The left ventricle pumps the oxygen-rich blood through the aortic valve into the aorta , the main artery that takes oxygen-rich blood out to the rest of the body
Heart:
Your cardiovascular system, which consists of a network of blood vessels that pumps blood throughout your body, is primarily composed of your heart. It also interacts with other bodily systems to regulate your blood, pressure and heart rate.Blood circulation throughout your body is the heart's primary duty. Moreover, your heart:
regulates the temperature rhythm of your heartbeat.keeps your blood pressure steady.The heart has four chambers in total:
Right atrial: Your right atrium receives oxygen-poor blood from two big veins. Your upper body's blood is carried via the superior vena cava. Blood from the lower body is brought up by the inferior vena cava. The blood is then pumped to your right ventricle by the right atrium.
Right ventricle: Through the pulmonary artery, the lower right chamber transports oxygen-poor blood to the lungs. The blood is oxygenated again by the lungs.
Left atrium: The pulmonary veins deliver blood to the left atrium after the lungs have infused it with oxygen. Your left ventricle receives blood through its higher chamber.
Left ventricle: Compared to the right, the left ventricle is a little bigger. It transfers blood enriched in oxygen to the rest of your body.
Hence, left ventricle send oxygenated blood through the aortic valve and out of the body cell.
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select all that apply what are the two major causes of chromosomal rearrangements? multiple select question. one double-strand break a nick in two dna strands a nick in one dna strand aberrant crossing-over two double-strand breaks dna replication errors
The two major causes of chromosomal rearrangements are : aberrant crossing-over and two double-strand breaks.
What is chromosomal rearrangements?A chromosomal rearrangement means that the pieces of chromosomes are duplicated, missing or moved around. The effects may vary as they depend on which chromosome pieces are involved and how they are rearranged. Some may have no effect and some are incompatible with life.
The four types of chromosomal changes are inversions, deletions, duplications and translocations.
Chromosomal rearrangements happens during egg and sperm formation. During recombination step, pairs of chromosomes break and then swap pieces. If the chromosomes line up unevenly or if breaks are not repaired properly, then pieces of chromosomes can be rearranged.
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TRUE/FALSE. the biceps femoris muscle inserts primarily on the head of the fibula and assists with knee external rotation.
Answer:trueeeeeeeeeeeeeeeeeeeeeeeeee
Explanation:
The biceps femoris muscle is one of the three muscles that make up the hamstring muscle group, which also includes the semimembranosus and semitendinosus muscles.
What is the basic idea about biceps femoris muscle ?The biceps femoris muscle is the most lateral of the three hamstring muscles and is responsible for extending the hip joint and flexing the knee joint.
The long head of the biceps femoris muscle originates from the ischial tuberosity, which is a bony prominence located in the pelvic region. The short head of the muscle originates from the linea aspera, which is a ridge on the back of the femur bone.
Both heads of the muscle merge to form a common tendon that inserts onto the head of the fibula and the lateral condyle of the tibia.
In addition to its primary actions of hip extension and knee flexion, the biceps femoris muscle also contributes to knee external rotation. The muscle is innervated by the tibial and common fibular nerves, which are both branches of the sciatic nerve.
Injury to the biceps femoris muscle can occur due to activities that involve sudden or excessive stretching, such as sprinting, jumping, or kicking. Common injuries include strains, tears, and avulsions, which can result in pain, swelling, and reduced mobility.
Basically, Treatment typically involves rest, ice, compression, and elevation (RICE), as well as physical therapy and other supportive measures as needed.
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Brett learned that his car is better protected from the weather when it has been recently washed and waxed. Which best describes the major group of macromolecules that is protecting his car and how it is performing this task?.
Because they are nonpolar and therefore insoluble in water, lipids provide protection for an automobile.
Which macromolecule from the bacterial population ought the team to try to isolate?To create the new cleaning product, the team plans to first isolate the essential component that the bacteria utilize for this procedure. Which macromolecule from the bacterial population ought the team to try to isolate.
