Where are chromosomes made from?

Answers

Answer 1

Chromosomes are made from proteins such as condensin, TOP2A and KIF4.

The chromosomes are the compact molecules that hold the DNA together. They are made up of proteins such as condensin, TOP2A, and KIF4. They contain the genetic material of the eukaryotic cells. These are generally the thread-like structures present in the nucleus of the cell.

A chromosome is a long DNA molecule that contains all or a portion of an organism's genetic code. The very long, thin DNA fibers in most chromosomes are covered with packing proteins; in eukaryotic cells, the histones are the most significant of these proteins. There are a total of 46 chromosomes in humans, two of which are sex chromosomes.

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Related Questions

in science fiction, suspended animation of a body at a very low temperature
true/false

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True. a body in suspended animation in science fiction because of its extremely low temperature. Suspended animation is the halting of life processes by exogenous or endogenous mechanisms without putting a stop to actual life.

Other involuntary activities such as breathing, heartbeat, and others may still exist, but they can only be observed artificially. Suspended animation is a state of unconsciousness in which an animal's body functions very slowly, perhaps to help it survive the winter. 2. a noncount noun When you say that someone is "in a condition of suspended animation," you are referring to their inactivity and inaction.

Abstract. The therapeutic induction of a condition of tolerance to momentary total systemic ischemia, also known as protection-preservation, is known as suspended animation.

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According to the concept of punctuated equilibrium,
A. given enough time, most existing species will gradually give rise to new species.
B. transitional fossils, intermediate between newer species and their parent species, should be abundant.
C. natural selection is unimportant as a mechanism of evolution.
D. a new species accumulates most of its unique features as it comes into existence.
E. evolution of new species features long periods during which changes are occurring, interspersed with short periods of equilibrium, or stasis.

Answers

The correct answer is E. Evolution of new species features long periods during which changes are occurring, interspersed with short periods of equilibrium, or stasis.

According to the concept of punctuated equilibrium, the evolution of new species occurs during long periods of time during which changes are occurring, interspersed with short periods of equilibrium, or stasis. In other words, evolutionary change tends to occur in relatively rapid bursts, separated by periods of little or no change. This model suggests that speciation events are relatively rare and that most species remain relatively stable over long periods of time. The idea was first proposed by Niles Eldredge and Stephen Jay Gould in 1972 as an alternative to the traditional gradualist model of evolution.

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many of the changes that accompany menopause are caused by the drop in the circulating levels of __________.

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Many of the changes that accompany menopause are caused by the drop in the circulating levels of estrogen.

Estrogens are a group of hormones that play a significant part in normal sexual and reproductive development in women. They are furthermore sex hormones. The woman's ovaries create most estrogen hormones, although the adrenal glands and fat cells also make little amounts of the hormones. In proliferation to control the menstrual cycle, estrogen affects the reproductive tract, the urinary tract, the heart and blood vessels, bones, breasts, skin, hair, mucous membranes, pelvic muscles, and the brain. Numerous organ systems and the brain are affected by estrogen.

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Why do you think making scaled drawings is important for our prototype plans?

Answers

otherwise you wont be able to erase it duh

Which of the active transport types employs diffusion
A. Symport
B. All types of active transport make use of some form of diffusion.
C. Antiport
D. Uniport and Antiport
E. Uniport

Answers

All types of active transport make use of some form of diffusion. is  the active transport types employs diffusion.

Why is diffusion in biology?

Diffusion is important to cells because it allows them to gain the useful substances they require to obtain energy and grow, and lets them get rid of waste products. This table shows examples of substances required by cell and associated waste products.

Why is it called diffusion?

A change in concentration over a distance is called a concentration gradient, a change in pressure over a distance is called a pressure gradient, and a change in temperature over a distance is called a temperature gradient. The word diffusion derives from the Latin word, diffundere, which means "to spread out."

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QUICK!!!!
Which molecules are represented by box B?


bases

proteins

amino acids

simple sugars

Answers

Answer: proteins.

Explanation:

When stimulated by a particular hormone, there is a marked increase in the activity of G proteins in the membrane. The hormone is probably
A) aldosterone.
B) a steroid.
C) testosterone.
D) estrogen.
E) a peptide.

Answers

Option B is correct. The activity of G proteins in the membrane is markedly increased in response to a specific hormone. Most likely, the hormone is a steroid.

