Viruses are totally reliant on their biological hosts for energy production and protein synthesis because they lack ribosomes, mitochondria, or any other organelles.
A virus contains how many ribosomes?The majority of viruses (>99%) only had one ribosomal protein gene (exception: 8 uncultivated viral contigs had two; Supplementary), which is obviously insufficient for viruses to assemble functioning ribosomes on their own.
Are there cytoplasm and ribosomes in viruses?Viruses don't include any of the components you often associate with cells, despite the fact that some highly developed viruses appear to be fancy. They lack mitochondria, ribosomes, and nuclei. Even without cytoplasm, certain viruses exist.
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Which of the following is NOT produced by meiosis?
a. an egg, or ovum
b. a liver cell
c. a sperm cell
d. All of the given choices are produced by meiosis.
The process of meiosis does NOT result in which of the following liver cells
Cell division known as meiosis results in the production of four gamete cells and a halving of the parent cell's chromosome count. Sperm and egg cells must be created throughout this phase in order to reproduce sexually. In asexual reproduction, meiosis does not take place. Gametes are created during meiosis, a process (eggs and sperm). Cell division is all that occurs during mitosis, but at the other hand. Meiosis, also known as reduction division, is the process by which a germ cell divides into four zygotes, or sperm cell, each of which has half as many chromosome as the parent cell and is produced by two nuclear fission reactions of the nuclear.
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39) which of the following represents the order of increasingly higher levels of organization of chromatin? a) nucleosome, 30-nm chromatin fiber, looped domain b) looped domain, 30-nm chromatin fiber, nucleosome c) looped domain, nucleosome, 30-nm chromatin fiber d) nucleosome, looped domain, 30-nm chromatin fiber e) 30-nm chromatin fiber, nucleosome, looped domain
the following represents the order of increasingly higher levels of organization of chromatin : nucleosome, 30nm chromatin fiber, looped domain.
Chromatin is a DNA and protein mixture that forms the chromosomes discovered in the cells of humans as well as other higher organisms. Many proteins, specifically histones, package the humongous quantity of DNA in a genome into an extremely compact form that can fit inside the cell nucleus.
Because of its staining properties, the complex of DNA and protein is known as chromatin (from the Greek chroma, "color"). In addition to the proteins involved in DNA packaging, chromosomes are associated with numerous proteins required for gene expression, DNA replication, and DNA repair.
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Earth has an abundant supply of water and it is essential for human beings to live. More than half of an adult body mass is water. One of the important places water is found is in blood. Blood transports nutrients like glucose throughout the body. What property of water is most important in allowing glucose to be dissolved in blood?.
Answer: Water is an excellent solvent.
Explanation:
Blood that contains 92% water is referred to be plasma. Water functions primarily as a solvent in the plasma. It carries and rapidly dissolves things.
Water exhibits cohesive behavior.
Cells use sugars as a source of energy and as the foundation for other biological substances. Glucose, sometimes referred to as blood sugar, is an example. Due to the numerous polar OH groups that are connected to its six carbons, glucose is a tiny (6 carbons) molecule that dissolves readily in water.
C. Water is an excellent solvent. is the property of water that is most important in allowing glucose to be dissolved in the blood.
The term "plasma" refers to blood, which is composed of 92 percent water. Water's primary function in the plasma is that of a solvent. It easily transports and dissolves substances within it. Hence. Choice C is correct.
Because moderation of temperature will not fulfill the blood's transportation function, Option A cannot be considered. Because water's expansion or compression does not aid in blood transportation, Option B cannot be considered.
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(complete question)
Earth has an abundant supply of water and it is essential for human beings to live. More than half of an adult body mass is water. One of the important places water is found is in the blood. Blood transports nutrients like glucose throughout the body. What property of water is most important in allowing glucose to be dissolved in blood?
A. Water is able to moderate temperature well.
B. Water expands as it freezes.
C. Water is an excellent solvent.
D. Water exhibits cohesive behavior.
apoptosis is a term describing the process by which cells stop dividing and die. it is a normal part of an organism’s life cycle. apoptosis is carefully controlled by enzymes within the cell. what would happen if the genes used to synthesize these enzymes were mutated?
