Phenotypes that exhibit continuous variation are often the result of ________.

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Answer 1

Phenotypes that exhibit continues variation are often the result of multifactorial inheritance.

What is phenotypes?

Phenotype refers to any of the  individual's observable by  traits, such as a  height, eye color and definitely blood type. A person's I'd always phenotype is determined by both theirs genomic makeup also known as  (genotype) and the  environmental factors.

Multifactorial inheritance, in  by  which alleles contribute to  in an additive manner to the  the phenotype along  with their environmental and  influences, is an automatically by  accepted mechanism for producing to the  phenotypes exhibiting to the  continuous variation. results from the interaction and  of a number of gene expression loci specifying by a  given trait.

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Can someone help me solve this? please show steps!


32^(2x)=16^(2x+8)

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Answer:

790.573%

Explanation:

motor control is initiated by lower motor neurons and transmitted to upper motor neurons by interneurons situated within the cns.

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Lower motor neurons start the motor control process, which is then passed to upper motor neurons by interneurons located inside the central nervous system (CNS). Skeletal muscle fibers are in direct communication with upper motor neurons, which cause them to contract.

What is CNS and PNS?

The central nervous system is composed of the brain and spinal cord (CNS). It is one of the two elements of the nervous system. The second part is the peripheral nervous system, which consists of nerves connecting the brain and spinal cord to the rest of the body.

The peripheral nervous system is one of the two components that make up the nervous system in bilateral animals; the other component is the central nervous system. Outside of the brain and spinal cord, the PNS is composed of nerves and ganglia.

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Inducible and repressible systems are similar in that ______a. In both systems the regulatory molecules function by binding the operator.b. both systems block transcription through the presence of regulatory protein.c. both systems usually control biosynthetic pathways. d. both systems usually control catabolic pathways.e. both systems are unique to prokaryotes.

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Both genomes have contiguous groups of functionally linked genes. Additionally, both operons share common regulatory components that control the regulation of their genes.

Inducible and repressible systems: what are they?

Some operons are inducible, which means that a specific tiny molecule can activate them. Others are repressible, which means they are switched on by default, and can be turned off by a single molecule.

What distinguishes repressible operons from inducible operons?

Normal transcription of an inducible operon does not occur. To activate transcription, an inducer molecule must either activate the activator protein in a positive inducible operon or inactivate the repressor protein in a negative inducible operon.

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Which structure secretes bile?

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The liver secretes bile. The gallbladder then stores it.

Which of the following correctly explains the importance of coral reefs to living things?
a. they are breeding grounds for many land animals
b. they catch particles of dirt and a sand that build up the shorelines
c. they have the ability to filter out the salt from the water for food-making
d. they provide homes for marine animals which makes marine food chains active

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Answer:D

Explanation:

Its D because if does provide homes for living things

caffeine is known to alter transmembrane movement of ca 2. what are two possible sites at which caffeine is acting? (again, this is a nerve and muscle preparation.)

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Caffeine is known to alter the transmembrane movement of Ca⁺², the two possible sites at which caffeine is acting are the voltage-gated Calcium channel and the adenosine receptors.

It is well known that caffeine has the ability to modify the transport of Ca⁺² across membranes. On the basis of this knowledge, the voltage-gated calcium channel is a possibility for functioning as the binding site for caffeine

The adenosine receptors that are in the body are targeted by caffeine's effects. The inhibition of the activity of these receptors leads to the activation of neurotransmitter-containing vesicles. The neurotransmitter is released into the synaptic cleft by the vesicles in question. Dopamine and glutamate are two of the neurotransmitters that are made accessible after adenosine receptors have been inhibited. 

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label the structure of the antibody and the antigen

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Labels of the structure of the antibody and the antigen are as; (1) Variable region, (2) Constant region, (3) Disulfide bond, (4) Constant lite chain, (5) Constant heavy chain, (6) epitope.

The Y-shaped antibody has two huge identical heavy chains (H, which includes polypeptides of 50,000 Da or more) and two little identical light chains (L, which contains polypeptides of 22,000 Da). 5 is a heavy chain while 3 is a light chain. In the photo, di-sulfide bridge 3 connects light chains to heavier chains. Light and heavy chains have variable and constant regions. The upper variable section has a top antigen binding site and varies structure based on an antigen. Thus, variable region 1 has an antigen binding site at the top. The bottom constant structure is labelled 2. Antigen's antibody-binding epitope. The epitope is thus indicated by label 6.

