1Which term describes microorganisms grown on a large scale to manufacture useful commercial products?
industrial microorganisms and product formation
Easy
A.Symbiotic microorganisms
B.Industrial microorganisms
C.Pathogenic microorganisms
D.Endophytic microorganisms
Correct Answer: Industrial microorganisms
Explanation:
Industrial microorganisms are strains cultivated in bulk to produce valuable products such as antibiotics, enzymes, and organic acids.
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2A product formed during the active growth phase and essential for growth is called a:
industrial microorganisms and product formation
Easy
A.Waste product
B.Secondary metabolite
C.Primary metabolite
D.Structural protein
Correct Answer: Primary metabolite
Explanation:
Primary metabolites such as ethanol and amino acids are produced during the growth (trophophase) and are needed for normal cell function.
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3Antibiotics like penicillin are examples of which type of microbial product?
industrial microorganisms and product formation
Easy
A.Enzymes
B.Primary metabolites
C.Secondary metabolites
D.Vitamins
Correct Answer: Secondary metabolites
Explanation:
Antibiotics are secondary metabolites, produced mainly during the stationary phase (idiophase) and not essential for growth.
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4Penicillin, an important antibiotic for the health industry, is produced by which organism?
industrial microorganism for health industry
Easy
A.Saccharomyces cerevisiae
B.Escherichia coli
C.Lactobacillus bulgaricus
D.Penicillium chrysogenum
Correct Answer: Penicillium chrysogenum
Explanation:
The mold Penicillium chrysogenum is the main industrial source of penicillin used in medicine.
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5Which microbial product is widely used to treat bacterial infections in humans?
industrial microorganism for health industry
Easy
A.Antibiotics
B.Organic acids
C.Biofuels
D.Vitamins
Correct Answer: Antibiotics
Explanation:
Antibiotics are microbial products used therapeutically to inhibit or kill pathogenic bacteria.
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6Vitamin is commercially produced mainly by which type of microorganisms?
vitamins
Easy
A.Plants
B.Bacteria
C.Algae only
D.Yeasts only
Correct Answer: Bacteria
Explanation:
Vitamin (cobalamin) is produced industrially by bacteria such as Pseudomonas and Propionibacterium species.
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7Riboflavin, produced by microbial fermentation, is also known as which vitamin?
vitamins
Easy
A.Vitamin
B.Vitamin C
C.Vitamin D
D.Vitamin K
Correct Answer: Vitamin
Explanation:
Riboflavin is vitamin and is produced industrially using fungi like Ashbya gossypii.
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8Which fungus is commonly used for the industrial production of riboflavin?
vitamins
Easy
A.Ashbya gossypii
B.Neurospora crassa
C.Rhizopus stolonifer
D.Aspergillus niger
Correct Answer: Ashbya gossypii
Explanation:
Ashbya gossypii is a well-known overproducer of riboflavin used in commercial vitamin production.
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9The microbial conversion of one steroid into another useful steroid is an example of:
steroids
Easy
A.Pasteurization
B.Fermentation
C.Sterilization
D.Biotransformation
Correct Answer: Biotransformation
Explanation:
Steroids are modified through microbial biotransformation, where enzymes carry out specific chemical changes on the steroid molecule.
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10Microbial modification of steroids is industrially important for producing which type of drugs?
steroids
Easy
A.Antifungal soaps
B.Vaccines
C.Antibiotics
D.Anti-inflammatory drugs
Correct Answer: Anti-inflammatory drugs
Explanation:
Steroid biotransformations yield corticosteroids and other anti-inflammatory hormone drugs used in medicine.
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11Which microorganism is used in baking bread to make dough rise?
food industry
Easy
A.Bacillus subtilis
B.Saccharomyces cerevisiae
C.Aspergillus oryzae
D.Lactobacillus acidophilus
Correct Answer: Saccharomyces cerevisiae
Explanation:
The yeast Saccharomyces cerevisiae ferments sugars, releasing that causes bread dough to rise.
