The member of Kingdom Protista that is the closest relative to the land plants is:
D) Chlorophytes
Chlorophytes, also known as green algae, are thought to be the most closely related to land plants. This is due to the fact that they share many characteristics with terrestrial plants, such as the presence of chlorophyll a and b, the ability to perform photosynthesis, and the use of cellulose as a structural component of their cell walls.
In fact, some green algae species are so similar to land plants that they are referred to as "proto-plants" at times. It is thought that land plants evolved from a type of green algae, possibly via endosymbiosis, a process in which one organism is taken up by another and they evolve together to form a new organism.
While other Kingdom Protista members, such as dinoflagellates, diatoms, and rhodophytes, perform photosynthesis, they are not as closely related to land plants as chlorophytes.
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Which role does the protein cytochrome p450 play in the human body?
O It transports waste products out of cells.
O It regulates blood sugar levels
O It constructs cell membranes.
O It breaks down unfamiliar chemicals.
The role of the protein cytochrome p450 in the human body is It breaks down unfamiliar chemicals.
option D
Which is the role of protein cytochrome p450 ?
The protein cytochrome P450 plays a crucial role in breaking down and eliminating many different types of foreign substances, including drugs, toxins, and environmental pollutants, from the human body. It is primarily involved in the process of drug metabolism and is found in many different tissues and organs, particularly the liver.
Cytochrome P450 enzymes help to convert these foreign substances into more water-soluble forms that can be easily excreted from the body, thus protecting the body from potentially harmful effects.
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Answer: it breaks down unfamiliar chemicals.
Explanation: i took the test !
Which step of the lytic life cycle of a virus leads to a sudden increase in viral particles? A) Burst B) Inoculation C) Eclipse
The correct answer is (A) Burst. The principal difference that next appears in the viral infection wind compared to a bacterial growth wind occurs when virions are released from the lysed host cell at the same time.
In the vegetative cycle of viral infection, the addition of get contagions can be rapid-fire. This cycle of infection frequently results in the death of the cell and the release of numerous contagion get. HIV infection leads to a gradational loss of vulnerable capability, allowing infection with organisms that aren't typically pathogenic.
In the lytic cycle, a phage acts like a typical contagion. It hijacks its host cell and uses its coffers to make lots of new phages, causing the cell to lyse( burst) and die in the process.
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Select all of the following that are functions of membrane proteins. -Cell signaling -Cell recognition -Energy transduction -Transport.
Cell signaling, cell recognition, energy transduction, and transport are the functions of membrane proteins.
What are the three purposes that membrane proteins serve?Processes that are necessary for the health and development of biological cells are mediated by membrane proteins. Receptors facilitate communication between the cell and its environment, membrane-embedded enzymes initiate chemical reactions, and membrane-embedded transporters move ions and larger solutes across membranes.
Which of the following does not require membrane proteins to perform?Explanation and Response: E) store nutrients within cells is the correct response. Because they are too small and inconveniently located to actually distribute nutrients throughout the cell, cell membrane proteins cannot store these nutrients.
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what statement best describes a wnt protein
A Wnt protein is a type of secreted signaling molecule that plays an important role in development and in the maintenance of adult tissue.
Wnt proteins act as morphogens that influence the patterning of cells, influencing cell fate and directing the development of specific structures. Wnt proteins are also involved in the regulation of cell proliferation and differentiation, as well as in stem cell maintenance and in the regeneration of adult tissues. A Wnt protein is a family of proteins that play a role in cell signaling. They are involved in diverse processes, including embryonic development, cell fate determination, and tissue homeostasis. These proteins transport signals between cells and have the ability to influence the behavior of the cells. Wnt proteins are essential for normal development and can be disrupted in some diseases.
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Which is more harmful to the Earth, human overpopulation or over consumption of natural resources?
Both human overpopulation and overconsumption of natural resources are major challenges facing the Earth today, and they are interconnected.
