladder muscle. Mixed incontinence, which combines urge and stress incontinence, may be treated with it. Imipramine is frequently given at night because it can make you sleepy.
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which structure is highlighted? multiple choice auditory ossicles auricle tympanic membrane vestibule semicircular ducts
Semicircular ducts or Semicircular Canals are highlighted.
What are Semicircular Canals?
The semicircular canals are three small fluid-filled tubes in the inner ear that help you balance. Movement of the head causes fluid to splash within the semicircular canals, moving the tiny hairs that line each canal. These hairs translate fluid movement into neural messages sent to the brain. Your brain can tell your body how to maintain balance. When you twist and then stop, the fluid in the semi-circular channel travels a little longer, and the hair continues to send the message that it's spinning even though it's not. That's why you feel dizzy after carnivals and amusement park rides.
Therefore, Semicircular ducts or Semicircular Canals are highlighted.
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Which political party function involve putting where a candidate tand on the "iue" into writing?
financing a campaign
deigning a platform
running a campaign
chooing a candidate
Political party function involve putting where a candidate stand on the "issue" into writing is : designing a platform.
The goals , ideas , project and beliefs are the platforms in the politics. The political party is an organization that will coordinates with the candidates to compete in the particular country's election. the members of the political party will hold the similar ideas about the politics. the political party will be promote the specific ideology and the policy goals.
Thus, the designing a platform is the political party function that involve putting the candidate stand on the issue into the writing.
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Which of the following correctly describes the differences in organelles found in plant cells compared to animal cells.
Question 3 options:
Chloroplasts and Endoplasmic Reticulum are found only in plant cells and the nucleus is only in animal cells.
Cell membranes and mitochondria are found only in plants. Ribosomes are much larger in plant cells.
Cell walls and chloroplasts are found only in plants. Vacuoles are much larger in plant cells.
Mitochondria are found in animal cells and chloroplasts are found in plant cells.
"Cell walls and chloroplasts are found only in plants. Vacuoles are much larger in plant cells", is the correct answer.
Why Chloroplast is only present in plant cells?Chloroplasts, a type of organelle found in plant cells, convert light energy into chemical energy that is relatively stable through the photosynthetic process. They do this to keep life on Earth going. Chloroplasts also aid in the synthesis of hormones, fatty acids, membrane lipids, isoprenoids, and tetrapyrroles in plant cells, among other metabolic processes.
The green pigment chlorophyll, which is found in chloroplasts, helps with photosynthesis, which is how food is made. Animals don't make their own food, hence they don't need chloroplast. Thus, chloroplast is only found in plant cells.
Why do plant cells possess large sized vacuole?Plant cells are known to have larger vacuoles than animal cells because they need to store food and water. This is because plants are unable to move as freely as mammals can. They have large vacuoles as a reserve for when things become tough.
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name an organic molecule that carbon is found in
Answer:
Methane (CH4)
Explanation:
Hydrocarbons are organic molecules consisting entirely of carbon and hydrogen, such as methane (CH4) described above.
Genetic variation among humans is relatively small when compared to other species. Where in the human genome does most of the diversity occur?.
The majority of the variation is found in single nucleotide polymorphisms in the human genome, homeotic genes, mitochondrial DNA, and tRNA-coding sequences.
Single nucleotide polymorphisms happen when one nucleotide, which functions as the basic unit of DNA, is changed for another. also known as SNP. Single nucleotide polymorphisms (SNPs) may function as biological markers in DNA because they are related to the genes that are linked to a number of complex diseases, including Alzheimer's, schizophrenia, diabetes, cancer, and blood pressure.
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Question 3
Human blood types are determined by genes that follow the CODOMINANCE pattern of inheritance. There are two codominant alleles (A and B) and one recessive allele (o).
Fill in the genotype for each person based on the description:
Homozygous for the “B” allele
Heterozygous for the “A” allele
Type O
Type AB
Word Bank:
AA BB Ao oo AB Bo
As with the human blood type AB (IA IB), codominance develops when both alleles exhibit dominance.
Are blood types A and B codominant?Genes that inherit according to the CODOMINANCE inheritance pattern define the type of blood a person has.A and B are the two codominant alleles, while R is the recessive allele (O).
Is indeed the inheritance of a person's blood type a case of codominance?Codominance.One common characteristic of people that you can't see very just by looking at them, but that many people are aware of, is their blood type.One A allele one and B allele are present in individuals with the blood type AB.Their blood type was AB since both alleles be expressed simultaneously.
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Facilitated diffusion requires
enzymes.
carrier proteins.
lipid carriers.
carbohydrate carriers.
lipid or carbohydrate carriers.
Facilitated diffusion requires carrier proteins. The membrane transport proteins known as carriers and channels fall into two categories.
