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dc.contributor.authorKullgren, Andreas
dc.date.accessioned2011-11-18T07:53:17Z
dc.date.available2011-11-18T07:53:17Z
dc.date.issued2011-11-18
dc.identifier.isbn978-91-628-8390-4
dc.identifier.urihttp://hdl.handle.net/2077/27888
dc.description.abstractDue to seasonal variations in temperature and food availability, fish in temperate regions should be able to make metabolic adjustments to ensure that enough energy is available for the maintenance of basal processes. The major aim of this thesis was to elucidate how the physiology and lipid metabolism of salmonid fish is affected by temperature and food availability, and to clarify aspects of the endocrine control of lipid metabolism. In this thesis, the effects of increased temperature or reduced food availability were studied in salmonids by employing a non-prejudiced metabolomics approach to assess the physiological responses. Detailed information on the abundance of specific amino acids, lipid classes, fatty acids and other metabolites in tissue extracts and plasma was obtained by nuclear magnetic resonance (NMR) based metabolomics. NMR-based metabolomics were successfully employed and proved to be applicable to studying metabolic fluxes in fish, providing data on novel and integrated responses. The results show similar changes in lipid metabolism during food deprivation and elevated temperature. The observed responses included increased plasma very-low-density lipoprotein (VLDL) and unsaturated fatty acids (FAs) concurrent with decreased high-density lipoprotein (HDL) and choline. The changes during starvation also involved changes in amino acids and glycogen that indicate that amino acids are used for gluconeogenesis in the liver to preserve glycogen stores. Growth hormone (GH) has both lipolytic and lipogenic effects. To further elucidate the mechanisms of GH action on salmonid lipid metabolism, the effects of GH in vivo on the transcription of several key lipid metabolism enzymes in various tissues were investigated. GH inhibited the hepatic expression of lipoprotein lipase (LPL) thereby decreasing hepatic lipid uptake. Hormone-sensitive lipase (HSL) mRNA expression was not increased by GH in any of the studied tissues, suggesting that the well-known GHinduced lipolysis is regulated on posttranslational levels in rainbow trout. The regulation lipid metabolism in salmonids was further investigated by studying direct effects of FAs and ghrelin on freshly isolated cells from mesenteric adipose tissue and liver. FAs elicited acute negative effects on lipid storage by decreasing lipid uptake via LPL activity in adipose cells as well as by stimulating lipolysis of stored triglycerides (TG) in liver cells. Together the results presented in this thesis shows that elevated, suboptimal temperature and nutritional may have propound effects on important processes as growth, food intake and the metabolome of salmonid fish, and may lead to a negative energy balance. Metabolic changes may be mediated by hormonal and nutrient factors acting at gene expression or enzyme activity level. The results may contribute to better understand lipid deposition patterns in farmed fish and potential effects of climate change on salmonids in the wild and in aquaculture.sv
dc.language.isoengsv
dc.relation.haspartKullgren A, Samuelsson LM, Larsson DGJ, Björnsson BTh, Jönsson Bergman E, 2010. A metabolomics approach to elucidate effects of food deprivation in juvenile rainbow trout (Oncorhynchus mykiss). American Journal of Physiology: Regulatory, Integrative and Comparative Physiology 299 (6):R1440-R1448.::doi::10.1152/ajpregu.00281.2010sv
dc.relation.haspartKullgren A, Jutfelt F, Fontanillas R, Sundell K, Samuelsson LM, Wiklander K, Kling P, Koppe W, Larsson DGJ, Björnsson BTh, Jönsson E. The impact of temperature on the metabolome and endocrine metabolic signaling in Atlantic salmon (Salmo salar). Manuscriptsv
dc.relation.haspartKullgren A, Björnsson BTh, Jönsson E. Growth hormone regulates lipid metabolism-related genes in rainbow trout in vivo. Manuscriptsv
dc.relation.haspartKullgren A, Jönsson E. Lipid uptake and mobilization in isolated rainbow trout hepatocytes and adipocytes are affected by fatty acids and temperature. Manuscriptsv
dc.subjectlipidssv
dc.subjectmetabolismsv
dc.subjecttemperaturesv
dc.subjectfastingsv
dc.subjectgrowth hormonesv
dc.subjectghrelinsv
dc.subjectNMRsv
dc.subjectmetabolomicssv
dc.subjectSalmo salarsv
dc.subjectOncorhynchus mykisssv
dc.titleEnvironmental, nutritional and endocrine regulation of metabolic processes in fishsv
dc.typeTextswe
dc.type.svepDoctoral thesiseng
dc.type.degreeDoctor of Philosophysv
dc.gup.originUniversity of Gothenburg. Faculty of Sciencesv
dc.gup.departmentDepartment of Zoology ; Zoologiska institutionensv
dc.gup.defenceplaceFredagen den 9 december 2011 kl. 10:00 i Stora föreläsningssalen, Zoologiska Institutionen, Medicinaregatan 18, Göteborgsv
dc.gup.defencedate2011-12-09
dc.gup.dissdb-fakultetMNF


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