comparison of the gut microbiota composition between obese and non-obese individuals in a japanese population, as analyzed by terminal restriction fragment length polymorphism and next-generation sequencing
Answer:
Probiotics are the good yielding microorganisms in the gut which help in proper assimilation of food. They help in the prevention of obesity.
Explanation:
Obesity has become one of the most serious social problems in developed countries in Japan. The gut microbiota was long thought to contribute to obesity, the exact association remains largely unknown.
Gut microbes are key to many aspects of human health including immune, metabolic and neurobehavioral traits. Different levels of evidence support the role of gut microbiota in human health, from animal models and human studies.
Obese and non-obese subjects had different gut microbiota compositions and that certain bacterial species were significantly associated with each group (obese: Blautia hydrogenotorophica, Coprococcus catus; non-obese: Bacteroides faecichinchillae, Bacteroides thetaiotaomicron)
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assessing sequence plasticity of a virus-like nanoparticle by evolution toward a versatile scaffold for vaccines and drug delivery
Assessing sequence plasticity of a virus-like nanoparticle by evolution toward a versatile scaffold shows structural and functional relationships of viral capsid proteins and describes the mechanistic routes toward viral therapeutics. The statement is correct.
What is nanoparticle ?A nanoparticle is a small particle can not visible through eyes and it ranges between 1 to 100 nanometers in size, have shown different physical and chemical properties.
This nanoparticle can change their size at the atomic scale as it increase in surface area to volume ratio which results in the atomic surface to regulate the material performance.
Hence the large surface area help nanoparticles to possess optical, physical and chemical properties and they are small in size which confine their electrons and produce quantum effects.
Nanomaterials can be available naturally and can be produced as the by-products in the process of combustion.
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in 1861, pasteur conducted his now-famous experiments using flasks with long necks bent into an s-shape. imagine that you are a scientist working in pasteur’s lab at this time. you decide to tip the flasks so that broth enters the long s-shaped neck. you then return the flask to its upright position. predict the most likely outcome of tipping one of pasteur’s s-necked flasks
In 1861, Pasteur conducted The broth would become contaminated with microbes because they were trapped in the neck.
Louis Pasteur's pasteurization test illustrates the truth that the spoilage of liquid was caused by debris inside the air instead of the air itself. those experiments were critical portions of evidence supporting the concept of germ concept of disease. Microorganisms can be present in nonliving and be counted, together with air, drinks, and solids.
Pasteur's paintings helped refute the theory of spontaneous generation his experiments confirmed that air by myself was no longer the motive of bacterial growth inside the flask, and his research supported the speculation that live microorganisms suspended in the air should settle onto the broth in open-necked flasks thru gravity.
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sc. ulnar fracture and dislocation of the proximal radial epiphysis (monteggia lesion) in the dog and cat: a review of 28 cases.
Ulnar fracture with dislocation of the proximal epiphysis of the radius (Monteggia lesion) was once diagnosed in 16 dogs and 12 cats. The lesions were categorized into four sorts on the groundwork of direction of the dislocation of the radial head and angulation of the ulnar fracture. Cranial dislocation of the radial head, with cranial angulation of the ulnar fracture (type 1 lesion) used to be the most common. Radial head chip fractures have been often associated with the lesions. In 25 cases, open reduction and interior fixation had been required. The most frequent postoperative issues were limited range of action in the elbow, osteoarthritis, and recurrent dislocation of the radial head. Follow-up reviews in 16 cases printed appropriate to great results in 10 animals and honest to bad consequences in 6 animals.
Angulation of the is a beneficial technique to create a safe pathway for drainage of deep-seated abscesses when all the planned get admission to routes in the axial planes have bowel, bone, and blood vessels in their paths.
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if a homozygous tall plant (aa) is crossed with a homozygous small plant (aa), knowing that tall plants are dominant over small plants. what are the resulting genotypes and phenotypes for the f1 and the f2?
25% of the heterozygous pass are short, and the offspring of a homozygous dominant and homozygous recessive pea plant will continually show the dominant trait (phenotype), because they are heterozygous.
In this explanation, I'm assuming that the allele "T" for tall vegetation is dominant to the allele "t" for short plants, like in Gregor Mendel's pea plant experiment.
