Mitochondrial DNA (mtDNA) is the right tool for the willpower of the foundation of populations due to its high evolutionary importance. ancient mitochondrial DNA retrieved from museum specimens, archaeological unearths and fossil remains can offer direct evidence for population origins and migration procedures.
They play an essential role in the law of cell metabolism, apoptosis, and oxidative strain control. Mitochondrial DNA (mtDNA) has many special functions such as an excessive replica range in cellular, and maternal inheritance, and a high mutation charge that has made it attractive to scientists from many fields.
The mitochondria DNA is circular and without histone proteins, unlike the DNA present inside the nucleus that is linear and is wound around a histone protein middle. Mitochondrial DNA is a double-stranded molecule. turned into this solution useful.
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TRUE/FALSE,meiosis is a mean to make gametes, and is the reason each parent passes one copy gene to their offspring
True.
The purpose of meiosis is to produce gametes or sex cells. During meiosis, four daughter cells are produced, each of which is haploid (containing half as many chromosomes as the parent cell).
What is Meiosis?
Meiosis contains two distinct cell divisions, which means that one parent cell can produce four gametes (eggs in females, sperm in males). In each round of division, cells go through four stages: prophase, metaphase, anaphase, and telophase.
Before entering meiosis I, a cell must first go through interphase. This is the same interphase that occurs before mitosis. The cell grows, copies its chromosomes, and prepares for division during the G1 phase, S phase, and G2 phase of interphase.
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examine a culture of rotifers, drawing what you see. label the corona, and describe its movement. add a tiny amount of the red-celled alga rhodomonas. can you observe the capture of cells by the corona?
Rotifers are tiny aquatic creatures with a crown-like structure known as a corona. They possess a variety of reproductive strategies, including both sexual and asexual reproduction.
What is Corona?
The corona is made up of small, hair-like structures that spin around the rotifer's body, creating a current that captures food particles and transports them to the organism's mouth. When a trace amount of the red-celled alga Rhodomonas is added to the culture, the corona can be seen engulfing the alga cells as they approach the rotifer's mouth.
What is the red-celled alga Rhodomonas?
Rhodomonas is a species of cryptomonads. It is distinguished by its red colour, the square-shaped plates of its inner periplast, a short furrow ending in a gullet, and a distinctively shaped chloroplast closely associated with its nucleomorph.
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Can YOU curl your tongue up on the sides?
Scientists Debunk Familiar Tongue-Rolling Lore | HuffPost Impact
We are pretending that tongue-curling in humans is a dominant genetic trait.
Suppose a man who is Tt for tongue-curling marries a woman who is also Tt for this trait. What are the possible genotypes and phenotypes of their children, and the percent chance for each?
Genotype Phenotype (curl or no curl) Percent Chance (number only)
TT
Tt
tt
Word Bank:
2525curl750100no curlcurl50
Rolling, folding, spinning, adjusting, and turning of the tongue are all included in the definition of tongue twisting.
What is tongue twisting.?The tongue is a muscle organ in humans that can detect food flavors and is utilized for verbal communication. Genetics has an impact on every facet of a person.
The shape or movement of one's tongue is also influenced by their unique gene makeup. The ability to twist one's tongue is neither a benefit nor a drawback.
Not a genetic disorder or disease, tongue-twisting is an individual's distinctive use of his tongue. An allele of the gene known as the dominant allele is responsible for the ability to roll one's tongue.
Therefore, Rolling, folding, spinning, adjusting, and turning of the tongue are all included in the definition of tongue twisting.
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which of the following best explains why sickle-cell disease is a good candidate for studying genetic diseases?
Sickle-cell disease is a good candidate for studying genetic disease because ; to see if gene therapy can improve survival and prevent symptoms and complications associated with sickle cell disease, as well as to weigh the risks of gene therapy against the potential long-term benefits for sickle cell patients.
What is Genetic Disease?
Genetic diseases, also known as genetic disorders, are caused by changes in DNA, which are known as genetic mutations. Changes in the instructions for making a protein are caused by genetic mutations. Genetic mutations cause changes in the instructions for making a protein. These changes can prevent or alter protein function, as well as prevent protein production entirely. Genetic mutations are mostly inherited from our parents, which means that one or both of your parents passed them down to you.
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Phosphate was a limiting factor to algae growth in lake washington near seattle. In 1960s, eutrophication of the lake was largely addressed by limiting levels of?.
In 1960s, eutrophication of the lake was largely addressed by limiting levels of phosphorus.
