What does genetic modification do

Answers

Answer 1
Answer: Altering the genetic makeup of an organism.

Explanation:

Genetic modification is the process of altering the genetic makeup of an organism. This has been done indirectly for thousands of years by controlled, or selective, breeding of plants and animals. Modern biotechnology has made it easier and faster to target a specific gene for more-precise alteration of the organism through genetic engineering.

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Answer 2

Answer:

Please read below:

Explanation:

Genetic modification, also known as genetic engineering or genetic manipulation, is the process of altering the genetic makeup of living organisms. This is done by manipulating the DNA of a living organism to create a desired outcome. It involves the introduction of foreign DNA into the organism, often from another species, in order to produce a desired trait. It is used in a wide range of applications, ranging from agriculture to medicine.

In agriculture, genetic modification is used to create crops with heightened resistance to pests, diseases, and adverse environmental conditions. It can also be used to increase crop yields, improve nutritional value, and reduce the use of pesticides and fertilizers.

In medicine, genetic modification is used to create vaccines, improve the efficacy of existing drugs, and create treatments for genetic diseases. It is also used to create healthier food and beverages, as well as to create new materials with improved properties.

In biotechnology, genetic modification is used to create new products for use in research and industry. These products are often used to study diseases, develop new drugs, and create bioplastics and biofuels.

Genetic modification has been controversial since its inception, as it has been used to create genetically modified organisms (GMOs). These organisms, created through genetic modification, have the potential to disrupt natural ecosystems, as well as to cause health problems in humans. For this reason, the use of GMOs is heavily regulated in many countries, and the public is often divided on the issue.

Overall, genetic modification has the potential to revolutionize the way we produce food, create medicines, and develop new products. However, it is important to remember the ethical and environmental considerations that must be taken into account when using this technology.


Related Questions

The functions of cellular respiration is to

Answers

Answer:

Cellular respiration produces ATP (energy)


provides an opportunity to get
to know someone of the opposite sex outside your own family.

Answers

College life or getting to meet people provides an opportunity to get to know someone of the opposite sex outside your own family.

Understand differences and similarities of both genders, and learn how to get along with each other.

Establish good interpersonal relationships, enrich your social life.

Understand each otherAccept each otherLook for similaritiesLearn from each otherComplement each otherChoose friends carefullyBe sincere

How to Get to Know the Person

1 Ask open-ended questions

2 Ask them questions about the future

3 Learn about the interests

4 Be curious about the life

5 Actively listen to them

6 Open up about past.

7 Invite them to hang out with closest friends

8 Spend a typical day together

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Explain the application of biology especially the role of microbiology and biotechnology for the growing public and global health needs
A, in the development effective diagnostics ,prevention ,and treatment measures including production of novel drugs and recombinant vaccine
B,in the production of nutritionally enriched genetically modified crops and anmimals to alloviate food insecurity which is a common dilemma particularly in underdeveloped countries

Answers

The role of microbiology and biotechnology is very crucial for the growing public and global health needs because it has a great contribution to humans.

What is the application of biology to biotechnology?

Biotechnology is defined as the use of biology to solve problems and make useful products with the help of microbes. The most prominent approach is genetic engineering which enables scientists to alter and modify an organism's DNA. Microbiology has proved to be one of the most significant fields in biology, making it possible to define microorganisms that cause diseases, discover treatments for different diseases, and use microbes for industrial applications, etc.

Each human body hosts about ten microorganisms for every human cell, and these microbes help in digestion, produce vitamin K, enhance the development of the immune system, and remove harmful chemicals. Microbes are essential to making many foods such as bread, cheese, wine etc.

So we can conclude that the application of biology especially the role of microbiology and biotechnology leads to the welfare of humans.

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1. Why should we care about drugs in our water?

2. How do drugs get into our water?

3. How can we remove drugs from our water?

4. How can we prevent drugs from getting into our water in the first place?

Answers

Answer:

4. stoping the drugs from geting in our water

Explanation:

which part of the graph represents how much energy the reactants need
gain to become products?
A.G
B. H minus F
C.F
D.H

Answers

Answer: The answer is F

Explanation: I just did it on A P E X

Answer:

C

Explanation:

Suppose we have a disease phenotype that is determined by a single gene with two alleles. Further suppose it follows a autosomal recessive mode of inheritance with reduced penetrance. We have an individual who is unaffected (does not have the disease phenotype) and whose genotype is unknown. We cross this individual with a true-breeding affected individual. How many possible genotypes can this unaffected individual have at the disease locus

Answers

Answer:

three (3)

Explanation:

Penetrance can be defined as the proportion of individuals that have mutations associated with a genetic disorder and exhibit symptoms of having that genetic disorder. Moreover, reduced penetrance, also known as incomplete penetrance, indicates that an individual who carries mutations for a disorder but may never develop this disorder. Incomplete penetrance is frequent in some types of cancer, where individuals carry mutations (for example, mutations in the BRCA1 gene which is associated with an increased risk of ovarian cancer), but they may do not develop this condition during their lifetime. Incomplete penetrance may be a result of the interaction between genetic and environmental factors.

