Why is it important that haploid gametes be produced in animals?

Answers

Answer 1
Final answer:

Haploid gametes are essential in sexual reproduction to ensure that the fertilized zygote has the correct diploid number of chromosomes, preserving genetic stability and facilitating genetic diversity.

Explanation:

The production of haploid gametes is a critical aspect of sexual reproduction in animals. This process ensures that when two gametes fuse during fertilization, the resulting zygote has the appropriate diploid number of chromosomes, with one set contributed by each parent. This restoration of the diploid state is essential to maintain the species-specific chromosome number across generations.

In the diploid-dominant life cycle of nearly all animals, germ cells are produced in the gonads and undergo meiosis to create haploid gametes. These gametes, once formed, cannot divide further, limiting them to a single, unicellular stage in the life cycle. Following fertilization, the diploid zygote develops through mitosis to become a multicellular offspring. This cycle not only maintains genetic stability by controlling chromosome numbers but also allows for genetic diversity, which is crucial for the evolution and survival of species.


Related Questions

Of all prescription drugs, the most often abused are

Answers

Sedatives, Barbiturates and Tranquilizers

How would you distinguish a just action from an unjust action?

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A just action is having to do a certain action that is right or means of having to follow the law that is established and without having to break the rules while an unjust action is having to perform an action or behavior that are named or labelled to be a wrong as a matter of doing bad things or breaking the rules that should be followed.

how do you make babies

Answers

Male sperm enter woman’s ovaries through sexual intercourse creating an embryo.
well, a boy and a girl love eachother mso much that one magicly apears. tada! hope this helps

Which cell junction (not shown) allows direct passage from one cell's cytoplasm to the next?

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Gap junctions are cell junctions that allow the direct passage of molecules, ions, and electrical signals from one animal cell's cytoplasm to another, through connexon channels formed by connexin proteins.

The cell junction that allows direct passage from one cell's cytoplasm to the next is known as a gap junction. Gap junctions are composed of connexons or hemichannels, which consist of six connexin proteins that pair up with connexons of adjacent cells. This unique connection facilitates the exchange of various molecules, ions, and electrical signals between cells, enabling them to communicate and coordinate their functions effectively. In contrast, plants have a similar structure called plasmodesmata which traverse the cell walls and allow for the movement of substances between the cytoplasm of adjacent plant cells.

Dr. Jenkins just completed an experiment. The variable that was measured in her experiment is referred to as the _____ variable.

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it is referred to as dependant variable
Final answer:

The variable that is measured in an experiment, which reflects the potential effect of the independent variable, is referred to as the dependent variable.

Explanation:

The variable that was measured in Dr. Jenkins experiment is referred to as the dependent variable. In any experimental study, there are typically two kinds of variables: independent and dependent. The independent variable is the one that is manipulated or controlled by the researcher. In contrast, the dependent variable is what the researcher measures to see the effect of the independent variable. For instance, in a study exploring the effect of study hours on test scores, the amount of studying would be the independent variable (as it is what is being changed or controlled), while the test scores would be the dependent variable (as it is the outcome that is being measured).

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What law BEST explains why we would expect 75% of the offspring to have large teeth? A) Law of Dominance B) Law of Segregation C) Law of Filial Generations D) Law of Independent Assortment

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The best answer among the following choices would be the first option Law of Dominance.

Correct answer: A). Law of Dominance

The Mendel's law of dominance states that when a cross is done between the parents that are true for characteristics traits, then under such a situation only one of the trait will be dominant and appear in the next generation, and the other will be hidden. It will appear in the trait that is dominant.

The alleles that are expressed in are called as dominant while the characteristics that do not got express is called a recessive trait.






science cannot be used to answer questions of good or evil. true or false

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The answer to this question is true.

Answer:

The correct answer is - True.

Explanation:

Science is a method that explains any natural phenomenon by repeatedly experimenting and observation. It includes different branches in it such as math, biology, and physics.  

Science can not answer if any process or phenomenon is evil or good. It can not answer ethical questions such as GMOs are ethical or cloning is ethical. It only can give an idea about the repercussion of a particular question on the base of facts.

