Explanation: In order for carbon fixation to do, atmospheric CO2 enters the mesophyll through stomata.
Which are technical complexes of cells which form bitsy pores that serve as small faucets for gas exchange; these are substantially located in the lower epidermis of the leaf. On the face of the leaves of the plants there are a large number of bits pores known as stomata or stoma.
For photosynthesis green shops take carbon dioxide from the air. The carbon dioxide enters the leaves of the plant through the stomata present on their face. The spongy mesophyll cells are covered by a thin sub caste of water. feasts dissolve in this water as they move into and out of the cells. When the plant is photosynthesizing during the day, these features allow carbon dioxide to diffuse into the spongy mesophyll cells, and oxygen to diffuse out of them. Please give brainliest if this is right and thank you!
All of the following types of metabolism use a membrane-associated electron transport system (ETS) EXCEPT for
Choose one:
A. lithotrophy.
B. phototrophy.
C. mitochondrial respiration.
D. fermentation.
E. organotrophy.
During fermentation, the electrons from glycolytic responses are gotten back to the to some extent oxidized food source as opposed to being gone through an ETS framework to a terminal electron acceptor. The correct answer is (D).
The fact that the protein complexes that make up the various types of ETS share a common ancestor is indicated by their homology.
The electron transport chain is a progression of four protein buildings that couple redox responses, making an electrochemical slope that prompts the production of ATP in a total framework named oxidative phosphorylation. It occurs in mitochondria during photosynthesis and cellular respiration.
Smoke that is exhaled by smokers and smoke that is produced when a tobacco product is burned. It is called compulsory or aloof smoking to Breathe in ETS. Likewise called natural tobacco smoke and handed-down cigarette smoke.
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What is responsible for the high resolution of the electron
microscope?
Answer: The high resolution of EM images results from the use of electrons (which have very short wavelengths) as the source of the illuminating radiation. Electron microscopy is used in conjunction with a variety of ancillary techniques (e.g. thin sectioning, immuno-labeling, negative staining) to answer specific questions.
Explanation:
what are the names for the 2 wind systems where pressure belts meet called
Answer:
The two wind systems where pressure belts meet are called the "Polar Front" and the "Intertropical Convergence Zone (ITCZ)".
Explanation:
select all of the following that are able to pass freely through the phospholipid bilayer without the assistance of transport proteins.
All small, non-polar molecules that are able to pass freely through the phospholipid bilayer without the assistance of transport proteins are:
OxygenCarbon dioxideSteroid hormonesLarger molecules, polar molecules, and ions require transport proteins or channels to cross the phospholipid bilayer.
What is Steroid hormones?
Steroid hormones are a class of hormones that are derived from cholesterol and include testosterone, estrogen, and cortisol. They are small, non-polar molecules that can easily diffuse through the phospholipid bilayer of cell membranes and bind to intracellular receptors to modulate gene expression and cellular activity. Steroid hormones are involved in many physiological processes, including growth and development, reproduction, and stress response.
What are transport proteins?
Transport proteins are membrane proteins that facilitate the movement of molecules or ions across the cell membrane. They include channels, carriers, and pumps that selectively bind to and transport specific substances, such as glucose, amino acids, ions, and water, into or out of the cell. Transport proteins are essential for maintaining the proper balance of ions and molecules within the cell and for supporting many cellular processes, including nutrient uptake, waste removal, and cell signaling.
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true/false. transpiration from plants and evaporation from soil, lakes, and streams account for the majority of the water vapor added to the atmosphere each year.
It is false to say that transpiration from plants and evaporation from soils, lakes and streams constitute the majority of water vapor added to the atmosphere each year.
Transpiration is the loss of water in the form of water vapor from the aerial parts of plants such as stems, leaves and flowers. Atomsphere receives the water vapour from plants.
The evaporation of water from various surfaces such as lakes, rivers, sidewalks, soil and moist vegetation, as well as the transpiration of plants return moisture to the air. Most of the remaining 10% in the atmosphere is released by plants through transpiration. Therefore, the statement is not true.
