1Which plant organelle is isolated in this experiment?
Isolation of chloroplasts
Easy
A.Ribosome
B.Chloroplast
C.Mitochondrion
D.Nucleus
Correct Answer: Chloroplast
Explanation:
The experiment focuses on separating chloroplasts from plant cells.
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2Which plant tissue is commonly used to isolate chloroplasts?
Isolation of chloroplasts
Easy
A.Leaf tissue
B.Seed coat
C.Root tissue
D.Root hair
Correct Answer: Leaf tissue
Explanation:
Leaves contain many chloroplasts because they carry out photosynthesis.
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3What is the main purpose of homogenizing leaf tissue?
Isolation of chloroplasts
Easy
A.To produce more pigments
B.To remove all water
C.To break open cells
D.To increase cell size
Correct Answer: To break open cells
Explanation:
Homogenization mechanically disrupts cells and releases their organelles.
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4Which instrument is commonly used to homogenize leaf tissue?
Isolation of chloroplasts
Easy
A.Glass homogenizer
B.Light microscope
C.pH meter
D.Water bath
Correct Answer: Glass homogenizer
Explanation:
A glass homogenizer helps break plant cells gently and release chloroplasts.
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5Why is an isolation buffer used during chloroplast isolation?
Isolation of chloroplasts
Easy
A.To stain chloroplasts
B.To protect chloroplasts
C.To digest chloroplasts
D.To dry chloroplasts
Correct Answer: To protect chloroplasts
Explanation:
The buffer helps maintain suitable conditions for chloroplast structure and function.
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6Which condition is usually maintained to reduce chloroplast damage?
Isolation of chloroplasts
Easy
A.Strong acidity
B.Low temperature
C.High temperature
D.Direct sunlight
Correct Answer: Low temperature
Explanation:
Keeping samples cold slows enzyme activity and helps preserve chloroplasts.
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7What is the purpose of filtering the homogenate?
Isolation of chloroplasts
Easy
A.To increase leaf color
B.To remove large debris
C.To create new cells
D.To dissolve chloroplasts
Correct Answer: To remove large debris
Explanation:
Filtering removes unbroken tissue and large particles before centrifugation.
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8Which technique separates cell components based partly on their size and density?
Isolation of chloroplasts
Easy
A.Chromatography
B.Centrifugation
C.Titration
D.Distillation
Correct Answer: Centrifugation
Explanation:
Centrifugation separates particles by causing them to sediment at different rates.
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9What is the pellet formed during centrifugation?
Isolation of chloroplasts
Easy
A.A settled particle layer
B.A heated sample layer
C.A dissolved gas layer
D.A floating liquid layer
Correct Answer: A settled particle layer
Explanation:
The pellet contains particles that have sedimented to the bottom of the tube.
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10Where are chloroplasts usually found after centrifugation?
Isolation of chloroplasts
Easy
A.In the air space
B.In the pellet
C.In the tube cap
D.On the outside surface
Correct Answer: In the pellet
Explanation:
Chloroplasts are relatively large organelles and can sediment into the pellet.
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11What is the liquid above the pellet called?
Isolation of chloroplasts
Easy
A.Supernatant
B.Homogenizer
C.Precipitate
D.Pellet
Correct Answer: Supernatant
Explanation:
The supernatant is the liquid layer remaining above the settled pellet.
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12Why should centrifuge tubes be balanced?
Isolation of chloroplasts
Easy
A.To protect the centrifuge
B.To dissolve the pellet
C.To heat the samples
D.To increase chlorophyll
Correct Answer: To protect the centrifuge
Explanation:
Balanced tubes prevent excessive vibration and possible damage to the centrifuge.
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13Which pigment gives chloroplasts their characteristic green color?
Isolation of chloroplasts
Easy
A.Chlorophyll
B.Melanin
C.Hemoglobin
D.Keratin
Correct Answer: Chlorophyll
Explanation:
Chlorophyll is the green photosynthetic pigment found in chloroplasts.
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14Which structure surrounds a chloroplast?
Isolation of chloroplasts
Easy
A.Cell wall only
B.Double membrane
C.Protein coat only
D.Single capsule
Correct Answer: Double membrane
Explanation:
Chloroplasts are enclosed by an outer membrane and an inner membrane.
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15What is the main role of chloroplasts in plant cells?
Isolation of chloroplasts
Easy
A.Carrying out photosynthesis
B.Digesting proteins
C.Controlling cell division
D.Producing antibodies
Correct Answer: Carrying out photosynthesis
Explanation:
Chloroplasts capture light energy and use it during photosynthesis.