Which of the following justifies the fact that carbon makes up the majority of molecules utilised by living things?The capacity of carbon to create strong connections with a variety of elements, including itself, is the cause. This characteristic enables carbon to take the form of a vast range of extremely massive and complicated compounds.
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the chief function of root hairs is to a) decrease the anchoring power of roots. b) provide a direct passageway from the soil to the vascular cylinder. c) increase the surface area for efficient absorption of water and minerals.
To remove moisture from between soil granules. Long extensions on the root hair cells spread out between soil granules. The surface area for water to enter cells is increased by root hairs in the cells.
The root hairs, which are cylindric extensions of the root epidermal cells, play a crucial role in nutrient acquisition, microbial interactions, and plant anchorage. This article reviews the molecular mechanisms underlying the specification, differentiation, and physiology of root hairs in Arabidopsis.
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did dogs develop naturally or artificially
Answer: Although all dogs are descendants of the wolf, the use of artificial selection has allowed humans to drastically alter the appearance of dogs. For centuries, dogs have been bred for various desired characteristics, leading to the creation of a wide range of dogs, from the tiny Chihuahua to the massive Great Dane.
compose a policy statement on genetically modified organisms (gmos) based on data and not misconceptions.
regulations pertaining to the avoidance of harm to the environment and human health resulting from the use of genetically modified (GM) plants, animals, and micro organisms in confined spaces.
Farm animals' yields can be increased by genetic modification; for instance, cows can be bred to give more milk for a similar size herd. Important medical items, including antibodies, are produced in enormous amounts by genetically engineered farm animals. The use of genetically modified plants (GMOs) benefits both farmers and consumers in certain ways. By giving resistance to a particular disease or pest, modified plants, for instance, can at least in the beginning assist safeguard crops, assuring better food output. GMOs are significant sources of medication as well. Today's GMO plants were primarily created to aid farmers in weed management, crop loss prevention, and food preservation. The following are the top three characteristics of GMO crops: resistance to several harmful insects.
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which food is the most likely source of the infection? which food is the most likely source of the infection? turkey sprouts tomato avocado
Raw animal foods, ie raw meat and poultry, raw eggs, unpasteurized milk, and raw shellfish are most likely to be contaminated. Raw foods of animal origin are the most likely to be contaminated,
specifically raw or undercooked meat and poultry, raw or undercooked eggs, unpasteurized (raw) milk, and raw shellfish. Fruits and vegetables can also become contaminated with Pseudomonas aeruginosa. a Gram-negative bacillus; Produces irregular raised colonies and a green to blue water-soluble pigment on Trypticase Soy Agar. During the next two labs, you will try to get pure cultures of each organism in your mix and determine which two bacteria you have. Infectious diseases are commonly transmitted through the direct transfer of bacteria, viruses, or other germs from one person to another. This can happen when a person with the bacteria or virus touches, kisses, coughs, or sneezes on someone who is not finished. It is transmitted from person to person. This is the most common way we contract an infectious disease. Germs can spread from person to person through: the air in the form of droplets or aerosol particles. Salmonella. Most people are familiar with the term salmonella, but they may not know that there are more than 2,000 different types of the virus. It's usually associated with animal products like chicken, eggs, and milk, but raw vegetables and even water can also contain salmonella.
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which of the following is/are involved pathophysiology of als? group of answer choices death of upper motor neurons death of lower motor neurons loss of dopamine neurons in the substantia nigra
Pathophysiology. The pathogenesis of ALS includes motor neuron loss in the majority of brainstem motor nuclei, the motor cortex, and the spinal ventral horns.
What purpose do brain nuclei serve?The neuronal networks that regulate somatic movement and motivation are thought to be significantly influenced by the cerebral nuclei, which make up the ventral division of the cerebral hemisphere.
Which somatic movement is an illustration?progressively relaxing the muscles By clenching and releasing each muscle group, you are moving your muscles just slightly to release tension in your body and mind. This popular relaxation practice is actually a perfect illustration of somatics.
