Unit 1: Laboratory Practices and Microbial Techniques - Practice Quiz

PTH215 — Biopesticides And Biofertilizers In Plant Disease Management 60 Questions
0 Correct 0 Wrong 60 Left
0/60

1 What is the main purpose of sterilization in a microbiology laboratory?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Easy
A. To change the culture color
B. To increase microbial growth
C. To remove unwanted microorganisms
D. To reduce nutrient content

2 Which instrument is commonly used for sterilizing culture media with steam under pressure?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Easy
A. Spectrophotometer
B. Incubator
C. Autoclave
D. Centrifuge

3 What is a pure microbial culture?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Easy
A. A culture containing one microorganism type
B. A culture containing several microorganism types
C. A culture containing only dead cells
D. A culture containing many soil particles

4 Which technique is commonly used to obtain isolated microbial colonies on solid media?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Easy
A. Dry heating technique
B. Streak plate technique
C. Filtration weighing technique
D. Boiling water technique

5 What is the function of agar in many microbiological culture media?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Easy
A. To kill all bacteria
B. To measure cell size
C. To solidify the medium
D. To provide laboratory lighting

6 Why are aseptic techniques used during microbial culture handling?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Easy
A. To prevent contamination
B. To increase evaporation
C. To change the pH quickly
D. To remove all nutrients

7 What does an incubator provide for growing microorganisms?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Easy
A. High-speed separation
B. Mechanical grinding
C. Controlled temperature
D. Chemical staining

8 Which type of medium contains known and measured chemical components?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Easy
A. Natural medium
B. Waste medium
C. Mixed medium
D. Defined medium

9 What is inoculation in microbial production?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Easy
A. Measuring the weight of glassware
B. Adding a microbial culture to a medium
C. Removing water from a medium
D. Filtering air from a room

10 Which microbial group is commonly used as a nitrogen-fixing biofertilizer?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Easy
A. Trichoderma
B. Rhizobium
C. Bacillus
D. Penicillium

11 What is the main role of a carrier material in a biofertilizer formulation?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Easy
A. To destroy beneficial cells
B. To prevent root contact
C. To support microbial survival
D. To increase soil salinity

12 Which property is desirable in a carrier used for biofertilizer production?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Easy
A. Very high toxicity
B. Good moisture retention
C. Complete absence of nutrients
D. Rapid destruction of cells

13 What is a biopesticide?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Easy
A. A synthetic plastic growth container
B. A pest-control product from biological sources
C. A chemical used to sterilize glassware
D. A fertilizer made only from minerals

14 Which microorganism is widely used in the production of some fungal biopesticides?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Easy
A. Beauveria bassiana
B. Nitrosomonas europaea
C. Azotobacter chroococcum
D. Rhizobium leguminosarum

15 What is the purpose of serial dilution in microbial laboratory work?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Easy
A. To remove oxygen from the incubator
B. To sterilize all culture media
C. To reduce cell concentration for counting
D. To increase the size of microbial cells

16 What does a colony-forming unit, or CFU, generally represent?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Easy
A. A single piece of laboratory glass
B. A measured volume of sterile water
C. A viable cell or cell group producing a colony
D. A unit of culture media acidity

17 Which method is used to separate microbial cells from a liquid suspension according to density?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Easy
A. Incubation
B. Centrifugation
C. Titration
D. Streaking

18 Why is pH important in microbial culture media?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Easy
A. pH identifies every microbial species
B. pH replaces the need for nutrients
C. Microorganisms require a suitable pH for growth
D. pH prevents all cell division

19 What is the purpose of maintaining a stock culture?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Easy
A. To replace all production media
B. To preserve a microbial strain
C. To remove the strain's useful traits
D. To increase laboratory contamination

20 Which practice helps confirm that a biofertilizer contains the intended microorganism?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Easy
A. Leaving containers open
B. Mixing it with unknown cultures
C. Checking its identity and purity
D. Storing it in direct sunlight

21 A technician must prepare a pure Trichoderma inoculum from a soil sample containing several fungi. Which procedure is most appropriate?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Medium
A. Centrifuge the soil suspension and preserve the complete microbial pellet
B. Mix the soil with carrier material and incubate it without further testing
C. Perform serial dilution, plate on selective medium, and subculture an isolated colony
D. Incubate the soil directly in sterile water and use the resulting suspension

22 During the production of a bacterial biofertilizer, microbial growth stops earlier than expected because the broth becomes strongly acidic. Which corrective action is most suitable for the next batch?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Medium
A. Reduce aeration to prevent evaporation from the broth
B. Increase inoculum age before adding it to the broth
C. Increase the incubation temperature throughout fermentation
D. Add a suitable buffer to maintain the required pH