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16Why should isolated chloroplasts be handled gently?
Isolation of chloroplasts
Easy
A.They can be easily damaged
B.They turn into nuclei
C.They produce cell walls
D.They rapidly become roots
Correct Answer: They can be easily damaged
Explanation:
Rough handling can break chloroplast membranes and reduce their quality.
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17Which observation suggests that a chloroplast fraction contains chlorophyll?
Isolation of chloroplasts
Easy
A.Green color
B.Bright red color
C.Black crystals
D.Clear color
Correct Answer: Green color
Explanation:
The presence of chlorophyll usually gives the chloroplast fraction a green appearance.
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18What should be done with the supernatant when the chloroplast pellet is needed?
Isolation of chloroplasts
Easy
A.Add solid wax
B.Remove it carefully
C.Boil it strongly
D.Freeze it immediately
Correct Answer: Remove it carefully
Explanation:
The supernatant is removed without disturbing the pellet containing the chloroplasts.
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19Which method can be used to examine isolated chloroplasts?
Isolation of chloroplasts
Easy
A.Sound recording
B.Magnetic weighing
C.Thermal printing
D.Light microscopy
Correct Answer: Light microscopy
Explanation:
A light microscope can be used to observe the shape and green color of chloroplasts.
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20What is the purpose of resuspending the chloroplast pellet?
Isolation of chloroplasts
Easy
A.To produce new chloroplasts
B.To remove all pigments
C.To mix chloroplasts evenly
D.To harden the pellet
Correct Answer: To mix chloroplasts evenly
Explanation:
Resuspension distributes the chloroplasts throughout a suitable liquid for further study.
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21Why is an ice-cold isolation buffer commonly used during chloroplast isolation?
Isolation of chloroplasts
Medium
A.To increase chlorophyll solubility
B.To promote chloroplast dehydration
C.To reduce enzyme activity and organelle damage
D.To accelerate membrane breakdown
Correct Answer: To reduce enzyme activity and organelle damage
Explanation:
Low temperature slows degradative enzymes and helps preserve chloroplast membranes during homogenization and centrifugation.
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22What is the main purpose of using an isotonic buffer during chloroplast isolation?
Isolation of chloroplasts
Medium
A.To increase the density of soluble proteins
B.To prevent excessive water movement across membranes
C.To remove chlorophyll from the thylakoids
D.To dissolve the chloroplast envelope completely
Correct Answer: To prevent excessive water movement across membranes
Explanation:
An isotonic medium reduces osmotic swelling or shrinking, helping maintain the structural integrity of isolated chloroplasts.
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23A leaf homogenate is filtered before centrifugation. What is the primary purpose of this step?
Isolation of chloroplasts
Medium
A.To increase the concentration of chlorophyll
B.To separate stromal proteins from ribosomes
C.To remove large tissue fragments and fibers
D.To rupture intact chloroplast membranes
Correct Answer: To remove large tissue fragments and fibers
Explanation:
Filtration removes coarse debris that could interfere with centrifugation and contaminate the chloroplast fraction.
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24During differential centrifugation, intact chloroplasts are mainly separated because they differ from soluble cytoplasmic components in their:
Isolation of chloroplasts
Medium
A.Pigment composition
B.Sedimentation behavior
C.Enzyme specificity
D.DNA sequence
Correct Answer: Sedimentation behavior
Explanation:
Differential centrifugation separates particles according to properties such as size, density, and sedimentation rate.
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25If the centrifugation speed is too low during the chloroplast pelleting step, what is the most likely result?
Isolation of chloroplasts
Medium
A.Chloroplast membranes become fully solubilized
B.The buffer becomes strongly acidic
C.All soluble proteins form the pellet
D.More chloroplasts remain in the supernatant
Correct Answer: More chloroplasts remain in the supernatant
Explanation:
Insufficient centrifugal force may prevent chloroplasts from sedimenting efficiently, reducing recovery in the pellet.
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26Why should leaf tissue be homogenized gently rather than vigorously during chloroplast isolation?
Isolation of chloroplasts
Medium
A.To eliminate the need for filtration
B.To increase the release of cell-wall enzymes
C.To prevent excessive fragmentation of chloroplasts
D.To convert chloroplasts into soluble material
Correct Answer: To prevent excessive fragmentation of chloroplasts
Explanation:
Gentle homogenization releases chloroplasts while limiting mechanical damage to their envelopes and internal membranes.
