- AATP synthesis via cyclic photophosphorylation.
- BATP synthesis via non-cyclic photophosphorylation.
- CNADPH synthesis.
- DWater splitting and oxygen evolution.
If Photosystem I (PSI) is inhibited, non-cyclic photophosphorylation would cease (affecting ATP and NADPH synthesis), and cyclic photophosphorylation would also stop. However, water splitting and oxygen evolution are functions of Photosystem II (PSII) and would continue as long as PSII is active and receiving light, at least initially, until electron flow backs up and inhibits PSII.
More Questions on Photosynthesis in Higher Plants
The primary role of the oxygen-evolving complex (OEC) associated with Photosystem II is to:
2If a plant is exposed to light but deprived of CO2, what would happen to the levels of ATP and NADPH in the chloroplast?
3Which pair of molecules represents the initial CO2 acceptor and the first stable product of CO2 fixation, respectively, in C3 plants?
4What would be the likely impact on the overall rate of photosynthesis if the temperature rises significantly above the optimal range for a C3 plant?
5A plant's leaves appear yellow-orange instead of green. This suggests that the plant:
6Which of the following is a primary site for the generation of the proton gradient during the light reactions of photosynthesis?
7If you were to engineer a C3 plant to exhibit C4 characteristics, what would be a critical change you would need to introduce?
8What is the significance of the "energy-rich" bond in ATP and NADPH in the context of the Calvin cycle?
9The 'red drop' effect in photosynthesis indicates:
10Which experimental observation provided evidence that oxygen released during photosynthesis comes from water?
11If the concentration of the enzyme RuBisCO were significantly reduced in a C3 plant, what would be the most immediate and profound effect on photosynthesis?
12What is the primary product of cyclic photophosphorylation?
13The regeneration phase of the Calvin cycle is crucial because:
14Which of the following statements accurately compares the photosynthetic process in a C3 plant with a C4 plant under conditions of high temperature and high light intensity?
15Why is Photosystem II (PSII) considered the first photosystem in the non-cyclic electron transport chain despite being discovered later?
16Which of the following is an incorrect statement regarding the light reaction?
17If an experimental setup with a C3 plant is provided with CO2 containing radioactively labeled carbon (14C), in which molecule would the 14C first appear after a very short period of photosynthesis?
18What is the main reason why C4 plants have higher photosynthetic efficiency than C3 plants in hot and dry environments?
19Which of the following statements about the role of the thylakoid membrane in photosynthesis is correct?
20The role of malic acid in CAM plants is to:
21C3 plants differ from C4 plants primarily in:
22Which enzyme is responsible for the regeneration of RuBP in the Calvin cycle, and what energy source does it utilize?
23What is the significance of the chemiosmotic hypothesis in photosynthesis?
24Photorespiration is a process that occurs when:
25Which of the following pigments is directly involved in the absorption of light energy and the conversion of that energy into chemical energy?
26In the Calvin cycle, how many molecules of 3-phosphoglycerate (3-PGA) are formed from the fixation of three molecules of CO2?
27The splitting of a water molecule during photolysis yields:
28Plants utilize the enzyme RuBisCO in the Calvin cycle. What is a key characteristic of RuBisCO that affects photosynthetic efficiency, especially in C3 plants?
29Which statement regarding photorespiration is *false*?
30If a plant is exposed to very low light intensity, but with optimal CO2, temperature, and water, which factor would be limiting the rate of photosynthesis?
31The primary role of the antenna pigments in a photosystem is to:
32Which of the following correctly describes the process of carbon fixation in C4 plants?
33What would happen if the proton pump activity of the cytochrome b6f complex were inhibited during the light reactions of photosynthesis?
34What is the immediate fate of glucose synthesized during photosynthesis in higher plants?
35A chemical inhibitor that specifically blocks the electron transport from plastoquinone (PQ) to the cytochrome b6f complex would directly affect:
36In C4 plants, the bundle sheath cells are characterized by:
37Which of the following statements about the function of different parts of the chloroplast is *correct*?
