When the offspring of a purple color flower and a white color flower were mated among themselves, there were 150 purple and 25 white offspring in the f2 generation. This means that white flower color is due to a ________.

Answers

Answer 1

The white flower color that appeared in the F2 generation is as a result of recessive allele.

What is dominant and recessive alleles?

According Gregor Mendel, the gene comprises of two alleles. One of these allele is dominant while the other is recessive. A dominant allele is an allele that masks the physical expression of another while a recessive allele is an allele that is masked.

According to this question, when the offspring of a purple color flower and a white color flower were mated among themselves, there were 150 purple and 25 white offspring in the F2 generation.

Therefore, The appearance of the white flower color is as a result of the recessive allele in the flower color gene.

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Related Questions

A mutation that occurs in a somatic cell in an organism will most likely be transferred to:_________.

Answers

The transmission of germ-line mutations to an organism's progeny occurs during sexual reproduction and occurs in egg cells (sperm or eggs). In non-reproductive cells, somatic mutations take place;

What does the term "somamic mutation" mean?

a DNA mutation that happens after conception. All body cells, excluding the spermatids (and egg), are susceptible to somatic mutations, which are not passed on to offspring. These changes may, but are not always, the root of cancer or other illnesses.

How does a somatic mutation start?

Throughout an individual's life cycle, somatic mutations take place either spontaneously as just a result of mistakes in the DNA repair machinery or as a direct reaction to stress. They are a typical element of aging. Early-stage mutations can alter the gene line and affect organism development by causing mosaicism.

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An earthworm has 36 chromosomes in each of its diploid cells. how many chromosomes would be in each of its gametes?

Answers

18 chromosomes would be in each of its gametes.

What are chromosomes?

the nucleus of most living cells contains a threadlike structure made of nucleic acids and proteins that carries genetic information in the form of genes.

There are 23 pairs of chromosomes in humans. The chromosome's distinctive structure helps to increase the integrity of the DNA while also keeping it securely packed with histone proteins to fit within the cell. For instance, a single cell's DNA will be 6 feet long when unraveled; from this, it is clear why each cell's nucleus needs to be packaged.

according to the given information:

number of chromosomes: 36

36√2 is 18

18 chromosomes would be in each gamete.

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a researcher is conducting a phylogenetic study of organisms using genea. in several of the species she is examining, she retrieves three different but similar gene sequences using the same primers. what should she conclude from her results?

Answers

Phylogenetic studies using gene A in several species by taking three different but similar gene sequences show that gene A has received gene duplication in several species.

Phylogeny is a description of the classification that shows the kinship relationship of a species with its ancestors and the evolutionary relationship between organisms. The purpose of a phylogenetic study is to determine the classification and conclude the phylogeny from the relevant data by comparing the variable characteristics of organisms.

The phylogenetic relationship of a species can be determined based on mitochondrial DNA sequences. Mitochondrial DNA can generate data quickly and consistently. In several species, phylogenetic studies were carried out by researchers showing three different but similar gene sequences, namely using the same primer. This shows that there has been duplication of genes in some of these species that they have a kinship of the same ancestral species.

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An immune deficiency causes a severe reduction in the amount of mhc-ii expressed on the surface of professional antigen-presenting cells. predict which immune processes will be significantly impacted by this deficiency.
a. true
b. false

Answers

True,  immune deficiency causes a severe reduction in the amount of mhc-ii expressed on the surface of professional antigen-presenting cells. predict which immune processes will be significantly impacted by this deficiency.

In general ,the main function of major histocompatibility complex (MHC) class II molecules is to derive the refined antigens, which are derived primarily from exogenous sources, to CD4(+) T-lymphocytes. we can also say that MHC class II molecules are critical for the initiation of the antigen-specific immune response.

Hence, Major histocompatibility complex (MHC) class I and class II proteins are important to play a key role in the active response of the immune system.

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A researcher is conducting a phylogenetic study of organisms using GeneA. In several of the species she is examining, she retrieves three different but similar gene sequences using the same primers. What should she conclude from her results?
-She has contamination in her experiments and should start over.
-GeneA has undergone a gene duplication in several species.
-GeneA is currently evolving in those species she found different sequences. It will be found as a different sequence in different tissues.
-GeneA has different alleles in some species.
-It is impossible to tell from the given information.

Answers

She has contamination in her experiments and should start over.

In biology, phylogeny is the study of evolutionary history and relationships between or within biomes. These relationships are determined by phylogenetic methods that focus on observed genetic traits such as DNA sequence, protein amino acid sequence, or morphology.

