Answer: myoglobin
Explanation:
Muscle cells contain myoglobin, a red pigment that stores oxygen needed for muscular activity.
Myoglobin is a protein found in muscle cells that is responsible for storing and transporting oxygen within the muscle tissue.
It plays a crucial role in providing oxygen to the muscles during periods of high activity or when oxygen supply is limited.
Myoglobin has a unique structure that allows it to bind oxygen molecules.
It contains a heme group, which is similar to the heme found in hemoglobin, the protein responsible for oxygen transport in red blood cells.
The heme group has an iron ion at its core, which binds to oxygen molecules.
When the oxygen concentration is high, such as during rest or low-intensity exercise, myoglobin binds to oxygen, storing it within the muscle cells. This stored oxygen can be readily released when the demand for oxygen increases, such as during intense exercise or when the oxygen supply is reduced, ensuring a constant supply of oxygen to the working muscles.
Thus, the complete sentence is "Muscle cells contain myoglobin, a red pigment that stores oxygen needed for muscular activity".
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Complete the sentence.
Muscle cells contain _________, a red pigment that stores oxygen needed for muscular activity.
Which of the following is NOT a result of increased ATP in the pancreatic beta cell?
Group of answer choices
insulin release
vesicle fusion
potassium release
calcium intake
Vesicle fusion is NOT a result of increased ATP in the pancreatic beta cell.
What is ATP?
Cells consume and store energy from adenosine triphosphate (ATP), which is the energy source. An adenine-based nitrogenous base, ribose sugar, and three serially bound phosphate groups make up the nucleoside triphosphate structure of ATP.
When macromolecules like proteins and lipids are moved into and out of the cell, ATP is an essential component of the process. Active transport mechanisms that move these molecules over a concentration gradient are powered by the energy released during ATP hydrolysis.
Therefore, Vesicle fusion is NOT a result of increased ATP in the pancreatic beta cell.
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Anaerobic conditions will most likely be generated in a natural water system with?.
Anaerobic situations will maximum possibly be generated in a herbal water gadget with low degrees of dissolved oxygen (DO) this is infected through pollution with excessive biochemical oxygen demand (BOD) values.
The required details for Anaerobic conditions in given paragraph
Anaerobic situations arise while the uptake or disappearance of oxygen is extra than its manufacturing through photosynthesis or diffusion through bodily shipping from the encompassing surroundings. Oxygen is typically fed on through microbial respiratory on account of the provision of natural material. Two examples of obligate anaerobes are Clostridium botulinum and the bacteria which stay close to hydrothermal vents at the deep-sea ocean floor. Aerotolerant organisms, which can't use oxygen for growth, however tolerate its presence. Facultative anaerobes, which could develop with out oxygen however use oxygen if it's miles present.
Most anaerobes require an surroundings with a low oxidation-discount potential (Eh gradient), which may be finished in affiliation with low pH, tissue destruction, byproducts from cardio bacterial metabolism, or low oxygen content.
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Question 1
Which one of the following is true of tRNAs? (Concept 17.4)
a. TRNAs are extremely small molecules.
b. Each tRNA binds a particular amino acid.
c. There are four types of tRNA.
d. tRNAs carry special sequences known as codons.
e. All of the above.
Answer: E
Explanation: I believe the answer is E but you may want to double check my logic. Each tRNA has to bind to a specific amino acid and they themselves are extremely small molecules. The tRNA carries the amino acid that corresponds to each codon, do I'm not exactly sure if that's correct. And finally there are 4 types of RNA, not tRNA, but technically there are at least 4 types of tRNA as there can be up to 20 different types.
Question 4 Which of the following would not lead to polycythemia? Iron deficiency Living in a high altitude Emphysema Excessive aerobic exercise
Iron deficiency is not the cause of polycythemia, rest all like living in a high altitude, emphysema and excessive aeerobic exercise are the cause of polycythemia.
An excess of red blood cells in the body is referred to as polycythemia. The additional cells make the blood thicker, which raises the risk of serious health problems like blood clots.
There are numerous potential causes of polycythemia, and each one can be treated differently. If at all possible, underlying problems must be treated in order to successfully cure polycythemia. Additionally, blood cell numbers must be decreased.
