Answer:
A small change in our ecosystem could forever impact the whole web. For example, if bees were to go extinct, then flowers wouldn't be able to reproduce (since bees fertilize the flowers). Meaning the flowers would die out. And a lot of living things, including humans, depend on bees. Or let's say that a sharks were to go extinct. They play a major role in our ecosystem, because they eat fish and other sea creatures. The prey would then grow in population. Which would lead to a disaster. So in short terms, every creature in the ecosystem is vital to maintain the balance. I hope this helps!! :)
Explain how cellular respiration and photosynthesis work together in plants.
✧・゚: *✧・゚:* *:・゚✧*:・゚✧Answer:✧・゚: *✧・゚:* *:・゚✧*:・゚✧
Converts carbon dioxide and water into oxygen and glucose
✧・゚: *✧・゚:* *:・゚✧*:・゚✧Explanation:✧・゚: *✧・゚:* *:・゚✧*:・゚✧
Photosynthesis converts carbon dioxide and water into oxygen and glucose. Glucose is used as food by the plant and oxygen is a by-product. Cellular respiration converts oxygen and glucose into water and carbon dioxide. Water and carbon dioxide are by- products and ATP is energy that is transformed from the process.
what are some global recommendations to help the environment
need help asap!!
Answer:
Recycling!
Explanation:
A basic answer, but a globally, recycling is one of the most well known ways to help the environment. It conserves energy, reduces air and water pollution, reduces greenhouse gases, and conserves natural resources. Stanford recycled, composted, and otherwise source reduced 62% of its waste and reduced landfill by 35%. Recycling paper alone cuts down 75% of air pollution!
What are the four areas of plant science?
Plant anatomy, plant form and evolution, developmental biology, and plant molecular and molecular life are the four main categories that emerge from the fundamental disciplines of plant biology.
Describe plant biology.Eukaryotic cells are seen in multicellular plants. A rather large cell called a eukaryotic cell has a genuine nucleus as well as additional organelles that serve distinct purposes. Eukaryotic cells are found in animals, plants, protists, and fungus.
What kind of plant is an example of?Ferns, grass, flowers, trees, and any other eukaryotes that aren't animals are examples of plant life. Chloroplasts are found in multicellular creatures called plants.
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The primary function of the muscular system is:
delivering nutrients
O movement
protection
O immune r ponse
Help ASAP
The primary function of the muscular system is movement.
What is muscles?
The muscular system is a group of organs that includes skeletal, smooth, and cardiac muscle. It allows the body to move, maintains posture, and circulates blood throughout the body. Although some muscles (such as the heart muscle) are entirely autonomous, the nervous system controls the muscular systems in vertebrates. It forms the musculoskeletal system in humans, along with the skeletal system, and is responsible for body movement.
Muscles control movement and are linked to bones, internal organs, and blood arteries. Muscle contraction causes nearly all movement in the body.
So, B is the right answer.
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The layer of the atmosphere where many airplanes fly to avoid thunderstorms and other turbulence is called A. troposhere B. stratosphere C. mesosphere D. thermosphere
Answer:
B. Stratosphere
Which factor does not affect the glomerular filtration rate?
(a) Blood pressure
(b) osmotic (H2O) pressure of the glomerular filtrate
(c) Plasma osmotic (H2O) pressure
(d) Concentration of leukocytes in the blood
(e) All these factors affect GFR.
The factor that does not affect the glomerular filtration rate is (d) Concentration of leukocytes in the blood. The other factors mentioned in the options (a), (b), and (c) do affect the GFR.
A blood test called a glomerular filtration rate (GFR) is used to measure how well your kidneys are working. Gglomeruli are the tiny filters in your kidneys. The blood is helped by these filters to get rid of waste and excess fluid. The amount of blood that passes through these filters each minute is estimated using a GFR test.
A GFR can be estimated straightforwardly, yet it is a confounded test, requiring specific suppliers. Therefore, a test known as an estimated GFR or eGFR is typically used to estimate GFR. Your service provider will use a tool called a GFR calculator to get an estimate. A type of mathematical formula called a GFR calculator is used to estimate the rate of filtration. It accomplishes this by contrasting other information about you with the results of a blood test that measures creatinine, a waste product filtered by the kidneys.