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12Which bacteria are mainly responsible for converting milk into yogurt?
food industry
Easy
A.Nitrogen-fixing bacteria
B.Acetic acid bacteria
C.Lactic acid bacteria
D.Sulfur bacteria
Correct Answer: Lactic acid bacteria
Explanation:
Lactic acid bacteria such as Lactobacillus and Streptococcus ferment lactose into lactic acid, forming yogurt.
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13The souring of milk into curd is caused by the production of which acid?
food industry
Easy
A.Lactic acid
B.Sulfuric acid
C.Citric acid
D.Acetic acid
Correct Answer: Lactic acid
Explanation:
Lactic acid bacteria ferment lactose to lactic acid, which lowers pH and curdles the milk.
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14Biotransformation is best defined as the:
biotransformation
Easy
A.Enzymatic conversion of one compound into a related product
B.Random breakdown of all organic matter
C.Complete synthesis of a molecule from simple sugars
D.Killing of microorganisms by heat
Correct Answer: Enzymatic conversion of one compound into a related product
Explanation:
Biotransformation uses microbial enzymes to make specific chemical changes, converting a substrate into a closely related product.
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15An advantage of using microbes for biotransformation is that reactions are:
biotransformation
Easy
A.Random and non-specific
B.Highly specific and mild
C.Only possible at high temperatures
D.Always destructive
Correct Answer: Highly specific and mild
Explanation:
Microbial enzymes carry out specific reactions under mild conditions, making biotransformation efficient and selective.
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16Which enzyme is widely used in detergents to remove protein stains?
enzymes
Easy
A.Amylase
B.Protease
C.Cellulase
D.Lipase
Correct Answer: Protease
Explanation:
Proteases break down protein-based stains such as blood and food, making them common detergent enzymes.
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17The enzyme amylase produced by microbes is used industrially to break down:
enzymes
Easy
A.Cellulose
B.Starch
C.Fats
D.Proteins
Correct Answer: Starch
Explanation:
Amylase hydrolyzes starch into simpler sugars and is used in food, brewing, and textile industries.
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18Which amino acid, used as a flavor enhancer (MSG), is produced industrially by microbial fermentation?
amino acids
Easy
A.Glutamic acid
B.Proline
C.Glycine
D.Cysteine
Correct Answer: Glutamic acid
Explanation:
Glutamic acid is produced by Corynebacterium glutamicum and used as monosodium glutamate (MSG).
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19In alcoholic fermentation by yeast, sugar is mainly converted into ethanol and:
microbial fermentations
Easy
A.Oxygen
B.Methane
C.Nitrogen
D.Carbon dioxide
Correct Answer: Carbon dioxide
Explanation:
Yeast ferments glucose into ethanol and , a process used in brewing and baking.
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20Biohydrogen is considered an attractive fuel mainly because its combustion produces:
biohydrogen
Easy
A.Sulfur dioxide
B.Soot
C.Carbon dioxide
D.Water
Correct Answer: Water
Explanation:
Burning hydrogen yields only water, making biohydrogen a clean, renewable energy source produced by microbes.
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21A fermentation product that is synthesized during the stationary phase and is not essential for the primary growth of the microorganism is best classified as a:
industrial microorganisms and product formation
Medium
A.Primary metabolite
B.Catabolic substrate
C.Secondary metabolite
D.Anabolic intermediate
Correct Answer: Secondary metabolite
Explanation:
Secondary metabolites such as antibiotics are produced during the stationary (idiophase) and are not required for growth, unlike primary metabolites like ethanol produced during active growth.
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22In a batch fermentation, penicillin production by Penicillium chrysogenum is favored when growth is limited. Which strategy is most commonly used to prolong the production phase?
industrial microorganisms and product formation
Medium
A.Providing excess glucose continuously
B.Raising temperature above optimum
C.Removing all nitrogen sources
D.Feeding a slowly metabolized sugar like lactose
Correct Answer: Feeding a slowly metabolized sugar like lactose
Explanation:
Rapidly used sugars cause catabolite repression of penicillin synthesis. A slowly metabolized carbon source like lactose sustains the low growth rate needed for prolonged antibiotic production.