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a dna restriction enzyme cuts dna at a specific sequence. if a restriction enzyme that cuts at the dna sequence gaattc were used on the dna strand below, and the resulting fragments were put through electrophoresis, how many bands would appear on the electrophoresis gel?
Four bands appear in gel electrophoresis. Gel electrophoresis is an experimental method used to separate mixtures of DNA, RNA, or proteins by molecular size.
DNA is negatively charged, so when a current is applied to the gel, the DNA migrates towards the positively charged electrode. Fragments are ordered by size because short DNA strands migrate through the gel faster than long strands. There are some basic steps for performing gel electrophoresis outlined below. 1) pour the gel, 2) prepare the sample, 3) load the gel, 4) run the gel (expose it to an electric field), 5) stain the gel. Gel electrophoresis is a technique for separating biomolecules by size. Separation of these molecules is achieved by placing them in a small pore gel and creating an electric field across the gel
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which model assumes the absence of competitive hierarchies among species? group of answer choices the lottery model the dynamic equilibrium model the intermediate disturbance model all the other answers are correct
The model assumes the absence of competitive hierarchies among species are the dynamic equilibrium model the intermediate disturbance model.
Reversible manner is stated to be in dynamic equilibrium while the ahead and opposite tactics arise on the equal rate, ensuing in no observable extrade withinside the system.
Once dynamic equilibrium is established, the concentrations or partial pressures of all species worried withinside the manner continue to be constant.The intermediate disturbance speculation predicts that the very best range will arise at tiers of slight disturbance. We measured the species range, abundance, and species range of micro organism at the human frame in terms of disturbance through washing.
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what do we call the capacity of the nervous system to be remodeled, especially in response to its own activity?
The capacity of the nervous system to be remodeled, especially in response to its own activity is known as Neuroplasticity.
The brain, spinal cord, and an intricate web of nerves make up the nervous system. The brain and the body communicate with one another through this system. All bodily processes are under the control of the brain. The spinal cord exits the brain through the back and descends. There are three further divisions of the nervous system: the sympathetic, parasympathetic, and enteric nervous systems.
Neuroplasticity, sometimes referred to as neural plasticity, brain plasticity, or simply neuroplasticity, is the capacity of neuronal networks in the brain to alter through expansion and reorganisation. It occurs when the brain is rewired to function in a way that is different from how it did before. The four types of functional neuroplasticity include compensatory masquerade, cross-modal reassignment, homologous area adaptation, and map expansion.
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which part of the neuron receives nerve impulses from other neurons and conducts them toward the cell body? biology reading quiz
Part of the neuron which receives nerve impulses from other neurons and conducts them toward the cell body is dendrites.
Nerves make up the nervous system. A bundle of nerve cells is a nerve. A neuron is a type of nerve cell that carries messages. Like sunlight's rays, dendrites and axons connect to the cell's body. Neurons transmit information. They transmit information between brain regions and the rest of the nervous system by means of chemical signals and electrical impulses.
A neuron's dendrites are extensions of the cell body. They move signals toward the cell body after receiving them from sensory receptors or other neurons.
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the older adult endocrine system undergoes age-related changes, one of which is prolonged hyperglycemia levels. what statement best describes why this occurs?
The older adult endocrine system undergoes age-related changes, one of which is prolonged hyperglycemia levels just because the pancreatic beta cells release insulin more slowly and inadequately.
Diabetes patients have hyperglycemia, often known as high blood sugar. Patients with diabetes who have hyperglycemia may be affected by a variety of circumstances. They include things like diet and exercise, as well as illnesses and medications that have nothing to do with diabetes. Skipping dosages, not taking enough insulin, or utilizing other blood sugar-lowering drugs insufficiently are additional causes of hyperglycemia. Treatment for hyperglycemia is crucial. If left untreated, hyperglycemia can worsen and lead to major health issues including a diabetic coma, which call for emergency care. Even modest persistent hyperglycemia can lead to issues with the heart, kidneys, eyes, nerves, and neurological system. Blood sugar levels exceeding 180 to 200 mg/dL, or 10 to 11.1 mmol/L, are known as hyperglycemia. However, symptoms often don't appear until the level is high. The signs and symptoms of hyperglycemia progressively appear over the period of days or weeks. The symptoms could be more severe the longer blood sugar levels are elevated.
