Unit 11: Diagnosis of Field Diseases and Pathogens - Practice Quiz

PTH215 — Biopesticides And Biofertilizers In Plant Disease Management 60 Questions
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1 What is the first useful step when diagnosing a plant disease in the field?

Diagnosis of field diseases Easy
A. Add fertilizer to the soil
B. Apply a fungicide immediately
C. Observe the symptoms carefully
D. Remove all nearby plants

2 Which term describes a visible response of a plant to disease?

Diagnosis of field diseases Easy
A. Vector
B. Symptom
C. Pathogen
D. Inoculum

3 Which of the following is a common plant disease symptom?

Diagnosis of field diseases Easy
A. Fruit ripening
B. Flower opening
C. Leaf wilting
D. Seed dormancy

4 What is a disease sign?

Diagnosis of field diseases Easy
A. Visible evidence of the pathogen
B. Change in soil texture
C. Pattern of crop planting
D. Plant response to infection

5 Which observation is most helpful for understanding how a disease is distributed in a field?

Diagnosis of field diseases Easy
A. Pattern of affected plants
B. Number of field workers
C. Color of farm equipment
D. Type of storage building

6 Why should healthy and diseased plants be compared during field diagnosis?

Diagnosis of field diseases Easy
A. To determine market price
B. To increase seed production
C. To measure fertilizer purity
D. To recognize abnormal changes

7 Which information should be recorded when collecting a diseased plant sample?

Diagnosis of field diseases Easy
A. Package and price details
B. Machine and fuel details
C. Dealer and market details
D. Crop and symptom details

8 Which part of a diseased plant is usually best for laboratory examination?

Diagnosis of field diseases Easy
A. Healthy tissue without symptoms
B. Completely decayed tissue
C. Advancing edge of a lesion
D. Dry tissue from the soil

9 A yellowing of normally green leaves is called what?

Diagnosis of field diseases Easy
A. Chlorosis
B. Etiolation
C. Necrosis
D. Gummosis

10 What does necrosis mean in a diseased plant?

Diagnosis of field diseases Easy
A. Softening of plant tissue
B. Death of plant tissue
C. Elongation of plant tissue
D. Yellowing of plant tissue

11 Which field instrument is useful for examining small disease signs on leaves?

Diagnosis of field diseases Easy
A. Rain gauge
B. Soil auger
C. Hand lens
D. Measuring tape

12 What does a mosaic symptom usually look like on a leaf?

Diagnosis of field diseases Easy
A. Deep cracks along the stem
B. Uniform browning of all tissue
C. White roots without branching
D. Alternating light and dark areas

13 Which group of pathogens commonly produces spores and thread-like hyphae?

Identification of causal pathogens Easy
A. Viruses
B. Fungi
C. Bacteria
D. Nematodes

14 Which causal agent can be seen as tiny worm-like organisms under magnification?

Identification of causal pathogens Easy
A. Nematodes
B. Viroids
C. Viruses
D. Bacteria

15 Which method is commonly used to observe fungal spores from diseased tissue?

Identification of causal pathogens Easy
A. Seed grading
B. Field irrigation
C. Light microscopy
D. Soil ploughing

16 Bacterial ooze from infected plant tissue is a sign of which pathogen group?

Identification of causal pathogens Easy
A. Fungi
B. Viruses
C. Nematodes
D. Bacteria

17 Which laboratory method grows a pathogen on a nutrient medium?

Identification of causal pathogens Easy
A. Grafting
B. Pruning
C. Mulching
D. Culturing

18 Which test detects specific pathogen DNA by making many copies of a target sequence?

Identification of causal pathogens Easy
A. Staining
B. ELISA
C. Plating
D. PCR

19 Which test is commonly used to detect specific pathogen proteins in plant samples?

Identification of causal pathogens Easy
A. PCR
B. Microscopy
C. ELISA
D. Culturing

20 Why are Koch's postulates used in plant pathology?

Identification of causal pathogens Easy
A. To estimate yield in a field
B. To classify soil by texture
C. To measure nutrients in a plant
D. To link a pathogen with a disease

21 A wheat field shows yellowing plants in irregular patches, while nearby plants remain healthy. Which observation would most strongly support a soil-borne disease rather than a nutrient deficiency?

