Q.Complete the representation by filing a, b, c and d.
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Start your 14-day free trial to unlock the full solution →This diagram contrasts the two hormones that fine-tune urine concentration: aldosterone (from the adrenal cortex) on one side and ADH (from the hypothalamus, released via the posterior pituitary) on the other, with the urine's resulting osmotic state as the outcome.
(b) Aldosterone is secreted by the adrenal cortex (specifically the zona glomerulosa) of the adrenal gland. It is released when blood Na+/blood volume/blood pressure falls (via the renin-angiotensin-aldosterone system) and acts on the distal convoluted tubule (DCT) to increase reabsorption of Na+ (water follows).
(c) ADH (antidiuretic hormone, vasopressin) is synthesised in the hypothalamus and released from the posterior pituitary (neurohypophysis). It is secreted when blood volume/pressure falls or plasma osmolarity rises, and increases the permeability of the DCT and collecting duct to water, promoting water reabsorption.
(d) When ADH secretion is high, more water is reabsorbed from the tubular fluid, so a small volume of concentrated urine is excreted -- i.e. the downstream effect at (d) is a decreased urine volume with water conserved in the body. (The figure's own label reads 'hyperotonic', which is almost certainly a print rendering of 'hypertonic'.)
(a) By contrast, on the aldosterone-linked side, comparatively less water (relative to solute) is reabsorbed, so the urine that results stays relatively dilute (hypotonic) and a larger urine volume is excreted -- this is the downstream effect represented at (a).
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