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27A chloroplast preparation appears brown rather than green. Which problem is most likely indicated?
Isolation of chloroplasts
Medium
A.Improved chloroplast purity
B.Increased thylakoid integrity
C.Complete removal of cellular debris
D.Excessive contamination or pigment degradation
Correct Answer: Excessive contamination or pigment degradation
Explanation:
A brown color may result from phenolic oxidation, tissue contamination, or degradation of chlorophyll during preparation.
Incorrect! Try again.
28Which observation most directly suggests that isolated chloroplasts remain intact?
Isolation of chloroplasts
Medium
A.Retention of chlorophyll and selective permeability
B.Complete release of stromal enzymes
C.Loss of all internal membranes
D.Uniform staining of the supernatant
Correct Answer: Retention of chlorophyll and selective permeability
Explanation:
Intact chloroplasts retain their pigments and preserve envelope functions that regulate movement of substances.
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29Why might sorbitol or sucrose be included in a chloroplast isolation buffer?
Isolation of chloroplasts
Medium
A.To precipitate chlorophyll
B.To inhibit all membrane proteins
C.To provide osmotic support
D.To digest cellulose fibers
Correct Answer: To provide osmotic support
Explanation:
Sorbitol and sucrose help balance osmotic pressure and reduce rupture of chloroplast envelopes.
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30A researcher accidentally uses distilled water instead of an isotonic buffer. What is the likely effect on chloroplasts?
Isolation of chloroplasts
Medium
A.They lose all soluble proteins selectively
B.They may swell and rupture
C.They become resistant to mechanical damage
D.They become denser and sediment faster
Correct Answer: They may swell and rupture
Explanation:
Distilled water is strongly hypotonic, causing water influx that can swell and lyse chloroplasts.
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31What is the main advantage of separating chloroplasts on a density gradient rather than using only one centrifugation step?
Isolation of chloroplasts
Medium
A.It guarantees that every chloroplast remains intact
B.It eliminates the need for a suitable buffer
C.It converts damaged chloroplasts into viable ones
D.It can improve separation from similarly sized contaminants
Correct Answer: It can improve separation from similarly sized contaminants
Explanation:
Density-gradient centrifugation separates particles according to buoyant density, often improving purity beyond simple pelleting.
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32If a chloroplast pellet is accidentally discarded with the supernatant, what is the most direct consequence?
Isolation of chloroplasts
Medium
A.The recovery of chloroplasts will decrease
B.The purity of the discarded supernatant will increase
C.The chloroplasts will automatically reseal
D.The remaining sample will contain more chloroplasts
Correct Answer: The recovery of chloroplasts will decrease
Explanation:
The pellet contains the sedimented chloroplasts, so discarding it removes a major portion of the desired organelles.
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33Why is chlorophyll absorbance sometimes measured in an isolated chloroplast preparation?
Isolation of chloroplasts
Medium
A.To identify every contaminating organelle
B.To measure the osmotic pressure directly
C.To estimate chloroplast recovery or pigment content
D.To determine the exact DNA sequence
Correct Answer: To estimate chloroplast recovery or pigment content
Explanation:
Because chlorophyll is concentrated in chloroplasts, its absorbance provides an indirect estimate of chloroplast abundance or pigment preservation.
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34A sample has high chlorophyll content but poor photosynthetic activity. Which explanation is most plausible?
Isolation of chloroplasts
Medium
A.The sample contains no chloroplasts
B.The chloroplasts were converted into nuclei
C.The buffer prevented chlorophyll absorption
D.Chloroplasts contain pigment but have damaged membranes
Correct Answer: Chloroplasts contain pigment but have damaged membranes
Explanation:
Chlorophyll may remain detectable even when thylakoid membranes or electron-transport components have been damaged.
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35Which modification would most likely reduce contamination of a chloroplast pellet by cell debris?
Isolation of chloroplasts
Medium
A.Adding a low-speed clarification step
B.Removing all filtration before centrifugation
C.Using distilled water for homogenization
D.Increasing homogenization intensity greatly
Correct Answer: Adding a low-speed clarification step
Explanation:
A low-speed spin can sediment large debris while leaving smaller chloroplasts in the supernatant for later collection.
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36Why should the supernatant be removed carefully after chloroplast centrifugation?
Isolation of chloroplasts
Medium
A.Chloroplasts dissolve immediately in air
B.The supernatant contains all intact chloroplasts
C.The tube must remain completely full
D.The soft pellet may be disturbed and lost
Correct Answer: The soft pellet may be disturbed and lost
Explanation:
Chloroplast pellets can be loose, so rapid aspiration or vigorous decanting may resuspend and remove them.