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23Recombinant human insulin is produced industrially using genetically engineered:
industrial microorganism for health industry
Medium
A.Aspergillus niger
B.Escherichia coli
C.Lactobacillus bulgaricus
D.Streptomyces griseus
Correct Answer: Escherichia coli
Explanation:
Human insulin was the first recombinant therapeutic protein produced commercially by inserting the insulin gene into E. coli, which expresses the protein for later purification.
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24Streptokinase, used clinically as a thrombolytic (clot-dissolving) agent, is derived from:
industrial microorganism for health industry
Medium
A.Bacillus subtilis
B.Streptococcus species
C.Clostridium botulinum
D.Saccharomyces cerevisiae
Correct Answer: Streptococcus species
Explanation:
Streptokinase is produced by beta-hemolytic Streptococcus and activates plasminogen to plasmin, dissolving blood clots in patients with myocardial infarction.
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25Vitamin (cobalamin) is produced industrially almost exclusively by microbial fermentation because:
vitamins
Medium
A.Plants synthesize it in large amounts
B.It is a simple molecule easy to synthesize chemically
C.Chemical synthesis is cheaper than fermentation
D.Only microorganisms possess the enzymes for its complete synthesis
Correct Answer: Only microorganisms possess the enzymes for its complete synthesis
Explanation:
Vitamin has a complex corrin ring structure synthesized only by certain bacteria and archaea, making microbial fermentation the practical route for commercial production.
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26Riboflavin (vitamin ) is produced commercially in high yields using the fungus:
vitamins
Medium
A.Rhizopus stolonifer
B.Neurospora crassa
C.Ashbya gossypii
D.Penicillium notatum
Correct Answer: Ashbya gossypii
Explanation:
Ashbya gossypii is a natural overproducer of riboflavin and is widely used for industrial-scale production of vitamin .
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27The microbial transformation of progesterone into 11α-hydroxyprogesterone by Rhizopus species is significant because it:
steroids
Medium
A.Removes all functional groups from the molecule
B.Completely degrades the steroid ring
C.Introduces a hydroxyl group at a position difficult to reach chemically
D.Converts the steroid into an amino acid
Correct Answer: Introduces a hydroxyl group at a position difficult to reach chemically
Explanation:
Microbial 11α-hydroxylation is regio- and stereospecific, achieving in one step what would require many difficult chemical reactions, making it key for corticosteroid manufacture.
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28Which feature of microbial steroid biotransformations makes them industrially superior to purely chemical methods?
steroids
Medium
A.Requirement for extremely high temperatures
B.High regio- and stereo-specificity under mild conditions
C.Production of racemic mixtures
D.Non-specific attack on multiple sites
Correct Answer: High regio- and stereo-specificity under mild conditions
Explanation:
Microbial enzymes carry out highly selective single-site modifications at mild temperature and pressure, avoiding the many protection/deprotection steps of chemical synthesis.
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29In yogurt production, Lactobacillus bulgaricus and Streptococcus thermophilus act synergistically. The primary chemical change responsible for milk thickening is:
food industry
Medium
A.Hydrolysis of casein into free amino acids
B.Oxidation of fats into ketone bodies
C.Conversion of lactose to lactic acid, lowering pH and coagulating casein
D.Conversion of proteins into ethanol
Correct Answer: Conversion of lactose to lactic acid, lowering pH and coagulating casein
Explanation:
Lactic acid bacteria ferment lactose to lactic acid, dropping the pH toward the isoelectric point of casein (~4.6), causing coagulation and the characteristic yogurt texture.
