Effects of thyroxin, cortisol, growth hormone, and prolactin on lipid metabolism of coho salmon, Oncorhynchus kisutch, during smoltification

Juvenile coho salmon, Oncorhynchus kisutch, were either immersed in thyroxin-containing water (T 4; 20 μg/ml) or implanted with cortisol (5 mg), bovine growth hormone (GH; 1.5 μg/g body wt), or ovine prolactin (PRL; 1.5 μg/g body wt), both early and late in smoltification. T 4 and cortisol treatment...

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Published inGeneral and comparative endocrinology Vol. 64; no. 2; pp. 220 - 238
Main Author Sheridan, Mark A.
Format Journal Article
LanguageEnglish
Published San Diego, CA Elsevier Inc 01.11.1986
Elsevier
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Abstract Juvenile coho salmon, Oncorhynchus kisutch, were either immersed in thyroxin-containing water (T 4; 20 μg/ml) or implanted with cortisol (5 mg), bovine growth hormone (GH; 1.5 μg/g body wt), or ovine prolactin (PRL; 1.5 μg/g body wt), both early and late in smoltification. T 4 and cortisol treatment stimulated lipid mobilization in parr. T 4-stimulated lipid mobilization was indicated by decreased total lipids, primarily as triacylglycerols, and increased lipolytic enzyme (triacylglycerol lipase) activity in the liver and dark muscle. T 4-stimulated lipid mobilization from mesenteric fat was indicated by decreased total tissue mass and by increased lipase activity. Cortisol caused significant reductions in total lipid concentration and triacylglycerol content of the liver and dark muscle; these effects were accompanied by increased lipase activity. Cortisol treatment did not affect mesenteric fat total lipid concentration, total tissue mass, or triacylglycerol content. However, cortisol implantation did enhance mesenteric fat lipase activity. Thyroxin and cortisol treatment failed to elicit alterations in the pattern of tissue lipid mobilization of smolts. GH stimulated lipid mobilization from coho salmon parr. Depletion of liver total lipids was accompanied by increased lipolytic enzyme (triacylglycerol lipase) activity. GH had limited effects on dark muscle and mesenteric fat. In smolts, GH had virtually no effect on lipid mobilization. PRL strongly stimulated lipid mobilization in parr; this effect was evident in all depots studied (liver, dark muscle, mesenteric fat). Decreases in total lipid concentration, or in total tissue mass (mesenteric fat), were accompanied by increased lipase activity and generally resulted in reduced tissue triacylglycerol content. Smolts appeared refractory to PRL treatment. Smolts (characteristically possessing elevated liver lipase activity) that were hypophysectomized exhibited low levels of liver lipase activity. Cortisol replacement restored enzyme activity to approximately the same levels as those observed in sham-operated controls. GH replacement restored lipase activity, but not to the levels observed in sham-operated controls. These results indicate that T 4, cortisol, GH, and PRL all stimulate lipid mobilization in developing salmon by enhancement of lipolysis and suggest that T 4, cortisol, GH, and PRL are among the factors which contribute to smoltification-associated lipid depletion.
AbstractList Juvenile coho salmon Oncorhynchus kisutch , were either immersed in thyroxin-containing water (T sub(4)) or implanted with cortisol, bovine growth hormone (GH), or ovine prolactin (PRL), both early and late in smoltification. T sub(4) and cortisol treatment stimulated lipid mobilization in parr. The results indicate that T sub(4), cortisol, GH, and PRL all stimulate lipid mobilization in developing salmon by enhancement of lipolysis and suggest that T sub(4), cortisol, GH, and PR are among the factors which contribute to smoltification-associated lipid depletion.
