Chapter 13
Objective Biology for NEET · 153 exercises
Problem 112
How many types of photosynthetic cells occur in \(\mathrm{C}_{4}\) plant? (a) One type (b) Two types (c) Four types (d) Eight types
2 step solution
Problem 113
Which of the following cells of \(\mathrm{C}_{4}\) plants are prominently loaded with starch? (a) Epidermal cells (b) Mesophyll cells (c) Bundle sheath cells (d) All of these
3 step solution
Problem 114
The number of carboxylation in \(\mathrm{C}_{4}\) cycle is/are (a) 1 (b) 2 (c) 5 (d) 3
2 step solution
Problem 115
Photorespiration takes place in (a) Chloroplast, mitochondria (b) Mitochondria, peroxisome (c) Chloroplasts, peroxisome, mitochondria (d) Chloroplasts, cytoplasm, mitochondria
3 step solution
Problem 116
Photorespiration is called (a) \(\mathrm{C}_{2}\) cycle (b) \(\mathrm{C}_{3}\) cycle (c) \(\mathrm{C}_{4}\) cycle (d) None of these
3 step solution
Problem 117
The first reaction in photorespiraton is (a) Carboxylation (b) Decarboxylation (c) Oxygenation (d) Phosphorylation
2 step solution
Problem 118
\(\mathrm{C}_{4}\) plant is characterized by (a) High tolerance to temperature (b) Lacks process of photorespiration (c) Greater productivity of biomass (d) All of these
3 step solution
Problem 119
Bundle sheath cells have these following characters except (a) Large in size (b) Large number of chloroplast (c) Thick wall impervious to gaseous exchange (d) With intercellular spaces
4 step solution
Problem 120
Primary \(\mathrm{CO}_{2}\) acceptor in \(\mathrm{C}_{4}\) plant occurs in (a) Inner layer cells of bundle sheath (b) Outer layer cells of bundle sheath (c) Mesophyll cells (d) None of these
3 step solution
Problem 121
Bundle sheath cells are rich in (a) RuBisCO (b) PEP case (c) Both (a) and (b) (d) None of these
3 step solution
Problem 122
Which of the following is correct about photorespiration? (a) Wasteful process (b) ATP is utilized (c) Release of \(\mathrm{CO}_{2}\) (d) All of these
5 step solution
Problem 123
During photorespiration (a) RuBisCO binds with \(\mathrm{O}_{2}\) (b) Phosphoglycerate and phosphoglycolate is formed (c) Sugar is not synthesized (d) All the above
4 step solution
Problem 124
Photorespiration does not takes place in \(\mathrm{C}_{4}\) plant because (a) \(\mathrm{O}_{2}\) is not released in \(\mathrm{C}_{4}\) plant during photosynthesis. (b) Intracellular concentration of \(\mathrm{CO}_{2}\) is high in bundle sheath and it ensures RuBisCO function as carboxylase. (c) They are found in cold environment. (d) Stomata in them opens during night.
3 step solution
Problem 125
External factor affecting photosynthesis are (a) Sunlight and temperature (b) \(\mathrm{CO}_{2}\) concentration (c) Water (d) All of these
3 step solution
Problem 126
Internal factor affecting photosynthesis are (a) Number and size of leaf (b) Age of leaf and orientation (c) Internal \(\mathrm{CO}_{2}\) concentration and amount of chlorophyll (d) All the above
3 step solution
Problem 127
Internal factor of plant depends on (a) Growth of plant (b) Genetic predisposition (c) Both (a) and (b) (d) None of these
3 step solution
Problem 128
Which is a limiting factor? (a) Green leaf (b) Optimal light (c) Optimal \(\mathrm{CO}_{2}\) (d) Low temperature
2 step solution
Problem 129
Photosynthesis is affected by (a) Quality of light (b) Intensity of light (c) Duration of light (d) All of these
5 step solution
Problem 130
Light saturation occurs at _______ of the fall sunlight. (a) \(2 \%\) (b) \(5 \%\) (c) \(10 \%\) (d) \(20 \%\)
2 step solution
Problem 131
Light may be a limiting factor for (a) plants in dense forest (b) plant in temperate forest (c) plant in grassland (d) all
4 step solution
Problem 132
What is the relationship between \(\mathrm{CO}_{2}\) fixation and incident light at low intensities? (a) Linear (b) Parabola (c) Hyperbola (d) None
3 step solution
Problem 133
Select the incorrect statement from the following: (a) At high intensities, both \(\mathrm{C}_{3}\) and \(\mathrm{C}_{4}\) plants shows increase in the rate of photosynthesis by increasing \(\mathrm{CO}_{2}\) concentration. (b) \(\mathrm{C}_{4}\) plants shows saturation at \(360 \mu \mathrm{l} / \mathrm{L}\). (c) \(\mathrm{C}_{3}\) plant shows saturation beyond \(450 \mu \mathrm{l} / \mathrm{L}\). (d) Productivity of tomatoes and ball papers cannot be increased by enriching environment by \(\mathrm{CO}_{2}\)
4 step solution
Problem 134
Select the incorrect statement from the following: (a) Dark reaction is more sensitive to temperature. (b) Light reaction is less sensitive to temperature. (c) \(\mathrm{C}_{4}\) plant responds to higher temperature and \(\mathrm{C}_{3}\) plant have lower optimum temperature. (d) Tropical plant have lower optimum temperature for photosynthesis.
