A mutation causes a sequence of DNA that has the nucleotides TTG to be changed to TCG. The resulting protein has a different sequence of amino acids. Which type of mutation is this? missense nonsense silent frameshift

Answers

Answer 1

Answer:

its A missense

Explanation:

Answer 2

A mutation caused by the substitution of a single base and which results in a protein with a different amino acid sequence is known as a missense mutation.

By definition:

Nonsense mutation is a change in DNA base sequence that results in incomplete proteinSilent mutation is a change in the DNA sequence that have no effects on the  resulting proteinFrameshift mutation is a change in the DNA sequence by addition or deletion of a base pair resulting in a totally different protein as a result of a change to the reading frame of codons

Hence, only missense mutation is compatible with a single base substitution in DNA resulting in proteins with different amino acid sequences.

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Related Questions

Organic and inorganic Classify the following characteristics and examples of molecules depending on whether they are organic or inorganic Carbohydrates, lipids, proteins, and nucleic acids Contained in living organisms Sometimes contain carbon but do not contain C-H bonds Molecules made of a combination of elements Molecules that contain carbon and hydrogen bonds Water and table salts

Answers

Answer:

carbohydrates, lipids, proteins, and nucleic acids)

Explanation:

i looked it up

which of the following are socioeconomic impacts of flooding

Answers

The socioeconomic impacts of flooding are decreased purchasing and production power.

What is Flooding?

This is referred to as the process in which water overflows and submerges the land which is usually dry. It leads to different types of negative consequences such as disruption of the ecosystem etc.

This occurrence leads to the displacement of people from their homes as a result of the place not being conducive enough for living due to the presence of water and other types of organisms in the home and can be prevented by providing appropriate drainage channels.

It leads to erosion in agriculture and the crops are destroyed which will lead to it decreasing production power. The purchasing power is also reduced as it threatens the livelihood of a vast majority of the affected individual.

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3. How is Acetyl-CoA prsluced during the acrobic oxidation of carbohydrates, and what happens to it? How is it produced during the aerobic oxidation of titty acids, and what happens to it

Answers

During the aerobic oxidation of carbohydrates, acetyl-CoA is produced through a series of metabolic reactions known as glycolysis and the citric acid cycle. During the aerobic oxidation of fatty acids, acetyl-CoA is produced through a process called beta-oxidation.

Pyruvate then enters the mitochondria, where it undergoes further processing to produce acetyl-CoA. This conversion occurs through a process called pyruvate decarboxylation, where pyruvate loses a carbon dioxide molecule and combines with coenzyme A (CoA) to form acetyl-CoA. Acetyl-CoA is a key molecule in energy metabolism and serves as a precursor for the citric acid cycle.

During the aerobic oxidation of fatty acids, acetyl-CoA is produced through a process called beta-oxidation. Fatty acids are broken down into two-carbon units, which then combine with CoA to form acetyl-CoA. This process occurs in the mitochondria, where fatty acids are sequentially cleaved into acetyl-CoA molecules. The acetyl-CoA molecules can enter the citric acid cycle to generate energy through oxidative phosphorylation.

Once acetyl-CoA is produced, it enters the citric acid cycle, also known as the Krebs cycle or TCA cycle. In this cycle, acetyl-CoA undergoes a series of enzymatic reactions, resulting in the production of ATP, NADH, and FADH2. These energy-rich molecules are then utilized in the electron transport chain to generate ATP through oxidative phosphorylation.

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Using at least 5 sentences, explain how introducing a new organism into an ecosystem can affect the stability of that system. Give specific examples.

Answers

Answer:

Introducing a new organism into an ecosystem can have significant impacts on the stability of that system. This is because every species in an ecosystem is interconnected and plays a vital role in maintaining the balance of the ecosystem. Introducing a new species can disrupt this balance and lead to both direct and indirect effects.

One direct effect of introducing a new organism can be competition for resources. For example, the introduction of the cane toad to Australia led to a decrease in the population of native insect-eating animals, as the toads outcompeted them for food.