If the genes used to synthesize these enzymes were mutated. These cells may continue to divide unchecked, resulting in tumor growth.
During development, apoptosis gets rid of cells, gets rid of cells that could be cancerous or infected with a virus, and keeps the body in balance.
Apoptosis is intervened by proteolytic compounds called caspases, which trigger cell demise by severing explicit proteins in the cytoplasm and core. Caspases are present in all cells as inactive precursors known as procaspases. These procaspases typically become active when they are cleaved by other caspases, triggering a proteolytic caspase cascade.
A p53 protein that is less effective at controlling cell proliferation is the result of these mutations. In particular, cells with damaged or mutated DNA cannot undergo apoptosis. DNA damage can therefore accumulate in cells. These cells may continue to divide unchecked, resulting in tumor growth.
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Determine the statement that accurately describes what creates Earth seasons.
A. Earth's seasons occur as a 23.5° orbit occurs during a 365 day revolution around the Sun.
B. Earth's seasons occur due to a 23.5° axial tilt toward or away from the Sun during a 365 day revolution around the Sun.
C. Earth's seasons occur as a 23.5° orbit occurs during a 365 day rotation around the Sun.
D. Earth's seasons occur due to a 23.5° axial tilt toward or away from the Sun during a 365 day rotation around the Sun.
Seasons are caused by the fact that the Earth is tilted on its axis by 23.5°. The tilt's orientation with respect to space does not change during the year.
Answer:
The statement that accurately describes what creates Earth's seasons is: B. Earth's seasons occur due to a 23.5° axial tilt toward or away from the Sun during a 365 day revolution around the Sun.
Explanation:
Earth's axis is tilted at an angle of approximately 23.5° relative to its orbit around the Sun. As Earth orbits the Sun, the tilt of the axis causes different parts of the Earth to receive different amounts of solar energy. This results in the seasonal variations in temperature and daylight that we experience on Earth.
During the summer months, the North Pole is tilted toward the Sun, causing the Northern Hemisphere to receive more direct sunlight and experience longer days and warmer temperatures. During the winter months, the North Pole is tilted away from the Sun, resulting in shorter days and cooler temperatures in the Northern Hemisphere. The opposite is true for the Southern Hemisphere, where the seasons are reversed.
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What are the 3 processes that result in genetic recombination?
Genetic recombination is the physical breakage, exchange, and rejoining of two DNA molecules.
The transfer of genetic material between distinct organisms, also known as genetic shuffling, results in offspring with distinct characteristics from both parents. This process is referred to as genetic recombination. During eukaryotic meiosis, gene recombination can produce a new set of genetic information that can be passed from one parent to the next. In eukaryotes, genetic recombination involves the pairing of homologous chromosomes during meiosis.
Recombination can also take place during mitosis in eukaryotes, typically involving the formation of two sister chromatids following chromosome duplication. In this instance, there are no new allele combinations because the sister chromosomes are typically identical. During meiosis and mitosis, similar DNA molecules recombinate (homologous sequences). During meiosis, homologous non-sister chromosomes pair up, resulting in recombination between non-sister chromatids.
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How does cardiovascular endurance prevent injury?
Cardiovascular endurance includes strength training that improves the body alignment. Strength training includes fluid movements that promote excellent body alignment, hence reducing injury risk.
How does muscular endurance prevent injury?Improving cardiovascular endurance can make it easier to carry out your daily tasks. When one increases stamina, that means increasing your ability to maintain correct form and balance. Hence, you decrease weaknesses that can lead to injury.
Physical fitness can reduce the risk for and resilience to accidental injuries. For example, stronger muscles and better balance means that one is less likely to slip and fall. Stronger bones means that you are less likely to suffer bone injuries should you take a tumble.
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What is the formula for population distribution?
Population Density is therefore equal to the number of inhabitants divided by the land area. Land area should be measured in square miles or square kilometers.