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30During bread making, the leavening (rising) of dough by Saccharomyces cerevisiae is primarily due to:
food industry
Medium
A.Release of from sugar fermentation
B.Formation of ethanol vapor bubbles
C.Generation of oxygen gas
D.Production of lactic acid
Correct Answer: Release of from sugar fermentation
Explanation:
Yeast ferments sugars producing gas, which is trapped in the gluten network, causing the dough to rise; ethanol produced is largely driven off during baking.
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31Biotransformation differs from full de novo fermentation mainly in that biotransformation:
biotransformation
Medium
A.Modifies a supplied precursor into a related product via one or few reactions
B.Cannot be catalyzed by microorganisms
C.Always requires purified enzymes rather than whole cells
D.Synthesizes the product entirely from simple carbon sources
Correct Answer: Modifies a supplied precursor into a related product via one or few reactions
Explanation:
Biotransformation uses microbial enzymes to chemically modify an added substrate through a small number of specific reactions, unlike fermentation which builds products from basic nutrients.
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32The industrial conversion of sorbitol to L-sorbose by Gluconobacter is a key step in the manufacture of:
biotransformation
Medium
A.Citric acid
B.Vitamin C (ascorbic acid)
C.Vitamin
D.Penicillin
Correct Answer: Vitamin C (ascorbic acid)
Explanation:
In the Reichstein process, Gluconobacter oxidizes sorbitol to L-sorbose, an essential intermediate in the industrial synthesis of ascorbic acid (vitamin C).
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33Thermostable DNA polymerase (Taq polymerase) used in PCR is obtained from:
enzymes
Medium
A.Escherichia coli
B.Bacillus subtilis
C.Thermus aquaticus
D.Aspergillus oryzae
Correct Answer: Thermus aquaticus
Explanation:
Thermus aquaticus is a thermophilic bacterium whose heat-stable DNA polymerase withstands the high temperatures of PCR denaturation cycles, making it invaluable for the technique.
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34Which microbial enzyme is widely added to laundry detergents to remove protein-based stains such as blood and food?
enzymes
Medium
A.Amylase from Aspergillus only
B.Lipase from Rhizopus only
C.Cellulase from Trichoderma only
D.Protease from Bacillus species
Correct Answer: Protease from Bacillus species
Explanation:
Alkaline proteases from Bacillus species are stable at the high pH of detergents and hydrolyze protein stains, making them the most common detergent enzyme.
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35Glucose isomerase is industrially important because it converts glucose into fructose to produce:
enzymes
Medium
A.Ethanol
B.Lactic acid
C.High-fructose corn syrup
D.Citric acid
Correct Answer: High-fructose corn syrup
Explanation:
Glucose isomerase catalyzes the isomerization of glucose to sweeter fructose, forming high-fructose corn syrup widely used as a sweetener in the food industry.
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36Industrial production of L-glutamic acid (for monosodium glutamate) is carried out mainly using:
amino acids
Medium
A.Lactobacillus casei
B.Penicillium chrysogenum
C.Saccharomyces cerevisiae
D.Corynebacterium glutamicum
Correct Answer: Corynebacterium glutamicum
Explanation:
Corynebacterium glutamicum overproduces and excretes L-glutamic acid, and is the principal organism used for commercial MSG production.
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37Overproduction of an amino acid such as lysine in industrial strains is often achieved by selecting mutants that are:
amino acids
Medium
A.Resistant to feedback inhibition of the biosynthetic pathway
B.Incapable of dividing
C.Unable to grow on minimal medium
D.Deficient in all transport proteins
Correct Answer: Resistant to feedback inhibition of the biosynthetic pathway
Explanation:
Feedback-resistant (analog-resistant) mutants no longer stop synthesizing the amino acid when it accumulates, allowing continued overproduction and secretion of the product.
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38In a continuous (chemostat) fermentation, the specific growth rate of the culture at steady state is controlled by the:
microbial fermentations
Medium
A.Initial inoculum size
B.Age of the fermenter
C.Total culture volume
D.Dilution rate
Correct Answer: Dilution rate
Explanation:
At steady state in a chemostat, the specific growth rate equals the dilution rate (), so adjusting the flow of fresh medium directly sets the growth rate.