Numerous G protein-coupled receptors are liganded by peptide hormones. Growth, appetite and energy metabolism, cardiac function, stress, and reproductive physiology are all regulated by peptide hormones, which are secreted and act in an endocrine manner. The GTP for GDP exchange on the G protein alpha subunit, which is the rate-limiting step in the activation of all downstream signaling, activates G proteins, which are molecular switches.

Your bones enlarge if you have too much growth hormone. It is known as gigantism in children and causes an increase in height. However, there is no change in height as an adult. The condition is known as acromegaly and affects only the bones in your hands, feet, and face.

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what does aqi stand for

Answers

AQI stands for Air Quality Index. It is a measure of how polluted the air is in a particular area and how it may affect human health.

The AQI scale ranges from 0 to 500 and is calculated based on the concentrations of five major air pollutants: ground-level ozone, particulate matter, carbon monoxide, sulfur dioxide, and nitrogen dioxide.

The AQI provides information on the air quality in a particular area and can help people make informed decisions about their activities, such as whether to engage in outdoor activities or take precautions to protect their health. For example, on days when the AQI is high, people with respiratory problems may be advised to avoid strenuous outdoor activities or stay indoors with air conditioning.

Government agencies and other organizations monitor air quality and calculate AQI scores for different areas. AQI scores are often reported in news and weather reports, and many cities have websites or apps that provide real-time air quality information.

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plasmodesmata enable metabolic communication between _____

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Plasmodesmata enable the metabolic communication between the cytoplasm of plant cells.

Plasmodesmata is the membranous channel formed between two plant cells. Along with the cytoplasm and plasma membrane, the endoplasmic reticulum of the two cells are also connected. This channel enables the transfer of various molecules from cell to another.

Cytoplasm is the gel-like liquid material present inside the cell. It comprises of water, organic molecules, salts, etc. The cytoplasm provides the correct environment for the various cell organelles to reside and perform their functions. Various functions are also performed in the cytoplasm itself like the protein synthesis, cell expansion, etc.

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In general, a signal transmitted via phosphorylation of a series of proteins _____.
A. generates ATP in the process of signal transduction
B. activates a transcription event
C. results in a conformational change to each protein
D. requires binding of a hormone to an intracellular receptor

Answers

Transduction: The receptor protein is altered in some way when the signalling molecule attaches to it. The transduction process is started by this modification.

Cells frequently adopt a multi-step route that delivers the signal fast while amplifying the signal to several molecules at each stage because signaling systems need to be responsive to modest concentrations of chemical signals and act swiftly.

Usually, there are numerous phases in the process of signal transduction. The following molecule in the signal transduction cascade is altered by each relay molecule.

Phosphate groups are often added to or removed during signal transduction pathway steps, activating proteins as a result. Protein kinases are enzymes that transfer phosphate groups from ATP to a protein. Protein kinases make up a large portion of the relay molecules in a signal transduction pathway and frequently interact with other protein kinases in the circuit. This frequently starts a chain reaction known as a phosphorylation cascade, in which one enzyme phosphorylates another, which then phosphorylates another protein.

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what is the second messenger in the g protein-coupled protein kinase pathway stimulated by epinephrine in liver cells?

Answers

In the G protein-coupled protein kinase pathway stimulated by epinephrine in liver cells, cyclic AMP (cAMP) serves as the second messenger.

Epinephrine binds to and activates the beta-adrenergic receptor on the surface of liver cells, which in turn activates a G protein, Gs, leading to the activation of adenylate cyclase.

Adenylate cyclase converts ATP to cAMP, which then diffuses through the cytoplasm and activates protein kinase A (PKA). PKA then phosphorylates a variety of target proteins in the cell, leading to a diverse set of responses.

In liver cells, the activation of the G protein-coupled protein kinase pathway by epinephrine leads to an increase in glycogen breakdown and glucose production, which helps to increase blood glucose levels in response to stress or exercise.

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The fluid mosaic model of the membrane proposed that membranes: a.Consist of the single layer of phospholipids and proteins. B.Consist of a phospholipids bilayer composed of a variety of fatty acids C.Consist of protein molecules embedded in a dynamic bilayer of phospholipids. D.Consist of a phospholipid bilayer between two layers of hydrophilic proteins.

Answers

The fluid mosaic model of the membrane proposed that membranes consist of protein molecules embedded in a dynamic bilayer of phospholipids. Option C is correct.

