The principle of independent assortment states that during meiosis, the segregation of one pair of alleles for a given gene is independent of the segregation of alleles for other genes.
In the case of adermatoglyphia, caused by a dominant allele in the gene smarcad1 on chromosome 4, and bone density, which is a separate trait, it is likely that these traits would follow Mendel's principle of independent assortment. This means that the inheritance of the allele for adermatoglyphia would not affect the inheritance of the allele for bone density, and vice versa. Therefore, the presence or absence of fingerprints would not indicate anything about an individual's bone density and vice versa.
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Write a list of 10 words that describe what happened at the cross. Write a few sentences about how each word is relevant to the events surrounding Jesus' crucifixion.
Answer:
Betrayal - Judas Iscariot, one of Jesus' disciples, betrayed Jesus by leading the Roman authorities to him in exchange for 30 pieces of silver.
Crucifixion - The Roman method of execution in which the condemned person is nailed or tied to a cross and left to die.
Redemption - Jesus' death on the cross is believed by Christians to have paid the price for the redemption of humanity's sins.
Sacrifice - Jesus' death is seen as a sacrifice for the sins of humanity.
Atonement - Through his death, Jesus is believed to have made atonement for the sins of humanity.
Forgiveness - Jesus' death is seen as a means of obtaining forgiveness for sins.
Victory - Christians believe that through his death and resurrection, Jesus achieved victory over sin and death.
Suffering - Jesus suffered a great deal of physical and emotional pain during the events leading up to and including his crucifixion.
Triumph - Jesus' resurrection is seen as a triumph over death.
Salvation - Jesus' death is believed to have made salvation possible for humanity.
Purple flowers are dominant to white in Jimsonweed. When a particular purple-flowered Jimsonweed is self-fertilized, there are 28 purple-flowered and 10 white-flowered offspring. Out of the purple-flowered offspring,
1/3 proportion of the purpleflowered progeny will breed true.
Assume that the gene "P" confers a purple phenotype on flowers, whereas the allele "p" confers a white phenotype. Purple and white offspring were produced by self-fertilization of purple-flowered parent plants in a about 3:1 (28:10) ratio. This signifies that the parent plants were heterozygous, with the genotype "Pp" for each.
A cross between Pp and Pp yields offspring with the genotype ratio=
1/4 PP = 1/2 Pp = 1/2 PP
So, of the 3/4 purple progeny, 1/3 are homozygous for the purple allele (PP), while the other two-thirds are heterozygous dominant.
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What will happen where two continental plates collide at a convergent boundary? (1 point)
one plate is subducted beneath the other.
the direction shifts and it becomes a transform boundary.
the plates push up, forming a mountain range.
a volcanic island arc is formed.
"the plates push up, forming a mountain range." that is Mountains develop when continental plates meet. Continental plates have higher density, sometimes extending lower than the mantle, and are the least understood of all tectonic boundaries.
What is continental plates?Plate tectonics is the widely recognized scientific idea that the Earth's lithosphere is made up of a series of huge tectonic plates that have been steadily moving since around 3.4 billion years ago. Tectonic plates are massive chunks of the Earth's crust and upper mantle. They are composed of oceanic and continental crust. Earthquakes occur around mid-ocean ridges and major faults that indicate the plate boundaries. Tectonic plates are fragments of the Earth's crust and uppermost mantle, collectively known as the lithosphere. The plates are approximately 100 km (62 mi) thick and are made up of two types of material: oceanic crust (also known as sima from silicon and magnesium) and continental crust (sial from silicon and aluminium).
Here,
"plates push up and create a mountain range." Mountains develop when continental plates meet. Continental plates have a greater density and can extend below the mantle, making them the least understood of all tectonic boundaries.
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what happens to carbon in plants when the plants die?(1 point) responses the carbon is released into the soil, but it is not used again. the carbon is released into the soil, but it is not used again. the carbon is released into the air. the carbon is released into the air. the carbon is not released; it is lost. the carbon is not released; it is lost. the carbon is released into the soil for use by the next generation.
When the plants die, the carbon from the plants gets displaced in the soil and is used by the next generation.