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Concept Map: Muscle Structural Organization

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Part A of the muscle structural organization  the Concept Map by describing how skeletal muscles are organized. A single skeletal muscle might consist of hundreds or even thousands of muscle fibers that have been bundled together and covered in connective tissue.

What is epimysium?

The epimysium, a sheath of connective tissue, encases each muscle. The muscles are surrounded and divided by fascia, connective tissue that is not part of the epimysium. The perimysium, a layer of connective tissue, surrounds the clusters of muscle fibers called fascicles that make up each muscle. Each fascicle contains many units of distinct muscle fibers that are encased in an endomysium, a connective tissue sheath. Muscle fibers are specialized cells that make up the muscular system. Its ability to contract is their main characteristic.

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Why does skeletal muscle look striated?

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The repeating bands of a proteins myosin and actin that are found along the lengths of myofibrils give skeletal muscle tissue its striated appearance.

Class 9: Why then does skeletal muscle appear striated?

Due to the presence of two distinctive proteins in alternating light and dark bands, skeletal muscles seem striated.

What causes the skeletal muscle fibers to seem striated?

The sarcomere has two types or myofilaments at the microscopic level: thick myosin and actin (thin).These myofilaments have a recurring pattern that resembles dark and light bands, giving skeletal muscle its striated appearance.

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using your understanding of genetic variation and evolutionary processes, why does the african human population have more genetic diversity than european or asian populations? choose all that apply.

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African populations exhibit significant levels of genetic diversity and phenotypic variation since modern humans are thought to have originated there and have adapted to a variety of environments.

The variety of various inherited features within a species is referred to as genetic diversity. There would be many people with a wide range of diverse traits in a species with significant genetic diversity. For a population to adapt to changing surroundings, genetic variety is essential. The ability of a population to adjust to changes will be lowered if a highly chosen and low diversity strain—such as fish populations raised for aquaculture—is transplanted into a wild population. One of the best examples of genetic variety is the various breeds of dogs that have been created by selective breeding. There are more than 50,000 different types of rice.

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Destroys harmful substances or worn-out cell parts

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It destroys harmful substances or worn-out cell parts is a cell organelle lysosome. it is present in the eukaryotic cell and helps the cell protect itself from the virus or other harmful molecules.

What is the function of the lysosomes in the cell?

The lysosome that is present in the cell has maintained an acidic environment because of the active transport of hydrogen from the cytoplasm to the lysosome. Due to its acidic nature, it can degrade the harmful pathogens in the cells and also degrade worn out cells, such as old mitochondria, and in this way, the lysosome protects the cell.

Hence, lysosomes destroy harmful substances or worn-out cell parts.

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Which of the following scenarios would MOST LIKELY lead to a change in DNA that would increase genetic variation in the individual’s offspring?

A) An A - T base pair changes to a C - G base pair during mitosis in a liver cell of a young man.
B) A G - C base pair changes to an A - T base pair randomly in a young woman's egg cell during meiosis.
C) UV radiation mutates the skin cells of a pregnant mother, changing two G bases to T bases.
D) A virus inserts nine base pairs into a lung cell of an elderly man.

Answers

The scenario that would likely  lead to a change in DNA that would increase genetic variation in the individual’s offspring is: A G - C base pair changes to an A - T base pair randomly in a young woman's egg cell during meiosis. Option B.

What is meant by genetic variation?

Genetic variation is the variance in DNA sequences among members of a population. Germ cells, such as sperm and eggs, as well as somatic (all other) cells, are subject to variation.

Genes take on various shapes, or alleles, as a result of genetic variation. People with blue eyes, for instance, have one allele of the eye color gene, whereas those with brown eyes will have a different allele of the gene.

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What did Rosalind Franklin contribute to the effort to identify the structure of DNA?

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Rosalind Franklin of King's College London used X-ray crystallography to create pictures of DNA, a notion previously proposed by Maurice Wilkins.

Franklin's photographs enabled James Watson and Francis Crick to develop their renowned two-strand, or double-helix, model.

Rosalind Franklin was instrumental in the discovery of DNA's double helix structure. Her contribution to science was substantial, despite the fact that her work was overlooked.

She researched X-ray diffraction technology and applied it to the study of DNA. This X-ray diffraction image of a DNA molecule served as the inspiration for Watson and Crick's DNA model.

