Unit 8: Production Technology and Quality Control of Biofertilizers - Practice Quiz

PTH215 — Biopesticides And Biofertilizers In Plant Disease Management 60 Questions
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1 What is the main purpose of preparing a pure microbial culture during biofertilizer production?

Production technology of microbial biofertilizers using standard laboratory methods Easy
A. To change the color of the final product
B. To reduce the nutrient content of the medium
C. To increase the moisture content of the carrier
D. To obtain the desired microorganism without contaminants

2 Which equipment is commonly used to sterilize culture media in a laboratory?

Production technology of microbial biofertilizers using standard laboratory methods Easy
A. Microscope
B. Autoclave
C. Colorimeter
D. Centrifuge

3 What is an inoculum in microbial biofertilizer production?

Production technology of microbial biofertilizers using standard laboratory methods Easy
A. A culture used to start microbial growth
B. A package used to store glassware
C. A dye used to stain the carrier
D. A chemical used to stop microbial growth

4 Which vessel is commonly used for large-scale multiplication of biofertilizer microorganisms?

Production technology of microbial biofertilizers using standard laboratory methods Easy
A. Desiccator
B. Petri dish
C. Fermenter
D. Burette

5 Why is aseptic handling important during microbial biofertilizer production?

Production technology of microbial biofertilizers using standard laboratory methods Easy
A. It increases the weight of the carrier
B. It lowers the volume of the culture
C. It changes the shape of the package
D. It prevents unwanted microbial contamination

6 What is the main function of a carrier material in a carrier-based biofertilizer?

Production technology of microbial biofertilizers using standard laboratory methods Easy
A. To replace the microbial inoculum completely
B. To remove all moisture from the product
C. To destroy microorganisms before application
D. To support and deliver viable microorganisms

7 Which material is commonly used as a carrier for microbial biofertilizers?

Production technology of microbial biofertilizers using standard laboratory methods Easy
A. Peat
B. Plastic
C. Copper
D. Glass

8 Why is a suitable nutrient medium used during biofertilizer production?

Production technology of microbial biofertilizers using standard laboratory methods Easy
A. To label the product before distribution
B. To support the growth of the selected microorganism
C. To measure the weight of the carrier
D. To seal the final package against moisture

9 What is done after sufficient microbial growth is obtained for a carrier-based biofertilizer?

Production technology of microbial biofertilizers using standard laboratory methods Easy
A. The culture is discarded into the laboratory sink
B. The culture is mixed with the prepared carrier
C. The culture is heated until all cells die
D. The culture is replaced with sterile water

10 What is the main purpose of sealing biofertilizer packages properly?

Production technology of microbial biofertilizers using standard laboratory methods Easy
A. To sterilize the product after packing
B. To measure microbial growth directly
C. To identify the organism by staining
D. To protect the product during storage

11 Which quality control parameter indicates the number of living microorganisms in a biofertilizer?

Quality control parameters of microbial biofertilizers using standard laboratory methods Easy
A. Viable cell count
B. Carrier odor
C. Package color
D. Label size

12 Which unit is commonly used to express the viable microbial count in a biofertilizer?

Quality control parameters of microbial biofertilizers using standard laboratory methods Easy
A. CFU per gram
B. Joules per liter
C. Volts per gram
D. Meters per second

13 Which laboratory method is commonly used to estimate viable microorganisms in a biofertilizer sample?

Quality control parameters of microbial biofertilizers using standard laboratory methods Easy
A. Serial dilution and plate counting
B. Paper chromatography and drying
C. Titration and filtration
D. Distillation and condensation

14 What does a contamination test check in a microbial biofertilizer?

Quality control parameters of microbial biofertilizers using standard laboratory methods Easy
A. The brightness of the package label
B. The presence of unwanted microorganisms
C. The weight of the empty container
D. The market price of the product

