What was the most significant conclusion that Mendel?

Answers

Answer 1

The most significant conclusion that Mendel drew from his experiments is that 'Traits are inherited in discrete units one from each parent'.

The main conclusion that Mendel drew from his experiments is that traits are inherited from each parent in his individual units and are not the result of interbreeding. He called these separate substantive factors pairs.

Mendel's main conclusion, drawn from his experiments with peas, is that factors are inherited as discrete units and do not exhibit mixing.

The peas he used in his experiments were a good choice because of their distinct contrasting traits, hermaphrodite flowers, short lifespan, and less variation in results with crosses.All monohybrid and dihybrid crosses he considered phenotypic and genotypic ratios were identical.

Genes are now discovered to be pieces of DNA that reside on chromosomes, but Mendel did not know which genes (Mendelian factors) consisted. A study of chromosome behavior was carried out by Sutton and Boveri with the aid of a microscope. They later compared it to the behavior of factors and genes.

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Complete question :

What was the most significant conclusion that Mendel drew from his experiments?

A There is considerable genetic variation in garden pea

B Traits are inherited in discrete units one from each parent

C Genes are composed of DNA

D Recessive genes occur as frequently as dominant ones.


Related Questions

Why is a percentage scale used for the x-axis rather than actual ages? A) Researchers dont know the maximum life span of the organisms. B) This scale allows you to compare species with widely varying life spans on the same graph. C) The range of the actual ages would be too large to fit on the graph. D) For any graph, the x-axis and y-axis must use the same units.

Answers

It allows researchers to compare species with widely varying life spans on the same graph, the range of the actual ages would be too large to fit on the graph.So the correct option is c.

When discussing the life spans of organisms, it is common to use a percentage scale rather than actual ages on the x-axis of a graph. There are several reasons for this.

First, researchers do not know the maximum life span of the organisms that they are studying. By using a percentage scale, they can compare species with widely varying life spans on the same graph without having to worry about one species having a much longer lifespan than the others.

Second, the range of the actual ages would be too large to fit on the graph. By using a percentage scale, the data can be more easily visualized and compared.

Finally, for any graph, the x-axis and y-axis must use the same units. By using a percentage scale on the x-axis, the researcher can easily use the same units on both the x-axis and y-axis, making the data easier to compare and interpret.

In conclusion, a percentage scale is used for the x-axis of a graph when discussing the life spans of organisms because it allows researchers to compare species with widely varying life spans on the same graph, the range of the actual ages would be too large to fit on the graph, and the data can be more easily visualized and compared if the same units are used on both the x-axis and y-axis.

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What types of light are reflected by plant leaves?

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Plant leaves reflect visible light, and the specific colors of light that are reflected depend on the pigments present in the leaf. Chlorophyll, the pigment primarily responsible for the green color of leaves.

Reflects green light, while absorbing other colors of the visible spectrum such as blue and red. Carotenoids, which are pigments that give leaves their yellow and orange colors, reflect yellow and orange light. And finally, anthocyanins which are pigments that give leaves their red color, reflects red light. Additionally to these pigments, other substances on the leaf surface can also affect the light reflection. It's worth noting that while leaves reflect visible light, they also reflect other type of light such as near-infrared and ultraviolet, but these are not visible to the human eye, however they are important for the plant growth and health.

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Phototropism is a _____ tropism involving _____.

positive; water
positive; sunlight
negative; touch
negative; gravity

Answers

Answer:

The third to last.

positive;sunlight

What five characteristics of a rock would make it a mineral?

Answers

   Hardness.

   Luster.

   Color.

   Streak.

   Specific Gravity.

Five characteristics would be

1. Color

2. Hardness

3. Luster

4. Crystal form

5. Denisty

Please help me with this!!

Answers

Genetic makeup is the combination of genes that make up an individual's unique genetic code.

1.The physical appearance of an individual's genetic makeup phenotype.

2. A particular characteristic of an individual trait.

3. The passage of genetic instructions from one generation to the next generation genotype.

4. One variation of a particular gene allele.

5. The specific genetic makeup of an individual chromosomes.

6. Contain the genes of an individual heritability.

What are Chromosomes?

Chromosomes are thread-like structures composed of DNA and proteins that carry genetic information. In most living organisms, each cell contains a pair of chromosomes, one inherited from each parent. Humans have 23 pairs of chromosomes in each cell, for a total of 46. Chromosomes are responsible for determining an organism's traits, from eye color to blood type.