Another direct effect of introducing a new organism can be predation. The introduction of the brown tree snake to Guam led to the extinction of several bird species, as the snake had no natural predators and was able to prey on the birds.

Indirect effects of introducing a new organism can include changes in the availability of resources. For example, the introduction of the zebra mussel to the Great Lakes in North America led to a decrease in the abundance of plankton, as the mussels filtered them out of the water.

The introduction of a new organism can also lead to the spread of diseases. For example, the introduction of the Asian tiger mosquito to the United States led to the spread of dengue fever and chikungunya virus.

Finally, the introduction of a new organism can also affect the relationships between existing species. For example, the introduction of the invasive plant Kudzu to the southeastern United States led to changes in the abundance and distribution of native plant species, which in turn affected the populations of native animals that relied on these plants for food and shelter.

In conclusion, introducing a new organism into an ecosystem can have far-reaching effects on the stability of that system. It is important to carefully consider the potential impacts before introducing a new species to an ecosystem.

Explanation:

I know you said
5 sentences, but nerded out LOL

Why is having cephalization an advantage in one area of the body, as opposed to spreading them out in each of the body regions.

Answers

Cephalization is the concentration of sensory and nervous structures at the anterior (head) end of an organism. This concentration allows for more efficient and rapid processing of sensory information and quick responses to stimuli.

Having cephalization in one area of the body, specifically the head region, allows for the development of specialized sense organs, such as eyes and ears, which can better detect and process information. In addition, the concentration of neurons in the head region allows for more complex nervous processing, leading to greater cognitive abilities.

On the other hand, spreading out sensory and nervous structures throughout the body would lead to slower processing times and less specialization. This would not be advantageous in environments where quick responses to stimuli are necessary for survival, such as in predator-prey interactions or avoiding environmental hazards.

Therefore, having cephalization in one area of the body provides a significant advantage in terms of sensory processing, cognitive abilities, and survival.

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What's the definition of absoulute dating

Answers

Absolute dating is the process of determining an age on a specified time scale in archaeology and geology. Some scientists prefer the terms chronometric or calendar dating, as use of the word "absolute" implies an unwarranted certainty and precision. Absolute dating provides a numerical age or range in contrast with relative dating which places events in order without any measure of the age between events. In archeology, absolute dating is usually based on the physical, chemical, and life properties of the materials of artifacts, buildings, or other items that have been modified by humans and by historical associations with materials with known dates. Techniques include tree rings in timbers, radiocarbon dating of wood or bones, and trapped charge dating methods such as thermoluminescence dating of glazed ceramics. Coins found in excavations may have their production date written on them, or their may be written records describing the coin and when it was used, allowing the site to be associated with a particular calendar year.

Can you name another genetic variation among humans that might be an adaptation to the environment why do you think this fits the category of adaptation

Answers

Answer: The correct answer is:

The another genetic variation among humans that might be an adaptation to the environment is colour of the skin. That is, people live in warmer place have dark colour of skin. This dark colour protects them from Ultraviolet (UV) radiation.

What is adaptation?

Any heritable trait that helps an organism to survive and reproduce in its environment.

Organisms such as plants, animals, human beings and all living things.

For example, a plant growing at an increasing altitude could alter its metabolism.

Explanation: I use britain-english so don't mind colour

Where does the light-dependent stage of photosynthesis occur in the plant cell?(1 point)

cytoplasm

mitochondria

chlorophyll

cell membrane

Answers

Answer:

C- chlorophyll

Explanation:

Took the quick check xd :)

Assessment
hoice. Choose the letter of the best answer. Write the chosen letter on a
heet of paper.
makes planet Earth different from the other planets in the sola
m?
It supports life.
C. The atmosphere holds gases.
.
It is mostly covered in water. D. All of the above​

Answers

Answer:

D. all of the above

Explanation:

brainliest?

C is the correct response to the question

Show the reciprocal cross​: A red-eyed female (homozygous) and a white-eyed male. How many offspring will have white eyes and what is their sex?