What is Earth?Earth is the third planet from the Sun and is the only known planet to support life. It is the fifth-largest planet in our solar system and has a diameter of about 12,742 kilometers (7,918 miles). Earth is unique in that it has a complex and diverse biosphere that supports a wide range of living organisms, including humans. The Earth is composed of several layers, including the crust, mantle, and core. The crust is the outermost layer, and it is made up of solid rocks and minerals. The mantle is beneath the crust and is composed of hot, molten rock. The core is at the center of the Earth and is made up of iron and nickel.
The Earth is surrounded by an atmosphere, which is composed of nitrogen, oxygen, and other gases. The atmosphere protects the planet from harmful radiation and regulates the temperature and climate.
Here,
Human overpopulation refers to a situation where the number of people living in a given area exceeds the capacity of that area to sustain a comfortable and healthy life. Overpopulation puts a strain on natural resources, such as water, land, and food, and can lead to environmental degradation, loss of biodiversity, and pollution.
Overconsumption of natural resources, on the other hand, refers to a situation where humans consume natural resources at a rate that exceeds the Earth's capacity to replenish them. This can lead to depletion of natural resources, such as forests, water, minerals, and fossil fuels, and can contribute to climate change and other environmental problems.
In general, both overpopulation and overconsumption contribute to environmental problems and can be harmful to the Earth in different ways. Ultimately, the best way to address these challenges is to promote sustainable practices and policies that balance human needs with the health of the planet.
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what is low and high priority in emt
The safety of individuals around you and your own personal safety, including the safety of your crew, are your top priorities.
The patient doesn't take precedence over anything else until you get there without incident and the area is safe. When a victim is not critically hurt, they are immediately triaged and given a priority 3 or "green" classification, which denotes delayed treatment or transportation. In order to wait for delayed evaluation and transportation, the walking wounded are typically brought to a staging location outside of the "hot zone."
This entry-level EMT or paramedic can offer basic first aid and immediate life-saving care, but they often have to wait for more experienced EMTs or paramedics to administer any more advanced care.
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the soma of psuedounipolar neurons is found in the gray matter of the spinal cord. T/F
It is true that the gray matter of the spinal cord contains the soma of pseudounipolar neurons.
Where in the spinal cord can you find pseudounipolar neurons?A dorsal root ganglion houses a pseudounipolar neuron's cell body. After exiting the cell body and the ganglion of the dorsal root, the axon enters the dorsal root and divides into two branches. The central branch reaches the spinal cord's dorsal columns, where it joins with other neurons to form synapses.
Where are neurons' soma found?Image result The soma—also known as the tree trunk—is where the nucleus of the neuron is located, where the neuron's DNA is kept, and where proteins are made so that they can travel along the axon and dendrites. In both the brain and the spinal cord, there are various types of neurons.
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Which of the following situations creates edema?
Edema is brought on by a rise in the capillary hydrostatic pressure gradient.
Why is hydrostatic pressure so high?This is brought on by buoyancy, which negates the gravitational pull and lessens extravasation, which often happens in dependent regions of the body. The volume of blood circulating increases as a result. Vasoconstriction in the periphery reduces peripheral perfusion and promotes a more centralized circulation.
Does elevated hydrostatic pressure result in edema?Edema is caused by either an increase in the intravascular fluid's flow into the interstitial space or a reduction in the interstitial fluid's flow into the capillaries or lymphatic arteries. One or more of the following are part of the mechanism: increased hydrostatic pressure in the capillaries.
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Question:
Which of the following situations may create edema?
a) A decrease in the capillary hydrostatic pressure gradient
b) An increase in the capillary hydrostatic pressure gradient
c) An increase in the colloid osmotic pressure
d) A negative net filtration pressure (NFP)
in long bone formation, from what embryonic structure does the articular hyaline cartilage on the end of an adult long bone arise?
The articular hyaline cartilage on the end of an adult long bone arises from the mesoderm germ layer during embryonic development.
The mesoderm germ layer forms the limb buds, which later develop into the long bones of the body, during embryonic development. Hyaline cartilage, which acts as a template for bone production, covers the developing bones as they grow.
