Mutation plays a very important role in bringing about evolution as it introduces variations in the DNA sequences.
Genetic mutations or just mutations are basically the changes which occur in the genetic sequence and they happen to be the main cause of diversity among different organisms. These changes occur at a lot of different levels, and hence they can have differing consequences.
These genetic mutations present in the individuals of a population bring about variations as they alter the genetic sequence. These mutations may not always be advantageous to survival and can cause diseases and even be lethal. These mutations get accumulated over time and bring about evolution.
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do you really understand meiosis and non-disjunction? try these questions: 1. if an individual has the genotype xxy, did non-disjunction occur in their mother or their father (or both) and at which division(s), meiosis i or meiosis ii?
The genotype of the mother is XX, while that of the father is XY. If a non-disjunction occurred in an individual with the genotype XXX, it would occur in her mother since only from her mother could she acquire two Xs, but from her father, a non-disjunction would result in a XXY.
This non-disjunction occurred during meiosis I, when two copies of the same chromosome are transferred to separate cells. During this phase, the separation of these two chromosomes did not occur since they were both Xs from the mother brought together to the new haploid cell.
The non-disjunction on meiosis II simply indicates that two chromatids from a chromosome did not split and does not result in copies.
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why are colonies important in the study of microbiology?
Colonies are very important in the study of microbiology as they allow us to identify the microorganisms.
A colony is basically what we call a group of microbes which are derived from the same mother cell. This basically means that one single mother cell reproduces in order to produce a group of cells that are genetically identical and this group of genetically identical cells form a mass, which is called a colony.
The morphology of these colonies are able to give scientists information regarding how a particular microbe which has replicated into a group that are sharing the same genes. Studying a particular colony microbes aids the microbiologists in identifying the microbe.
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What are the three types of non dividing plant tissue that account for the fiber found in plants. Give an example of each.
Each organ (roots, stems, and leaves) include all three tissue types (ground, vascular, and dermal).
What are the functions of plant tissues?Plant tissue is a group of cells having a common origin and usually performing a common function in a plant body. Every plant tissue has a distinctive function and can be united with different tissues to form organs like roots, stalks, leaves, and flowers.
Ground tissue makes up most of the interior of a plant. It carries out basic metabolic functions and stores food and water. Vascular tissue runs through the ground tissue inside a plant. It consists of bundles of xylem and phloem, which transport fluids throughout the plant.
They differentiate into three main types: dermal, vascular, and ground tissue. Dermal tissue covers and protects the plant. The ground tissue serves as a site for photosynthesis, provides a supporting matrix for the vascular tissue.
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Which of the following BEST describes a plant organ?
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what is it aboutbiography of ottmar mergenthaler and the history of linotype, its invention and development
Ottmar Mergenthaler was a German-American inventor best known for inventing the Linotype machine, a mechanical typesetting machine that revolutionized the printing industry by greatly increasing the speed and efficiency of typesetting.
The Linotype machine quickly gained widespread popularity and was widely adopted in newspaper and publishing industries, leading to significant improvements in productivity. Mergenthaler continued to improve and refine the Linotype machine throughout his career and the machine remained in widespread use until the advent of computers and digital typesetting in the late 20th century.
Key points:
Mergenthaler was born in Germany in 1854 and immigrated to the US in 1872.He invented the Linotype machine in 1886 and patented it the same year.The Linotype machine allowed type to be cast in a line, hence its name, which greatly increased the speed and efficiency of typesetting.The machine worked by inputting text via a keyboard and casting the corresponding letters in a line of molten metal.The Linotype machine was widely adopted in the newspaper and publishing industries and significantly improved productivity.Mergenthaler continued to refine and improve the Linotype machine throughout his career.The Linotype machine remained in widespread use until the advent of computers and digital typesetting in the late 20th century.Today, the Linotype machine is considered a historical artifact and a testament to Mergenthaler's impact on the printing industry.