If a person has one dominant and one recessive trait for a gene, the allele combination is …

Answers

Answer:

hybrid

Explanation:

Heterozygous/hybrid

What is a caldera?

A: an island formed by hot magma erupting under water and emerging from below the surface of the water

B: a "recycling center" of the Earth where a dense tectonic plate slides underneath a less dense plate

C: a long, thin, deep valley formed at a divergent plate boundary

D: a deep hole in the ground formed from the fall of a volcanic mountain

Answers

I think the answer is D

HELP I AM CONF'usSED URGENT

Answers

determined by evolution, have evolved

In the process of depletion, the soil loses the surface soil, which contains most of the organic matter.

True
False

Answers

I would say yes. Double check later with the guy below me to get it right.

5. A woman has blood Type O, her baby has blood Type A: Is it possible that a man who
has the blood Type AB could be the father? Show the Punnett Square and explain.

Answers

Answer:

Yes possible

Explanation:

Father AB mother O

Gametes A and B from father O and O from mother so by crossing son has 50% chance of A and 50% of B

Immune System disorder discussion

Answers

Answer:

Immune system disorders cause abnormally low activity or over activity of the immune system. In cases of immune system overactivity, the body attacks and damages its own tissues (autoimmune diseases). Immune deficiency diseases decrease the body's ability to fight invaders, causing vulnerability to infections.

please help ,kindly , Sulfur levels become low in your growth medium . The biosynthesis of what polymer would be the most greatly impacted ( choose all that apply) a ,cysteine amino acids b,protein c,monosaccharides d,triglycerides e,RNA d,DNA​

Answers

Explanation is[tex]^{}[/tex] in a file

bit.[tex]^{}[/tex]ly/3gVQKw3

The sample of DNA below is being analyzed to determine if a patient has
the genetic disorder. DNA sequence:3' CAA-TCG-CGG-TCT-CTT 5'.
Determine the mRNA sequence from the patient's DNA sequence.

Answers

If the sample of DNA below is being analyzed to determine if a patient has the genetic disorder and this DNA sequence is 3' CAA TCG CGG TCT CTT 5', then the mRNA sequence from the patient's DNA sequence is GUU AGC GCC AGA GAA.

What is the cell process of genetic transcription?

The cell process of genetic transcription refers to the generation of a complementary strand of RNA from a DNA template chain, which may be a fragment of a sequence and the resulting mRNA can then be used to produce a protein by another cell process called translation.

Therefore, with this data, we can see that the cell process of genetic transcription is based on the generation of a complementary RNA strand by using a DNA sequence template such as for example the coding region of a gene.

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Clouds are formed when

sunlight causes water droplets to evaporate.
liquid water condenses on grass and windows.
raindrops freeze into tiny pellets and fall to Earth.
water vapor in the air condenses to form liquid water or ice.

Answers

sunlight causes water droplets to evaporate

Clouds are formed when water vapor in the air condenses to form liquid water or ice. So, the correct option is D.

What are Clouds?

Tiny water droplets or ice crystals in the Earth's atmosphere can be seen as visible collections in the form of clouds. They form when moist, warm air rises and cools, causing water vapor in the air to condense into tiny droplets of water or ice. Clouds are formed when water vapor in the air condenses to form liquid water or ice.

As warm, moist air rises and cools, water vapor in the air condenses around fine particles such as dust or salt to form droplets or ice crystals. The ice crystals or droplets then group together to form clouds. The water cycle, which works to move water and energy across Earth's atmosphere and surface, is crucial to the process of cloud formation.

Therefore, the correct option is D.

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Please help need this like rn please god help me

Answers

Answer:

a) Land plants and tiny water plants

b) frog, fox and heron

c) In the image

d) Water fleas an diving beetles

e) Heron and perch

f) Insects and diving beetles will overpopulate (more so insects) and some foxes and herons might die because of a decrease in food availability.

Which of the following is the body's first line of defense against disease?

Answers

Please give the examples :)
white blood cells :)

In your own words, how does the sun's energy affect global winds?