Thus, the correct answer is - true.

If the water temperature in a lake rises from 10oC to 25oC, what effect is it likely to have on aquatic animals that have a high demand for dissolved oxygen?

A) They will adapt to the change in temperature and use less dissolved oxygen.

B) They will leave the lake and find another with cooler water.

C) They will find it easier to meet their needs for dissolved oxygen.

D) They will find it harder to meet their needs for dissolved oxygen.

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The aquatic animals in the lake will likely suffer greatly or possibly die from the decrease in temperature because as the temperature plummets, the oxygen molecules will stretch farther apart so there will be less oxygen in the water. 
the answer is d. hope this helps.

Which element IS found in proteins, but NOT found in carbohydrates?

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The element found in proteins but not in carbs is sulfur.
the answer to that question is  Nitrogen

Starch, which can be obtained from bread, rice, and potatoes, is a

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The starch that is obtained from bread, rice and potatoes is a complex carbohydrate. A complex carbohydrate are being turned to or formed into glucose in which is essential for an individual in order to have energy that is important in our every day activities.

Where does glycolysis occur?
A) cytoplasm
B)mitochondrion
C) nucleus
D) cell membrane

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""Glycolysis" means the splitting of glucose. The first step of the process occurs in the cytoplasm of the cell and yields a small amount of energy (measured in units of ATP) and two molecules of pyruvate. The other steps occur in the mitochondria. It is an ongoing process as your cells have a constant need for energy."
The answer to your question is A) Cytoplasm. 

I just did the test! Hope this helps! 

Who was the first scientist to discover cells with the use of a homemade microscope?

Carolus Linnaeus
Robert Hook
Rudolf Virchow
Theodor Schwann

Answers

Hi There, The answer is Robert Hooke

Answer:

Robert Hooke

Explanation:

The cell was first discovered by Robert Hooke in 1665. He observed a slice of a cork cells under a crude or a primitive microscope. He observed the dead cells of a cork. For the first time, Leeuwenhoek in the year 1674 discovered the living cells in pond water for the first time with an improved microscope.

Which factors may help begin an ice age? Select all that apply.

A. volcanic eruptions
B. Earth's revolution around the Sun
C. increased oxygen in Earth's atmosphere
D. the clustering of continents near the poles
E. increased dust particles in Earth's atmosphere
F. increased carbon dioxide in Earth's atmosphere

Answers

the answer is D, B, F 

Answer:

A. volcanic eruptions  

D. the clustering of continents near the poles  

E. increased dust particles in Earth's atmosphere  

Explanation:

Ice age is the name given to the period where thick layers of ice cover large areas of the earth. These periods can last thousands of years and dramatically change the characteristics of the planet. There have been some very significant ice ages in the history of the planet. In the late nineteenth century, much research showed that there were several ice ages that alternated with interglacial periods.

Many scientists believe that we will live a new ice age in 2050. This ice age, though expected shortly, will bring catastrophic results to the life we know. One certainty we have is that if this ice age occurs, it will be caused by human interference with nature and all the degradation that man has caused to the environment. In addition, this ice age is likely to be triggered by the factors likely to cause an ice age: volcanic eruptions, clustering of continents near the poles and increased dust particles in Earth's atmosphere

How do oil spills affect marine ecosystems?
A) Oil has nutrients that are useful for marine plants.
B) This has no lasting effect, as the oil evaporates in a few days.
C) Marine animals absorb the oil through their skins and store it as fat.
D) Marine organisms die because oil stops oxygen from entering the water.


hint : oil floats on water.

Answers

the answer is D, I hope it helps

Answer:

The answer is D) Marine organisms die because oil stops oxygen from entering the water.

Explanation:

The oil spill results in the death of many marine beings, due to the contaminants of the oil compounds that are tremendously toxic. Due to the oil film, the oxygen content in the water is reduced, which causes the asphyxiation of the fish, since they need oxygen to live, which comes from the water, that by the gills, retains the present oxygen and distributes it through the circulatory system through the body.

what substance is analogous to a factory manager?