Juvenile coho salmon, Oncorhynchus kisutch, were either immersed in thyroxin-containing water (T4; 20 micrograms/ml) or implanted with cortisol (5 mg), bovine growth hormone (GH; 1.5 microgram/g body wt), or ovine prolactin (PRL; 1.5 microgram/g body wt), both early and late in smoltification. T4 and cortisol treatment stimulated lipid mobilization in parr. T4-stimulated lipid mobilization was indicated by decreased total lipids, primarily as triacylglycerols, and increased lipolytic enzyme (triacylglycerol lipase) activity in the liver and dark muscle. T4-stimulated lipid mobilization from mesenteric fat was indicated by decreased total tissue mass and by increased lipase activity. Cortisol caused significant reductions in total lipid concentration and triacylglycerol content of the liver and dark muscle; these effects were accompanied by increased lipase activity. Cortisol treatment did not affect mesenteric fat total lipid concentration, total tissue mass, or triacylglycerol content. However, cortisol implantation did enhance mesenteric fat lipase activity. Thyroxin and cortisol treatment failed to elicit alterations in the pattern of tissue lipid mobilization of smolts. GH stimulated lipid mobilization from coho salmon parr. Depletion of liver total lipids was accompanied by increased lipolytic enzyme (triacylglycerol lipase) activity. GH had limited effects on dark muscle and mesenteric fat. In smolts, GH had virtually no effect on lipid mobilization. PRL strongly stimulated lipid mobilization in parr; this effect was evident in all depots studied (liver, dark muscle, mesenteric fat). Decreases in total lipid concentration, or in total tissue mass (mesenteric fat), were accompanied by increased lipase activity and generally resulted in reduced tissue triacylglycerol content. Smolts appeared refractory to PRL treatment. Smolts (characteristically possessing elevated liver lipase activity) that were hypophysectomized exhibited low levels of liver lipase activity. Cortisol replacement restored enzyme activity to approximately the same levels as those observed in sham-operated controls. GH replacement restored lipase activity, but not to the levels observed in sham-operated controls. These results indicate that T4, cortisol, GH, and PRL all stimulate lipid mobilization in developing salmon by enhancement of lipolysis and suggest that T4, cortisol, GH, and PRL are among the factors which contribute to smoltification-associated lipid depletion.
Juvenile coho salmon, Oncorhynchus kisutch, were either immersed in thyroxin-containing water (T 4; 20 μg/ml) or implanted with cortisol (5 mg), bovine growth hormone (GH; 1.5 μg/g body wt), or ovine prolactin (PRL; 1.5 μg/g body wt), both early and late in smoltification. T 4 and cortisol treatment stimulated lipid mobilization in parr. T 4-stimulated lipid mobilization was indicated by decreased total lipids, primarily as triacylglycerols, and increased lipolytic enzyme (triacylglycerol lipase) activity in the liver and dark muscle. T 4-stimulated lipid mobilization from mesenteric fat was indicated by decreased total tissue mass and by increased lipase activity. Cortisol caused significant reductions in total lipid concentration and triacylglycerol content of the liver and dark muscle; these effects were accompanied by increased lipase activity. Cortisol treatment did not affect mesenteric fat total lipid concentration, total tissue mass, or triacylglycerol content. However, cortisol implantation did enhance mesenteric fat lipase activity. Thyroxin and cortisol treatment failed to elicit alterations in the pattern of tissue lipid mobilization of smolts. GH stimulated lipid mobilization from coho salmon parr. Depletion of liver total lipids was accompanied by increased lipolytic enzyme (triacylglycerol lipase) activity. GH had limited effects on dark muscle and mesenteric fat. In smolts, GH had virtually no effect on lipid mobilization. PRL strongly stimulated lipid mobilization in parr; this effect was evident in all depots studied (liver, dark muscle, mesenteric fat). Decreases in total lipid concentration, or in total tissue mass (mesenteric fat), were accompanied by increased lipase activity and generally resulted in reduced tissue triacylglycerol content. Smolts appeared refractory to PRL treatment. Smolts (characteristically possessing elevated liver lipase activity) that were hypophysectomized exhibited low levels of liver lipase activity. Cortisol replacement restored enzyme activity to approximately the same levels as those observed in sham-operated controls. GH replacement restored lipase activity, but not to the levels observed in sham-operated controls. These results indicate that T 4, cortisol, GH, and PRL all stimulate lipid mobilization in developing salmon by enhancement of lipolysis and suggest that T 4, cortisol, GH, and PRL are among the factors which contribute to smoltification-associated lipid depletion.
