Q.What are respiratory substrates? Name the most common respiratory substrate.
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The Intuition: What Your Body "Burns" for Fuel
Think of your body like a hybrid car that can run on petrol, diesel, or even cooking gas. Each fuel burns differently — some need more air, some produce more exhaust. Your cells face the same choice: they can burn carbohydrates, fats, or proteins for energy. The question is — how do we tell which fuel is being used at any given moment?
The answer lies in the Respiratory Quotient (RQ). It is simply the ratio of what comes out (carbon dioxide) to what goes in (oxygen) during respiration.
The Precise Definition
RQ=Volume of O2 consumedVolume of CO2 released
This is a pure number — no units, just a ratio. And its value tells you, at a glance, what kind of substrate the cells are burning.
Why Different Substrates Give Different RQ Values
Carbohydrates (like glucose) have plenty of oxygen already built into their structure. So they need relatively less oxygen to burn completely, and they release an equal volume of carbon dioxide.
C6H12O6+6O2→6CO2+6H2O
Here, 6 volumes of CO₂ are released for 6 volumes of O₂ consumed. RQ = 6/6 = 1.0.
Fats (like palmitic acid) are hydrogen-rich and oxygen-poor. They need a lot more oxygen to burn, and release less CO₂ relative to the oxygen used.
2C16H32O2+46O2→32CO2+32H2O
For one molecule of palmitic acid: 16 CO₂ released for 23 O₂ consumed. RQ = 16/23 ≈ 0.7.
Proteins have a more variable structure, but their RQ typically falls around 0.8–0.9.
What the Numbers Mean
| Substrate | RQ Value | What It Tells You |
|---|---|---|
| Carbohydrates | 1.0 | Pure aerobic respiration of glucose |
| Fats | ~0.7 | Fat metabolism (common during fasting or long exercise) |
| Proteins | ~0.8–0.9 | Protein breakdown (rare in normal conditions) |
| Mixed diet | ~0.85 | Typical everyday value |
In exam problems, if you see RQ = 1, the substrate is almost certainly a carbohydrate. If RQ < 1, think fats. If RQ > 1, something unusual is happening — like anaerobic respiration or the use of organic acids.
A Special Case: RQ > 1
When the substrate is an organic acid (like oxalic acid or malic acid) that already contains more oxygen than carbon, the RQ can exceed 1. For example: …
Respiratory substrates are the organic molecules (carbohydrates, fats, proteins) that are oxidised during respiration to release energy; carbohydrates (glucose) are the most commonly/preferentially used respiratory substrate. …
Step 1. Define respiratory substrates. Respiratory substrates are the organic food materials - mainly carbohydrates, but also fats and proteins - that a cell oxidises during respiration to release the energy trapped in their chemical bonds and store it as ATP.
Step 2. Identify the most common one. Carbohydrate, specifically glucose, is the respiratory substrate the cell preferentially uses and oxidises most often, since it can be broken down quickly through glycolysis and completely oxidised via the Krebs cycle and electron transport chain; fats and proteins are drawn on as alternative substrates (each entering t …
Defining respiratory substrates generally, then naming carbohydrate …
- Naming only one class (e.g. only fats) instead of covering that carbohydrates, fats and proteins can all serve as respiratory substrates. …
- CBSE 2025Set ANNUAL1 markQ.What is Respiratory Quotient (RQ) of protein ?
›Reveal solutionSolution
The RQ (CO2 released / O2 consumed) for protein as a respiratory substrate is approximately 0.9.
Respiratory Quotient (RQ) = Volume of CO2 evolved / Volume of O2 consumed, and its value depends on the chemical nature of the respiratory substrate being oxidised:
- Carbohydrates: RQ = 1 (equal volumes of CO2 released and O2 consumed, since carbohydrates already contain O2 and H in the same ratio as water). …
- CBSE 2024Set HALF_YEARLY1 markQ.Match the correct pair. Column 'A' item: 'Respiratory quotient of carbohydrate'. Choose its match from Column 'B':(a) 1200 ml.(b) Ethylene(c) 4500 ml.(d) 500 ml.(e) 450 min(f) 1
›Reveal solutionSolution
Because carbohydrates are fully oxidised with CO2 output equal to O2 input, their RQ = 1.
