| Literature DB >> 35106363 |
Abstract
Stocking broilers at a high density has been a strategy to optimize the area of the cage and hence increase the efficiency of broiler production. If the environmental (microclimate) conditions and rearing management are not properly managed, stocking broilers at a high density may, however, result in stressful conditions that are harmful for the production, health and welfare of broilers. To ameliorate these unfavorable effects of overcrowding stress, dietary interventions have been conducted. Probiotics, prebiotics, synbiotics, plant-derived products, vitamins, propolis, amino acids, fatty acids, etc. have been supplemented in diets to deal with the harmful impact of stress induced by a high stocking density of broilers. This review covers the detrimental effects of overcrowding-induced stress on broiler development and attempts to ameliorate those negative effects by dietary interventions. Copyright:Entities:
Year: 2022 PMID: 35106363 PMCID: PMC8795885 DOI: 10.5194/aab-65-21-2022
Source DB: PubMed Journal: Arch Anim Breed ISSN: 0003-9438
The use of probiotics in broilers raised at a high stocking density.
| Probiotic microorganisms | Implications for broilers | References |
|---|---|---|
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| Broiler performance was enhanced, stress parameters were reduced, carcass yields were enhanced, carcass characteristics and sensory values were improved and the microbiological state of meat wasimproved in respect to faecal coliforms and | Khalil et al. (2021) |
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| Body weight, body weight gain, FCR, villus-to-crypt ratio, faecaland caecal LAB counts and intestinal integrity were all improvedby probiotics. After a viscerotropic velogenic Newcastle disease(vVND) challenge, the probiotic also reduced macroscopic andmicroscopic lesion ratings in broilers kept at a HSD. | Awaad et al. (2019) |
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| Probiotics increased the ileal villi height and intestinalvillus-to-crypt ratio of broiler chicks raised at HSD. | Altaf et al. (2019) |
| Mixture of | At a high density, broiler performance was improved by probiotics only during the starter period. Probiotics had no effect on the totalaerobes, | Cengiz et al. (2015) |
| Mixture of | Probiotics did not ameliorate the growth performance and carcasscharacteristics of broilers at HSD. | de Souza et al. (2018) |
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| Probiotic supplementation increased ileal villus height andreduced | Ebeid et al. (2019) |
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| Under overcrowded conditions, probiotics had a positive impacton serum IgM levels and cell-mediated immune responseswithout affecting growth rate. | Fathi et al. (2017) |
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| Probiotic supplementation alleviated the detrimental changes inbehavior (feeding, drinking and walking behavior), bloodcorticosterone and brain serotonin levels of broilers due toovercrowding stress. | Ibrahim et al. (2018a) |
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| Probiotics were unable to alleviate adverse impacts of high-densitystress on sleeping frequency, preening, head scratching, wing or leg stretching, and dust bathing. | Ibrahim et al. (2018b) |
| Blends of | Probiotics improved production parameters of stressed broilers due to overcrowding. | Karthiayini andPhilomina (2015) |
| Commercial probiotic (not specified) | Probiotics improved feed intake, FCR, body weight gain andmortality rate, as well as increasing total protein, globulin andalbumin levels, but decreased triglycerides and cholesterollevels in the plasma. | Mahmoud andEl-Rayes (2016) |
| Commercial probiotic (not specified) | Probiotics improved the body weight gain of broilers raised at HSD. | Rashidi et al. (2019) |
| Mixture of | Probiotics had no impact on the growth, feed intake, carcass traitsand meat quality of broilers at HSD. | Vargas-Rodriguezet al. (2013) |
The use of prebiotics and synbiotics in broilers raised at a high stocking density.
| Prebiotics and synbiotics | Implications for broilers | References |
|---|---|---|
| Mannanoligosaccharide (MOS) orsynbiotics (MOS blended with | Stress and microbial imbalance (dysbiosis) in broiler intestineunder HSD conditions were mitigated by supplementing withprebiotics or synbiotics. | Kridtayopaset al. (2019) |
| Synbiotics (combination of | Synbiotic supplementation in the diet of commercial broilers kept at a HSD had a beneficial effect on growth efficiency and intestinal morphology. | Altaf et al. (2019) |
| MOS | MOS increased the live weight gain of broilers housed at HSD. | Hooge et al. (2003) |
| MOS | Prebiotics in diet had no effect on the performance, immunecompetence and stress response of broilers. | Houshmandet al. (2012) |
The use of plant-derived products in broilers raised at a high stocking density.