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Terms in this set (25) If a scientist introduces a deletion of three nucleotides in a gene, what is the expected effect of that deletion on the amino acid sequence following it? The sequence of amino acids following the deletion will be normal.
No, the expected effect of a deletion of three nucleotides in a gene would be the loss of one amino acid in the resulting protein sequence.
This is because the genetic code is read in groups of three nucleotides, called codons, with each codon specifying a particular amino acid. When a deletion of three nucleotides occurs, it shifts the reading frame of the gene and causes all subsequent codons to be read incorrectly, resulting in a different amino acid sequence from that of the original gene. This type of mutation is known as a frameshift mutation and can have significant effects on the structure and function of the resulting protein.
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which of the following organisms has a respiratory system that does not require assistance from a circulatory system for gas exchange?
fill in the blank. the probability of an action potential being propagated from neuron to neuron increases when the___neuron receives a(n)___signal.
The probability of an action potential propagated from neuron to neuron increases when the Postsynaptic Neuron receives an excitatory signal.
Nervous system is the system that control and coordinate all the systems of our body.Neurons are the structural and functional unit of the nervous system.They communicate by transmission of action potential.An action potential that is propagated from neuron to neuron and it is further increased when the action potential travels from presynaptic neuron to postsynaptic neuron.The presynaptic neuron at axonites secrete neurotransmitters.It increases the speed of nerve impulse transmission.The action potential and released neurotransmitter release allow the neuron to communicate with other neurons.The neurotransmitter travels across the synapse to excite or inhibit the neuronal signal.
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Which is a kingdom ?
A. Mollusca
B. Arthropoda
C. Plantae
D. Mammalia
Answer:
C. Plantae is a kingdom.
sensory and motor function complete the sentences describing the functioning of the nervous system, then place them in logical order.
Sensory and motor function are two crucial functions of the nervous system. These functions help us to sense and respond to stimuli in our environment.
The logical order of these functions is as follows: Sensory neurons receive information. Interneurons integrate and interpret the information. Motor neurons carry information to muscles and glands for movement.
Below are the complete sentences describing the functioning of the nervous system: Sensory neurons receive information from the sensory receptors located in the skin, eyes, ears, nose, tongue, and internal organs.
Motor neurons carry information from the central nervous system to muscles and glands, resulting in voluntary and involuntary movement. Interneurons integrate and interpret sensory input and decide whether to send signals to the motor neurons or not.
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FILL IN THE BLANK. As a result of question 6, an action potential is propagated along the _____
of the muscle cell and down the _____
into the cell.
An action potential is propagated along the sarcolemma of the muscle cell and down the T-tubules into the cell.
When a motor neuron fires an impulse, it causes the release of the neurotransmitter acetylcholine (ACh) into the synaptic cleft between the motor neuron and the muscle fiber. ACh binds to receptors on the sarcolemma, which initiates a series of events that ultimately lead to the generation of an action potential.
The action potential then spreads rapidly along the sarcolemma and into the T-tubules, which are invaginations of the sarcolemma that penetrate deep into the muscle fiber. The T-tubules allow the action potential to reach deep into the muscle fiber and stimulate the release of calcium ions from the sarcoplasmic reticulum, which triggers muscle contraction.
The propagation of the action potential along the sarcolemma and T-tubules is essential for the coordinated contraction of muscle fibers, which is required for movement and other physiological processes. Without the proper propagation of action potentials, muscle function can be impaired, leading to muscle weakness or paralysis.
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why is there a large difference in the amount of insulin between the obese group and the Lea group
Because of factors including their body being less responsive to insulin, having more fat cells that release hormones controlling insulin, consuming a diet high in carbs and sugar, or genetics, obese persons frequently have higher insulin levels than lean people.
Nonetheless, even within the same group, there might be differences in insulin levels between people.
InsulinThe difference in insulin levels between the obese and lean groups may be due to a number of factors, including:
Insulin resistance: Insulin resistance is when the body's cells stop responding to insulin, raising blood insulin levels. Insulin resistance, which can lead to increased insulin levels, is more prevalent in obese people.
