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1.
PLoS One ; 13(12): e0209112, 2018.
Article in English | MEDLINE | ID: mdl-30543707

ABSTRACT

INTRODUCTION: Golden retrievers are over-represented in cases of taurine-deficient dilated cardiomyopathy and recently a surge in cases has prompted further investigation. OBJECTIVE: To describe the clinical, dietary, and echocardiographic features in golden retrievers diagnosed with taurine deficiency and dilated cardiomyopathy, and to determine specific dietary associations. A second aim was to determine the whole blood taurine concentrations in a representative sample of healthy golden retrievers. ANIMALS: Twenty-four client-owned golden retrievers with documented taurine deficiency and dilated cardiomyopathy and 52 healthy client-owned golden retrievers. METHODS: In this multicenter prospective observational study, baseline and follow-up echocardiographic data, complete diet and medical histories, and whole blood, plasma, or serum taurine concentrations were obtained. Baseline and follow-up echocardiographic data were compared. Associations were evaluated between specific diets and taurine deficiency or congestive heart failure. The prevalence of low whole blood taurine concentrations in the healthy golden retrievers was calculated. RESULTS: Twenty-three of 24 dogs diagnosed with taurine deficiency and dilated cardiomyopathy were fed diets that were either grain-free, legume-rich, or a combination of these factors. None of these diets were feeding trial tested using Association of American Feed Control Officials (AAFCO) procedures. Twenty-three of 24 dogs had significant improvement in their echocardiographic parameters and normalization of taurine concentrations following diet change and taurine supplementation. Nine of 11 dogs diagnosed with congestive heart failure (CHF) had resolution of their congestion at follow-up with five no longer requiring diuretic therapy and four tolerating diuretic dose reduction by >50%. CONCLUSIONS: Certain diets and diet characteristics were associated with the development of taurine deficiency. Taurine deficiency and dilated cardiomyopathy in golden retrievers is likely multifactorial, including a combination of dietary, metabolic, and genetic factors.


Subject(s)
Cardiomyopathy, Dilated/diagnosis , Diet/adverse effects , Dog Diseases/diagnosis , Taurine/metabolism , Animal Feed/adverse effects , Animal Nutritional Physiological Phenomena , Animals , Cardiomyopathy, Dilated/etiology , Cardiomyopathy, Dilated/physiopathology , Diet/veterinary , Dog Diseases/etiology , Dog Diseases/physiopathology , Dogs , Echocardiography , Edible Grain/adverse effects , Female , Heart/diagnostic imaging , Heart/physiopathology , Male , Taurine/deficiency , Taurine/genetics
3.
Mol Ecol ; 25(8): 1714-28, 2016 Apr.
Article in English | MEDLINE | ID: mdl-26588348

ABSTRACT

Organisms can adapt to variable environments by using environmental cues to modulate developmental gene expression. In principle, maternal influences can adaptively adjust offspring phenotype when early life and adult environments match, but they may be maladaptive when future environments are not predictable. One of the best-studied 'maternal effects' is through modification of the offspring's hypothalamic-pituitary-adrenal (HPA) axis, the neuroendocrine system that controls responses to stress. In addition to the direct transfer of glucocorticoids from mother to offspring, offspring HPA function and other phenotypes can also be affected by epigenetic modifications like DNA methylation of the glucocorticoid receptor promoter. Here we examine how among-year variation in rainfall is related to DNA methylation during development and fitness in adulthood in the superb starling (Lamprotornis superbus), which lives in a climatically unpredictable environment where early life and adult environments are unlikely to match. We found that DNA methylation in the putative promoter of the glucocorticoid receptor gene is reduced in chicks - particularly in males - born following drier prebreeding periods. Additionally, DNA methylation is lower in males that become breeders than those that never breed. However, there is no relationship in females between DNA methylation and the likelihood of dispersing from the natal group to breed elsewhere. These results suggest that early life conditions may positively affect fitness in a sex-specific manner through chemical modification of an HPA-associated gene. This study is the first to show that epigenetic modifications during early life may influence the fitness of free-living organisms adapted to unpredictable environments.


Subject(s)
DNA Methylation , Environment , Genetic Fitness , Receptors, Glucocorticoid/genetics , Sex Factors , Starlings/genetics , Animals , Base Sequence , Epigenesis, Genetic , Female , Kenya , Male , Promoter Regions, Genetic , Rain
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