1What does the term symptom mean in plant nematology?
Symptomatology
Easy
A.A visible response of a plant to nematode infection
B.A structure produced directly by a nematode
C.A method used to identify soil nutrients
D.A chemical used to control plant diseases
Correct Answer: A visible response of a plant to nematode infection
Explanation:
A symptom is a visible or measurable change in a plant caused by nematode infection.
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2Which root symptom is most commonly associated with root-knot nematodes?
Symptomatology
Easy
A.Stem cankers
B.Root galls
C.A complete and uniform change in flower color throughout the field
D.Leaf spots
Correct Answer: Root galls
Explanation:
Root-knot nematodes induce swollen areas called galls or knots on infected roots.
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3Which is a common above-ground symptom of nematode damage?
Symptomatology
Easy
A.Root lesions
B.Root branching
C.Plant stunting
D.Root galling
Correct Answer: Plant stunting
Explanation:
Nematode-damaged roots absorb water and nutrients poorly, often causing above-ground stunting.
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4Nematode-damaged plants often occur in irregular patches in a field because nematodes are usually:
Symptomatology
Easy
A.Uniformly distributed in soil
B.Unevenly distributed in soil
C.Present only in irrigation water
D.Restricted to plant leaves
Correct Answer: Unevenly distributed in soil
Explanation:
Plant-parasitic nematodes commonly have a patchy distribution, producing irregular areas of poor plant growth.
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5How can nematode feeding increase the entry of other plant pathogens?
Role of nematodes in disease development
Easy
A.By preventing roots from releasing nutrients
B.By removing pathogens from the soil
C.By increasing the thickness of plant bark
D.By producing wounds in plant tissues
Correct Answer: By producing wounds in plant tissues
Explanation:
Nematode feeding and movement can wound plant tissues, creating entry points for other pathogens.
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6A disease involving a nematode and another pathogen is commonly called a:
Role of nematodes in disease development
Easy
A.Disease complex
B.Photosynthetic disorder involving several unrelated environmental processes
C.Nutrient cycle
D.Seed dormancy
Correct Answer: Disease complex
Explanation:
A disease complex occurs when a nematode interacts with another pathogen to influence disease development.
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7What does it mean when nematodes predispose a plant to disease?
Role of nematodes in disease development
Easy
A.They make the plant fully resistant
B.They improve the plant's nutrition
C.They make the plant more susceptible
D.They eliminate the other pathogen
Correct Answer: They make the plant more susceptible
Explanation:
Predisposition means that nematode infection makes the plant more vulnerable to another pathogen.
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8What is a likely result when a nematode and another pathogen act synergistically?
Role of nematodes in disease development
Easy
A.Plant resistance always increases
B.Disease remains completely absent
C.Disease becomes more severe
D.Both organisms immediately die
Correct Answer: Disease becomes more severe
Explanation:
In a synergistic interaction, the combined disease effect is greater than the effect expected from either organism alone.
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9Which fungal disease is commonly intensified by root-knot nematode infection?
Interaction between plant-parasitic nematodes and disease-causing fungi
Easy
A.Wheat rust
B.Fusarium wilt
C.Apple scab
D.Powdery mildew
Correct Answer: Fusarium wilt
Explanation:
Root-knot nematodes commonly interact with Fusarium species and can increase the severity of Fusarium wilt.
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10Why can root-lesion nematodes favor infection by soil-borne fungi?
Interaction between plant-parasitic nematodes and disease-causing fungi
Easy
A.They create wounds in roots
B.They stop all root growth
C.They cover roots with wax
D.They sterilize the root surface
Correct Answer: They create wounds in roots
Explanation:
Root-lesion nematodes damage root tissues, providing wounds that soil-borne fungi can use as infection sites.
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11In a nematode-fungus disease complex, the fungus usually enters the plant through:
Interaction between plant-parasitic nematodes and disease-causing fungi
Easy
A.Healthy flower pollen
B.Unopened seed coats
C.A thick protective layer formed over all leaves and stems
D.Damaged root tissue
Correct Answer: Damaged root tissue
Explanation:
Root damage caused by nematodes can provide suitable entry points for fungal pathogens.
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12Which nematode genus is well known for interacting with Fusarium wilt fungi?
Interaction between plant-parasitic nematodes and disease-causing fungi
Easy
A.Taenia
B.Meloidogyne
C.Ascaris
D.Daphnia
Correct Answer: Meloidogyne
Explanation:
Meloidogyne, the root-knot nematode genus, frequently forms disease complexes with Fusarium wilt fungi.