Fluid mosaic model was first proposed by S.J. Singer and G.L. Nicolson in 1972 and it describes the structure of biological membranes. According to this model, the membrane is composed of a fluid phospholipid bilayer in which proteins are embedded, forming a mosaic pattern. The fluidity of the bilayer is due to the movement of the phospholipid molecules, which can move laterally within the plane of the membrane.

The model also suggests that the membrane is not a static structure, but rather a dynamic one that can change in response to environmental stimuli. The proteins embedded within the bilayer can move laterally or rotate around their axis, and they can also interact with each other and with other molecules inside and outside of the cell.

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HELP PLEASE ILL MARK AS BRAINLIEST!!!!!

Figure 3 shows folding. Rocks are usually deposited flat and level. If you see them tilted or folded, the tilt ot fold came after the layers were made. What could have caused the folding?

Answers

Answer:

They tilt and fold due to tectonic activity, and river cuttings can cause gaps among the layers.

what is the relationship between the endoplasmic reticulum and the golgi apparatus?

Answers

Both the Golgi apparatus and the endoplasmic reticulum (ER) are membrane-bound organelles found in eukaryotic cells and are involved in the synthesis, modification, and transportation of proteins and lipids.

In order to guarantee the appropriate folding, processing, modification, and transport of proteins and lipids throughout the cell, the endoplasmic reticulum and the Golgi apparatus collaborate. The proteins are created and altered in the ER, then packaged into transport vesicles and sent to the Golgi for further processing and sorting. The proteins are subsequently modified and sorted by the Golgi before being transported to different vesicles that will ultimately be used by the cell.

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True/False. a heterozygote in a diploid individual would have 2 different alleles at the designated locus.

Answers

True. A heterozygote in a diploid individual would have 2 different alleles at the designated locus.

A gene region where there are two distinct alleles present. One normal allele and one mutant allele, or two distinct mutated alleles, can make up a heterozygous genotype (compound heterozygote).

What are some examples of heterozygote advantage?

The instance of sickle cell anemia is a well-known illustration of heterozygote advantage in humans. The first hereditary disease to be linked to a particular genetic mutation, a single letter (base) alteration in the DNA of a gene generating a component of hemoglobin, was sickle cell anemia.

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Which structure is not a part of the sporophyte generation?
A) Flower
B) Anther
C) Egg
D) Leaf

Answers

Flower structure is not mentioned as being a part of both the sporophyte generation in the sentence.

What is a simple definition of a sporophyte?

Sporophyte is the name for a diploid stage in a plant's or certain algae's life cycle. The zygote grows into a sporophyte, which meiosis creates spores in. After that, the spores transform into haploid gametophytes. This mature fern flower is an illustration of a sporophyte.

What is a sporophyte example?

After fertilization, an sporophyte of mosses like Funaria and Polytrichum forms. Its foot, seta, plus capsule make up the sporophyte in mosses. The haploid spores in the capsule develop into the gametophyte, which includes antheridia and archegonia, as they are dispersed by the wind.

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What type of epistasis between locus A and B could be explained by the following biochemical pathway?
A B
Yellow ---->Orange -----> RedDominant/recessive epistasis duplicate genes with cumulative effect duplicate recessive epistasis single dominant epistasis single recessive epistasis duplicate dominant epistasis

Answers

The following molecular mechanism could account for the sort of duplicate recessive epistasis that occurs between loci A and B.

Gene A is waves propagating and parent B is hypostatic in classical genetics if genes And the a B are mutated and each mutation alone results in a distinct phenotype but the mutated gene combined create a same phenotype also as gene A mutation. For instance, the genetic for brown hair is epistatic towards the trait for total baldness. Dominant epistasis occurs when a dominant allele masks the development both of recessive and dominant genotypes at other loci. When the expression is hidden by the recessive allele, this is recessive epistasis. The blossom hue of sweet pea plants is the best illustration of duplicate recessive epistasis.

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What feature of wetlands allows larger particles and chemicals to settle and adsorb to the sediment?

Answers

Large ponds are used to remove sediment from constructed wetlands because they allow for the dispersion of water velocities, which causes sediment particles to fall out of the water column and settle at the bottom of a basin, which must then be cleaned frequently.

Wetland is a complex ecosystem that is defined by flooding or soil saturation. This low oxygen environment favours a particular assembly of plants, animals, & bacteria that have evolved to withstand periods of stagnant or slowly moving water.

Physical, chemical, & biological processes work together in wetlands to remove plant nutrients from the environment. When water slowly moves through the marsh, the found naturally processes adsorb/absorb, convert, sequester, and eliminate the nutrients as well as other contaminants.