Author Sheridan, Mark A.
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ID FETCH-LOGICAL-c398t-b2574665b5fe5664d8a26a6e90a80ce91059a0e41364b37a8347776c1b9aeed53
ISSN 0016-6480
IngestDate Fri Aug 16 22:31:34 EDT 2024
Fri Aug 16 04:45:25 EDT 2024
Thu Sep 26 18:36:00 EDT 2024
Sat Sep 28 08:38:43 EDT 2024
Sun Oct 29 17:09:23 EDT 2023
Fri Feb 23 02:34:17 EST 2024
IsPeerReviewed true
IsScholarly true
Issue 2
Keywords Steroid hormone
Oncorhynchus kisutch
STH
Aminoacid derivative hormone
Lipids
Cortisol
Metabolism
Salinity
Freshwater environment
Marine environment
Protein hormone
Vertebrata
Prolactin
Pisces
Hormonal regulation
Thyroxine
Development
Environment
Adaptation
Language English
License CC BY 4.0
LinkModel OpenURL
MergedId FETCHMERGED-LOGICAL-c398t-b2574665b5fe5664d8a26a6e90a80ce91059a0e41364b37a8347776c1b9aeed53
Notes ObjectType-Article-2
SourceType-Scholarly Journals-1
ObjectType-Feature-1
content type line 23
ObjectType-Article-1
ObjectType-Feature-2
PMID 3557090
PQID 14584495
PQPubID 23462
PageCount 19
ParticipantIDs proquest_miscellaneous_77290936
proquest_miscellaneous_14584495
crossref_primary_10_1016_0016_6480_86_90007_9
pubmed_primary_3557090
pascalfrancis_primary_8119869
elsevier_sciencedirect_doi_10_1016_0016_6480_86_90007_9
PublicationCentury 1900
PublicationDate 1986-Nov
PublicationDateYYYYMMDD 1986-11-01
PublicationDate_xml – month: 11
  year: 1986
  text: 1986-Nov
PublicationDecade 1980
PublicationPlace San Diego, CA
PublicationPlace_xml – name: San Diego, CA
– name: United States
PublicationTitle General and comparative endocrinology
PublicationTitleAlternate Gen Comp Endocrinol
PublicationYear 1986
Publisher Elsevier Inc
Elsevier
Publisher_xml – name: Elsevier Inc
– name: Elsevier
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Snippet Juvenile coho salmon, Oncorhynchus kisutch, were either immersed in thyroxin-containing water (T 4; 20 μg/ml) or implanted with cortisol (5 mg), bovine growth...
Juvenile coho salmon, Oncorhynchus kisutch, were either immersed in thyroxin-containing water (T4; 20 micrograms/ml) or implanted with cortisol (5 mg), bovine...
Juvenile coho salmon Oncorhynchus kisutch , were either immersed in thyroxin-containing water (T sub(4)) or implanted with cortisol, bovine growth hormone...
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StartPage 220
SubjectTerms Adaptation, Physiological
Adipose Tissue - drug effects
Adipose Tissue - metabolism
Animals
Biological and medical sciences
Development. Metamorphosis. Moult. Ageing
Fundamental and applied biological sciences. Psychology
Growth Hormone - pharmacology
Hydrocortisone - pharmacology
Hypophysectomy
Lipase - metabolism
Lipid Metabolism
Liver - drug effects
Liver - metabolism
Muscles - drug effects
Muscles - metabolism
Oncorhynchus kisutch
Pituitary Hormones, Anterior - pharmacology
Prolactin - pharmacology
Salmon - metabolism
Seasons
Seawater
Space life sciences
Thyroxine - pharmacology
Vertebrates: anatomy and physiology, studies on body, several organs or systems
Title Effects of thyroxin, cortisol, growth hormone, and prolactin on lipid metabolism of coho salmon, Oncorhynchus kisutch, during smoltification
URI https://dx.doi.org/10.1016/0016-6480(86)90007-9
https://www.ncbi.nlm.nih.gov/pubmed/3557090
https://search.proquest.com/docview/14584495
https://search.proquest.com/docview/77290936
Volume 64
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