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Which of these is not true about water?
a. it's polar.
b. it can dissolve anything.
c. it is known as the universal solvent.
d. its molecules are attracted to each other.
Answer: B
Explanation: Water is capable of dissolving a variety of different substances, but not every substance. It can only dissolve somethings, not anything.
Drag each tile to the correct box. COOL PICS
Arrange the organisms from fastest to slowest based on the time they’d take to complete the 20th Carnegie stage.
mouse
baboon
chicken
human
sheep
Answer:
Fastest- chicken
mouse
sheep
baboon
Slowest-human
Explanation:
Answer:
Fastest- chicken
mouse
sheep
baboon
Slowest-human
Explanation:
What does the term insoluble fiber refer to on food packages?
A) Cellulose
B) Polypeptides
C) Starch
D) Amylopectin
The term insoluble fiber refers to Cellulose on food packages
The substances that make up plant cells' rigid walls make up insoluble fibre. Lignin, cellulose, and hemicellulose are some of these substances.
Cellulose, pectin, hemicellulose, and lignin are just a few of the biopolymers and structural proteins that make up the plant cell wall. As one of the main load-bearing elements of this intricate, heterogeneous structure, cellulose plays a crucial role in controlling the mechanics and growth of cell walls. By forming hydrogen bonds and van der Waals forces, the cellulose glucan chains join together to form cellulose microfibrils, which are long, thread-like crystal structures.
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What is the role of transport proteins in the cell membrane
Explanation:
Membrane transport proteins fulfill an essential function in every living cell by catalyzing the translocation of solutes, including ions, neurotransmitters, and numerous drugs across biological membranes
nutrient retention is an important concept that is often used to help understand and mitigate human-caused changes to nutrient cycling in ecosystems. how would a scientist describe nutrient retention? use the dropdowns below to complete your answer. nutrient retention is a measure of how effectively a system limits . when nutrients are retained by a system, they
Nutrient retention is a measure of how effectively a system limits nutrient loss via waterways.
When nutrients are retained by a system, they are always stored in the system.
This is important for maintaining a healthy and balanced ecosystem, as nutrients are essential for plant growth and productivity, which in turn support higher trophic levels.
Nutrient retention can be influenced by various factors, such as soil composition, water availability, and the presence of microorganisms. In natural ecosystems, nutrient retention is typically high, as the cycling of nutrients is tightly regulated and balanced.
However, human activities such as agriculture and urbanization can disrupt this balance and lead to nutrient loss through runoff and leaching.
Understanding nutrient retention is crucial for mitigating the negative impacts of human-caused changes to nutrient cycling in ecosystems.
By implementing practices that promote nutrient retention, such as reducing fertilizer use and managing runoff, we can help maintain healthy and productive ecosystems.
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Question:
Nutrient retention is an important concept that is often used to help understand and mitigate human-caused changes to nutrient cycling in ecosystems. How would a scientist describe nutrient retention?
Nutrient retention is a measure of how effectively a system limits (fill in the blank)
-nutrient loss via waterways
-nutrient inputs via the atmosphere
When nutrients are retained by a system, they (fill in the blank)
-are always stored in the system
-may be lost to the atmosphere
How does the biosphere affect humans?
Answer:
Provides Raw Material and Food.
Most humans get their food from the biosphere indirectly, from farmed vegetables, livestock, fruit and cereals. Some people get food directly from the biosphere e.g. picking fruit, fishing and hunting and trapping animals. Fish can also be farmed in tanks or pens.
What would make the results of this experiment reliable?
HOPEFULLY THIS HELPS
THE ANSWER IS
When a scientist repeats an experiment with a different group of people or a different batch of the same chemicals and gets very similar results then those results are said to be reliable. Reliability is measured by a percentage – if you get exactly the same results every time then they are 100% reliable.
Which three of these classes of animals practice internal fertilization?
Mammals
Birds
Amphibians
Repriles
Arthropods
Answer:
Mammals
Explanation:
This is because the sperm meets the egg and fertilizes it in a female mammals which occurs in the ovary
A scientist argues that the Sahara Desert used to be part of the ocean. What piece of evidence would best help support her argument?
options:
A:Finding a fossil of a shark in the desert
B:Finding evidence of past earthquakes.