15 Which instrument is used to measure the pH of a biofertilizer sample accurately?

Quality control parameters of microbial biofertilizers using standard laboratory methods Easy
A. Hemocytometer
B. pH meter
C. Thermometer
D. Spectroscope

16 Why is the moisture content of a carrier-based biofertilizer monitored?

Quality control parameters of microbial biofertilizers using standard laboratory methods Easy
A. It identifies the microorganism at species level
B. It determines the color of microbial colonies
C. It affects microbial survival and product stability
D. It measures the thickness of the package

17 What does the shelf life of a microbial biofertilizer describe?

Quality control parameters of microbial biofertilizers using standard laboratory methods Easy
A. The time needed to sterilize the culture medium
B. The period required to print the product label
C. The time taken to weigh the empty package
D. The period for which the product remains usable

18 Why is the identity of a biofertilizer microorganism checked during quality control?

Quality control parameters of microbial biofertilizers using standard laboratory methods Easy
A. To reduce the volume of the culture medium
B. To determine the price of the final package
C. To confirm that the correct strain is present
D. To increase the moisture of the carrier

19 Which laboratory observation can help check the purity of a microbial culture?

Quality control parameters of microbial biofertilizers using standard laboratory methods Easy
A. Package position on a storage shelf
B. Printed price on the product label
C. Volume of water in the autoclave
D. Colony appearance on an agar plate

20 What information should be checked on a microbial biofertilizer label as part of quality control?

Quality control parameters of microbial biofertilizers using standard laboratory methods Easy
A. Laboratory wall color and room number
B. Shop address, shelf height, and floor type
C. Worker height, uniform size, and shoe color
D. Product name, batch number, and expiry date

21 Why is a pure mother culture used to initiate the production of a microbial biofertilizer?

Production technology of microbial biofertilizers using standard laboratory methods Medium
A. To increase the viscosity of the medium
B. To eliminate the need for sterilization
C. To reduce the incubation temperature
D. To maintain the identity and performance of the inoculant strain

22 A liquid culture medium becomes cloudy after sterilization but before inoculation. What is the most appropriate action?

Production technology of microbial biofertilizers using standard laboratory methods Medium
A. Inoculate it immediately
B. Reduce the pH before inoculation
C. Treat it as potentially contaminated and discard it
D. Add more nutrients to the medium

23 Which factor is most important when selecting a carrier material for a solid biofertilizer formulation?

Production technology of microbial biofertilizers using standard laboratory methods Medium
A. High salt concentration
B. Non-toxic nature and suitable moisture retention
C. Strong antimicrobial activity
D. Low water-holding capacity

24 During preparation of a carrier-based inoculant, the carrier is sterilized before adding the microbial culture primarily to:

Production technology of microbial biofertilizers using standard laboratory methods Medium
A. Raise the viable cell count directly
B. Improve the color of the final product
C. Remove competing microorganisms
D. Increase the carrier particle size

25 A bacterial culture has a high optical density but a low viable count. What does this result most likely indicate?

Production technology of microbial biofertilizers using standard laboratory methods Medium
A. Most cells are alive and actively multiplying
B. The culture contains cells or debris that are not viable
C. The inoculum is completely free of contamination
D. The medium has no suspended particles

26 Why is serial dilution followed by plating commonly used during microbial biofertilizer production?

Production technology of microbial biofertilizers using standard laboratory methods Medium
A. To prevent all microbial growth
B. To estimate viable microbial population
C. To increase the culture's nutrient concentration
D. To determine the carrier's water content

27 If 0.1 mL of a dilution produces 86 colonies, what is the estimated concentration of the original culture?

Production technology of microbial biofertilizers using standard laboratory methods Medium
A. CFU/mL
B. CFU/mL
C. CFU/mL
D. CFU/mL

28 A production culture is harvested before entering the late stationary phase mainly because early harvesting can provide:

Production technology of microbial biofertilizers using standard laboratory methods Medium
A. Complete removal of all metabolites
B. More viable and physiologically active cells
C. Permanent resistance to temperature stress
D. Maximum carrier sterilization