Adipose tissue, often known as fat cells, is capable of secreting hormones and other signaling molecules that have an impact on insulin levels. Adipose tissue is frequently more prevalent in obese people, which may help explain why their insulin levels are more significant.
Food: Nutrition has a significant impact on how much insulin is produced. Eating foods heavy in sugar and carbohydrates might raise one's insulin levels.
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the facial marking which is classified as natural question 6 options: submental sulcus mandibular sulcus cords of the neck optic facial sulci
The main natural markings are the sulci of the face and the optic of the neck. Thus, the option of face and neck marking this choice is right.
While, a naturally occurring facial marking at the point where the lower integumentary lip meets the superior chin border. a natural facial feature that can resemble a furrow at the point where the chin meets the submandibular region
Anglus oris eminence, Nasolabial Fold, Nasal Sulcus, Oblique Palpebral Sulcus, Labiaomental Sulcus, Submental Sulcus, and DimplesThe nine birthmarks are genetic in nature and are hence present at birth. Face Markings. the distinctive nautral and acquired lines on the face and neck. They include the following: lines, ridges, cords, and dimples.
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Gray and White Matter of the Spinal Cord Each label describes either the gray matter or white matter of the spinal cord. Drag each label to the appropriate box Functions to transmit Contains somas electrical signals over Lateral horn synapses, and Ventral hom Gracile fasciculus long distances dendrites Functions to integrate arriving electrical signals Corticospinal tract Posterior column Marked by low myelination Contains myelinated axons Gray Matter White Matter Ventral horn Posterior column Lateral horn Gracile fasciculus White Matter Gray Matter Ventral horn Posterior column Lateral horn Gracile fasciculus x
The spinal cord is a vital part of the central nervous system that plays a crucial role in transmitting sensory and motor signals between the brain and the body.
It is composed of both gray and white matter. Gray matter is primarily made up of neuron cell bodies and dendrites, and it functions to integrate incoming signals. In contrast, white matter is composed of myelinated axons that transmit electrical signals over long distances. The posterior column and gracile fasciculus are white matter tracts responsible for sensory information transmission, while the corticospinal tract is a white matter tract involved in motor function.
Gray Matter:
Ventral horn
Lateral horn
Contains somas
Functions to integrate arriving electrical signals
White Matter:
Posterior column
Gracile fasciculus
Contains myelinated axons
Functions to transmit electrical signals over long distances
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Full Question ;
Gray and White Matter of the Spinal Cord Each label describes either the gray matter or white matter of the spinal cord. Drag each label to the appropriate box Functions to transmit Contains somas electrical signals over Lateral horn synapses, and Ventral hom Gracile fasciculus long distances dendrites Functions to integrate arriving electrical signals Corticospinal tract Posterior column Marked by low myelination Contains myelinated axons Gray Matter White Matter Ventral horn Posterior column Lateral horn Gracile fasciculus White Matter Gray Matter Ventral horn Posterior column Lateral horn Gracile fasciculus x
Script for role play about environmental issues
Answer:
Choose the right answer.
If the stem on the left has the weights of the juniors and the stem on the right has the weights of the freshmen, we can see that the
weigh more.
Explanation:
[!] which type of neuron would exhibit the pattern of action potentials as seen above in response to a stimulus?
When exposed to a stimuli, tonic type neurons would respond with the pattern of action potentials seen above. As a neuron transfers information away from the cell body and down an axon, it experiences an action potential.
The action potential is sometimes referred to as a "spike" or a "impulse" by neuroscientists. A neuron's response to threshold or suprathreshold stimuli results in an action potential. Depolarization, overshoot, and repolarization are the three steps that make up this process.
A neuron's action potential is a fast, transient shift in membrane potential (electrical charge) brought on by the quick inflow of sodium and outflow of potassium. Neurons have the capacity to transmit impulses, react to stimuli (such as touch, sound, light, and so on), and interact with one another.