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One strategy for dealing with agricultural pests is integrated pest management (IPM). Describe IPM. As part of your description include TWO specific pest control approaches that are part of IPM.

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One strategy for dealing with agricultural pests is integrated pest management (IPM). IPM is a pest control method with non-chemical substances. As part of your description include TWO specific pest control approaches that are part of IPM namely exclusion, and sanitation.

Integrated Pest Management is an approach that integrates various types of pest control methods with priority to non-chemical use. The Integrated Pest Management (IPM) system can be used in various types of industries such as the food, feed, plantation, oleochemical, and packaging industries.

Specific pest control approaches that are part of IPM, namely exclusion measures, namely by preventing the entry of the spread of organisms into an area and sanitation, namely monitoring so that pests do not spread to humans. IPM pest control is to prioritize not using chemicals, if you have to use pesticides, you will choose products that are safe for humans.

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1. Which organisms are primary producers in this food web? How do you know?

2. Which organisms are primary consumers in this food web? How do you know?

3. Which organisms are apex predators in this food web? How do you know?

4. Are there any omnivores in this food web? How do you know?

Answers

Answer:

corals is the primary producers.planktonshark

British land snails primarily occur in two extreme phenotypes. This is an example of
a. directional selection.
b. stabilizing selection.
c. disruptive selection.
d. genetic drift.
e. mutation.

Answers

British land snails primarily occur in two extreme phenotypes. This is an example of disruptive selection, which means option C is the right answer.

British land snails are the native organisms of north west Europe. They are found in two extreme forms only because disruptive selection favors only extreme phenotypes to sustain in the changing environment, while the intermediate phenotypes are either rejected naturally by the nature or they fall prey to other large animals and so their population is very less in nature particularly their native habitat.

Disruptive selection causes extreme phenotypic population to get more easily adaptive in nature and helps them increase their population through reproduction. Thus extreme population has higher frequency than other variations present.

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What is the genetic basis behind the appearance and gender of calico cats?

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The gene for "orange or black coat" is on the X chromosome, so if "orange" and "black" are active in different cells, female cats can have both colors of calico cat's coat. Yes, because male cats only have one X. The chromosome is her only one of these colors.

The calico, or more specifically tortoiseshell, pattern of cats is observed in female (or rarely male XXY) cats with different alleles at the coat color locus on the X chromosome. One of the X chromosomes carries alleles for black fur pigment and the other for orange fur pigment. Random inactivation of one of the X chromosomes causes orange and black spots on the cat's coat. Males with a single X chromosome have either orange or black fur, depending on which allele they possess. Calico cats have large white spots along with orange or black spots on their fur due to an autosomal gene that causes white spots.

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If LaL turns into a gel when exposed to a sample, it means the sample is contaminated with gram-negative bacteria

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It is true that If LaL turns into a gel when exposed to a sample, it means the sample is contaminated with gram-negative bacteria.

Both the color and the turbidity of LAL are used to identify endotoxins. The mixture turns yellow when the kinetic chromogenic LAL reagent reacts with endotoxins. By looking for pyrogenic responses in horseshoe crab blood cells, this identifies the presence of bacterial endotoxins. The outer membrane of Gram-negative bacteria contains endotoxins. In order to ensure product safety and quality in the medical and pharmaceutical industries, their detection is essential. Gram-negative bacteria's outer membrane and cell wall are primarily made up of endotoxins.

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(complete question)

If LaL turns into a gel when exposed to a sample, it means the sample is contaminated with gram-negative bacteria.

true or false.

What is a unit of seed?

Answers

A unit of seed is the structure generally regarded as a seed in planting practices and in commercial channels.

The seed is the embryonic stage of the factory life cycle. utmost seeds correspond of three corridor embryo, endosperm, and seed fleece. The embryo is a bitsy factory that has a root, a stem, and one or further leaves. The endosperm is the nutritional towel of the seed, frequently a combination of bounce, oil painting, and protein.

Commercial channels means the trade of the commodity for which a commodity commission is established for use as food, artificial, agrarian or chemurgic use, when vended to any marketable buyer or to any person who resells the commodity or any product deduced therefrom.

