Lesson 4.4.2

4.4.2 Starch and cellulose structure Quiz: Pearson Edexcel Biology A (Salters-Nuffield), Unit 4

20 questions

In partnership with Revision Ninja

Lesson 4.4.2, Starch and cellulose structure: 20 multiple choice questions for the Pearson Edexcel Biology A (Salters-Nuffield) (9BI0), Unit 4: Biodiversity and Natural Resources, written with Revision Ninja.

Host it live on the board and students join with a game code on their own devices, or revise alone with Free Play. The answers are revealed in the game.

Host this setFree Play

The 20 questions

  1. Which monomer is used to make cellulose?

    • Alpha-glucose
    • Galactose
    • Beta-glucose
    • Fructose
  2. Which bonds link the glucose units in amylose?

    • Alpha 1,6 glycosidic bonds only
    • Beta 1,4 glycosidic bonds
    • Alpha 1,4 glycosidic bonds
    • Peptide bonds
  3. Which polysaccharide is the main energy store in plants?

    • Peptidoglycan
    • Cellulose
    • Chitin
    • Starch
  4. How does amylopectin differ from amylose?

    • Amylopectin contains no glycosidic bonds
    • Amylopectin is branched and contains 1,6 glycosidic linkages
    • Amylopectin is a straight chain of fructose units
    • Amylopectin is made of beta-glucose units
  5. What structural feature allows amylose to be compact?

    • It has no hydrogen bonds at all
    • It is made of fatty acids
    • It coils into a helix
    • It is cross-linked by disulfide bonds
  6. Which statement correctly compares glycogen with amylopectin?

    • Glycogen is unbranched like amylose
    • Glycogen is found in plant chloroplasts
    • Glycogen is more branched than amylopectin
    • Glycogen is made of beta-glucose units
  7. Hydrogen bonds between cellulose chains allow:

    • Digestion by amylase in the gut
    • Storage of energy as fat in adipose tissue
    • Active transport of ions across membranes
    • Formation of microfibrils with high tensile strength
  8. In cellulose, alternate glucose units are rotated 180 degrees. What is the main consequence?

    • Straight chains that hydrogen-bond side by side
    • Chains coil into a compact helix like amylose
    • Chains dissolve readily in water
    • Chains become branched at every glucose unit
  9. A polymer has only 1,4 glycosidic bonds and forms a helix. Which polysaccharide is most likely?

    • Amylopectin
    • Amylose
    • Cellulose
    • Glycogen
  10. Why does the branching of amylopectin and glycogen speed up glucose release?

    • Fewer branch ends mean more glucose is released each second
    • Branching stops enzymes from acting on the molecule
    • More branch ends give enzymes more sites to act on at once
    • Branching removes hydrogen bonds that enzymes need to break
  11. Cellulose is insoluble and hard for most animals to digest. What is the main structural reason?

    • Beta linkages that most animal enzymes cannot break
    • Cellulose contains phosphate groups that block enzyme action
    • Cellulose is a lipid, which digestive enzymes cannot act on
    • Cellulose contains amino acids that bind digestive enzymes
  12. Which pair correctly matches a polysaccharide with its function?

    • Starch: structure of an animal exoskeleton
    • Cellulose: energy storage in seeds
    • Starch: structural support in plant cell walls
    • Cellulose: structural support in plant cell walls
  13. Amylose contains 1000 glucose units joined end to end by 1,4 bonds. How many glycosidic bonds join them?

    • 999
    • 1001
    • 1000
    • 500
  14. A polysaccharide sample turns blue-black with iodine. Which is most likely present?

    • Starch, particularly the amylose helix
    • Protein, such as an enzyme
    • Cellulose, a straight glucose polymer
    • Free glucose dissolved in the sample
  15. Which statement compares the monomers of cellulose and amylose correctly?

    • Cellulose uses beta-glucose and amylose uses alpha-glucose
    • Both use beta-glucose
    • Cellulose uses fructose and amylose uses glucose
    • Both use alpha-glucose
  16. Starch and cellulose are both glucose polymers yet behave very differently. What is the best explanation?

    • Cellulose has a different number of carbon atoms per glucose unit
    • Cellulose contains more water within each glucose unit
    • Starch contains nitrogen atoms in every glucose unit
    • Alpha versus beta glucose orientation changes chain shape and hydrogen bonding
  17. A plant stores glucose as starch rather than free glucose. Which combined reasoning is most accurate?

    • Starch raises osmotic concentration greatly and is hard to hydrolyse
    • Starch is insoluble, so it barely affects osmotic pressure
    • Starch is soluble, so it moves faster through the phloem
    • Starch is a lipid, so it is stored in membranes
  18. Why does a branched polysaccharide release glucose faster than an unbranched one of similar size?

    • It has more ends for enzymes to act on
    • Branching makes the molecule insoluble in water
    • It has fewer ends, so enzymes act more slowly
    • Branching makes no difference to hydrolysis rate
  19. Cellulose microfibrils contain many parallel chains. Why is their tensile strength high?

    • Many hydrogen bonds between parallel chains resist stretching
    • Peptide bonds cross-link the chains into a rigid mesh
    • Lipid layers slide between chains and absorb force
    • Ionic bonds between sodium ions hold the chains together
  20. Why is amylose's helix structure important for its function?

    • It makes amylose compact for energy storage inside plastids
    • It gives amylose the strength needed for cell walls
    • It allows amylose to form peptide bonds with amino acids
    • It makes amylose soluble in lipids

All Pearson Edexcel Biology A (Salters-Nuffield) quizzes