By a process known as endochondral ossification, the hyaline cartilage is gradually replaced by bone tissue as the bones expand. The articular hyaline cartilage at the ends of the bones, on the other hand, is still there and provides a smooth surface for joint motion.
Overall, the production of long bones is a complicated process that involves several stages of cartilage and bone development. There are numerous structures that form from the mesoderm germ layer during embryonic development, one of which is the articular hyaline cartilage on the end of an adult long bone.
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During which geological period did the most recent types of body plans appear?
a) Devonian
b) Cambrian
c) Triassic
d) Carboniferous e) Jurassic
Answer:
B.the Cambrian period
Explanation:
The most recent types of body plans appeared during the Cambrian period. The Cambrian period is known as the "Cambrian explosion" because it was a time when there was a rapid diversification of life on Earth, and many new body plans appeared. During this time, there was an explosion of biodiversity, and many of the major animal phyla that exist today first appeared, such as arthropods, chordates, and echinoderms. The Cambrian period is therefore an important time in the history of life on Earth, as it marked the beginning of the development of many of the complex body plans that exist today.
The structure found in all cells that acts like a barrier of the cell are called:_____
Answer: Plasma membrane
Explanation: plasma membrane is the outermost later which is found in every cell . Plasma membrane is a lipid bilayer which is selectively permeable and allows only selective products to enter.
cell wall is present only in plant cells it is absent in animal cells to act like a barrier
which is the distensibility of blood vessels?
The distensibility of blood vessels is the ability of the walls of the vessels to stretch or expand when filled with blood.
This is a crucial feature of blood vessels because it enables them to adapt to variations in blood volume and pressure and aids in ensuring a constant flow of blood throughout the body.
Blood vessel distensibility is primarily influenced by the elasticity of the vessel walls. The quantity of smooth muscle fibres and the presence of the proteins elastin and collagen in the blood vessel walls affect the blood vessels' flexibility.
The smooth muscle fibres aid in controlling the amount of force applied to the walls, while the elastin and collagen proteins provide the walls their elasticity and capacity to stretch.
The size, shape, and quantity of water and electrolytes in the blood are all factors that affect the distensibility of blood vessels.
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What are the label parts of the respiratory system?
The label parts of the respiratory system is Nose and Mouth, Pharynx, Trachea, Alveoli and Overall.
The respiratory system is a complex system responsible for the exchange of gases (oxygen and carbon dioxide) between the body and the environment. The major parts of the respiratory system and their functions are:
Nose and Mouth: These are the entry points for air into the respiratory system. They warm, humidify, and filter the air before it enters the lungs.
Pharynx: It is a muscular tube that connects the nose and mouth to the larynx. The pharynx serves as a passageway for both air and food.
Larynx: It is also known as the voice box and is located between the pharynx and trachea. The larynx contains the vocal cords and plays a crucial role in speech and breathing.
Trachea: It is a rigid tube that connects the larynx to the bronchi. The trachea is lined with cilia and mucus-secreting cells that help to trap and remove foreign particles.
Bronchi: These are the two main branches of the trachea that enter each lung. The bronchi further divide into smaller bronchioles, which eventually lead to the alveoli.
Alveoli: These are small, thin-walled sacs in the lungs where gas exchange occurs. Oxygen from the air enters the bloodstream through the walls of the alveoli, while carbon dioxide from the bloodstream enters the alveoli to be exhaled out of the body.
Lungs: The lungs are a pair of spongy, elastic organs that contain the bronchi and alveoli. The lungs are responsible for bringing oxygen into the body and removing carbon dioxide from the body.
Overall, the respiratory system is a complex network of organs and tissues that work together to ensure that the body receives the oxygen it needs and removes carbon dioxide waste.
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does natural selection act on individuals or does it act on something else?
Answer:
that's because the Natural selection acts on populations. Individuals do not evolve in genetic evolutionary terms. Individuals may mutate, but natural selection acts by shifting the characteristics of the population as a whole.