Diagnosis of field diseases Medium
A. Symptoms begin on the youngest leaves
B. Symptoms occur in expanding field patches
C. Symptoms disappear after additional irrigation
D. Symptoms appear uniformly across the field

22 Tomato plants develop wilting during the day but recover overnight. The vascular tissue remains discolored, and soil moisture is adequate. Which diagnostic step is most appropriate next?

Diagnosis of field diseases Medium
A. Test stems for vascular browning
B. Measure fruit sugar concentration
C. Check leaves for powdery growth
D. Examine roots for gall formation

23 A farmer reports leaf spots on beans after several days of frequent rain. Which combination of symptoms would best indicate a fungal leaf-spot disease?

Diagnosis of field diseases Medium
A. Circular lesions with visible sporulation
B. Uniform yellowing without visible lesions
C. Root swelling with reduced lateral roots
D. Sudden wilting without leaf discoloration

24 When surveying a field for disease incidence, which method provides the most reliable estimate?

Diagnosis of field diseases Medium
A. Select plants from several random locations
B. Examine only plants showing severe symptoms
C. Inspect only plants near the field entrance
D. Sample plants from one convenient row

25 A disease appears mainly in low-lying areas of a field after heavy irrigation. Which field factor should be investigated first?

Diagnosis of field diseases Medium
A. Distance from nearby buildings
B. Soil drainage and water movement
C. Amount of sunlight during harvest
D. Seed color and seed shape

26 A plant has lesions that are restricted to older leaves, while new leaves remain healthy. Which interpretation is most appropriate during diagnosis?

Diagnosis of field diseases Medium
A. The problem may involve a mobile nutrient
B. The symptoms prove a viral infection
C. The disease is certainly seed transmitted
D. The pathogen must infect the roots

27 Which field observation best helps distinguish herbicide injury from an infectious plant disease?

Diagnosis of field diseases Medium
A. Symptoms spread gradually between neighboring plants
B. Symptoms follow the direction of spray movement
C. Symptoms begin near infected plant debris
D. Symptoms increase after periods of humidity

28 A plant disease is suspected to be caused by a pathogen carried in irrigation water. Which field pattern would support this hypothesis?

Diagnosis of field diseases Medium
A. Higher disease levels on isolated hilltops
B. Higher disease levels only on shaded leaves
C. Higher disease levels near water entry points
D. Equal disease levels in all field areas

29 During field diagnosis, why should both symptomatic and apparently healthy plants be collected?

Diagnosis of field diseases Medium
A. To compare pathogen presence and symptom development
B. To replace laboratory confirmation completely
C. To increase the weight of the collected sample
D. To avoid recording the disease distribution

30 A cotton field shows plants with stunted growth and malformed leaves in scattered locations. Which additional information would be most useful for diagnosing a possible viral disease?

Diagnosis of field diseases Medium
A. Depth of the farmer's planting equipment
B. Number of storage containers near the field
C. Color of the field boundary markers
D. Presence and distribution of insect vectors

31 A pathogen produces septate hyphae and chains of dry conidia on infected leaf tissue. Which group is most likely involved?

Identification of causal pathogens Medium
A. A plant-parasitic nematode
B. A bacterial pathogen
C. A phytoplasma
D. A filamentous fungus

32 A bacterial disease is suspected in pepper plants. Which laboratory observation would provide the strongest preliminary support?

Identification of causal pathogens Medium
A. Powdery spores on the leaf surface
B. Milky bacterial streaming from a cut stem
C. Large cysts attached to the roots
D. Threadlike hyphae inside leaf tissue

33 A root sample contains microscopic roundworms with a spear-like stylet. Which pathogen group is indicated?

Identification of causal pathogens Medium
A. Plant pathogenic bacteria
B. Insect-transmitted viruses
C. Plant-parasitic nematodes
D. Filamentous fungi

34 To determine whether a fungus isolated from diseased tissue is the causal pathogen, which procedure is most appropriate?

