Arginine vasotocin and mesotocin in the anterior hypothalamus, neurohypophysis, proventriculus and plasma of White Leghorn cockerels, during dehydration. 1990

B Robinzon, and T I Koike, and S L Kinzler, and H L Neldon
Department of Animal Science, Faculty of Agriculture, Hebrew University of Jerusalem, Rehovot, Israel.

1. The effect of 96 hrs of water deprivation on plasma electrolytes, osmolarity, arginine vasotocin (AVT), mesotocin (MT), and on AVT and MT content in the neurohypophysis, anterior hypothalamic area (AHA) and proventriculus, was studied at 24 hrs intervals, in adult White Leghorn cockerels. 2. Plasma AVT increased three fold during the first 24 hrs but there was no further change during the next 48 hrs. In the last 24 hrs, plasma AVT decreased in about 25%. Plasma MT did not change during the entire period of dehydration. 3. Plasma sodium and osmolarity gradually increased during that time. 4. Neurohypophysial AVT content was depleted by 95% during the period of dehydration while MT content did not change. 5. In the AHA there was no change in AVT levels during dehydration while the levels of MT increased while in the proventriculus there was no change in either AVT or MT levels. 6. For the data collected during the entire experimental period, no correlation was found between plasma osmolarity and plasma AVT, but there was a highly significant negative correlation between plasma osmolarity and neurohypophysial AVT content. 7. It may be suggested that the depletion in AVT content in the neurohypophysis during progressive water deprivation resulted in an insufficient level of AVT in circulation to enable the cockerels to counter the dehydration. This may explain the death of those cockerels which were dehydrated for a further 24 hr period.

UI MeSH Term Description Entries
D007032 Hypothalamus, Anterior The front portion of the HYPOTHALAMUS separated into the preoptic region and the supraoptic region. The preoptic region is made up of the periventricular GRAY MATTER of the rostral portion of the THIRD VENTRICLE and contains the preoptic ventricular nucleus and the medial preoptic nucleus. The supraoptic region contains the PARAVENTRICULAR HYPOTHALAMIC NUCLEUS, the SUPRAOPTIC NUCLEUS, the ANTERIOR HYPOTHALAMIC NUCLEUS, and the SUPRACHIASMATIC NUCLEUS. Hypothalamus, Supraoptic,Anterior Hypothalamic Commissure,Anterior Hypothalamic Decussation of Ganser,Anteroventral Periventricular Nucleus,Anterior Hypothalamic Commissures,Anterior Hypothalamus,Commissure, Anterior Hypothalamic,Commissures, Anterior Hypothalamic,Hypothalamic Commissure, Anterior,Hypothalamic Commissures, Anterior,Nucleus, Anteroventral Periventricular,Periventricular Nucleus, Anteroventral,Supraoptic Hypothalamus
D008297 Male Males
D010121 Oxytocin A nonapeptide hormone released from the neurohypophysis (PITUITARY GLAND, POSTERIOR). It differs from VASOPRESSIN by two amino acids at residues 3 and 8. Oxytocin acts on SMOOTH MUSCLE CELLS, such as causing UTERINE CONTRACTIONS and MILK EJECTION. Ocytocin,Pitocin,Syntocinon
D010904 Pituitary Gland, Posterior Neural tissue of the pituitary gland, also known as the neurohypophysis. It consists of the distal AXONS of neurons that produce VASOPRESSIN and OXYTOCIN in the SUPRAOPTIC NUCLEUS and the PARAVENTRICULAR NUCLEUS. These axons travel down through the MEDIAN EMINENCE, the hypothalamic infundibulum of the PITUITARY STALK, to the posterior lobe of the pituitary gland. Neurohypophysis,Infundibular Process,Lobus Nervosus,Neural Lobe,Pars Nervosa of Pituitary,Posterior Lobe of Pituitary,Gland, Posterior Pituitary,Infundibular Processes,Lobe, Neural,Lobes, Neural,Nervosus, Lobus,Neural Lobes,Pituitary Pars Nervosa,Pituitary Posterior Lobe,Posterior Pituitary Gland,Posterior Pituitary Glands,Process, Infundibular,Processes, Infundibular
D011201 Poultry Diseases Diseases of birds which are raised as a source of meat or eggs for human consumption and are usually found in barnyards, hatcheries, etc. The concept is differentiated from BIRD DISEASES which is for diseases of birds not considered poultry and usually found in zoos, parks, and the wild. Disease, Poultry,Diseases, Poultry,Poultry Disease
D011531 Proventriculus A thin-walled, glandular stomach found in birds. It precedes the gizzard.
D002645 Chickens Common name for the species Gallus gallus, the domestic fowl, in the family Phasianidae, order GALLIFORMES. It is descended from the red jungle fowl of SOUTHEAST ASIA. Gallus gallus,Gallus domesticus,Gallus gallus domesticus,Chicken
D003681 Dehydration The condition that results from excessive loss of water from a living organism. Water Stress,Stress, Water
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D014668 Vasotocin A nonapeptide that contains the ring of OXYTOCIN and the side chain of ARG-VASOPRESSIN with the latter determining the specific recognition of hormone receptors. Vasotocin is the non-mammalian vasopressin-like hormone or antidiuretic hormone regulating water and salt metabolism. 3-Isoleucyl Vasopressin,Arginine Oxytocin,Arginine Vasotocin,Argiprestocin,Vasopressin, Isoleucyl,Vasopressin, Non-Mammalian,(8-Arginine)Oxytocin,Argiprestocine,3 Isoleucyl Vasopressin,Isoleucyl Vasopressin,Non-Mammalian Vasopressin,Oxytocin, Arginine,Vasopressin, 3-Isoleucyl,Vasopressin, Non Mammalian,Vasotocin, Arginine

Related Publications

B Robinzon, and T I Koike, and S L Kinzler, and H L Neldon
August 1979, Cell and tissue research,
B Robinzon, and T I Koike, and S L Kinzler, and H L Neldon
January 1989, Comparative biochemistry and physiology. A, Comparative physiology,
B Robinzon, and T I Koike, and S L Kinzler, and H L Neldon
March 1990, British poultry science,
B Robinzon, and T I Koike, and S L Kinzler, and H L Neldon
November 2001, Chronobiology international,
B Robinzon, and T I Koike, and S L Kinzler, and H L Neldon
September 1973, Poultry science,
B Robinzon, and T I Koike, and S L Kinzler, and H L Neldon
April 1989, Neuropeptides,
B Robinzon, and T I Koike, and S L Kinzler, and H L Neldon
May 1983, General and comparative endocrinology,
B Robinzon, and T I Koike, and S L Kinzler, and H L Neldon
December 1989, Journal of neuroendocrinology,
B Robinzon, and T I Koike, and S L Kinzler, and H L Neldon
June 1985, The Journal of endocrinology,
B Robinzon, and T I Koike, and S L Kinzler, and H L Neldon
July 1994, The Journal of endocrinology,
Copied contents to your clipboard!