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The objective of this study is to estimate genetic parameters for linear body measurements along with their correlation to live weight with a focus on devising a scale to predict live weights from body measurement. A total of 142,564 records on body measures and live weights were collected from 8701 Jamunapari goats. Genetic parameters were obtained for body length (L), height at withers (H) and heart girth (G) from birth to adult stage by univariate and multivariate analysis using the average information restricted maximum likelihood method. The best model for body measures at birth included the additive effect of animal and dam along with their covariance and maternal environment, whereas for traits measured later in life, the maternal environment was not significant. After accounting for the direct maternal correlation (r ), the total heritability estimates for linear body measurements (L,H and G) at the preweaning and postweaning stages of growth ranged from 0.14 to 0.20. Significant genetic variability implies further scope for selection. The genetic correlations of live weight at birth, 3, 6, 9 and 12 months with corresponding L,H and G were high in magnitude indicating scope to select animals for higher weight using morphometric measurements. When weighing scales are unavailable in the field, prediction of weight using L and G was recommended [live weight = (0.291 × L) + (0.306 × G) - 16.8]. We recommend the use of body measurements in the Jamunapari goat breeding program owing to their high genetic correlation with corresponding live weights.
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http://dx.doi.org/10.1111/jbg.12677 | DOI Listing |
J Vet Intern Med
September 2025
Department of Medicine and Epidemiology, School of Veterinary Medicine, University of California-Davis, Davis, California, USA.
Background: Echocardiographic reference intervals for Quarter Horses are infrequently reported.
Objectives: To provide standard echocardiographic measurements for sedentary Quarter Horses and evaluate the relationship between physical characteristics (body weight, age, sex) and echocardiographic measurements.
Animals: Forty-one sedentary Quarter Horses, free of cardiac disease, from a university research herd.
J Fish Biol
September 2025
College of Earth, Ocean, and Environment, University of Delaware, Lewes, Delaware, USA.
Vision is one of the most important means by which animals perceive their environment. In the pelagic ocean, there is an enormous gradient of available light from the well-lit surface to the deep bathypelagic zone. Fish inhabiting different depths of the pelagic ocean must adapt to these conditions.
View Article and Find Full Text PDFObesity (Silver Spring)
September 2025
Department of Nutrition Sciences, University of Alabama at Birmingham (UAB), Birmingham, Alabama, USA.
Objective: This secondary analysis was conducted to compare the magnitude of adaptive thermogenesis (AT) following hypocaloric low-carbohydrate (CHO) versus low-fat diets in African American (AA) women.
Methods: Sixty-nine AA women with obesity were randomized to low-CHO or low-fat hypocaloric diets for 10 weeks, followed by a 4-week weight stabilization period (all food provided). At baseline and Week 13, insulin sensitivity (S) was measured by intravenous glucose tolerance test, body composition by bioimpedance analysis, total energy expenditure (EE) (TEE) by doubly labeled water, and resting EE (REE) by indirect calorimetry.
One Health Outlook
September 2025
Department of Tropical Health, High Institute of Public Health, Alexandria University, 165 El Horreya Road, Alexandria, 21561, Egypt.
Background: Brucellosis remains a significant public health and economic challenge in Egypt despite long-standing control efforts. This paper outlines the national strategy for brucellosis control, detailing its legal framework, diagnostic protocols, surveillance mechanisms, vaccination programs, and biosecurity measures.
Main Body: Egypt employs a dual approach of test-and-slaughter and selective vaccination, supported by serological and pathological diagnostics.
Nature
September 2025
Department of Physics, Harvard University, Cambridge, MA, USA.
Quantum simulations of many-body systems are among the most promising applications of quantum computers. In particular, models based on strongly correlated fermions are central to our understanding of quantum chemistry and materials problems, and can lead to exotic, topological phases of matter. However, owing to the non-local nature of fermions, such models are challenging to simulate with qubit devices.
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