Maharashtra State Board 11th Biology Solutions Chapter 13 Respiration and Energy Transfer
1. Choose the Correct option.
Question (A)
The reactions of the TCA cycle occur in
(A) ribosomes
(B) grana
(C) mitochondria
(D) endoplasmic reticulum
Answer:
(C) mitochondria
Question (B)
In eukaryotes the complete oxidation of a molecule of glucose results in the net gain of
(A) 2 molecules of ATP
(B) 36 molecules of ATP
(C) 4 molecules of ATP
(D) 38 molecules of ATP
Answer:
(D) 38 molecules of ATP
Question (C)
Which step of Krebs cycle operates substrate-level phosphorylation?
(A) ∝-ketoglutarate → succinyl CoA.
(B) Succinyl CoA → succinate
(C) Succinate → fumarate
(D) Fumarate → malate
Answer:
(B) Succinyl CoA → succinate
2. Fill in the blanks with suitable words.
3. Answer the following questions
Question (A)
When and where does anaerobic respiration occur in man and yeast?
Answer:
1. In absence of oxygen, anaerobic respiration takes place in skeletal muscles of man during vigorous exercise.
2. Anaerobic respiration occurs in the cytoplasm of the yeast cell.
Question (B)
Why is less energy produced during anaerobic respiration than in aerobic respiration?
Answer:
Anaerobic respiration produces less energy because:
Question (C)
Which is the site for ETS in mitochondrial respiration?
Answer:
The inner mitochondrial membrane is the site for ETS in mitochondrial respiration.
Question (D)
Which compound is the terminal electron acceptor in aerobic respiration?
Answer:
Molecular oxygen is the terminal electron acceptor in aerobic respiration.
Question (E)
What is RQ.? What is its value for fats?
Answer:
1. Respiratory quotient (R.Q.) or respiratory ratio is the ratio of volume of CO2released to the volume of O2consumed in respiration.
2. R.Q. = Volume of CO2released / Volume of O2consumed
Question (F)
What are respiratory substrates? Name the most common respiratory substrate.
Answer:
Respiratory substrates are the molecules that are oxidized during respiration to release energy which can be used for ATP synthesis. Carbohydrates, fats and proteins are the common respiratory substrate. Glucose is the most common respiratory substrate.
Question (G)
Write explanatory notes on:
Question (i)
Glycolysis
Answer:
Glycolysis is a process where glucose is broken down into two molecules of pyruvic acid, hence called glycolysis (glucose-breaking). It is common to both aerobic and anaerobic respiration. It occurs in the cytoplasm of the cell. It involves ten steps.
Glycolysis consists of two major phases:
1. Preparatory phase (1-5 steps).
2. Payoff phase (6-10 steps).
1. Preparatory phase:
a. In this phase, glucose is phosphorylated twice by using two ATP molecules and a molecule of fructose 1,6-bisphosphate is formed.
b. It is then cleaved into two molecules of glyceraldehyde-3-phosphate and dihydroxy acetone phosphate. These two molecules are 3-carbon carbohydrates (trioses) and are isomers of each other.
c. Dihydroxy acetone phosphate is isomerised to second molecule of glyceraldehyde-3-phosphate.
d. Therefore, two molecules of glyceraldehyde-3- phosphate are formed.
e. Preparatory phase of glycolysis ends.
2. Payoff phase:
a. In this phase, both molecules of glyceraldehyde-3-phosphate are converted to two molecules of 1,3- bisphoglycerate by oxidation and phosphorylation. Here, the phosphorylation is brought about by inorganic phosphate instead of ATP.
b. Both molecules of 1, 3-bisphosphoglycerate are converted into two molecules of pyruvic acid through series of reactions accompanied with release of energy. This released energy is used to produce ATP (4 molecules) by substrate-level phosphorylation.
Question (ii)
Write explanatory notes on: Fermentation by yeast
Answer:
Alcoholic fermentation is a type of anaerobic respiration where the pyruvate is decarboxylated to acetaldehyde. The acetaldehyde is then reduced by NADH+H+to ethanol and Carbon dioxide. Since ethanol is produced during the process, it is termed alcoholic fermentation.
Question (iii)
Write explanatory notes on: Electron transport chain
Answer:
Significance of ETS:
Question (H)
How are glycolysis, TCA cycle and electron transport chain-linked? Explain.
Answer:
Glycolysis, TCA cycle and electron transport chain are linked in the following manner:
Question (I)
How would you demonstrate that yeast can respire both aerobically and anaerobically?