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if we observe a trait occurs in only two forms in a population, we can conclude that inheritance of the trait is

Answers

Organisms acquire characteristics from their parents through inheritance. These characteristics are referred to as traits. Every individual has a unique set of qualities that make them unique.

Mendel's laws on inheritance describe what?

As per Mendel's law of inheritance, The alleles for every gene segregate from one another during gamete production, resulting in each gamete having just one copy of each gene. Independent assortment: During the development of gametes, genes for various features can segregate independently.

Mendel's first rule of inheritance is what?

Mendel's First Law, also known as the law of segregation, states that during the development of a gamete, each member of an allelic pairing separates from each other member to create the gamete's genetic makeup.

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Drag each label to the correct location on the image.
Match each digestive juice or enzyme to the organ where it performs.
hydrochloric acid
saliva
pancreatic juices

Answers

Saliva is released from the salivary gland, and hydrochloric acid is released from the stomach. Thus, the correct option for 1 is saliva, 2 is hydrochloric acid, and 3 is pancreatic juice.

What are digestive juices?

Enzymes, which quicken bodily chemical reactions, are present in digestive fluids and help break down food into its various components. salivary ducts. Food is moistened by saliva from the salivary glands, which helps it pass more smoothly past the esophagus and into the stomach.

Saliva is released from the salivary gland, hydrochloric acid is released from the stomach, and pancreatic juice is secreted from the pancreas. Thus, the correct option for 1 is saliva, 2 is hydrochloric acid, and 3 is pancreatic juice.

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Your question is incomplete, most probably the full question is this:

Drag each label to the correct location on the image.

Match each digestive juice or enzyme to the organ where it performs.

hydrochloric acid

saliva

pancreatic juices

The image is attached below:

What is a landform simple?

Answers

A landform is a natural feature or shapes on the surface of the Earth that is created by geological or geomorphological processes.

Landforms can be found in a variety of sizes, shapes, and elevations, and they can be classified into several categories based on their characteristics. Some examples of landforms include mountains, hills, valleys, plateaus, canyons, deserts, plains, coastlines, and islands. Landforms can be created by a variety of natural processes, such as erosion, deposition, tectonic activity, volcanic activity, and weathering.

Landforms can also play an important role in shaping the physical and biological characteristics of an area.

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Select the descriptions that apply to the ribosome. 1. a molecular structure that is the site of protein synthesis 2. a cellular structure that is composed of both RNA and protein

Answers

The ribosome fits both categories.

What is ribosome?

The cellular process of protein synthesis is carried out by ribosomes. They are ribonucleoprotein complexes because they contain both RNA and protein.

All living cells, including those of humans and bacteria, include ribosomes, which are either free to move around in the cytoplasm or, in eukaryotic cells, are bound to the endoplasmic reticulum.

Messenger RNA (mRNA) contains information that is used by ribosomes to assemble amino acids into polypeptide chains, which will later fold into functional proteins. This process is known as protein synthesis. In order for cells to operate properly, ribosomes are crucial to life.

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The process of making RNA using DNA as a template is called ___.

Answers

DNA transcription, a procedure that shares certain similarities with DNA replication, is the only way for a cell to produce all of the RNA it needs.

In order to reveal the bases on each DNA strand, a little section of the DNA double helix must first be opened and unwound. The production of an RNA molecule then uses the DNA double helix's one of its two strands as a template. The complementary base pairing of incoming nucleotides and the DNA template determines the nucleotide sequence of the RNA chain, just like in DNA replication. An enzymatically catalyzed reaction occurs when a successful match is made, resulting in the addition of a covalent bond between the incoming ribonucleotide and the extending RNA chain.

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Sunspots are darker than the regions of the Sun around them because

Answers

As a result of the fact that they are colder than other Sun-surface regions. A sunspot's temperature is still extremely high, at about 6,500 degrees Fahrenheit.

Sunspots: Are they darker than the Sun?

According to NASA, sunspots are significantly cooler and release roughly 25% as much light as the rest of the sun, which is why they appear so much darker than the rest of the visible surface of the sun, or photosphere.

What are the sunspots' two key attributes?

There are two basic components to sunspots: a penumbra that surrounds the umbra in the centre. The magnetic field is highest and almost vertical, or normal, to the Sun's surface, or photosphere, in the umbra, which is a sunspot's darkest area.

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what is the name of the process by which green plant make their owm food

Answers

The name of process through which green plant make their own food is known as Photosynthesis.