The plants contain a number of carbon compounds. When a plant dies, its body gets decomposed into the soil and later on this carbon gets absorbed in the soil and can be used to make the energy sources of carbon which are usually in the form of fossils which can be used by the later generations.
The plants get decayed or decomposed and release carbon dioxide in the air. The difference in the amount of carbon which the plants absorb and release is known as the net primary productivity.
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if you had a pool of 13 suspects, and only one suspect had a genotype that matched the bxp007 locus found at the crime scene, would you be satisfied that you had identified the perpetrator based only on the genotype frequency calculated for the bxp007 locus? why or why not? explain your answer.
In the present case, we would require additional evidence in addition to the genotype evidence.
Given that only one out of every 64 people is likely to share the same genotype as your suspect and that you are only looking at 13 suspects, if you had a pool of 13 suspects and only one of them shared the same genotype at the BXP007 locus as that discovered at the crime scene, you could be reasonably certain that you had your perpetrator. To strengthen your case, you would need additional proof in addition to your genotype evidence, such as an eye witness, tangible items the suspect left at the crime scene, a motive, etc.
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Match the Terms the the appropriate definition.
Terms and definitions of skeletal structure:
Appendicular skeletonAxial skeletonDiaphysisPeriosteumSkeletonSynovial jointGreen stick fractureWhat is the role of the skeletal system?The human body's skeletal system serves as a support structure. It shapes the body, allows movement, produces blood cells, protects organs, and stores minerals. The musculoskeletal system is another name for the skeletal system.
The skeleton is the framework of the body made up of bones and other connective tissues that protects and supports the body's tissues and internal organs. The periosteum is the tough, thin outer membrane that covers the bones.
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the offspring of two true-breeding plants is . a. a true-breeder b. a hybrid c. a genotype d. a phenotype
the offspring of two true-breeding plants is d. a phenotype
What holds true for plants that truly propagate themselves?
A plant is said to be true breeding if it exclusively produces offspring that share the same characteristics after self-fertilization. True breeding organisms have the same alleles for the desired features and are genetically similar. For this kind of creature, the alleles are homozygous.
When an organism is heterozygous, it signifies that there are two distinct alleles present at a certain genetic location. A dihybrid organism is one that has two genetic loci where heterozygosity has been detected.
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the relationship between the steroid hormone, estrogen, and the peptide hormone, insulin, is being investigated. in order to quantify levels of each of these hormones, tissue samples were homogenized and then placed in a mixture of 2:1 hexane/water. what is the expected result from this extraction method?
The correct option is a) oestrogen would be in the hexane phase; and insulin would be in the aqueous phase.
The regulation of the female menstrual cycle and the growth and development of females depend on the hormone oestrogen. An essential hormone that controls blood sugar is insulin. According to the structural characteristics of peptides and steroids, oestrogen is hydrophobic and insulin is hydrophilic. The hydrophobic oestrogen hormone would segregate into the hexane phase, whereas the hydrophilic insulin peptide would be anticipated to be present in the aqueous phase.
Hexane and water in a 2:1 ratio are combined with the hormones insulin and oestrogen. Because it is a hydrophilic molecule, insulin dissolves readily in water. Hydrophobic molecules like oestrogen readily dissolve in hexane.
Thus, alternative is the right response (A).
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which of the following organisms is most likely to have the highest percentage of unsaturated fatty acid chains in their membranes? (hint: organisms try to preserve the balance for their membrane dynamics) a: antarctic bacterium b: desert iguana c: human being d: polar bear e: thermophilic bacterium
Antarctic bacterium is most likely to have the highest percentage of unsaturated fatty acid chains in their membranes. These organisms try to preserve the balance for their membrane dynamics.
If the chain of the fatty acid has at least one double bond, the fat or fatty acid is considered unsaturated. While unsaturated fatty acid chains only contain one double bond, polyunsaturated fatty acid chains have several double bonds. Where double bonds are formed, hydrogen atoms from the carbon chain are lost. Because it lacks double bonds and has the most hydrogen atoms linked to the carbons, a saturated fat is referred to as being "saturated" with hydrogen atoms. When compared to an equivalent amount of saturated fat, unsaturated fat molecules have a little reduced energy content (i.e., fewer calories) during cellular metabolism. The greater the unsaturation of a fatty acid (i.e., the more double bonds in the fatty acid).