Explanation:
Drag each cell structure to the appropriate bin. If a structure is found in both plant cells and animal cells, drag it to the "both" bin. chloroplast cellulose cell wall plant cell only mitochondrion endoplasmic reticulum central vacuole nucleus plasma membrane animal cell only Golgi apparatus both centriole cytoskeleton
cellulose cell wall, core vacuole, and chloroplast are uniquely found in plant cells.
only a mammalian cell, the centriole. Both - mitochondria, cytoskeleton, Golgi, endoplasmic reticulum, nucleus, and plasma membrane. Animal and plant cells share more similarities than differences. Nonetheless, the distinctive architecture of plant cells play significant roles. In the chloroplasts of plant cells, photosynthesis takes place. The central vacuole of the plant cell occupies the majority of the cell's volume and performs a number of tasks, such as storing and hydrolyzing organic molecules. Plant cells are shielded from harm and keep their shape thanks to their cellulose-based cell walls. The most prevalent organic substance in nature is cellulose.
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Substances can move across the plasma membrane in two different ways—actively or passively. This activity will help you determine whether transport mechanisms actively or passively move substances across the membrane.Sort the following types of membrane transport mechanisms into active or passive processes.Active Process: Secondary active transport, Primary active transport, Endocytosis, ExocytosisPassive Process: Simple diffusion, Facilitated diffusion, Osmosis
Active Process: Secondary active transport, Primary active transport, Endocytosis, Exocytosis
Passive Process: Simple diffusion, Facilitated diffusion, Osmosis
What is an active and passive process?In biology, active and passive processes refer to the different ways in which substances can move across a cell membrane. Active processes require the cell to use energy, usually in the form of ATP (adenosine triphosphate), to move substances against a concentration gradient, from an area of low concentration to an area of high concentration.
Passive processes, on the other hand, do not require the cell to use energy. Instead, substances move across the membrane down their concentration gradient, from an area of high concentration to an area of low concentration.
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the classification of an organism and the scientific name of an organism are different because ____.
The classification of an organism and the scientific name of an organism are different because the full classification of the organism basically include more categories of organisms as compared to their scientific names.
Full classification of an organism involves is all the different levels which are the kingdom, phylum, class, order, family, genus, as well as species.
A scientific name of a particular organism on the other hand contains information only about its genus as well as species. For example, Panthera tigris is the scientific name of a tiger and in this Panthera is the name of the genus and tigris is the name of the species.
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Discussion: Diversity of Life, Part - 2
Graded Discussion
Discussion Topic
Imagine that certain laws of physics could be ignored and you were able to travel vast
distances in moments. Now imagine that you traveled to an Earth-like planet located
light-years away that is known to support life. Think about what you've learned in this
unit and make an argument for what you think would be the dominant type of life form
on this planet. Consider whether a notochord is required for an organism to manipulate
its environment and become a dominant creature.
5 F
Assuming that we're suitable to travel vast distances in moments and that we've discovered an Earth- suchlike earth located light- times down that supports life.
it's delicate to prognosticate what the dominant type of life form on this earth would be without further information about the earth's terrain and the conditions that live there. still, we can make some general prognostications grounded on what we know about the elaboration of life on Earth. On Earth, the most dominant type of life form is presently the multicellular organism.
Multicellular organisms evolved from single- celled organisms through a process called symbiogenesis, in which multiple cells came together to form a collaborative unit. The foremost multicellular organisms on Earth didn't have notochords, which are structures set up in the phylum Chordata( which includes invertebrates) that give support and allow for movement. rather, these early multicellular organisms had simpler structures, similar as cell walls, that handed support and allowed for limited movement.
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What are the 5 systems of Bronfenbrenner's theory?
Answer:
microsystem, mesosystem, exosystem, macrosystem, and chronosystem.
Explanation:
What is the extracellular matrix of blood tissue called?
D. Plasma is the term for the fluid component of whole blood, often known as its matrix.
Plasma is the extracellular matrix for blood, which makes blood distinct from other connective tissues since it is fluid. The produced substances are suspended in this liquid, which is primarily water, and are then transported throughout the body by the circulatory system. A square matrix with order n is a grid with n columns and n rows. Ordinary numbers can be conceived of as 1 1 matrices, making the number 3 the matrix [3]. A row vector is a matrix with one column & n columns, and a column vector is a matrix with one column with n rows.
