20.9
Taste physiology begins when the tastants — the chemicals that stimulate gustatory receptor cells — dissolve in saliva, diffuse through the taste pores and bind the receptors.
This triggers graded depolarization in the receptor cells and the release of neurotransmitters.
Salty food causes membrane depolarization by allowing sodium ion influx, while sour tastants cause an influx of hydrogen ions that further open other cation channels.
Sweet, bitter, and umami tastants bind G protein-linked receptors and trigger the release of intracellular calcium ions.
A given gustatory receptor cell is specific to one type of tastant.
But, a mixture of different tastants can activate a certain combination of receptor cells, allowing the detection of various food flavors.
The gustatory receptor cells are innervated by three cranial nerves. The facial nerve innervates the anterior end and the glossopharyngeal nerve innervates the posterior end of the tongue.
The vagus nerve innervates the throat and epiglottis.
These nerves carry signals to the gustatory nucleus in the medulla oblongata and finally to the primary gustatory cortex for conscious taste perception.
The perception of a salty flavor is facilitated by sodium ions within the oral salivary fluid. Upon consumption of a salty substance, salt crystals di…
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