Answers

The substance is called DNA.

Because plants do not have skeletons, what accounts for their rigidity?

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The cell walls of plants are very rigid. In addition, the turgor pressure of the water pressing against those cell walls keeps them firm. As water flows through the membranes of the cell walls, the difference in pressure allows these cells to stay in shape.

How has nearly all the food we eat been "genetically modified" in the broadest sense of the term?

Answers

In the broadest sense of the term, we have modified the genes of almost everything. We used selective breeding to breed the most resistant form of crops, the largest sized chickens, and others. In recent years we have even modified them through gene splicing and other methods. Nearly everything we eat, including including "organic" foods have been changed from their original DNA structure, in fact we do not even know anything's original genetic structure because of this. Genetic modification could also include mutations. Some crops have mutated due to pollution, disease, or other effects such as climate change. Without genetic modification our world would differ from what it looks like today.

Both molecule a and molecule b are classified as __________.

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Both molecule a and molecule b are classified as lipids. The correct option is B.

What are lipids?

Lipids are fatty substances that have many different jobs to do in your body. They are a component of your cell membranes and aid in regulating what enters and exits your cells.

They aid in producing hormones, absorbing vitamins, and transporting and storing energy. Having too many lipids can be dangerous.

A vital part of the cell membrane are lipids. Typically, the structure consists of a glycerol backbone, two hydrophobic fatty acid tails, and a phosphate group (hydrophilic). Phospholipids are hence amphipathic.

Triacylglycerols, sometimes referred to as triglycerides, phospholipids, and sterols, are the three primary categories of lipids.

Thus, the correct option is B.

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Your question seems incomplete, the missing options and missing image is:

A. Nucleic acids

B. Lipids

C. Carbohydrates

D. Proteins

Molecule A and B are stereoisomers, specifically enantiomers, which are nonsuperimposable mirror images with identical physical properties but different interactions with polarized light and chiral molecules.

Both molecule A and molecule B are classified as stereoisomers. Stereiosomers are molecules that share the same molecular formula and bonding arrangement but possess a different spatial arrangement of atoms. Specifically, A and B are a type of stereoisomers called enantiomers, which are nonsuperimposable mirror images of each other. A chiral molecule (one that has a non-superposable mirror image, like a left and right hand) will have one enantiomer, and together they form an enantiomeric pair. The physical properties of enantiomers, such as melting point, boiling point, and density, are identical, but they differ in their interaction with polarized light and other chiral molecules, such as proteins. This difference is foundational in biological organic chemistry where the interaction with chiral biological molecules can lead to drastically different biological responses.

All cells contain the same genetic information. why can't cells other than stem cells differentiate into various tissues?

Answers

As cells develop some genes are turned off permanently 

Halophiles are a type of and are considered lovers.

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Halophiles are a type of ARCHEAE and are considered SALT lovers.

Answer:

Halophiles are archaea and considered the lovers of saline or salt.

Explanation:

Halophiles are included under the domain archaea and considered as extremophile organism. Some halophiles are included in the bacteria laso but the major halophiles are the archae.

Halophiles are included in archae as they do not contain well defined nucleus, endomembrane system is absent and cell wall is not made of peptidoglyan layer. Halophiles has the ability to tolerate the extreme saline conditions. They can be found in he area that contains salt concentration five or six times greater than ocean.

What parts of the environment can control the size of a population?

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nature, animals, pollution, amount of natural resources

Which microscope would be used to see pollen found on a suspect side by side with pollen from a crime scene?

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Final answer:

A Scanning Electron Microscope would be ideal for analyzing pollen from a crime scene due to its high resolving power, providing a highly detailed view of the grains, and allowing for a more accurate comparison.

Explanation:

To analyze something as minuscule and detailed as pollen from a crime scene, a Scanning Electron Microscope would be ideal. This type of microscope allows for an extremely detailed view of the specimen. This is due to the fact that electron wavelengths are considerably shorter, up to 100,000 times than the wavelengths of visible-light photons, as shown in Figure 6.1 with an image of pollen. This allows for a detailed comparison of the pollen from a suspect and a crime scene side by side as their detailed features, like the sizes, shapes, and surface patterns, would be distinctly visible.