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which observation supports the claim that the lophophore either evolved more than once or was lost in many lophotrochozoans? no lophotrochozoans undergo molting during growth. not alllophotrochozoans use a ring of ciliated tentacles for food collection and gas exchange. only some lophotrochozoans pass through a ciliated larval stage during their development. mollusks are the only lophotrochozoans that do not have a wormlike body form.
The observation that proved that lophotrochozoans got evolved or lost is that not all lophotrochozoans use a ring of ciliated tentacles for food collection and also for the purpose of gas exchange.
Hence, the correct option would be option 2.
Lophotrochozoa is basically categorized as a clade of protostome animals which are found within the Spiralia. Based on molecular evidences, this particular taxon was established as a monophyletic group. The clade includes animals like molluscs, annelids, bryozoans, brachiopods, as well as platyhelminthes.
It can be observed that not all the lophotrochozoans use a ring of ciliated tentacles for the purpose of food collection and also gas exchange and this proves the fact that they evolved more than once.
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the genetic foundation of a particular phenotype that includes contributions of dna from both parents. state of true or false.
1. true
2. false
what happens to the chromosomes during metaphase? are there two copies or a single copy of each chromosome?
During metaphase of mitosis, the chromosomes line up at the equator of the cell and there two copies of each chromosomes.
There are two copies of each chromosome, also known as sister chromatids, held together at the centromere. The centrosomes, which are located at the poles of the cell, create the mitotic spindle that helps to pull the sister chromatids apart. As the sister chromatids align at the equator, the kinetochores on the centromere attach to the spindle fibers.
As the cell progresses through metaphase, the sister chromatids remain connected until the cell undergoes anaphase. During anaphase, the sister chromatids separate and move towards opposite poles of the cell. This process of separation creates two identical sets of chromosomes, which will be used to create two daughter cells.
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how are starch and cellulose different in their composition?
Since the glucose molecules in cellulose and starch are linked differently—by - linkages in cellulose and - connections in starch—their linkage is the primary distinction between the two substances.
What is the purpose of cellulose?Paper, cardboard, and fabrics made of cotton, linen, or even other plant fibers mostly consist of cellulose. Additionally, it is employed in the creation of cellulose derivatives, films, and fibers.
What components makes up cellulose?The cellulose polymer is produced from glucose monomers. Cellulose is a substance present in plant cell walls. It provides mechanical strength and stability for the plants. An unbranched polymer comprised of a long chain containing glucose monomers connected by 1- 4 glycosidic bonds serves as the primary constituent of cellulose.
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Identify whether or not these are examples of how rural populations are affected by globalization.Example of Globalization's Effect on Rural PopulationsEgyptians in rural areas watch advertisements for goods from Western cultures on television.Rural populations become aware of global issues by watching television.Not an Example of Globalization's Effect on Rural PopulationsRural populations purchase expensive products that they see advertised on television.Rural populations reject globalization by sticking to the same cultural norms and rules
Globalization refers to the increasing interconnectedness and interdependence of the world's economies, societies, and cultures driven by advancements in technology, communication, transportation, and trade.
Examples of Globalization's Effect on Rural Populations:
Egyptians in rural areas watch advertisements for goods from Western cultures on television.
Rural populations become aware of global issues by watching television.
Not Examples of Globalization's Effect on Rural Populations:
Rural populations purchase expensive products that they see advertised on television.
Rural populations reject globalization by sticking to the same cultural norms and rules.
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beta-sheets are a type of secondary structure and are found in every protein. T/F
Not every protein contains beta-sheet secondary structure. Proteins can have a variety of secondary structures such as alpha-helices, beta-sheets, and turns. The type of secondary structure present in a protein depends on the sequence of amino acids that make up the protein.
