The two types of reproduction are and ..

Answers

Answer 1
asexual and sexual reproduction
Answer 2
Sexual and asexual reproduction

Related Questions

A normal resting value for oxygen uptake in humans lies in the rasnge of

Answers

The normal resting value for oxygen uptake in humans lies in the range of 200-250 ml O₂/min.

During rest, the body's oxygen demand is low, and the amount of oxygen taken up by the body is relatively constant. The normal resting value for oxygen uptake in humans is around 200-250 ml O₂/min, which can vary depending on factors such as age, gender, and physical fitness level.

This value can be measured using various techniques such as indirect calorimetry, which measures the amount of oxygen consumed and carbon dioxide produced by the body.

It is important to establish a normal range for oxygen uptake in order to monitor individuals who may have respiratory or cardiovascular conditions that affect their ability to take up oxygen. Additionally, knowing the normal range can help to diagnose disorders that affect oxygen uptake, such as metabolic disorders and lung diseases.

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What is the purpose of ethical guidelines for the handling of experimental subjects?



a. to help scientists plan an experiment in which no animals or humans are harmed



b. to make sure that the hypothesis is revenant to the research question



c. to list all of the materials that are needed to perform an experiment on garden plants



d. to indicate that the research question under investigation has never been asked before

Answers

The purpose of ethical guidelines for the handling of experimental subjects is to help scientists plan an experiment in which no animals or humans are harmed. The answer is a.

These guidelines aim to prevent any physical, psychological, or emotional harm to the subjects involved in the experiment. They also ensure that the experiment is designed to achieve its scientific objectives without compromising the dignity, welfare, and safety of the subjects.

The guidelines require that researchers obtain informed consent from the subjects, maintain confidentiality of their data, and minimize any risks or discomfort associated with the study.

Adhering to ethical guidelines promotes the integrity and credibility of research and helps to maintain public trust in scientific studies. Hence, a. is the right answer.

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Plant hormones server as a chemical messenger between cells and tissues. Auxin is a plant hormone that causes the cell on the shady side of a plant shoot to elongate. The response enabled by auxins is known as

Answers

Answer:

The response enabled by auxins, specifically the elongation of cells on the shady side of a plant shoot, is known as phototropism.

Explanation:

Phototropism is a plant's response to light, in which the plant grows towards the source of light. Auxins are produced in the apical meristem of the plant, and they are transported downwards through the stem towards the roots. When light shines on a plant, auxins accumulate on the shaded side, causing the cells on that side to elongate more than the cells on the sunny side. This results in the plant bending towards the light source, allowing it to maximize its exposure to light for photosynthesis. Auxins also have other functions in plant growth and development, such as promoting root growth and differentiation and inhibiting lateral bud growth.

can someone please write this for me

Answers

The use of digitized signals offers a more reliable and accurate way to encode and transmit information compared to analog signals.

What are analog and digital signals?

Analog signals are continuous and vary in amplitude and frequency, while digital signals are discrete and represented by binary code.

While both types of signals have their advantages and disadvantages, the use of digitized signals has become increasingly popular in recent years due to their reliability and ability to transmit information accurately.

One key advantage of digitized signals is their ability to eliminate noise and distortion during transmission. Analog signals are susceptible to interference from external sources, such as electromagnetic fields or radio waves, which can cause distortion and affect the quality of the signal.

In contrast, digitized signals are less susceptible to noise and can be transmitted over longer distances with little to no degradation in quality. Additionally, digital signals can be easily duplicated and stored, making them ideal for archiving and retrieval purposes.

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Molecular sequencing suggests that mitochondria arose from a group of prokaryotic organisms within the.

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Molecular sequencing suggests that mitochondria arose from a group of prokaryotic organisms within the alpha-proteobacteria.

The endosymbiotic theory posits that mitochondria were once free-living prokaryotes that were engulfed by a host cell in a symbiotic relationship. Over time, the engulfed prokaryotes evolved into mitochondria, the energy-producing organelles found in eukaryotic cells.