A homozygous tall pea plant will have the genotype "TT" and a homozygous quick plant will have the genotype "tt" because homozygous capacity that both alleles are identical. Since "T" is dominant over "t", any plant with at least one "T" allele will be tall (the dominant trait), regardless of what the other allele is.
Each of the offspring has one "T" allele, so they are all tall plants. This is because the "T" allele is dominant over the "t" allele, so a plant with one "t" allele and one "T" allele will solely display the features of the "T" allele, which in this case is a tall pea plant.
The "TT" and "Tt" crosses each have at least one "T" allele, so they are tall plants. However, the closing pass "tt" would not have any "T" alleles and is short, because it is homozygous recessive . Since 1 out of four pea vegetation are short, or 1/4, the chance of a quick pea plant from a heterozygous pass is 25%.
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fertilization is the defining feature of
the stages of mitosis,
Sexual Reproduction,
metaphase i and ii,
telophase i and ii
Answer:sexual reproduction
Explanation:
Answer:
b. sexual reproduction
and the next one is
a and d
Explanation:
You are searching for a mutant cell that is defective in protein glycosylation. You would most likely find such a mutant by looking for cells with defective ___________.
You are searching for a mutant cell that is defective in protein glycosylation. You would most likely find such a mutant by looking for cells with defective Golgi apparatus.
The Golgi apparatus can be described as a stacked membrane that plays an important role in the modification of proteins inside a eukaryotic cell. A protein after translation needs to be packaged and processed in order for it to move out of a cell. The Golgi apparatus is the site where protein modification and packaging occur.
One of the most important modifications after the translation of proteins that occurs in the Golgi complex is the glycosylation of proteins. If a cell has a mutation due to which protein glycosylation is being affected, then this means that there is a problem with the functioning of the Golgi apparatus due to this mutation. In such a circumstance, a mutant cell with a defective Golgi apparatus needs to be found.
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Explain what happens after a slip tectonic plate interaction?
Consider: How does this movement affect the lithosphere and does it add/remove
anything from the Earth?
the neandertals’ disappearance after 30,000 ybp likely involved group of answer choices rapid extinction due to climate change. isolation into small groups that eventually disappeared one by one. migration into parts of asia where they were not well adapted, and thus, died out. a measurable degree of genetic assimilation into modern human (african) populations.
Their assimilating into much larger. more genetically diverse population so of modern humans migrating into Europe from Africa.
Migration is the journeying of lengthy distances in search of a new habitat. The set off for the migration might also be nearby climate, neighborhood availability of food, or the season of the year. To be counted as a real migration, and no longer simply a nearby dispersal, the movement have to be an annual or seasonal event.
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What happens to air temperature as altitude increases?
O A. Air temperature increases.
O
B. Air temperature decreases.
C. Air temperature does not change.
D. Air temperature depends on the amount of organisms in the area.
Sry I didn’t know what subject to do for this question cause there was no earth science
The correct option is B.
The air temperature decreases when altitude increases.
When there is an increase in elevation, there will be less amount of air above us. Thus the amount of pressure decreases. Since the pressure decreases, air molecules will be spreading out further due to the expansion of air, and gradually the temperature decreases.
There will be variations of temperature with altitude which will as in the case of the troposphere, the temperature will decrease due to increasing altitude. In the stratosphere, the temperature will be increasing generally as the altitude increases due to the greater absorption of ultraviolet radiation by the ozone.
The basic idea of decreasing air temperature with respect to increased altitude is that as so far away you get from the space of earth, the atmosphere gets thinner. The total heat content included in a system is directly related to the amount of matter present, so due to this, it is cooler at increased elevations.
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Name 1 other discipline used in ecological studies and how it relates to ecology.
Ecophysiology and Behavioral Ecology study how individuals adapt to their surroundings.
The main focus of the research of the research group Ecophysiology and Behavioral Ecology is the examination of the consequences and causes of fluctuation in behavioral characteristics among people. The majority of studies are carried out within an ethological framework, with an emphasis on all four important elements of animal actions: evolution, causation, function, and development.
