Unit 6: Nematode Management - Practice Quiz

PTH214 — Fundamentals Of Nematology 60 Questions
0 Correct 0 Wrong 60 Left
0/60

1 Which cultural practice helps manage nematodes by interrupting their life cycle?

Cultural methods of nematode management Easy
A. Frequent pruning
B. Deep irrigation
C. Crop rotation
D. Dense planting

2 What is a non-host crop?

Cultural methods of nematode management Easy
A. A crop that requires no fertilizer
B. A crop grown only for seed production
C. A crop that prevents all plant diseases
D. A crop on which a particular nematode cannot reproduce

3 Why are infected crop residues removed from a field?

Cultural methods of nematode management Easy
A. To increase soil salinity
B. To lower seed germination
C. To reduce sources of nematode infestation
D. To encourage weed growth

4 Which practice reduces nematode hosts growing between crop seasons?

Cultural methods of nematode management Easy
A. Seed grading
B. Weed control
C. Fruit thinning
D. Flower removal

5 What is soil solarization?

Physical methods of nematode management Easy
A. Cooling soil with irrigation water
B. Covering dry soil with a thick, dark, heat-resistant metal sheet
C. Heating moist soil under transparent plastic
D. Drying harvested seeds in shade

6 Which physical agent is commonly used to disinfest nursery soil?

Physical methods of nematode management Easy
A. Steam
B. Wind
C. Pressure
D. Sound

7 Hot-water treatment is commonly used to remove nematodes from which material?

Physical methods of nematode management Easy
A. Farm machinery
B. Chemical fertilizer
C. Irrigation channels
D. Planting material

8 Biological management of plant-parasitic nematodes mainly uses what?

Biological methods of nematode management Easy
A. Highly concentrated chemical mixtures applied repeatedly throughout the season
B. Beneficial organisms
C. Mechanical harvesters
D. Synthetic fertilizers

9 Which organism is a well-known nematode-trapping fungus?

Biological methods of nematode management Easy
A. Arthrobotrys
B. Saccharomyces
C. Penicillium
D. Rhizobium

10 Which bacterium is commonly known as a parasite of plant-parasitic nematodes?

Biological methods of nematode management Easy
A. Rhizobium leguminosarum
B. A bacterium used mainly to produce alcohol during industrial fermentation
C. Lactobacillus acidophilus
D. Pasteuria penetrans

11 What is one major purpose of adding organic amendments to nematode-infested soil?

Biological methods of nematode management Easy
A. To encourage antagonistic microorganisms
B. To increase soil compaction
C. To eliminate all soil moisture
D. To prevent root development

12 What is a chemical used specifically to control nematodes called?

Chemical methods of nematode management Easy
A. Fungicide
B. Herbicide
C. Nematicide
D. Rodenticide

13 Which type of nematicide forms a gas or vapor that moves through soil?

Chemical methods of nematode management Easy
A. Protectant fungicide
B. Contact herbicide
C. Fumigant nematicide
D. A granular fertilizer containing several slowly released plant nutrients

14 Why must the label directions of a nematicide be followed?

Chemical methods of nematode management Easy
A. To change the crop variety
B. To increase weed seed production
C. To ensure safe and effective use
D. To reduce crop diversity

15 What is the main purpose of plant quarantine?

Plant quarantine Easy
A. To replace all field inspection with laboratory-based crop breeding
B. To prevent the spread of harmful pests
C. To improve the flavor of produce
D. To increase fertilizer application

16 Which item is most likely to spread nematodes to a new area?

Plant quarantine Easy
A. Sealed metal tools
B. Unused paper labels
C. Infested planting material
D. Clean glass containers

17 A phytosanitary certificate generally indicates that a plant shipment has been what?

Plant quarantine Easy
A. Inspected for regulated pests
B. Treated with fertilizer
C. Selected for high yield
D. Stored for a full growing season under controlled greenhouse conditions