The phylogeny of animals in relation to the evolution of animal organs. This type of diagram allows us to infer the evolutionary relationships of major animal lineages based on the organ level of the tissue.

Phylogeny can be described as the relationship between all organisms on Earth descended from a common ancestor, whether extinct or extant.

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__________ is a highly conserved nucleotide sequence that has been found in developmental regulatory genes in many diverse organisms.

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A homeobox is a highly conserved nucleotide sequence that has been found in developmental regulatory genes in many diverse organisms.

A DNA segment called a homeobox, which is around 180 base pairs long, controls the early development of large-scale anatomical features. For instance, changes to a homeobox may affect the full-grown organism's large-scale anatomical traits. In many single cell eukaryotes, fungi, plants, and animals, homeoboxes are present inside genes that regulate the morphogenesis, or patterning of anatomical development.

As transcription factors with a distinctive protein fold structure that binds DNA to control the expression of target genes, homeobox genes produce homeodomain protein products. Early embryonic development is regulated by homeodomain proteins, which means that mutations in homeobox genes might result in developmental problems.

Hence, homeobox sequence is conserved in various organism.

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Submerged aquatic vegetation (SAV) plays a key role in supporting populations of fish and crabs in the shallow portions of the Chesapeake Bay and the rivers that flow into it. There are many species of underwater plants that make up SAV beds. Use what you know about photosynthesis and cellular respiration to explain why SAV beds are critical to the health of fish and crabs that live in the Chesapeake Bay. Use evidence and scientific reasoning to support your answer.

Answers

The Submerged aquatic vegetation plays a key role is the survival of the fish and crabs due to the by product of photosynthesis such as oxygen.

What is photosynthesis?

Photosynthesis is the process by which green plants make use of green pigment called chlorophyll to manufacture their food through the use of energy from sunlight.

The by product of photosynthesis is oxygen which is in turn used by the aquatic animals such as the fish and crab for the cellular respiration.

Submerged aquatic vegetation is made up of aquatic plants that grow completely under water. They produce oxygen as by product of photosynthesis which is used by aquatic animals for survival.

The Submerged aquatic vegetation can be found in both freshwater and saltwater habitats.

Therefore, the submerged aquatic vegetation plays a key role is the survival of the fish and crabs due to the by product of photosynthesis such as oxygen.

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On Isle Royale, if the moose population is very high, what would you expect to see with regard to other populations?
- Increasing wolf population
- decreasing tick population
- increasing tree ring width
- all of the above
- none of the above

Answers

On Isle Royale, if the moose population is very high, all of these are expected to see with regard to other populations.

The study of genetic variation within and between populations, as well as the evolutionary factors that explain this variation, is known as population genetics. It is based on the Hardy-Weinberg law, which holds true as long as population size is large, mating is random, and mutation, selection, and migration are insignificant.

Population genetics is a branch of genetics that studies genetic differences within and between populations. It is related to evolutionary biology. This branch of biology investigates phenomena such as adaptation, speciation, and population structure. The goal of population genetics is to explain behavioral differences between individuals in a given population. Behavior geneticists work to better understand the genetic and environmental factors that contribute to these differences.

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how does the relation between temperament and life decisions illustrate the gene-environment correlation phenomenon in the nature/nurture debate?

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The relation between temperament and life decisions illustrates the gene-environment correlation phenomenon in the nature or nurture debate because surrounding conditions are able to shape gene expression patterns and thus control phenotypic features.

What is the gene-environment correlation phenomenon?

The gene environment correlation phenomenon is a genetic model that states how gene expression in a particular environment is able to shape the phenotypic features of an organism, i.e. the morphological and or behavioral traits in animals and humans.

The gene environment correlation phenomenon is well known to control the phenotypic expression of quantitative traits such as those associated with behavior (temperament).

Therefore, with this data, we can see that the gene environment correlation phenomenon is able to control the development of quantitative traits such as those associated with the behavior, and therefore a suitable surrounding environment may stimulate to enhance certain types of traits.

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the human body processes and eliminates food waste using the organs of the excretory system. which organelle performs a similar function in humans at the cellular level?

Answers

Waste from the body is processed and expelled through the excretory system. The organelles known as lysosomes carry out this function at the cellular level.

What purpose do lysosomes serve?

The cell's digestive system, which demonstrates autophagy and destroys foreign particles, has been known as the lysosome. The macromolecules are broken down into pieces and subsequently removed from the cell.

Where do lysosomes reside in cells?