29 Why should the pH of a microbial production medium be monitored during fermentation?

Production technology of microbial biofertilizers using standard laboratory methods Medium
A. pH determines the number of carrier particles
B. pH affects growth and metabolic activity
C. pH prevents the formation of all spores
D. pH replaces the need for inoculum testing

30 What is the main purpose of using an inoculum of known age and concentration in a production run?

Production technology of microbial biofertilizers using standard laboratory methods Medium
A. To eliminate the carrier from formulation
B. To make sterilization unnecessary
C. To improve batch-to-batch consistency
D. To increase contamination deliberately

31 Which quality-control test best verifies that a biofertilizer contains the intended microbial strain rather than only viable microorganisms?

Quality control parameters of microbial biofertilizers using standard laboratory methods Medium
A. Moisture determination
B. Strain identity testing
C. pH measurement
D. Package weight measurement

32 A biofertilizer sample meets its initial viable-count specification but fails after storage. Which quality parameter was most clearly inadequate?

Quality control parameters of microbial biofertilizers using standard laboratory methods Medium
A. Sterilization time of empty glassware
B. Shelf-life stability
C. Container label size
D. Initial culture color

33 Why are uninoculated media controls included in microbial quality testing?

Quality control parameters of microbial biofertilizers using standard laboratory methods Medium
A. To identify the carrier's nutrient value
B. To confirm that the test media are sterile
C. To increase the sample's viable count
D. To accelerate colony development

34 A plate from a dilution series contains more than 300 colonies. Why is it generally unsuitable for accurate enumeration?

Quality control parameters of microbial biofertilizers using standard laboratory methods Medium
A. The agar becomes chemically sterile
B. The dilution factor becomes exactly zero
C. All colonies must be genetically identical
D. Colonies may merge and be difficult to count

35 Which observation most strongly suggests contamination in a supposedly pure bacterial biofertilizer culture?

Quality control parameters of microbial biofertilizers using standard laboratory methods Medium
A. A stable pH within the target range
B. Different colony types appearing on the same isolation plate
C. Uniform colonies with the expected morphology
D. A viable count within specification

36 A product has an acceptable CFU count but contains a microorganism that inhibits the target strain. Which quality requirement has failed?

Quality control parameters of microbial biofertilizers using standard laboratory methods Medium
A. Microbial purity
B. Label alignment
C. Package volume
D. Carrier color

37 Why is moisture content measured in a carrier-based microbial biofertilizer?

Quality control parameters of microbial biofertilizers using standard laboratory methods Medium
A. It guarantees field effectiveness independently
B. It influences microbial survival and product handling
C. It replaces viable-count analysis
D. It directly identifies the microbial species

38 A biofertilizer has a viable count of CFU/g, while the specification requires at least CFU/g. How should the batch be classified?

Quality control parameters of microbial biofertilizers using standard laboratory methods Medium
A. Acceptable after changing the product label
B. Unsatisfactory only if the carrier is moist
C. Acceptable because the count is above zero
D. Unsatisfactory because it is below the minimum specification

39 Which test is most appropriate for checking whether a microbial biofertilizer retains its functional ability after formulation?

Quality control parameters of microbial biofertilizers using standard laboratory methods Medium
A. A determination of the carrier's particle color
B. A strain-specific efficacy or activity assay
C. A package dimension measurement
D. A visual check of the container seal only

40 Why should samples be collected from different portions of a large biofertilizer batch during quality control?

Quality control parameters of microbial biofertilizers using standard laboratory methods Medium
A. To avoid testing the production strain
B. To reduce the need for replicate analysis
C. To detect variation within the batch
D. To increase the average microbial count

41 A bacterial biofertilizer is being scaled from a 100 mL seed culture to a 100 L fermenter. Which strategy best minimizes lag time and physiological instability during scale-up?