18 What is a nematode-resistant plant variety?

Plant resistance and immunity Easy
A. A variety that requires no water
B. A variety that limits nematode reproduction
C. A variety that grows without light
D. A variety that kills every soil organism

19 What does plant immunity to a nematode mean?

Plant resistance and immunity Easy
A. The plant requires additional pesticide
B. The plant always produces larger fruits
C. The nematode infects the plant but causes unusually severe root damage
D. The nematode cannot successfully infect the plant

20 Which plant type usually allows a nematode to reproduce readily?

Plant resistance and immunity Easy
A. Quarantined plant
B. Susceptible plant
C. Immune plant
D. Resistant plant

21 A farmer observes severe root-knot nematode damage in a tomato field every year. Which cultural practice would most directly reduce the nematode population before planting tomato again?

Cultural methods of nematode management Medium
A. Plant tomato at closer spacing
B. Increase nitrogen fertilizer application
C. Irrigate the field more frequently
D. Rotate tomato with a non-host cereal crop

22 Which situation would make the use of a nematode-resistant crop variety especially useful as part of a cultural management program?

Cultural methods of nematode management Medium
A. The field has a mixed population of beneficial microbes
B. The soil has a high concentration of available phosphorus
C. The crop is grown only during a short rainy period
D. The nematode population increases under continuous monocropping

23 A grower removes weeds from a nematode-infested field even when no crop is present. What is the main management benefit of this practice?

Cultural methods of nematode management Medium
A. It removes alternative nematode hosts
B. It prevents beneficial fungi from developing
C. It increases nematode egg hatching
D. It improves nematode movement through soil

24 Soil solarization is most effective when the soil is moist, finely prepared, and covered with transparent plastic during a period of strong sunlight. Why does soil moisture improve the treatment?

Physical methods of nematode management Medium
A. Moist soil increases nematode feeding activity
B. Moist soil neutralizes all chemical pesticides
C. Moist soil prevents nematode eggs from hatching
D. Moist soil conducts heat more effectively

25 A nursery frequently spreads nematodes through contaminated potting soil. Which physical method would best reduce this risk before seedlings are transplanted?

Physical methods of nematode management Medium
A. Add fresh untreated soil
B. Heat-treat the nursery soil
C. Increase the soil pH slightly
D. Apply additional irrigation water

26 Why should farm tools be cleaned before being moved from an infested field to a nematode-free field?

Physical methods of nematode management Medium
A. Tools can stimulate nematode reproduction
B. Tools can increase soil temperature
C. Tools can reduce crop resistance
D. Tools can carry infested soil particles

27 A biocontrol product contains a fungus that traps or infects nematodes in soil. Which condition would most likely support its effectiveness?

Biological methods of nematode management Medium
A. A soil environment suitable for fungal growth
B. Very low soil moisture throughout the season
C. Repeated application of broad-spectrum fungicide
D. Complete removal of organic matter

28 Which practice would best support the activity of naturally occurring nematode-antagonistic microorganisms?

Biological methods of nematode management Medium
A. Remove all plant residues immediately
B. Maintain prolonged waterlogging in the field
C. Apply unnecessary antimicrobial chemicals
D. Add well-decomposed organic amendments

29 A farmer applies a microbial nematicide but obtains poor control because it is used together with a chemical that kills many soil microorganisms. What is the most likely explanation?

Biological methods of nematode management Medium
A. The chemical reduced biocontrol organism survival
B. The nematodes became beneficial to the crop
C. The chemical improved microbial colonization
D. The microbial product increased soil fertility

30 A farmer needs to apply a chemical nematicide to a localized planting bed. Which approach is generally most appropriate for reducing unnecessary chemical exposure?

Chemical methods of nematode management Medium
A. Apply the highest label rate to all fields
B. Treat only the infested planting area
C. Treat the entire farm regardless of symptoms
D. Mix the product with every available pesticide

31 Why is it important to follow the label-recommended waiting period after applying a nematicide to soil?

Chemical methods of nematode management Medium
A. To prevent the crop from developing roots
B. To reduce residues before planting or harvest
C. To increase nematode reproduction before treatment
D. To ensure all soil organisms are eliminated

32 A nematicide gives excellent control during the first season but poor control after repeated use. Which management principle is most relevant to this observation?