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13How do plant-parasitic nematodes commonly assist bacterial infection?
Interaction between plant-parasitic nematodes and disease-causing bacteria
Easy
A.By producing antibiotics
B.By creating entry wounds
C.By sealing damaged roots
D.By drying the entire soil
Correct Answer: By creating entry wounds
Explanation:
Wounds produced during nematode feeding or movement can allow disease-causing bacteria to enter plant tissues.
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14Root-knot nematodes may increase the severity of bacterial wilt caused by:
Interaction between plant-parasitic nematodes and disease-causing bacteria
Easy
A.Lactobacillus acidophilus
B.Ralstonia solanacearum
C.Rhizobium leguminosarum
D.Bacillus subtilis
Correct Answer: Ralstonia solanacearum
Explanation:
Ralstonia solanacearum causes bacterial wilt, which may become more severe in plants infected by root-knot nematodes.
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15The wheat seed-gall nematode Anguina tritici is associated with which bacterial disease?
Interaction between plant-parasitic nematodes and disease-causing bacteria
Easy
A.A bacterial leaf blight that develops only after prolonged flooding
B.Tundu disease
C.Crown gall
D.Citrus canker
Correct Answer: Tundu disease
Explanation:
Anguina tritici carries the bacterium associated with tundu disease, also called yellow ear rot of wheat.
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16In tundu disease of wheat, Anguina tritici mainly helps the bacterium by acting as a:
Interaction between plant-parasitic nematodes and disease-causing bacteria
Easy
A.Nutrient
B.Resistant host
C.Carrier
D.Fungicide
Correct Answer: Carrier
Explanation:
The nematode acts as a carrier, helping the bacterium reach and infect susceptible wheat tissues.
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17What role do some plant-parasitic nematodes play in viral diseases?
Interaction between plant-parasitic nematodes and disease-causing viruses
Easy
A.They destroy every virus
B.They manufacture viral particles inside the soil without feeding on plants
C.They make plants immune
D.They act as vectors
Correct Answer: They act as vectors
Explanation:
Some plant-parasitic nematodes acquire viruses while feeding and transmit them to healthy plants.
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18Which nematode genus is commonly called a dagger nematode and can transmit plant viruses?
Interaction between plant-parasitic nematodes and disease-causing viruses
Easy
A.Meloidogyne
B.Xiphinema
C.Heterodera
D.Pratylenchus
Correct Answer: Xiphinema
Explanation:
Xiphinema species are dagger nematodes, and some species transmit nepoviruses between plants.
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19Which group of nematodes is known for transmitting tobacco rattle virus?
Interaction between plant-parasitic nematodes and disease-causing viruses
Easy
A.Root-knot nematodes
B.Stem nematodes
C.Cyst nematodes
D.Stubby-root nematodes
Correct Answer: Stubby-root nematodes
Explanation:
Stubby-root nematodes, especially Trichodorus and Paratrichodorus, can transmit tobacco rattle virus.
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20How does a virus-vector nematode usually introduce a plant virus into a healthy root?
Interaction between plant-parasitic nematodes and disease-causing viruses
Easy
A.During feeding with its stylet
B.During egg laying in dry soil
C.By changing the soil temperature
D.By producing fungal spores
Correct Answer: During feeding with its stylet
Explanation:
A vector nematode can release virus particles into root cells while feeding through its stylet.
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21A vegetable field contains irregular patches of stunted and chlorotic plants. The symptoms become more severe during dry periods, but no distinctive lesions occur on the leaves. Which action would best help determine whether plant-parasitic nematodes are involved?
Symptomatology
Medium
A.Examine roots and analyze soil from the margins of affected patches
B.Apply a foliar fungicide and observe the plants for one day
C.Inspect harvested seeds for discoloration and reduced germination
D.Measure leaf chlorophyll only in the centers of affected patches
Correct Answer: Examine roots and analyze soil from the margins of affected patches
Explanation:
Above-ground nematode symptoms are often nonspecific. Roots and soil from advancing patch margins are most useful for finding nematodes and characteristic root symptoms.
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22Roots collected from a declining crop have numerous short, swollen branches but no large galls. Which nematode-related symptom is most consistent with this observation?
Symptomatology
Medium
A.Root pruning caused by destruction of growing root tips
B.Root necrosis caused by elongated cortical lesions
C.Root proliferation caused by abnormal lateral root formation
D.Root knotting caused by extensive giant-cell enlargement
Correct Answer: Root proliferation caused by abnormal lateral root formation
Explanation:
Some nematodes stimulate excessive lateral root formation, producing a swollen or bushy root system without the prominent galls typical of root-knot nematodes.