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In an ecosystem, sheep are grazing animals that eat grass and clovers. This interaction is called. Sheep serve as food for bears. This interaction is called.
Sheep are grazing animals in an ecosystem that consume clovers and grass. Predation is the term for this interaction.
In a biological interaction known as predation, one organism—the predator—kills and consumes another—its prey. It belongs to a group of widespread feeding habits that also includes parasitoidism, micropredation (which typically does not result in host death), and parasitism (which always does, eventually). It differs from scavenging on dead prey, even though many predators also scavenge, and it overlaps with herbivory because predatory seed predators and destructive frugivores are also herbivores.
Predators may actively seek for, pursue, or simply wait for their victim while remaining hidden. The predator decides whether to assault its prey after spotting it. This may entail an ambush or a predation pursuit, sometimes following a prey stalk. If the predator's attack is successful, it kills the prey and removes any parts that aren't edible, like the shell
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the extra point located on the midpoint of the proximal interphalangeal joint of the middle finger at the dorsum aspect, and indicated for nausea, vomiting, and hiccup is: a. zhongkui b. shixuan c. zhongquan d. sifeng e. baxie
Zhongkui is a special point used to treat nausea, vomiting, and hiccups. It is situated on the middle finger's proximal interphalangeal joint on the dorsum side.
Second only to pain in terms of postoperative complaints of patients under general anesthesia, nausea and vomiting are among the most frequent. When that happens, the patient suffers, and the provider is both troubled and perplexed. It is not shocking that an incredible amount of books have been written about preventing and treating this issue. Unfortunately, little is known about its pathophysiology, and most of these studies lack clarity due to the numerous contributing components. This has frequently given rise to myths and tales that lack scientific support. This continuous education article discusses current theories and recommendations in the field as well as the less common but nonetheless bothersome condition of hiccups.
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The image is an example of which property of water?
Snow or ice is solid state of water.
Property of water
When heated, all substances, including water, lose density and gain density when chilled. So, when water is chilled, it gets denser and converts into ice. One of the few substances, water, can float in both its solid and liquid states. Ice is less dense than liquid water that is why ice or snow can float on water.
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tony is a somewhat rude and self-absorbed phytoplankton (i.e., a photosynthesizing single-celled organism) that lives in dr. tucker's aquarium. on tuesday, tony was having a good day, actively photosynthesizing in the presence of abundant light and co2. suddenly his day took a turn for the worse when dr. tucker cleaned his tank and accidentally flushed tony down the drain (no light, high co2). predict how the concentration of glyceraldehyde 3-phosphate (g3p) would change in tony over the next minute or so. select only one answer choice.
The graph shown in option A is the correct way to show the concentration of glyceraldehyde 3-phosphate (g3p) would change in tony over the next minute or so. So, option A is correct answer.
Phytoplankton are the self-taking care of parts of the tiny fish local area and a critical piece of sea and freshwater environments. The name comes from the Greek words φυτόν (phyton), signifying 'plant', and πλαγκτός (planktos), signifying 'vagabond' or 'wanderer'.
Phytoplankton acquire their energy through photosynthesis, as do trees and different plants ashore. This implies phytoplankton should have light from the sun, so they live in the sufficiently bright surface layers (euphotic zone) of seas and lakes. In examination with earthly plants, phytoplankton are dispersed over a bigger surface region, are presented to less occasional variety and have especially quicker turnover rates than trees (days versus many years). Thus, phytoplankton answer quickly on a worldwide scale to environment varieties.
Hence, option A is correct.
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describe structural and functional similarities between mitochondria and chloroplasts that provide evidence of common ancestry.