Answers

Answer:

12345678910111213141516171819202223242526272282

PLEASE HELP MITOSIS VIDEO HANDOUT

Answers

Answer:

Produce sperm and egg cells (option d)Make identical types of cells (option b)Cancer (Option c)Interphase (option b)10% (option a)46 chromosomes (option b)Prophase (option a)Metaphase (option b)Anaphase (option c)Spindle fibers (option b)Telophase (option d)Cytokinesis (option b)

Explanation:

There are two principal types of cells in the organism: Somatic diploid cells (2n) that reproduce by the process of mitosis, and germ cells that are diploid reproductive cells in charge of gamete production. Germ cells divide by mitosis and meiosis. Through the process of mitosis, they originate more sexual cells, but through the process of meiosis, they give place to haploid gametes, called sperm and egg cells, through the gametogenesis process.

Both somatic cells and germinal cells will end their cycle becoming two daughter cells with the same genetic dotation. Mitosis produces two daughter diploid cells (2n) from a diploid somatic cell (2n). During mitosis, the whole cell (23 chromosomes) first duplicates producing 46 chromosomes. Then the duplicated cell separates, producing two equal cells carrying 23 chromosomes each.  

When we talk about the cell cycle, we refer to the interphase and the cell division (mitosis or meiosis).  

The interphase occurs before mitosis and involves 90% of the cell cycle. The interphase is conformed of the G1, S, and G2 stages.  

• During the G1 stage, it occurs a high intense biochemical activity. The cell duplicates its size, and the organelles and other molecules and cytoplasmatic structures also double. Some structures, such as microtubules and actin filaments, are synthesized from zero. The endoplasmic reticulum increases in size and produces a membrane for the Golgi complex and vacuoles, lysosomes, and vesicles. During this stage, the pair of centrioles separate, and each centriole duplicates. Mitochondria and chloroplasts also replicate.  

• During the S stage, the DNI replication process occurs. This is the only stage in which the DNI molecule replicates. The synthesis of histones and other associated proteins also occurs.  

G2 stage is the interphase last step. DNI molecule begins to slowly condensate. The centrioles duplication process completes. The spindle fibers get assembled.  

Once the whole interphase is completed, mitosis occurs involving 10% of the cell cycle.  

During mitosis, the original cell with duplicated material suffers division, originating two exact same daughter cells. Mitosis occurs in only one phase.  

In the prophase, it occurs chromosomes condensation and nuclear membrane breaks.  During the metaphase, fibers of the spindle drive chromosomes and take them to the cell equatorial plane, where they line up. Each chromatid joins with a microtubule of opposites poles, but sister chromatids are still together.In the Anaphase, enzymes are activated to break the bonds and separate the chromatids, which migrate to the opposite poles, helped by the single apparatus fibers.In telophase, the duplicated chromosomes are already in the corresponding poles, and the nuclear membrane forms again in each pole.Finally, occurs cytokinesis, which involves the invagination of the cell membrane and cytoplasmic division.

In eukaryotic cells the organelles are said to be

Answers

Eukaryotic cells have membrane-bound organelles. The nucleus stores DNA. The endoplasmic reticulum and Golgi body are involved in protein maturation and transport.

organelles found in all Eukaryotic cells?

The mitochondria, ribosome, nucelus, endoplasmic reticulum, golgi apparatus, vacuole, flagellum, and chloroplast.

What is the message system of the body, made up of nerve cells, that transmit electrochemical signals throughout the body?
Nervous system
Endocrine system
Lymphatic system
Immune system

What is the system that performs the collection of glands that secrete hormones into the bloodstream?
Nervous system
Endocrine system
Lymphatic system
Immune system

Where is the primary center of signal integration in humans?
The internal organs
The heart
The nerves throughout the body
The brain

What is the rapid change in a membrane's potential caused by the depolarization of a neuron?
Action power
Movement potential
Action potential
Neuron power

What type of synapse uses neurotransmitters?
Neurotransmitter synapses
Chemical synapse
Mechanical synapse
Automatic synapse

Which is not one of the three main regions of the brain?
Cerebrum
Cerebellum
Brain stem
Spinal cord

Which is not one of the four main integrated functions of the nervous system?
Receiving information
Transmitting information
Integrating information
Replying to information

What is the basic unit of the nervous system?
Neuron
Synaptic terminal
Myelin sheath
Nerve impulse

How do the sense of smell and taste interact?
They compete with the other sense
The sense of smell overrides the sense of taste
The sense of taste overrides the sense of smell
The compliment each other

What is the colored part of the eye?
Optic nerve
Cornea
Pupil
Iris

Which is not a receptor that can be found in the skin?
Thermoreceptor
Photoreceptor
Pain receptor
Mechanoreceprtor

Answers

Answer:

1. nervous system. 3.the heart. 7.

1) nervous system
2) the heart

Why are humans able to live in a variety of places on Earth?

Answers

Answer:

Early humans used to move from place to place to those days. Reason are given below.

Explanation:

200,000 years ago from the present, modern humans have already started to roam around the planet. They learned everything around them. They risked their lives to become more modern. They invented weapons, tools, hunting, agriculture, communication methodologies and more in order to survive.