23 A culture medium must be sterilized without degrading a heat-sensitive vitamin solution. Which method should be used for the vitamin solution?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Medium
A. Pass it through a sterile membrane filter and add it aseptically
B. Expose it to ultraviolet light and add it on the open bench
C. Boil it repeatedly and add it before inoculation
D. Autoclave it at with the basal medium

24 A laboratory needs of a dilution from a microbial suspension. Which preparation is correct?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Medium
A. Mix of suspension with of diluent
B. Mix of suspension with of diluent
C. Mix of suspension with of diluent
D. Mix of suspension with of diluent

25 Plate counts from a biofertilizer sample are 42 colonies at dilution and 5 colonies at dilution, using per plate. Which result should be used to estimate viable count?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Medium
A. Reject both plates because neither contains at least 100 colonies
B. Use the plate because its count is within the countable range
C. Average both plates because all colony counts have equal reliability
D. Use the plate because higher dilutions always give better estimates

26 A broth culture used for biofertilizer production contains . What viable count is expected after a tenfold dilution?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Medium
A.
B.
C.
D.

27 A bacterial biopesticide culture is growing slowly in a fermenter despite having adequate nutrients and optimum temperature. Dissolved oxygen is nearly zero. What adjustment is most appropriate?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Medium
A. Increase agitation or sterile-air flow into the fermenter
B. Decrease agitation and seal the fermenter more tightly
C. Transfer the culture immediately into sealed storage bottles
D. Increase the concentration of solid carrier in the broth

28 Why is an actively growing log-phase culture generally preferred as the inoculum for large-scale fermentation?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Medium
A. Its cells are metabolically active and adapt rapidly to fresh medium
B. Its cells have stopped dividing and require fewer nutrients
C. Its cells are mostly dead and release useful metabolites quickly
D. Its cells remain dormant and prevent changes in fermentation pH

29 After autoclaving a carrier material, a biological indicator containing resistant bacterial spores still shows growth. What should the technician conclude?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Medium
A. The indicator is unsuitable because spores should survive autoclaving
B. The sterilization cycle failed and the carrier must be reprocessed
C. The carrier can be used if the target inoculum grows rapidly
D. The carrier is sterile because ordinary cells were probably destroyed

30 Several bacterial colonies with different colors and shapes appear on a quality-control plate from a product expected to contain one strain. What is the best interpretation?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Medium
A. The carrier has improved the expression of several colony types
B. The production strain has entered a normal stationary phase
C. The inoculum concentration is too high but remains microbiologically pure
D. The product likely contains contamination by other microorganisms

31 Which laboratory setup best reduces contamination while transferring a pure microbial culture into sterile production medium?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Medium
A. Work beside an incubator using unsterilized gloves and closed plates
B. Work on an open bench after adding antibiotics to every medium
C. Work in a laminar-flow cabinet using disinfected and sterile materials
D. Work near an open window after wiping the bench with water

32 A peat-based Rhizobium formulation loses viability rapidly during storage because the carrier dries out. Which modification is most appropriate?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Medium
A. Adjust carrier moisture to a suitable level and use moisture-resistant packaging
B. Replace the pure inoculum with an uncharacterized soil microbial mixture
C. Increase incubation temperature and expose the package to direct sunlight
D. Remove all carrier moisture and store the product in an open container

33 A technician measures high turbidity in a bacterial fermentation broth, but plate counts show low viable numbers. Which explanation is most likely?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Medium
A. The plate-count method detects cells that cannot form colonies
B. The viable count must always be higher than the turbidity estimate
C. The broth contains no cells because turbidity measures only nutrients
D. The spectrophotometer detects both living and nonviable cells

34 A fungal biopesticide is being produced by solid-state fermentation. Which condition is most important for obtaining uniform sporulation throughout the substrate?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Medium
A. Continuous exposure of the substrate to intense ultraviolet radiation
B. Elimination of all pore spaces by tightly compacting the substrate
C. Complete submergence of the substrate under continuously stirred water
D. Uniform moisture, aeration, and inoculum distribution in the substrate

35 In a dual-culture assay, Trichoderma grows toward a plant pathogen and creates a clear inhibition zone between the colonies. What does this result most directly indicate?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Medium
A. Trichoderma requires the pathogen as its only nutritional substrate
B. Trichoderma may produce diffusible compounds that suppress the pathogen
C. The two fungi are compatible and should be formulated together
D. The pathogen has increased the growth rate of Trichoderma

36 A phosphate-solubilizing bacterial isolate forms a clear halo around its colony on an insoluble phosphate medium. What is the most appropriate conclusion?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Medium
A. The isolate can mobilize insoluble phosphate under the test conditions
B. The isolate produces spores that dissolve the agar medium
C. The isolate is free from contamination under all growth conditions
D. The isolate fixes atmospheric nitrogen under the test conditions