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Carbon is considered a building block of life and is very useful as a chemical because it is able to make very complicated compounds. This is because it is able to bond with up to __ other molecules.

a. one
b. two
c. three
d. four

Answers

Answer:

d. four

Explanation:

Carbon can form maximum of four bonds to other atoms due to its electronic configuration and valence electron counts).

What do snails and clams have in common?

Answers

The common characteristics of snails and clams is that both belong to the phylum Mollusca and posses a calcareous shell on their body.

The phylum Mollusca is the second largest phylum of the kingdom Animalia. These are the invertebrate animals that are characterized by the presence of a calcareous shell on their body. The example of Mollusca are: snails, oysters, etc.

Shell is the outermost skeleton of organisms of Mollusca. It is made of calcium carbonate as the main constituent. The shell may be present only on the upper side of the body. Or it may be present on both the side, such animals are referred to as bivalves.

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What must cells do as they reach the limit of their surface area to volume ratio?

Answers

As cells reach the limit of their surface area to volume ratio, they must employ certain strategies in order to survive and continue to grow.

The primary strategy that cells use to survive and continue to grow when they reach the limit of their surface area to volume ratio is to divide. Cell division is the process of one cell splitting into two identical daughter cells. This process is essential for cellular growth, as it allows the cell to divide its surface area and volume, thus lowering its surface area to volume ratio. This allows the daughter cells to exchange material with their environment more efficiently than the original cell did.

Another way that cells can increase their surface area to volume ratio is by forming protrusions from their surface. These protrusions, also known as microvilli, are small folds of the cell membrane that increase the cell’s total surface area. This allows the cell to exchange material with its environment more efficiently, and thus allow it to continue to grow.

Cells can also increase their surface area to volume ratio by forming internal structures known as vacuoles. Vacuoles are small, membrane-bound structures that are filled with various substances, including water and enzymes. These substances can help the cell exchange materials with its environment more efficiently, thus allowing it to continue to grow.

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How do you solve pedigree analysis?

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Pedigree analysis is a method used to determine the mode of inheritance of a genetic trait or disorder within a family. The process involves constructing a family tree (pedigree) and analyzing the pattern of inheritance of the trait or disorder in relation to the family tree.

The following steps can be used to solve a pedigree analysis:

Construct a pedigree by gathering information about the family history of the trait or disorder. This includes information about the affected and unaffected individuals, their relationships to each other, and the generation in which the trait or disorder first appeared.Identify the pattern of inheritance by analyzing the transmission of the trait or disorder within the family. This can include identifying dominant or recessive inheritance patterns, X-linked inheritance patterns, or multifactorial inheritance patterns.Identify the possible mode of inheritance by comparing the observed pattern of inheritance to the known patterns of inheritance for the trait or disorder.Confirm the mode of inheritance by performing genetic testing, such as DNA sequencing or linkage analysis, on affected individuals and their family members.

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One similarity and one difference between hydrolysis and carbonation.

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One similarity between hydrolysis and carbonation is that they are both chemical reactions that involve the addition of water to a compound.

One difference between hydrolysis and carbonation is that hydrolysis involves the breakdown of a compound into smaller molecules through the addition of a water molecule, whereas carbonation involves the addition of carbon dioxide to a compound. Hydrolysis is a chemical reaction that occurs when a compound reacts with water, whereas carbonation is a chemical reaction that occurs when a compound reacts with carbon dioxide.

Which of the following is not detected by chemoreceptors in the carotid and aortic bodies? Multiple Choice a. Oxygen b. Blood pressure c.pH d.Carbon dioxide e.Oxygen and carbon dioxide

Answers

B. Blood pressure

Blood pressure is not detected by chemoreceptors in the carotid and aortic bodies

Why did Mendel carry out an experiment to study inheritance of two traits in garden pea?

Answers

Mendel carried out experiments to study the inheritance of two traits in garden pea as garden pea are bise-xual, self-pollinating, have a short life span and also have visible phenotypic characters.

Mendel conducted plant-breeding experiments using garden pea. He studied the inheritance of two traits to understand if the inheritance of a particular trait affects the inheritance of another trait.

He chose garden pea for his experiment as they are bise-xual in nature, that is the flowers have both male as well as female reproductive parts and therefore are able to self-pollinate. They also have easily observable physical characters and a short life span which makes them easier to maintain as they grow quickly.

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symbiosis and species interactions keystone webquest answer key

Answers

These exchanges are frequently brief. However, there are many instances where two species coexist peacefully for extended periods of time.