(The fluid extracellular matrix of blood is called_____.
a. mucus
b. serous fluid
c. synovial fluid
d. plasma)
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what does it mean to selectively breed an organism?
Answer:
Selective breeding involves choosing parents with particular characteristics to breed together and produce offspring with more desirable characteristics. Humans have selectively bred plants and animals for thousands of years including: crop plants with better yields.
Explanation:
The Km of an enzyme is 5.0 mM. Calculate the substrate concentration when this enzyme operates at one-quarter of its maximum rate. substrate concentration: mM Determine the fraction of Vmax that would be obtained when the substrate concentration, [S], is 0.5 Km. Round your answer to two significant figures. Vmax fraction: Enter numeric value Curve 1 An enzyme that catalyzes the reaction X = Y is isolated from two bacterial species. The enzymes have the same Vmax but different Km values for the substrate X. Enzyme A has a Km of 2.0 MM, and enzyme B has a Km of 0.5 uM. Kinetic experiments used the same concentration of each enzyme and 1 uM of substrate X. [Y] Curve 2 The graph plots the concentration of product Y formed over time. Time Based on the graphs and Km values of each enzyme, curve 1 corresponds to and curve 2 corresponds to
This enzyme uses 0.333 times as much substrate concentration as it can at its 25% maximal rate.
The connection between substrate concentration and Km
In actuality, Km is the substrate concentration at which the enzyme may accomplish half of Vmax. Because Km is a constant, raising the substrate concentration has no impact on it. An enzyme with a high Km has a poor affinity for its substrate and needs a larger concentration of substrate to achieve Vmax. The substrate concentration Km is equivalent to the substrate concentration at which the enzyme-catalyzed reaction proceeds at a rate that is half that of the maximum reaction rate.
V₀=Vmax(5)/5+Km
v₀/Vmax=5/5+km
=0.5km/1.50+km
=0.33
A protein-based molecule known as an enzyme speeds up a certain chemical reaction.
The Michaelis-Menten Equation is used to determine the connection between the substrate and reaction rate.
Vmax[S] = Vmax[Km + [S]
where V is the initial velocity, Km is the affinities measure, and S is the concentration of the substrate.
V = 0.25 [5.0] / 1/4 [5.0] .0]
V =1.67
The result of applying one quarter to the given equation is 1.67 mM.
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which branchial arch forms the ultimobranchial body is called
The inferior parathyroid glands and thymus are formed by the third pharyngeal pouch, while the superior parathyroid glands and ultimobranchial body are formed by the fourth pharyngeal pouch.
The ultimopharyngeal body, also known as the ultimobranchial body or ultimobranchial gland, is a tiny structure present in many animals' necks. It grows from the fourth pharyngeal pouch into the thyroid's parafollicular cells to create calcitonin in humans. It might not appear in DiGeorge syndrome.
Ultimobranchial bodies develop from the last visceral pouches in the same way that thymus and parathyroid tissues develop from the more anterior visceral pouches . This epithelial tissue is colonized by cells from the neural crests, giving rise to groups of calcitonin-secreting cells.
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what is the most cephalic section of the pharynx?
The most cephalic section of the pharynx is the nasopharynx. The nasopharynx is the superior section of the pharynx.
Located at the back of the nasal cavity and extending from the base of the skull to the level of the soft palate.
It functions as an airway between the nasal cavity and the larynx and is a component of the respiratory system. Moreover, mucous membranes that line the inside of the body release mucus to assist filter and moisturise incoming air.
As the nasopharynx is where voice sounds are created and resonant, it plays a crucial role in sound transmission. The Eustachian tube, which joins the middle ear to the back of the nose and throat and allows air to enter to equalise air pressure, is also housed there.
The immune system also includes the nasopharynx, which serves as one of the initial lines of protection against inhaled infections.