37 A nitrogen-fixing bacterial isolate grows on nitrogen-free medium, but a control plate inoculated with a known non-fixer also shows growth. What should be done first?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Medium
A. Accept both organisms as nitrogen fixers based on visible growth
B. Check the medium preparation and repeat the assay with proper controls
C. Increase the nitrogen content of the medium before repeating the test
D. Discard the test isolate while accepting the non-fixer as the control

38 A newly produced Bacillus-based biopesticide has a high viable count but gives weak disease control. Which additional quality test is most relevant?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Medium
A. Measure only the color intensity of the final package
B. Record only the room temperature during product labeling
C. Determine only the total weight of the carrier material
D. Test antagonistic activity against the target pathogen

39 When scaling a bacterial culture from a flask to a fermenter, the technician adds a very small amount of old stationary-phase inoculum. The fermenter shows a long lag phase. Which change is most likely to improve the process?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Medium
A. Stop aeration during the initial period of bacterial growth
B. Reduce medium nutrients so the cells adapt more gradually
C. Use a larger inoculum prepared from an actively growing culture
D. Use a smaller inoculum prepared from a refrigerated old culture

40 A formulated microbial product passes viable-count testing immediately after production. Which study is needed to assign a scientifically supported expiry date?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Medium
A. Monitor viability and efficacy at planned intervals under defined storage conditions
B. Store one package indefinitely without performing scheduled measurements
C. Inspect colony color immediately and assume it remains unchanged
D. Measure package weight once and use it as the only stability criterion

41 A microbial inoculant production batch shows a normal total viable count, but repeated plating on a selective medium reveals an increasing proportion of non-target colonies. Which investigation is most appropriate before releasing the batch?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Hard
A. Increase the incubation temperature to favor the target organism
B. Extend incubation until the target colonies become visually larger
C. Repeat enumeration using target-specific morphology and molecular confirmation
D. Add additional nutrients to restore target-organism dominance

42 During serial dilution plating, the dilution gives 168 colonies from , while the dilution gives 1,420 colonies. Which result should be used to estimate the original concentration, assuming the plates were prepared correctly?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Hard
A. from the plate
B. from the plate
C. from the plate
D. from the plate

43 A nitrogen-fixing bacterial inoculant loses viability after sterilized carrier material is mixed with the culture. The carrier has a low water potential and contains residual peroxide from processing. Which corrective sequence is most defensible?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Hard
A. Add antibiotic, then increase carrier particle size
B. Neutralize residual oxidant, adjust moisture, then reassess viability
C. Reduce inoculum density, then expose the carrier to ultraviolet light
D. Increase drying temperature, then raise the inoculum pH

44 A fungal biopesticide culture produces abundant biomass but very few viable conidia. Dissolved oxygen is adequate, and microscopy shows extensive hyphal growth. Which process change is most likely to improve propagule production?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Hard
A. Provide a controlled nutrient limitation or solid-state sporulation phase
B. Increase agitation until all hyphae remain fully dispersed
C. Reduce illumination while maintaining exponential growth
D. Maintain maximum nutrient availability throughout cultivation

45 Two bacterial strains each promote plant growth when tested separately, but their mixture performs poorly because one strain suppresses the other in the carrier. Which experiment best distinguishes true incompatibility from an inoculum-ratio artifact?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Hard
A. Replace both strains with heat-killed cells before mixing
B. Measure plant growth without determining either strain's population
C. Compare several strain ratios while monitoring viable counts of each strain
D. Test the mixture only at the highest total cell concentration

46 A suspected contaminant grows slowly and is missed by routine endpoint inspection of a biofertilizer culture. Which quality-control design provides the strongest early warning without relying on a single indicator?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Hard
A. Rely on the culture's expected color and characteristic odor
B. Increase the final product's preservative concentration
C. Combine time-series microscopy, differential plating, and identity testing
D. Use only turbidity measurements at the end of fermentation

47 A batch of phosphate-solubilizing bacteria gives a large clear halo on agar but fails to increase available phosphorus in soil. Which interpretation is most scientifically justified?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Hard
A. The strain must be a fungal contaminant despite its bacterial morphology
B. The soil phosphorus concentration is irrelevant to the assay outcome
C. The halo assay proves the strain is ineffective in soil
D. The halo may reflect agar diffusion and does not predict soil performance alone

48 A bacterial biopesticide retains high CFU counts after storage, but its insecticidal activity declines sharply. Which additional quality attribute should be prioritized?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Hard
A. Colony size on a nonselective nutrient agar
B. Increase in culture turbidity before formulation
C. Retention of the specific virulence determinant or bioactive metabolite
D. Total protein concentration without biological fractionation