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37A buffer contains a reducing agent during chloroplast isolation. What is its likely purpose?
Isolation of chloroplasts
Medium
A.To replace centrifugation with filtration
B.To limit oxidative damage to chloroplast components
C.To increase osmotic lysis of chloroplasts
D.To digest the chloroplast envelope
Correct Answer: To limit oxidative damage to chloroplast components
Explanation:
Reducing agents can help protect proteins, pigments, and membranes from oxidation during tissue disruption.
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38Which result would best indicate that a chloroplast preparation contains substantial broken chloroplasts?
Isolation of chloroplasts
Medium
A.Low chlorophyll content in every fraction
B.Increased resistance to osmotic changes
C.High soluble enzyme activity in the supernatant
D.Absence of any material after centrifugation
Correct Answer: High soluble enzyme activity in the supernatant
Explanation:
Broken chloroplasts release stromal enzymes into the surrounding medium, increasing soluble enzyme activity in the supernatant.
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39A student wants maximum chloroplast yield but is less concerned about purity. Which approach is most appropriate?
Isolation of chloroplasts
Medium
A.Use gentle homogenization followed by broad pellet collection
B.Apply severe homogenization to dissolve contaminants
C.Use extensive gradient purification with repeated washes
D.Discard every fraction containing visible debris
Correct Answer: Use gentle homogenization followed by broad pellet collection
Explanation:
A simpler collection scheme generally improves yield, although it may retain more contaminants than a density-gradient purification.
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40Why are chloroplast isolation procedures often performed under dim or indirect light?
Isolation of chloroplasts
Medium
A.To stop all pigment absorption measurements
B.To reduce light-dependent damage during handling
C.To prevent chloroplasts from increasing in number
D.To increase the density of the buffer
Correct Answer: To reduce light-dependent damage during handling
Explanation:
Minimizing strong light can reduce photodamage and oxidative stress in isolated chloroplasts.
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41A leaf homogenate is centrifuged first at low speed to remove cell debris and nuclei, followed by a higher-speed spin intended to pellet chloroplasts. Which change would most directly improve chloroplast recovery without greatly increasing nuclear contamination?
Isolation of chloroplasts
Hard
A.Increase the first-spin speed substantially
B.Increase the second-spin speed moderately
C.Replace the buffer with distilled water
D.Decrease the first-spin duration moderately
Correct Answer: Decrease the first-spin duration moderately
Explanation:
A shorter low-speed clarification step reduces the chance that chloroplasts sediment with large debris and nuclei, while retaining the intended removal of coarse contaminants.
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42Why is an isotonic sorbitol or sucrose-containing isolation buffer essential when isolating intact chloroplasts from leaf tissue?
Isolation of chloroplasts
Hard
A.It permanently activates chloroplast proteases
B.It increases chloroplast density through dehydration
C.It prevents chloroplast swelling and lysis
D.It dissolves thylakoid membranes selectively
Correct Answer: It prevents chloroplast swelling and lysis
Explanation:
An approximately isotonic medium limits osmotic water influx, helping preserve the envelope and internal organization of intact chloroplasts.
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43An isolated chloroplast preparation has high chlorophyll recovery but very low ferricyanide-dependent oxygen evolution. Which explanation is most consistent with these results?
C.The chloroplasts retained pigments but lost functional envelopes
D.The centrifuge rotor was too cold during pelleting
Correct Answer: The chloroplasts retained pigments but lost functional envelopes
Explanation:
Chlorophyll can remain associated with membrane fragments even after envelope damage, whereas light-driven electron transport and coupled oxygen evolution require functional chloroplast structure.
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44A researcher wants to distinguish intact chloroplasts from broken chloroplasts after isolation. Which assay is most directly informative?
Isolation of chloroplasts
Hard
A.Total chlorophyll concentration
B.Stromal enzyme latency assay
C.Absorbance of the homogenization buffer
D.Total protein concentration
Correct Answer: Stromal enzyme latency assay
Explanation:
A stromal enzyme is less accessible in intact chloroplasts and becomes more measurable after envelope disruption; the change in activity therefore reports envelope integrity.
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45During homogenization, a sample is processed for twice as long as recommended. The final pellet is green but contains many small membrane fragments. What is the most likely primary cause?