Obstructive sleep apnea, obesity hypoventilation syndrome, and chronic obstructive pulmonary disease are among the most frequent causes of secondary polycythemia (COPD). Heavy cigarette smoking and testosterone replacement therapy are additional reasons.
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Emphysema, living at a high altitude, and intense aerobic exercise are all factors that contribute to polycythemia, iron deficiency is not he cause.
Polycythemia is the medical term for an overabundance of red blood cells in the body. The extra cells thicken the blood, increasing the likelihood of significant health issues including blood clots.
Each of the many potential causes of polycythemia has a unique treatment option. To successfully treat polycythemia, underlying issues must be addressed, if at all possible. Reduced blood cell counts are also necessary.
Each of the many potential causes of polycythemia has a unique treatment option. To successfully treat polycythemia, underlying issues must be addressed, if at all possible. Reduced blood cell counts are also necessary.
The most common causes of secondary polycythemia include chronic obstructive pulmonary illness, obesity hypoventilation syndrome, and obstructive sleep apnea (COPD). Additional causes include testosterone replacement therapy and heavy cigarette smoking.
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social monogamy is characteristic of: group of answer choices baboons chimpanzees orangutans gibbons
Social monogamy is characteristic of gibbons. Monogamy refers to a social group that includes adult men, adult women, and their offspring.
Is monogamy in mammals natural and why are gibbons called monogamous??Of course, monogamy exists in nature, as do women seeking multiple partners. But nature seems to be pushing things towards polygamy in our evolutionary branch. Only 9% of mammalian species are monogamous. Only 29% in primates. Male and female gibbons are considered monogamous. They mate for life, forming families that stay together until the offspring grow up and leave the home. A couple's bond is strengthened by the time they spend grooming each other.Is monogamy a very common social strategy for primates?Monogamous Family Groups: This group pattern is most common in humans, but rare in nonhuman primates. It occurs among small Asian apes and some New World monkeys and monkeys.
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where would you find iron regulatory protein (irps)? group of answer choices cytosol nucleus mitochondria golgi apparatus
Similar to how iron is imported and transported within cells, mitochondrial iron import and transport are tightly controlled, careful processes intended to prevent undesired.
Which of these are hollow rods that help the cell form and are supported?The third main component of the cytoskeleton, microtubules, are hard, hollow rods with a diameter of around 25 nm. Microtubules are dynamic, constantly assembling and disassembling within the cell, much like actin filaments.
What form does the packaging and modification of proteins take?Figure 1: Proteins are modified and organized for transport within the cell by the Golgi apparatus. In cells, the Golgi apparatus and ER are frequently found together.
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a retiree, tired of minnesota winters, moves to tucson, arizona. he hopes the warm dry climate will ease his chronic respiratory problems. he soon experiences a new kind of weather, a massive dust storm. with which of the following fungi might he become infected? group of answer choices paracoccidioides brasiliensis coccidioides immitis histoplasma capsulatum blastomyces dermatitidis aspergillus fumigatus
In a massive dust storm, the retiree might become infected with b) Coccidioides immitis.
Coccidioides immitis is a fungus that lives in dry soil. In the scenario mentioned in the question, as the condition of the Tuscon, Arizona are warm and dry, hence in such areas the fungal species Coccidioides immitis will be residing.
In case of a dust storm, the Coccidioides immitis living in the soil will pass into the respiratory tract of the retiree and cause respiratory problems. the fungal infection can be serious as the person would not have been exposed to this fungus before.
The question will correctly be written as:
A retiree, tired of Minnesota winters, moves to Tucson, Arizona. He hopes the warm dry climate will ease his chronic respiratory problems. he soon experiences a new kind of weather, a massive dust storm. With which of the following fungi might he become infected? group of answer choices
a) paracoccidioides brasiliensis
b) coccidioides immitis
c) histoplasma capsulatum
d) blastomyces dermatitidis
e) aspergillus fumigatus
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is its inheritance sex-linked or autosomal? is its inheritance sex-linked or autosomal? the inheritance of the disorder is sex-linked because it is seen only in boys. the inheritance of the disorder is autosomal because sick children are born to apparently unaffected parents. the inheritance of the disorder is sex-linked because it is encoded by y -linked genes. the inheritance of the disorder cannot be determined as sex-linked or autosomal.