C:Finding a fossil of an arctic plant.
D:No evidence would support it. If it’s a desert now, it’s always been a desert.
IF RIGHT I GIVE BRAINLIST
Answer: A finding a fossil of a shark in the desert .
Explanation: with fossils we can dna test them and trace them back millions of years . If you find a fossil of a shark in the desert a dna test may be conducted and this can prove the point .
Which of the following is NOT a plant pathogen or disease causing organism that can damage plants?
Group of answer choices
Virus
Bacteria
Fungus
Arthropods
All of the above
All of the options listed are plant pathogens or disease-causing organisms that can damage plants.
Viruses, bacteria, fungi, and arthropods are all known to cause plant diseases and damage to plants.
Viruses are small, infectious agents that replicate inside the cells of their host organisms. They can cause a wide range of diseases in plants, including mosaic, leaf spot, and yellowing of the leaves.
Bacteria are single-celled microorganisms that can survive and grow in a wide range of environments, including plant tissues. They can cause diseases such as bacterial blight, bacterial wilt, and bacterial leaf scorch in plants.
Fungi are multicellular organisms that can cause a wide range of diseases in plants, including powdery mildew, rust, and black spot. Fungi can also attack the roots of plants, leading to problems such as stunted growth and reduced yields.
Arthropods are a diverse group of invertebrates that include insects, spiders, and other creatures. They can damage plants by feeding on leaves, stems, and fruits, or by transmitting diseases.
Overall, all of the options listed are known to cause plant diseases and damage to plants.
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describe the relationship between an organisms ecological niche and natural selection.
(2 paragraphs please)
Answer:
Explanationdnasdknasldkas
Plz answer, will give brainliest
Answer:
a. (black fur): phenotype
b. (AA, Aa, aa): genotypes
c. (Aa): heterozygous
d. (aa): hom0zygous recessive
e. (AA): hom0zygous dominant
Explanation:
I took genetics and biology I hope this helps !!
Eggs that have allowed eggs to be laid Extra embryotic fluid; in trees An extra large embryo; in deep ocean depths A hard casing; on land A soft shell; under intense water pressure Question 9 Over a of the air was oxygen in the Carboniferous. 1/3 1/4 1/5 1/2
Over a 1/3 of the air was oxygen in the Carboniferous.
During the Carboniferous period, which lasted from approximately 359 to 299 million years ago, the Earth experienced high levels of atmospheric oxygen. The lush vegetation that thrived during this period played a crucial role in increasing oxygen levels through photosynthesis, as plants release oxygen as a byproduct. The accumulation of plant material, particularly large forests of ferns, horsetails, and early trees, led to the formation of extensive coal deposits that we see today.
The high oxygen content in the atmosphere during the Carboniferous had significant impacts on both terrestrial and aquatic ecosystems. It provided an environment conducive to the evolution of a diverse range of organisms, including giant insects and early amphibians. The availability of oxygen also supported the development of larger body sizes, such as the presence of extra-large embryos in some marine organisms adapted to deep ocean depths.
Furthermore, the higher oxygen levels likely influenced the evolution of certain reproductive adaptations in various species. For example, the development of hard casing in eggs allowed them to be laid on land, providing protection and preventing desiccation. Soft-shelled eggs under intense water pressure may have been advantageous for organisms adapted to the depths of the ocean.
Overall, the elevated oxygen levels in the Carboniferous had profound effects on the ecology and evolutionary history of life, shaping the characteristics and adaptations of organisms during this time.
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motor neurons with cell bodies in the cerebral cortex or the brainstem are part of which motor system?
The motor neurons with cell bodies in the cerebral cortex or the brainstem are part of the pyramidal motor system.
The pyramidal motor system, also known as the corticospinal tract, is responsible for voluntary movements. The pyramidal motor system is composed of motor neurons that originate in the cerebral cortex or the brainstem and travel down the spinal cord to reach their target muscles.The corticospinal tract is divided into two parts: the lateral corticospinal tract and the ventral corticospinal tract. The lateral corticospinal tract carries motor signals from the cerebral cortex to the spinal cord on the opposite side of the body, while the ventral corticospinal tract carries motor signals from the cerebral cortex to the spinal cord on the same side of the body.
