Botany · Ch 14 — Respiration
Anaerobic Respiration
Anaerobic Respiration
Anaerobic respiration is fundamentally less efficient than aerobic respiration because it never completely oxidises the respiratory substrate: only a limited number of ATP molecules are generated per glucose molecule (see the comparison tables in the notes), and it is nonetheless still valuable because the CO2 it produces can be recycled into photosynthetic carbon fixation. Compared with plain glycolysis, fermentation starts where glycolysis leaves off -- with pyruvic acid -- and converts that pyruvic acid into alcohol or lactic acid; it occurs only in the absence of oxygen (unlike glycolysis, which proceeds regardless of oxygen availability); glycolysis nets 2 ATP while fermentation itself yields no additional net ATP; and where glycolysis produces , fermentation actually consumes (re-oxidises) that same to regenerate the NAD+ that glycolysis needs to keep running. The net-products table shows the resulting bottom line: starting from one glucose molecule, glycolysis alone nets 8 ATP-equivalents (2 substrate-level ATP plus 2 NADH worth roughly 3 ATP each), but once the 2 NADH are spent re-oxidising in fermentation, the true net yield of the complete anaerobic pathway falls to just 2 ATP. A simple classroom demo …
What this figure shows. A bottle containing warm water, sugar and baker's yeast with a balloon fitted over its mouth; over about 30 minutes the balloon is shown progressively inflating as CO2 gas produced by yeast fermentation collects in the bottle and pushes i …
| # | Glycolysis | Fermentation |
|---|---|---|
| 1 | Glucose is converted into pyruvic acid | Starts from pyruvic acid and is converted into alcohol or lactic acid |
| 2 | Takes place in the presence or absence of oxygen | Takes place only in the absence of oxygen |
| 3 | Net gain is 2 ATP | No net gain of ATP molecules |
| Stage | Substrate-level ATP production | Reduced NAD+ | Total ATP |
|---|---|---|---|
| Glycolysis | 2 | 2* | 8 |
| Anaerobic respiration | 2 | 2 reduced NAD+ re-oxidised | 2 |