What is carrier proteins ?In contrast to channel proteins, another type of membrane transport protein, which is less selective in transporting molecules, a carrier protein is a type of protein that moves a particular substance through intracellular compartments, into the extracellular fluid, or across cells.It is similar to an enzyme-substrate reaction in how a carrier protein moves a solute molecule across the lipid bilayer, and in many respects, carriers work like enzymes. However, unlike regular enzyme-substrate reactions, the carrier protein does not covalently modify the transported solute before delivering it to the other side of the membrane.There are one or more distinct binding sites for a solute in each type of carrier protein. By undergoing reversible conformational changes that alternately expose the solute-binding site on each side of the membrane, it moves the solute across the lipid bilayer.To learn more about carrier proteins refer :
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Write a short note on how Forest influence the quality of Air, soil and water resources.
Forest influences the quality of Air, soil, and water resources in many ways. It helps in maintaining the temperature of the earth.
Forest is an ecological system that includes many life forms. It helps in controlling various climatic changes. Forest protects biodiversity by helping many plants and animals.
The role of forest in influencing air, water, and soil involves the following:
Air: The forest helps in maintaining various gases in the atmosphere like oxygen, carbon dioxide, etc. It purifies the air and in turn, reduces the greenhouse effect.
Soil: The forest adds nutrients to the soil. Forest helps in firmly binding the soil by absorbing nutrients and water using trees. This, in turn, helps in reducing soil erosion.
Water: The forest helps increase the level of underground water through the rain. Eventually helping in water conservation. It balances and regulates the water cycle.
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Answer:
(i) Forests protect the soil from erosion. (ii) Plants and animals in a forest are not dependent on one another. (iii) Forests influence the climate and water cycle. (iv) Soil helps forests to grow and regenerate.
Explanation:
write down one function of growth hormone and one function of insulin
One function of growth hormone (GH) is to stimulate growth and cell reproduction. This hormone is produced by the pituitary gland and plays a crucial role in the development and maintenance of tissues and organs. It stimulates the uptake of amino acids by cells, promoting the synthesis of proteins, which are essential for growth and tissue repair. GH also stimulates the production of insulin-like growth factor 1 (IGF-1), which enhances the effects of GH on growth and metabolism.
One function of insulin is to regulate glucose metabolism and maintain blood sugar levels within a healthy range. This hormone is produced by the pancreas and plays a key role in the metabolism of carbohydrates, fats, and proteins. Insulin promotes the uptake of glucose by cells, allowing them to use it as a source of energy. It also stimulates the synthesis of glycogen, a molecule that is used to store glucose in the liver and muscles. Insulin also inhibits the production of glucose by the liver, preventing the blood sugar levels from becoming too high.
Hey thanks for making my previous answer brainliest, happy to help :)
Answer:
Insulin: The main function of insulin is to allow glucose to enter the cells so that it can be used as energy. Insulin helps to maintain the normal level of glucose found in the bloodstream.
micro how is it that we are not in a state of continuous infection from the microbes we encounter every day?
We are not in a state of continuous infection from microbes we encounter every day as : the immune system provides an overlapping network of host defenses.
What is meant by immune system?The immune system protects your body from outside invaders that may include germs such as bacteria, viruses, and fungi, and toxins (chemicals made by microbes). A healthy immune system protects by creating a barrier that stops those invaders or antigens from entering the body.
The immune system's job is to defend against disease-causing microorganisms and it's goal is to keep us healthy. The immune system is a vast and complex interconnected network of different organs, cells and proteins that work together to protect the body from illness.
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what type of pollution is at a research lab, a scientist carelessly pours cultures of living microbes down the drain.
A scientist who carelessly spills living microbe cultures down the drain is an example of bacterial pollution.
Which factors lead to bacterial pollution?The two main potential sources of fecal bacteria are (1) animal feces from home pets, waterfowl, and urban animals, and (2) human sewage from broken onsite sewage systems (septics), dripping sewers, or cross-connections.
What effects does bacterial contamination have?They are known as pathogens, and if consumed by people, they can emit chemicals that can result in illness or even death. Waterborne illnesses can cause gastrointestinal problems such severe diarrhea, nausea, and potentially jaundice in addition to headaches and exhaustion.
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Why are there pairs of chromosomes in this karyotype? All BUT ONE answer could apply.
A Humans reproduce via sexual reproduction.Humans reproduce via sexual reproduction.
B This karyotype represents human cells after fertilization.This karyotype represents human cells after fertilization.
C Each individual inherits one of each pair from each parent.Each individual inherits one of each pair from each parent.
D Gametes contain one copy of each chromosome.Gametes contain one copy of each chromosome.