49 A sterilization validation test shows no growth from one biological indicator placed near the steam inlet, but growth occurs in an indicator located in a densely packed carrier load. What is the correct conclusion?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Hard
A. The load has a penetration or cold-spot problem requiring cycle investigation
B. The positive indicator is irrelevant because the carrier was preheated
C. The carrier should be inoculated with a larger target culture
D. The entire sterilization cycle is validated by the negative indicator

50 A culture's optical density increases after a formulation preservative is added, but viable counts decrease. Which explanation best accounts for both observations?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Hard
A. The optical-density instrument automatically converts absorbance to CFU
B. The preservative increases cell division while reducing light scattering
C. The preservative causes cell aggregation or debris formation while damaging viability
D. The viable-count assay detects only spores and excludes vegetative cells

51 A production strain is repeatedly subcultured and gradually loses its biocontrol activity while retaining its colony morphology. Which laboratory practice would best reduce this risk?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Hard
A. Create a characterized master cell bank and minimize working-bank passages
B. Increase incubation time during every transfer
C. Select colonies only by their growth rate on rich medium
D. Use unlimited serial transfers to maintain physiological activity

52 During scale-up, agitation is increased so that the impeller tip speed remains constant, but oxygen limitation appears in the larger vessel. Which factor most likely explains the failure?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Hard
A. Constant tip speed guarantees equivalent oxygen transfer
B. The larger vessel necessarily contains fewer metabolically active cells
C. Oxygen transfer depends on parameters such as , power input, and vessel geometry
D. Agitation affects mixing but cannot affect oxygen availability

53 A biofertilizer strain grows well in a laboratory medium but fails to establish on seed after inoculation. The inoculant has an adequate CFU count at manufacture. Which test most directly addresses the likely failure?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Hard
A. Assess adhesion, desiccation tolerance, and survival on treated seed
B. Measure only the culture's final optical density
C. Increase the agar concentration used for strain maintenance
D. Determine the carrier's color before inoculation

54 A microbial product is intended for use with a fungicidal seed treatment. The product works alone but fails in combination. Which validation strategy is most appropriate?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Hard
A. Use a factorial design testing each treatment alone and their combination
B. Evaluate compatibility by observing the color of the seed coating
C. Compare only the fungicide-treated control with untreated soil
D. Test the microbial product only at twice its recommended dose

55 A plate count of a spore-forming biopesticide is unexpectedly low, although microscopy shows many intact spores. Which method comparison would best determine whether spores are viable but dormant or genuinely nonviable?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Hard
A. Use a validated heat-activation step followed by germination and CFU assays
B. Replace all plates with an optical-density measurement
C. Count spores microscopically and report the result as CFU
D. Increase the agar color contrast to improve colony visibility

56 A formulation shows acceptable viability immediately after production but fails the shelf-life requirement because viability declines rapidly at high water activity. Which formulation change is most rational?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Hard
A. Remove all protective excipients to simplify the formulation
B. Increase free water to reduce osmotic stress during storage
C. Reduce water activity while preserving a protective microenvironment
D. Raise storage temperature to accelerate physiological adaptation

57 A plant-growth assay shows improved biomass in inoculated plants, but the uninoculated control has unusually poor growth and high variability. What is the most important next step before attributing the effect to the biofertilizer?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Hard
A. Replace biomass measurement with visual scoring only
B. Increase the inoculum dose in all treatment groups
C. Verify experimental controls, substrate uniformity, and nutrient status
D. Exclude the lowest-performing control plants from analysis

58 A bacterial isolate inhibits a pathogen on dual-culture plates, but inhibition disappears when the assay medium is buffered near neutral pH. Which conclusion is most defensible?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Hard
A. The pathogen was certainly misidentified on the original plate
B. The isolate must be producing a volatile compound exclusively
C. Buffering proves the isolate cannot suppress pathogens in any environment
D. The isolate's effect may depend on acidification rather than a stable antibiotic

59 A microbial count is highly reproducible between technical replicates but differs substantially between independent production batches. Which quality-improvement action is most appropriate?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Hard
A. Increase the number of technical replicates in only one batch
B. Report the technical replicate precision as the batch specification
C. Average all batches without investigating their differences
D. Identify and control batch-level factors using a process capability study

60 A biopesticide candidate produces a clear inhibition zone against a pathogen, but the zone is absent when the candidate is separated from the pathogen by a sealed barrier that permits only volatile compounds. What does this result indicate?

Laboratory practices and microbial techniques used in the production of biofertilizers and biopesticides Hard
A. The activity is certainly caused by direct nutrient competition
B. The pathogen is resistant to all soluble antimicrobial compounds
C. The activity is probably mediated by a nonvolatile diffusible compound
D. The candidate requires physical contact for every form of activity