Isolation of chloroplasts
Hard
A.Insufficient osmotic protection
B.Excessive mechanical shear
C.Inadequate chlorophyll synthesis
D.Excessive density-gradient resolution
Correct Answer: Excessive mechanical shear
Explanation:
Overhomogenization subjects chloroplasts to repeated mechanical forces that rupture envelopes and generate smaller membrane fragments.
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46Why are chloroplast isolation procedures commonly performed at low temperature and with rapid handling?
Isolation of chloroplasts
Hard
A.To accelerate osmotic equilibration
B.To promote chlorophyll conversion into carotenoids
C.To increase chloroplast buoyant density
D.To slow proteolysis and membrane degradation
Correct Answer: To slow proteolysis and membrane degradation
Explanation:
Low temperature and short processing times reduce enzymatic degradation, oxidative damage, and loss of membrane function.
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47A chloroplast preparation is contaminated with mitochondria. Which additional purification strategy would best exploit the difference in organelle buoyant density while preserving intact chloroplasts?
Isolation of chloroplasts
Hard
A.A prolonged hypotonic incubation
B.A high-detergent extraction step
C.A discontinuous Percoll density gradient
D.A second homogenization through a narrow needle
Correct Answer: A discontinuous Percoll density gradient
Explanation:
Percoll gradients separate organelles according to buoyant density and can yield distinct chloroplast bands while minimizing additional mechanical disruption.
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48A protocol uses EDTA in the isolation buffer, but the preparation is intended for assays requiring intact chloroplast envelopes. Which concern is most appropriate?
Isolation of chloroplasts
Hard
A.EDTA will convert chloroplasts into mitochondria
B.EDTA may chelate divalent cations and weaken envelope stability
D.EDTA selectively removes all chlorophyll from thylakoids
Correct Answer: EDTA may chelate divalent cations and weaken envelope stability
Explanation:
Chelation of calcium and magnesium can affect membrane interactions and structural stability; the concentration and purpose of EDTA must therefore be carefully controlled.
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49A green band appears at an unexpected interface in a density gradient. Microscopy shows mostly small vesicles rather than intact chloroplasts. Which interpretation is most defensible?
Isolation of chloroplasts
Hard
A.The band proves that chloroplasts were never present
B.The band is purified intact chloroplasts
C.The band contains only nuclear chromatin
D.The band consists largely of fragmented envelope or thylakoid material
Correct Answer: The band consists largely of fragmented envelope or thylakoid material
Explanation:
Green color indicates chlorophyll-containing material but does not establish intactness; small vesicles are consistent with disrupted chloroplast membranes.
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50Which result would provide the strongest evidence that a chloroplast fraction is both enriched and relatively pure?
Isolation of chloroplasts
Hard
A.High chlorophyll-to-protein ratio alone
B.High chlorophyll concentration alone
C.Enrichment of chloroplast markers with low mitochondrial and cytosolic markers
D.A visibly dark-green pellet after centrifugation
Correct Answer: Enrichment of chloroplast markers with low mitochondrial and cytosolic markers
Explanation:
Purity requires comparison with markers from multiple compartments; chlorophyll color or concentration alone cannot exclude nonchloroplast contamination.
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51A protocol gives poor chloroplast yield from mature leaves but acceptable yield from young leaves. Which tissue property most plausibly explains the difference?
Isolation of chloroplasts
Hard
A.Mature leaves contain no functional thylakoid membranes
B.Young leaves lack all chloroplast envelope proteins
C.Mature leaves generally contain more rigid cell walls and phenolic compounds
Correct Answer: Mature leaves generally contain more rigid cell walls and phenolic compounds
Explanation:
Older tissues are often harder to homogenize gently and may release phenolics and other compounds that damage chloroplasts or interfere with purification.
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52If the homogenate is filtered through a mesh that is too fine, what trade-off is most likely?
Isolation of chloroplasts
Hard
A.Lower debris contamination but greater chloroplast loss
B.Complete removal of mitochondria with no chloroplast loss
C.Higher chloroplast yield with more intact tissue fragments
D.Improved chloroplast integrity because filtration adds osmotic support
Correct Answer: Lower debris contamination but greater chloroplast loss
Explanation:
A restrictive filter can remove coarse debris effectively but may also trap intact chloroplasts or cause shear-related damage, reducing recovery.
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53A student resuspends the chloroplast pellet by vigorous vortexing and obtains low intactness in the final sample. Which modification is most appropriate?