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39Citric acid is produced industrially by Aspergillus niger. High yields are favored by:
microbial fermentations
Medium
A.Providing anaerobic conditions throughout
B.Adding excess manganese to the medium
C.Maintaining a neutral to alkaline pH
D.Limiting trace metals such as manganese and iron
Correct Answer: Limiting trace metals such as manganese and iron
Explanation:
Deficiency of trace metals (especially manganese) disrupts the TCA cycle balance in A. niger, causing citric acid to accumulate and be excreted at high yields under acidic aerobic conditions.
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40In dark fermentation for biohydrogen production, the highest theoretical yield of per mole of glucose is obtained when the main byproduct is:
biohydrogen
Medium
A.Acetate
B.Ethanol
C.Butyrate
D.Lactate
Correct Answer: Acetate
Explanation:
The acetate pathway yields up to mol per mol glucose, whereas the butyrate pathway yields only about mol, so steering fermentation toward acetate maximizes hydrogen output.
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41In a fed-batch penicillin fermentation, glucose is fed at a controlled low rate rather than added as a single large bolus. What is the primary physiological rationale for this feeding strategy?
industrial microorganisms and product formation
Hard
A.To avoid catabolite repression of penicillin biosynthetic genes by high glucose concentrations
B.To shift metabolism from secondary to primary metabolite production
C.To maximize the specific growth rate throughout the entire fermentation
D.To increase dissolved oxygen by reducing broth viscosity directly
Correct Answer: To avoid catabolite repression of penicillin biosynthetic genes by high glucose concentrations
Explanation:
High glucose levels trigger carbon catabolite repression, suppressing penicillin (a secondary metabolite) synthesis. Slow feeding keeps glucose low, relieving repression while still supplying carbon for the idiophase.
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42A continuous chemostat operates at steady state. If the dilution rate is increased to a value that exceeds , what outcome is expected?
microbial fermentations
Hard
A.A new steady state at a higher biomass concentration
B.Transition of the culture into stationary phase
C.Washout of the culture as cells are removed faster than they can grow
D.Increased substrate conversion efficiency
Correct Answer: Washout of the culture as cells are removed faster than they can grow
Explanation:
At steady state . Since cannot exceed , setting means cells are diluted out faster than they divide, causing washout.
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43The microbial 11-hydroxylation of progesterone by Rhizopus species was industrially significant primarily because it:
steroids
Hard
A.Replaced roughly 30 chemical steps needed to introduce oxygen at C-11 in cortisone synthesis
B.Allowed steroids to be produced anaerobically for the first time
C.Enabled complete de novo synthesis of cortisone from simple sugars
D.Converted cholesterol directly into active glucocorticoids
Correct Answer: Replaced roughly 30 chemical steps needed to introduce oxygen at C-11 in cortisone synthesis
Explanation:
Regio- and stereospecific microbial hydroxylation at C-11 collapsed a long, low-yield chemical route into a single biotransformation step, drastically lowering cortisone production cost.
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44In industrial L-glutamate production by Corynebacterium glutamicum, biotin limitation or Tween 40 addition boosts glutamate secretion mainly by:
amino acids
Hard
A.Preventing feedback inhibition of aspartokinase
B.Altering membrane phospholipid composition to increase permeability and glutamate efflux
C.Repressing the TCA cycle to accumulate more 2-oxoglutarate
Correct Answer: Altering membrane phospholipid composition to increase permeability and glutamate efflux
Explanation:
Biotin is a cofactor for acetyl-CoA carboxylase in fatty acid synthesis. Limiting it (or adding surfactants) changes membrane lipids, increasing permeability so intracellular glutamate leaks out rather than accumulating.