We research reproduction and genetic drift in various animal populations, but mainly in birds, using a multidisciplinary and interdisciplinary approach. While behavioral ecology is our primary research focus, we are also interested in physiology and population dynamics.
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even after someone has stopped drinking, bac can continue to go up until all of the ingested alcohol is absorbed into the bloodstream.
Even after someone has stopped drinking, bac can continue to go up until all of the ingested alcohol is absorbed into the bloodstream. TRUE
even after someone stops consuming, alcohol inside the stomach and intestine continues to go into the bloodstream and circulate in the course of the body.
BAC described as the awareness of alcohol in blood. it is measured in grams of alcohol according to deciliter of blood. the frame would not need a minimum consumption of alcohol daily. The number of liquids that we consumes in an hour will affect BAC, the more we drink, the better the awareness of alcohol in blood. BAC does now not affect with the concentration of alcohol in a drink.
Blood Alcohol attention (BAC) is defined because the ratio of alcohol within the gadget to Blood within the system.
As soon as alcohol and different pollution are absorbed into the body, the Liver begins removing them as alcohol cannot be stored in tissue.
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deforestation takes place when . a erosion takes placeerosion takes place b forests are not replantedforests are not replanted c trees are cut down
deforestation takes place when . a erosion takes place b forests are not replanted c trees are cut down
C. trees are cut down
deforestation is the purposeful cutting down of the trees on a large scale area to utilize the land for agriculture, grazing, setting industries and building infrastructure.
In earlier times it was done to do slash and burn agriculture.
In mordern times, reasons for the deforestation include clearing forest for agricultural expansion, wood extraction and infrastructure development and urbanization.
Deforestation has very bad effects on our environment like climate change, soil erosion, land desertification, increased carbon emission, extreme weather condition, etc.
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PLEASE HELP!! (WORTH 10 PTS)
Image of color spectrum. Color spectrum band is across the top with a body of water from surface to a depth of 300 m underneath it. The color spectrum starts with the sun at the top with white light (all colors). Colors are separated for visualization with arrows pointing out to the colors. Ultraviolet light starts at the left end with a range of 300-400 nm wavelength. At 300 nm the light is labeled UV and penetrates the water to about 40 m. Violet ranges from 400 to 450 nm. At 400 nm the light is labeled V and penetrates the water to about 100 m. Blue is labeled at 450 nm and penetrates the water to about 270 m. Green light is labeled at 490 nm and penetrates the water to about 120 m. Yellow is labeled at 570 nm and penetrates the water to about 80 m. Orange light is labeled at 600 nm and penetrates the water to about 30 m. Red light is labeled at 720 nm and penetrates the water to about 10 m. Infrared light is labeled at 800 nm and penetrates about 5 m.
At what depth would organisms that rely on infrared light (IR) most likely be found in the ocean? Justify your answer by using the provided data.
The depth at which organisms that rely on infrared light (IR) most likely be found in the ocean is 5 meters.
What is the spectrum of light?We know the spectrum of light to imply the arrangement of light according to wavelength. The spectrum of light shows the wavelength sf the different kinds of light in the proper order.
As was shown in the question, infrared light is one of the kinds of light that can penetrate the water at a certain depth. We can see that the kind of light depends on the depth of the water.
From the question, the depth at which organisms that rely on infrared light (IR) most likely be found in the ocean is 5 meters.
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rang, c. u., peng, a. y. and chao, l. 2012. bacterial aging requires an extrinsic damage agent. microbiology 158:1553–1559
The correct answer is Because bacterial ageing is believed to result from non-genetic (e.g. oxidative) damage.
Streptomycin, which produces mistranslated proteins that are more susceptible to oxidation, was found to be capable of inducing both damage and ageing in bacterial populations. There was a dose effect relating the level of damage to the concentration of streptomycin. All of the studies that did not find evidence of bacterial ageing did not use a damaging agent. However, fluorescent proteins were used as a visual marker in all studies that were successful in finding evidence. In those studies, ageing was caused by an extrinsic factor, such as the proteins themselves or the excitation light. As a result, all previous studies can be reconciled, and bacterial ageing is a real phenomenon. However, studying and observing bacterial ageing necessitates the addition of an extrinsic damage agent.
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This particle is found in the electron cloud which is a negatively charged region of an atom.
quiero saber a qué pertenece a protons a electrons o a neutrons?
The area of negative charge encircling an atomic nucleus and connected to an atomic orbital is known as an electron cloud. It has a mathematical definition that describes a region with a high probability of having electrons in it.
Protons and neutrons make up the atom's core nucleus. An electron has the best chances of being found in the "fog of probability" that surrounds it. The probability of finding an electron increases with area density. The electron cloud is the name given to this thick fog of probability. Simple atoms like hydrogen serve as excellent visual examples of electron clouds. One proton makes up the nucleus of a hydrogen atom, and one electron orbits it. The electron does not, however, actually follow a circular orbit around it.
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the change in organisms over geologic history is known as the . group of answer choices evolution of life biogeochemical cycle evolutionary cycle biospheric change
The change in organisms over geologic history is known as evolution of life .
What is the life's evolution?According to the idea of evolution in biology, the many species of plants, animals, and other living things on Earth descended from earlier species, and their recognizable differences are the result of changes made by subsequent generations. One of the main cornerstones of contemporary biological science is the hypothesis of evolution. The process of biological evolution involves descent with modification. The lineages of organisms change with time, diversity results from the divergence of the lineages descended from the same ancestors.
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what are some ways that reabsorption by diffusion and active transport could be limited in the kidneys?
Some ways that affect the reabsorption by diffusion and active transport in the kidney are amount of water in the blood, amount of ions like sodium, potassium and chloride.
The kidney needs to receive and appropriately filter blood in order to operate properly. Passive diffusion, active transport, and cotransport are all types of absorption. Most water is reabsorbed by the cotransport of salt and glucose.
The reabsorptive mechanisms in the proximal tubule depend on active transport. By means of sodium-coupled secondary active transport, glucose and amino acids are reabsorbed across the apical membrane of the proximal tubule.
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A type of membrane protein that is integrated into the hydrophobic region of the membrane.
Answer:
Integral membrane proteins
Explanation:
Integral membrane proteins are, as their name suggests, integrated into the membrane: they have at least one hydrophobic region that anchors them to the hydrophobic core of the phospholipid bilayer.
Answer: Integral membrane proteins
Explanation:
Differentiate Monocots and Dicots
Answer: Monocot and Dicot
Explanation:
Monocots are seeds which have only one cotyledons. Plants having monocot seeds have parallel venation leaves (like lines running down the leaf). These seeds cannot be broken open. Dicot are seeds that have 2 cotyledons. Plants having dicot seeds have reticulate venation leaves (like veins). These seeds may be opened in two halves.
1. What two factors must be present in order for something to be called "matter?"
Answer:
has a mass and occupies space
select two functions of the cell membrane. select one: a. housing the dna and accessing the dna. b. to produce and break down secretions. c. to provide cellular energy and to produce mitochondria. d. to move the cell and help it to divide. e. enabling the cell to communicate and attach to other cells.
Two functions of the cell membrane are: e. enabling the cell to communicate and attach to other cells.
The cell membrane can be described as a semi-permeable membrane that allows the selective entry of materials into and out of a cell. Other than this, there are various other functions that a cell membrane plays an active role in.
A cell membrane allows a cell to attach to an extracellular matrix or to other cells so that two cells can communicate with each other. Also, the ability of the cell membrane to join with other cells causes tissue formation. Through membrane signaling, which is a feature of the cell membrane, two cells can connect biophysically. Hence, the correct option is e. enabling the cell to communicate and attach to other cells.
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the goal of thermoregulation is to maintain the core temperature of the body steady at around .
The goal of thermoregulation is to maintain the core temperature of the body steady at around 97.7-99.5 degrees F.
Thermoregulation- Through a process known as thermoregulation, mammals carefully and independently control their body temperature. Temperature regulation is a technique for preserving the normal internal temperature (homeostasis) required for living.
Homeostasis- Any self-regulating process, such as homeostasis, helps an organism retain stability while responding to environmental factors that are favorable for its survival. If homeostasis is effective, life goes on; if it is not, the organism dies or suffers a catastrophe. For Example, Body temperature control in humans is one of the most familiar examples of homeostasis.
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what happens when a seedling is left in water with darkness
Answer:
It would eventually die
Explanation:
It would eventually die because it makes food through photosynthesis and without light no photosynthesis can be made. Therefore it would start to lose its green pigment because no chlorophyll is being made.
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ASAP What is a meter? Give two examples of objects that are a meter in length.
Answer:
A meter is a standard metric unit equal to about 3 feet 3 inches. This means that a meter is part of the metric system of measurement. Guitars, baseball bats, and yard sticks are examples of objects that are about one meter long.
Explanation:
Answer:
a meter is 3.3 feet.
examples: a meterstick and a baseball bat
Explanation:
b. If at your solar noon, the chronometer reads 10 a.m. What is your longitude?
The longitude if at your solar noon, the chronometer reads 10am is 77.4.
How to calculate longitude?
In a single day, the Earth spins 360o of longitude. As a result, it rotates one degree of longitude every four minutes, or every 1/360th of a day. You only need to determine the time difference between noon at your location and noon at the Prime Meridian in order to get your longitude.
The first half of the eighteenth century saw the development of John Harrison's longitude by chronometer technique, which uses a marine chronometer to determine longitude in navigation. The longitude at which a position line traced from a sextant sight of any celestial objects crosses the observer's posited latitude is determined using an astronomical method.
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To which groups of animals are vertebrates most closely related phylogenetically
Vertebrates are most closely related phylogenetically to a group of animals called tunicates and lancelets.
According to the chordate family tree, the physical characteristics of vertebrates are very much similar to tunicates and lancelets.
Lancelets are elongated and small marine invertebrates while tunicates are marine invertebrates with a hard and rubbery outer coat.
The family tree of chordates shows that vertebrates have come similarities with tunicates. However, the notochord disappears in adult tunicates while in vertebrates, the notochord is replaced by a backbone in the adult stage.
According to molecular analysis of animals, vertebrates are more closely related to lancelets than tunicates.
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Factors in the environment that an organisms reacts to, such as light, temperature, sound are known as.
Factors in the environment that an organism reacts to, such as light, temperature, and sound are known as stimuli.
In the field of ecology, abiotic factors can be described as the non-living components of an ecosystem. When an organism reacts to these abiotic factors such as light, temperature, and sound then these are perceived as stimuli.
A stimulus is a change in the environment that is detected by the sensory receptors. A signal is carried through these receptors to the central nervous system (CNS). The central nervous system interprets this message and sends a response signal through the effector motor neurons to respond to the stimulus.
The intensity of a stimulus is measured by the number of action potentials that are received by the central nervous system (CNS).
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when studying inherited traits, it was noticed that the environment can change the expression of a gene. so, for instance, "tall" pea plants planted in poor soil will not grow to their full potential. this effect is part of the study of:
When studying inherited traits, it was noticed that the environment can change the expression of a gene. So, for instance, "tall" pea plants planted in poor soil will not grow to their full potential. This effect is part of the study of: epigenetics.
Genes are the basic unit of heredity. It contains the information for a particular trait that can be passed on from one generation to another. A gene can have several alternative forms, known as allele.
Epigenetics refers to the changes m]in the genes that cannot be inherited. These changes are generally made due to environmental influence. These changes are reversible. DNA methylation or acetylation are examples of epigenetics.
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Water makes up approximately 60% of the human body and plays a vital role in regulating body temperature. Which property of water allows it to prevent large fluctuations in body temperature?.
Water has a high heat capacity, or the ability to "hold on to" heat well; this property aids in the regulation of body temperature in both organisms and cells. Sweating is another way that water can be used to cool down an overheated organism.
Warm-blooded animals employ water's high heat capacity to more efficiently distribute heat throughout their bodies.Water works like a car's cooling system, moving heat from warm to cold areas and allowing the body to maintain a more constant temperature.The body requires water to maintain temperature because it is a good heat conductor and absorber. Water can absorb a lot of heat before its temperature increases because of its large heat capacity. This characteristic enables the water to function as a buffer against abrupt temperature changes in every cell of the human body.Learn more about water here:
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