Answer:
Respiration in yeast can be demonstrated with the help of an experiment.
Anaerobic respiration in yeast:
Aerobic respiration in yeast: Experiment explained can be carried out for demonstrating aerobic respiration in yeast.
Question (J)
What is the advantage of step wise energy release in respiration?
Answer:
In ETS energy is released in step wise manner to prevent damage of cells.
Question (K)
Explain ETS.
Answer:
Question (L)
Discuss “The respiratory pathway is an amphibolic pathway”.
OR
Question (M)
Why is Krebs cycle referred as amphibolic pathway?
Answer:
Question (N)
The common pathway for both aerobic and anaerobic respiration is
(A) Krebs cycle
(B) Glycolysis
(C) ETS
(D) Terminal oxidation
Answer:
(B) Glycolysis
4. Compare
Question (A)
Photosynthesis and respiration.
Answer:
Photosynthesis | Respiration |
(a) It takes place in the cells containing chlomplasts. | It takes place in all living cells of higher organisms. |
(b) It occurs in chloroplast. | It occurs in cytoplasm and mitochondria. |
(c) It is an energc trapping process. | It is an energy releasing process. |
(d) It is an anabolic process. | It is a catabolic process. |
(e) This process requires C02and FLO. | This process requires sugar and 02. |
(f) Light is necessary for photosynthesis. | Light is not necessary for aerobic respiration. |
(g) End products are carbohydrates and oxygen. | End products can be C02and H20 or ethanol or lactic acid and energy. |
Question (B)
Aerobic respiration and Anaerobic respiration
Answer:
Aerobic respiration | Anaerobic respiration |
(a) It takes place in higher organisms. | It takes place in lower organisms. |
(b) It takes place in cytoplasm and mitochondria. | It takes place in cytoplasm. |
(c) It involves the participation of free molecular oxygen. | It does not involve participation of free molecular oxygen. |
(d) Oxidation of food is complete. | Oxidation of food is incomplete. |
(e) It produces C02and H20. | It produces C02and C2H5OH. |
(f) It releases more energy, i.e. 38 ATP. | It releases less energy, i.e. 2 ATP. |
(g) Overall equation: | Overall equation: |
5. Differentiate between
Question (A)
Respiration and combustion.
Answer:
Respiration | Combustion |
(a) It is a biochemical and stepwise process. | It is physiochemical and spontaneous process. |
(b) It occurs inside the cells. | It is a non-cellular process. |
(c) Energy is released in steps. | Large amount of energy is released at a time. |
(d) No light is produced in respiration. | Light may be produced in combustion. |
(e) It is controlled by enzymes. | It is not controlled by enzymes. |
(f) A number of intermediates are produced. | No intermediates are produced. |
Question (B)
Distinguish between Glycolysis and Krebs cycle.
Answer:
Glycolysis/EMP pathway | Krebs cycle/TCA cycle/ Citric acid cycle |
1. Glycolysis is common in both aerobic and anaerobic respiration. | Krebs cycle occurs only in aerobic respiration. |
2. It takes place in the cytoplasm. | It takes place in the mitochondria. |
3. C02is not released. | C02is released. |
4. Total amount of energy produced = 8 ATP. | Total amount of energy produced = 24 ATP. |
5. It is linear pathway. | It is cyclic pathway. |
6. Pyruvic acid is the end product. | C02and H2Q are the end products. |
Question (C)
Aerobic respiration and fermentation.
Answer:
Aerobic respiration | Fermentation |
1. It takes place in higher organisms. | It takes place in both higher and lower organisms. |
2. It takes place in cytoplasm and mitochondria | It takes place in cytoplasm. |
3. It involves the participation of free molecular oxygen. | It does not involve participation of free molecular oxygen. |
4. It involves many steps – glycolysis, link reaction, Krebs cycle and ETS. | It involves only glycolysis, decarboxylation and reduction, (alcoholic fermentation) |
5. Oxidation of food is complete. | Oxidation of food is incomplete. |
6. It produces C02and H20. | It produces either ethanol or lactic acid and C02depending upon the type of fermentation. |
7. It releases more energy, i.e. 38 ATP. | It releases less energy, i.e. 2 ATP. |
Practical / Project:
Question 1
Maharashtra Board Solution
Make Powerpoint Presentation on Glycolysis, Krebs Cycle and Conduct the group discussion on it in classroom. [Note: Students are expected to perform above activity on their own.] |
11th Biology Digest Chapter 13 Respiration and Energy Transfer Intext Questions and