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45Commercial vitamin B12 (cobalamin) is produced almost exclusively by microbial fermentation rather than chemical synthesis because:
vitamins
Hard
A.Microbes are the only organisms that can incorporate cobalt into porphyrins
B.Its complex corrin ring with cobalt coordination makes chemical synthesis economically impractical
C.Plants are the only viable alternative but yields are too low
D.Chemical synthesis produces only the biologically inactive enantiomer
Correct Answer: Its complex corrin ring with cobalt coordination makes chemical synthesis economically impractical
Explanation:
B12 has an elaborate corrin ring system; total chemical synthesis takes ~70 steps and is prohibitively costly. Bacteria such as Pseudomonas denitrificans and Propionibacterium produce it efficiently.
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46Glucose isomerase is used to make high-fructose corn syrup. Which property makes its immobilization particularly advantageous for continuous industrial operation?
enzymes
Hard
A.Enzyme reuse over long periods and easy separation from product enhance process economics
B.Immobilization converts the reaction from endergonic to exergonic
C.It allows the reaction to proceed without any added metal cofactor
D.Immobilization increases the equilibrium yield of fructose beyond 50%
Correct Answer: Enzyme reuse over long periods and easy separation from product enhance process economics
Explanation:
Immobilized glucose isomerase can be used continuously in packed-bed reactors for months, allowing repeated use and simple product recovery. It does not change the reaction equilibrium (~50:50 glucose:fructose).
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47A key advantage of using whole-cell biotransformation over isolated enzymes for a multi-step redox reaction requiring NAD(P)H is:
biotransformation
Hard
A.Whole cells always give higher reaction rates than purified enzymes
B.Whole cells eliminate the need for stereospecificity in the product
C.The cell regenerates the expensive cofactor internally via its own metabolism
D.Isolated enzymes cannot catalyze redox reactions at all
Correct Answer: The cell regenerates the expensive cofactor internally via its own metabolism
Explanation:
Cofactor-dependent reactions require stoichiometric NAD(P)H, which is costly to supply. Whole cells continuously regenerate cofactors through metabolism, making them ideal for cofactor-requiring biotransformations.
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48In dark fermentation for biohydrogen, the theoretical maximum yield when acetate is the sole end product is 4 mol H per mol glucose, yet practical yields are lower. The main biochemical reason is:
biohydrogen
Hard
A.A fraction of glucose is diverted to reduced by-products like butyrate and ethanol
B.Glucose cannot be fully oxidized under anaerobic conditions
C.Acetate production consumes rather than releases hydrogen
D.Hydrogenase enzymes are irreversibly inactivated by glucose
Correct Answer: A fraction of glucose is diverted to reduced by-products like butyrate and ethanol
Explanation:
The 4 mol H yield assumes all carbon flows to acetate. In practice, formation of more reduced products (butyrate, ethanol, lactate) diverts electrons away from H, lowering the realized yield toward ~2 mol/mol.
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49During cheese ripening, why is a secondary starter such as Penicillium roqueforti deliberately introduced in blue cheeses?
food industry
Hard
A.It ferments residual lactose to prevent spoilage
B.It produces lactic acid needed for whey separation
C.Its lipases and proteases generate methyl ketones and peptides that create characteristic flavor
D.It lowers pH rapidly to coagulate casein into curds
Correct Answer: Its lipases and proteases generate methyl ketones and peptides that create characteristic flavor
Explanation:
P. roqueforti secretes lipolytic and proteolytic enzymes. Lipases release fatty acids that are converted to methyl ketones (blue-cheese aroma), while proteases develop flavor peptides. Curd coagulation is done earlier by rennet/starter acid.
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50Recombinant human insulin produced in E. coli originally required separate expression of the A and B chains. A major processing challenge unique to this system compared to eukaryotic hosts was:
industrial microorganism for health industry
Hard
A.The inability of E. coli to translate human mRNA codons
B.Loss of the signal peptide during secretion
C.The need for in vitro disulfide bond formation because E. coli cytoplasm is reducing
D.Contamination of product with bacterial peptidoglycan
Correct Answer: The need for in vitro disulfide bond formation because E. coli cytoplasm is reducing
Explanation:
The reducing cytoplasm of E. coli prevents proper disulfide bond formation. Chains accumulate in inclusion bodies and must be solubilized, refolded, and oxidatively joined in vitro to form active insulin.
