The influence of the method of barley inclusion (fine, coarse and whole barley) in a wheat-based diet and protease supplementation (0 and 0.20 g/kg) on growth performance, nutrient utilisation and gastrointestinal tract development of broilers (d 1 to 21) was evaluated in a 3 × 2 factorial arrangement. Whole barley (WB) grains were ground in a hammer mill to pass through the screen sizes of 2.5 and 8.0 mm to achieve fine (FB) and coarse (CB) barley particle sizes, respectively. A total of 288, one-day-old male broilers were allotted to 36 cages (6 cages/treatment; 8 birds/cage). There was no significant ( > 0.05) interaction between barley inclusion method and protease for any growth performance or nutrient utilisation parameters. Birds fed diets containing CB and WB showed higher ( < 0.05) weight gain, and digestibility of dry matter, nitrogen, calcium, gross energy, and ileal digestible energy compared to those fed FB diets. Compared to the birds fed FB diets, feed per gain was lower ( < 0.05) in birds fed diets made of WB. Fat digestibility of the birds fed CB was higher ( < 0.05) than those fed FB and WB birds. Compared to FB and CB diets, inclusion of WB resulted in heavier ( < 0.05) gizzards but reduced ( < 0.05) gizzard pH. Supplemental protease, however, had no effects ( > 0.05) on growth performance and nutrient utilisation, most likely due to the well balanced digestible amino acids and high inherent digestibility of protein in the basal diet, and/or the presence of exogenous carbohydrase and phytase. In conclusion, the present results showed that the inclusion of coarsely ground and whole barley in a wheat-based diet can enhance nutrient and energy utilisation and is beneficial to the growth performance of young broilers.
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http://dx.doi.org/10.1016/j.aninu.2021.06.008 | DOI Listing |
J Anim Sci
January 2025
Department of Animal and Food Sciences, University of Kentucky, Lexington, KY 40546, USA.
With the growing bourbon industry in the southeastern U.S. leading to increased production of liquid distillery byproducts, there is a pressing need to explore sustainable uses for whole stillage [containing residual grain (corn, rye, malted barley) and liquid after ethanol separation] in livestock nutrition.
View Article and Find Full Text PDFVet Anim Sci
March 2025
Animal Science Research Department, Fars Agricultural and Natural Resources Research and Education Center, Agricultural Research, Education and Extension Organization (AREEO), Shiraz, Iran.
This study aims to measure the effects of different dietary concentrations of triticale hay (TH) on productive performance, carcass characteristics, microbial protein synthesis (MPS), ruminal and blood variables, and antioxidant power in 40 fattening male Gray Shirazi lambs (BW of 33.2 ± 1.1 kg) over 81 days in a completely randomized design (10 animals/diet).
View Article and Find Full Text PDFJ Genet Genomics
January 2025
Department of Botany and Plant Sciences, University of California, Riverside, CA 92521, USA. Electronic address:
The QTL by environment interaction (Q×E) effect is hard to detect because there are no effective ways to control the genomic background. In this study, we propose a novel linear mixed model that simultaneously analyzes data from multiple environments to detect Q×E interactions. This model incorporates two different kinship matrices derived from the genome-wide markers to control both main and interaction polygenic background effects.
View Article and Find Full Text PDFJ Neurosurg Anesthesiol
January 2025
Stroke Medicine.
Processed electroencephalography (pEEG) is increasingly used to titrate the depth of anesthesia. Whether such intra-procedural pEEG monitoring can offer additional information on cerebral perfusion or acute focal or global cerebral ischemia is unknown. This scoping review aimed to provide a narrative analysis of the current literature reporting the potential role of pEEG in adults with acute cerebral ischemia.
View Article and Find Full Text PDFProtein Expr Purif
December 2024
Gujarat Biotechnology Research Centre, Gandhinagar, 382011, Gujarat, India. Electronic address:
Plant glucanases, including potato glucanase, are pivotal in biological processes such as cell growth, development, and defense against pathogens. These enzymes hold substantial promises in biotechnological applications, especially genetic engineering for enhancing crop disease resistance and stress tolerance. In this study, from Solanum tuberosum, glycosyl hydrolases family 17 (GH-17) β-1,3-glucanase (Stglu) was cloned, expressed, characterized and its antifungal activity was evaluated.
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