4 step solution
Problem 135
Water stress leads to (a) Closing of stomata (b) Wilting of leaves (c) Reduced activity of leaf (d) All of these
4 step solution
Problem 136
Which factor indirectly affects the process of photosynthesis? (a) Light (b) Temperature (c) \(\mathrm{CO}_{2}\) concentration (d) Water
3 step solution
Problem 137
Photosynthesis takes place (a) Only in sunlight (b) Only in yellow light (c) In the visible light obtained from any source (d) Only in very high intensity of light
5 step solution
Problem 138
Photo-oxidation of chlorophyll is called (a) Intensification (b) Chlorosis (c) Solarization (d) Defoliation
2 step solution
Problem 139
Which one of the following is not a limiting factor for photosynthesis? (a) Oxygen (b) Carbon dioxide (c) Chlorophyll (d) Light
3 step solution
Problem 141
What will be the effect of intermittent light on photosynthesis? (a) It will increase (b) It will decrease (c) Nothing will happen (d) Process will stop
4 step solution
Problem 143
Main factor which limits the rate of photosynthesis on a clear day is (a) chlorophyll (b) light (c) \(\mathrm{CO}_{2}\) (d) water
2 step solution
Problem 144
Blackman's law of limiting factor is applied to (a) growth (b) respiration (c) transpiration (d) photosynthesis
3 step solution
Problem 145
Which factor is not limited to normal conditions for photosynthesis? (a) Air (b) \(\mathrm{CO}_{2}\) (c) Water (d) Chlorophyll
3 step solution
Problem 146
The first product of \(\mathrm{CO}_{2}\) fixation in Hatch and Slack (C \(_{4}\) ) cycle in plants is formation of (a) oxaloacetate by carboxylation of phosphoenol pyruvate (PEP) in bundle sheath cells (b) phosphoglyceric acid in mesophyll cells (c) bundle sheath cells (d) oxaloacetate by carboxylation of phosphoenol pyruvate (PEP) in the mesophyll cells
2 step solution
Problem 148
Assertion: Six molecules of \(\mathrm{CO}_{2}\) and twelve molecules of \(\mathrm{NADPH}^{+}+\mathrm{H}^{+}\) and 18 ATP are used to form one hexose molecule. Reason: Light reaction results in the formation of ATP and NADPH \(_{2}\) and oxygen.
4 step solution
Problem 149
Assertion: The first \(\mathrm{CO}_{2}\) fixation product was a \(\mathrm{C}\) -organic compound. Reason: The use of radioactive \(\mathrm{C}^{14}\) in algal photosynthesis studied led to this discovery.
4 step solution
Problem 150
Assertion: There is a decrease in photosynthesis, if the photosynthetic cells are illuminated by light of \(\mathrm{P}_{660} \mathrm{~nm}\) or more wavelength. Reason: In red drop phenomenon the rate of photosynthesis decreases.
4 step solution
Problem 151
Assertion: CAM plants lack structural compartmentation of leaf, as found in \(\mathrm{C}_{4}\) plants. Reason: Stomata of CAM plants are open during the night.
4 step solution
Problem 152
Assertion: Plants utilizing the first \(\mathrm{RuBP}\) in \(\mathrm{CO}_{2}\) fixations are called \(\mathrm{C}_{3}\) plants. Reason: Plants utilizing the first PEP in \(\mathrm{CO}_{2}\) fixations are called \(\mathrm{C}_{2}\) plants.
2 step solution
Problem 153
Assertion: Cyclic pathway of photosynthesis first appeared in some eubacterial species. Reason: Oxygen started accumulating in the atmosphere after the non-cyclic pathway of photosynthesis evolved.
3 step solution
Problem 157
Assertion: Each molecule of ribulose-1, 5 -bisphosphate fixes one molecule of \(\mathrm{CO}_{2}\). Reason: Three molecules of NADPH and two ATP are required for the fixation of one molecule of \(\mathrm{CO}_{2}\)
4 step solution
Problem 158
Assertion: Regeneration of \(\mathrm{CO}_{2}\) acceptor molecule RuBP is crucial if the cycle is to continue uninterrupted. Reason: The regeneration steps require one ATP for phosphorylation to form RuBP.
4 step solution
Problem 159
Assertion: \(\mathrm{C}_{4}\) photosynthetic pathway is more efficient than the \(\mathrm{C}_{3}\) pathway. Reason: Photorespiration is suppressed in \(\mathrm{C}_{4}\) plants.
4 step solution
Problem 161
Assertion: Accessory pigment helps to make photosynthesis more efficient. Reason: Accessory pigment helps to absorb different wavelengths of light.
4 step solution
Problem 162
Assertion: Photolysis of water occur on inner side of the membrane of thylakoid. Reason: Water splitting complex is associated with PSII which is physically located on inner side of thylakoid Membrane.
3 step solution
Problem 163
Assertion: Synthesis of ATP from ADP in chloroplast is called photophosphorylation. Reason: This phosphorylation in chloroplast occurs in presence of light.
3 step solution
Problem 164
Assertion: Proton produced by the splitting of water accumulate with in the lumen of thylakoid. Reason: Spitting of water molecule takes place on inner side of the membrane of thylakoid.
3 step solution
Problem 165
Assertion: Calvin cycle is referred as \(\mathrm{C}_{3}\) pathway Reason: In Calvin cycle the first product of \(\mathrm{CO}_{2}\) fixation is \(\mathrm{a} \mathrm{C}_{3}\) acid (PGA).
3 step solution
Problem 166
Assertion: To make one molecule of glucose 6 turns of the Calvin cycle required Reason: One turn of Calvin cycle fix one molecule of \(\mathrm{CO}_{2}\)
3 step solution
Problem 167
Assertion: Photorespiration is a wasteful process. Reason: It results in \(\mathrm{CO}_{2}\) release with the utilization of ATP and there is no synthesis of ATP or NADPH
4 step solution
Problem 168
Assertion: Light is rarely a limiting factor in most of plant. Reason: Light saturation occur at \(10 \%\) of the full sunlight.
3 step solution