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if the anti-inflammatory drug in treatment 1 interfered with dna replication, in which phase of the cell cycle would cells tend to be arrested?
In the S phase of the cell cycle, cells typically become arrested.A single chromosome that fails to correctly adhere to a mitotic spindle might cause cell cycle arrest inside the M phase.
A single chromosome that fails to correctly adhere to a mitotic spindle might cause cell cycle arrest inside the M phase. When cells are exposed to medications that either disrupt as well as hyperstabilize spindle microtubules, the same cell cycle checkpoint that causes S phase arrest also causes M phase arrest. phase S. The cell creates a full molecule of dna inside its nucleus during the S phase. Additionally, it makes duplicates of the centrosome, a structure that organises microtubules. The G0 phase, also known as the quiescent stage, occurs when cells stop dividing (do not enter S-phase after G1 - phase), differentiate, and go through apoptosis.
(If the anti-inflammatory drug in Treatment 1 interfered with DNA replication, in which phase of the cell cycle would cells tend to be arrested?
A) Go phase
B) G1 phase
C) S phase
D) G2 phase)
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the pedigree below shows the inheritance of an autosomal trait. which individuals in this pedigree have the genotype -> bb ? choose all that apply.
A pedigree is a diagram that shows a family tree or the transmission of a certain feature. They may be instructive to observe and useful instruments for identifying patterns of inheritance of particular features.
When there is evidence of a genetically inherited illness in one or both families, genetic counsellors frequently utilise pedigrees to assist couples in making the decision to have children. They are also employed when attempting to ascertain a person's propensity for carrying a genetic illness, such as familial breast cancer.
The synthesis of an aberrant form of the protein neurofibromin results in neurofibromatosis, which is the predominant type. Affected people have aberrant skin pigmentation patches and benign tumours that might damage the neurological system and result in blindness. Some tumours have the potential to develop into cancer.
There is no neurofibromatosis in the recessive variant of the gene since it is a normal protein.
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what is the phylum of plant that is identified by having no true leaves, dichotomous branching as well as lobed sporangia (usually yellow in color).
Lycophyta and monilophyta is the phylum of plant that is identified by having no true leaves, dichotomous branching as well as lobed sporangia (usually yellow in color).
Lycophytes, also known as "ferns," are a group of vascular plants similar to ferns, but with distinctive leaves called microphylls. They are primitive plants, devoid of seeds, trees, fruits and flowers.
Monophytes: These are ferns and their allies. they form a monophyletic group of euphyletic plants (having true leaves)
lycophytes have proto-stelae. A very simple stele of vascular tissue without a marrow. In monophytes, the gametophyte dies once the sporophyte is firmly established and reaches a sufficient size. Seed plants and monocotyledonous plants contain large leaves, whereas lycophytes contain small leaves in their structure.
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throughout human history, animals have been bred by _______________ selection. Compared to their ancient ancestors, todays farm animals mature more quickly and grow much larger. They also produce more offspring more quickly. Today, the practice of ________________ is being enhanced by genetic __________________. artificial•engineering•genetic•
human•husbandry•manipulation•
natural
Throughout human history, animals have been domesticated by artificial selection. Today's farm animals mature more quickly and grow much larger than their ancient ancestors. They also produce more offspring more quickly. Today, the practice of animal husbandry is being increased by genetic engineering.
What is Animal husbandry?Animal husbandry is defined as the branch of agriculture that involves the day-to-day care, selective breeding, and raising of animals that are raised for meat, fiber, milk, or other products.
Animal husbandry helps in proper management of livestock by providing adequate food, shelter and protection to domestic animals which provides employment to a large number of farmers thus raising their standard of living and to produce high yielding breeds of livestock. Helps in crossbreeding.
Thus, throughout human history, animals have been domesticated by artificial selection. Today's farm animals mature more quickly and grow much larger than their ancient ancestors. They also produce more offspring more quickly. Today, the practice of animal husbandry is being increased by genetic engineering.
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traits associated with ancestry are one way that modern human skeleton morphology varies between individuals. true false
traits associated with ancestry are one way that modern human skeleton morphology varies between individuals. This is a true statement.