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51In a submerged aerobic fermentation, the volumetric oxygen transfer rate is given by . To sustain a high-density culture without oxygen limitation, which change most directly increases without altering the driving force ?
microbial fermentations
Hard
A.Reducing the inoculum size to lower total oxygen uptake
B.Raising the fermentation temperature to increase oxygen demand
C.Adding antifoam to decrease surface tension only
D.Increasing impeller speed and aeration to raise
Correct Answer: Increasing impeller speed and aeration to raise
Explanation:
(mass transfer coefficient) rises with better mixing and gas dispersion. Boosting agitation and airflow increases , raising OTR independent of the concentration gradient term.
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52To overproduce L-lysine, industrial strains of C. glutamicum carry a feedback-resistant aspartokinase. Why is this modification essential?
B.Wild-type aspartokinase is concertedly inhibited by lysine plus threonine, blocking flux to lysine
C.Aspartokinase converts lysine back into aspartate, reducing yield
D.Aspartokinase is the only enzyme able to fix ammonia into lysine
Correct Answer: Wild-type aspartokinase is concertedly inhibited by lysine plus threonine, blocking flux to lysine
Explanation:
In C. glutamicum, aspartokinase is subject to concerted (synergistic) feedback inhibition by lysine and threonine together. A feedback-resistant enzyme keeps the pathway open, allowing lysine to accumulate.
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53Side-chain cleavage of sterols such as cholesterol to yield androstenedione (AD) using Mycobacterium mutants relies on blocking which pathway?
steroids
Hard
A.The glycolytic pathway to force sterol as sole carbon source
B.The sterol esterification pathway to increase solubility
C.The 9-hydroxylase/steroid ring degradation pathway to prevent complete mineralization
D.The cholesterol uptake transporters to limit substrate entry
Correct Answer: The 9-hydroxylase/steroid ring degradation pathway to prevent complete mineralization
Explanation:
Wild-type mycobacteria degrade sterols completely. Mutants blocked in 9-hydroxylase (KstD/ring cleavage) cleave only the side chain, accumulating valuable C19 synthons like AD/ADD instead of mineralizing the nucleus.
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54Detergent proteases (subtilisins) are engineered for improved performance. Substituting the oxidation-sensitive methionine near the active site (e.g., Met222) with a non-oxidizable residue primarily improves:
enzymes
Hard
A.Stability in the presence of bleach and oxidizing agents in detergent formulations
B.Thermal denaturation temperature above 90°C
C.Substrate binding affinity toward lipid stains
D.The enzyme's catalytic turnover number at neutral pH
Correct Answer: Stability in the presence of bleach and oxidizing agents in detergent formulations
Explanation:
Met222 lies near the catalytic serine and is oxidized by bleach, inactivating the enzyme. Replacing it with a non-oxidizable residue (e.g., Ala or Ser) confers oxidative stability suited to bleach-containing detergents.
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55In the microbial synthesis of riboflavin (vitamin B2) by Ashbya gossypii, addition of excess iron to the medium tends to:
vitamins
Hard
A.Increase riboflavin yield by serving as an enzyme cofactor
B.Convert riboflavin into FAD, boosting activity
C.Have no measurable effect on riboflavin titers
D.Decrease riboflavin overproduction, as flavinogenesis is enhanced under iron limitation
Correct Answer: Decrease riboflavin overproduction, as flavinogenesis is enhanced under iron limitation
Explanation:
In flavinogenic organisms, riboflavin overproduction is a response to iron deficiency. Excess iron represses flavinogenesis, so low-iron media favor high riboflavin titers.