What is keystone species?

The most numerous species in a community are known as dominant species, and they have a significant impact on the abundance and distribution of other species.

Keystone species, on the other hand, have an impact on communities that greatly outweigh their abundance.

These discussions are typically can be done in many way. Two species can, however, frequently cohabit happily for long periods of time.

Such relationships are known as symbioses ("living together"). Symbiotic relationships can be classified as parasitic, commensal, or mutualistic.

Thus, this can be symbiosis and species interactions.

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Reasons that the population size of an exotic species often grows rapidly when the species is introduced in a new environment include which of the following?
I. The exotic species is resistant to pesticides.
II. There is a large, underutilized food source in the new environment.
III. The exotic species has few natural predators in the new environment.
(A) I only
(B) II only
(C) I and III only
(D) II and III only
(E) I, II, and III

Answers

Reasons that the population size of an exotic species often grows rapidly when the species is introduced in a new environment include II) there is a large, underutilized food source in the new environment, III) the exotic species has few natural predators in the new environment. Hence, option D is correct.

The introduction of an exotic species into a new environment can often cause a rapid population growth due to several key factors.

One of these is that there tends to be a large, underutilized food source in the new environment which the exotic species can take advantage of. Another factor is that the exotic species may have few natural predators in the new environment, allowing them to thrive without fear of predation.

As a result, these two factors can lead to a rapid population growth of an exotic species when it is introduced into a new environment.

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Why do cancer cells divide and multiple uncontrollably?

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Answer:

Most cancer-causing DNA changes occur in sections of DNA called genes. These changes are also called genetic changes. A DNA change can cause genes involved in normal cell growth to become oncogenes. Unlike normal genes, oncogenes cannot be turned off, so they cause uncontrolled cell growth.

The B vitamins play major roles in ____. Question 45 options: maintaining skin health and decreasing oxidative damage to skin cells decreasing free radicals and increasing epinephrine from the brain facilitating energy production and making red blood cells increasing fatty acid mobilization from adipose tissue and serving as neurotransmitters

Answers

The B vitamins play major roles in increasing fatty acid mobilization from adipose tissue and serving as neurotransmitters.

The B nutrients assist enzymes in our our bodies do their jobs and are vital for a huge variety of mobile functions, like breaking down carbohydrates and transporting vitamins at some point of the body. The B nutrients play an inter-associated function in maintaining our brains jogging properly. Perhaps the maximum famous of all of the B nutrients, B12 is essential for neurological feature, DNA production, and crimson blood cellular improvement. Vitamin B12 is wanted to shape crimson blood cells and DNA. It is likewise a key participant withinside the feature and improvement of mind and nerve cells. Vitamin B12 binds to the protein withinside the ingredients we eat.

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Is Colin's evidence relevant to his claim?

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No, Colin's evidence is not relevant to his claim.

Since drone flying is a sport rather than a concern for privacy, Colin's evidence does not support his allegation. Colin gives evidence that is connected to the idea that flying drones is a sport by noting that coordination and technical abilities are required to fly drones. Instead of focusing on giving evidence that supports the idea that drones do not negatively affect people's privacy, Colin offers evidence that is related to the idea that flying drones is a sport. It follows that his argument is weak because it has not been adequately substantiated.

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Where is ATP made in respiration?

Answers

The majority of ATP synthesis takes place within the mitochondrial matrix during cellular respiration, with each molecule of glucose oxidized creating around 32 A T P molecules.

ATP produced in mitochondria serves as the main energy source for vital biological functions such muscle contraction, nerve impulse transmission, and protein synthesis. The majority of the ATP produced during cellular respiration is created in the mitochondrial matrix, where each glucose molecule that is oxidised yields roughly 32 molecules of ATP.

Gradients are produced as a result of protons being pumped out of the matrix as electrons move down the chain and release energy in the process.

Protons flow back into the matrix and are converted into ATP by an enzyme called ATP synthase.

The inner mitochondrial membrane contains ETS.

The majority of the ATP in cells is produced by the enzyme ATP synthase, which does this by converting ADP and phosphate to ATP. ATP synthase is found in the membrane of mitochondria, which are cellular organelles; in plant cells.

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Where is most ATP produced in mitochondria?

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Most ATP is produced in the mitochondrial matrix, which is the fluid-filled space inside the inner membrane of the mitochondria.