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when an f1 plant undergoes meiosis, what gamete types will it produce, and in what proportions? view available hint(s)for part a one character in peas that mendel studied was yellow versus green seeds. a cross between a homozygous yellow line (yy) and a homozygous green line (yy) will result in f1 plants that are heterozygous (yy) for this trait and produce yellow seeds. when an f1 plant undergoes meiosis, what gamete types will it produce, and in what proportions? 3434 y 1414 y 1212 yy 1212 yy 1212 y 1212 y 1414 y 3434 y 1212 yy 1212 yy

Answers

The gametes produced during meiosis in an F1 generation plant are 1/2 Y and 1/2 Y.

F1 generation:    Parents – YY yy

                            Offspring: – Yy

Yellow seeds will be produced when a homozygous yellow line (YY) crosses with a homozygous green line (YY), resulting in F1 plants that are heterozygous (Yy) for the same trait. If F1 generation is crossed, then option B is true.The gametes produced will have either the dominant allele or the recessive allele since the characteristic in the F1 generation is heterogeneous. The dominant allele is carried by one of the two gametes, and the recessive allele is carried by the other. Accordingly, 50% of the gametes will have the recessive allele, whereas the other 50% will carry the dominant allele.The progeny of a cross between an organism that is homozygously dominant for one trait and a body that is homozygously recessive for another is known as the F1 generation. As a result, the specific characteristic is heterozygous in all of the F1 offspring of this hybrid. These heterozygous alleles will segregate correctly because, following meiosis, only one allele remains in the gametes.One type of the gamete will possess a dominant allele when the genotype of Mendel's F1 generation is heterozygous, or when the two alleles of a pair are different. The other type, however, will have a recessive allele.A heterozygotic organism goes through meiosis to create gametes with an equal frequency of the allele, meaning that half of the gametes will be recessive, and the other half will be dominant.

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how does the structure of the protein hemoglobin contribute to its function?

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The structure of the protein affects the function that the heme group serves. The heme group is responsible for binding oxygen molecules in hemoglobin.

Why is hemoglobin low, and what does that mean?

Your levels of hemoglobin may fall if an illness or condition impairs your body's capacity to make red blood cells. Because your body isn't getting enough oxygen when your hemoglobin level is low, you need take action.

Low hemoglobin: what causes it?

Taking iron supplements and making dietary changes are the typical treatments for this kind of anemia. Receiving iron via a vein may be necessary in this case for certain persons. It is necessary to identify the source of the bleeding and stop it if blood loss—other than that associated with menstruation—is the cause of iron deficiency.

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arrange the principal forms of rna in order of abundance from least abundant to most abundant. question 9 options: trna, rrna, mrna mrna, rrna, trna trna, mrna, rrna mrna, trna, rrna rrna, trna, mrna

Answers

mRNA, tRNA, rRNA is the principal forms of rna in order of abundance from least abundant to most abundant.

What RNA is the least prevalent?mRNA is the least common kind of RNA in a normal cell. The RNA that conveys genetic data copied from DNA is called messenger RNA, or mRNA.Formerly thought to be the primary structural constituent of ribosomes, rRNA has been discovered to be a catalytic component for protein synthesis. It makes up around 80% of the RNA in the cell, making it the most prevalent kind. There are two subunits in rRNA: a big and a small one.Because it codes for and produces all of the proteins in cells, ribosomal RNA, also known as rRNA, is the most prevalent kind of RNA.

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site of enzymatic breakdown of phagocytized material

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LYSOSOMES are the location of phagocytized material's enzymatic breakdown and the source of cell autolysis.

Proteins, nucleic acids, carbohydrates, and lipids can all be broken down by the variety of enzymes found in lysosomes, membrane-enclosed organelles. Lysosomes serve as the cell's digestive system, breaking down substances taken in from the outside and breaking down unused parts of the cell. Lysosomes are typically pictured as thick, spherical vacuoles, however due to variances in the substances that have been taken up for digestion, they can exhibit significant size and shape diversity. Thus, lysosomes are morphologically varied organelles that are united by the process of digesting intracellular substances.

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: during methyl-directed mismatch repair the strand is cleaved, because it is the strand. choose one: a. methylated, newly synthesized b. methylated, parental c. unmethylated, newly synthesized d. unmethylated, parental e. none of the other choices is correct.

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The mechanism known as Recognition of Nicks allows the cell to determine which strand of DNA is the original (or unmutated) strand during mismatch repair.

In this context, the term "mismatch repair of DNA" (Deoxyribonucleic Acid) refers to the body's mechanism for detecting faults that may occur during DNA copying and recombination.

Additionally, it aids in the restoration of various DNA damage.