| Plant products | Implications for broilers | References |
|---|---|---|
| Stem bark extract of | The extract improved the growth performance and reducedoxidative stress of broilers raised at HSD. | Jope et al. (2019) |
| Licorice extract | Broilers reared at HSD gained more weight with the extract, but it had no impact on footpad, hock and walking ability. | Rashidi et al. (2019) |
| Curcumin extract | The amount of lipid peroxidation was decreased, while catalase andSOD activities of overcrowded broilers were increased withcurcumin extract administration. The extract also improved thegrowth of broilers raised in stressful environments due to HSD. | Pimson et al. (2018) |
| The extract enhanced broiler growth rate by improving immunity, minimizing oxidative stress and promoting intestinal colonization by healthy microbiota in HSD environments. | Zhang et al. (2013) | |
| Garlic powder | Garlic supplementation improved the growth performance andintestinal morphology of broiler chickens reared in battery cagesunder high-density conditions. | Shakeri et al. (2015) |
| Polyherbal consisting of | Polyherbal improved the growth and FCR of broilers underhigh-density conditions. It also normalized serum biochemical andhematological parameters and ameliorated gross pathologicallesions in vital organs (liver, kidney, spleen and lungs). | Panduranget al. (2011) |
| Black cumin | Feeding black cumin to broiler chickens improved performance ofbroilers housed at a HSD. | Mahfudz et al. (2015) |
Other dietary additives in broilers raised at a high stocking density.
| Additives | Implications for broilers | References |
|---|---|---|
| Vitamin E | Supplementing birds subjected to HSD with vitamin E had afavorable effect on body weight gain, FCR, European productionefficiency factor (EPEF), H | Selvam et al. (2017) |
| Vitamin E | Vitamin E had no substantial effect in ameliorating the negativeeffect of HSD on broiler chickens. | El-Gogaryet al. (2015) |
| Alpha-lipoic acid (ALA) | Overcrowded broilers' abdominal fat pad was reduced when theywere given ALA. After supplementing with ALA, serum SOD andGSH peroxidase activity increased, but MDA levels decreased,while IgA and IgG were maintained as in low-density conditions. | W. Li et al. (2019) |
| A mixture of L-glutamine andL-glutamic acid | L-glutamine and L-glutamic acid showed no effect on broilergrowth performance, intestinal morphology or physiologicaladaption responses when housed in a HSD environment. | Shakeri et al. (2014) |
| Biotin | Biotin improved growth and FCR and well-being (lesion scores offootpad and hock) of high-density broiler chicks. | Sun et al. (2017) |
| Chinese royal jelly | Supplementing Ross broiler chicks with Chinese royal jelly couldreduce the negative effects of HSD, i.e., improving behavior,growth performance and blood parameters. | Mahmoud (2016) |
| Medium-chain fatty acids | Supplement increased broiler performance and welfare as reflectedby the reduced foot deformities in broilers grown at high placementdensities of 16 and 18 birds m | Khosravinia (2015) |
| DL-methionine | Supplementing the broilers with DL-methionine was able tocounteract the negative effects of increasing stocking density ongrowth and enhanced their redox state. | Magnusonet al. (2020) |
| Methionine | Methionine supplementation had no substantial effect on broilershoused under overcrowding condition. | Heidari andToghyani (2018) |
| Propolis (bee glue) | The immune system (IgG) and stress indicators (H | Chegini et al. (2019) |
| Tryptophan | Additional dietary tryptophan supplementation had no favorableeffect on broiler chickens grown at HSD. | Goo et al. (2019) |
| Combination of nicotinamide andbutyrate sodium | The combination of nicotinamide and butyrate sodium improvedthe muscle quality of broilers raised at a HSD. | Wu et al. (2020a) |