Identification of causal pathogens Medium
A. Compare its symptoms with unrelated field records
B. Apply fertilizer and observe plant height
C. Identify the host cultivar without inoculation
D. Reproduce disease symptoms on a healthy host

35 A bacterial isolate from diseased tissue forms cream-colored colonies and causes a hypersensitive response on a nonhost leaf. What does the response primarily indicate?

Identification of causal pathogens Medium
A. The plant tissue contains excess nitrogen
B. The isolate cannot survive outside plants
C. The isolate may be a plant pathogen
D. The isolate is definitely a fungal species

36 A root disease is associated with spherical galls containing swollen females. Which causal organism is most likely?

Identification of causal pathogens Medium
A. A foliar rust fungus
B. A mosaic-causing virus
C. A root-knot nematode
D. A bacterial leaf-spot agent

37 A diseased plant shows mosaic patterns and severe leaf curling, but no fungal structures are visible. Which test would best help identify a virus as the causal pathogen?

Identification of causal pathogens Medium
A. Bacterial colony counting on nutrient agar
B. Enzyme-linked immunosorbent assay
C. Microscopic measurement of nematode stylets
D. Root staining with lactophenol cotton blue

38 A fungus is isolated from a lesion, but it is also found on dead plant debris. Which evidence is most important before identifying it as the primary pathogen?

Identification of causal pathogens Medium
A. Its consistent association with active lesions
B. Its colony color under laboratory lighting
C. Its ability to grow rapidly on culture media
D. Its presence on mature plant stems

39 Which feature is most useful for distinguishing a fungal pathogen from a bacterial pathogen during microscopic examination?

Identification of causal pathogens Medium
A. Presence of water-soaked lesions
B. Presence of branching hyphae
C. Occurrence on diseased leaves
D. Development under humid conditions

40 A pathogen is detected by PCR in both diseased and healthy plants. Which conclusion is most scientifically appropriate?

Identification of causal pathogens Medium
A. The PCR result must be ignored entirely
B. The pathogen is proven to cause the disease
C. The healthy plants are incorrectly classified
D. The pathogen may be latent or only partly responsible

41 A tomato field shows interveinal chlorosis and stunting concentrated near the entrance where equipment turns. Roots lack lesions or vascular discoloration, and symptomatic plants test negative for common viruses. Soil analysis reveals a sharp pH increase in the affected zone. Which diagnosis is best supported?

Diagnosis of field diseases Hard
A. A root-knot nematode outbreak favored by compacted soil
B. An abiotic nutrient disorder caused by localized soil alkalinity
C. A soilborne fungal disease spread by cultivation equipment
D. A phloem-limited bacterial disease introduced by vectors

42 A fungus is repeatedly isolated from the advancing margins of leaf lesions, but inoculation of healthy plants produces symptoms only after the leaves are mechanically wounded. Unwounded controls and unwounded inoculated plants remain healthy. What is the most defensible interpretation?

Identification of causal pathogens Hard
A. The fungus may be a wound-dependent pathogen or secondary colonizer
B. The fungus is necessarily the primary pathogen because it was consistently isolated
C. The fungus is nonpathogenic because healthy plants resisted unwounded inoculation
D. The fungus satisfies Koch's postulates because wounded plants developed lesions

43 After application of a microbial biofungicide, lower leaves develop irregular necrotic spots within 18 hours. The lesions occur uniformly across treated rows, do not expand after 48 hours, and cannot be transmitted to healthy plants. Which conclusion is most appropriate?

Diagnosis of field diseases Hard
A. The symptoms indicate a polycyclic pathogen with a short latent period
B. The biofungicide activated a latent vascular infection in the crop
C. The biofungicide selected for a rapidly spreading resistant pathogen
D. The symptoms most likely represent treatment-associated phytotoxicity

44 A real-time PCR assay targeting a suspected pathogen gives for diseased tissue, for asymptomatic tissue, no amplification in the extraction blank, and for the positive control. Which additional result would most strongly support causal involvement rather than incidental detection?