However, it is worth mentioning that different types of microscopy can be used depending on the specific requirements of the examination. For instance, brightfield microscopy offers clear images with good contrast, while darkfield and phase-contrast microscopes can provide further details as they increase contrast and make more intricate structures visible. But for the case of comparing pollen grains, electron microscopy stands as the most effective option due to its high resolving power.

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It is necessary to heat fix bacteria to the microscope slide. what happens when you pass the microscope slide through a flame a few times?

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When you pass the microscope slide through a flame a few time, the bacteria smear becomes adhere to the slide.
Heat fixing of a bacteria involves passing the microscope slide on which a dried bacteria smear is spread through a busen flame three or four times in order to make the smear to adhere to the slide. The heat fixing preserve the morphology of the organism been fixed.

The outer surface of a cell that controls what enters and leaves is called

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This is the cell membrane.

Which series of labels correctly identifies the indicated structures of this sketch of a cell under a microscope? If you need the answers it will take a while.

Answers

A: The right answer is Vacuole

Vacuoles are organelles present in plant cells.  It is a large single structure, of variable shape according to the cells, delimited by a lipid membrane called tonoplast.

The vacuoles allow the storage of water, ions, sugars, ... and by magnifying, play an important role in the growth of the plant.


B: The right answer is Mitochondria

Mitochondria are organelles present in eukaryoptic cells. The mitochondrion is composed of a double membrane, the inner membrane being folded into mitochondrial ridges.

Mitochondria are the organelles that produce the energy of the cell. The mitochondria thus have a role of power station for the cell. They are the ones who perform cellular respiration.


C: The right answer is Cell membrane (the inside layer)

All cells (prokaryotic and eukaryotic) are separated from their environment by a palsmic membrane.

The plasma membrane is the line of demarcation between the cell and its environment (= envelope of the cell).

It determines what goes into the cell and what comes out of it. Like all biological membranes, the plasma membrane has a selective permeability, that is to say it is allowed to pass through certain substances more easily than others.

The plasma membrane consists of a double lipid layer in which proteins are inserted.


D: The right answer is Chloroplast

Chloroplasts are important organelles specific to plant cells. Chloroplasts appear green ... They contain chlorophyll, a pigment that captures solar energy.

Choroplasts perform photosynthesis, that is, they absorb sunlight and use it for the manufacture (synthesis) of organic compounds from carbon dioxide and water.


E: The right answer is Lysosome

The lysosome is a small spherical structure (a vesicle) delimited by a lipid membrane located in the cytoplasm of eukaryotic cells. The membrane contains ion channels (proton pumps) that allow the active entry of H + ions, in order to maintain an acid pH (between 3.5 and 5) within the lysosomal vesicle.

Lysosomes are organelles of eukaryotic cells that contain a mixture of digestive enzymes used to degrade macromolecules.

Lysosomes are considered the "stomach" of the cell.


F: The right answer is Endoplasmic reticulum

The endoplasmic reticulum are organelles of eukaryotes that extend throughout the cytoplasm (like a labyrinth). These are organelles that produce proteins and play a vital role in the development of the other membranes of the cell.

Which takes more time to recover, primary succession or secondary succession?

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Answer:  "Primary succession takes "MORE TIME" [to recover (than "secondary succession"] .
_________________________________________________________

The cerebral cortex plays a major role in our emotions because it _____.

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The cerebral cortex plays a major role in out emotions because it plays a role in the capability to identify and control emotions. The Cerebral Cortex is composed of tightly packed neurons and is the creased, outermost layer that surrounds the brain. It is also accountable for higher thought progressions including speech and decision making . The cortex is divided into four different lobes, the frontal, parietal,  temporal, and occipital, which are each responsible for giving out different types of sensory data. 

Within ecosystems, high quality energy is constantly ____.
a. being recycled
b. becoming low quality energy
c. being destroyed
d. becoming matter
e. being made

Answers

It is becoming low quality energy

As a result, the amount of energy delivered diminishes as we travel up the trophic levels. In the food chain, grass has the most energy and lions have the least. Thus, option B is correct.