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Tom40 is partially translocated through the outer membrane and is then transferred in the plane of the membrane to fold into its native conformation. true or false
Tom40 is partially translocated through the outer membrane and is then transferred in the plane of the membrane to fold into its native conformation. The given statement is true.
Tom40 is a protein that is found in the outer mitochondrial membrane. The TOM complex is responsible for the translocation of preprotein into the mitochondria. The translocation of Tom40 is similar to that of other mitochondrial proteins. The TOM complex recognizes the sequence of Tom40, which is cleaved by a matrix-processing peptidase to generate a mature protein. The partially translocated Tom40 then moves laterally in the membrane to fold into its native conformation.
The translocation of Tom40, like many mitochondrial proteins, is a complex process that involves several factors and translocation machinery. This process is important for the correct localization and function of mitochondrial proteins, including Tom40. Therefore, the given statement that Tom40 is partially translocated through the outer membrane and is then transferred in the plane of the membrane to fold into its native conformation is true.
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Fill in the blank: ______ is the process that splits rock when water seeps into cracks, then freezes and expands.
YES I WILL HAVE A LOT OF FILL IN THE BLANK GET READY
Answer:
Freeze-thaw
Explanation:
Answer:
frost wedging
Explanation:
If a plant cell is placed in water, how does its central vacuole typically respond?
a) It absorbs nutrients from the water.
b) It expels waste into the water.
c) It absorbs water.
d) It expels water.
ou're an undercover biological weapons agent who has been given an unknown liquid you suspect that it was derived from a non-biological source such as hydrophilic silicone. One of the tests you need to run is to see if it contains protein (remember, foreign proteins can cause severe immune responses which can be a powerful biological weapon). You set up 3 test tubes each with 10mL of the following: distilled water, gelatin solution and the unknown. The distilled water is clear, the gelatin solution is clear with a beige tint, and the unknown is cloudy white. You use Biuret's Reagent - a dark blue dye which will turn a liquid sample purple in the presence of protein. When Biuret's Reagen is added to the unknown, predict what color you expect it to become if the unknown was derived from hydrophilic silicone [al (no change l blue | purple) blue
As a biological weapons agent, you are testing an unknown liquid to see if it contains protein, which can be a powerful biological weapon. You use Biuret's Reagent, a dark blue dye that turns a liquid sample purple in the presence of protein.
If the unknown liquid was derived from a non-biological source such as hydrophilic silicone, it is unlikely to contain protein.
Therefore, when Biuret's Reagent is added to the unknown, it is expected to remain the same color, which is blue. This indicates that the unknown liquid does not contain protein and was likely derived from a non-biological source such as hydrophilic silicone.
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the gel derived from the meaty pulp of the leaf, taken orally, may produce hypoglycemic effects through β-cell stimulation.
The gel derived from the meaty pulp of the leaf that, when taken orally, produces hypoglycemic effects through β-cell stimulation is Aloe vera gel.
Aloe vera is a succulent plant that has been used for centuries for its medicinal properties.
The gel found in the leaf of the Aloe vera plant contains various bioactive compounds, including polysaccharides, that have been reported to have hypoglycemic effects.
When Aloe vera gel is ingested orally, it has been suggested to stimulate the β-cells of the pancreas.
β-cells are responsible for producing insulin, a hormone that helps regulate blood glucose levels.
Stimulation of β-cells can enhance insulin secretion, leading to improved glucose uptake by cells and a decrease in blood glucose levels, hence exhibiting hypoglycemic effects.
Thus, Aloe vera gel is created from the leaf's meaty pulp, and when consumed orally, it causes hypoglycemia by stimulating β-cells.
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Complete question:
Which gel is derived from the meaty pulp of the leaf, when taken orally, produces hypoglycemic effects through β-cell stimulation?
Which nucleotide pairing(s) would be recognized by the MMR system during DNA replication?