The largest of the three significant lakes in King County, Lake Washington is also the second-largest natural lake in the state of Washington. In the 1960s, phosphorus concentrations were found to be 70 parts per billion. That was more than enough to support the large growth of algae that discoloured the water and washed up on the shore where it rotted and smelled.
Between 1941 and 1963, the lake received increasing amounts of secondary treated sewage, which led to eutrophication and a decline in the lake's water quality. Eutrophication, often known as the overgrowth of algae and big aquatic plants, is a process that can be brought on by an excess of phosphorus. High phosphorus levels can also cause algal blooms, which can create toxins that are dangerous to both human and animal health.
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Classify the key elements of replication, transcription, and translation according to the process to which they belong.RNA polymeraseexons and intronsribosomesprimersokazaki fragmentsDNA polymeraseaminoacyl-tRNAspromotercodons and anticodons
Using the existing strand as a template, DNA polymerase joins nucleotides to create a new strand. By using RNA polymerase, transcription involves creating new mRNA from DNA base sequences. On ribosomes, polypeptides are created during translation.
There are three steps to the process: commencement, elongation, and termination. After the DNA is created, it goes through a process called transcription to create messenger RNA, which is later used to produce proteins. The initial stage in unlocking a cell's genetic code is transcription.
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the triads of a muscle fiber consist of __________.
The triads of a muscle fiber consist of the T-tubule surrounded by two terminal cisternae of the sarcoplasmic reticulum.
What is Muscle fiber?Muscle fiber may be characterized as large multinucleated cells. These cells most obviously express histological features in cross-striations. The cytoplasm of these cells may contain many myofibrils that significantly include tiny cylinders consisting of bundles of myofilaments.
The sarcoplasmic reticulum is a special structure in muscle cells that holds and releases calcium. Due to this, the function of muscle fiber may become more specific as compared to other fibrous cells.
Therefore, the triads of a muscle fiber consist of the T-tubule surrounded by two terminal cisternae of the sarcoplasmic reticulum.
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What is sea farming?
Answer: Aquaculture (sea farming) is the cultivation of aquatic animals and plants in controlled environments.
Explanation:
Seawater farming addresses the severe lack of freshwater and undesirable soil conditions for agricultural activities in coastal regions. Saltwater, instead of freshwater, can be used to directly support a wide range of sustainable agricultural activities and enrich the soils in the coastal regions.
Answer: um well its kinda like ----- when animals and plants are controlled environments of farming seaweed and shellfish well it's like water based farming
Explanation: hope it helps
All of the following are true about viruses, except
Select one:
a. viruses are cellular and can reproduce on their own.
b. viruses have genetic material, either DNA or RNA
c. viruses can evolve.
d. viruses cannot metabolize carbohydrates.
e. viruses are very small, requiring an electron microscope to see individual particles.
Answer: A
Explanation:
Viruses are cellular and can reproduce on their own.
What are Viruses?A piece of nucleic acid that has been protein-coated is what makes a virus an infectious microbe (either DNA or RNA). A virus has to infect cells in order to use the components of the host cell to manufacture copies of itself because it is unable to reproduce on its own.
The majority of the time, a virus damages the host organism by killing the host cell. Well-known examples of viruses that cause human disease include AIDS, COVID-19, measles, and smallpox.
People can contract viruses. But in reality, a vast range of creatures are infected by viruses. For instance, certain viruses can infect bacteria while others can infect fungi.
Therefore, Viruses are cellular and can reproduce on their own.
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What amino acid sequence would be produced from the dna sequence tac ccc gca agt?.
According to the genetic code, the amino acid sequence that would be produced from the DNA sequence tac ccc gca agt is Tyrosine - Proline - Alanine - Serine.
What is the genetic code?The genetic code is a universal code encrypted in the DNA nucleotide sequence that specifies the amino acids that will be added to the protein during translation.
The genetic code is composed of triplets of nucleotides called codons that indicate specific amine acids during polypeptide synthesis, for example, the codon gca encodes for the amino acids alanine, while ccc encodes for proline.
Therefore, with this data, we can see that the genetic code is a code based on the linear order of nucleotides that are present in a given DNA nucleotide sequence and indicates the amino acids that will be added to the protein during the translation process in the cell.
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Which of the following statements regarding enzyme function is false?
a. Enzymes do not show specificity for the substrates they bind.
b. Enzymes emerge unchanged from the reactions they catalyze. c. An enzyme binds to its substrate at the enzyme's active site. d. Enzymes are proteins. e. An enzyme's function depends on its three-dimensional shape.