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5.3.c contrast euchromatin and heterochromatin in terms of structure, gene activity, and location along an interphase chromosome.
Contrast euchromatin and heterochromatin in terms of structure is euchromatin and heterochromatin are in their structures, gene activity, and location along the interphase chromosome.
The DNA of a cell is packed into chromatin fibers, which exist in two forms: euchromatin and heterochromatin. They differ in terms of structure, gene activity, and location along an interphase chromosome. Structure: Euchromatin fibers are thin and uncondensed, while heterochromatin fibers are thick and condensed. Gene Activity: The majority of genes are found in euchromatin, which is actively transcribed. Heterochromatin has fewer genes and is generally transcriptionally silent. Location Along an Interphase Chromosome. Thus, in general, euchromatin is more readily accessible to transcriptional machinery than heterochromatin.To learn more about Euchromatin :
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6.1.d compare the direction in which replication forks move with the direction in which the new dna strands are synthesized.
Compare the law in which new DNA strands are synthesized with the law in which replication forks move. New DNA strands are synthesized in the 5' to 3' direction, whereas replication proceeds bilaterally.
DNA is constantly combined in the 5'- to-3' course, implying that nucleotides are added exclusively to the 3' finish of the developing strand. The binding of the new nucleotide's 5'-phosphate group to the growing strand's 3'-OH group is depicted in.
Continuously, a single strand is synthesized in the direction of the replication fork; The term for this is the leading strand. Okazaki fragments—short stretches of DNA that are synthesized in a direction away from the replication fork—are produced for the other strand. The lagging strand is the name given to this strand.
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which of the following consists of one or more insulated twisted-pair wires encased in a plastic sheath?
UTP consists of one or more insulated twisted-pair wires encased in a plastic sheath.
The description pertains to a type of network cable known as "Unshielded Twisted Pair," or UTP cable. UTP cable is made up of one or more sets of insulated copper wires that have been twisted together and then wrapped in a plastic sheath.
Twisting wires reduces electromagnetic interference and crosstalk between neighboring wires. The plastic sheath protects the conductors and aids in the preservation of the cable's shape.
UTP cables are widely used in Ethernet networks and are classified according to their performance and transmission speeds. Cat5e, Cat6, and Cat7 are some of the most popular UTP cable types.
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Complete question
Which of the following consists of one or more insulated twisted-pair wires encased in a plastic sheath?
a. UTP
b. STP
c. SMF
d. MMF
Explain the basics of surfing, include properties of waves as well as important properties of surfboards.
Surfing basics
Surfing is a fun water sport that involves riding waves on a surfboard.
Waves are created by wind blowing across the surface of the ocean, and their size and shape depend on the strength and direction of the wind.
Important properties of waves for surfing include height, length, and shape. Waves that are too small or too big can be difficult to ride, while waves that are too steep or too flat can also be challenging.
Surfboards are specially designed to help surfers catch and ride waves. They come in different shapes and sizes, but all have a few important features in common:
a. A pointed nose to help cut through the water
b. A flat or slightly concave bottom for stability
c. A rounded or pointed tail for maneuverability
d. Fins on the bottom to provide direction and control
In order to surf safely, it's important to follow some basic rules, such as checking the surf report before heading out, wearing a leash to keep the board attached to your ankle, and being aware of other surfers in the water.
In summary, surfing involves riding waves on a specially designed board. Important properties of waves include height, length, and shape, while surfboards have a pointed nose, flat or slightly concave bottom, rounded or pointed tail, and fins for control. Safety is important when surfing, and following basic rules can help ensure a fun and enjoyable experience.
Fluid dynamics is the study of how fluids behave and interact with objects in motion, and surfers need to understand how waves move through the water and how to navigate them on a board.
Friction is the resistance that one surface encounters when moving over another, and the fins on the bottom of the surfboard create friction with the water to help the surfer control their direction and speed.
Inertia is the tendency of an object to resist changes in motion, and surfers use their weight and balance to stay on the board and maneuver through the water.