The skeletal system is a network of numerous components that cooperate to support your movement. Your bones, which are solid objects that form the skeleton of your body, make up the majority of your skeletal system. The skeleton of an adult human has 206 bones.
Biology's study of the dimensions, forms and internal relationships of animals, plants, and microbes is known as morphology. The phrase describes the basic biological features of a plant's or animal's component arrangement and structure.
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what average effect on beak height do we predict for adults who survive the drought if beak height makes no difference to organismal fitness during the drought?
Average effect on beak height do we predict for adults who survive the drought if beak height makes no difference to organismal fitness during the drought is average beak height will stay the same.
About Bird measurementBird measurement or bird biometrics are approaches to quantify the size of birds in scientific studies. The measurements of the lengths of specific parts and the weights of birds varies between species, populations within species, between the sexes and depending on age and condition. In order for measurements to be useful, they need to be well defined so that measurements taken are consistent and comparable with those taken by others or at other points of time.
Measurements can be useful to study growth, variation between geographically separated forms, identify differences between the sexes, age or otherwise characterize individuals birds. While certain measurements are regularly taken in the field to study living birds some others are applicable only to specimens in the museum or measurable only in a laboratory. The conventions used for measurement can vary widely between authors and works, making comparisons of sizes a matter that needs considerable care.
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Given that a human normally contains 46 chromosomes, give the chromosome number for each of the following conditions:
Turner syndrome (female, no Barr bodies)
Klinefelter syndrome (male, one Barr body)
Answer:
Turner syndrome = 45 chromosomes, Klinefelter syndrome = 47 chromosomes
Explanation:
Turner syndrome is a condition where a female's 23rd pair (the pair that determines sex) consists of only X, while Klinefelter is defined by a male's 23rd pair consisting of XXY.
Why is visualization not sufficient to properly identify bacteria? Bacteria have a limited set of shapes. Identification is only needed in clinical specimens. Many unrelated bacteria can share the same shape. Bacteria have a limited set of shapes and many unrelated bacteria share the same shape. Not all bacteria can be seen with a light microscope.
Since bacteria only have a variety of forms and many unrelated bacteria have the same shape, visualization alone is insufficient to accurately identify germs. The right response in this case is option D.
Bacteria only come in a few different forms. Only clinical specimens need identification. The shapes of several unrelated bacteria can be similar.
While visualization has a place in the data science skill set, it's crucial to be aware of its limitations, including the halo effect and the fact that human vision is imperfect.
However, images can also be changed to fit the story the author wishes to tell. Images that are misleading and unclear have the potential to distort data and influence key choices in the wrong way. Deceptive data representations have lasting repercussions including misunderstandings and a decline in confidence.
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Why Is Photosynthesis Important for All Organisms?
Answer:
It is the source of energy and food for all organisms. It releases oxygen into the environment which is utilised by organisms.
during the process of meiosis, part of one chromosome detaches and reattaches to a different chromosome in the cell of an individual. which of the the following is true regarding this mutation?
In a person's cell, meiosis occurs when a portion of one chromosome separates and attaches to another chromosome. The individual's progeny might inherit the mutation.
When a chromosome segment dissociates (detaches) and reattaches to a different, nonhomologous chromosome, the process is known as translocation. Depending on how the placements of genes in relation to regulatory sequences are altered, translocations can be beneficial or have disastrous consequences.
Notably, particular translocations have been linked to schizophrenia and a number of malignancies. When two nonhomologous chromosomes exchange chromosome regions, a reciprocal translocation occurs in which no genetic information is gained or lost.
a chromosomal abnormality in which a chromosome segment separates and reattaches in the opposite direction.
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During the process of meiosis, part of one chromosome detaches and reattaches to a different chromosome in the parent cell of an individual. Which of the following is TRUE regarding this mutation?
- The mutation could get passed on to the individual's offspring.
- The mutation could cause cancer in the individual.
- The mutation will affect only somatic cells in the individual.
- The mutation could affect protein production in other cells of the body.
What fissure separates the occipital lobe from the cerebellum?
The fissure that separates the occipital lobe from the cerebellum is called the transverse cerebellar fissure or horizontal cerebellar fissure.