The statement that is false regarding enzyme function is enzymes do not show specificity for the substrates they bind. The correct option is a.
What are enzymes?The difference in energy levels between substrates and products of the reactions determines whether the reactions are spontaneous or non-spontaneous in nature.
Because enzymes do not alter the energy levels of substrates and products, they cannot transform a non-spontaneous process into a spontaneous one. Enzymes only reduce the activation energy of a process, causing the non-spontaneous reaction to proceed at a faster pace.
Therefore, the correct option is a, Enzymes do not show specificity for the substrates they bind.
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list three major biological functions of triacylglycerols
Triglycerides, cholesterol, and other critical fatty acids—what the medical community refers to as fats that the body cannot produce on its own—store energy, keep us warm, and safeguard our vital organs. They serve as messengers, facilitating the work that proteins do.
What role do triacylglycerols play in biology?Abstract. Due to their high energy density, triacylglycerols (TAGs) are the primary energy storage resource in mammals. Their hydrophobicity and substantially reduced state both play a role in this.
Quiz: What are the main roles of triglycerides in the body?Triglycerides serve a variety of purposes, including the storage of energy, cushioning, thermal insulation, joining of organs, and absorption of some vitamins. Phospholipids play a role in the construction of cell membranes, the breakdown of fats, and the myelin sheaths that surround neurons in the body.
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The following F1 cross is made: BBGg x Bbgg. Which is not a possible outcome in the F2 generation?
`When the cross of BBGg x Bbgg is made then in this situation the gametes that are formed from BBGg are BG,Bg and from Bbgg is Bg,bg are BBGg,BBgg,BbGg and Bbgg. The four outcomes are BBGg,BBgg,BbGg and Bbgg and the homozygously dominant and the recessive is absent.
What is homozygous ?It is the situation in which the same types of gametes are present.
In the cross of BBGg x Bbgg the gametes that are absent will be the homozygous dominant condition and the homozygous recessive as well. BBGg,BBgg,BbGg and Bbgg are the gametes that are all heteroygous.
Heterozygous condition is the condition in which different gametes are present that is different different situation is present and the gametes in the offspring are totally different.
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gluconeogenesis is the conversion of pyruvate to glucose. several cofactors are needed in this metabolic pathway. the overall unbalanced reaction is shown.
The complete equation to produce 1 glucose equivalent:
2Pyruvate + 2NADH + 4ATP + 2GTP ⇒ 1 glucose + 2NAD⁺ + 4ADP + 2PDB + 6P
Gluconeogenesis is the process of synthesizing or making glucose from non-carbohydrate compounds in the body. This process occurs when glucose levels are not available, so the body converts amino acids or glycerol into glucose to then be used as energy for the body.
Glucose will be made from other non-carbohydrate compounds and molecules, such as:
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Which of the following statements about meiosis and mitosis is true?
a) In meiosis II and mitosis, a diploid cell divides.
b) Meiosis II is similar to mitosis in that sister chromatids of each chromosome separate.
c) In mitosis and meiosis I, homologous chromosomes move independently of each other.
d) Each daughter cell produced during meiosis and mitosis is genetically identical to the parent cell.
Sister chromatids of each chromosome separate during meiosis II, which is identical to mitosis in this regard.
The ideal answer is B.
Which of the following statements concerning meiosis and mitosis is true?What is the correct way to describe meiosis and mitosis? While the byproducts of mitosis are all the same, those of meiosis can vary from one another (except for rare mutations).
How do meiosis and mitosis differ from one another?Meiosis creates cells that are genetically distinct from the parent and have half the amount of DNA as mitosis, which creates two genetically identical "daughter" cells from a single "parent" cell. The majority of cells in the body constantly undergo mitosis, while some do it more frequently than others.
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intrinsic reflexes are inborn and serve to protect the body. reflexes are neural pathways composed of five basic components. reflex arcs Riding a bike and driving a car are examples of learned reflexes are rapid, predictable, and involuntary motor responses to stimuli.
Rapid, dependable, and uncontrollable motor reactions to stimuli are known as reflexes.
Neural pathways called reflex arcs are made up of five fundamental parts.
Learned reflexes include things like riding a bike and operating a vehicle.
The body has inherent reflexes that function as a defense mechanism.
What are intrinsic reflexes?
The quadriceps reflex is an example of an intrinsic reflex. In contrast, extrinsic reflexes have receptors and effectors that are located in separate organs (e.g., the oculovestibular reflex).