Buoyancy is the ability of an object to float in a fluid, and surfboards are designed to be buoyant.
Gravity is the force that keeps the surfer and the board on the surface of the water.
chatgpt
classify the following characteristics based on which domain is described. labels may be used more than once.
The following characteristics can be classified according to the appropriate domain: Cognitive Domain: knowledge, comprehension, problem-solving, critical thinking, and creativity. Affective Domain: attitudes, values, beliefs, emotions, self-esteem. Psychomotor Domain: physical coordination, manual dexterity, physical fitness, motor skills
The Cognitive Domain deals with thinking and problem-solving, such as knowledge, comprehension, problem-solving, critical thinking, and creativity. It involves acquiring, processing, and understanding information. The Affective Domain includes attitudes, values, beliefs, emotions, and self-esteem. It is concerned with changing feelings and behaviors and includes an awareness of one's feelings and the ability to express them. The Psychomotor Domain covers physical coordination, manual dexterity, physical fitness, and motor skills. It is the ability to use one's body to perform various tasks. It is often used in physical education classes and in activities such as sports and dance.
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Suppose that a potential blood donor has type B+ blood. Classify the following recipient's blood types as compatible or incompatible. Able to receive type B+ blood Unable to receive type B+ blood type O- type B+ type B- type A+ type AB+
A recipient with type B+ blood can receive blood from donors with type B+ and type O+. Therefore, the following blood types are compatible:
Type B+ (same blood type)Type O- (universal donor, compatible with all blood types)The following blood types are incompatible:
Type B- (lacks Rh factor)Type A+ (contains the A antigen, which can cause a transfusion reaction)Type AB+ (contains both A and B antigens, which can cause a transfusion reaction)What are the blood types?
Blood types are classifications of blood that depend on the presence or absence of certain proteins on the surface of red blood cells. The most well-known blood type classification system is the ABO system, which categorizes blood into four types: A, B, AB, and O. The presence or absence of the A and B antigens on the surface of red blood cells determines the blood type.
Another important blood type classification system is the Rh system, which is named after the Rhesus monkey. People who have the Rh protein on the surface of their red blood cells are Rh-positive (Rh+), while people who do not have the protein are Rh-negative (Rh-).
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BRONZE
4. There are
potential dangers
with regards to
overtraining, and
not giving yourself
rest and recovery
time between
training sessions.
Write down as
many reasons why
overtraining can
have a negative
effect on our fitness
as you can think of.
5. Different players
in the same team
sometimes have
different fitness
requirements. How
many sports, other
than football, can
you think of where
two team members
have different
training needs?
How do their
training needs differ
and why?
4.) Overtraining can have several negative effects on our fitness and overall health ; 5.)There are several sports, other than football, where two team members may have different training need like basketball, cricket and volleyball.
Why overtraining can have negative effect on our fitness?4.) Some of the potential reasons are:
Overtraining can cause fatigue and muscle weakness, increasing the risk of injury during exercise.
Overtraining can cause decline in physical performance, making it harder to achieve fitness goals.
Overtraining can weaken immune system making individuals more susceptible to infections and illnesses.
Overtraining can cause hormonal imbalances, such as elevated cortisol levels, which can lead to weight gain, muscle loss and decreased energy.
5.) There are several sports, other than football, where two team members may have different training needs. Some examples are:
Basketball: In basketball, players in different positions may have different training needs. For example, centers may focus more on strength training and rebounding and the guards may focus more on agility and quickness.
Volleyball: In volleyball, players in different positions may have different training needs. For example, hitters may focus more on the upper body strength and jumping ability and setters may focus more on agility and coordination.
Cricket: In cricket, batsmen and bowlers may have different training needs. Batsmen may focus more on endurance and agility and bowlers may focus more on strength and speed.
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What does it mean that genetic advantages are not absolute? What is an example?