As membrane-bound organelles, lysosomes store hydrolytic enzymes and other cellular waste in a space inside the membrane known as the lumen. The structure of a cell's lysosome is depicted in the diagram below. The lumen has a pH between 4.5 and 5.0, which means it is very acidic.

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4. Carrying capacity is a concept that:
A. applies to humans as well as plants and other animals
B. does not depend upon the amount of area in question
C. can be ignored by humans
D. determines the load a bridge can handle

Answers

Carrying capacity is a concept that applies to humans as well as plants and other animals (option A).

What is carrying capacity?

Carrying capacity is the number of individuals of a particular species that an environment can support.

Carrying capacity also describes the number of people, animals, or crops which a region can support without environmental degradation.

This applies to biological species that can be sustained by that specific environment, given the food, habitat, water, and other resources available.

Therefore, it can be said that option A is correct about carrying capacity.

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in the __________ division of the ans, the preganglionic nerve fibers are short, while in the __________ division, the preganglionic fibers are relatively long.

Answers

In the sympathetic division of the ans, the preganglionic nerve fibers are short, while in the parasympathetic division, the preganglionic fibers are relatively long.

What are nerve fibers?

A nerve fiber, also called an axon, is described as a long and slender projection of nerve cells (or neurons) that carry electrical impulses away from the nerve cell body.

In conclusion, neural divergence is extensive in the sympathetic division of the ANS, while in the parasympathetic division, divergence is minimal.

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i need help with this

Answers

Answer:

-cells

-tissues

-organs

-organ systems

Explanation:

Cells are the building blocks of life, so are relatively very small. Tissues are made of cells, and organs are made of tissue. And of course, organ systems are organs working together.

What membranes of the maculae sacculi and utriculi are important in sensing gravity and motion?

Answers

The otolithic membranes of the maculae sacculi and utriculi are important in sensing gravity and motion. The vestibular system of the inner ear has a fibrous tissue called the otolithic membrane.

It is essential for how the brain interprets balance. In addition to measuring the linear acceleration of the body, the membrane also determines whether the head or the body is tilted.

Three pairs of otoliths, which differ in size and form, are present on each fish. Otoliths, which are a component of the fish's inner ear, provide fish the ability to hear, detect vibrations in the water, and sense balance so they may more easily traverse their environment.

Sound waves are converted into mechanical vibrations that excite the inner ear via the tympanic membrane (TM), which divides the middle ear from the external ear.

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ascending pathways conduct sensory information upward toward the brain, typically through a relay chain of 3 successive neurons. the neurons in these sensory pathways are called the first-order, second-order and third-order neurons, respectively. select the true statement regarding first-order neurons in somatosensory pathways.
a. First-order neuron cell bodies reside in a ganglion.
b. First-order neurons have cell bodies in the thalamus.
c. First-order neuron cell bodies reside in the dorsal horn of the spinal cord.
d. First-order neuron cell bodies reside in the anterior horn of the spinal cord.

Answers

The accurate description of first-order neurons in somatosensory pathways is that they are housed in ganglions (option a).

What exactly are neurons? What do they do?

The building blocks of the brain and nervous system, neurons are the cells in charge of receiving sensory information from the outside world, sending motor commands to our muscles, and converting and relaying electrical signals at each stage along the way.

The importance of the neuron

Information is transported throughout the body of an individual through neurons. They aid in the coordination of all vital life-supporting processes by sending electrical and chemical signals. We define neurons and describe their function in this article.

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which of the following is not a shape seen in prokaryotes? a) spheres b) rods c) spirals d) icosanedrals

Answers

Answer:D

Explanation:A. Spheres B. Rods C. Spirals D. Icosahedrons

What is meiosis and mitosis simple definition?

Answers

Mitosis is a type of cell division for somatic cells and for the asexual reproduction of unicellular eukaryotic cells.

Meiosis is the type of cell division for the production of gametes in sexual reproduction . Meiosis is the process through which egg and sperm cells are formed. Mitosis is a necessary step for life.

A cell copies all of its components, including its chromosomes, and separates to generate two identical daughter cells during mitosis.

Meiosis is a form of cell division that occurs in sexually reproducing organisms and results in a reduction in the number of chromosomes in gametes (the sex cells, or egg and sperm).

Mitosis is the division of a single cell into two identical daughter cells (cell division).

Mitosis is a kind of cell division that occurs in somatic cells as well as in unicellular eukaryotic cells during asexual reproduction. Meiosis is a sort of cell division that occurs during sexual reproduction to produce gametes.

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When are tides highest?

Answers

Answer:Once a month at perigee (the point in the orbit of the moon or a satellite at which it is nearest to the earth.)

