Literature DB >> 26593972

Dietary supplementation of a mixture of Lactobacillus strains enhances performance of broiler chickens raised under heat stress conditions.

Mohammad Faseleh Jahromi1, Yassir Wesam Altaher1, Parisa Shokryazdan2, Roohollah Ebrahimi1, Mahdi Ebrahimi2, Zulkifli Idrus1, Vincenzo Tufarelli3, Juan Boo Liang4.   

Abstract

High ambient temperature is a major problem in commercial broiler production in the humid tropics because high producing broiler birds consume more feed, have higher metabolic activity, and thus higher body heat production. To evaluate the effects of two previously isolated potential probiotic strains (Lactobacillus pentosus ITA23 and Lactobacillus acidophilus ITA44) on broilers growing under heat stress condition, a total of 192 chicks were randomly allocated into four treatment groups of 48 chickens each as follows: CL, birds fed with basal diet raised in 24 °C; PL, birds fed with basal diet plus 0.1 % probiotic mixture raised in 24 °C; CH, birds fed with basal diet raised in 35 °C; and PH, birds fed with basal diet plus 0.1 % probiotic mixture raised in 35 °C. The effects of probiotic mixture on the performance, expression of nutrient absorption genes of the small intestine, volatile fatty acids (VFA) and microbial population of cecal contents, antioxidant capacity of liver, and fatty acid composition of breast muscle were investigated. Results showed that probiotic positively affected the final body weight under both temperature conditions (PL and PH groups) compared to their respective control groups (CL and CH). Probiotic supplementation numerically improved the average daily gain (ADG) under lower temperature, but significantly improved ADG under the higher temperature (P < 0.05) by sustaining high feed intake. Under the lower temperature environment, supplementation of the two Lactobacillus strains significantly increased the expression of the four sugar transporter genes tested (GLUT2, GLUT5, SGLT1, and SGLT4) indicating probiotic enhances the absorption of this nutrient. Similar but less pronounced effect was also observed under higher temperature (35 °C) condition. In addition, the probiotic mixture improved bacterial population of the cecal contents, by increasing beneficial bacteria and decreasing Escherichia coli population, which could be because of higher production of VFA in the cecum, especially at heat stress condition. The two Lactobacillus strains also improved the fatty acid profile of meat, including at heat stress. Generally, the two Lactobacillus strains can be considered as good potential probiotics for chickens due to their good probiotic properties and remarkable efficacy on broiler chickens.

Entities:  

Keywords:  Antioxidant capacity; Bacterial quantification; Chickens; Fatty acid composition; Gene expression; Heat stress; Probiotic

Mesh:

Substances:

Year:  2015        PMID: 26593972     DOI: 10.1007/s00484-015-1103-x

Source DB:  PubMed          Journal:  Int J Biometeorol        ISSN: 0020-7128            Impact factor:   3.787


  37 in total

1.  Role of volatile fatty acids in development of the cecal microflora in broiler chickens during growth.

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2.  Effect of probiotic supplementation on growth, nitrogen utilisation and serum cholesterol in broilers.

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Review 7.  Mechanisms of probiosis and prebiosis: considerations for enhanced functional foods.

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8.  Effect of dietary lead on intestinal nutrient transporters mRNA expression in broiler chickens.

Authors:  Roohollah Ebrahimi; Mohammad Faseleh Jahromi; Juan Boo Liang; Abdoreza Soleimani Farjam; Parisa Shokryazdan; Zulkifli Idrus
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9.  Antibacterial and Antioxidant Activities of Acid and Bile Resistant Strains of Lactobacillus fermentum Isolated from Miang.

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10.  Probiotic potential of Lactobacillus strains with antimicrobial activity against some human pathogenic strains.

Authors:  Parisa Shokryazdan; Chin Chin Sieo; Ramasamy Kalavathy; Juan Boo Liang; Noorjahan Banu Alitheen; Mohammad Faseleh Jahromi; Yin Wan Ho
Journal:  Biomed Res Int       Date:  2014-07-03       Impact factor: 3.411

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  28 in total

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2.  The use of probiotics as eco-friendly alternatives for antibiotics in poultry nutrition.

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3.  Alterations in Intestinal Permeability: The Role of the "Leaky Gut" in Health and Disease.

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4.  Effects of dietary inclusion level of a mixture of probiotic cultures and enzymes on broiler chickens immunity response.

Authors:  Alireza Seidavi; Mohammad Dadashbeiki; Mohammad-Hossein Alimohammadi-Saraei; René van den Hoven; Rita Payan-Carreira; Vito Laudadio; Vincenzo Tufarelli
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5.  Influence of dietary vitamin E and selenium supplementation on broilers subjected to heat stress, Part I: Growth performance, body composition and intestinal nutrient transporters.

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6.  Chinese Herbal Medicines as Potential Agents for Alleviation of Heat Stress in Poultry.

Authors:  Parisa Shokryazdan; Mohammad Faseleh Jahromi; Salwani Md Saadand; Mahdi Ebrahimi; Zulkifli Idrus; Hailong Zhou; Xiao Ping Diao; Juan Boo Liang
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7.  In Ovo Injection of GABA Can Help Body Weight Gain at Hatch, Increase Chick Weight to Egg Weight Ratio, and Improve Broiler Heat Resistance.

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9.  Modulation of Immune Function in Rats Using Oligosaccharides Extracted from Palm Kernel Cake.

Authors:  Mohammd Faseleh Jahromi; Parisa Shokryazdan; Zulkifli Idrus; Rohollah Ebrahimi; Fatemeh Bashokouh; Juan Boo Liang
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10.  In Ovo and dietary administration of oligosaccharides extracted from palm kernel cake influence general health of pre- and neonatal broiler chicks.

Authors:  Mohammad Faseleh Jahromi; Parisa Shokryazdan; Zulkifli Idrus; Rohollah Ebrahimi; Juan Boo Liang
Journal:  PLoS One       Date:  2017-09-07       Impact factor: 3.240

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