The evidence supporting this theory comes from various molecular and genetic similarities between mitochondria and alpha-proteobacteria. For instance, both share similarities in their DNA sequences, which indicate a common ancestor. Additionally, mitochondrial ribosomes closely resemble those of prokaryotes rather than eukaryotic ribosomes, providing further evidence for a prokaryotic origin.

Another key piece of evidence comes from the fact that mitochondria have their own circular DNA, similar to that found in prokaryotes. This suggests that they were once capable of independent replication and transcription before becoming integrated into the eukaryotic cell. Moreover, the presence of a double membrane around mitochondria can be explained by the engulfment process, where the outer membrane originated from the host cell, and the inner membrane belonged to the engulfed prokaryote.

In conclusion, molecular sequencing has provided significant evidence to support the endosymbiotic theory, suggesting that mitochondria arose from a group of prokaryotic organisms within the alpha-proteobacteria. The similarities in DNA sequences, ribosome structures, and the presence of circular DNA in mitochondria all point to a common prokaryotic ancestor and the evolution of these organelles through a symbiotic relationship with eukaryotic cells.

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1. Complete eradication programs of ticks in cow house system must be applied on ……. ………

A. Animals C. Stable B. Animals and stable. D. All answers are false. 2. …………is that water which fall to the ground, does not penetrate the earth layers, but forms rivers, streams and lakes

A. Surface water C. Ground water

B. Well D. Spring 3. ……………. Is reached after penetration of the ground without touching the first impermeable stratum

A. Deep well C. Shallow spring

B. Shallow well D. Deep spring

4. Water intended for drinking should be…………

A. Palatable C. Free from impurities B. Sufficient in quantity D. All answers are true 5. Chlorine is used in water treatment plants to provide chlorine in the ratio of ………. Ppm by using special apparatus called chlorinator. A. 3 C. 0. 5

B. 2 D. 1

Answers

Answer:

Explanation:

1. Complete eradication programs of ticks in cow house system must be applied on B. Animals and stable.

2. A. Surface water is that water which falls to the ground, does not penetrate the earth layers, but forms rivers, streams and lakes.

3. B. Shallow well is reached after penetration of the ground without touching the first impermeable stratum.

4. Water intended for drinking should be D. All answers are true (palatable, sufficient in quantity and free from impurities).

5. Chlorine is used in water treatment plants to provide chlorine in the ratio of C. 0.5 ppm by using special apparatus called chlorinator.

1. Complete eradication programs of ticks in cow house systems must be applied on animals and stable. The correct answer is (B).

2. Surface water is that water that falls to the ground, and does not penetrate the earth's layers, but forms rivers, streams, and lakes. The correct answer is (A).

3. A deep well is reached after penetration of the ground without touching the first impermeable stratum. The correct answer is (A).

4. Water intended for drinking should be all of the following: palatable, free from impurities, and sufficient in quantity. The correct answer is (D).

5. Chlorine is used in water treatment plants to provide chlorine in the ratio of 1 ppm by using a special apparatus called a chlorinator. The correct answer is (D).

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As seen in the venn diagram, meiosis is responsible for the production of haploid gametes. Somatic or body cells are 2n cells. This change in chromosome number is the result of.

Answers

The change in chromosome number from diploid (2n) to haploid (n) during gamete formation is the result of two consecutive cell divisions, known as meiosis I and meiosis II.

Meiosis involves the replication of DNA followed by two rounds of cell division that result in the production of four genetically diverse haploid daughter cells. During meiosis I, homologous chromosomes pair and exchange genetic information through a process called crossing over. The homologous chromosomes then separate, leading to the formation of two haploid daughter cells.

During meiosis II, the sister chromatids of each chromosome separate, resulting in four haploid daughter cells with unique genetic combinations. This reduction in chromosome number is essential for sexual reproduction and ensures that the resulting offspring have the correct number of chromosomes.

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Identify and describe patterns of how air masses interact and change over time

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Air masses interact and change over time in a variety of ways. The interactions between air masses form the basis of weather systems and global weather patterns.

Air masses move in response to pressure differences, temperature differences, and other factors. As air masses interact, they can change in temperature, humidity, and other characteristics. Air masses can also mix, creating fronts and other weather systems. As air masses move, they can bring wet or dry conditions, warm or cold temperatures, and other changes in the atmosphere.

Over time, these interactions can create longer-term shifts in global weather patterns, such as El Niño or La Niña. By studying how air masses interact and change over time, meteorologists can better understand and predict global weather patterns.

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A
C
Intro
B
D
Refer to the diagram to the left and use the drop-down
menus to identify the parts of a magnifying glass.
Label A:
Label B:
Label C:

Answers

The only correct answer must be A

Label A is the handle of the magnifying glass.

Why is Label A the magnifying glass handle?

It is used to hold the magnifying glass and aid in lens placement. It is normally constructed of plastic or wood.

The lens of the magnifying glass is label B. It is used to magnify the item being viewed and is generally constructed of glass.

The magnifying glass frame is identified by Label C. It serves to support the handle and maintain the lens in place. It is commonly constructed of metal.

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A group of which level of classification that is closely related will composed a genus?


O kingdoms


species


ophyla


O orders

Answers

A genus is a level of classification that is closely related and is typically composed of a group of species.

Here, correct option is B.

Genus is a taxonomic rank which is one step below the family level and one step above the species level. This rank is used to classify and organize related organisms into a group. A genus is typically divided into multiple species, which are all closely related.

This means that within a genus, the species are generally similar in characteristics such as anatomy, physiology, behavior, and genetics. Furthermore, the species within a genus have evolved from a common ancestor.

For example, the genus Canis, which includes the wolf and coyote, is comprised of multiple species that have evolved from a common ancestor. As such, the genus is an important level of classification for grouping and understanding organisms.

Therefore, correct option is B.

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Energy and carbon flow through the ecosystem and are powered by solar energy produced from the sun. what is the correct order of energy flow through an ecosystem?

Answers

The correct order of energy flow through an ecosystem is producers, primary consumers, secondary consumers, tertiary consumers & decomposers.

Producers (autotrophs) - Plants and other photosynthetic organisms that convert solar energy into organic compounds.

Primary Consumers (herbivores) - Animals that consume producers for energy.

Secondary Consumers (carnivores) - Animals that consume primary consumers for energy.

Tertiary Consumers (top carnivores) - Animals that consume secondary consumers for energy.

Decomposers - Organisms such as bacteria and fungi that break down dead organic matter and recycle nutrients back into the ecosystem.

This order is known as the food chain, and each level is connected to the one before and after it.

The flow of energy and carbon through an ecosystem is important because it maintains balance and supports the survival of all organisms within the ecosystem.

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A(n)


Square is a tool used to calculate food rations

Answers

A square is not a tool used to calculate food rations. A square is a geometrical shape that has four equal sides and four right angles. However, there are various tools and methods used to calculate food rations, such as nutritional charts, portion control tools, and measuring cups and spoons. These tools are helpful in determining the appropriate amounts of food for individuals or groups based on their dietary needs and goals.

How do we use food rations?

Tribal hunters or gathers could have possibly used these food rations should they become injured or stranded as a means of survival. If the player finds food ration that has been hung up high, they can knock it down by pressing G to throw a stone. Throwing held weapons or tools is also just as effective.

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1 How might the community of organisms that live in the area of a flowering plant, such as a blueberry bush impact the reproductive success of the plant?​

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The community of organisms that live in the area of a flowering plant, such as a blueberry bush impact the reproductive success of the plant  as a result of the pollination of the plant's flowers.

What is pollination?

Pollination  ca be descibed as the process of transferring pollen grains between the male anther of a flower  as well as the female stigma.

It should be noted that the goal of every living organism,  expecially the  plants, is to bring about the offspring for the next generation and this can be doine with production of offspring is by making seeds. However  flowering plant, such as a blueberry bush relies on how insect activities with respect to pollination.