What is the demographic breakdown?The spatial pattern caused by population dispersion, agglomeration formation, linear spread, etc. is referred to as population distribution. The number of people per unit area is known as population density. It demonstrates the connection between a population's size and the area in which it resides.
Which formula governs population?Population after n years equals P x (1+R/100)n if growth is constant at R% per year. 3. If the population is declining at a constant rate of R% annually, the population after n years will be equal to P x (1-R/100)n.
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What are 2 examples of a point mutation?
Examples of point mutation are:
Cystic fibrosis is caused by the loss of three nucleotides in the CFTR gene,A single point mutation in the beta haemoglobin gene causes sickle cell anaemia.A point mutation is a genetic mutation that happens when a single nucleotide base in the genome of an organism is altered, added, or deleted. Point mutations have a variety of impacts on the downstream protein product, with somewhat predictable outcomes depending on the mutation's characteristics. Location mutations, as opposed to huge portions of DNA, are alterations in the genetic sequence that occur at a single point along the DNA strand.
A single point mutation (a missense mutation) in the beta-hemoglobin gene, for example, turns a GAG codon into GUG, which produces valine rather than glutamic acid.
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when the body temperature becomes abnormally high, thermoregulatory homeostasis is maintained by: group of answer choices an increase in blood flow to the skin and a decrease in sweat gland activity. an increase in sweat gland activity and blood flow to the skin. a decrease in blood flow to the skin and sweat gland activity. an increase in sweat gland activity and a decrease in blood flow to the skin.
Answer:
An increase in sweat gland activity an increase in blood flow to the skin.
Explanation:
When the body temperature is abnormally high, thermoregulatory homeostasis is maintained by sweating and vasodilation.
Sweating:
This is a mechanism by which the body cools itself through the evaporation of water from the skin .Water is removed in form of sweat. As sweat evaporates, it removes heat from the body, which helps to lower the body temperature by cooling effect.
Vasodilation:
This is a mechanism by which blood vessels in the skin dilate, allowing more blood to flow to the surface of the skin. This helps increase the amount of heat that is dissipated from the body, hence lower the body temperature. Also this increase in blood flow brings more oxygen to the cells of the body, which is important for maintaining proper metabolic function.#SPJ4
Strategies to prevent osteoporosis include all of the following EXCEPT Multiple Choice
O weight-bearing aerobic exercise.
O moderation in the consumption of caffeine.
O adequate vitamin D intake,
O high intake of vitamin A (as retinol). 0
Strategies to prevent osteoporosis except high intake of vitamin A (as retinol) and moderation in the consumption of caffeine.
What are the functions of Vitamin A?Vitamin A is a fat-soluble vitamin and an essential nutrient for humans. It is a group of organic compounds that includes retinol, retinal, retinoic acid, and several provitamin A carotenoids.
Retinol increases skin cell production (proliferation). It helps unclog pores. Retinol also exfoliates your skin and increases collagen production, which can reduce the appearance of fine lines and wrinkles, giving your skin a fresher, plump appearance.
Retinol helps eliminate and reduce signs of aging, improve appearance of fine lines and wrinkles and improve skin texture, which is a must for flawless-looking skin.
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DO.
Description and Function
flat, irregularly shaped cells that make up the top
and bottom layers of leaves
layer that.
on the lower epidermal
move through
internal cells packed together to expose the
greatest number to
inside the Orde
the
where photosynthesis occurs
Note that the description above references the structure of the leaves of a plant where the top and bottom layers of leaves are called the epidermis.
How can we further describe the epidermis?The cells in the epidermis are flat and irregularly shaped, and they help to protect the plant and regulate water loss. The epidermis is located on the leaf's outer surface and comprises a single layer of cells.
Below the epidermis, there are internal cells that are packed together in layers. These cells are called mesophyll and contain chloroplasts, the organelles responsible for photosynthesis. The chloroplasts are located in the mesophyll cells, which are found in the middle of the leaf. The mesophyll cells are arranged in a way that exposes the most significant number of chloroplasts to light, which is necessary for photosynthesis to occur.
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Why is the cell called the structural and functional unit of life Brainly?
