| 1. | D, C, E, A, B | 2. | A, C, E, B, D |
| 3. | C, E, A, D, B | 4. | C, E, D, B, A |
| List-I | List-II | ||
| A. | Toxin | I. | Gum |
| B. | Polymeric substance | II. | Concanavalin A |
| C. | Lectin | III. | Ricin |
| D. | Drug | IV. | Vinblastin |
| 1. | A only | 2. | C only |
| 3. | B and C only | 4. | C and D only |
| List-I | List-II | ||
| A. | Microscopic angiosperm | I. | Salvinia |
| B. | Tallest gymnosperm | II. | Marchantia |
| C. | Thalloid bryophyte | III. | Sequoia |
| D. | Heterosporous pteridophyte | IV. | Wolffia |
| 1. | A-I, B-III, C-II, D-IV | 2. | A-IV, B-III, C-II, D-I |
| 3. | A-III, B-II, C-IV, D-I | 4. | A-II, B-I, C-IV, D-III |
| List-I | List-II | ||
| A. | Polyadelphous | I. | Filaments of stamens united into more than two bundles |
| B. | Syncarpous | II. | Sterile stamen |
| C. | Staminode | III. | Stamens are attached to the petals |
| D. | Epipetalous | IV. | Carpels are fused |
| 1. | Mass flow hypothesis | 2. | Wobble hypothesis |
| 3. | Chemiosmotic hypothesis | 4. | Rivet Popper hypothesis |
| Statement I: | In collenchyma, cell walls are thickened at corners due to deposition of cellulose, hemicellulose and pectin. |
| Statement II: | Sclerenchyma consists of lignified cell walls and possesses pits. |
| 1. | Bt toxin requires acidic pH for activation |
| 2. | Bacillus has protective mechanism against it |
| 3. | In Bacillus, it is present in an inactive state and once insects ingests it, it is converted to active form |
| 4. | The protoxin requires protein conjugate for its activation |