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23A farmer observes poor crop growth in circular to irregular field patches. Plants outside the patches grow normally under the same fertilizer program. Why does this distribution support a possible nematode diagnosis?
Symptomatology
Medium
A.Nematodes rapidly move between distant fields through the air
B.Nematodes uniformly disperse through irrigation water each day
C.Nematodes commonly have aggregated distributions in soil
D.Nematodes usually infect only plants exposed to direct sunlight
Correct Answer: Nematodes commonly have aggregated distributions in soil
Explanation:
Plant-parasitic nematodes are often unevenly distributed because their movement is limited and populations increase around suitable hosts, producing patches of damaged plants.
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24Two root samples show swellings. Sample 1 has smooth galls that are continuous with the root tissue, while Sample 2 has small bodies attached to the root surface that can be removed. What is the best interpretation?
Symptomatology
Medium
A.Sample 1 has root-knot galls, while Sample 2 may have cysts
B.Sample 1 has cysts, while Sample 2 may have root-knot galls
C.Both samples show nitrogen-fixing nodules produced by bacteria
D.Both samples show identical symptoms of root-lesion nematodes
Correct Answer: Sample 1 has root-knot galls, while Sample 2 may have cysts
Explanation:
Root-knot galls are enlargements of root tissue and cannot be detached. Mature cysts are dead female bodies attached externally and may be removed from the root.
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25Plants inoculated with a weakly pathogenic fungus remain nearly healthy, but plants inoculated with both the fungus and a root-lesion nematode develop severe root rot. Which interpretation best fits the result?
Role of nematodes in disease development
Medium
A.The organisms act independently and produce only additive growth
B.The fungus prevents the nematode from entering the root tissue
C.The nematode converts the fungus into a beneficial root symbiont
D.The organisms interact synergistically to increase disease severity
Correct Answer: The organisms interact synergistically to increase disease severity
Explanation:
Disease is synergistic when the combined effect of two pathogens is greater than would be expected from their separate effects.
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26A root-knot-resistant cultivar becomes severely wilted when exposed to both a wilt pathogen and a high nematode population. Which nematode effect most directly explains this change?
Role of nematodes in disease development
Medium
A.Removal of fungal spores from soil increases pathogen multiplication
B.Stimulation of photosynthesis supplies extra sugars to healthy leaves
C.Reduction of root wounds prevents entry by the wilt pathogen
D.Modification of host tissues and defenses increases pathogen susceptibility
Correct Answer: Modification of host tissues and defenses increases pathogen susceptibility
Explanation:
Nematode feeding can alter host physiology, disrupt defenses, and create specialized tissues, making roots more favorable for another pathogen.
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27A crop has a moderate nematode population that causes little visible damage under adequate irrigation. After drought begins, severe wilting and yield loss occur. What is the most likely explanation?
Role of nematodes in disease development
Medium
A.Nematode feeding increases the water-storage capacity of damaged roots
B.Drought immediately eliminates nematodes and releases root toxins
C.Nematode-damaged roots cannot meet the increased water demand
D.Drought converts all plant-parasitic nematodes into virus vectors
Correct Answer: Nematode-damaged roots cannot meet the increased water demand
Explanation:
Root injury reduces water uptake. Environmental stress can therefore make damage severe even when the nematode population alone causes limited visible symptoms.
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28In a controlled experiment, disease severity is recorded as 15% with a nematode alone, 20% with a bacterium alone, and 70% with both organisms. What does the combined treatment suggest?
Role of nematodes in disease development
Medium
A.A sampling error is certain because severity exceeds either treatment
B.A positive interaction enhances development of the disease complex
C.An antagonistic interaction suppresses development of both pathogens
D.An independent interaction limits severity to the larger single effect
Correct Answer: A positive interaction enhances development of the disease complex
Explanation:
The combined severity greatly exceeds either individual effect and their simple sum, supporting a positive or synergistic disease interaction.
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29A Fusarium-resistant tomato cultivar develops wilt when roots are heavily infected by root-knot nematodes. Which mechanism best explains the apparent breakdown of resistance?
