Carbohydrates

Carbohydrates are one of the many different biological molecules you must know about.

Monosaccharides

Monosaccharides are the monomer unit of carbohydrates. They join together during condensation reactions to form carbohydrates - held together by glycosidic bonds.

Examples of monosaccharides include: glucose, galactose and fructose.

Glucose

Glucose has two isomers, these are: alpha-glucose and beta-glucose. This means that they have the same chemical formula, but the arrangement of their atoms is different.

Alpha-glucose forms straight-chain bonds

Beta-glucose forms branched bonds

Disaccharides

Disaccharides are formed when two monosaccharides are joined together during a condensation reaction and are held together with a glycosidic bond.

MoleculeDescription
Maltosecomposed of two glucose molecules (held by an alpha 1, 4 glycosidic bond)
Sucrosecomposed of a glucose molecule and a fructose molecule (held by an alpha 1, 4 glycosidic bond)
Lactosecomposed of a glucose molecule and a galactose molecule (held by a beta 1, 4 glycosidic bond)

You'll also need to remember which monosaccharide forms which disaccharide

MonosaccharidesDisaccharide Product
glucose + glucosemaltose
glucose + fructosesucrose
glucose + galactoselactose

Polysaccharides

Polysaccharides are formed when multiple monosaccharides are joined together during condensation reactions - this results in glycosidic bonds.

MoleculeDescription
Glycogenpolymer composed of alpha-glucose
Starchpolymer composed of alpha-glucose
Cellulosepolymer composed of beta-glucose

Starch

Starch is a large molecule used to store glucose, it is a highly compact molecule and can store lots of glucose molecules in a small space. Therefore, it is considered energy dense.

It is also insoluble which means that it cannot affect the osmotic balance of the cell - water cannot eneter or leave the cell via osmosis.

Starch is composed of two different types: amylose and amylopectin

Amylose

  • It is used for the storage of glucose
  • It is an alpha helice straight chain
  • Makes up around 20% of starch
  • Alpha-glucose molecules joined by alpha 1, 4 glycosidic bond
  • It forms a helix structure
  • There are few branch ends
  • It is highly compact
  • It is hydrolysed by amylase

Amylopectin

  • It is highly branched
  • Makes up around 80% of starch
  • It is composed of alpha-glucose molecules joined by alpha 1, 4 glycosidic bonds with some alpha 1, 6 branches
  • It has more branch endings than amylose
  • It is hydrolysed by amylase quicker than amylose

Glycogen

Glycogen is used for the storage of glucose, and is more efficient than amylopectin. It is highly branched and compact - therefore it is considered energy dense.

It is composed of alpha-glucose molecules joined by alpha 1, 4 glycosidic bonds with alpha 1, 6 branches that are found every 20 to 30 monomers.

Glycogen is also insoluble, therefore it does not affect the osmotic balance of the cell. Also, it is a large molecule and cannot leave the cell.

Cellulose

Cellulose is the main component in cell walls - therefore it is very strong as thousands of chains link together. This provides the plant with structure and stability.

It is an unbranched chain composed of beta-glucose molecules joined by beta 1, 4 glycosidic bonds and the alternate glucose molecules are inverted. The hydrogen bonds between the chains produce microfibrils.

This carbohydrate is also fully permeable - meaning that water and numerous other substances can move through it e.g. water through a plant's membrane.

The enzyme which breaks cellulose down is cellulase.

Glucose is a heptose sugar. This means that each molecule of glucose has six carbon atoms.

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