Identification of causal pathogens Hard
A. Amplification of the target from unrelated crops without visible symptoms
B. Reproduction of symptoms followed by recovery of the same genotype
C. Detection of the target in irrigation water near the diseased field
D. A lower target concentration in lesions than in healthy leaf tissue

45 Wilted plants occur in elongated patches aligned with the direction of irrigation. Cutting the lower stem reveals unilateral vascular browning, and wilt persists overnight despite adequate soil moisture. Which inference best integrates these observations?

Diagnosis of field diseases Hard
A. A vascular disease is likely, with inoculum movement influenced by water
B. A foliar pathogen is likely, with spores dispersed primarily by wind
C. A nutrient deficiency is likely, with symptoms governed by leaf age
D. A transient water deficit is likely, with recovery delayed by high humidity

46 Sequencing the ITS region from a diseased root produces a 100% database match to three closely related Fusarium species that differ in host range and toxin production. What is the best next step for species-level identification?

Identification of causal pathogens Hard
A. Identify the species solely from colony pigmentation on general medium
B. Assign the species represented by the greatest number of database records
C. Repeat ITS sequencing at greater read depth from the same amplicon
D. Sequence additional discriminatory loci using authenticated reference isolates

47 In a field trial, disease incidence is 70% in untreated plots and 25% in plots receiving a bacterial biocontrol agent. However, treated plots were planted with a different cultivar and occupy the better-drained half of the field. Which statement is justified?

Diagnosis of field diseases Hard
A. The biocontrol agent reduced incidence by exactly 45 percentage points
B. The cultivar effect can be ignored because incidence was directly observed
C. The drainage difference proves that the disease is exclusively abiotic
D. The treatment effect is confounded with cultivar and field position

48 A bacterium isolated from a leaf spot is Gram-negative, oxidase-negative, and fluorescent on King's B medium. A genus-specific PCR is positive, but a pathovar-specific PCR is negative. Which conclusion is most scientifically defensible?

Identification of causal pathogens Hard
A. The isolate is a fungus because fluorescence invalidates bacterial tests
B. The isolate belongs to the expected pathovar despite the negative assay
C. The isolate belongs to the genus, but its pathovar remains unresolved
D. The isolate cannot belong to the genus unless both assays are positive

49 A disease survey samples ten adjacent plants at one location in each of 30 fields. The objective is to estimate field-level disease incidence, but symptoms occur in compact clusters. What is the principal flaw in this design?

Diagnosis of field diseases Hard
A. Adjacent plants provide poor spatial representation under clustered disease
B. The sample contains too many fields for an incidence estimate
C. Clustered symptoms require sampling only the centers of visible patches
D. Disease incidence cannot be estimated from individual plant observations

50 Virus-like mosaic symptoms occur in a crop, but ELISA is negative. The internal positive control reacts normally, while sap from symptomatic plants was stored for a week at room temperature before testing. Which follow-up is most appropriate?

Identification of causal pathogens Hard
A. Exclude viral infection because the functional control validates every sample
B. Increase substrate incubation until symptomatic samples become positive
C. Retest fresh tissue and use an independent nucleic-acid-based assay
D. Diagnose a fungal disease because ELISA cannot detect fungal antigens

51 A foliar disease appears first on the windward border of a field and declines with distance inward. After a week of storms, new foci also appear around scattered volunteer host plants. Which epidemiological interpretation best fits both patterns?

Diagnosis of field diseases Hard
A. A uniform seedborne infection produced symptoms at different developmental stages
B. A soil nutrient gradient caused border symptoms and random internal deficiencies
C. External airborne inoculum initiated disease, followed by local secondary spread
D. A noninfectious spray injury moved inward through repeated plant contact

52 Metabarcoding of necrotic roots detects abundant reads from an oomycete and lower numbers from several fungi. Mock-community controls reveal that the oomycete primers amplify its DNA about ten times more efficiently than fungal DNA. What can be concluded from read abundance alone?

Identification of causal pathogens Hard
A. The oomycete is the primary pathogen because it generated most reads
B. All detected organisms contribute equally because each produced sequence reads
C. Relative biomass and causality cannot be inferred reliably from these reads
D. The fungi are primary pathogens because primer bias reduced their reads

53 A root disease occurs only in waterlogged sections of a field. Improving drainage prevents symptoms, yet the suspected oomycete can still be detected at low levels in asymptomatic, well-drained soil. Which disease model best explains the findings?

