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Poultry, Volume 1, Issue 3 (September 2022) – 5 articles

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14 pages, 1499 KiB  
Article
Quantitative mRNA and Protein Analyses of ZPB1, ZPB2, and ZPC in Different Genetic Strains of Broiler Breeders
by Andrew Benson, Josh Steed, Mia Malloy, R. Keith Bramwell and Adam J. Davis
Poultry 2022, 1(3), 193-206; https://0-doi-org.brum.beds.ac.uk/10.3390/poultry1030017 - 22 Aug 2022
Viewed by 1438
Abstract
The avian inner perivitelline layer (IPVL), containing the zona pellucida (ZP) family of proteins, surrounds the ovulated ovum. Sperm binding at the germinal disc (GD) region of the IPVL initiates fertilization in avian species, and the amount of sperm binding at the GD [...] Read more.
The avian inner perivitelline layer (IPVL), containing the zona pellucida (ZP) family of proteins, surrounds the ovulated ovum. Sperm binding at the germinal disc (GD) region of the IPVL initiates fertilization in avian species, and the amount of sperm binding at the GD reflects female fertility. RT-PCR and quantitative Western blot analyses were used to determine differences in ZP protein mRNA expression and protein concentration between GD and nongerminal disc (NGD) regions among four genetic strains of broiler breeders. Both the mRNA expression and protein concentration of chicken ZPB2 was greater in the GD region, compared to the NGD region, and ZPB2 protein was more abundant in the small prehierarchical follicles. Chicken ZPC mRNA, but not ZPC protein, was greater in the NGD region compared to the GD region, and hepatically expressed ZPB1 protein was more concentrated in the NGD region. Testosterone increased the expression of both ZPC mRNA and protein in cultured granulosa cells from prehierarchical follicles. The current research is the first to investigate the relative amount of ZP proteins between the GD region and NGD region in chicken IPVL. The results provide further evidence that ZPB2 may be critical for avian sperm binding at the GD region of the IPVL. Full article
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13 pages, 297 KiB  
Article
Effects of Dietary Probiotic Supplementation on Egg Quality during Storage
by Camila Lopes Carvalho, Ines Andretta, Gabriela Miotto Galli, Thais Bastos Stefanello, Nathalia de Oliveira Telesca Camargo, Maiara Marchiori, Raquel Melchior and Marcos Kipper
Poultry 2022, 1(3), 180-192; https://0-doi-org.brum.beds.ac.uk/10.3390/poultry1030016 - 11 Aug 2022
Cited by 1 | Viewed by 2007
Abstract
The objective of this study was to evaluate whether probiotic supplementation to laying hens can improve the quality of eggs during storage. The trial was developed in a commercial farm, in which light-weight laying hens (36 weeks old) housed in cages were randomly [...] Read more.
The objective of this study was to evaluate whether probiotic supplementation to laying hens can improve the quality of eggs during storage. The trial was developed in a commercial farm, in which light-weight laying hens (36 weeks old) housed in cages were randomly selected for one of two different treatments: a control group fed non-supplemented diets, or birds fed with diets supplemented with 50 g/ton of probiotics. The trial lasted for 84 days, comprising three productive phases of 28 days each. The fresh egg quality was evaluated and then the eggs were stored and randomly separated for quality assessment at each storage interval (7, 14, 21, 28, 35, and 42 days). Means were compared using variance analysis considering differences at 5 and 10%. The probiotic was able to improve albumen weight, yolk length, yolk height, and yolk index (p < 0.05) during storage. Yolk color (fan) was also improved by 3.9% (p < 0.001), while increases of 1.35% (p < 0.001) in luminosity, 8.05% (p < 0.001) in red intensity, and 3.4% (p < 0.001) in yellow intensity were observed in comparison to the control group. Probiotic treatment was able to reduce by 2.03% (p < 0.001) yolk pH, and by 19.65% (p < 0.05) TBARS levels when compared to the control treatment. Therefore, the addition of probiotics to laying hen diets is an effective strategy to improve egg quality during storage. Full article
11 pages, 301 KiB  
Article
Carcass Characteristics and Meat Quality of Ross 308 Broiler Chickens Fed Malted Red and White Sorghum-Based Diets
by Chandapiwa Moses, Freddy Manyeula, Malebogo Virginia Radikara, Molebeledi Horatious Dambe Mareko and Othusitse Ricky Madibela
Poultry 2022, 1(3), 169-179; https://0-doi-org.brum.beds.ac.uk/10.3390/poultry1030015 - 8 Aug 2022
Cited by 4 | Viewed by 2625
Abstract
In this study, the effects of malted sorghum-based diets (MSBD) on carcass characteristics and meat quality were investigated in broiler chickens. Two-week-old Ross 308 broilers were randomly allocated to three groups (each with five replications) and were then reared on either 0 or [...] Read more.