The cell has the ability to carry out all the processes of life, such as nutrition, excretion, respiration, etc. Therefore it is called the active part of life. A cell is the smallest unit of life and all living things are made up of cells. So the cell is called a living system.
The body or structure of any living organism is made up of cells. These cells are also responsible for carrying out all the biological functions and regulations in the organism. Because of these features, the cell is called a living and working system.
The cell is the most important part of our body. Each organ in our body is made up of cells. Cells divide and multiply to make new organs and gates.
Cell is called as active living unit due to following reasons-
A cell is known as a living system and function because all living things are made of cells.Cells are very important to carry out various life processes that are required to sustain life on earth.Also, cells provide structure and organization, process nutrients and turn it into useful energy.Most organisms are made up of specialized cells that perform specific functions.Always remember that, Cell is called as a living and functional system because living organisms/organisms consist of cells and all the physiological, biochemical, genetic and metabolic functions are carried out in the cell. It is believed to be the smallest functional unit that can exist independently.
The largest cell in the human body is egg. An ovum is also known as an egg cell and is a cell in the female reproductive system. Ovum is believed to be 20 times larger compared to sperm cells.
Remember, the Cell has the ability to live on its own and can perform all the functions that are important to a living being. A cell can do nutrition, respiration, transport, excretion, and reproduction just like an organism does. Unicellular organisms can exist as independent cells indicating the ability of the cell to exist. Therefore, the cell is called as the basic unit/type of living system. Note that all living things contain the basic unit of life which is the cell.
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explain how this arrangement allows chloroplasts to generate a larger proton gradient across the thylakoid membrane than mitochondria can generate across the inner membrane.
Because chloroplasts have smaller compartments where hydrogen ions are pumped, they create a bigger proton gradient across the thylakoid membrane than mitochondria can across the inner membrane.
The light-induced -proton gradient is required for ATP production across thylakoid membranes. Proton pumping into the thylakoid lumen results in an alkaline stromal pH, which is essential for complete activation of pH-dependent Calvin Benson cycle enzymes.
The chemiosmotic theory describes how ATP is created in chloroplasts. ATP production is connected to the formation of a proton gradient across the membrane of the chloroplast thylakoid, with proton buildup occurring on the inside of the membrane, in the lumen.
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Calculate the doubling time for
India with its growth rate of 1.13%.
Doubling time = 70/growth rate
A. 0.619 years
B. 619 years
C. 61.9 years
The doubling time for India at 1.13 growth rate is 0.619years
What is doubling time?The doubling time is the time it takes for a population to double in size/value. It is applied to population growth, inflation, resource extraction, consumption of goods, compound interest, and many other things that tend to grow over time.
Doubling time is given as 70/ percentage growth rate. The percentage growth rate is 1.13%.
Therefore the doubling time will be calculated as
doubling time = 70/1.13
doubling time= 0.619 years
therefore the doubling time for India is 0.619 years at a growth rate of 1.13%
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What are the stages of meiosis 2 in order?
1st, Prophase ll: Chromosomes condense and the nuclear envelope breaks down if needed. The centrosomes move apart, the spindle forms between them, and the spindle microtubules begin to capture chromosomes.
2nd, Metaphase ll: The paired chromosomes line up.
3rd, Anaphase ll: The chromatids split at the centromere and migrate along the spindle fibers to opposite poles.
4th, Telophase ll and Cytokinesis: The cells pinch in the center and divide again, creating two daughter cells.
What is biology in society?
The goal of Biology in Society is to provide students with a solid theoretical and practical understanding of genetics and developmental biology, evolution, reproduction, and physiology, of animals and plants, and their societal relevance.
What function does biology serve in modern society?The study of life in science is known as biology. It is a natural science with a wide range, yet it has a number of common threads that make it work as a single, cohesive field. all species that process genetically encoded information that can be passed on to future generations.
What does biology in society class entail?In the multidisciplinary major of "Biology & Society," students can study both the biological sciences and the social and ethical ramifications of contemporary biology.
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What does the term dysrhythmia mean?
An abnormal or irregular heartbeat is known as a cardiac dysrhythmia. A dysrhythmia can cause your heart to beat too quickly or too slowly.
Another possibility is that your heart's rhythm is disturbed, giving you the impression that a beat has skipped. Cardiac dysrhythmia is the medical term for an abnormal or irregular heartbeat. Either your heartbeat is unusually slow, generally below 60 beats per minute, or it is abnormally rapid, usually exceeding 100 beats per minute. On the other hand, an irregular heartbeat suggests that there is a rhythmic issue with your heart. For instance, the electrical signal that controls your heartbeat may be disrupted by scar tissue in the heart. Alternately, the electrical impulse might start too quickly and have your heart skipping a beat. Then, after the little break, you'll notice a faster heartbeat.
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Can snails jump yes or no?
Some species of snails are able to jump for about 3-4 cm above the ground. The example of such snails is garden snail.
Snails are the animals from the class Gastropoda of phylum Mollusca. These animals have the characteristic spiral shaped shell above their body. Snails move by the ripple-like movement. However, some species are able to jump as well by thrashing their tail sideways.
Garden snail has the scientific name Cornu aspersum. It is the most commonly found species of snails all across the world. Although snails are pests in the gardens or agricultural lands, they are also consumed in the form of food.
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What is a possible benefit to an organism expressing codominant or incomplete dominant traits.
Answer:
a rise in an individual's fitness and a population's genetic variety are two possible advantages of co-dominance and imperfect dominance.
Explanation:
Codominance and incomplete dominance both result in the production of organisms that are distinct from the general population. When researching genetics and inheritance patterns, it is crucial to understand both of these words. One allele (a form of a gene) isn't totally dominant over the other allele in either incomplete dominance or codominance, two types of inheritance. A new phenotype is the result of this (the physical characteristics of an individual).
A possible benefit to an organism expressing codominant or incomplete dominant traits is it increases both an individual's fitness and a population's genetic diversity.
For heterozygous offspring (Aa), codominance and incomplete dominance result in unique phenotypes. When parents with red and white flowers cross, heterozygotes with intermediate phenotypes are produced, as in the case of snapdragons, which produce heterozygous offspring with pink flowers.
Both incomplete dominance and co-dominance result in organisms distinct from the general population. As a result, an increase in an individual's fitness and a rise in a population's genetic diversity are two potential advantages of co-dominance and incomplete dominance.
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Write to the "Tree Authority" of your city or tate to declare burning of leave a an offence
The Application to the "Tree Authority" of your city or state to declare burning leaves is an offense is as follows:
To,
The Tree Authority,
Netaji Nagar.
New Delhi-110026
Subject: Application regarding restricting the burning of dried leaves by the sweepers of the municipal corporation.
Sir/ma'am
I stay in my flat no. 626, Vishal society, Netaji nager. I want to talk about the municipal corporation sweepers burning leaves in the park. The sweeper takes dried tree leaves from every part of the neighborhood and burns them to get rid of them.
Because of the emissions of carbon dioxide and carbon monoxide into the air as a result of this practice, air pollution levels are rising.
The society secretary has asked them to stop this threat, but they continue to do so frequently. As a result, I would like to request that you immediately restrict this activity and inform them that burning leaves is an offense.
Yours sincerely,
Vikas Negi
Assistant Secretary
Vishal society, Delhi
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What is 1 significant issue with many genetically modified organisms?
The 1 significant issue with many genetically modified organisms is antibiotic resistance.
A genetically modified organism (GMO) is indeed a living organism whose DNA has been changed in a laboratory to encourage the expression of wanted physiological traits or the manufacturing of desired biological products.
Genetically modified organisms benefit both producers and consumers (GMOs). For example, genetically modified plants may help protect crops by conferring resistance to the a specific disease but rather insect, resulting in greater food production. GMOs can also be used as a source of medicine.
There have been concerns about unintended consequences, including the creation of food that may trigger an allergic reaction, GMOs that really can cause harmful genetic effects, as well as genes that are not genetically engineered moving from one species to another. The advantages of using GMOs include higher harvest yields, which can feed more people around the world, and making food more nutritious. The risks of using GMOs include both the unknown long-term risks of eating GMO crops and the negative environmental effects that they can have.
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Match these terms with their definitions.
-homozygous- individual carries two identical alleles of a gene
-heterozygous-individual carries two different alleles of a gene
Homozygous- individual carries two identical alleles of a gene. heterozygous-individual carries two different alleles of a gene.
Each gene has two alleles, or variations, in each of us. When two identical copies of a gene are present, you are said to be homozygous for that gene. It contrasts with a heterozygous genotype, in which the alleles are distinct. Everyone who possesses a recessive characteristic, such as red hair or blue eyes, is homozygous for that gene. A test cross can be used by a scientist to determine if an organism displaying a dominant characteristic is homozygous or heterozygous for a certain allele. A homozygous organism for the recessive trait is crossed with the organism in question, and the results of the test cross are looked at.
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9. Predict the consequences of the failure or absence of an organelle inside a eukaryotic cell. What would happen if a cell did not have the following organelles: mitochondria, ribosomes, chloroplasts. List 1 other organelle and explain what would happen if a cell did not have that organelle.
Answer:
The failure or absence of an organelle inside a eukaryotic cell can have a variety of consequences, depending on the specific organelle and the cell type.
If a cell did not have mitochondria, it would be unable to produce ATP through cellular respiration, which would severely impair its ability to perform essential cellular functions such as growth, division, and maintenance.
If a cell did not have ribosomes, it would be unable to produce proteins, which are essential for many functions such as enzyme catalysis, structural support, and signaling.
If a cell did not have chloroplasts, it would be unable to perform photosynthesis and would be unable to produce its own energy from sunlight. This would be particularly problematic for plant cells, which rely on photosynthesis as their primary source of energy.
One other organelle that is essential for the function of eukaryotic cells is the nucleus. The nucleus is the cellular compartment that houses the genetic material of the cell, and it is responsible for the regulation of gene expression and the coordination of cell growth and division. If a cell did not have a nucleus, it would be unable to properly control its own growth and division, and it would be unable to pass on its genetic information to its offspring. This would severely impair the cell's ability to survive and reproduce.
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Explanation:
A gene associated with promoting normal cell division is called:
A proto-oncogene is a normal gene that is present in a cell. Numerous proto-oncogenes exist. Each one is in charge of producing a protein essential for cell division, growth, and other functions.
However, if a proto-oncogene makes a mistake (mutates), the gene may turn on when it shouldn't. If this occurs, the proto-oncogene may develop into an oncogene, a gene that causes cancer. Cancer develops as a result of uncontrolled cell growth.
Prior to undergoing a mutation that transforms it into an oncogene, a proto-oncogene cannot cause cancer. Proto-oncogenes that are in good health produce proteins that aid in cell activity. A proto-mutation oncogene's causes it to become permanently activated.
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List the significant events of the Krebs Cycle. Include which reactants and products are involved. Highlight what will be released as a product and what will move on to the next stage. Be sure to include where the process occurs in the mitochondria.
Answer:
The Krebs cycle, also known as the citric acid cycle or the tricarboxylic acid (TCA) cycle, is a series of chemical reactions that occur in the mitochondria of cells. These reactions are an important part of the process of cellular respiration, which produces energy for the cell.
The key events of the Krebs cycle include the following:
The conversion of acetyl-CoA to citrate by the enzyme citrate synthase. Acetyl-CoA is derived from the breakdown of glucose and other sugars, and citrate is the first intermediate product of the Krebs cycle.
The conversion of citrate to isocitrate by the enzyme aconitase. Isocitrate is the second intermediate of the Krebs cycle.
The conversion of isocitrate to α-ketoglutarate by the enzyme isocitrate dehydrogenase. α-ketoglutarate is the third intermediate of the Krebs cycle.
The conversion of α-ketoglutarate to succinyl-CoA by the enzyme α-ketoglutarate dehydrogenase. Succinyl-CoA is the fourth intermediate of the Krebs cycle.