Reflexes are actions made up of comparatively basic behavioral segments that typically happen as quick, immediate reactions to certain stimuli that are specifically connected with them.
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Label the structures found within a skeletal muscle. Muscle fiber Myofibril Sarcoplasmic reticulum Filaments Perimysium Sarcolemma Epimysium Endomysium Fascia Epimysium Endomysium Fascia Tendon Fascicle Reset
The structures found within a skeletal muscle.
muscle fiberPerimysiumactinTropomyosinTroponinmyosinWhat is skeletal muscle?Skeletal striated muscle tissue is formed by bundles of very long, multinucleated cylindrical fibers known as skeletal striated muscle fibers. These bundles are surrounded by the epimysium, an outer membrane of dense connective tissue. Septa of very thin connective tissue, called perimysium, depart from these membranes, through which blood vessels enter the muscles. They are muscles of voluntary movement.
Myosin is made up of two subunits, light meromyosin and heavy meromyosin. The light meromyosin corresponds to the largest portion of the rod, while the heavy meromyosin is composed of the smallest part of the rod next to the globular projection.
The sarcolemma consists of a cell membrane, called the plasma membrane, and a lining of a thin layer of polysaccharide material, with many thin collagen fibrils.
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T/F. Local zoning ordinances are generally designed to prevent nuisance by segmenting a municipality into zones—industrial, residential, and so forth.
True, Local zoning ordinances are generally designed to prevent nuisance by segmenting a municipality into zones - industrial, residential, and so forth
A municipality's land use regulations are formally categorised in the zoning ordinance. It also establishes the legal foundation. The zoning legislation specifies the sorts of land uses that are authorised and makes these distinctions. Zoning refers to municipal or local ordinances or rules that specify the permitted and prohibited uses of real estate in certain geographic areas. For instance, zoning regulations might restrict the commercial or industrial use of property to stop the construction of oil, manufacturing, and other sorts of companies in residential areas. At order to verify that a business establishment is permitted in the desired location under the Comprehensive Land Use Plan, Zoning Ordinance, and other applicable zoning and land use ordinances, zoning clearance must be obtained prior to applying for a business permit.
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Muscle contraction depends on ATP hydrolysis. During periods of intense exercise, muscle cells rely on the ATP supplied by three metabolic pathways: glycolysis, mitochondrial respiration, and the phosphagen system. Figure 1 shows the rates at which the three metabolic pathways produce ATP following the start of an intense period of exercise.
Which of the following correctly uses the data to justify the claim that the phosphagen system is an immediate, short-term source of ATP for muscle cells?
ATP production by the phosphagen system increases and decreases rapidly following the start of the exercise period.
ATP production by the phosphagen system increases and decreases rapidly following the start of the exercise period.
What is ATP?
Adenosine triphosphate (ATP) is the cellular energy source for usage and storage. An adenine-based nitrogenous base, ribose sugar, and three serially bound phosphate groups make up the nucleoside triphosphate structure of ATP. When macromolecules like proteins and lipids are moved into and out of the cell, ATP is an essential component of the process. Active transport mechanisms are able to move these molecules over a concentration gradient because the hydrolysis of ATP supplies the energy needed. The source of energy in a cell is ATP. Cells are able to safely store energy in tiny packets and only release it when absolutely necessary. In other words, ATP bridges the gap between activities that need energy, like synthesis and those that release energy, like the breakdown of food.
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When the concentration of ___
in tissue fluid is too high, intracellular fluid moves into the extracellular fluid compartment.
sodium ions
cesium particles
soluble fibers
immature osteoblasts
When the concentration of sodium ions in tissue fluid is too high, intracellular fluid moves into the extracellular fluid compartment.
What is Intracellular fluid?
The fluid that resides within of cells is called intracellular fluid. The fluid located outside of cells, or extracellular fluid, is known as interstitial fluid. Extracellular fluid is classified into two categories: fluid found in blood and fluid found outside blood.
Phosphorus (PO4 P O 4 ), magnesium (Mg2+ M g 2 +), and potassium (K+) are a few of the major electrolytes found in intracellular fluid.
Therefore, Option A is correct.
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cam plants keep stomates closed in the daytime, thus reducing loss of water, they can do this because they
Crassulacean acid metabolism (CAM) plants keep stomata closed in the daytime to minimize photorespiration during photosynthesis.