The cerebellum is a structure located at the lower back of the brain, beneath the occipital lobe. The cerebellum is responsible for coordinating movement, balance and posture. The transverse cerebellar fissure separates the cerebellum into two hemispheres and helps to distinguish it from the occipital lobe which is responsible for processing visual information and lies above the cerebellum. The cerebellum is connected to the brainstem by three pairs of cerebellar peduncles, which are the superior, middle and inferior cerebellar peduncle.
The fissures are helpful to demarcate the various regions of the brain that then make study of the organ easier.
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These structures are found in the nucleus of dividing cells, they appear X-shaped
chromosome structures are found in the nucleus of dividing cells, they appear X-shaped. they contain sister chromatids.
Chromosomes are thread-like structures found inside the nucleus of animal and plant cells. Protein and one molecule of deoxyribonucleic acid make up each chromosome (DNA). DNA, which is passed down from parents to children, includes the precise instructions that give each kind of living thing its individuality. Because chromosomes are cell structures or entities that are heavily stained by several vibrant dyes employed in study, scientists gave them this moniker. Histone-like proteins, which resemble spools, keep DNA firmly wound around them thanks to the specific structure of chromosomes. DNA molecules would be too lengthy to fit inside cells without this packing.
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The actions of which of the following enzymes are responsible for ensuring that chromosomes do not decrease in length with every round of replication?(A) telomerase(B) DNA ligase(C) DNA polymerase(D) helicase(E) primase
Telomerase enzymes are crucial for ensuring sure chromosomes do not shorten with each round of replication.
A chromosome is just a lengthy DNA molecule that contains some or all of an organism's genetic material. The extremely long thin DNA strands in most chromosomes are wrapped by packing proteins; the most essential of these proteins in eukaryotic cells are the histones. Telomerase is the enzyme responsible for telomere length maintenance through the insertion of guanine-rich repetitive sequences.
Telomerase activity is seen in gametes, stem cells, and tumor cells. Inhibiting the catalytic function of telomerase, and therefore the preservation of telomere length, will aid in the limiting of tumor cell reproduction capacity. However, the production of a momentarily active enzyme by intracellular activation or stimulation of telomerase component expression results in telomerase activation or telomere extension, which can be employed to reverse degenerative alterations.
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Think about a farm ecosystem. Draw and label the energy transformations that might occur on the farm. Remember, all energy should start from the sun and end up as heat somehow. Also, cow manure could be used as a biofuel inside the farm house. The picture should show at least three different energy conversions from the cow manure inside the home.
Answer:
I am not able to draw images, but I can describe the energy transformations that might occur in a farm ecosystem.
Solar energy: The sun is the primary source of energy for the farm ecosystem. The energy from the sun is used to power the growth of plants, which are then used to feed the animals on the farm.
Chemical energy: The energy stored in plants is converted into chemical energy through photosynthesis. This chemical energy is then used by the animals as they consume the plants.
Mechanical energy: The energy stored in plants and animals is used to perform mechanical work, such as moving around, growing, and reproducing.
Heat energy: The energy stored in plants and animals is eventually converted into heat energy through metabolism, respiration, and other processes.
Cow manure: Cow manure can be used as a biofuel inside the farmhouse. The cow manure is first converted into methane through the anaerobic digestion process. This methane can then be used to generate electricity through a generator. The heat produced during the generation of electricity can be used to heat the house. The remaining slurry from the anaerobic digestion process can be used as a fertilizer.
In summary, the energy flows from the sun to plants, then to animals, and eventually to heat energy, in the farm ecosystem. Additionally, cow manure can be converted into biofuel and used to generate electricity and heat energy inside the farmhouse.
Baldness is a dominant trait that is influenced by an individual's sex. a man will become bald if he has the genotype bb or bb. a man who is bb will not become bald. a woman will have thinning hair, but not become totally bald, if she is bb. a woman will not become bald, or have thinning hair, if she is bb or bb.
what will be the outcome if a woman who is xxbb produces a child with a man who is xybb?
a
there is a 75% chance that the child will be a female who will have thinning hair.
b
there is a 50% chance that the child will be a male who will become bald.
c
there is a 12.5% chance that the child will be a male who will not become bald.
d
there is a 25% chance that the child will be a female who will not have thinning hair.