38Which of the following factors is most likely to cause a decrease in the efficiency of photosynthesis by promoting the oxygenase activity of RuBisCO?
39Assertion (A): The Calvin cycle reactions are directly dependent on light. Reason (R): They occur only in the presence of the products of the light reaction (ATP and NADPH).
40The antenna complex in a photosystem is primarily composed of:
41If a severe drought causes prolonged stomatal closure in a C3 plant, which immediate metabolic consequence would be observed in its chloroplasts?
42The primary CO2 acceptor in C4 plants is a 3-carbon compound. What is its name?
43A decrease in the quantum yield of photosynthesis at wavelengths above 680 nm, known as the 'red drop', signifies:
44Jan Ingenhousz demonstrated that sunlight is essential for photosynthesis and that:
45Assertion (A): Chlorophyll a is considered the reaction center pigment. Reason (R): It has a long phytol tail which anchors it to the thylakoid membrane and a porphyrin head for light absorption.
46The end products of the light-dependent reactions of photosynthesis that are used in the Calvin cycle are:
47Which of the following is a key distinguishing feature between CAM plants and C4 plants in terms of their carbon fixation strategy?
48The statement "When a process is conditioned as to its rapidity by a number of separate factors, the rate of the process is limited by the pace of the slowest factor" is known as:
49What would be the effect on the pH of the thylakoid lumen if a chloroplast is illuminated and then transferred to darkness, assuming all other conditions are stable?
50Which wavelengths of light are generally *least* effective for photosynthesis?
51If Photosystem II (PSII) were entirely non-functional in a plant, which of the following would *not* be a direct consequence?
52Where is oxygen primarily released during the light-dependent reactions of photosynthesis?
53If a C4 plant is synthesizing one molecule of glucose, how many additional ATP molecules are specifically required for the C4 pathway itself, beyond those for the Calvin cycle?
54The splitting of water molecules during the light reaction of photosynthesis performs which of the following essential functions?
55In a typical C4 plant leaf, which anatomical feature is directly associated with minimizing photorespiration?
56Where does the Calvin cycle take place in a C3 plant?
57At low light intensities, increasing CO2 concentration typically has little to no effect on the rate of photosynthesis. This observation supports the principle of:
58If electrons return from ferredoxin back to the cytochrome b6f complex instead of proceeding to NADP+ reductase, what type of photophosphorylation occurs?
59Why is it said that more ATP than NADPH is required for glucose synthesis in the Calvin cycle?
60In C4 plants, the enzyme responsible for the initial fixation of atmospheric CO2 in the mesophyll cells is:
61Which of the following processes does *not* directly contribute to the build-up of the proton gradient across the thylakoid membrane during non-cyclic photophosphorylation?
62Which statement best differentiates chlorophyll a from chlorophyll b?
63A desert plant is observed to have a very low rate of photosynthesis during the day, despite abundant sunlight. The most likely limiting factor in this scenario, considering its habitat, would be:
64An experiment is conducted where a plant is provided with water containing O18 (heavy isotope of oxygen). Where would the O18 isotope most likely be detected after photosynthesis?
65If a C3 plant's supply of ATP is severely limited, which phase of the Calvin cycle would be most immediately and directly affected, leading to a cessation of sugar production?
66The membrane system within the chloroplast that contains the chlorophyll pigments and is the site of the light-dependent reactions is called the:
67C4 plants are able to concentrate CO2 in their bundle sheath cells up to 10 times higher than atmospheric levels. This mechanism is crucial because:
68Which of the following components of the electron transport chain in the thylakoid membrane is responsible for pumping protons from the stroma into the thylakoid lumen?
69A plant growing in a desert environment shows stomata opening primarily during the night. This adaptation helps the plant to:
70Which photosystem is primarily involved in cyclic photophosphorylation?
71In Engelmann's experiment, why did he use a prism to split light into its spectral components and aerobic bacteria?
72Photorespiration is favored by:
73If a plant produces 36 molecules of glucose, how many molecules of ATP and NADPH would have been utilized in the Calvin cycle, assuming optimal conditions?