The conversion of succinyl-CoA to succinate by the enzyme succinyl-CoA synthetase. Succinate is the fifth intermediate of the Krebs cycle.
The conversion of succinate to fumarate by the enzyme succinate dehydrogenase. Fumarate is the sixth intermediate of the Krebs cycle.
The conversion of fumarate to malate by the enzyme fumarase. Malate is the seventh and final intermediate of the Krebs cycle.
The conversion of malate to oxaloacetate by the enzyme malate dehydrogenase. Oxaloacetate is the starting material for the next round of the Krebs cycle.
As the Krebs cycle progresses, electrons are transferred from the intermediates to NADH and FADH2, which are electron carriers. These carriers then transfer the electrons to the electron transport chain, where they are used to produce ATP, the energy-carrying molecule used by cells. The end products of the Krebs cycle are carbon dioxide and water.
Explanation:
please select all those options that are in the correct order. a. dna>protein>rna b. nucleus>mrna>rrna trna>amino acid>polypeptide c. dna promoter > rna polymerase > mrna d. initiation>elongation>termination
The correct order. are initiation> elongation> termination are the process of transcription.
Transcription is the call given to the manner wherein DNA is copied to make a complementary strand of RNA. RNA then undergoes translation to make proteins. The important steps of transcription are initiation, promoter clearance, elongation, and termination.
The manner of forming a polypeptide chain from mRNA codons is referred to as translation.It takes region in 4 steps namely, tRNA charging, Initiation, Elongation, and Termination.There are 3 critical steps to the manner of translation. There's a starting step, known as initiation, a center step, known as elongation, and a very last step, known as termination. These 3 phrases may also sound acquainted to you.
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Once the response is achieved in a cell what would need to occur to stop the response?
Once the response is achieved in a cell then The relay proteins would need to be deactivated.
The signal is simply passed on to the next member of the chain by relay proteins. Messenger proteins transport information from one part of the cell to another. For example, activation may result in protein translocation from the cytosol to the nucleus.Guanine-nucleotide-binding proteins, also known as G proteins, are another major class of signaling enzymes that control a wide range of cellular functions such as motility, hormone responses, sensory perception, and neurotransmission. G proteins are molecular switches.
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Correctly label the following anatomical features of the lymph node. Cortical sinus Germinal center Lymphatic nodule Afferent lymphatic vessels Efferent lymphatic vessel Medullary cord Efferent lymphatic vessel Medullary sinus Afferent lymphatic vessels
In the following figure anatomical features of the lymph node, it is labeled against the number marked:
Lymphatic nodulesGerminal centerCortical sinusMedullary sinusMedullary cordComplete answer in the picture.
Lymphatic nodules: These are small, localized collections of lymphoid tissue. They are usually located in the loose connective tissue beneath wet epithelial (covering or lining) membranes, as in the digestive system, respiratory system, urinary bladder, etc.
Germinal center: They are transiently formed structures within the B cell zone (follicles) in secondary lymphoid organs – lymph nodes, ileal Peyer's patches, and the spleen Here the mature B cells proliferate, differentiate, and mutate their antibody genes
Cortical sinus: Lymph flows from afferent lymphatic vessels, into a space underneath the capsule called the subcapsular sinus, then into cortical sinuses.
Medullary sinus: After passing through the cortex, lymph then collects in the medullary sinuses
Medullary cord: It's a portion of the medulla of the lymph node which contains lymphatic tissue and project into the medullary sinus. B cells and plasma cells are the main cell types found in the medullary cords.
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How does point mutation affect the amount of DNA?
The point mutation can alter the amount of DNA sequences depending upon the type of mutation.
A point mutation is a type of mutation in which the DNA or RNA, the organism's genetic material, is altered by the addition, deletion, or modification of a single nucleotide base. The amount of DNA is unaffected by base substitution since the nucleotide count is unaffected after the substitution. The amount of DNA grows with insertions and mutations because there are more nucleotides involved, whereas it decreases with deletion mutations. A common example of substitution point mutation is sickle cell anemia.
Hence, the type of point mutation determines the amount of DNA.
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