Unit 4: Isolation of Organelles - Practice Quiz

BTY114 — Cell Biology Laboratory 60 Questions
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1 Which plant organelle is isolated in this experiment?

Isolation of chloroplasts Easy
A. Ribosome
B. Chloroplast
C. Mitochondrion
D. Nucleus

2 Which plant tissue is commonly used to isolate chloroplasts?

Isolation of chloroplasts Easy
A. Leaf tissue
B. Seed coat
C. Root tissue
D. Root hair

3 What 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

4 Which instrument is commonly used to homogenize leaf tissue?

Isolation of chloroplasts Easy
A. Glass homogenizer
B. Light microscope
C. pH meter
D. Water bath

5 Why 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

6 Which condition is usually maintained to reduce chloroplast damage?

Isolation of chloroplasts Easy
A. Strong acidity
B. Low temperature
C. High temperature
D. Direct sunlight

7 What 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

8 Which technique separates cell components based partly on their size and density?

Isolation of chloroplasts Easy
A. Chromatography
B. Centrifugation
C. Titration
D. Distillation

9 What 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

10 Where 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

11 What is the liquid above the pellet called?

Isolation of chloroplasts Easy
A. Supernatant
B. Homogenizer
C. Precipitate
D. Pellet

12 Why 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

13 Which pigment gives chloroplasts their characteristic green color?

Isolation of chloroplasts Easy
A. Chlorophyll
B. Melanin
C. Hemoglobin
D. Keratin

14 Which structure surrounds a chloroplast?

Isolation of chloroplasts Easy
A. Cell wall only
B. Double membrane
C. Protein coat only
D. Single capsule

15 What 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

16 Why 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

17 Which 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

18 What 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

19 Which method can be used to examine isolated chloroplasts?

Isolation of chloroplasts Easy
A. Sound recording
B. Magnetic weighing
C. Thermal printing
D. Light microscopy

20 What 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

21 Why 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

22 What 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

23 A 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

24 During 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

25 If 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

26 Why 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

27 A 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

28 Which 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

29 Why 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

30 A 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

31 What 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

32 If 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

33 Why 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

34 A 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

35 Which 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

36 Why 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

37 A 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

38 Which 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

39 A 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

40 Why 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

41 A 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

42 Why 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

43 An isolated chloroplast preparation has high chlorophyll recovery but very low ferricyanide-dependent oxygen evolution. Which explanation is most consistent with these results?

Isolation of chloroplasts Hard
A. The sample contains excessive soluble stromal enzymes
B. The preparation contains mostly intact chloroplasts
C. The chloroplasts retained pigments but lost functional envelopes
D. The centrifuge rotor was too cold during pelleting

44 A 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

45 During 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

46 Why 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

47 A 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

48 A 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
C. EDTA necessarily increases chloroplast photosynthetic efficiency
D. EDTA selectively removes all chlorophyll from thylakoids

49 A 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

50 Which 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

51 A 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
D. Young leaves cannot undergo differential centrifugation

52 If 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

53 A 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

54 A 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

55 Why 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

56 A 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

57 A 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

58 A 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

59 A 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

60 Which 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