Interaction between plant-parasitic nematodes and disease-causing fungi
Medium
A.Root galls prevent Fusarium from contacting vascular root tissues
B.Nematodes permanently raise soil temperature above fungal tolerance
C.Nematode feeding alters root physiology and predisposes tissue to Fusarium
D.Nematodes replace Fusarium spores with more resistant bacterial cells
Correct Answer: Nematode feeding alters root physiology and predisposes tissue to Fusarium
Explanation:
Root-knot nematodes can modify host cells, weaken defenses, and increase fungal establishment, sometimes reducing the effectiveness of resistance to Fusarium wilt.
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30A researcher applies a nematicide to soil containing both Pratylenchus and a root-rotting fungus. Root rot declines even though the fungal population remains similar. Which conclusion is most reasonable?
Interaction between plant-parasitic nematodes and disease-causing fungi
Medium
A.Root rot was caused only by direct nematicide toxicity
B.Lesions made by the nematode had facilitated fungal infection
C.The nematicide had increased the virulence of the fungus
D.The fungus depended on nematodes for airborne spore dispersal
Correct Answer: Lesions made by the nematode had facilitated fungal infection
Explanation:
Pratylenchus damages cortical cells and creates infection sites. Reducing the nematode can therefore reduce fungal root rot without greatly changing the fungal population.
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31Disease is most severe when a root-lesion nematode is introduced seven days before a fungal pathogen. Why can the order of inoculation matter?
Interaction between plant-parasitic nematodes and disease-causing fungi
Medium
A.Early nematode infection sterilizes the root surface before fungal contact
B.Late fungal infection prevents nematodes from feeding on cortical cells
C.Late fungal infection changes the nematode into a saprophytic organism
D.Early nematode infection creates damaged and physiologically altered tissue
Correct Answer: Early nematode infection creates damaged and physiologically altered tissue
Explanation:
Nematodes introduced first have time to wound roots and change host physiology, providing the later-arriving fungus with favorable infection sites.
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32Which management program is most appropriate for a crop affected by a nematode–fungus root disease complex?
Interaction between plant-parasitic nematodes and disease-causing fungi
Medium
A.Control the fungus alone because nematodes cannot influence root diseases
B.Increase planting density so diseased roots occupy less soil volume
C.Combine nematode suppression, resistant cultivars, and fungal disease management
D.Apply only a foliar insecticide after severe root symptoms appear
Both organisms contribute to the disease complex. Integrated management targeting the nematode, fungus, and susceptible host is more reliable than controlling only one component.
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33Tomato plants exposed to both root-knot nematodes and a bacterial wilt pathogen wilt earlier than plants exposed to the bacterium alone. Which nematode activity most likely promotes this outcome?
Interaction between plant-parasitic nematodes and disease-causing bacteria
Medium
A.Producing feeding sites and wounds that favor bacterial invasion
B.Closing xylem vessels before bacterial multiplication begins
C.Forming a wax layer that blocks bacterial entry into roots
D.Digesting bacterial cells before they reach vascular tissues
Correct Answer: Producing feeding sites and wounds that favor bacterial invasion
Explanation:
Nematode penetration and feeding damage root tissues, while altered feeding sites can favor bacterial entry, establishment, and subsequent wilt development.
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34A bacterial pathogen enters plants mainly through wounds. Which nematode group would most directly increase infection opportunities by repeatedly migrating through root tissue?
Interaction between plant-parasitic nematodes and disease-causing bacteria
Medium
Correct Answer: Migratory endoparasitic nematodes such as Pratylenchus
Explanation:
Migratory endoparasites move through roots and repeatedly puncture cells, creating many wounds that can serve as entry points for bacterial pathogens.
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35A bactericide lowers bacterial wilt severity only slightly in a field with a large root-knot nematode population. Which additional measure is most likely to improve control?
Interaction between plant-parasitic nematodes and disease-causing bacteria
Medium
A.Increase irrigation to distribute the bacterium throughout the field
B.Reduce the nematode population before planting the next crop
C.Delay harvest so infected vascular tissues can recover completely
D.Apply extra nitrogen to stimulate production of larger root galls
Correct Answer: Reduce the nematode population before planting the next crop
Explanation:
When nematode damage predisposes roots to bacterial infection, suppressing the nematode reduces entry sites and host stress, improving management of the disease complex.
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36In sterile soil, a nematode causes mild root damage. In naturally infested soil, the same nematode density causes extensive soft decay associated with bacteria. What is the best explanation?
Interaction between plant-parasitic nematodes and disease-causing bacteria
Medium
A.Sterile soil causes all nematodes to become nonparasitic juveniles
B.Natural soil prevents bacteria from colonizing injured root tissue
C.Soft decay is a direct symptom produced by nematode eggs alone
D.Secondary bacterial invasion increases decay of nematode-damaged tissue
Correct Answer: Secondary bacterial invasion increases decay of nematode-damaged tissue
Explanation:
Wounds and dead cells created by nematodes can be colonized by bacteria, converting limited primary injury into more extensive tissue decay.