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4. The most likely cause of the overall
change in the level of carbon dioxide from
1960 to 1990 is an increase in the-
360

number of violent storms
number of volcanic eruptions
use of nuclear power
use of fossil fuels

Answers

Answer:

d

Explanation:

maybe, I was pondering between c and d but I think it's d since it produced more co2 than c does

Gram stain indicates which characteristic? *
o energy source
o method of motility
o composition of cell wall
o form of genetic material

Answers

The Gram stain is a laboratory technique used to differentiate bacterial species based on the composition of their cell walls.


The characteristic that the Gram stain indicates is the composition of the cell wall. This is important because bacteria can have either a thick or thin layer of peptidoglycan in their cell walls, which will determine whether they will be gram-positive or gram-negative. Gram-positive bacteria have a thick layer of peptidoglycan and will retain the violet stain, while gram-negative bacteria have a thin layer of peptidoglycan and will not retain the stain. This characteristic is vital in the identification and classification of bacteria.

The Gram stain does not provide information about the energy source, method of motility, or form of genetic material of the bacteria. These characteristics are determined through other laboratory techniques and tests, such as biochemical tests, microscopic examination, and genetic sequencing.

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During filtration, anything that is small enough to pass through all three layers of the filtration membrane will become part of the filtrate. Sometimes, the least porous layer of this membrane becomes clogged and then glomerulonephritis may occur. What is the name of the most porous layer of the filtration membrane?.

Answers

The most porous layer of the filtration membrane is called the fenestrated endothelium.

This layer is made up of endothelial cells that have small pores or fenestrae, which allow for the passage of small molecules such as water, ions, and nutrients. These pores are around 70-100 nanometers in diameter, making them smaller than red blood cells but larger than most proteins.

In glomerulonephritis, inflammation can cause damage to the fenestrated endothelium, leading to a decrease in the rate of filtration and an increase in the size of molecules that are able to pass through the membrane. This can result in the accumulation of larger molecules in the bloodstream, leading to symptoms such as swelling, high blood pressure, and proteinuria.

It is important to note that the glomerular filtration membrane is composed of three layers, including the fenestrated endothelium, the basement membrane, and the podocytes. Damage to any of these layers can affect the rate and quality of filtration, leading to various kidney diseases.

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Human body cells each have 46 chromosomes in their nuclei. Meiosis is necessary in order to ensure each gamete produces in the body has

Answers

Sex cells in the body

Explain why mice in urban areas can digest certain food better than rats in rural areas. Using the terms
"genes" and "allele frequency" in your explanation provide data of this phenomenon.

Answers

Finding the corresponding human illness genes using rat disease gene identification is helpful, but it also aids in understanding the mechanisms causing pathological defects.

What is the random alteration in allele frequencies caused by genetic drift?

Genetic drift is the term used to describe the haphazard changes in gene variant frequencies within a population. Genetic drift occurs when the frequency of different alleles, or variable forms of a gene, fluctuates over time through chance. Changes in allele frequencies are used to measure these differences in allele presence.

Who made genetic drift public?

In the future, Sewall Wright, a pioneer in population genetics, invented the phrase "genetic drift" and the corrected mathematical treatment.

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1) if big molecules can't get absorbed in the small intestine, why aren't there other big molecules besides fiber, like complex carbohydrates, coming out in the poop of healthy people?

2) what's happening to the other big molecules like complex carbohydrates? how can we explain why the amount of complex carbohydrates could be decreasing as food travels through the digestive system?
yall plss help me pls ill give brainlist just pls help me

Answers

a.b. Complex carbohydrates can be broken down into smaller molecules during digestion, but they are not broken down to the extent that fiber is. Fiber is composed of indigestible plant material and is not broken down by enzymes in the stomach or small intestine.

Instead, it passes through the digestive system largely unchanged, providing bulk and helping to regulate bowel movements. The other big molecules in food, such as complex carbohydrates, are broken down into smaller molecules during digestion and absorbed into the bloodstream for use as energy or for the production of other substances.

However, some of these molecules may not be absorbed as efficiently as others, and some may be excreted in the feces. Factors such as the type and amount of food consumed, the presence of digestive disorders, and the efficiency of the digestive system can all influence the amount of complex carbohydrates that are absorbed and excreted.  