Chemical methods of nematode management Medium
A. Combine the product with excess irrigation
B. Increase the application frequency every month
C. Rotate chemicals with different modes of action
D. Use the same product at a lower dose

33 A nursery imports planting material from a region known to contain a serious nematode pest. Which quarantine measure would provide the strongest initial protection?

Plant quarantine Medium
A. Store the material beside healthy plants
B. Increase fertilizer before distributing it
C. Inspect and certify the planting material
D. Distribute the material before testing

34 Why are soil-free or certified-clean roots preferred when transporting vegetative planting material between regions?

Plant quarantine Medium
A. They guarantee that plants need no irrigation
B. They increase nematode reproduction in storage
C. They eliminate the need for plant inspection
D. They reduce the chance of nematode transport

35 A quarantine station detects a nematode infestation in a shipment of planting material. What is the most appropriate immediate action?

Plant quarantine Medium
A. Mix it with certified planting material
B. Release the shipment to experienced farmers
C. Plant it in an isolated commercial field
D. Hold the shipment for official inspection

36 A resistant crop variety allows nematode juveniles to enter roots but prevents them from completing development. What type of resistance is illustrated?

Plant resistance and immunity Medium
A. Resistance that accelerates nematode maturation
B. Resistance that increases nematode feeding
C. Resistance that improves nematode movement
D. Resistance that limits nematode reproduction

37 A plant detects nematode-derived molecules and responds by strengthening nearby cell walls and producing defense compounds. This response is best described as:

Plant resistance and immunity Medium
A. Nematode-assisted pollination
B. Induced defense activation
C. Passive nutrient absorption
D. Uncontrolled root elongation

38 A farmer plants the same nematode-resistant cultivar for many consecutive seasons, and control gradually declines. Which explanation is most plausible?

Plant resistance and immunity Medium
A. The nematode population adapted to the resistance
B. The crop became completely immune to nematodes
C. The soil lost all ability to support nematodes
D. The resistance increased nematode dependence on weeds

39 Which management strategy would best preserve the usefulness of a nematode-resistant variety over several growing seasons?

Plant resistance and immunity Medium
A. Avoid monitoring nematode populations
B. Grow the same resistant variety continuously
C. Use only susceptible crops after resistance fails
D. Alternate resistant varieties with crop rotation

40 A susceptible plant develops localized cell death around nematode feeding sites, restricting further development of the pathogen. This reaction is most closely associated with:

Plant resistance and immunity Medium
A. An increase in nematode fecundity
B. A hypersensitive defense response
C. A delay in seed germination
D. A reduction in root respiration

41 A three-year crop rotation suppresses Meloidogyne incognita less than predicted, although each cash crop is classified as a poor host. Field surveys reveal dense populations of a weed that is an excellent host. Which interpretation best explains the failure?

Cultural methods of nematode management Hard
A. The poor-host crops induced permanent physiological immunity in the nematode population
B. The weed increased soil temperature enough to prevent root-knot nematode mortality
C. The poor-host crops converted second-stage juveniles into nonparasitic bacterial feeders
D. The weed maintained nematode reproduction between cash crops, breaking the effective nonhost sequence

42 A grower uses a susceptible trap crop to reduce a sedentary endoparasitic nematode. At which point should the trap crop normally be destroyed for maximum suppression?

Cultural methods of nematode management Hard
A. After females complete egg production but before eggs hatch
B. Before seed germination and before roots release any exudates
C. After the second nematode generation reaches reproductive maturity
D. After juveniles enter roots but before females produce viable eggs

43 Two organic amendments contain equal total nitrogen. Amendment X has a low carbon-to-nitrogen ratio and decomposes rapidly, whereas amendment Y has a high ratio and decomposes slowly. Under otherwise identical conditions, why might X provide stronger short-term nematode suppression?