When damage has occurred, the cell uses a process called identification of Nicks to determine which DNA strands are intact and which have errors during the Mismatch Repair process.

A Ligase is produced during Nick recognition, helping the Protein Complex that actually accomplishes the recognition to develop.

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suppose human activities that influence the carbon cycle came to a complete stop. use the information provided in the figure to predict the net effect on global carbon cycling.A) Carbon cycling would be brought into balance so that it moves at equal rates through all compartments.B) Carbon cycling would be shifted toward an increase in deposition in sediments and fossil fuels and a decrease in inorganic carbon dioxide levels.C) Carbon cycling would be shifted toward an increase in outgassing of carbon dioxide from ocean waters and a decrease in carbon levels in living plant biomass.D) Carbon cycling would be shifted toward an increase in dissolution of carbon dioxide into ocean waters and a decrease in carbon levels in living plant biomass

Answers

Carbon cycling would be shifted toward an increase in deposition in sediments and fossil fuels and a decrease in inorganic carbon dioxide levels.

Option B is correct

What impact has human activities had on the carbon cycle?

On the carbon cycle, human actions have a significant impact. Significant amounts of carbon are released into the atmosphere by burning fossil fuels, altering how land is used, and using limestone in concrete.

What impact do people have on the carbon cycle quizlet?

Burning fossil fuels and cutting down trees both have an impact on the carbon cycle. A lot of extra CO2 is released into the environment via manufacturing emissions and car exhausts. Despite the fact that today's cars are less polluting, more cars mean more CO2 emissions!

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light passes through the entire thickness of the neural layer of the retina to excite the photoreceptors.

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This is true that light passes through the entire thickness of the neural layer of the retina to excite the photoreceptors.

The retina is a layer of nerve tissue that has the thickness and consistency of wet cigarette paper. The retina's neurons are organised in 3 major layers, which are separated by 2 intermediate layers, the primary function of which is to connect the different neurons. Retina is an important component of eyesight. The layer at the very back of your eyeball is called the retina.

The neurons in the deepest layer begin processing light first. These neurons are photoreceptors, which are the only retinal cells capable of converting light into nerve impulses. The bipolar neurons in the second layer and the ganglion neurons in the third layer receive these impulses from the photoreceptor layer, which then transmits them to them.

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the scientists of the bureau of animal industry helped discover that biting parasites called ticks were transmitting a disease to cows and causing texas cattle fever. this discovery later led to tracking down the cause of yellow fever and malaria. since the scientists made this connection, what conclusion is most likely about these diseases? a. yellow fever and malaria are also diseases that are transmitted by biting parasites. b. cows are the source for many diseases, including texas cattle fever, yellow fever, and malaria. c. these diseases pose a risk because they can be found in contaminated meat. d. texas cattle fever could later develop into yellow fever if it was passed to a human.

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The most likely thing about these disorders in my opinion is, Other illnesses spread by biting parasites include yellow fever and malaria.

What development improved the study of animals and increased our understanding of animal diseases?

Because researchers need to understand how biological agents might be introduced into both human and animal food, biosecurity study spans the entire food chain.

Who was the first to document using animal dissection for research purposes?

Aristotle and Erasistratus were among the first individuals to be recorded conducting experiments on nonhuman animals in the writings of the Ancient Greeks in the fourth and third centuries BCE.

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correctly label the following external anatomy of the posterior heart

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The picture following shows the anatomy of the human heart from the posterior view. The posterior means we see the human body from the back side, which means the human heart in this part. The most dominant part of the posterior of the heart is the left atrium.

Blood circulation in the heart is following. Oxygenated blood comes to the heart via the left pulmonary veins, bringing oxygen and nutrients for the body, that go to the left atrium. Then pumped into the left ventricle. After that blood goes to the aorta to be distributed to every part of the body that needed it.

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hemoglobin is a complex protein that contains four polypeptide chains. the normal hemoglobin found in adults, called adult hemoglobin, consists of two alpha and two beta polypeptide chains, which are encoded by different loci. sickle‑cell hemoglobin, which causes sickle‑cell anemia, arises from a single mutation in the beta chain of adult hemoglobin. adult hemoglobin and sickle‑cell hemoglobin differ in a single amino acid. the sixth amino acid from one end in adult hemoglobin is glutamic acid, whereas sickle‑cell hemoglobin has valine at this position.

Answers

GAA and GAG are both potential codons that may be used for the production of glutamic acid.