Explanation:when the moon is closest to the Earth, tide-generating forces are higher than usual, producing above average ranges in the tides. About two weeks later, at apogee, when the moon is farthest from the Earth, the lunar tide-raising force is smaller, and the tidal ranges are less than average.

Answer:Once a month, at perigee, when the moon is closest to the Earth, tide-generating forces are higher than usual, producing above average ranges in the tides. 

Some parasitic flatworms have a very complicated life cycle with more than one host. Infer why this might be adaptive.

Answers

Flatworms have suction device and hook rings on their heads to attach themselves to a host. Parasitic flatworms absorb nutrients directly from the host's digestive system with their suction. So that flatworms can live in several hosts during their cycle.

Flatworms belong to the phylum Platyhelminthes. There are more than 25,000 species in the flatworm phylum.

The life cycle of this flatworm is quite long, starting from:

The egg (which usually comes out with feces) → then becomes a ciliated larva (miracidium) → water snail → sporocyst → redia → cercaria → leaves the snail's body → attaches to aquatic plants → forms cysts → consumed by certain animals → enters the intestine → enters the liver → until adulthood.

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tiny, one-celled organisms that are neither plants nor animals. they are involved in infectious disease and decay. they live nearly everywhere on planet earth, including in the human body.
a. bacteria
b. DNA
c. genome
d. immunity

Answers

Bacteria are tiny, single-celled creatures. Bacteria, which are vital to world's ecosystems, are present almost everywhere.

How do bacteria work?

Bacteria are little, one-celled organisms. The world's ecosystems depend on bacteria, which are found practically everywhere. Some species can survive in the environment with high pressure and temperatures. In fact, it's thought that the number of bacterial cells in the human body exceeds that of human cells. The majority of the body's bacteria are beneficial, though not entirely harmless. The cause of disease is one of a relatively small number of organisms.

Microorganisms called bacteria occur in variety of forms. They could appear as spirals, rods, or spheres. It is true that certain bacteria are pathogenic, or harmful, and cause disease, but some bacteria are also helpful. For instance, the bacteria in our gut and digestive tract are essential for our bodies to function normally. Bacteria make up a staggering 10 times more cells in our bodies than human cells, which is an amazing fact. Bacteria are also essential to biotechnology. They are essential in that they will help the body regain its ability to maintain health.

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which cells will most likely display mutations that could potentially result in cancer?

Answers

Oncogenes are mutated genes that cause cells to grow out of control and can lead to cancer.

An oncogene is a mutated gene with the ability to cause cancer. A proto-oncogene is a gene that regulates normal cell division before it becomes mutated into an oncogene.

An oncogene is a gene that has the potential to cause cancer. In tumor cells, these genes are often mutated, or expressed at high levels. When critical functions are altered or malfunctioning, most normal cells will undergo a programmed form of rapid cell death.

They regulate cell proliferation, growth, and differentiation, as well as cell cycle and apoptosis control. Growth factors, growth factor receptors, signal transducers, transcription factors, apoptosis regulators, and chromatin remodelers are all products of oncogenes.

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The chart shows the path reactants take to become products.


Which statement best describes the chart?

Heat was removed from the activation energy to create the product.
Heat was added to create the product.
The products have less energy than the reactants.
The products have the same energy as the reactants.

Answers

The statement which best describes the chart is Heat was added to create the product.

What is activation energy?

In the potential energy diagram, the height of the hill between the reactants and the products represents the activation energy for a reaction. The activation energy barrier is another name for the activation energy of a reaction. It is denoted by Ea.

How to reach the activation energy barrier?

Molecules become more energetic and move more quickly as the temperature rises. Therefore, the likelihood that molecules will be moving with the required activation energy for a reaction to occur upon collision increases with increasing temperature.

The statement which best describes the chart is Heat was added to create the product.

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Answer: B.Heat was added to create the product.

Why did the big bang not produce a significant proportion of elements heavier than helium?

Answers

Because the temperature was too low for heavier elements to form by the time helium could live, the Big Bang does not yield heavier elements.

A bottleneck in the Big Bang nucleosynthesis, the lack of a stable nucleus with 8 or 5 nucleons, led to the production of extremely few nuclei of elements heavier than lithium. The quantity of lithium-7 created during BBN was likewise constrained by this deficiency of bigger atoms. It took many minutes for elements to develop in the early cosmos because it was too hot. Only a brief window of time remained for elements to develop before it became too cold to continue nucleosynthesis.

In light of this, we can conclude that the Big Bang did not result in the formation of heavier elements since, by the time helium could live, the temperature had dropped too low for heavier elements to develop.