Production technology of microbial biofertilizers using standard laboratory methods Hard
A. Maintain the same vessel size while repeatedly replacing the medium
B. Use one direct transfer after concentrating a senescent culture
C. Use sequential 5- to 10-fold transfers of actively growing culture
D. Transfer stationary-phase culture directly at a 1:1000 inoculum ratio

42 During aerobic fermentation, biomass accumulation stops even though carbon and nitrogen remain in excess. Dissolved oxygen is nearly zero, and increasing agitation damages the cells. Which intervention is most appropriate?

Production technology of microbial biofertilizers using standard laboratory methods Hard
A. Increase antifoam addition while stopping aeration
B. Increase oxygen enrichment while retaining moderate agitation
C. Raise incubation temperature while maintaining oxygen limitation
D. Decrease airflow while increasing substrate concentration

43 A carrier contains 600 g of oven-dry material. How much sterile water must be added to obtain a formulation containing 40% moisture on a wet-weight basis?

Production technology of microbial biofertilizers using standard laboratory methods Hard
A. 400 g
B. 360 g
C. 240 g
D. 600 g

44 Repeated autoclaving makes a peat carrier darker and subsequently lowers survival of inoculated bacteria, although sterility tests are negative. What is the most likely production problem?

Production technology of microbial biofertilizers using standard laboratory methods Hard
A. Conversion of viable cells into colonies during storage
B. Thermal formation of inhibitory compounds in the carrier
C. Selection of oxygen-tolerant mutants during inoculation
D. Loss of bacterial plasmids during carrier sterilization

45 Which approach provides the strongest validation that a carrier sterilization cycle is reproducibly effective?

Production technology of microbial biofertilizers using standard laboratory methods Hard
A. Measuring only the maximum chamber temperature
B. Confirming that the carrier appears dry after treatment
C. Using biological indicators at cold spots with sterility testing
D. Observing no visible fungal growth immediately after treatment

46 A freeze-dried bacterial inoculant loses most viability during drying but remains stable afterward. Which process modification most directly targets the major loss?

Production technology of microbial biofertilizers using standard laboratory methods Hard
A. Add a compatible lyoprotectant before freezing
B. Extend the stationary phase before harvesting
C. Increase the storage humidity after drying
D. Increase residual oxygen before package sealing

47 A phosphate-solubilizing bacterium produces the highest viable count at pH 7.0, but phosphate solubilization is induced near pH 6.0. Which production design best balances biomass yield and functional activity?

Production technology of microbial biofertilizers using standard laboratory methods Hard
A. Grow at pH 7.0, then apply a validated induction phase
B. Grow entirely at pH 6.0 and disregard biomass yield
C. Grow entirely at pH 7.0 and omit activity testing
D. Alternate pH hourly throughout logarithmic growth

48 Why is conventional axenic broth fermentation generally unsuitable for mass multiplication of arbuscular mycorrhizal fungi?

Production technology of microbial biofertilizers using standard laboratory methods Hard
A. Their hyphae require exclusively alkaline mineral media
B. Their spores cannot tolerate any dissolved oxygen
C. They multiply only after bacterial endospore formation
D. They are obligate biotrophs requiring living host tissue

49 A fermenter culture repeatedly becomes contaminated soon after inoculation, but uninoculated medium held under the same conditions remains sterile. Which source should be investigated first?

Production technology of microbial biofertilizers using standard laboratory methods Hard
A. The external surface of sealed packages
B. The dry-air supply to the laboratory room
C. The production inoculum and inoculation assembly
D. The fermenter cooling-water outlet

50 Two carrier formulations initially contain the same viable count. Formulation X has greater moisture but lower water activity than formulation Y. Which inference is scientifically justified?