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Need help listing the sequence of events in translation from first to last.
the possible options are listed in pics as well. please help !

Answers

Translation is a process of converting a piece of writing from one language to another. It involves three main stages: analysis, conversion, and evaluation.

First, the translator must analyze the source material to gain an understanding of the context and meaning of the text. This includes considering the audience, purpose, and any cultural or literary references that may be present.

Next, the translator must convert the source material into the target language. This involves selecting the appropriate words and phrases, as well as paying attention to syntactic and structural differences between the two languages.

Finally, the translator must evaluate the translated text for accuracy and completeness. This includes making sure that the meaning and tone of the text has been preserved, as well as checking for any errors in grammar, spelling, or punctuation.

Overall, translation is a complex process that requires thorough analysis and evaluation. It is important to be aware of the differences between the two languages, as well as the audience and purpose of the text, in order to ensure an accurate and effective translation.

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why is asexual reproduction important to prople who grow plants

Answers

Answer: because they can reproduce on their own

Explanation: it makes it easier for them to grow their plants

Consider the cross aabbccddee x aabbccddee. If these 5 allele pairs all assort independently, then the probability that any individual offspring will have the genotype aabbccddee is 1 out of:.

Answers

If the five allele pairs aabbccddee are all independently segregated and recombined in the cross aabbccddee x aabbccddee, then this implies that the likelihood of any individual offspring possessing the genotype aabbccddee is 1 in 32.

The probability that an individual offspring will have the genotype aabbccddee from the cross aabbccddee x aabbccddee can be calculated using the product rule of probability.

The product rule states that the probability of two independent events occurring together is equal to the product of their individual probabilities. In this case, each allele pair assorting independently is considered an independent event, and the probability of each allele pair is 1/2, since each parent has two alleles for each gene.

Therefore, the probability of an individual offspring having the genotype aabbccddee is:

[tex]\left(\frac{1}{2}\right) \times \left(\frac{1}{2}\right) \times \left(\frac{1}{2}\right) \times \left(\frac{1}{2}\right) \times \left(\frac{1}{2}\right) = \frac{1}{32}[/tex]

This means that the probability of any individual offspring having the genotype aabbccddee is 1 out of 32.

Overall, the product rule of probability can be used to calculate the probability of any combination of alleles occurring in offspring from a cross, as long as the allele pairs assort independently.

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If one strand of dna is cggtac, then the complementary strand would be.

Answers

If one strand of DNA is CGGTAC, the complementary strand would be formed by pairing each base with its complementary base. The complementary base for cytosine (C) is guanine (G), and the complementary base for guanine (G) is cytosine (C).

The DNA molecule consists of two complementary strands, each with a sequence of nucleotides. The four nucleotides in DNA are adenine (A), cytosine (C), guanine (G), and thymine (T). Adenine pairs with thymine (A-T), while cytosine pairs with guanine (C-G) through hydrogen bonds.

Given the strand CGGTAC, the complementary strand would be GCCATG. This is because cytosine (C) always pairs with guanine (G), and vice versa. Similarly, adenine (A) always pairs with thymine (T), and vice versa. So, to find the complementary strand, we simply replace each nucleotide with its complementary base.

Thus, the complementary strand of CGGTAC is GCCATG. It's worth noting that the two strands of DNA run in opposite directions, with one strand running in the 5' to 3' direction and the other running in the 3' to 5' direction. This is important in processes such as DNA replication and transcription.

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Which sentence describes an example of a positive feedback loop?

Answers

A positive feedback loop is a process in which an initial change leads to a series of events that amplify the initial change, such as the release of oxytocin during childbirth causing stronger contractions, which in turn leads to even more oxytocin release and further intensification of contractions.

Similarly, positive feedback loops can occur in ecological systems. For instance, in certain forest ecosystems, a positive feedback loop can be observed in the process of forest succession.

When trees die and decompose, they release nutrients into the soil, which promotes the growth of new trees. As the new trees grow and eventually die, they further contribute to nutrient release, creating a self-reinforcing cycle of forest regeneration.

