I. Initial acceptor
II. Extent of photorespiration
III. Enzyme catalysing reaction that fixes
IV. Presence of Calvin cycle
V. Leaf anatomy
Which one does not differ in a and plants?
I and V
Only IV
II and III
Only II
Related Questions
Chloroplast dimorphism is a characteristic feature of
Plants with Calvin cycle
plants
All plants
Only in algae
Tomato and bell pepper are?
and plants respectively
and plants respectively
plants
plants
With reference to three Calvin cycles, which of the given options is correct for the following question? I. How many gross PGAL molecules are produces? II. Total, how many ATP molecules are required for synthesis of PGAL molecules? II. Total, how many NADPH molecules are required for the synthesis of obtained PGAL molecules?
I. 2, II. 9, III. 6
I. 6, II. 27, III. 18
I. 3, II. 18, III. 12
I. 18, II. 54, III. 36
Which of these ensures that the RUBISCO functions as a carboxylase minimising the oxygenase activity at the site of fixation in plants?
Agranal chloroplast in bundle sheath cells
Special type of leaf anatomy
Breaking down of malic acid in bundle sheath cells
Much greater affinity of rubisco for than for in bundle sheath cells
Which of the following is NOT a product of the dark reaction?
Glucose
G3P
Oxygen
ADP
Identify the 5-C compound from the given option
RuBP
OAA
3PGA
NADPH
As compound to a plant, how many additional molecules of ATP are needed for net production of one molecule of hexose sugar by plants?
2
6
0
12
I. Initial acceptor
II. Extent of photorespiration
III. Enzyme catalysing reaction that fixes
IV. Presence of Calvin cycle
V. Leaf anatomy
Which one does not differ in a and plants?
I and V
Only IV
II and III
Only II
Synthesis of one molecule of glucose requires
6CO, 18 ATP and 12 NADPH
6CO, 12 ATP and 18 NADPH
6CO, 30 ATP and 12 NADPH
6CO, 38 ATP and 12 NADPH