In this study, the effects of malted sorghum-based diets (MSBD) on carcass characteristics and meat quality were investigated in broiler chickens. Two-week-old Ross 308 broilers were randomly allocated to three groups (each with five replications) and were then reared on either 0 or 100% (red (Mr Buster) or white (Segaolane)) malted sorghum commercial diets. The highest (p < 0.05) slaughter weights, hot carcass weights, and cold carcass weights were observed for the broilers reared on the control diets. Broilers reared on MSBD had high (p < 0.05) drumstick–thigh and vertebrae weights. The broilers fed the malted red sorghum-based diet (MRSBD) had the longest (p < 0.05) small intestine and highest gizzard and liver percentage. The pHi of the broilers fed MRSBD was higher (p < 0.05) than the broilers on the control or malted white sorghum-based diet (MWSBD). Breast muscle crude fibre was the lowest (p ˂ 0.05) for the MRSBD and phosphorus was low (p ˂ 0.005) for MSBD broilers. The highest (p < 0.05) muscle potassium and magnesium was found in the control diet broilers. The carcass characteristics, internal organs, and meat quality traits of the broilers fed MSBD compared well to those fed the control diets. It is concluded that malted sorghum grains are a potential alternative energy source to maize for broiler diets and could reduce competition for maize grains between livestock and human use. Full article
12 pages, 324 KiB  
Article
An In Vivo Pilot Study on Probiotic Potential of Lactic Acid Bacteria Isolated from the Gastrointestinal Tract of Creole Hens (Gallus gallus domesticus) Native to Montería, Córdoba, Colombia in Broiler Chickens
by César A. Betancur-Hurtado, Luis Miguel Barreto Lopez, Ana Julia Rondon Castillo, Maria C. Trujillo-Peralta, Xochitl Hernandez-Velasco, Guillermo Tellez-Isaias and Brittany D. Graham
Poultry 2022, 1(3), 157-168; https://0-doi-org.brum.beds.ac.uk/10.3390/poultry1030014 - 25 Jul 2022
Cited by 2 | Viewed by 1900
Abstract
The objective of the present study was to characterize the probiotic potential of nine strains of Lactobacillus spp. isolated from the gastrointestinal tract of Creole hens through in vitro and in vivo tests. The following parameters were evaluated in vitro: (1) growth at [...] Read more.
The objective of the present study was to characterize the probiotic potential of nine strains of Lactobacillus spp. isolated from the gastrointestinal tract of Creole hens through in vitro and in vivo tests. The following parameters were evaluated in vitro: (1) growth at four pH levels, (2) resistance to four bile salt concentrations, (3) tolerance to four NaCl concentrations, (4) growth capacity in the culture medium, and (5) the antimicrobial activity against Escherichia coli, Salmonella, Klebsiella, and Staphylococcus aureus. The candidate LP-40 had significantly (p < 0.05) increased resistance to pH 3 and 0.3% bile salts and elevated antimicrobial activity in vitro compared to the other strains evaluated. This strain was identified as Lactobacillus salivarius by 16S rRNA sequencing. An in vivo experiment was conducted to assess the effect of LP-40 supplementation in the drinking water on 42-day performance parameters in broiler chickens as compared to a non-treated control or dietary treatment with enrofloxacin. The administration of LP-40 in the drinking water significantly (p < 0.05) improved body weight, feed conversion compared to the antibiotic-treated control. Thus, the in vitro and in vivo results suggest that Lactobacillus salivarius LP-40 demonstrates probiotic potential and, perhaps, could be utilized as an alternative to antibiotic treatment. Full article
10 pages, 287 KiB  
Review
Deleterious Effects of Heat Stress on Poultry Production: Unveiling the Benefits of Betaine and Polyphenols
by Majid Shakeri and Hieu Huu Le
Poultry 2022, 1(3), 147-156; https://0-doi-org.brum.beds.ac.uk/10.3390/poultry1030013 - 20 Jul 2022
Cited by 13 | Viewed by 2711
Abstract
Managing and controlling environmental temperature conditions using practical strategies is crucial to avoid the negative impacts of high environmental temperature, improving poultry production and welfare. High environmental temperature is one of the significant factors challenging poultry production during hot seasons or in tropical [...] Read more.
Managing and controlling environmental temperature conditions using practical strategies is crucial to avoid the negative impacts of high environmental temperature, improving poultry production and welfare. High environmental temperature is one of the significant factors challenging poultry production during hot seasons or in tropical areas causing heat stress (HS). The detrimental effects of HS on broilers range from reduced growth performance to impaired poultry meat quality. HS impairs physiological responses caused by alteration in blood parameters, which could lead to impaired product quality by reducing moisture content and altering the production of antioxidant enzymes resulting in increased oxidative stress. There has been a focus on the use of nutritional supplements as a cost effective HS amelioration strategy, such as betaine and polyphenols. Supplementing broiler chicken’s diets with polyphenols aims to enhance growth performance via reduced levels of oxidative stress in tissues under HS conditions. Furthermore, using betaine as an osmolyte aims to protect tissues during osmotic stress conditions. The current review reveals that betaine and polyphenols are essential under crucial conditions such as HS to protect tissues from oxidative damage. Full article
(This article belongs to the Collection Poultry Nutrition)
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