The inheritance of the disorder is sex-linked because it is encoded by y -linked genes.
In people there are the X or the Y chromosomes. And so a number of the greater acquainted sex-related tendencies are hemophilia, purple-green colour blindness, congenital night blindness, a few excessive blood stress genes, Duchenne muscular dystrophy, and also Fragile X syndrome.
A sex-linked inherited sickness is resulting from a genetic mutation on the X chromosome. These are also inherited in a dominant or recessive sample.
There also are disorders related to the Y chromosome, however these are inherited much less often. That is due to the fact they're regularly associated with male infertility.
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A nurse is preparing to suction a client's tracheostomy tube. Which of the following actions should the nurse plan to take? a. Apply intermittent suction during catheter insertion b. Suction the client's airway for 20 seconds with each pass c. Hyperoxygenate the client manually for 30 to 60 seconds before suctioning d. decrease suction pressure to 150 mmHg if the O2 sat levels drop during suctioning
The best action for a well trained nurse to take when preparing to suction a client's tracheostomy tube is:
Apply intermittent suction during catheter insertion.
The correct answer choice is option a.
What is meant by tracheostomy?Tracheostomy simply refers to a surgical procedure involving the opening of a hole in the trachea in order to provide alternative airways for gaseous exchange. This goes to say that, when a patient has a difficulty in breathing, tracheostomy is done to create an opening in the windpipe to allow easy flow of exchange of gases between the patient and his/her environment.
That being said, for this process to be successfully done by the healthcare provider, it is important that intermittent suction is well applied during catheter insertion.
In conclusion, it can therefore be deduced that the windpipe can be manipulated in certain health conditions.
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Which of the following processes correctly describes alternative RNA splicing?
It can allow the production of similar proteins from different RNAs.
It is a mechanism for increasing the rate of translation.
It increases the rate of transcription.
It can allow the production of proteins of different sizes and functions from a single mRNA.
Answer: D
Explanation:
The processes that may facilitate the synthesis of proteins of diverse sizes and functions from a single mRNA accurately define alternative RNA splicing, hence option D is correct.
What is RNA splicing?An RNA subtype that is found in cells, mRNA molecules, which carry genetic material, is necessary for protein synthesis. They move data from the nucleus of the cell to the cytoplasm, where proteins are made.
Because alternative splicing causes several forms of mRNA to be produced from a single pre-mRNA.
Throughout this process, exons are connected in a variety of ways, creating a vast range of mRNA combinations. This process produces a variety of proteins from a single pre-mRNA as a consequence.
Therefore, facilitating the synthesis of proteins of diverse sizes and functions from a single mRNA accurately defines alternative RNA splicing, hence option D is correct.
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What structural feature does glucose share with larger organic molecules, including dna and proteins?.
Glucose forms the backbone structure with large organic molecules including DNA and proteins.
What is the use of glucose?
Very low blood sugar (hypoglycemia) is treated with glucose, most frequently in persons with diabetes mellitus. The way that glucose works is by rapidly raising the level of glucose in your blood. Another purpose for glucose is to give someone who is unable to eat due to illness, trauma, or another medical condition carbohydrate calories.
The structural structure of nucleic acids, including DNA and RNA, is composed of the sugar-phosphate backbone. This molecule's directionality is determined by this backbone, which is made up of alternating sugar and phosphate groups.
Nucleotides make up DNA and RNA, and they are connected to one another in a chain via chemical interactions between their neighboring nucleotides' phosphate groups and sugar bases, known as ester bonds. Each nucleotide has a sugar at its 3' end and a phosphate at its 5' end. A free hydroxyl group on the 3' carbon of the following nucleotide forms an ester link with the phosphate group connected to the 5' carbon of the sugar on the first nucleotide. produced by two oppositely running linear sugar-phosphate backbones
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transduction refers to conversion of
Answer:
one form of energy into another
Explanation:
Which of the following events characterizes metaphase of mitosis?