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Why is it vital that your friend reviews his credit report? how soon would you recommend he does so and why?

Answers

Answer:

10 days after checking the first time

Explanation:

why is the ratio of non-synonymous to synonymous nucleotide substitutions used as a measure of selection for a given locus?

Answers

This ratio of non-synonymous to synonymous nucleotide substitutions is used to estimate how quickly gene sequences are evolving.

Since a Ka/Ks ratio of 1 is a defining characteristic of sequences that code for proteins, a gene can be assumed to be functional. A synonymous nucleotide substitution has a lower degree of nonsynonymous substitution. Comparing the rates of fixation of those two types of mutations provides a great tool for understanding the mechanisms since synonymous (silent) mutations are essentially invisible to natural selection while nonsynonymous (amino-acid-replacing) mutations may be under severe selective pressure. Protein sequences are altered by nonsynonymous mutations, which are commonly exposed to natural selection. The same is true for nonsense mutations that cause CDSs to contain premature stop codons (coding sequences).

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the cambrian explosion occurred 541 million years ago. this event resulted in an increase in _____.

Answers

541 million years ago, there was the Cambrian explosion. Multicellular organism diversity increased as a result of this event.

What happened after the Cambrian explosion?

More than 500 million years ago, the Cambrian explosion took place. It was a time of rapid proliferation of many types of life on Earth and the beginning of the appearance of the majority of the major animal groupings in the fossil record.

What purpose did the Cambrian boom serve?

The Cambrian epoch, which spanned roughly 542-488 million years ago, is known for having experienced the fastest emergence of new animal phyla and animal variety in Earth's history. This period, frequently referred to as the Cambrian explosion, is thought to have given rise to the majority of the animal phyla that are still extant today.

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Explain the relationship between photosynthesis and cellular respiration.

Answers

In the process of photosynthesis, oxygen and glucose are produced from water and carbon dioxide. As a consequence of consuming glucose, the plant creates oxygen.

What relation in photosynthesis and cellular respiration?

Cellular respiration results in the conversion of oxygen and glucose into water and carbon dioxide. Carbon dioxide, water, and ATP, which is converted into energy, are all byproducts of the process.

During photosynthesis, glucose, and oxygen are created from carbon dioxide and water; while, during respiration, glucose, and oxygen are created from carbon dioxide and water.

Therefore, In the ecosystem, photosynthesis and respiration are complementary reactions.

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the auditory sensory axons of the____branch of cranial nerve number____terminate in the cochlear nucleus within the brainstem.

Answers

The auditory sensory axons of the vestibulocochlear branch of cranial nerve number 8 (CN VIII) terminate in the cochlear nucleus within the brainstem.

The vestibulocochlear nerve, also known as the auditory nerve or auditory vestibular nerve, is a mixed nerve that carries sensory information from the inner ear to the brain. It is divided into two branches: the vestibular branch, which carries information about balance and spatial orientation, and the cochlear branch, which carries information about sound.

The cochlear branch contains the axons of sensory neurons that are responsible for detecting sound waves and transmitting this information to the brain. These axons terminate in the cochlear nucleus, a region of the brainstem that plays a crucial role in processing auditory information.

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What energy does burning hydrocarbons release?

Answers

When hydrocarbons are burned with oxygen present, carbon dioxide and water are produced. Carbon monoxide may also be released during the burning of hydrocarbons if there is an imbalance between the amount of carbon and oxygen present.

The energy of the bonds in hydrocarbons is larger than the sum of the energies of the bonds in carbohydrates, hence burning a hydrocarbon will release more energy than burning an equivalent amount of carbohydrates.

The chemical bonds that bind the carbon and hydrogen atoms together are where energy is stored. Bonds are broken and new bonds are created when the atoms are rearranged during the combustion event, releasing energy.

Currently, the primary source of energy for the production of electric power, heating, and transportation is the burning of hydrocarbons.

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samford micro lab final what types of conditions promote bacterial growth? what types of conditions inhibit bacterial growth?

Answers

Bacteria thrive in an environment that is warm, moist, protein-rich, pH neutral, or slightly acidic. Unfavorable conditions for bacterial development can be brought on by extremes in temperature, pressure, and pH.

The term FATTOM stands for food, acidity, time, temperature, oxygen, and moisture, which are all prerequisites for bacterial development.Because bacteria can not thrive in acidic environments, it is crucial to store low-acid items (such as many vegetables, fruits, cereals, etc.) correctly. A further defense against bacterial growth is to store food in low-oxygen conditions.

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