Answers

When we see the reciprocal cross between a red-eyed female (homozygous) and a white-eyed male,we observe that none of the offspring will have white eyes. Additionally, the sex of the offspring will be half male and half female since the ratio of males to females is 1:1.

The reciprocal cross for a red-eyed female (homozygous) and a white-eyed male can be shown as follows:Female (XrXr) x Male (XwY). Females have two X chromosomes and males have an X and a Y chromosome. Red eyes are dominant to white eyes; therefore, we use Xr to represent red eyes and Xw to represent white eyes.

The offspring are as follows:All F1 females are heterozygous (XrXw).All F1 males are hemizygous (XrY).The F1 generation will have red eyes since the dominant allele is present.

None of the F1 individuals will have white eyes as the recessive allele is not present in the F1 generation.

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why would life outside of the earth be so important to us? ​

Answers

Because if something happened to earth we would need another resource to survive outside of earth

Which of the following best describes the term 'polymer'?
A. A small monomer.
B. Small molecules.
C. A large monomer.
D. A large molecule made of many monomers.

Answers

Answer: A large molecule made of many monomers.

Explanation:

What is the probability that unicorn offspring will have a white horn? Brown horn?

Answers

The probability that the offspring will have a white horn is 3 out of 4, or 75%.

In unicorns, the trait of having a white horn (W) is considered dominant over having a brown horn (w). When two heterozygous unicorns, each carrying one dominant white horn allele (W) and one recessive brown horn allele (w), are crossed, the probability of their offspring having a white horn can be determined using Punnett squares.The possible genotypes of the parent unicorns are Ww and Ww. When these genotypes are crossed, the potential offspring can inherit one of the following genotypes: WW, Ww, Ww, or ww. Out of these options, three of them (WW, Ww, Ww) contain at least one dominant white horn allele, resulting in a unicorn with a white horn. Therefore, the probability that the offspring will have a white horn is 3 out of 4, or 75%. This calculation is based on the assumption that the genetic traits are inherited independently and follow Mendelian inheritance patterns.

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Note: The question would be as

In unicorns, having a white horn (W) is dominant to having a brown horn (w). Two heterozygous unicorns are crossed. What is the probability that the offspring will have a white horn?

21. Some fish, some dogs and some children are swimming in a bay. There are 40 legs in total, twice as
many heads as tails and more dogs than fish.
How many fish are in the bay?

Answers

If they are 40 legs in the bay and you are trying to find how many fish are in the bay fish don’t have legs so it would be 0

1.Choose the statement that is true about your cells and DNA code.
Group of answer choices

All of your cells have all of the DNA code for your whole body

Each type of cell (hair cell, skin cell, muscle cell, etc.) has its own special kind of DNA

2.True or False: DNA is always turned on all the time in all of your cells.
Group of answer choices

True

False

3.What does DNA do in living things?
Group of answer choices

DNA makes lipids

DNA builds the cell wall

DNA codes for traits (physical features)

Answers

Answer:

1. all of your cells have all of the dna code for your whole body

2. true

3. dna builds the cell wall

Answer: 2 is true i did that

Explanation:

the illustration displays cross-sections of muscle filaments in a sarcomere. myosin filaments are represented by the larger dots and actin filaments are represented by the smaller dots. match the filament pattern in the four numbered squares with the correct placement in a relaxed sarcomere of striated muscle.

Answers

The portion of a Z-line that is between two nearby neighbors is known as a sarcomere (or Z-discs). The Z-line (derived from the German word "zwischen," which means between), which anchors the actin myofilaments, can be seen in between the I-bands in electron micrographs of cross-striated muscle.

The I-band region is located around the Z-line (for isotropic). The I-band is the region of thin filaments where thick filaments are not overlaid (myosin).

The I-band is followed by the A-band (for anisotropic). named after the characteristics they exhibit under polarized light. The full length of a single thick filament is contained within an A-band. There are both thick and thin filaments in the anisotropic band.