Isolation of chloroplasts
Hard
A.Use gentle pipetting with a wide-bore tip
B.Increase vortex speed to disperse aggregates
C.Freeze the pellet before mixing
D.Add detergent before resuspension
Correct Answer: Use gentle pipetting with a wide-bore tip
Explanation:
Chloroplast envelopes are mechanically fragile; gentle, controlled resuspension minimizes shear and preserves organelle integrity.
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54A preparation has low total chlorophyll recovery but a high proportion of intact chloroplasts among the recovered particles. Which procedural change would most likely increase yield while preserving quality?
Isolation of chloroplasts
Hard
A.Extend homogenization until the suspension turns opaque
B.Increase all centrifugation speeds twofold
C.Replace isotonic buffer with hypotonic buffer
D.Use a slightly larger amount of starting tissue
Correct Answer: Use a slightly larger amount of starting tissue
Explanation:
Increasing starting material can raise total recovery without directly increasing mechanical or osmotic damage to each chloroplast.
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55Why can excessive centrifugation force reduce the quality of an isolated chloroplast fraction even when it increases the apparent pellet size?
Isolation of chloroplasts
Hard
A.It converts chloroplast DNA into nuclear DNA
B.It increases the osmolarity of the isolation buffer
C.It can compact organelles and promote irreversible aggregation
D.It removes all soluble contaminants without affecting chloroplasts
Correct Answer: It can compact organelles and promote irreversible aggregation
Explanation:
High force can tightly compact chloroplasts, making them difficult to resuspend and increasing aggregation or mechanical damage during recovery.
Incorrect! Try again.
56A chloroplast suspension shows rapid loss of photosynthetic activity only when illuminated during storage. Which control is most important for identifying the cause?
Isolation of chloroplasts
Hard
A.Centrifuge the illuminated sample at a lower speed
B.Store an equivalent sample in darkness at the same temperature
C.Add detergent only to the dark-stored sample
D.Measure the color of the tube before illumination
Correct Answer: Store an equivalent sample in darkness at the same temperature
Explanation:
A dark-stored, temperature-matched control separates light-dependent photodamage from temperature effects and general time-dependent deterioration.
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57A chloroplast fraction exhibits substantial activity of a cytosolic enzyme marker. Which conclusion is most justified before changing the isolation protocol?
Isolation of chloroplasts
Hard
A.Soluble cytosolic material likely remained trapped or insufficiently removed
B.The marker enzyme is necessarily localized in thylakoids
C.The chloroplasts must be completely intact
D.The chloroplasts have synthesized the cytosolic enzyme during centrifugation
Correct Answer: Soluble cytosolic material likely remained trapped or insufficiently removed
Explanation:
Cytosolic marker activity suggests carryover of soluble material or incomplete washing, although compartment-specific localization should also be verified experimentally.
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58A researcher compares two protocols. Protocol A gives 80% intactness and 40% chlorophyll recovery; Protocol B gives 50% intactness and 70% recovery. For an assay requiring intact envelope transport, which protocol is preferable?
Isolation of chloroplasts
Hard
A.Protocol B, because total chlorophyll recovery always dominates
B.Either protocol, because intactness and recovery are interchangeable
C.Protocol A, because functional intactness is the limiting requirement
D.Protocol B, because lower intactness improves transport measurements
Correct Answer: Protocol A, because functional intactness is the limiting requirement
Explanation:
For envelope transport studies, the fraction of chloroplasts retaining functional envelopes is more important than maximizing total pigment recovery.
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59A green pellet is observed after the first low-speed centrifugation, indicating that chloroplasts sedimented with the debris. Which adjustment is most rational as a first test?
Isolation of chloroplasts
Hard
A.Reduce the first-spin speed or duration
B.Increase the first-spin speed and duration
C.Use distilled water to reduce chloroplast density
D.Add detergent before repeating the spin
Correct Answer: Reduce the first-spin speed or duration
Explanation:
If chloroplasts are pelleting during clarification, lowering the sedimentation threshold should retain more chloroplasts in the supernatant for subsequent collection.
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60Which observation most strongly suggests osmotic rupture rather than mechanical fragmentation during chloroplast isolation?
Isolation of chloroplasts
Hard
A.Large tissue pieces remaining after filtration
B.A dense pellet after excessive centrifugation
C.A high proportion of empty envelope remnants after hypotonic exposure
D.Many irregular fragments immediately after vigorous blending
Correct Answer: A high proportion of empty envelope remnants after hypotonic exposure
Explanation:
Hypotonic conditions cause water influx and lysis, often leaving envelope remnants and releasing stromal contents without requiring intense mechanical shear.
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