Codons that encode valine may be produced by making a single-base replacement in the second position of any one of these codons:

GAA————> GUA (Val) (Val)

GAG————> GUG (Val) (Val)

Both of these swaps are considered transversions. However, the sickle-cell phenotype is caused by a mutation in the GUG codon, which is found in the gene that codes for the beta chain of hemoglobin. The wild-type codon, GAG, may be found in this gene.

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the two major components of blood are

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Red blood cells and plasma make up most of the blood.

What is blood explain?

Both liquid and solid components make up blood. The liquid portion of the body, plasma, is made up of water, salts, and protein. Your blood contains more than 50% plasma. Red blood cells, white blood cells, and platelets make up your blood's solid portion. Red blood cells transport oxygen from your lungs to your tissues and organs (RBC).

Why blood is red?

Red blood cells contain the protein hemoglobin, which carries oxygen. Hemoglobin absorbs oxygen in the lungs, giving blood its vivid red color.

Which organ makes blood?

The bone marrow.

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___________ are where molten magma rises to just underneath the surface of Earth, creating a bulge or volcanic activity

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Because of the high pressure inside the earth, molten magma rises to just beneath the earth's surface, creating a bulge or volcanic activity as the lava comes out of the earth.

What is the lava?

When there is high pressure and temperature inside the earth, it is expelled in the form of lava. A volcanic eruption occurs, and the lava has a high temperature and can spread from the origin to several miles, depending upon the eruption.

Hence, because of the high pressure inside the earth, molten magma rises to just beneath the earth's surface, creating a bulge or volcanic activity as the lava comes out of the earth.

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Which of the following is not directly involved in translation?

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DNA is not directly engaged in translation during the process. DNA is first converted to RNA to create mRNA, which is then translated to create the amino acid chain.

In order to begin translating, ribosomes self-assemble on the strands of mRNA. The smaller subunit binds to the RNA, and the bigger subunit serves as the location where the tRNA attaches. Three separate areas, A, P, and E, make up the bigger component. The DNA molecule binds to the A site and leaves through the E site. Until the entire chain of amino acids is produced, this process continues. RNA also goes by the name transfer RNA. Its structure resembles a clover leaf. Three loops are found in it.

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In which direction does Earth rotate? (the subject is earth science)

A: eastward around its axis
B: in an ellipse around the Sun
C: counterclockwise around the Sun
D: from north to south around its axis

Answers

Earth rotates at eastward around its axis.

Which Way Does Earth Rotate and Why?Actually, there isn't a single correct response; it all depends on where on Earth you are. If you were floating above the earth and looked down at the North Pole, it would appear that the earth was rotating counterclockwise. The rotation is said to be clockwise when observing the South Pole from underneath the Earth. Because Earth revolves from west to east, the sun "rises" in the east and "sets" in the west, which helps to explain this phenomena. Just as the day in North America is about to break, picture yourself staring down at Earth from the sun.

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put the steps of sexual development in order as they occur in a normal xy male.

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Sexual development steps sequentially as it occurs in a normal XY male:

SRY is expressed and induces SOX9SOX9 is expressed and induces the development of testesTestes secrete testosteroneTestosterone binds the androgen receptor (AR) in presumptive genital cells.The AR-testosterone complex translocates to the nucleus.The AR-testosterone complex binds DNA sequences, and target genes are expressed.External genitalia are masculinized

In the 4-5 week embryo, the coelamic epithelial projections form the gonadal ridges. Week 6 occurs the migration of primordial germ cells to the gonadal mountains which form the gonads. The gonads are in an independent stage and have multiple potentials (bipotential), meaning they can form testes or ovaries.

The development of the gonads differs depending on the direction or constitution of the sex chromosomes. The 46XY embryo contains TDF (Tests Determining Factor), which is the product of a gene found on the short arm of the Y chromosome. TDF contains the SRY (Sex Determining Region on the Y chromosome) gene, which plays a role in determining gonadal development (TDF = SRY).

46 XY embryo contains TDF, gonadal epithelium develops into Sertoli cells or sustentacular cells, Leydig cells/interstitial cells (stroma), and seminiferous tubules (medulla). The 46 XX gene SRY embryo is missing, so the gonads develop into ovaries.

Testicular development (7 weeks) and testicular structure (8 weeks). 9 weeks, the Leydig cells differentiate into testosterone (peak at 15-18 weeks). Sertoli cells contain proteins: AMH/MIF/MIS which function to suppress the development of the muller ducts (so that the fallopian tubes, uterus, and the upper 2/3 of the vagina are not formed).

Complete the question and see the picture.