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37A grapevine virus continues to spread slowly through a field even after virus-infected vines are removed. Soil samples contain dagger nematodes. Which process most likely maintains local spread?
Interaction between plant-parasitic nematodes and disease-causing viruses
Medium
A.Viruliferous Xiphinema transmit the virus while feeding on new roots
B.Cyst nematodes release virus particles that multiply freely in soil
C.Root-knot females transmit the virus through eggs inside root galls
D.Lesion nematodes produce the virus during migration through cortex
Correct Answer: Viruliferous Xiphinema transmit the virus while feeding on new roots
Explanation:
Dagger nematodes such as Xiphinema can acquire and transmit certain nepoviruses during root feeding, allowing spread among plants even after obvious sources are removed.
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38A field has tobacco rattle virus and stubby-root nematodes. Which management decision addresses the biological link between them most directly?
Interaction between plant-parasitic nematodes and disease-causing viruses
Medium
A.Control aphids only because all plant viruses require insect vectors
B.Apply a bactericide and suppress root-knot nematode females
C.Remove fungal fruiting bodies and suppress Xiphinema vectors
D.Use virus-free planting material and suppress Trichodorus vectors
Correct Answer: Use virus-free planting material and suppress Trichodorus vectors
Explanation:
Tobacco rattle virus is a tobravirus transmitted by stubby-root nematodes such as Trichodorus and Paratrichodorus. Managing both virus sources and vectors is appropriate.
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39A nematode acquires a plant virus from an infected root but fails to transmit it to healthy plants. Which explanation best reflects the specificity of nematode transmission?
Interaction between plant-parasitic nematodes and disease-causing viruses
Medium
A.Any root-feeding nematode can transmit any virus after acquisition
B.The virus must pass through nematode eggs before becoming transmissible
C.Every acquired virus must multiply inside the nematode before transmission
D.The virus may not bind correctly to retention sites in that nematode
Correct Answer: The virus may not bind correctly to retention sites in that nematode
Explanation:
Virus transmission is vector-specific. Successful transmission requires compatible virus particles to be retained at particular sites in the nematode feeding apparatus.
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40A soil fumigation treatment sharply reduces a virus-vectoring nematode, but healthy plants are later infected after nematodes recolonize from an untreated field edge. Which conclusion is best supported?
Interaction between plant-parasitic nematodes and disease-causing viruses
Medium
A.Virus particles reproduced independently in fumigated soil without hosts
B.Vector management must include reinvasion sources and infected host reservoirs
C.Fumigation permanently increased the susceptibility of every crop plant
D.Nematode control is irrelevant whenever a virus occurs at a field edge
Correct Answer: Vector management must include reinvasion sources and infected host reservoirs
Explanation:
Reducing vectors in one area may provide only temporary control if viruliferous nematodes can return from untreated soil or acquire the virus from infected plants and weeds.
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41A field contains irregular patches of stunted, chlorotic plants that wilt during midday but partially recover at night. The roots lack conspicuous galls but have shortened laterals and numerous small brown lesions. Which diagnosis is best supported by this symptom pattern?
Symptomatology
Hard
A.An ectoparasitic nematode is feeding exclusively on foliage and blocking stomatal opening
B.A bacterial vascular pathogen is acting alone and producing diagnostic root hypertrophy
C.A sedentary endoparasitic nematode is inducing giant cells and extensive root galling
D.A migratory endoparasitic nematode is damaging cortical tissue and reducing root function
Correct Answer: A migratory endoparasitic nematode is damaging cortical tissue and reducing root function
Explanation:
Migratory endoparasites such as Pratylenchus move through the cortex, producing lesions, root pruning, and impaired water uptake. Their above-ground symptoms are typically nonspecific and patchy.
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42Two root samples show swellings. Sample I has knots that are continuous with the root tissue, while Sample II bears small lemon-shaped bodies attached to otherwise distinct roots. Which interpretation is most accurate?
Symptomatology
Hard
A.Both samples indicate root-knot nematodes at different juvenile developmental stages
B.Sample I indicates root-knot nematodes, whereas Sample II is consistent with cyst nematodes
C.Both samples indicate cyst nematodes under different soil-moisture conditions
D.Sample I indicates cyst nematodes, whereas Sample II is consistent with root-knot nematodes
Correct Answer: Sample I indicates root-knot nematodes, whereas Sample II is consistent with cyst nematodes
Explanation:
Root-knot nematodes induce galls made from altered root tissue. Mature cyst-nematode females or cysts appear as distinct bodies attached to the root surface.