Answer:
Genetic advantages refer to certain genetic traits or characteristics that provide an organism with an advantage or benefit over others in a given environment or situation. However, it is important to note that these advantages are not absolute, meaning that they are not always guaranteed to provide an advantage in every circumstance or environment.For example, the genetic advantage of having a large body size may be beneficial in cold climates where heat retention is important, but it may be a disadvantage in warmer climates where overheating is a risk. Similarly, certain genetic traits that confer resistance to a particular disease may be advantageous in areas where that disease is prevalent, but they may not be as advantageous in areas where the disease is rare or non-existent.
Overall, genetic advantages are relative and depend on the specific environment and circumstances in which they are expressed.
kathy's annuity is currently experiencing tax-deferred growth until she retires. which phase is this
The phase in which Kathy's annuity is currently experiencing tax-deferred growth until she retires is known as the accumulation phase.
What is meant by the term accumulation phase?During the accumulation phase, funds invested in the annuity grow tax-deferred, which means that any gains are not taxed until the funds are withdrawn. This allows for potentially greater investment growth over the time, as more of the investment earnings can be reinvested and compounded without being reduced by taxes. Once Kathy retires and begins taking withdrawals from the annuity, it will enter the distribution phase, during which the tax treatment of the funds may change.
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FILL IN THE BLANK.The ___________ hypothesis would predict that when a black sheep and a white sheep mate, all their offspring would be gray.
The blending inheritance hypothesis would predict that when a black sheep and a white sheep mate, all their offspring would be gray.
This hypothesis was popular in the early days of genetics but has since been proven to be incorrect. In reality, the offspring of a black sheep and a white sheep would inherit a combination of genetic traits from both parents, which could result in a variety of coat colors and patterns in their offspring.
This is due to the principles of Mendelian inheritance, which involve the inheritance of discrete units of genetic information (genes) from each parent.
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FILL IN THE BLANK _________ is achieved when there is an equal concentration of water and electrolytes inside and outside the body's cells.
LOOK AT THE OTHER TWO QUESTIONS I POSTED AND THEN SOMEBODY ANSWER THIS PLEASE I NEED HELP WITH IT AND I WOULD APPRECIATE IT IF SOMEONE COULD HELP ME WITH THIS
Answer:
Explanation:
Choose the right answer.
If the stem on the left has the weights of the juniors and the stem on the right has the weights of the freshmen, we can see that the
weigh more.jioj
fill in the blank. Scientists began to question the perfection of the "great chain of being" partially because of their studies in ____.
Researchers started to scrutinize the flawlessness of the "extraordinary chain of being" to some degree due to their reviews in comparative morphology.
Fossils, biogeographical evidence, and anatomical evidence were all used by Darwin to support his theory of natural selection in evolution.
Although scientists talked about adaptation before the 1800s, Charles Darwin and Alfred Russel Wallace didn't come up with the idea of natural selection until that time. Wallace was of the opinion that organismal adaptation to shifting environmental conditions were somehow connected to the evolution of organisms.
Because he created a consistent mechanism for how evolution worked, Charles Darwin is referred to as the "father of evolution." To explain the forces that shape the diversity of species and their eventual development into new species, Darwin developed the theories of natural selection and sexual selection.
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which of the following best predicts how movement proteins help plant viruses travel from one plant cell to another
The permeability of the plasmodesmata between plant cells is increased by movement proteins.
Plant plasmodesmata (PD), which are distinct membrane-lined cytoplasmic nanobridges, are used by plant viruses to transmit infection from cell to cell and over great distances. A variety of regulatory mechanisms are used to target and alter PD during such an invasion. An extracellular signal called cholera toxin lowers adenylyl cyclase activity. Enzymes frequently have a significant impact on signal transduction pathways. Enzymes, for instance, can support the transformation of an extracellular signal into an intracellular response. Adenylyl cyclase is a specific enzyme that facilitates the transformation of ATP into cyclic AMP (cAMP).
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Which of the following best predicts how movement proteins help plant viruses travel from one plant cell to another?
a. plasmodesmata.
b. cholera.
c. ATP.
d. Enzymes.