Some plants are able to adapt in dry environment, such as cacti and pineapples. These plants use Crassulacean acid metabolism (CAM) to minimize photorespiration. This process is different with C3 and C4 plant.
Photorespiration is a pathway that competes with the Calvin cycle. It occurs as the rubisco acts on oxygen rather than carbon dioxide. Photorespiration causes sugar synthesis is decrease.
To prevent photorespiration, CAM plants open their stomata at night, allowing carbon dioxide to diffuse into the leaves. This carbon dioxide then converted to organic acid (malate). This organic acid will be stored until the next day. In daylight, CAM plants don’t open their stomata because the organic acid are go out of the vacuole and broken down for releasing carbon dioxide and enter Calvin cycle. It maintains a high concentration of carbon dioxide.
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modern research indicates biology can influence behavior.
Lack of skills frequently leads to problem behaviors.According to recent study, biology can affect behavior.According to recent research, environmental factors can affect how genes develop.
That each of the above is a component of an evaluation of functional behavior?An FBA often involves data gathering and observation, looking at: The setting in which the behavior happens;The ABCs are the antecedents, the behavior, and the consequences of the behavior, as well as any additional factors that might be influencing the actions.
What are the behavior's two primary purposes?Social attention, access to material goods or favored activities, evasion of demands and activities, and sensory sensitivity are the four basic purposes of behavior
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If you help me I will give brainliest
Answer:
I can't see the picture please repost the picture
Match each function with the correct cytoskeletal structure.
A. Motor Proteins
B. Microtubles
C. Intermediate filaments
D. Actin
The cytoskeleton of a cell is made up of microtubules, actin filaments, and intermediate filaments. These structures give the cell its shape and help organize the cell's parts. In addition, they provide a basis for movement and cell division.
What are their functions?Each function with the correct cytoskeletal structure are as follows:
A.)Motor proteins:-Uses ATP to move vesicles within cells. Use ATP to bend filaments.
B.)Microtubles:-Chromosome sorting during mitosis.
C.)Intermediate filaments:-A strong structural protein that maintains cellshape.
D.)Actin:- Structural protein used to move cells. Structural protein used in muscle contraction.
What is ATP?Adenosine triphosphate (ATP) is the source of energy for use and storage at the cellular level. The structure of ATP is a nucleoside triphosphate, consisting of a nitrogenous base (adenine), a ribose sugar, and three serially bonded phosphate groups.
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Which region shows the population of cells with the highest amount of dna per cell?.
Compare the peaks in regions A, B, and C of the histogram for the control sample. Region C displays the cell population with the most DNA per cell.
The correct response is G1 for region A, S for region B, and G2 for region C. In addition to biology, region c displays the cell population with the most DNA per cell. As the S phase develops, the amount of DNA in each cell varies, giving the S phase cells a range of fluorescence intensities. Most cells are present during the G1 phase of the cell cycle.
Comparing the peaks in the control sample's histogram's regions A, B, and C, we can conclude that region C represents the cell population with the highest DNA content per cell.
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Your question is incomplete. Please find the complete question below.
In the control sample, compare the peaks in the histogram in regions A, B, and C.
Which region shows the population of cells with the highest amount of DNA per cell?
Region C
In gene expression, the goal of translation is to A. make a mRNA nucleotide sequence from a specific gene. B. make a DNA nucleotide sequence from a specific gene. C. read codons and incorporate corresponding amino acids into a growing polypeptide chain D. make a new gene that will be passed on to the next generation
In gene expression, the goal of translation is to read codons and incorporate corresponding amino acids into a growing polypeptide chain (option C).
What is gene expression?Gene expression is the transcription and translation of a gene into messenger RNA and thus into a protein.
It is the process by which information from a gene is used in the synthesis of a functional gene product that enables it to produce end products, protein or non-coding RNA, and ultimately affect a phenotype, as the final effect.
Gene expression consists of two processes namely;
TranscriptionTranslationTranscription is the synthesis of RNA under the direction of DNA. It is the process by which the information in a strand of DNA is copied into a new molecule of messenger RNA (mRNA).
On the other hand, translation is the process whereby a strand of mRNA directs assembly of amino acids into proteins within a ribosome.
Therefore, option C is the correct description of the goal of translation.
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TRUE/FALSE. the middle pleistocene humans are morphologically diverse and broadly dispersed throughout time and space.
Ancestors of contemporary humans. Morphologically, Middle Pleistocene people are. various and far scattered over both time and space.