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43Plants in a uniformly fertilized field exhibit severe stunting in elongated bands parallel to the direction of cultivation. Nematode counts are high within the bands but low between them. What is the strongest interpretation of the spatial pattern?
Plant-parasitic nematodes commonly have aggregated field distributions. Movement of infested soil by tillage can stretch localized infestations into bands aligned with cultivation.
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44A susceptible crop has extensive root galling but only moderate shoot suppression, whereas another field has little galling but severe stunting. Which conclusion is scientifically most defensible?
Symptomatology
Hard
A.Root galling always increases water uptake enough to prevent severe shoot symptoms
B.Shoot suppression is unrelated to nematodes whenever visible root galling is absent
C.The field with less galling must contain a lower population of every plant-parasitic nematode
D.Gall severity alone cannot reliably quantify functional damage across nematode species or environments
Correct Answer: Gall severity alone cannot reliably quantify functional damage across nematode species or environments
Explanation:
Visible galling is characteristic of certain nematodes but is not a universal measure of root dysfunction. Species, host response, infection timing, and environmental stress can alter the relationship between signs and yield loss.
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45In a factorial experiment, mean disease severities are 5% in untreated plants, 20% with a nematode alone, 25% with a fungus alone, and 75% with both organisms. If independent additive effects predict approximately 40% severity after adjustment for the common baseline, what does the combined treatment indicate?
Role of nematodes in disease development
Hard
A.An antagonistic disease interaction because the combined treatment contains two biological agents
B.A synergistic disease interaction because observed severity substantially exceeds the additive prediction
D.An additive disease interaction because both organisms individually produce measurable symptoms
Correct Answer: A synergistic disease interaction because observed severity substantially exceeds the additive prediction
Explanation:
The combined severity is far greater than the stated additive expectation. This supports synergism, although a formal factorial analysis should test the interaction statistically.
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46Which experimental result most strongly demonstrates predisposition rather than simple mechanical inoculation of a secondary pathogen?
Role of nematodes in disease development
Hard
A.Disease enhancement disappears whenever nematodes penetrate before pathogen application
B.Disease remains enhanced when the pathogen is applied after nematode feeding wounds have healed
C.Disease increases only when pathogen cells are physically attached to the nematode cuticle
D.Disease occurs only when nematodes and pathogen propagules enter the same wound simultaneously
Correct Answer: Disease remains enhanced when the pathogen is applied after nematode feeding wounds have healed
Explanation:
Persistent enhancement after wounds have healed indicates that nematode-induced physiological or biochemical changes predisposed the host. A purely mechanical wound effect should decline as tissue integrity is restored.
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47A nematode increases root exudation, alters host defense signaling, and creates nutrient-rich feeding sites. Which consequence best integrates these effects in a disease complex?
Role of nematodes in disease development
Hard
A.The altered root environment prevents secondary colonization by competing microorganisms
B.The pathogen must replicate inside the nematode before it can colonize the modified root
C.The nematode necessarily becomes the sole causal agent under Koch's postulates
D.The altered root environment can improve pathogen establishment even without direct pathogen transport
Correct Answer: The altered root environment can improve pathogen establishment even without direct pathogen transport
Explanation:
Nematodes may predispose roots by changing leakage, nutrition, anatomy, and defenses. Disease enhancement therefore does not require the nematode to carry or internally transmit the pathogen.
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48A resistant cultivar limits nematode reproduction but still allows brief juvenile penetration. In pathogen-infested soil, disease remains higher than in nonpenetrated controls. Which mechanism can best explain this result?
Role of nematodes in disease development
Hard
A.The pathogen response proves that nematode resistance has converted into pathogen resistance
B.Only adult female nematodes can alter susceptibility to pathogens in resistant roots
C.Resistance to reproduction guarantees complete exclusion of all nematode-mediated effects
D.Early penetration can create wounds or defense changes despite failure of nematode reproduction
Correct Answer: Early penetration can create wounds or defense changes despite failure of nematode reproduction
Explanation:
Resistance may prevent successful feeding-site formation or reproduction without preventing initial invasion. Early tissue damage and altered host responses can still facilitate another pathogen.