Respiratory Quotient (RQ) = volume of CO2 evolved / volume of O2 consumed. For a carbohydrate substrate such as glucose, the balanced respiration equation is C6H12O6 + 6O2 -> 6CO2 + 6H2O + energy - exactly six molecules of O2 are consumed for exactly six molecules of CO2 released, so the ratio (RQ) works out to 6/6 = 1. (For comparison, fats have RQ less than 1 sinc …
- CBSE 2023Set ANN1 markQ.Choose the correct answer : The R.Q. (Respiratory Quotient) of carbohydrate is ________.
›Reveal solutionSolution
Respiratory Quotient (RQ) = volume of CO2 evolved / volume of O2 consumed. For carbohydrates, complete oxidation releases exactly as much CO2 as the O2 consumed, so RQ = 1.
Take glucose (a carbohydrate) as the representative respiratory substrate. Its complete aerobic oxidation is:
C6H12O6 + 6O2 → 6CO2 + 6H2O + energy
…
- CBSE 2023Set ANNUAL1 markQ.Fill in the blank: Value of respiratory quotient of carbohydrate is ____.
›Reveal solutionSolution
RQ = (volume of CO2 evolved) / (volume of O2 consumed); for carbohydrates this ratio works out to exactly 1.
Consider the complete aerobic oxidation of glucose, a representative carbohydrate:
C6H12O6 + 6O2 → 6CO2 + 6H2O + energy
Here, 6 molecules of O2 are consumed and exactly 6 molecules of CO2 are released. So:
RQ = 6 CO2 / 6 O2 = 1
…
- CBSE 2022Set ANNUAL1 markQ.The value of respiratory coefficient (RQ) of protein is ________. (0.9 / 1.0 / 1.2)
›Reveal solutionSolution
The respiratory quotient of protein is about 0.9.
Respiratory Quotient (RQ) = volume of CO2 evolved / volume of O2 consumed during respiration, and its value differs by respiratory substrate: for carbohydrates RQ = 1 (carbohydrates already contain O and H in the same ratio as water, so complete oxidation of glucose releases exactly as much CO2 as O2 consumed); for fats RQ is about 0.7 (fats are relatively oxygen-poor and hydrogen-rich, so more O2 is need …
- CBSE 2021Set botany1 markQ.What is the respiratory coefficient of Carbohydrates?
›Reveal solutionSolution
The respiratory quotient (RQ) of carbohydrates is 1, because the complete oxidation of a carbohydrate releases exactly as much CO2 as the O2 it consumes.
Concept. The respiratory quotient (RQ) or respiratory coefficient is defined as the ratio of the volume of carbon dioxide evolved to the volume of oxygen consumed in respiration:
RQ = (volume of CO2 evolved) / (volume of O2 consumed)
For carbohydrates (e.g. glucose): complete aerobic oxidation follows
C6H12O6 + 6O2 -> 6CO2 + 6H2O
Here 6 volumes of CO2 are released for every 6 volumes of O2 used, so:
RQ = 6CO2 / 6O2 = 1
…
- CBSE 2020Set ANNUAL1 markQ.What is Respiratory Quotient?
›Reveal solutionSolution
RQ = CO2 evolved / O2 consumed; it indicates the type of respiratory substrate being oxidized.
During aerobic respiration, the ratio of CO2 released to O2 consumed varies with the substrate: RQ = 1 for carbohydrates (complete oxidation, e.g. glucose), RQ < 1 for fats and proteins (since they are less oxidized and consume relatively more O2), and RQ > …
- CBSE 2019Set ANNUAL1 markQ.What is the value of RQ for protein ?
›Reveal solutionSolution
Respiratory Quotient (RQ) = volume of CO2 evolved ÷ volume of O2 consumed. For carbohydrates RQ = 1, for fats RQ ≈ 0.7, and for proteins RQ is intermediate, approximately 0.9.
RQ=Volume of O2 consumedVolume of CO2 evolved
The RQ value depends on which respiratory substrate is being oxidised:
- Carbohydrates (e.g., glucose, C6H12O6): fully oxidised, RQ = 1, since equal volumes of CO2 are produced for O2 consumed.
- Fats: contain proportionally less oxygen and more hydrogen/carbon, so more O2 is needed for complete oxidation relative to CO2 released — RQ ≈ 0.7. …
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