They both have double membrane, DNA etc and can generate metabolic energy. From endosymbiotic theory, Circular DNA present bacteria in mitochondria and chloroplast provide evidence of common ancestory.
Functional similarities between chloroplasts and mitochondria is to generate metabolic energy, which is evolved by endosymbiosis, they contain their own genetic systems, and both replicate by division.
Structural similarities between mitochondria and chloroplast is that they both a double membrane structure and they contain DNA, organized into nucleoi, and RNA(tRNA, mRNA, and rRNA). And both have ribosomes. Mitochondria and chloroplasts both are semiautonomous, means likely to be evolved from engulfed prokaryotes that once lived as independent organisms. Then eukaryotic cell engulfed an aerobic prokaryote, which then formed an endosymbiotic relationship with the host eukaryote, which developed into a mitochondrion or chloroplast. A prokaryote, bacteria, has circular DNA, so the mitochondria and chloroplasts have. This provides evidence of common ancestory.
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Approximately one out of every 2,500 caucasians in the united states is born with the recessive disease cystic fibrosis. According to the hardy-weinberg equilibrium equation, approximately how many people are carriers?.
A recessive trait is expressed in 1 out of every 2500 homozygous people (cystic fibrosis is inherited as autosomal recessive disease ).
How is the allele frequency in autosomal recessive determined?The prevalence of an autosomal recessive disease in a population is q2, which in this example equals 1/2500 and q = 1/50, according to the Hardy-Weinberg Equilibrium. The two alleles (p & q) must have a frequency of 1, therefore p = 49/50 1.
How common is the allele for cystic fibrosis in the Caucasian population?For instance, among Caucasians, the normal allele frequency is 0.975 while the mutant cystic fibrosis allele frequency is 0.025. Allele distribution across a population as a whole is impacted by this.
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a virus mutates, and therefore it has which of the following traits of living things?(1 point) responses it uses energy. it uses energy. it is made of cells. it is made of cells. it evolves. it evolves. it grows and develops.
A virus mutates and evolves,which is the trait of a living being
What is a virus?
A host is required for the growth of viruses, which are microscopic infectious organisms that contain genetic material, either DNA or RNA.
Viruses are living organisms that can only survive and grow in a host, which is a living thing like a person, an animal, or a plant. Like cell-based life, viruses are subject to evolution and natural selection, and the majority of them change quickly mimicking living cells have led to numerous outbreaks of illness and fatalities throughout human history.
Therefore the virus evolves like a living being
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Is the study of biological diversity and the evolutionary relationships among organisms.
Answer:
well yes but there's a name for it called systematics
Explanation:
Systematics is the study of biological diversity and its origins. It focuses on understanding evolutionary relationships among organisms, species, higher taxa, or other biological entities, such as genes, and the evolution of the properties of taxa including intrinsic traits, ecological interactions, and geographic distributions.
Discuss how humans changed the balance of the park ecosystem.
Answer:
Humans change the ecosystem in many ways, such as the habitat destruction, the pollution, introduction of invasive species, exploitation, all species. The most common way that humans damage the ecosystem is by destroying the habit id human activities causes disturbance in the polish of the park's ecosystem.
which of the following statements about u.s. middle-aged children and their aging parents is true? group of answer choices the percentage of middle-aged adults with living parents has decreased dramatically in the last century. approximately two-thirds of older adults live in close proximity to at least one of their children. middle-aged and older adults who move usually do so away from their children or aging parents. adult children spend less time in physical proximity to their parents today than in the past.
The likelihood of adult children and their parents spending their golden years together is rising as people live longer.
Briefly define what middle age and old age are.There are other methods to categorize this demographic, however some research have labeled elderly persons 65 to 74 years old as youngest-old, 75 to 84 years old as middle-old, and over 85 years old as oldest-old [5].
Compared to their parents, they are more inclined to support their grown children.
What bodily changes take place in middle adulthood?Middle-age physiological changes that are typical. Midlife brings about a few major hormonal and physical changes. Vision, hearing, greater joint discomfort, and weight gain are all affected
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A heterozygous brown hair person is crossed with a homozygous blonde hair person. What are the genotypes and phenotypes of the offspring?