Production technology of microbial biofertilizers using standard laboratory methods Hard
A. X may contain more water that is unavailable for microbial reactions
B. Y must have a longer shelf life because its water activity is higher
C. Y must be drier because water activity equals moisture percentage
D. X must support faster growth because it contains more total water

51 A 10 g sample is homogenized in 90 mL diluent. After further dilution to relative to the original sample, 0.1 mL yields 64 colonies. What is the viable count?

Quality control parameters of microbial biofertilizers using standard laboratory methods Hard
A. CFU g
B. CFU g
C. CFU g
D. CFU g

52 Direct microscopy shows bacterial cells g, whereas plate counting shows CFU g. Which interpretation is most defensible?

Quality control parameters of microbial biofertilizers using standard laboratory methods Hard
A. Many observed cells may be dead, injured, or nonculturable
B. Microscopy necessarily overestimates the number of physical cells
C. Every colony must have arisen from exactly five bacterial cells
D. Plate counting measures total cells more accurately than microscopy

53 A quantitative PCR assay reports a much larger population than plate counting after prolonged storage. Which modification best helps distinguish membrane-intact cells from cells with compromised membranes?

Quality control parameters of microbial biofertilizers using standard laboratory methods Hard
A. Replace the selective agar with nutrient-rich agar
B. Increase the number of qPCR amplification cycles
C. Measure carrier moisture before DNA extraction
D. Treat the sample with propidium monoazide before qPCR

54 An inoculant contains CFU g initially and declines linearly by CFU g per month. If the minimum specification is CFU g, when is the predicted specification limit reached?

Quality control parameters of microbial biofertilizers using standard laboratory methods Hard
A. About 16.7 months
B. About 8.3 months
C. About 10.8 months
D. About 5.4 months

55 A product falls from to CFU g after four days in an accelerated storage test. Assuming log-linear inactivation, how long will it take to reach CFU g?

Quality control parameters of microbial biofertilizers using standard laboratory methods Hard
A. Approximately 4.0 days
B. Approximately 5.9 days
C. Approximately 12.0 days
D. Approximately 8.0 days

56 A phosphate-solubilizing isolate forms a large halo on agar but releases little soluble phosphate in liquid culture. What is the best quality-control conclusion?

Quality control parameters of microbial biofertilizers using standard laboratory methods Hard
A. Viable count can replace all phosphate-solubilization measurements
B. Functional potency requires a validated quantitative assay
C. The liquid assay is invalid because halos are always quantitative
D. The agar halo alone proves high field effectiveness

57 All colonies recovered from a lot have the expected morphology, but a strain-specific PCR test is negative. Which conclusion is most appropriate?

Quality control parameters of microbial biofertilizers using standard laboratory methods Hard
A. The lot requires investigation because morphology is not strain-specific
B. Colony morphology confirms strain identity despite the PCR result
C. The lot automatically passes if its total viable count is sufficient
D. The PCR result proves that every recovered colony is a contaminant

58 A composite sample prepared from 20 packages passes a contamination test, but sporadic package-level contamination is suspected. Which revised sampling approach is most informative?

Quality control parameters of microbial biofertilizers using standard laboratory methods Hard
A. Test only the package with the highest viable count
B. Test several packages individually using a defined random plan
C. Combine more packages into one larger composite sample
D. Analyze one unopened package from the next production lot

59 A Rhizobium inoculant has acceptable viable count and strain identity but consistently forms ineffective nodules on its intended legume host. Which quality attribute has failed?

Quality control parameters of microbial biofertilizers using standard laboratory methods Hard
A. Analytical specificity of viable counting
B. Biological effectiveness or functional potency
C. Carrier particle-size uniformity
D. Physical integrity of package labeling

60 A carrier-based product meets its viable-count specification immediately after manufacture but fails rapidly during storage. Which quality-control program would best detect this weakness before release?

Quality control parameters of microbial biofertilizers using standard laboratory methods Hard
A. A carrier pH measurement performed only before inoculation
B. A single high-count plate assay performed at packaging
C. A colony-color assessment performed without enumeration
D. A stability study using validated storage conditions and intervals