Answer:
C. There is a 12.5% chance that the child will be a male who will not become bald. This is because the man is xybb, which means he has one copy of the baldness gene (B) and one copy of the non-baldness gene (b). The woman is xxbb, which means she has two copies of the non-baldness gene. Since the man has one copy of the baldness gene, there is a 50% chance that any male offspring will inherit the baldness gene, and a 50% chance that any female offspring will inherit the non-baldness gene. Therefore, the chances of the male offspring not inheriting the baldness gene (and not becoming bald) is 50% * 50% = 12.5%.
Which of the following gas is released during the process of photosynthesis? A.HydrogenB.NitrogenC.OxygenD.Carbon dioxide
Answer: C. Oxygen
Explanation:
Oxygen is the gas which is released during the process of photosynthesis. It is due to the hydrolysis of water.
[tex]H_{2} O[/tex] → [tex]H^{+}[/tex] + [tex]O_{2}[/tex] (g)
A pea plant will be tall if it has at least one tall allele in its genome. A plant will be dwarf only if it has two alleles for the dwarf phenotypes. What conclusion can be drawn based on this information?
it is during the stage of prenatal development that the developing organism begins to resemble a human being. a. placental b. germinal c. embryonic d. fetal
It is during the fetal stage of prenatal development that the developing organism begins to most clearly resemble a human being. So the correct option is d.
During the fetal stage, the body of the fetus is formed, organs and systems begin to develop, and the fetus begins to move around in the womb.
The fetal stage of prenatal development follows the germinal stage, in which the zygote divides into a blastocyst, which then implants into the uterine wall. In the embryonic stage, the body of the fetus begins to take shape and the major organ systems, such as the circulatory, nervous, and skeletal systems, begin to form.
At the onset of the fetal stage, the fetus is about one inch in length and weighs about one ounce. The fetus will grow rapidly during this stage, with the internal organs and external features such as eyes, ears, and fingers becoming more clearly defined. The fetus will also begin to move around in the womb.
During the fetal stage, the fetus will gain weight at an average rate of half an ounce to one ounce per day. As the fetus grows, its skin begins to thin and becomes more transparent.
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A pea plant is heterozygous for both seed shape and seed color. S is the allele for the dominant, spherical shape characteristic; s is the allele for the recessive, dented shape characteristic. Y is the allele for the dominant, yellow color characteristic; y is the allele for the recessive, green color characteristic. Fill in the Punnett square and tell how many offspring will be in the various genotypes and phenotypes. (35 points)
Alleles randomly split during gamete formation, resulting in various combinations in daughter cells. In this case, the gametes are YS, Ys, yS, and ys.
How do gametes form?Meiosis is the process through which gametes are created. Meiosis is a cell division process that results in the formation of gametes from germ cells. A diploid cell (2n) creates four haploid daughter cells via Meiosis (n). Alleles separate separately during gamete formation, according to the segregation principle. During anaphase I, homologous chromosomes split and travel to opposing poles of the cell, each carrying one of the alleles. This chance occurrence results in various chromosomal configurations in the daughter cells.
Let us now examine the issue.
SsYy plant heter0zyg0us for both seed shape and seed color
The dominant allele S is responsible for spherical form.
The recessive allele s is responsible for the dented form.
Y is the dominant allele and codes for yellow, whereas Ys is the recessive allele and codes for green.
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The intracellular and extracellular fluids are both parts of the ______ environment for cells.
The intracellular and extracellular fluids are both parts of the internal environment for cells.
The intracellular fluid is the fluid which is contained within the cells. The extracellular fluid means that the fluid outside the cells—is divided into that found within the blood and that is found outside the blood; the latter fluid is called as the interstitial fluid. In intracellular fluid the concentration of the sodium ion will be low and the concentration of potassium ions will be high. In extracellular fluid the concentration of the sodium ion will be high and the concentration of the potassium ions will be low.
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reproductive structure called (Asexual Reproduction and Sexual Reproduction)
Answer:
asexual reproductive tungkol sa sex? mga sperm cell maale cell female cell?