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49In a tomato wilt complex, Meloidogyne infection increases Fusarium oxysporum disease even when roots are inoculated with the fungus several days after nematode penetration. Which mechanism is most consistent with this sequence?
Interaction between plant-parasitic nematodes and disease-causing fungi
Hard
A.The fungus is obligatorily transmitted within root-knot nematode eggs to the vascular system
B.Nematode-induced feeding sites and host physiological changes increase susceptibility to fungal invasion
C.The nematode eliminates vascular tissue, preventing fungal movement but increasing leaf chlorosis
D.Root-knot juveniles acquire fungal spores from leaves and inject them through their stylets
Correct Answer: Nematode-induced feeding sites and host physiological changes increase susceptibility to fungal invasion
Explanation:
Root-knot nematodes modify root cells, defenses, and vascular connections. These changes can predispose roots to Fusarium independently of obligatory carriage by the nematode.
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50Potato early dying becomes severe at inoculum densities of Verticillium dahliae that cause little disease in the absence of Pratylenchus penetrans. What does this observation most directly imply?
Interaction between plant-parasitic nematodes and disease-causing fungi
Hard
A.The nematode converts the fungus into an obligate parasite by altering its genome
B.The nematode lowers the effective fungal inoculum threshold required for substantial disease
C.The fungus prevents nematode penetration and therefore independently accelerates senescence
D.The fungus can cause disease only after reproducing within the nematode digestive tract
Correct Answer: The nematode lowers the effective fungal inoculum threshold required for substantial disease
Explanation:
In this disease complex, nematode damage and host modification allow relatively low fungal populations to produce substantial symptoms. This is a classic threshold-shifting synergistic effect.
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51A fungicide suppresses fungal colonization in nematode-infected roots but does not restore yield to the nematode-free level. Which conclusion best fits the evidence?
Interaction between plant-parasitic nematodes and disease-causing fungi
Hard
A.The nematode is irrelevant because fungal colonization declined after fungicide application
B.The fungus is the sole cause because fungicide treatment removed all fungal propagules
C.The fungus contributes to the complex, while direct nematode damage still accounts for residual loss
D.The interaction is necessarily antagonistic because yield recovery was incomplete
Correct Answer: The fungus contributes to the complex, while direct nematode damage still accounts for residual loss
Explanation:
Suppressing one component can reduce the interaction without eliminating damage caused independently by the other component. Incomplete yield recovery therefore supports multiple contributions.
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52A split-root plant has nematodes inoculated on one root half and a wilt fungus inoculated on the physically separate half. Fungal disease is enhanced despite no detectable nematode migration. Which inference is best supported?
Interaction between plant-parasitic nematodes and disease-causing fungi
Hard
A.Direct enlargement of fungal entry wounds is the only mechanism operating in the plant
B.The fungus must have been carried externally by nematodes between the root compartments
C.Local cortical destruction cannot influence disease unless both organisms occupy one lesion
D.Systemic host signaling or resource changes contribute to nematode-induced susceptibility
Correct Answer: Systemic host signaling or resource changes contribute to nematode-induced susceptibility
Explanation:
Enhancement across physically separated root systems cannot be explained solely by shared local wounds. It supports a systemic change in defense, physiology, or resource allocation.
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53Root-knot infection precedes inoculation with Ralstonia solanacearum, and bacterial wilt subsequently increases. Which explanation best accounts for enhancement beyond simple surface wounding?
Interaction between plant-parasitic nematodes and disease-causing bacteria
Hard
A.Giant-cell formation permanently seals xylem vessels and blocks bacterial multiplication
B.Root-knot nematodes transform bacterial cells into fungal-like vascular penetration structures
Root-knot infection can modify defenses, vascular tissues, and nutrient availability while also creating entry sites. These changes may intensify bacterial wilt without obligatory bacterial development inside the nematode.
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54Which relationship is most accurately described as a specialized association in which a seed-gall nematode introduces or facilitates a bacterium responsible for yellow ear rot or tundu disease of wheat?
Interaction between plant-parasitic nematodes and disease-causing bacteria
Hard
A.Anguina tritici with Rathayibacter tritici
B.Meloidogyne incognita with Agrobacterium tumefaciens
C.Heterodera glycines with Xanthomonas oryzae
D.Pratylenchus penetrans with Pectobacterium atrosepticum
Correct Answer: Anguina tritici with Rathayibacter tritici
Explanation:
Anguina tritici is associated with transmission of Rathayibacter tritici, the bacterium causing tundu disease. The nematode carries the bacterium to susceptible floral tissues.