Question 2
Humans reproduce via the reproduction that is taking place in this fertilization that is sexual. Humans reproduce via sexual reproduction.Humans reproduce via sexual reproduction.
What are chromosomes ?These are defined as the thread like structures that are located inside the nucleus of animal and plant cells and these each of them contain DNA and proteins.
This karyotype represents human cells after fertilization.This karyotype represents human cells after fertilization. This is showing that the human cells that are representing the cells of human reproduction. Each individual inherits one of each pair from each parent.Each individual inherits one of each pair from each parent.
Each of the human genome contains 23 pairs of chromosomes where 22 are autosomes as clearly shown in picture and then one last is the sex chromosome pair where it can be XX or XY where XX is the female child and XY is the male child.
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PLSSS HELP IF YOU TURLY KNOW THISS
HELP ME PLEASE PLEASE PLEASE PLEASE
When two identical copies of a gene are present, you are said to be homozygous for that gene. It contrasts with a heterozygous genotype, in which the alleles are distinct. Everyone who possesses a recessive trait, such as red hair or blue eyes, is homozygous for that gene.
What are Homozygous and Heterozygous ?Refers to a trait that can only be seen in homozygous individuals; it is a trait that is often hidden by other inherited qualities but persists in populations of heterozygous individuals.
When you are heterozygous, you have two distinct alleles as opposed to being homozygous. Each parent gave you a different version of themselves. The dominant allele in a heterozygous genotype prevails over the recessive one. As a result, the dominant trait will manifest.
That could be homozygous dominant or homozygous recessive, AA or aa. A person with two dominant "A" alleles for a certain gene is said to be homozygous dominant for that gene. A person with two recessive "a" alleles, or homozygous recessive, will have the genotype "aa."
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The __________ is an oblong area of the hindbrain involved in regulation of heartbeat, blood pressure, movement, and respiration.
The medulla is an oblong area of the hindbrain involved in regulation of heartbeat, blood pressure, movement, and respiration.
What is medulla ?The foramen magnum, an aperture at the base of your skull, allows the medulla, the portion of your brain that is closest to the ground, to communicate with your spinal cord. Your pons, which is immediately underneath the central brain structures, is located just above your medulla.The region at the base of the brain known as the medulla oblongata serves as a link between the brain and spinal cord. It relays commands for vital bodily processes including breathing, circulation, swallowing, and digestion from the brain to the rest of the body.Wallenberg disease This condition, also known as lateral medullary syndrome, develops when the blood supply to a side region of your medulla is cut off, causing damage to that region. Your medulla is most commonly affected by this kind of stroke.To learn more about medulla refer :
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The current decline of amphibian populations worldwide has been linked to a ________ fungus.
A chytrid fungus has been connected to the ongoing global fall in frog numbers.
The fungus targets the keratin-containing areas of a frog's skin. Frogs have trouble breathing because they use their skin for respiration. The fungus also weakens the neurological system, which alters the behaviour of the frog. Chytridiomycosis is a condition that some hosts with B. dendrobatidis infection may go on to develop, though not all infected hosts do. Chytridiomycosis may spread through direct host contact or via an intermediary host, although other modes of transmission are currently unknown.
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c. how do the thermodynamic contributions involved in establishing the equilibrium of the folded to unfolded state of proteins? (proteinfolded
When a protein's structural changes are being tracked by spectroscopic or calorimetric methods in the presence of a denaturing agent, this is referred to as thermodynamics of protein folding.
What thermodynamic variables affect the folding of proteins?Protein folding is a very delicate process that is regulated by a variety of external stimuli, such as temperature, pH, chemicals, molecule crowding, electric and magnetic fields, and temperature. These elements affect a protein's capacity to fold into the appropriate functional forms.
The hydrophobic effect and traditional hydrogen bonding, coupled with Coulombic interactions and van der Waals interactions, are the main causes of protein folding.
The research revealed that several ideas concur that protein folding is a subject to thermodynamic regulation.
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Which type of stem cell is able to differentiate into any cell type, including extraembryonic placental cells?(1 point)
Ο pluripotent cells
Ο multipotent cells
Ο embryonic cells
Ο totipotent cells
The totipotent cells type of stem cell is able to differentiate into any cell type, including extraembryonic placental cells.
What are totipotent cells?Totipotent stem cells are cells that have the capacity to self-renew by dividing and to develop into the three primary germ cell layers of the early embryo and into extra-embryonic tissues such as the placenta.
Moreover, totipotent means having the ability to differentiate into all cell types. For example, the zygote and early embryonic cells are totipotent since they can differentiate into any cell type during development.
Therefore, totipotent stem cells have the capacity to produce all adult cell types, can enter the germ line (i.e. contribute genetic material to succeeding generations), and have proven ability to self-replicate (i.e. produce daughter cells that are identical to the parent).
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