The H-zone is a paler area located within the A-band (from the German "heller", brighter). Known as a result of their lighter look under polarization imaging technology. The region of the thick filaments that lacks actin is known as the H-band.

A narrow M-line, which is derived from the German word "mittel," or "middle," emerges in the middle of the sarcomere, which is made up of cytoskeleton cross-links, within the H-zone.

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Name the three possible ways pharyngeal slits can be present in a vertebrate.​

Answers

Answer:

pharynx, throat and the outside

Explanation:

Pharyngeal slits are a third chordate feature; these are openings between the pharynx, or throat, and the outside. They have been modified extensively in the course of evolution. In primitive chordates, these slits are used to filter food particles from the water.

Pharyngeal slits are a characteristic feature of chordates, which includes vertebrates. Here are three possible ways pharyngeal slits can be present in a vertebrate:

1. Gill slits - In aquatic vertebrates, such as fish, pharyngeal slits develop into gills, which are used for respiration. Water is taken in through the mouth and passes over the gills, where oxygen is extracted and carbon dioxide is released.

2. Ear bones - In tetrapods, such as amphibians, reptiles, birds, and mammals, pharyngeal slits are modified into other structures. In some tetrapods, the pharyngeal slits develop into ear bones, which are used for hearing.

3. Thymus gland - In mammals, the pharyngeal slits are not visible externally and do not develop into functional structures. Instead, they contribute to the development of the thymus gland, which is part of the immune system.

Antibodies, certain hormones, and hemoglobin are all:

Answers

Answer:

Proteins - according to liberty university.

Explanation:

1 Answer:
HACCP is a program designed to create awareness of potential points
of contamination in a food-processing facility.
a. true
b. false
2 Answer:
A bacteriostatic agent uses static electricity to remove bacteria
from a surface.
a. true
b. false
3 Answer:
The three major sources of contamination in a food processing plant
are people, processing equipment, and the plant environment.
a. true
b. false
4 Answer:
Water hardness is a measure of the presence of substances in water
that form insoluble precipitates with soap.
a. true
b. false
5 Answer:
The floor of a food processing facility should have an unfinished
concrete surface for easy cleaning.
a. true
b. false

Answers

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What is myelin, what is it made of, and which cell make up myelin?

Answers

Myelin is a lipid and protein made membrane that surrounds some neurons (nerve cells) and acts as an electrical insulator. This membrene is synthesized by Schwann cells.

what is the part labeled 3? ​

what is the part labeled 3?

Answers

Answer:

the part labeled 3 is the substrate

Which best defines meroplankton?
O organisms that spend their entire life as plankton
O organisms that spend their larval or juvenile stage as plankton
O organisms that are holoplankton
Oorganisms that are phytoplankton

Answers

Organisms that are holoplankton. Meroplankton are a diverse group of aquatic organisms with life cycles that include both planktonic and benthic stages.

The larval stages of bigger organisms make up a major portion of the meroplankton. Holoplankton, which are planktonic organisms that remain in the pelagic zone as plankton during their entire life cycle, can be compared with meroplankton.

Many meroplankton go on to the nekton or adopt a benthic (typically sessile) existence on the bottom after spending some time in the plankton. Benthic invertebrate larval stages make up a large component of planktonic populations. For many benthic invertebrates, the planktonic larval stage is very important for the dispersal of their young.

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What were Mendel's 4 ideas explaining the inheritance pattern he observed? Which one of them is considered the Law of Segregation?

Answers

Answer:

1) Principles of Paired Factors

2) Principle of Dominance

3) Law of Segregation or Law of Purity of Gametes (Mendel's First Law of Inheritance)

4) Law of Independent Assortment (Mendel's Second Law of Inheritance).

Explanation:

Hope this helps.

What is the organelle in plats that captures sunlight?

Answers

Answer:

Chloroplasts

Explanation:

It captures the sunlight and converts it

Which of the following is the name of a type of chromosomal mutation and a type of gene mutation?