What alters in change in quality of energy in an ecosystem?

The result is that the lowest quantity of energy is accessible to carnivores (secondary consumers) that feed on herbivores and detritivores, as well as those that devour other carnivores (tertiary consumers).

To create organic matter from carbon dioxide and water, producers like plants, algae, and cyanobacteria utilize the energy from sunshine.

A trophic pyramid is a basic interactional structure shared by all biological populations.

Therefore, High-quality energy is constantly converting to low-quality energy inside ecosystems.

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A neuron will not respond to a second stimulus of equal strength to the first stimulus to which it has already responded because ___

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A neuron will not respond to a second stimulus of equal strength to the first stimulus to which it has already responded because the neuron is in the absolute refractory period.

A neuron will not respond to a second stimulus of equal strength to the first during its absolute refractory period because the voltage-gated sodium channels are inactivated. During the relative refractory period, a stronger than normal stimulus can trigger an action potential because the membrane is hyperpolarized.

A neuron will not respond to a second stimulus of equal strength to the first stimulus during the absolute refractory period, even if the stimulus strength increases. During this period, the voltage-gated sodium channels are inactivated and cannot reopen in response to a stimulus. However, during the relative refractory period, a neuron can fire a second action potential if the stimulus strength is stronger than usual because the neuron's membrane is hyperpolarized. Only when the neuron's membrane potential is restored to its resting state can it fire at its normal stimulus threshold again.

Stimulus strength is normally coded by the frequency of action potential firing, but during the absolute refractory period, the neuron cannot increase its firing rate regardless of stimulus strength. After this period, the cell requires additional time and stronger stimuli during the relative refractory period to reach the threshold for firing another action potential.

Concept covered: recap and review answer each question to complete this review of all the stages of respiration

Answers

Answer: Respiration is a very important process that happens in all living things. It is the way in which our bodies release energy from the food we eat. When your hand is above your head, the flow of blood is reduced. This means the supply of glucose and oxygen to the cells is limited, they respire less, and release less energy. Therefore, the cells get tired more quickly and ache more readily. Pupils may also account for their results by discussing anaerobic respiration.
Final answer:

Cellular respiration involves converting energy from nutrients into ATP with waste products being released, occurring over three stages: glycolysis, the Krebs cycle, and the electron transport chain. The mitochondrion is vital for these processes. Respiration refers to breathing and includes ventilation and gas exchange, differing from cellular respiration, which is a metabolic process in cells.

Explanation:

Cellular respiration is a set of metabolic reactions used by cells to convert biochemical energy from nutrients into adenosine triphosphate (ATP), and then release waste products. The three stages of cellular respiration are glycolysis, the citric acid cycle (Krebs cycle), and the electron transport chain.

The mitochondrion is a double-membraned organelle that plays a critical role in cellular respiration by hosting the citric acid cycle and electron transport chain. The large surface area provided by its highly folded inner membrane is critical for the reactions of cellular respiration that produce ATP.

For an organism lacking mitochondria, it would use a form of respiration such as fermentation, which does not require mitochondria and occurs in the cytoplasm.

The water vapor that condenses on a cold window pane when you exhale comes from the lungs as they expel water vapor that is a byproduct of cellular respiration.

Differentiating Between Respiration and Cellular Respiration

Respiration generally refers to breathing which involves the inhalation of oxygen and exhalation of carbon dioxide. It consists of two parts: ventilation and gas exchange. Cellular respiration, while related to breathing, refers explicitly to the biochemical process within cells that converts nutrients into energy.

Aerobic respiration is a type of cellular respiration that uses oxygen to produce ATP. The overall chemical reaction for aerobic respiration is C6H12O6 (glucose) + 6O2 (oxygen) → 6CO2 (carbon dioxide) + 6H2O (water) + energy (ATP). The four stages of aerobic respiration are glycolysis, the transition reaction, the Krebs cycle, and the electron transport chain and oxidative phosphorylation.

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