What is Photosynthesis?

Photosynthesis may be defined as a type of process through which green plants and some algae synthesize their own food in form of glucose with the help of carbon dioxide and water in the presence of sunlight.

The complete reaction of photosynthesis is as follows:

[tex]6CO_2+12H_2O[/tex] → [tex]C_6H_1_2O_6+6O_2+6H_2O[/tex].

With the help of the above reaction, it is clear that carbon dioxide and water are the reactants of the process while glucose and oxygen are the products.

Therefore, the name of the process through which green plants make their own food is known as Photosynthesis.

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Walking along a large city park on a hot summer day, you look for a cool resting place and sit down on a large rock under a willow tree, at the quiet edge of a stream. You have searched for and found an example of a
population.
landscape.
microclimate.
biome.

Answers

You looked for and discovered a microclimate example. C is the right response. On a hot summer day, you are strolling through a sizable city park when you decide to stop and take a break.

You find a large rock beneath a willow tree, close to a quiet stream.

The climate of a relatively small or restricted area is referred to as a microclimate, particularly when it initially deviates from the climate in the immediate vicinity. Even if it's very hot outside, there will be a cool microclimate here by the stream's edge, under the tree, or on the rock.

Hills, mountains, and water features that are unique to a given area have a direct impact on the microclimate there.

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The insertion of the extensor digitorum branches into __________.
four tendons
two tendons
three tendons
five tendons

Answers

The insertion of the extensor digitorum branches into four tendons.

What Bone is the location of a Extensor Digitorum Insertion?

The antebrachial fascia, the intermuscular septa that connects it to the surrounding muscles, and the lateral epicondyle of a humerus are the sources of the extensor digitorum muscle.

On which muscles does the extensor expansion attach?

The lumbrical muscles that make up the extensor expansion and the insertion tendons of the plantar interossei strengthen these slips.

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a ___________ is a type of muscular contraction not accompanied by movement of the joint. resistance applied to the contraction increases muscle tension without producing movement of the joint.

Answers

A Isometric movements is a type of muscular contraction not accompanied by movement of the joint. resistance applied to the contraction increases muscle tension without producing movement of the joint.

What three types of muscle contractions are there?

Contractions: Types 1 Muscles can contract in three different ways: eccentrically, isometrically, and concentrically. It might be a little deceptive to refer to eccentric contraction as "contraction" because, during this form of contraction, the sarcomere lengthens.

What kind of muscle contraction doesn't result in a change in the angle or movement of the bone?

Muscle Action Isometric (Isometric Contraction)-

Actually, what stays constant isn't muscle length but joint angle. Since the word "contraction" itself refers to "shortening," isometric contraction, like all other types of muscular contraction, entails internal movement processes that shorten the muscle fibers.

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describe the role that valves play in returning blood to the heart:Valves keep blood from flowing backward in the vein allowing it to flow toward the heart.

Answers

Valves play a crucial role in returning blood to the heart by preventing blood from flowing backward in the veins, which would impede the flow of blood toward the heart.

Veins are the blood vessels that carry deoxygenated blood back to the heart from the rest of the body. Unlike arteries, veins do not have a thick muscular layer, and the pressure of blood flowing through them is relatively low.

To prevent the backflow of blood, veins contain one-way valves that open and close as blood flows through them. These valves are small flaps of tissue that are located inside the veins and are designed to open and allow blood to flow toward the heart, and then close to prevent the blood from flowing backward. The valves are spaced evenly along the length of the vein and ensure that the blood is propelled toward the heart in a unidirectional flow.

As blood flows through a vein, the valve in front of it opens, allowing blood to pass through, and then quickly closes to prevent the backflow of blood. When the next valve downstream opens, blood is able to flow through that section of the vein, and the process repeats itself. This one-way flow of blood is critical to maintaining proper circulation and ensures that blood is continually moving toward the heart.

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What is the energy required to change a solid to a liquid?

Answers

The quantity of heat energy necessary to turn a solid into a liquid now at boiling point is known as latent heat of fusion.

What are instances of solids to liquids?

Ice to water: When left outside at temperatures higher than 32 degrees, ice has melted back into water. Rocks can be heated in volcanoes until they become molten lava. Metals like steel or bronze can be melted down into a molten liquid.

Is there a chemical change when a solid becomes a liquid?

Physical changes cause molecules to move but not to change. Changes in government are just a few of the physical changes. separation of a combination.

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