I. dTMP and dCMP
II. dGMP and dAMP
III. dAMP and dTMP
A) I only
B) III only
C) I and II only
D) I, II, and III
The MMR (mismatch repair) system is responsible for correcting errors that may occur during DNA replication. It identifies mismatches between the two strands of DNA and corrects them by excising the incorrect base(s) and replacing them with the correct one(s).
The correct nucleotide pairing recognized by the MMR system during DNA replication are:
dTMP and dAMPdGMP and dCMPTherefore, option C (I and II only) is the correct answer. Option III (dAMP and dTMP) is incorrect because the correct pairing is dTMP and dAMP, as mentioned above. Option A (I only) and option D (I, II, and III) are also incorrect.
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In science models can be used to:
Which part of a green plant loses the most chloroplasts at the end of
ummer?
OA. Leaf
OB. Root
O C. Stem
OD. Seed
Answer:
A. Leaf
Explanation:
Hope it helps:)
What is the central step in the process of gene therapy.
2) what is the difference in relative protein coding capacity of bacterial and eukaryotic genomes?
3) Why are gene families important.
The central step in the process of gene therapy is the delivery of the therapeutic gene into the target cells, which can be achieved through various methods such as viral vectors or non-viral methods.
In gene therapy, the central step is the delivery of the therapeutic gene into the target cells. This can be achieved through the use of viral vectors, which are modified viruses that can deliver the desired gene into the cells, or non-viral methods such as direct injection or electroporation. This step is crucial as it ensures that the therapeutic gene reaches the target cells and can be integrated into their genomes or produce the desired therapeutic effect.
Bacterial genomes generally have a higher relative protein coding capacity compared to eukaryotic genomes. Bacterial genomes are often smaller and more compact, consisting primarily of protein-coding genes and containing fewer non-coding regions. On the other hand, eukaryotic genomes are larger and more complex, with a significant portion of their DNA consisting of non-coding regions such as introns and regulatory sequences. These non-coding regions contribute to the regulation and control of gene expression but do not directly code for proteins. Therefore, bacterial genomes have a higher proportion of protein-coding regions, resulting in a higher relative protein coding capacity.
Gene families are groups of genes that share a common ancestral origin and have similar sequences and functions. They are important because they provide functional diversity and evolutionary adaptability. Gene families can undergo events, resulting in multiple copies of genes with similar functions. They play a crucial role in processes such as development, immune response, and disease resistance by providing a repertoire of genes with different functions and allowing for fine-tuning and specialization.
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ku70 acetylation and modulation of c-myc/atf4/chop signaling axis by sirt1 inhibition lead to sensitization of hepg2 cells to trail through induction of dr5 and down-regulation of c-flip
Inhibition of SIRT1 leads to acetylation and modulation of the c-Myc/ATF4/CHOP signaling axis, sensitizing HepG2 cells to TRAIL-induced apoptosis. This effect is mediated by the induction of death receptor 5 (DR5) and down-regulation of cellular FLICE-inhibitory protein (c-FLIP).
SIRT1 is a class III histone deacetylase enzyme that regulates various cellular processes, including apoptosis. In this context, SIRT1 inhibition leads to increased acetylation and modulation of the c-Myc/ATF4/CHOP signaling axis. c-Myc is a transcription factor that plays a role in cell proliferation and survival, while ATF4 and CHOP are involved in cellular stress response and apoptosis.
The modulation of the c-Myc/ATF4/CHOP signaling axis by SIRT1 inhibition sensitizes HepG2 cells to TRAIL-induced apoptosis. TRAIL (Tumor Necrosis Factor-Related Apoptosis-Inducing Ligand) is a protein that can trigger programmed cell death in cancer cells. Sensitization to TRAIL-induced apoptosis is a desirable outcome in cancer therapy, as it can selectively target cancer cells while sparing normal cells.
One of the mechanisms by which SIRT1 inhibition sensitizes HepG2 cells to TRAIL-induced apoptosis is through the induction of death receptor 5 (DR5). DR5 is a cell surface receptor that binds to TRAIL and activates apoptotic signaling pathways. Upregulation of DR5 enhances the ability of TRAIL to induce apoptosis in cancer cells.
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