Cultural methods of nematode management Hard
A. It permanently raises soil oxygen enough to kill obligate aerobic nematodes
B. It physically excludes juveniles by sealing every water-filled soil pore
C. It can release ammoniacal and other toxic decomposition products more rapidly
D. It prevents all microbial immobilization of nitrogen throughout the season

44 Bare fallow with repeated tillage lowers a root-knot nematode population during a dry season but causes severe erosion and loss of soil organic matter. Which replacement most directly preserves the nematode-management mechanism while reducing those costs?

Cultural methods of nematode management Hard
A. Plant a tolerant host continuously and allow volunteer plants to persist
B. Maintain a susceptible cover crop and mow it only after nematode reproduction
C. Apply extra nitrogen to a susceptible crop without changing the rotation
D. Maintain a verified nonhost cover crop and prevent susceptible weeds from setting roots

45 Two adjacent plots are solarized for the same period with identical transparent polyethylene. Plot A is irrigated near field capacity before covering; Plot B is dry. Plot A generally achieves greater suppression at depth because moist soil:

Physical methods of nematode management Hard
A. Prevents heat loss by eliminating every soil gas-filled pore
B. Maintains the highest temperature only at the uncovered soil surface
C. Reflects nearly all incoming radiation directly into the lower soil profile
D. Conducts heat downward more effectively and increases nematode sensitivity to heating

46 A hot-water treatment kills nematodes inside dormant planting material, but a small increase in exposure time also damages the plant. What is the most defensible basis for selecting the treatment schedule?

Physical methods of nematode management Hard
A. Use a validated time-temperature combination separating nematode lethality from host injury
B. Use the highest water temperature that leaves the outer tissue visually unchanged
C. Select exposure time solely from the initial temperature of the water bath
D. Treat until every plant cell and nematode egg reaches instantaneous thermal equilibrium

47 After steam treatment of greenhouse substrate, nematodes survive mainly in compacted clods near the edge of the treatment bed. Which monitoring change would best reveal this treatment failure?

Physical methods of nematode management Hard
A. Measure temperature-time exposure at the coldest internal locations, including large clods
B. Estimate treatment success solely from the total mass of steam applied
C. Record the maximum temperature reached at the substrate surface
D. Measure only the steam temperature where it enters the treatment bed

48 Why can Pasteuria penetrans provide weak control immediately after introduction but stronger suppression after repeated susceptible crops, provided compatible nematode hosts are present?

Biological methods of nematode management Hard
A. It is a broad-spectrum toxin that accumulates independently of living nematodes
B. It reproduces only in nonhost roots and then directly consumes nematode eggs
C. It is an obligate parasite whose spore population can build through infected nematodes
D. It permanently changes the host genome after its first application to soil

49 A fungus that primarily parasitizes eggs is applied only after most root-knot nematode eggs have already hatched. Which change is most likely to improve control in the next crop?

Biological methods of nematode management Hard
A. Apply the fungus only to foliage after mature females have died naturally
B. Eliminate all organic substrates needed for fungal establishment in the soil
C. Delay application until juveniles have completed migration into vascular tissue
D. Establish the fungus in the rhizosphere before substantial egg production and hatching

50 A small amount of soil from a nematode-suppressive field transfers suppression to untreated soil. The effect disappears when the donor soil is sterilized before transfer. Which conclusion is best supported?

Biological methods of nematode management Hard
A. A stable mineral toxin is proven to be solely responsible for suppression
B. Soil texture alone is proven to explain the transferred suppression
C. The nematode has irreversibly lost pathogenicity in every receiving soil
D. A transferable biological component is likely involved in the suppressiveness

51 A volatile soil fumigant is injected into a field containing large dry clods, then the surface is left unsealed. Why is control likely to be spatially inconsistent?

