首页> 美国卫生研究院文献>Saudi Journal of Biological Sciences >Growth performance intestinal histomorphology gut microflora and ghrelin gene expression analysis of broiler by supplementing natural growth promoters: A nutrigenomics approach
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Growth performance intestinal histomorphology gut microflora and ghrelin gene expression analysis of broiler by supplementing natural growth promoters: A nutrigenomics approach

机译:通过补充天然生长促进剂肉鸡的生长性能肠道组织肠道基因表达分析:营养学方法

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摘要

In an epoch of escalating number of antibiotic-resistance bacteria, there is a dire need to develop efficient and novel feeding strategies for animal nutrition as alternatives to antibiotics. Here, implicating nutrigenomic approach, phytobiotics and organic acids were used to evaluate ghrelin gene expression levels, gut microflora composition, performance parameters and intestinal histomorphological changes in broiler chickens. One-day-old chicks (n = 315) were reared for 42 days and distributed randomly into five experimental groups; each with three replicates (21 birds per replicate). Experimental groups were control: basal diet only, antimicrobial growth promoter: 40 g/metric ton of basal diet (virginiamycin), organic acids: 4 kg/metric ton of basal diet, phytobiotics: 3 kg/metric ton of basal diet, combination: 7 kg/metric ton of basal diet (organic acids 4 kg and phytobiotics 3 kg metric ton of feed). Growth performance, histological and ghrelin gene expression analysis were executed on 21 and 42 days while, quantitative bacterial analysis of cecum and ileum was performed on day 42. Increased feed intake and body weight (p < 0.05) were noticed in phytobiotics group. Addition of phytobiotics significantly improved (p < 0.05) villus height and ratio of villus height/crypt depth in ileum, jejunum, and duodenum and down-regulated ghrelin gene expression levels. Total coliform and Escherichia coli in cecal and ileal digesta were decreased significantly (p < 0.05) in organic acids group. Correlation analysis revealed Lactobacillus spp. were positively correlated to villus height/crypt depth ration in duodenum. The findings indicated the importance of gene-nutrient-microbiota interactions based on nutrigenomics approach. Hence, phytobiotics and organic acids might be suitable alternatives to antibiotics for improved performance and immunity, along with healthier meat production in poultry.
机译:在易于抗生素抗菌细菌数量的纪元中,有急需开发用于动物营养的高效和新的饲养策略作为抗生素的替代品。这里,含有植物植物和有机酸的含有营养素和有机酸来评估肉鸡鸡的Ghrelin基因表达水平,肠道微生物组合物,性能参数和肠道组织形态变化。饲养一日大的小鸡(N = 315)42天,随机分布成五个实验组;每个都有三个重复(每次复制21只鸟)。实验组是控制:仅基础饮食,抗菌生长促进剂:40克/公吨基础饮食(维尔尼霉素),有机酸:4公斤/公吨基础饮食,植物植物:3公斤/公吨基础饮食,组合: 7千克/公吨的基础饮食(有机酸4千克和植物植物3公吨公吨饲料)。生长性能,组织学和生长素释放肽的基因表达分析,在第21和42天,同时,盲肠细菌定量分析执行和回肠上第42天增加饲料摄取量和体重(P <0.05)进行在phytobiotics组注意到。添加植物植物的添加显着改善(P <0.05)绒毛绒毛高度和绒毛高度/隐窝深度的比例,Jejunum和Duodenum和下调的Ghrelin基因表达水平。在有机酸基团中显着下降(P <0.05)中的CECAL和ILEAL Digesta中总大肠杆菌和大肠杆菌。相关分析显示乳酸杆菌SPP。与十二指肠中的绒毛高度/隐窝深度分配呈正相关。研究结果表明基于营养素方法的基因 - 营养微生物脂肪酶相互作用的重要性。因此,植物生物学和有机酸可能是抗生素的合适替代品,用于改善性能和免疫力,以及家禽的更健康的肉类生产。

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