(False)
Key points:
Beta-sheet is a type of secondary structure in proteins, along with alpha-helices.Beta-sheets are composed of beta-strands, which are extended chains of amino acids.Beta-strands are stabilized by hydrogen bonds between the carbonyl oxygen of one amino acid and the nitrogen of another amino acid several residues down the chain.Beta-sheets can be formed between beta-strands running parallel or antiparallel to each other.Beta-sheets contribute to the overall three-dimensional structure of proteins, helping to give the protein its specific shape and stability.Not all proteins contain beta-sheet secondary structure, as the type of secondary structure depends on the sequence of amino acids that make up the protein.Beta-sheets play a role in protein-protein interactions, and can also participate in the formation of beta-sheet-rich aggregates in diseases such as Alzheimer's and prion disorders.Learn more about protein here:
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During the s stage of interphase, the cell replicates its ?
At a critical point during interphase called S phase, the cell replicates its chromosomes and ensures that its systems are ready for cell division. When all conditions are ideal, the cell is now ready to enter the first phase of mitosis.
What is S Phase?S phase is defined as the phase of the cell cycle in which DNA is replicated, occurring between G₁ phase and G₂ phase in which duplication of the genome is critical for successful cell division, occurring during S-phase.
The procedures are strictly regulated and extensively protected. It also duplicates a microtubule-organizing structure which is called as the centrosome.
Thus, at a critical point during interphase called S phase, the cell replicates its chromosomes and ensures that its systems are ready for cell division.
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explain what phylogeny and phylogenetic trees are, describing the different components of phylogenetic trees, how they are constructed, and the types of data used.
Phylogeny: an evolutionary tree that shows the similarities and differences between species.
Phylogenetic tree: the tree that shows hypotheses about relationships between species.
Different components: species are related through their evolutionary history through the use of branches.
phylogenetic trees are made up of species that branch off of a common ancestor. Each node represents how closely the species are related.
data used: how species relate to a common ancestor, time, and divergence.
In biology, what is a phylogeny?A phylogenetic tree, also known as a phylogeny, is a diagram that shows the evolutionary paths of several species, creatures, or genes from a common ancestor.
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j. w. tutt proposed that colored peppered moths were more visible to predators on trees without lichens. in contrast, the forms were camouflaged on sooty trees without lichens.
J.W. Tutt hypothesized that on trees without lichens, light-colored peppered moths were more noticeable to predators. The figures, however, were hidden on smoky trees devoid of lichens.
The peppered moth is a species of night-flying moth that is indigenous to temperate areas. Its scientific name is Biston betularia. The northern hemisphere, notably areas like Asia, Europe, and North America, is where it occurs most frequently. The peppered moth's evolution serves as an example of population genetics and natural selection at action.
The peppered moth caterpillars adopt the color and shape of twigs in addition to their shape. According to recent research, caterpillars can change the color of their bodies to blend in with their surroundings in order to avoid being eaten by other animals. They can also feel the color of their surroundings through their skin.
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Hey student examines the globe shown in the picture what are two benefits of using this globe as a model of earth
Two benefits of using this globe as a model of the earth are that it gives a visual representation and also gives the accurate proportions of the earth, which help scientists and students understand the earth.
What is the significance of the globe as an earth model?A globe provides an accurate representation of the earth, such as the relative sizes of land masses and oceans, and helps people understand the earth, while a globe provides a visual representation of the earth's shape, size, and geographical features, too.
Hence, two benefits of using this globe as a model of the earth are that it gives a visual representation and also gives the accurate proportions of the earth, which help scientists and students understand the earth.
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why do germinating seeds undergo cellular respiration
Cells can convert available nutrient materials in to the energy through cellular respiration processes. As seeds germinate, cellular respiration takes place because seeds need energy to grow and develop.