Chemical methods of nematode management Hard
A. Clods limit gas distribution while rapid surface loss shortens effective exposure
B. Fumigant activity requires direct ingestion by every sedentary adult female
C. Dry clods force the fumigant to become a fully systemic foliar pesticide
D. Surface loss increases the concentration uniformly throughout the root zone

52 A nonfumigant nematicide has low mobility and mainly affects juveniles near treated roots. Which placement strategy is most likely to maximize efficacy while limiting unnecessary environmental loading?

Chemical methods of nematode management Hard
A. Broadcast the dose over uncropped alleys after the infection period has ended
B. Place the entire dose below the maximum rooting depth before seedbed preparation
C. Apply the dose to mature foliage after sedentary females have produced eggs
D. Band the labeled dose in the developing root zone before major juvenile invasion

53 Following nematicide application, soil counts fall sharply for two weeks, but root galling and the final egg population are similar to those in untreated plots. Which inference is most justified?

Chemical methods of nematode management Hard
A. The nematode became nonpathogenic even though reproduction remained unchanged
B. The treatment caused temporary suppression without adequate season-long population control
C. Root galling proves that the chemical concentration was uniformly excessive
D. The treatment achieved eradication because the initial soil count declined

54 A quarantine inspector samples independent units from a shipment. If each sampled unit has a probability of of containing a detectable nematode, what minimum sample size gives at least a probability of detecting the pest at least once?

Plant quarantine Hard
A. units
B. units
C. units
D. units

55 Imported dormant plants test negative at entry, but the target nematode may occur at low density inside roots and becomes detectable only after active growth. Which quarantine measure best addresses this limitation?

Plant quarantine Hard
A. Inspect only the packaging because internal root infestation cannot spread
B. Mix the plants with domestic stock so symptoms develop under commercial conditions
C. Release the plants immediately because one negative entry test proves pest freedom
D. Grow the plants under post-entry containment and retest after a suitable development period

56 A molecular assay detects target nematode DNA in heat-treated planting material, but no intact nematodes are recovered. What additional evidence is most important before concluding that the consignment presents an establishment risk?

Plant quarantine Hard
A. Evidence that target DNA can persist after lethal treatment
B. Evidence that the shipment originated in a regulated country
C. Evidence that the assay included a positive amplification control
D. Evidence that viable infective stages remain in the treated material

57 Cultivar R supports significantly fewer nematode eggs than a susceptible control, whereas cultivar T supports similar egg numbers but suffers much less yield loss. How should R and T be classified?

Plant resistance and immunity Hard
A. R is resistant, whereas T is tolerant
B. R is susceptible, whereas T is immune
C. R is immune, whereas T is susceptible
D. R is tolerant, whereas T is resistant

58 A tomato cultivar carrying the Mi-1 resistance gene controls an avirulent root-knot population at moderate soil temperature but permits substantial reproduction during prolonged high temperatures. What is the best management interpretation?

Plant resistance and immunity Hard
A. Temperature affects plant growth but cannot alter gene-mediated nematode resistance
B. High temperature proves that the nematode population has permanently become a bacterial feeder
C. The cultivar is immune because resistance was effective under one environmental condition
D. Resistance expression can be temperature-sensitive, so the cultivar should not be treated as universally resistant

59 Which breeding and deployment strategy is most likely to increase the durability of resistance against a genetically variable nematode population?

Plant resistance and immunity Hard
A. Combine resistance genes with distinct recognition mechanisms and integrate nonhost rotations
B. Select only for yield tolerance while allowing unrestricted nematode reproduction
C. Remove all resistance genes whenever an avirulent population is detected
D. Deploy one resistance gene continuously across the entire production region

60 No nematodes reproduce on a candidate plant in three inoculation tests. Which experimental design is necessary before claiming immunity rather than an ineffective inoculum or escape from infection?

Plant resistance and immunity Hard
A. Increase fertilizer until the candidate plant produces no visible root symptoms
B. Compare only uninoculated candidate plants grown under different light intensities
C. Include a susceptible control that confirms inoculum viability and infectivity under the same conditions
D. Declare immunity whenever the final soil population is lower than the initial population