A. Deletion
B. Inversion
C. substitution

Answers

Answer:

The name of a type of chromosomal mutation and a type of gene mutation is:

Deletion

Describe two reasons why the remaining tropi- cal forests must be preserved. Suggest a plan by which people might be able to both protect and utilize tropical rain forests in a way that is sustainable. nows the percentage of solid

Answers

The two reasons why we must preserve the remaining tropical forests is because this way we can also preserve species that live on it, such as animals and plants, but also it is necessary for us to preserve it to have a natural barrier between us and diseases that can come up after deforestation due to a higher exposure of different species to microorganisms (such as pathogenic virus and bacteria) they do not evolved with, including us, as human beings.

A way that people can use tropical forests both to protect them and to utilize them is through ecotourism, since this way we can spread the voice on the importance of this, and also produce economic benefits of these practices.

What is the difference between blue green and fungi?​

Answers

Blue-green algae are photosynthetic prokaryotes, while fungi are eukaryotes that obtain nutrition through absorption.

Blue-green algae and fungi are both organisms, but they belong to different domains and have distinct characteristics. Blue-green algae, also known as cyanobacteria, are classified under the domain Bacteria, while fungi belong to the domain Eukarya.

Blue-green algae are prokaryotic organisms, lacking a true nucleus and membrane-bound organelles. They obtain energy through photosynthesis and are capable of converting sunlight into chemical energy. They typically inhabit aquatic environments, such as lakes, ponds, and oceans, and some species can fix atmospheric nitrogen.

On the other hand, fungi are eukaryotic organisms with a distinct nucleus and membrane-bound organelles. They obtain nutrition by absorbing organic matter from their surroundings. Fungi play crucial roles in decomposition and nutrient cycling in ecosystems. They can be found in various habitats, including soil, plants, and even as symbiotic partners with other organisms, such as in mycorrhizal associations.

In summary, the primary differences between blue-green algae and fungi lie in their cellular structure, mode of nutrition, and classification. While blue-green algae are photosynthetic prokaryotes, fungi are eukaryotes that obtain nutrition through absorption. Understanding these distinctions helps in appreciating the diversity and ecological significance of these two groups of organisms.

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if the number of nitrifying bacteria decreased what effect would this have on the nitrogen cycle

Answers

If the number of nitrifying bacteria decreased, it would have a negative effect on the nitrogen cycle.

Nitrifying bacteria are responsible for converting ammonia (NH3) into nitrite (NO2-) and nitrate (NO3-), which are important forms of nitrogen that can be used by plants for growth. Without nitrifying bacteria, the process of nitrification would be slowed down or stopped, leading to a decrease in the amount of available nitrite and nitrate for plants. This can have a cascading effect on the entire ecosystem, as other organisms that rely on plants for food would also be impacted.

Additionally, a decrease in nitrifying bacteria would also affect the process of denitrification, which converts nitrate back into nitrogen gas and releases it into the atmosphere. This would lead to a build-up of nitrate in the soil, potentially leading to soil eutrophication, and affecting the water quality.

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Which governmental level usually administers permitting and regulation of land use?

Answers

Answer: Local Governments

Explanation:

Generally, local governments have a large degree of autonomy to control land use within their jurisdictions. States typically grant them the authority to pass ordinances and regulations as long as they do not conflict with other laws. Furthermore, all states give municipalities the power to enact zoning regulations. In 15 states, state legislation also requires municipalities to adopt a Comprehensive Plan. Similarly, in 8 states local governments are required to adopt Local Zoning Ordinances.

Which describes vestigial structures and how they relate to evolution?

A. Snakes have tiny internal hind leg bones, indicating that they likely descended from lizards.
B. Humans and dogs have similar bone structures in their forelimbs, indicating a common ancestor.
C. Dolphins and birds have structures that are adapted for swimming, but the structures did not evolve the same way.
D. The DNA of mice and chickens shows similar patterns, suggesting that the two species are related.
PLEASE ANSWER FAST!!!!!!!!!!!!!

Answers

It’s B. Because Humans are supposed to be a descendant of dogs
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