In the process of cellular respiration, which occurs in germination seeds, this same carbon dioxide released is directly inversely proportional to the oxygen absorbed by the seed. The calcium carbonate (solid) that results from this reaction between the carbon dioxide and CaO lowers the volume of fuel in the tube as well as permits the water to rise. To get the energy they require to grow and develop, pea seeds go through cell respiration. Sugars are metabolised within cells to produce energy through a process known as respiration. In the seeds, structures referred to as cotyledons house the respired sugars.
(Why do germinating seeds undergo cellular respiration?)
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questions1) bacteria with type iv pilia) possess tubular or stalk-like extensions of their cells.b) likely exhibit twitching motility.c) have capsules that promote dehydration.d) live in aquatic environments.answer: bbloom's taxonomy: 1-2: remembering/understanding chapter section: 2.6learning objective: 2.ii2
Bacteria with type iv pill are b) likely to show twitching motility.
Bacteria are a group of organisms that do not have a cell nucleus membrane so that they are included in the type of prokaryotes. Bacteria are very small in size and have a simple structure.
Flagella in bacteria are organelles in the form of filaments, which function for movement. However, there are some bacteria that do not have falgels so they will move by means of twitching motility which is movement of bacteria on surfaces mediated by type IV pili. This movement allows movement along the surface of the host cell as in the bacterium Pseudomonas aeruginosa.
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anything that has mass and volume is blank
Answer:
matter
Explanation:
In science, matter is defined as anything that has mass and volume. Both mass and volume also measure different aspects of matter.
Mass: the amount of matter in some object
Volume: the 3-dimensional space occupied by matter
the ________ secretes hormones that regulate the body’s fluid levels.
The pituitary gland secretes hormones that regulate the body’s fluid levels.
Pituitary gland is a very small-sized endocrine gland present at the base of the brain. It is divided into two segments: anterior pituitary and posterior pituitary. The hormones secreted by pituitary are involved in controlling other endocrine glands. The hormones secreted from pituitary are: luteinizing hormone, oxytocin. vasopressin, Growth hormone, prolactin, etc.
Hormones are the chemical messengers that are released by parts of the body called endocrine glands. The hormones are released directly into the blood stream and regulate various functions of the body. The example of hormones are: insulin, growth hormone, glucagon, oxytocin, testosterone, etc.
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antigen-antibody complexes trapped in tissues and triggering complement activation or mast cell degranulation are characteristic of
Antigen-antibody complexes are an important part of the immune system, playing a major role in defending the body from foreign invaders.
What do antigen-antibody complexes do?
Antigen-antibody complexes can be found trapped in tissues, where they are capable of triggering complement activation or mast cell degranulation. This process is essential for the body to effectively respond to and eliminate any foreign material that might be present. By understanding how these antigen-antibody complexes interact with their environment, researchers can gain insight into how the immune system works and develop better treatments for diseases caused by these complexes.
Antigens can be proteins, carbohydrates, lipids, or other molecules that are recognized by the immune system as foreign or potentially dangerous. When an antigen binds to its corresponding antibody, it triggers an immune response that helps protect the body from infection by producing antibodies to fight off the invading microorganism or virus.
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Compared to the hip joint, the shoulder joint has ______ range of motion and ______ degrees of freedom.
Compared to the hip joint, the shoulder joint has greater range of motion and fewer degrees of freedom.
What is range of motion and degrees of freedom?The amount of mobility a joint is capable of is referred to as its range of motion. It represents the amount of flexion, extension, abduction, adduction, rotation, and circumduction that may take place and is frequently stated in degrees.
The amount of independent movements possible at a joint is referred to as the degree of freedom. It details how many revolutions there are around the joint axis and how many directions the joint may travel.
The shoulder joint can therefore move across a broader range of angles in many directions than the hip joint, but it has fewer degrees of freedom, which means that it can do fewer separate motions and rotations.
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if you crossed a true-breeding yellow-seed plant (aa) with a heterozygous yellow-seed plant (aa), offspring what would you expect? (aa) individuals would be green.