During the Pleistocene, did people exist?Throughout the Pleistocene, the hominid line continued to develop. About 100,000 years ago, a first anatomically modern arose. As human populations grow and spread into new areas, many experts believe that early humans had an influence on other animal species through hunting.
How did the Pleistocene epoch develop?The most recent ice ages, or events of global cold, occurred during the Pleistocene. During chilly epochs, a large portion of the temperate zones of the planet was alternately covered by glaciers, emerging during warmer interglacial epochs when the glaciers receded.
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use the following model of a eukaryotic transcript to answer the question. e1-4 refer to the exons, and i1-3 refer to the introns in the pre-mrna transcript. 5' utr e1 i1 e2 i2 e3 i3 e4 utr 3' suppose that exposure to a chemical mutagen results in a change in the sequence that alters the 5' end of intron 1 (i1). which of the following results might occur? question 6 options: premature transcriptional termination loss of e1 loss of the gene product inclusion of i1 in the mrna
The exposure to a chemical mutagen results in a change in the sequence that alters the 5' end of intron 1
5' UTR E1 E2 E3 E4 UTR 3'
inclusion of I1 in the mRNA
Asymmetric RNA Splicing The first genes with alternative RNA splicing were discovered in the 1970s.
When multiple combinations of exons are joined to make the mRNA, a procedure called alternative RNA splicing enables diverse protein products to be synthesized from a single gene. The frequency of various splicing alternatives is controlled by the cell as a way to regulate the production of different protein products in different cells or at different stages of development.
Alternative splicing can be haphazard, but more often it is controlled and acts as a mechanism of gene regulation. In eukaryotes, alternative splicing is widely recognized as a frequent process of gene control. One estimate place the proportion of human genes that are expressed as numerous proteins by alternative splicing at 70%.
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How can a change in one cycle affect all of the other cycles?
A change in one cycle can affect the other cycles because most ( if not all ) cycles on Earth are related in one way or another.
How are natural cycles related ?The natural cycles on Earth are related to each other because they often draw their energy from the same source which is the atmosphere, the oceans, and the Earth's crust . They also draw their energy from the sun as well .
For instance, the carbon cycle is related to the water cycle because water helps in the transportation of carbon to other areas where organisms can use it . It also helps in the weathering of rocks that contain carbon, thereby releasing it .
This means that a change in one cycle can affect the other cycles in nature if the change interferes with the way that cycle relates to other cycles .
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in correct order, from external to internal, the tissues of the testes include: cremaster muscle tunica vaginalis tunica albuginea septa
The correct order is dartos, tunica vaginalis, tunica albuginea, septa, scrotal cavity, cremaster
small pedunculated bodies may undergo torsion.
The testis lies outside the body cavity in the scrotum where it is maintained at a temperature 2–3°C lower than the body temperature. Failure to descend into the scrotum causes failure of spermatogenesis.
Blood supply
The testis and epididymis are suspended by the spermatic cord containing their arterial blood supply, venous and lymphatic drainage and nerve supply. The testis develops in the L2/L3 vertebral region and drags its vascular, lymphatic and nerve supply from this region to the scrotum.
Testicular and renal pain may mimic each other. Testicular pain hence can radiate to the loin and renal pain often is referred to the scrotum.
The arterial supply is via the testicular artery which is a branch of the abdominal aorta given off just below the level of origin of the renal arteries. The venous drainage is via the pampiniform plexus of veins which become a single testicular vein before terminating in the inferior vena cava on the right side and the left renal vein on the left side.
The lymphatics of the testis and epididymis accompany the blood vessels and drain into the para-aortic lymph nodes. Upper abdomen must therefore be palpated when searching for secondary lymphatic spread from a carcinoma of the testis.
The spermatic cord
The spermatic cord contains the ductus deferens (vas deferens), the testicular artery and the pampiniform plexus of veins. Other structures in the cord are the cremasteric artery, the artery to the vas, nerve to the cremaster, sympathetic nerves and the lymphatics of the testis and epididymis. Because of its passage through the inguinal canal the spermatic cord acquires three coverings, i.e. the external spermatic fascia from the external oblique aponeurosis at the superficial inguinal ring, the cremasteric muscle and fascia from the internal oblique, and the internal spermatic fascia from the transversalis fascia at the deep inguinal ring.
Varicocoele is a condition caused by dilated tortuous pampiniform plexus of veins. The condition, which may be felt as a ‘bag of worms’ while palpating the scrotum, is more commonly present on the left side. As the left testicular veins drain into the left renal veins it may be a sign of a malignant tumour in the left kidney.
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