I. Movement of chromosomes to the equatorial plane (metaphase plate) of the cell.
II. A spindle fiber attaches to each sister chromatid.
III. Separation of sister chromatids that are being pulled to the poles of the cell.
A
I.
B
II.
C
III.
D
I and II.
E
All of these
A.chromosomes aligning themselves at the equator.
What distinguishing features of mitosis' metaphase?A phase of cell division known as "metaphase" (mitosis or meiosis).Individual chromosomes are typically dispersed throughout the cell nucleus.The chromosomes of the cell condense and move toward one another, aligning in the center of the dividing cell, and the nucleus of the cell disintegrates during metaphase.
What distinguishes metaphase from other phases?Its alignment of a duplicated chromosomes at the metaphase plate, an equatorial plate, is what gives metaphase its name.Via microtubules attached to its kinetochore, one of the sister chromatids is joined to one pole of the cell, and the other sister chromatid is associated to the other pole.
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classify the effector muscle involved in the response to the stretch reflex being tested by clicking and dragging the labels to the correct location.
Patellar reflex: Quadriceps femoris, Calcaneal reflex: Gastrocnemius and Soleus, Biceps reflex: Biceps brachii, Triceps reflex: Triceps brachii, Plantar reflex: Gastrocnemius, Soleus and Flexor digitorum longus.
A reflex is an uncontrollable movement that happens very instantly in reaction to stimuli. The reflex, which happens through a reflex arc, is an involuntary reaction to a stimulus that doesn't require or receive conscious cognition. Before an impulse reaches the brain, reflex arcs respond to it. examines descending motor pathways, motor nerves, synaptic connections in the spinal cord, and afferent nerves. Reflexes are suppressed by lower motor neuron lesions (such as those that damage the anterior horn cell, spinal root, or peripheral nerve) and are increased by upper motor neuron lesions. The amount of CNS damage may be determined by stimulating the abdominal reflex, which is done by massaging the belly.
The complete question is:
Classify the effector muscle involved in the response to the stretch reflex being tested by clicking and dragging the labels to the correct location.
(A). Patellar reflex:
(B). Calcaneal reflex:
(C). Biceps reflex:
(D). Triceps reflex:
(E). Plantar reflex:
The options are Quadriceps femoris, Soleus, Biceps brachii, Triceps brachii, Gastrocnemius, Soleus, and Flexor digitorum longus.
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Label the image of a compound light microscope using the terms provided.
The labeled compound light microscope is attached accordingly. A compound microscope is a microscope that enlarges the picture of a sample by using numerous lenses.
What is a compound light microscope used for?A compound microscope is often used for seeing materials at high magnification (40 - 1000x), which is accomplished by the combined impact of two sets of lenses: the ocular lens (in the eyepiece) and the objective lenses (close to the sample).
The compound light microscope is best for studying complex structures inside cells, leaves, stems, and molds, as well as surface features of a specimen, tissue samples, and cells.
A compound light microscope is simple to use and operate. It is small and hence easy to keep. It is a vital resource in biosciences and medicine. It allows you to observe live specimen samples.
The invention of the Microscope by Lens Crafters around 1590. Every major discipline of research has profited from the use of the microscope, which was invented in the late 16th century by a humble Dutch eyeglass manufacturer named Zacharias Janssen.
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which type of ppe is mandatory during the histology lab?
Standard lab attire type of PPE is mandatory during the histology lab .
What does PPE stand for?
Specialized clothing or equipment worn by an employee as protection against infectious materials is known as personal protective equipment (PPE).
What four forms of PPE are there?
Personal protective equipment parts (PPE)
Gloves - When physically handling potentially infected goods or contaminated surfaces, gloves can protect you.
Gowns
Headdresses and Shoes
Respirators and Masks
Why is PPE crucial?
The use of personal protective equipment (PPE) is crucial in every job environment because it helps prevent accidents, illnesses, and fatalities, even when the world is not experiencing the widespread effects of a pandemic.