The offspring of a cross between a true-breeding yellow-seed plant (AA) and a heterozygous yellow-seed plant (Aa) would be expected to produce a 1:1 ratio of yellow-seeded and green-seeded plants.
The true-breeding yellow-seed plant (AA) is homozygous for the dominant allele (A) that codes for yellow seeds, while the heterozygous yellow-seed plant (Aa) is carrying one dominant allele (A) and one recessive allele (a) for the same gene.
When the two plants are crossed, each offspring will receive one allele from each parent, resulting in half of the offspring having the genotype AA (yellow seeds) and half having the genotype Aa (yellow seeds).
The recessive allele (a) codes for green seeds, and when it is present in the heterozygous Aa genotype, it will be expressed and result in green-seeded plants. Therefore, the offspring of this cross would be expected to have a 1:1 ratio of yellow-seeded (AA and Aa) and green-seeded (aa) plants.
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two-dimensional gel electrophoresis separates proteins on the basis of which two properties?
The traditional technique for separating proteins based on their charge (isoelectric focusing, IEF) and size is called two-dimensional gel electrophoresis (2DE).
A lab procedure called electrophoresis is used to divide DNA, RNA, or protein molecules according to their size and electrical charge. The molecules are moved through a gel or other matrix using an electric current. Smaller molecules can travel more quickly than larger ones thanks to pores in the gel or matrix, which function as a sieve.
The procedure of electrophoresis involves passing a current across a gel that contains the target molecules. Depending on their size and charge, the molecules will flow through the gel in various directions or at various rates, enabling them to be separated from one another.
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The geological time scale shows the history of the Earth using information we've gathered from fossils. It is divided into different eras. How are each era divided?
A. By using relative dating
B. By using the Law of Superposition
C. By changes in biodiversity
D. By every 5 billion years
please explain why you those this answer
By using relative dating it is divided into different eras. The correct option is A.
What is relative dating?Without knowing the exact ages of the rocks or geologic events, or how long ago they were formed, relative dating is the process of establishing whether one rock or geologic event is older or younger than another.
Relative dating techniques determine whether an object is more recent or more antiquated than other items discovered nearby.
Relative dating does not provide precise dates; rather, it merely shows which item, fossil, or stratigraphic stratum is older.
The Earth's history is depicted on the geological time scale using data we've learned from fossils. It is separated into various eras by relative dating.
Thus, the correct option is A.
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A student notices that the fish in his saltwater aquarium have begun to get sick. He checks the aquarium and finds that the water's
salinity is at 37 parts per thousand (ppt), which is too high. The student adjusts the salinity to 32 ppt, which is the ideal value for his
aquarium. By how much did the student change the water's salinity?
0.86 ppt
5 ppt
69 ppt
1,443 ppt
If a student notices that the fish in his saltwater aquarium have begun to get sick. The amount that the student change the water's salinity is 5 ppt.
How to find the water salinity?Using this formula to find the amount that the student change the water's salinity
Change of water salinity = High water salinity - Adjusted salinity
Let plug in the formula
Change of water salinity = 37 ppt - 32 ppt
Change of water salinity = 5 ppt
There the student changed the water's salinity by 5 ppt.
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what process anterior and inferior to the greater tubercle of the humerus; muscle attachment point?
On the front of the humerus, beneath the head, is where the smaller tuberosity is situated. There is a groove called the bicipital (intertubercular) groove between the two tuberosities.
What muscles connect to the humerus' greater tubercle?Three imprints that act as the attachment places for the supraspinatus, infraspinatus, and teres minor muscles are seen on the superior face of the larger tubercle.
Where does the humerus connect to the body?The shoulder girdle, also known as the pectoral girdle, which is made up of the scapula and clavicle bones, connects the proximal end of the humerus to the axial skeleton. The glenoid fossa (cavity) of the scapula accommodates the rounded humeral head.
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How might distributions of mosquito-transmitted diseases, such as malaria or west nile virus, be influenced by human activity and climate change over the next 50-100 years?