74Which of the following molecules serves as the primary CO2 acceptor in the Calvin cycle?
75Under which environmental conditions would a C4 plant most likely have a significant advantage over a C3 plant?
76In the Z-scheme of photosynthesis, the electron transfer from Photosystem II to Photosystem I involves which of the following intermediate electron carriers?
77Assertion (A): Photorespiration is considered a wasteful process in C3 plants. Reason (R): RuBisCO acts as an oxygenase, leading to the formation of phosphoglycolate and consuming ATP and NADPH without producing sugars.
78What is the primary function of accessory pigments like carotenoids and chlorophyll b in photosynthesis?
79How many turns of the Calvin cycle are required to produce one molecule of glucose (C6H12O6), and how many molecules of ATP and NADPH are consumed in this process, respectively?
80The synthesis of ATP in chloroplasts during the light reaction is directly driven by:
81A plant species shows Kranz anatomy, has a high photosynthetic efficiency at high temperatures and light intensities, and exhibits no photorespiration. Which of the following statements about its photosynthetic machinery is *incorrect*?
82Consider an experiment where a green plant is illuminated with a monochromatic light of 680 nm. Which of the following processes would be *most significantly* impaired compared to illumination with 450 nm light?
83If the CO2 concentration in the atmosphere is doubled, which of the following plants would show a significant increase in their photosynthetic rate?
84What is the significance of the C4 pathway being called a 'CO2 pump'?
85Why is photorespiration considered a wasteful process in C3 plants?
86The process of cyclic photophosphorylation involves:
87Which of the following is true regarding the comparison of chlorophyll a and chlorophyll b?
88In the context of the Calvin cycle, if the supply of ATP suddenly becomes abundant while NADPH supply is limited, what would be the most likely consequence?
89The chlorophyll molecules in the antennae complex are primarily responsible for:
90If the concentration of RuBP carboxylase (RuBisCO) is reduced by half in a C3 plant, what would be the most immediate and direct impact on the photosynthetic rate under optimal light and CO2?
91Which of the following experiments first demonstrated that light is essential for plant growth and that plants "restore" the air?
92The primary electron donor for Photosystem II in oxygenic photosynthesis is:
93When is the rate of CO2 uptake highest in CAM plants?
94The primary function of the cytochrome b6f complex in the photosynthetic electron transport chain is to:
95Which of the following conditions would lead to an increased rate of cyclic photophosphorylation in a plant?
96The two pigment systems (PS I and PS II) of higher plants are spatially separated in the thylakoid membrane. PS II is primarily located in:
97In a variegated leaf (parts are green, parts are non-green), if a starch test (iodine test) is performed after exposure to light, which observation would confirm that chlorophyll is essential for starch formation?
98Which experiment demonstrated that the green substance in plants is essential for photosynthesis and that light is necessary for this process?
99If a plant is grown in a CO2-free atmosphere but is provided with sufficient light and water, what would be the immediate consequence for its photosynthetic output?
100Where does the non-cyclic photophosphorylation predominantly occur in a plant cell?
101Which of the following statements provides the best reason why C4 plants are often more productive than C3 plants in tropical and subtropical regions?
102The first stable product of CO2 fixation in the Calvin cycle is:
103A mutation in a plant causes its thylakoid membranes to become permeable to protons. Which of the following processes would be directly inhibited or severely impaired?
104What is the direct energy source for the movement of protons into the thylakoid lumen during the light-dependent reactions?
105If a C3 plant is kept in a sealed container and exposed to bright light for an extended period, what would be the most likely change in the atmospheric composition within the container?
106The primary photosynthetic pigment in all oxygenic photosynthetic organisms is:
107If 18 molecules of ATP are consumed and 12 molecules of NADPH are used to synthesize one molecule of glucose in the Calvin cycle, how many molecules of CO2 are fixed?
108The process of photorespiration involves the organelles:
109A plant species exhibits succulent leaves, opens its stomata at night, and fixes CO2 into malic acid. This plant is most likely adapted to:
110Which of the following is the final electron acceptor in the non-cyclic electron transport chain of photosynthesis?