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what is the complete hemoglobin molecule composed of
The complete hemoglobin molecule is composed of the following below:
Polypeptide chains (globins)Heme groupsIron ions.What is Hemoglobin?This is referred to as a type of protein which is present in the red blood cells of almost all organisms and it comprises of heme groups and iron ions which ensures that it functions adequately in the body system.
It has a very high affinity for oxygen and is responsible for binding and transporting it to different parts of the body such as the brain, legs etc so as to prevent cell death which makes it a very important compound in the circulatory system.
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catabolic pathways _____.
include converting complicated molecules into smaller ones through a process known as degradation.
What is the catabolic route used for?Nutrient molecules are broken down into useable forms by catabolic pathways (Food: A, B, C) (building blocks).In the this process, energy would either be released as heat or is stored into usable energy for later use.
What sort of catabolic route is that?The breakdown of food by several enzymes so it can be taken by small bowel is an illustration of a catabolic response.
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Skeletal muscle tissue is found near the bones of the skeleton. These muscles are controlled by the nervous system and allow movement to occur. Smooth muscle tissue is predominantly found in the inner lining of many organs, such as the stomach and intestinal tract. Smooth muscle tissue allows organs to contract on their own. Cardiac muscle tissue is found in the heart. Cardiac muscle also contracts on its own, and it helps the heart beat properly. This information shows that.
Parts of living organisms are organized by their function is the function of Cardiac muscle also contracts on its own, and it helps the heart beat properly.
Myocardium, the middle layer of the heart, is made of cardiac muscle.. The main component of the heart is cardiac muscle tissue, or myocardium. The heart wall is composed of three layers: the inner endocardium, the outer epicardium, and a substantial layer of myocardium (also known as the visceral pericardium).
Adults should have a heart rate between 60 and 100 beats per minute while at rest. An efficient heart and higher cardiovascular fitness are often indicated by a lower resting heart rate. An athlete who has received proper training, for instance, can have a typical resting heart rate closer to 40 beats per minute.
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Animal cells typically achieve cytokinesis by
a binary fission.
b chromosome condensation.
c. forming a cleavage furrow that pinches the cell into two.
d forming a cell plate across the middle of the cell.
- chromosome elongation.
Which of the following does not achieve sterilization?
Dry heat
Ethylene oxide
Formaldehyde
Autoclave
Pasteurization
Answer:
Pasteurization
Explanation:
Answer: The correct answer is Pasteurization
Explanation:
Pasteurization does not achieve sterilization because sterilization eliminates ALL microorganisms and spores, whereas after the pasteurization process the most resistant spores remain present.
The K-selection reproductive strategy maximizes the survival of offspring by producing
a. few offspring with high levels of parental care
b. few offspring with low levels of parental care
c. many offspring with high levels of parental care
d. many offspring with low levels of parental care
The survival of offspring by producing few offspring with low levels of parental care.
Is it paternal or parental?Family law is complex, and it's important to understand the distinction between parental rights and paternal rights. Simply put, paternity is the determination of a child's father, while parental rights are given to the legal parents of the child.
Why is parental important in human?The importance of parenting arises from its role as a buffer against adversity (such as poverty or delinquent influences) or mediator of damage (as in child abuse). Parenting usually involves biological parents but is not confined to them. Carers, teachers, nurses, and others fulfil parenting tasks with children.
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for cross-bridge cycling to occur, which of the following must be present in the sarcoplasm? check all that apply.
For the cross-bridge cycle to occur, calcium must be present in the sarcoplasm.
The cross-bridge cycle is the basis for movement and force production in muscle cells. Each cycle of myosin binds to actin and the movement of the thin filaments involves the hydrolysis of one ATP molecule.
To activate muscle contraction, tropomyosin must change its shape, exposing myosin binding sites on the actin molecule and allowing the formation of cross bridges. This can only occur in the presence of calcium, which is stored in very low concentrations in the sarcoplasm.
Bridges cannot cross-form without calcium because calcium allows the active sites to be exposed and without exposed active sites, bridges cannot form.
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Which of the following processes correctly describes alternative RNA spiling?
O It can allow the production of similar proteins from different RNAS.
O lt is a mechanism for increasing the rate of transation.
O It increases the rate of transcription.
O It can allow the production of protens of different sizes and functions strom a single mPRA
Answer: d
Explanation:
Nitrogen has an atomic number of seven. How many electron shells does it likely have?
a. one
b. two
c. three
d. Four
Nitrogen has two electron shells.
What are electron shells?
An atom's outermost region, which surrounds the atomic nucleus, is known as the electron shell. It consists of a collection of atomic orbitals with the same value of the fundamental quantum number, n. One or more electron subshells, also known as sublevels, exist within electron shells.
It is used to explain the distinct area that electrons occupy around an atom's nucleus and is sometimes referred to as an orbital or atomic shell. Because electrons contain energy, electron shells are occasionally referred to as energy levels. The energy of electrons decreases as they get further away from the nucleus.
There are a maximum of two electrons per s subshell. At most 6 electrons can fit in each p subshell. Maximum number of electrons in each d subshell is 10. Maximum number of electrons in a f subshell is 14.
Therefore, Nitrogen has two electron shells.
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The posterior horns of the spinal cord contain mainly: ________
The posterior horns of the spinal cord contain mainly: sensory nuclei.
The correct answer choice is option b.
What is meant by the posterior horns of the spinal cord?The posterior ends of the spinal cord simply refers to the dorsal end of the spinal cord's grey matter which receives information from various parts of the body. It helps to detect and process information received from other body parts.
So therefore, it can be deduced from the explanation given above that the spinal cord is a fluid filled tissue within the space in the vertebral column.
Complete question:
The posterior horns of the spinal cord contain mainly: ________
a. Sympathetic nuclei
b. Sensory nuclei
c. Automatic motor nuclei
d. None of the above
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early hominin species, such as ardipithecus ramidus and australopithecus afarensis, evolved during the late epoch.
The earliest hominin species (such as Australopithecus) evolved during the late Pliocene epoch.
The geologic period known as the Pliocene spans from 5.333 million to 2.58 million years ago. In the Cenozoic Era, it is the second and most recent epoch of the Neogene Period.
The Miocene Epoch is followed by the Pliocene, which is then followed by the Pleistocene.
Despite being a brief epoch, the Pliocene saw enormous occurrences including the formation of ice caps, the drying of the Mediterranean, and the union of the Americas.
From a biogeographic perspective, this period is distinguished by the dramatically modernisation of animals.
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if a tunicate's pharyngeal gill slits were suddenly blocked, the animal would have trouble _____.
If a tunicate's pharyngeal gill slits were suddenly blocked, the animal would have trouble respiring and feeding.
What are the tunicate's pharyngeal gill slits?The tunicate's pharyngeal gill slits are a series of structures within this taxonomic group that function in order to make the process of respiration and feeding possible by filtering substances in the aquatic environment.
Therefore, with this data, we can see that the tunicate's pharyngeal gill slits play a fundamental role in filtering substances.
Complete question:
Fill in the blank. If a tunicate's pharyngeal gill slits were suddenly blocked, the animal would have trouble___.
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What type of mutation has occurred in the following example?
A.) frameshift mutation (due to deletion)
B.) nonsense mutation
C.) silent mutation
Use screenshot to answer. Which letter choice is correct? A, B, or C? Thank you
the type of mutation is frameshift mutation. Thus option A is correct.
what is frameshift mutation ?
A frameshift mutation is defined as the process of insertion or deletion of nucleotide base which are not multiples of three.
This is important type of mutation because a cell reads a gene's code in groups of three bases when making a protein.
It is caused by the addition or deletion of one or more base pairs in the DNA of a gene resulting in the translation in an unnatural reading frame from the position of the mutation to the end of the gene.
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Describe two patterns of complex inheritance and explain how they are different from mendelian.
A male who is colorblind and blooms, as well as a male who is colorblind and a normal female, are two examples of complicated inheritance patterns. There are recessive and dominant genes, according to one of Mendelian's rules. Only the dominant allele will be present if they are combined and generate a heterozygote.
One of the Mendelian laws (the third) states that each gene has both a dominant and recessive allele, and that if these two alleles are inherited together and create a heterozygote (one from the mother, one from the father), only the dominant allele's characteristic will be displayed.
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