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56A secondary metabolite shows a classic trophophase–idiophase pattern. Which statement best characterizes the idiophase?
industrial microorganisms and product formation
Hard
A.Product formation is largely uncoupled from growth and peaks after the growth phase declines
B.Product and biomass accumulate at proportional rates simultaneously
C.Substrate is consumed only for maintenance, with no product made
D.It is the phase of maximum specific growth rate
Correct Answer: Product formation is largely uncoupled from growth and peaks after the growth phase declines
Explanation:
Secondary metabolites (idiolites) are made in the idiophase, which follows the growth-associated trophophase. Their synthesis is non-growth-associated, often triggered when a nutrient becomes limiting.
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57A biotransformation must convert a prochiral ketone to a single (S)-alcohol enantiomer at >99% ee. Why is a ketoreductase-based microbial process often preferred over chemical reduction?
biotransformation
Hard
A.Enzymes always give racemic mixtures that are easier to separate
B.Microbial reduction requires no cofactor or energy input
C.Chemical reduction cannot reduce ketones to alcohols at all
D.Enzymatic reduction provides high enantioselectivity under mild conditions without heavy-metal catalysts
Correct Answer: Enzymatic reduction provides high enantioselectivity under mild conditions without heavy-metal catalysts
Explanation:
Ketoreductases deliver hydride stereospecifically, yielding one enantiomer with high ee under mild aqueous conditions. Chemical asymmetric reduction typically needs chiral metal catalysts and harsher conditions.
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58Coupling dark fermentation with photofermentation in a two-stage biohydrogen system improves overall yield because photofermentative bacteria:
biohydrogen
Hard
A.Ferment glucose anaerobically without generating any acids
B.Use light energy to convert dark-fermentation organic acids into additional H and CO
C.Consume the H produced in the first stage to grow faster
D.Directly split water into hydrogen and oxygen using photosystem II
Correct Answer: Use light energy to convert dark-fermentation organic acids into additional H and CO
Explanation:
Dark fermentation leaves energy-rich organic acids (acetate, butyrate). Purple non-sulfur bacteria (e.g., Rhodobacter) use light and nitrogenase to convert these acids into more H, raising total yield toward the theoretical 12 mol/mol glucose.
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59In sourdough fermentation, the characteristic flavor and leavening arise from a stable consortium of lactic acid bacteria and yeasts. Why do the yeasts often coexist rather than being outcompeted by the acid-producing LAB?
food industry
Hard
A.Yeasts and LAB use identical substrates but at different times of day
B.Yeasts kill the LAB by secreting ethanol at toxic levels
C.LAB depend on yeast-produced oxygen for growth
D.Many sourdough yeasts are maltose-negative, leaving maltose for LAB while yeasts use glucose
Correct Answer: Many sourdough yeasts are maltose-negative, leaving maltose for LAB while yeasts use glucose
Explanation:
Metabolic niche partitioning stabilizes the consortium: maltose-negative yeasts (e.g., some Kazachstania) consume glucose, while heterofermentative LAB (e.g., Fructilactobacillus sanfranciscensis) use maltose, minimizing direct competition.
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60Statins such as lovastatin are produced by Aspergillus terreus as secondary metabolites. When engineering higher titers, why is precursor supply of acetyl-CoA and malonyl-CoA a critical bottleneck?
industrial microorganism for health industry
Hard
A.Acetyl-CoA inhibits the statin biosynthetic gene cluster directly
B.Statins are peptides requiring amino acid precursors, not acetyl units
C.Malonyl-CoA is only needed for the fungal cell wall, not the statin
D.Lovastatin is a polyketide assembled from acetate/malonate units by PKS enzymes
Correct Answer: Lovastatin is a polyketide assembled from acetate/malonate units by PKS enzymes
Explanation:
Lovastatin is a polyketide built by polyketide synthases that iteratively condense acetyl-CoA and malonyl-CoA extender units. Adequate precursor flux is therefore essential to boost titers.
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