Diagnosis of field diseases Hard
A. Waterlogging is the sole cause because the pathogen also occurs without symptoms
B. The pathogen is sufficient for disease regardless of environmental conditions
C. Drainage eliminates symptoms by converting the pathogen into a beneficial microbe
D. Disease requires interaction between pathogen presence and conducive waterlogging

54 A suspected obligate biotrophic fungus cannot be grown on artificial medium. Which approach most appropriately adapts causal testing to this biological constraint?

Identification of causal pathogens Hard
A. Transfer purified spores to susceptible plants and verify the same pathogen in lesions
B. Culture the pathogen on nutrient agar before inoculating detached healthy leaves
C. Inoculate plants with total field soil and identify whichever organism grows fastest
D. Use symptom similarity alone because obligate biotrophs cannot be tested experimentally

55 Two disorders produce similar marginal leaf scorch. Disorder X begins on older leaves and is uniform across plants on sandy ridges; disorder Y begins on scattered leaves and later develops bacterial ooze. Which observation has the greatest differential diagnostic value?

Diagnosis of field diseases Hard
A. Both disorders eventually reduce the amount of green leaf tissue
B. Both disorders become more visible during warm afternoon conditions
C. Disorder X and disorder Y occur within the same crop species
D. Disorder Y produces bacterial ooze from affected leaf tissue

56 A qPCR assay detects a pathogen in 18 of 20 symptomatic plants and 7 of 20 asymptomatic plants. The pathogen concentration is consistently much higher in symptomatic plants, but viable organisms have not been recovered. Which statement best describes the evidence?

Identification of causal pathogens Hard
A. Higher concentration proves the organism is the sole cause of the disease
B. The concentration association supports involvement but does not prove causation
C. The two negative symptomatic plants prove that the assay lacks specificity
D. Detection in asymptomatic plants disproves any role in symptom development

57 Disease severity is recorded on a 0-5 ordinal scale before and after treatment. A researcher subtracts the mean post-treatment score from the mean pretreatment score and concludes that the pathogen population declined. What is the central diagnostic limitation?

Diagnosis of field diseases Hard
A. Mean calculations automatically convert ordinal scores into incidence values
B. A decrease in symptoms always indicates increased pathogen aggressiveness
C. Severity scores cannot be compared between any two observation dates
D. Ordinal symptom scores do not directly quantify viable pathogen abundance

58 A fungal isolate reproduces field symptoms on cultivar A but not cultivar B. The original outbreak occurred only on cultivar A, although both cultivars were exposed in the same field. How should the negative result on cultivar B be interpreted?

Identification of causal pathogens Hard
A. It supports host-specific resistance in cultivar B rather than nonpathogenicity
B. It proves cultivar B escaped exposure during the field outbreak
C. It shows the isolate changed species during inoculation of cultivar A
D. It invalidates pathogenicity because a true pathogen must infect both cultivars

59 Following application of a Trichoderma-based product, laboratory plates from treated roots are rapidly overgrown by Trichoderma, while a suspected pathogen is rarely recovered. Field symptoms remain unchanged. Which conclusion is most appropriate?

Diagnosis of field diseases Hard
A. The unchanged symptoms prove that the disorder has an exclusively abiotic cause
B. The isolation method may underestimate the pathogen through competitive overgrowth
C. The abundant antagonist colonies prove successful disease suppression in the field
D. The pathogen was eliminated because it was not recovered from treated roots

60 A multiplex diagnostic assay contains a pathogen target and a plant internal amplification control. A symptomatic sample is negative for both targets, whereas all external controls perform correctly. What is the best interpretation?

Identification of causal pathogens Hard
A. The pathogen is present because it suppressed the plant control competitively
B. The reaction is invalid because extraction failure or inhibition is likely
C. The sample is pathogen-negative because the external controls were valid
D. The plant tissue lacks DNA because symptomatic cells contain only pathogen RNA