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what major paired vessels supply oxygenated blood to the head and neck regions? specify veins or arteries.
The major paired vessels that supply oxygenated blood to the head and neck regions are the carotid arteries and the jugular veins.
The carotid arteries are two major blood vessels that originate in the chest and supply oxygenated blood to the head and neck regions. There are two carotid arteries, one on each side of the neck, and they each divide into two branches: the internal carotid artery, which supplies blood to the brain, and the external carotid artery, which supplies blood to the face, neck, and scalp.
The jugular veins are also paired vessels that drain deoxygenated blood from the head and neck regions back to the heart. There are two jugular veins, one on each side of the neck, and they run alongside the carotid arteries. The internal jugular vein is the larger of the two and drains blood from the brain and the deep tissues of the neck and face, while the external jugular vein drains blood from the superficial tissues of the face and neck.
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Meiosis in animals serves all but which one of the following functions?
A. the formation of gametes
B. the production genetically identical daughter cells
C. the reduction of chromosome number by half
D. the formation of haploid germ cells.
Statement B is the correct option. This statement is true about mitosis, not meiosis because the genetically identical daughter cells are produced during mitosis.
Mitosis is the process that helps to produce two genetically identical daughter cells whereas meiosis is the process that helps to produce genetically distinct daughter cells from the parent cells. In mitosis, the chromosome number remains the same whereas, in meiosis, the chromosome number is reduced to half.
Mitosis occurs in the somatic cells where as meiosis occurs in the gametes. So genetic variation doesn't change during mitosis but genetic variation is increased during meiosis.
All the given statements are true of meiosis except statement B which is true of mitosis.
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When studying with a friend for a test, what key points about osmosis would you make sure you tell them? Check all that apply.
Osmosis refers to the movement of water along a concentration gradient
In osmosis, water moves to equalize solute concentrations on either side of the membrane
If osmosis occurs across a membrane, then diffusion is not occurring
The movement of water across a membrane can affect the turgor pressure of some cell
Answer:
diffussion
Explanation:
movement of materials across thecell membrane
what is baby kangaroo name?
Around 235 days pass while the joey, or newborn kangaroo, is in the mother's pouch. There are around 120 species of marsupials in Australia, 53 species in New Guinea, 90 species in South and Central America, and just two species in North America.
A joey is the name for a kangaroo's young. A baby kangaroo, in contrast to the young of the majority of other animals, is severely undeveloped and embryonic at birth.
The jellybean-sized young kangaroo climbs up through its mother's fur to reach its pouch after a gestation period of up to 34 days. originally meant "little animal" in the language of the Aboriginal people. Joey is considered to be the standard for all small animals.
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which is the best description of microorganisms?
The best description of a microorganisms is that it is too small to be able to clearly seen through unaided eyes.
The correct option is option A.
Microbes or the microorganisms are basically the minute as well as unicellular organisms which are not visible to the unaided eye. They are also known as microscopic organisms and this is because they can only be seen under a microscope. They make up for about 60% of the living matter on Earth.
The term microbes is basically used to describe a number of different life forms which have different sizes as well as characteristics. A few of such microbes include bacteria, viruses, fungi etc. Microbes can be either useful as well as harmful for human beings and the environment.
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--The given question is incomplete, the complete question is
"A Organisms too small to be seen clearly by the unaided eye
B Organisms too small to be seen clearly with a microscope
C Organisms that have a small impact on the environment
D Organisms found in low abundance in the environment"--
What makes green anoles change color?
Color change in green anoles is a reaction to environmental conditions such as temperature and humidity. Hormonal changes may also have an impact. It is unknown if lizards have emotions similar to humans.
Anolis carolinensis, sometimes known as the "green anole," is a species of tree-dwelling anole lizard that is endemic to the southeastern United States and has been imported to islands in the Pacific and Caribbean. The green anole is a small to medium-sized ecomorph with a trunk-crown pattern that may change its color from brown to green in a variety of tones.
The American anole, American green anole, North American green anole, and red-throated anole are some of its alternate names.
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