It's important to note that while positive feedback loops can lead to amplification and rapid change, they often have limits or mechanisms in place to prevent excessive amplification or destabilization of the system.

In the case of childbirth, the positive feedback loop eventually terminates with the birth of the baby. In other systems, negative feedback mechanisms or external factors can counterbalance the positive feedback and maintain stability.

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Which factor leads to genetic drift rather than natural selection?

A. A species has the potential to increase in number and overpopulate.
B. Genetic variation is random and frequency changes each generation.
C. Individuals with advantageous traits survive.
D. Survivors pass on their adaptations.

Answers

Answer:

Explanation:

chance events causing changes in the allele frequency of a population.

Which term describes the offspring of a first-generation cross between parents with different forms of a trait?.

Answers

The term that describes the offspring of a first-generation cross between parents with different forms of a trait is "F1 generation."

The F1 generation is the first filial generation resulting from a cross between two genetically different parental lines. When parents with different forms of a trait are crossed, the F1 generation will have a uniform appearance, expressing only one of the parental traits. This is because one allele from each parent is inherited, and one may be dominant, while the other is recessive.

The F1 generation can be used to determine the mode of inheritance of a trait and the genetic makeup of the parents. Additionally, the F1 generation can be crossed with each other or with the parental lines to produce the second filial generation (F2) and further elucidate the pattern of inheritance.

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Suppose you wanted to estimate the


number of dandelions in a field. It


could take hours to count every single


one, so ecologists use a SAMPLING


technique.


A single sample is used to estimate


the size of the overall population.


1. What might cause the estimate to


be wrong with this method?


2. Why would it be difficult to use this


method to estimate the population of fish?

Answers

To use a sampling technique, ecologists suggest some of the following steps:

1. When using a sampling technique to estimate the number of dandelions in a field, the estimate might be wrong due to various factors, such as an unrepresentative sample, sampling error, or variability in the distribution of dandelions.

If the sample isn't representative of the entire field, it can lead to an inaccurate estimate of the overall population.

2. Estimating the population of fish using this method would be difficult because fish are mobile and often found in different depths and habitats.

Additionally, the distribution of fish can be influenced by factors like water temperature, availability of food, and predation. These factors can make it challenging to obtain a representative sample, leading to inaccurate population estimates.

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Which of the following is the period from conception until birth?

- Cleavage
- Postnatal development
- Prenatal development
- Preconception development

Will Give Brainliest!!

Answers

Answer:

Prenatal development.

Explanation:

Prenatal development is the period from conception until birth.

select the part whose main job is to give strength and stiffness to a plant cell.

Answers

The part of a plant cell that gives strength and stiffness is the cell wall.

The cell wаll is the nonliving cellulosic outer lаyer of the plаnt cells which provides the protection аnd mechаnicаl support it needs. It is аbove the plаsmа membrаne аnd irregulаr in shаpe. It hаs 3 lаyers nаmely primаry, secondаry lаyer, аnd middle lаmellа, mаde of pectin, cellulose, hemicellulose, аnd other minerаls.

The primаry cell wаll is mаinly mаde of cellulose аnd is compаrаtively permeаble аnd thin. The middle lаmellа consists of pectin аnd other substаnces like lignin аnd proteins. In mаture cells, the secondаry wаll forms out of cellulose аnd lignin аnd gives the mаture cells its necessаry rigidity аnd wаterproofing. It is аlso the thickest lаyer of аll of them.

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What did most people speculate at first was the cause of blue skin?

Answers

At first, many people speculated that the cause of blue skin was a form of genetic mutation. This was primarily due to the fact that blue skin is a rare condition, and is not often passed down through generations.

It was assumed that the mutation was caused by a change in a gene or a combination of genes. This speculation was further reinforced by the fact that blue skin was often seen in people who had other physical abnormalities, such as webbed toes or fingers.

Additionally, some speculated that the blue hue of the skin was caused by a build-up of toxins in the body, as this could explain why the condition was not seen in all members of a family. Ultimately, the cause of blue skin remains a mystery, but the initial speculation that it was caused by a genetic mutation was based on the rarity of the condition and other associated physical abnormalities.

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