According to studies, rising temperatures brought on by climate change can hasten mosquito growth, biting rates, and virus illness incubation.
Long-distance viral movement may shift as a result of how climate change affects bird nesting and migratory timing. Illnesses that are transmitted by a mosquito bite are referred to as mosquito-borne diseases. Mosquitoes can transmit the Zika virus, West Nile virus, Chikungunya virus, dengue, as well as malaria to humans. Both employers and employees should take precautions against illnesses that mosquitoes carry. In contrast to West Nile virus, which is a single-stranded RNA infection that infects West Nile fever, plasmodium is a mosquito-borne illness brought on by Plasmodium parasites. West Nile disease and malaria are both spread by female Anopheles mosquitoes.
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A researcher uses imaging tools to determine that a bacterial cell is 1 micrometer in diameter. For this measurement to be accurate, what must be true? A. It must be repeated multiple times. B. It must contain the fewest possible significant figures. OC. It must be close to the actual value. D. It must be made using very small units.
A researcher uses imaging tools to determine that a bacterial cell is 1 micrometer in diameter. For this measurement to be accurate, the measurement must be made using very small units. Thus, the correct option is D.
What are measurements?Measurement is the quantification of different attributes of an object or any event, which can be used to compare with the other different objects or events.
Measurement is a process of determining how the large or small a physical quantity is as compared to a reference quantity of the same kind. These quantities are measured in units. The small measurements like diameter of a cell should be measured through using very small units.
Therefore, the correct option is D.
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based on your understanding of the chapter material and the information in the passage, the speed of bacteria, compared with archaeans, is determined by .
The right answer is e. Viruses are made up of nucleoproteins. They are simple in structure, with a nucleic acid core of either DNA or RNA (never both) wrapped by a protein covering known as a capsid.
A virus may have double-stranded DNA, as in Adenovirus, which is typically linear, or circular DNA, as in Papova virus. Parvoviruses are made up of single-stranded DNA. Rotavirus is a double stranded RNA virus, whereas Rabies and Influenza viruses are single stranded RNA viruses. Although not all viruses have envelopes, some do, such as Mumps virus and Lipovirus
Virus replication is dependent on the host cell since the proteins and enzymes needed come from the host cell. Viruses must thus contain a capsid and a nucleic acid, which might be double-stranded or single-stranded, circular or linear, and DNA or RNA. Virophages are double-stranded DNA viruses that infect larger viruses.
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Full Question ;
Based on your understanding of the chapter material and the information in the passage, which of the following best defines something as a virus? Are virophages a type of virus or something different?
a. It must have a capsid and double-stranded or single-stranded DNA. Virophages are therefore a type of virus.
b. It must have a capsid and a linear nucleic acid that encodes replication enzymes. Virophages are therefore not a type of virus.
c. It must have an envelope, capsid, and nucleic acid, which can be double-stranded or single-stranded, and DNA or RNA. Virophages are therefore not a type of virus.
d. It must have a capsid and linear nucleic acid. Virophages are therefore a type of virus.
e. It must have a capsid and a nucleic acid, which can be double-stranded or single-stranded, circular or linear, and DNA or RNA. Virophages are therefore a type of virus.
f. It must have a capsid and single-stranded nucleic acid. Virophages are therefore not a type of virus.
how do transcription factors and signaling molecules relate to the concepts of autonomous and conditional specification?
Transcription factors as well as signaling molecules play an important role in autonomous and conditional specification as especially conditional specification is dependent on external influences in the determination of the cell fate.
In autonomous specification if a particular blastomere is first removed from an embryo early which is in its development, then that isolated blastomere will be able to produce the same cells which it would have made if it were not removed from the embryo.
Conditional specification basically involves the development of reversible cell fate due to external influences. Transcription factors as well as signaling molecules are the ones which influence a cell's fate during conditional specification.
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