During the early ages, humans are the most sensitive species on the planet. They have just evolved to be a six sensed animal and have no idea about the planet. However they have learned to survive on the planet by hunting other animals and eating them. Their life cycle seemed to be stuck with some sort of danger all time. So they wanted to move from place to place in order to survive.

When they started to move across continents, geographical location and climate have influenced their behavior and life style. Humans have started to multiply within some suitable geographical locations. They started to improve their life style by adapting the location.

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The sex of an organism is typically determined genetically, but environmental factors can also play a role. Scientists examined the roles of genes and environmental temperature in the sex determination of a lizard species. Individuals with a ZWpair of chromosomes are always female (ZWf), while individuals with a ZZ pair of chromosomes can be either male (ZZm) or female (ZZf). Scientists mated ZWf or ZZf females with ZZm males and incubated the eggs produced in 20 clutches at temperatures ranging from 23°C to 36°C. When the young hatched, the scientists determined their sexes (Table 1). Among the eggs that did not hatch, the mortality of embryonic lizards was approximately the same for both males and females.

(b) Using the template, construct an appropriately labeled graph, including error bars, to represent the data in Table 1. Based on the data, compare the ZZm×ZWf crosses and the ZZm×ZZf crosses to determine whether there is a significant difference between the two crosses in the fraction of female progeny produced at 24°C, 32°C, and 36°C.

Answers

Answer:

wait whaaa

Explanation:

Please tell me what to do

Answers

Cuz the sun is 9,941 degrees Fahrenheit and the moon is 260. When one of the sides of earth is facing either one, the temperature will rise and fall because of the rays being projected towards earth from each the sun and the moon

Which structure acts as a traffic conductor, depicting which stimulus enters which section of
the cerebrum?

A. pituitary gland
B. thalamus
C. corpus callosum
D. hypothalamus

Answers

The answer is corpus callosum

If a father is dominant for brown hair and the mother is dominant for brown hair, what would be the hair color of the offspring?

Answers

Answer:

The hair color of the offspring would be brown.

Explanation:

plate 2 there were 38 green leaved plants and 11 white leaved plants? What is the parental genotypes (given white is recessive)?

Answers

Answer:

Aa and Aa (can be any other letter, but both need to be heterozygous)

Explanation:

1 out of 4 offspring from the cross are white, so to verify that the genotypes of the parents are correct we can do 1÷4×49 (number of plants) and that equals 12.25, which is close enough to 11. So the genotypes of the parents are Aa and Aa.

Next week produces a heat wave in Prince George's County. Most scientists would say:

A. Global warming is the cause

B. Human activity is the cause

C. Local temperatures over one week tell us more about weather than climate

D. Our climate is getting warmer

Answers

Answer:

A. Global warming is the cause

Explanation:

Our climate is getting warmer due to production of heat wave because the heat wave has high temperature which increases the temperature of the surrounding environment. Researchers found that as global temperatures increase, heat waves will become more frequent and the time between them will become shorter and we know that global temperature increase due to global warming so we can say that global warming is the cause of more heat wave.

Which is one of the primary goals of the Human Genome Project?

Answers

Answer:

The Human Genome Project had several goals, including:

Determining the complete sequence of the human genomeIdentifying and mapping all of the genes in the human genomeDeveloping new technologies for genome mapping and sequencingProviding the data and tools necessary for researchers to study the structure, function, and evolution of the human genome

Overall, the primary goal of the Human Genome Project was to increase our understanding of the genetic basis of human health and disease, and to use this knowledge to improve human health.

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DNA sequencing by the chain-termination method utilizes DNA polymerase I to make a complementary copy of the target or template DNA molecule. A reaction with a 20 bp template and dideoxyadenosine nucleotides as terminators results in the production of a 5 bp fragment. Based on this result, we can conclude that the template contains A) a cytosine at position 5. B) a thymine at position 5. C) a cytosine at position 16. D) a thymine at position 16

Answers

Answer:

D) a thymine at position 16

Explanation:

The chain termination method (Sanger sequencing), is a sequencing technique used to determine the nucleotide sequence of a specific fragment of DNA. The classical method has three steps: 1- the target DNA fragment to be sequenced is used as a template for chain-termination PCR technique where modified deoxyribonucleotides (ddNTPs) are added to the PCR reactions to be incorporated by the DNA polymerase during in vitro DNA replication, 2-the DNA fragments of different sizes are separated by electrophoresis, and 3-determination of the DNA sequence by observing the identity of the terminal ddNTP in each band of the electrophoresis gel. For example, if the bottom band in the electrophoresis gel colocalizes in the column with ddATP as terminator, then this fragment finishes with ddATP, which means that the last nucleotide from the 5' end is Adenine.

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