The process of ATP production in the mitochondria is called cellular respiration. It starts with the breakdown of glucose and other molecules in the cytoplasm by the process of glycolysis, which generates a small amount of ATP. The majority of the ATP is generated in the Mitochondria during the process of oxidative phosphorylation, where the electrons from the breakdown of glucose are passed through a series of protein complexes in the inner mitochondrial membrane, which generates a proton gradient that drives the production of ATP via ATP synthase.

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The passage describes current research on the implications of histone methylation in plants.

Based on the information in the passage, what testable scientific question could be asked about the influence of chromosome structure on an organism's traits?
A.
How does histone methylation prevent organism growth and cell division during periods of heat stress?
B.
Is histone methylation the best way for plants to increase their expression of heat shock proteins?
C.
Will histone modifications permanently upregulate heat shock protein expression after heat stress exposure?
D.
Can histone modifications that prime a plant to survive heat stress be transmitted from parents to offspring?

Answers

Histones include a variety of basic residues that can be methylated, and the results of this methylation depend on the type of basic residue, where it is methylated, and where it is located.

What is Histone Methylation?

Specific enzymes have the ability to add or remove methyl marks during the dynamic process of histone methylation. In order to influence phenotypic outcomes, other proteins can identify and bind methylated residues.

By way of DNA sequence, non-coding RNA, DNA methylation, or other post-translational signals on histone tails, histone-modifying enzymes might be attracted to particular loci.

In some cases, histone methylation can be passed down from parents to offspring and can be either dynamic or stable throughout a cell's life, including during mitosis and meiosis.

Therefore, Histones include a variety of basic residues that can be methylated, and the results of this methylation depend on the type of basic residue, where it is methylated, and where it is located.

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How the respiratory system and circulatory system work together to supply the body with oxygen and to remove waste from the body?

Answers

Together, the circulatory and respiratory systems assist eliminate waste carbon dioxide from the tissues and deliver oxygen to the tissue.

The respiratory system is the one that helps to inhale oxygen and exhale carbon dioxide. And the circulatory system is the system that helps to supply oxygen from the lungs to tissues and helps to remove carbon dioxide from the tissue via the lungs. Both these process helps to supply oxygen in this way and helps to remove carbon dioxide as a waste.

First, the oxygen inhaled will be transported to the lungs and this oxygen will be exchanged with the blood that brings the waste (CO₂) from the tissue via the heart. Then, the oxygen will be transported to the heart from where the oxygenated blood will be supplied to the tissues. And the waste from the tissue will be carried via deoxygenated blood.

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The efficiency of glycolysis is approximately

A) 0.2%
B) 2%
C) 20%
D)200%

Answers

Answer:

The correct answer is B.

Explanation:

All of the following are common to both the Gram stain and the acid-fast stain EXCEPT A) primary stain. B) counterstain. C) a decolorizing agent. D) a chemical mordant. E) a decolorizing agent and a counterstain.

Answers

D) A chemical mordant, the Gram stain, and the acid-fast stain. Iodine is the reagent that is used as a mordant during gram staining.

What is the acid-fast staining mordant?

HEAT is used as a mordant in the Acid-Fast stain to help Carbol Fuschin bind to peptidoglycan more strongly. THE DECOLORIZATION STEP is step number four. Acid alcohol is used to "decolorize" the cells in the Acid-Fast stain.

What chemical acts as a mordant in the Gram stain?

Iodine from Grams The mordant is from Grams. This forms a substantial complex that binds to crystal violet and clings to the cell membrane. After 30 seconds of Gram's iodine sitting, 95% ethanol decolorizer is added.

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How do you introduce energy conservation?

Answers

Energy cannot be created or destroyed; it can only be changed from one form to another, according to the rule of conservation of energy.

An isolated system's total energy is constant over time in accordance with the rule of conservation of energy. The law of energy conservation applies to all kinds of energy.

Most importantly, energy conservation can be accomplished by either using less energy or by using fewer services. First of all, conserving energy is crucial for preserving non-renewable energy sources. Additionally, the regeneration process for non-renewable energy sources takes centuries.

In the planning and construction of buildings, energy conservation is crucial. Since the 1970s, its prominence has grown. Concern about the implications of climate change has recently energy conservation is crucial, as concern over climate change and global warming has highlighted.

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