Sudoriferous glands....
a. sweat
b. sebum
c. milk
d. cerumen
review the data below from investigating life 11.1. what is the effect of the booster gene in the weedy relatives of cultivated rice?
Transgenic weeds produce more seeds when the booster genes from cultivated rice inserted to it. the gene flow cause ecological impression
Environmental biosafety issues could arise from transgene escape by gene flow from genetically modified (GM) crops to their wild cousin species. To prevent potential outcrossing, it is advised that isolation zones be set up with enough space between GM rice varieties and wild rice populations. Additionally, GM rice that has genes that can greatly improve the ecological fitness of weedy rice shouldn't be made available in areas where it already grows abundantly and is a major concern.
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what is the role of the electron transport chain in forming the h gradient across the inner mitochondrial membrane?
The energy released as electrons are passed down the electron transport chain is used to pump H+ from the mitochondrial matrix to the intermembrane space creating an H+ concentration gradient.
The transfer of electrons from electron donors to electron acceptors via redox reactions is accomplished by a group of protein complexes and other molecules that connect protons (H+ ions) through a membrane.
It is an exergonic method of transporting electrons. Due to an electrochemical proton gradient produced by the redox reaction energy, adenosine triphosphate produced (ATP). Through the exergonic flow of electrons from NADH to FADH2, the chain serves as an energy converter that pumps H+ from the mitochondrial matrix to the intermembrane gap. The gradient of the H+ is likely to disperse on its own when it returns across the membrane. And the ATP synthases are the only areas of the membrane that let H+ enter through.
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which of the following describes commensalism? (each side of the dash represents one species involved in the interaction; whether it benefit ( ), is harmed (-), or is neither harmed nor helped by the interaction (0))
An interaction between two species known as commensalism occurs when one of the organisms benefits and the other experiences neither good nor bad effects (+/0).
what is commensalism?
A symbiotic interaction between two species known as commensalism occurs when one benefits from the other while the other is neither hurt nor benefited. The commensal bacterium and the host species are both known as beneficiaries of this biological connection.
In such situations, the commensal is typically a little organism and the host species is frequently a larger species. The commensal benefits from the host species include assistance, food, transportation, and shelter. In this connection, the host species does not change; instead, the commensal exhibits significant adaptations relating to its habit and habitat.
Examples include Staphylococcus and Aspergillus
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where does most new membrane synthesis take place in a eukaryotic cell? group of answer choices in the endoplasmic reticulum in the golgi apparatus in the plasma membrane on ribosomes
New membrane synthesis in a eukaryotic cell takes place mainly in the endoplasmic reticulum.
Membranes and their essential proteins are assembled in the ER. This organelle contains the enzymes involved in lipid synthesis, they are inserted into the organelle's very own membranes. This lipid synthesis takes place in part because the lipids are hydrophobic in nature and don't dissolve into the cytoplasm.
Smooth endoplasmic reticulum helps in many metabolic processes. It synthesizes lipids, phospholipids as in plasma membranes, and steroids. Cells that secrete these products, such as cells of the te.stes, ovaries, and skin oil glands, contain excess of smooth endoplasmic reticulum.
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Explain the connection between the beginning of life and the universal genetic code of almost all organisms.
The mRNA codon UUU, for instance, codes for phenyl alanine in all cells of all species. So genetic code is shared by all living things.
Genetic code is the term used to describe the instructions sent by a gene to a cell on how to manufacture a certain protein. The four DNA bases, adenine (A), cytosine (C), guanine (G), and thymine (T), are used in different ways by each gene's coding to create three-letter "codons" that describe the amino acid that is required at each gene location in a protein. biological code. The history of the genetic code encompasses biology and genetics in the 19th, 20th, and 21st centuries, along with the opportunities and dangers they presented. Oswald Avery, for instance, demonstrated the genetic code in 1944.
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