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salmonella, listeria, escherichia coli o157:h7, and campylobacter are the bacterial foodborne illnesses of particular interest since they are the ones most often associated with

Answers

Vegetable Row Crops (such as leafy included because, among other reasons, most foodborne Campylobacter) were associated with Escherichia coli E. coli O157 infections the most frequently.

What is the main factor behind food-borne illnesses?

The top five risk factors that lead to outbreaks of foodborne illness most frequently are:

incorrect hot/cold storage temperatures for possibly dangerous foods.

inappropriate cooking temps.

tools and equipment that are filthy or polluted.

employee hygiene and health issues.

untrustworthy food sources

What type of bacterium causes foodborne disease the most frequently?

One of the most typical causes of foodborne sickness in the US is a variety of bacterium called Campylobacter. Most Campylobacter foodborne disease cases are sporadic and not associated with outbreaks.

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how might the daily experiences of people contribute to the belief the earth's species do not change

Answers

Like all living things, humans rely greatly on other species, and the extinction of one species can have a profound effect on many others.

What impact do people have on the evolution of other species?A range of 'contexts', such as hunting, harvesting, fishing, agriculture, medicine, climate change, pollution, eutrophication, urbanization, habitat fragmentation, biological invasions, and emerging/disappearing diseases, have been documented as examples of this human-induced current evolution.When we contract the flu virus or fight it off, for example, evolution is at work in our daily lives. Some of our most urgent global health issues are also influenced by evolution. For instance, the human immunodeficiency virus (HIV) develops more quickly than the immune system can keep up.Like all living things, humans rely greatly on other species, and the extinction of one species can have a profound effect on many others.

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4. if a curve with a radius of 95m is perfectly banked (no friction) for a car traveling at 88km/h, (a) what is the angle of the banking? (b) what must the coefficient of static friction be for a car traveling at 115km/h around the same turn? Which of these would be an example of a DDoS attack?A. An extortion attempt where hackers threaten to reveal names and social security information stolen from medical records databasesB. Overloading a popular social networking site with inbound messages in order to shut down access to the siteC. Launching a targeted phishing campaign on a department of defense or other surveillance network.D. Stealing proprietary data directly from mobile phones using a distributed network of difficult-to-trace onlineservices.E. Launching tough-to-track click-fraud efforts Which statement makes an accurate comparison of the motions for objects C and D? what post treatment instructions are given to the patient on the completion of a varnish application? which action would the nurse take to manage continuous urinary catheter irrigation for a patient whose urine is bright red and contains clots? a 0.50 kg book is being pushed on a horizontal table. the force pushing the book is 6n and the frictional force between the book and the surface has magnitude f which of the following procedures is least likely to be completed before the balance sheet date?a. Confirmation of accounts payableb. Observation of merchandise inventoryc. Assessment of control riskd. Identification of related parties represent(s) cognitive shortcuts or biases that are used to simplify the process of making decisions. a nurse has just finished placing a nasogastric tube into a patient for the purposes of administering feedings. what should the nurse do first? which of the following is a true statement?question 21 options:therapists should only treat clients of their own racial and ethnic type.therapists should avoid issues of race and ethnicity unless the client initiates discussion of these topics.therapists should openly engage clients in an open discussion of race and ethnicity.therapists should avoid issues of race and ethnicity even if the client initiates discussion of these topics. which of the following statements about compounds is true? which of the following statements about compounds is true? a substance that cannot be broken down into simpler substances. a substance composed of two or more elements in fixed, definite proportions. a substance that is not as common as pure elements. a pure substance that has variable composition throughout. none of the above the rudimentary hind legs of a living python and the fully functional legs of other living reptiles are pls help me quick!!! a(n) ____ is responsible for coordinating the activities of several departments. when assets are exchanged and the transaction lacks commercial substance, which of the following occurs? (select all that apply.) which of the following was not identified as one of the motivations that people have for helping others? Compare Atlantic Records and Motown, the two most successful R&B record companies. How did their philosophies of producing and promoting the R&B genre differ? What factors made these two recording companies so successful and influential in the music industry? Which of these is the measurement of risk for a collection of stocks for an investor ? A beta B . efficient market C . expected return d. portfolio beta specify the number of protons, neutrons, and electrons in the neutral atom copper-64. which of the following statements regarding testamentary trusts is correct? i. a testamentary trust is a trust that takes effect during a lifetime. ii. a testamentary trust can be revoked by the testator any time before death. iii. assets transferred to a testamentary trust avoid probate.