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55After stem nematode invasion, bacterial soft rot expands rapidly through macerated tissues. Which causal model best explains the complex?
Interaction between plant-parasitic nematodes and disease-causing bacteria
Hard
A.Bacteria can colonize intact tissues only after replicating within nematode eggs
B.Nematode injury and tissue disruption create entry sites and substrates for opportunistic bacteria
C.Soft-rot bacteria induce the nematode stylet, which is absent before bacterial colonization
D.Nematode feeding sterilizes plant tissues and removes microbial competitors from the stem
Correct Answer: Nematode injury and tissue disruption create entry sites and substrates for opportunistic bacteria
Explanation:
Migratory nematodes such as Ditylenchus disrupt tissues and promote leakage. Soft-rot bacteria can exploit the resulting wounds and nutrient-rich damaged tissue.
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56A bacterium is recovered from the external surface of field nematodes, but surface-sterilized nematodes do not transmit disease under controlled conditions. What conclusion is most justified?
Interaction between plant-parasitic nematodes and disease-causing bacteria
Hard
A.Failure after sterilization proves that the bacterium normally multiplies in nematode tissues
B.External bacterial recovery proves persistent internal transmission by the nematode
C.Field association alone does not establish biologically effective nematode transmission
D.Controlled transmission is unnecessary once both organisms occur in the same field
Correct Answer: Field association alone does not establish biologically effective nematode transmission
Explanation:
Co-occurrence or external contamination does not prove vector competence. Transmission requires controlled evidence of acquisition, retention, and successful inoculation.
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57A vineyard has fanleaf degeneration, and dagger nematodes are recovered from the rhizosphere. Which vector-virus pairing most specifically supports nematode-mediated spread?
Interaction between plant-parasitic nematodes and disease-causing viruses
Hard
D.Xiphinema index transmitting Grapevine fanleaf virus
Correct Answer: Xiphinema index transmitting Grapevine fanleaf virus
Explanation:
Xiphinema index is the principal vector of Grapevine fanleaf virus. Virus-vector relationships are specific, so finding an unrelated plant-parasitic nematode would not provide equivalent evidence.
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58A virus is retained in the feeding apparatus of an ectoparasitic nematode, does not replicate in the vector, and is inoculated during later feeding. Which transmission description is most accurate?
Interaction between plant-parasitic nematodes and disease-causing viruses
Hard
A.A nonpropagative association involving acquisition and retention at specific feeding structures
B.A mechanical association in which any soil nematode can transmit the virus nonspecifically
C.A transovarial propagative association requiring viral multiplication in reproductive tissues
D.A circulative association requiring passage through the intestine and nematode hemocoel
Correct Answer: A nonpropagative association involving acquisition and retention at specific feeding structures
Explanation:
Nematode-transmitted plant viruses are retained at specific sites associated with the feeding apparatus and do not replicate within the vector. Transmission is biologically specific, not indiscriminately mechanical.
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59A potato field exhibits corky ringspot symptoms and abundant stubby-root nematodes. Which combination is the most coherent etiological hypothesis?
Interaction between plant-parasitic nematodes and disease-causing viruses
Hard
A.Tobacco rattle virus transmitted by Trichodorus or Paratrichodorus
B.Tomato ringspot virus transmitted by Meloidogyne juveniles
C.Grapevine fanleaf virus transmitted by Xiphinema index
D.Potato leafroll virus transmitted by Heterodera cysts
Correct Answer: Tobacco rattle virus transmitted by Trichodorus or Paratrichodorus
Explanation:
Tobacco rattle virus causes corky ringspot of potato and is transmitted by stubby-root nematodes in Trichodorus and Paratrichodorus. These nematodes are vectors of tobraviruses.
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60Two closely related virus isolates infect the same plant species, but only one is transmitted by a particular Xiphinema population. Both reach similar concentrations in roots. Which explanation best fits this specificity?
Interaction between plant-parasitic nematodes and disease-causing viruses
Hard
A.The transmissible isolate must reproduce sexually within the nematode before plant inoculation
B.Viral coat-protein determinants affect recognition and retention within the nematode feeding apparatus
C.The nontransmissible isolate cannot enter roots because both isolates reach equal root concentrations
D.Root virus concentration alone determines transmission regardless of isolate or vector population
Correct Answer: Viral coat-protein determinants affect recognition and retention within the nematode feeding apparatus
Explanation:
Transmission depends on specific molecular interactions between viral surface proteins and retention sites in the vector. Similar root concentrations therefore do not guarantee equal transmissibility.
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