111Why do plants grown in shade typically have larger and thinner leaves compared to sun-grown plants?
112The enzyme responsible for the initial fixation of carbon dioxide in C3 plants is:
113A researcher wants to study the effects of varying CO2 concentrations on photosynthesis in a plant. Which of the following conditions should be carefully controlled to ensure CO2 is the only limiting factor?
114The primary difference between cyclic and non-cyclic photophosphorylation is:
115During the regeneration phase of the Calvin cycle, for every molecule of RuBP regenerated, how many ATP molecules are consumed?
116Which of the following statements correctly describes the primary role of accessory pigments in photosynthesis?
117A non-photosynthetic parasitic plant is found growing on a host plant. Which of the following statements about its carbon metabolism is most likely true?
118The source of the oxygen gas released during photosynthesis is:
119If a plant is grown under conditions where it receives only far-red light (wavelengths > 700 nm), what would be the impact on its non-cyclic photophosphorylation?
120The bundle sheath cells of C4 plants are characterized by:
121Which of the following characteristics is common to both C4 and CAM plants?
122The law of limiting factors in photosynthesis states that:
123How many turns of the Calvin cycle are required to produce one molecule of sucrose (C12H22O11), considering that sucrose is formed from two molecules of glucose?
124Why is magnesium (Mg) an essential element for photosynthesis?
125A plant pigment solution shows maximum absorption at 430 nm (blue light) and 662 nm (red light), and reflects strongly in the green region. This pigment is most likely:
126Which component of the electron transport chain in the thylakoid membrane acts as a mobile electron carrier between Photosystem II and the cytochrome b6f complex?
127Consider the fate of one molecule of CO2 entering the Calvin cycle. What is the correct sequence of events until the regeneration of RuBP from the original 5-carbon skeleton? I. Reduction of 3-PGA II. Carboxylation of RuBP III. Regeneration of RuBP IV. Formation of glucose
128During cyclic photophosphorylation, which of the following is NOT produced?
129Which of the following environmental conditions would likely be most detrimental to a C3 plant, but less so to a C4 plant?
130The splitting of water molecules during the light reaction of photosynthesis is associated with:
131A plant with a C4 photosynthetic pathway is incubated in an atmosphere containing C14O2 (radioactively labelled CO2) for a short period. Where would the highest concentration of C14 be found first?
132The primary electron acceptor in photosystem II (PS II) is:
133If the Calvin cycle were to function in isolation without the light-dependent reactions, which of the following molecules would accumulate?
134Photorespiration typically occurs when:
135Consider the following two statements: Statement 1: C4 plants are more efficient than C3 plants in utilizing water. Statement 2: The Kranz anatomy in C4 plants allows them to close stomata for longer periods while maintaining efficient CO2 fixation.
136If a plant is exposed to light that is deficient in green wavelengths, what would be the likely impact on its photosynthetic rate?
137For every 3 molecules of CO2 fixed in the Calvin cycle, how many molecules of ATP and NADPH are required, respectively, for the production of one net molecule of G3P (glyceraldehyde-3-phosphate)?
138Why do C4 plants show no photorespiration?
139Which of the following combinations of photosynthetic pigments is directly involved in the primary conversion of light energy to chemical energy?
140A scientist is studying a mutant plant lacking the enzyme RuBisCO. If this plant is grown under standard atmospheric conditions (21% O2, 0.04% CO2), which of the following processes would be LEAST affected initially?
141Which of the following statements about the chemiosmotic hypothesis in photosynthesis is INCORRECT?
142Consider a scenario where the ATP synthase enzyme in the thylakoid membrane is completely inhibited. What would be the immediate and most direct consequence on the light-dependent reactions?
143A plant species exhibits a high rate of photosynthesis even at low CO2 concentrations and high temperatures. Upon microscopic examination, its leaves reveal large bundle sheath cells with thick walls and a high density of chloroplasts. This plant most likely belongs to: