Hamidreza Mirzaei-Alamouti, Arman Abdollahi, Hasan Rahimi, Saeedeh Moradi, Mina Vazirigohar, Jörg R Aschenbach
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Lambs with no oil supplementation (OS0, <i>n</i> = 8) were considered as control and slaughtered at d 0 of the experiment, and the remaining lambs were slaughtered at 10, 20 and 30 d on feed. After slaughter, ruminal digesta was collected for evaluating fermentation and microbial community. Ruminal papillae were taken for assessment of epithelial gene expression. Compared with OS0 lambs, supplemental PUFA in OS30 lambs tended to decrease total SCFA concentration with decreased acetic and increased propionic acid concentrations. Acetate:propionate ratios were decreased and ruminal pH was increased in OS20 and OS30 lambs compared to OS0. All groups with included OS had decreased concentrations of <i>iso</i>-valeric and valeric acids compared to OS0. Relative mRNA abundance of monocarboxylate transporter isoforms 1 and 4, insulin-like growth factor binding protein 3, sterol regulatory element-binding proteins 1 and 2 decreased with increasing OS duration. The relative abundance of 3-hydroxy-3-methylglutaryl-CoA synthase 1 mRNA transcript was higher for OS10 and OS20 lambs relative to OS0 lambs. OS20 and OS30 showed a decrease of lipopolysaccharide binding protein mRNA expression compared with OS0. Feeding supplemental PUFA decreased <i>Ciliate protozoa</i> and increased <i>Butyrivibrio fibrisolvens</i> in OS20 and OS30 lambs, whereas <i>Megasphaera elsdenii</i> was increased in OS30 lambs. In conclusion, combined supplementation of sunflower and fish oil to a high-concentrate diet affects the ruminal microbial community with prominent decreases in ruminal ciliate protozoa and increases in <i>B. fibrisolvens</i> and <i>M. elsdenii</i>. These results lead to a more stabilised ruminal pH and a fermentation shift towards more propionate generation. Consideration of nutrients digestion will help to fully understand the benefits of feeding PUFA with a high-concentrate diet.</p>","PeriodicalId":8157,"journal":{"name":"Archives of Animal Nutrition","volume":"75 6","pages":"405-421"},"PeriodicalIF":2.0000,"publicationDate":"2021-12-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"2","resultStr":"{\"title\":\"Effects of dietary oil sources (sunflower and fish) on fermentation characteristics, epithelial gene expression and microbial community in the rumen of lambs fed a high-concentrate diet.\",\"authors\":\"Hamidreza Mirzaei-Alamouti, Arman Abdollahi, Hasan Rahimi, Saeedeh Moradi, Mina Vazirigohar, Jörg R Aschenbach\",\"doi\":\"10.1080/1745039X.2021.1997539\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>The feeding of high-concentrate diets commonly results in lowered pH and ruminal dysbiosis which cause shifts in uptake dynamics of short-chain fatty acids (SCFA) and altered epithelial function. Therefore, the current study evaluated the effect of dietary polyunsaturated fatty acids (PUFA) on ruminal fermentation products, gene expression in the ruminal epithelium and the associated changes in ruminal microorganisms in lambs fed a high-concentrate diet. Twenty-six Afshari lambs adapted to a high-concentrate diet during a completely randomised design were fed with a basal diet supplemented with 100 g oil supplement (OS; 60 g sunflower oil and 40 g fish oil) for 10 (OS10), 20 (OS20) and 30 (OS30) d, respectively (<i>n</i> = 6). Lambs with no oil supplementation (OS0, <i>n</i> = 8) were considered as control and slaughtered at d 0 of the experiment, and the remaining lambs were slaughtered at 10, 20 and 30 d on feed. After slaughter, ruminal digesta was collected for evaluating fermentation and microbial community. Ruminal papillae were taken for assessment of epithelial gene expression. Compared with OS0 lambs, supplemental PUFA in OS30 lambs tended to decrease total SCFA concentration with decreased acetic and increased propionic acid concentrations. Acetate:propionate ratios were decreased and ruminal pH was increased in OS20 and OS30 lambs compared to OS0. All groups with included OS had decreased concentrations of <i>iso</i>-valeric and valeric acids compared to OS0. Relative mRNA abundance of monocarboxylate transporter isoforms 1 and 4, insulin-like growth factor binding protein 3, sterol regulatory element-binding proteins 1 and 2 decreased with increasing OS duration. The relative abundance of 3-hydroxy-3-methylglutaryl-CoA synthase 1 mRNA transcript was higher for OS10 and OS20 lambs relative to OS0 lambs. OS20 and OS30 showed a decrease of lipopolysaccharide binding protein mRNA expression compared with OS0. Feeding supplemental PUFA decreased <i>Ciliate protozoa</i> and increased <i>Butyrivibrio fibrisolvens</i> in OS20 and OS30 lambs, whereas <i>Megasphaera elsdenii</i> was increased in OS30 lambs. In conclusion, combined supplementation of sunflower and fish oil to a high-concentrate diet affects the ruminal microbial community with prominent decreases in ruminal ciliate protozoa and increases in <i>B. fibrisolvens</i> and <i>M. elsdenii</i>. These results lead to a more stabilised ruminal pH and a fermentation shift towards more propionate generation. 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引用次数: 2
摘要
饲喂高精料日粮通常会导致pH值降低和瘤胃生态失调,从而导致短链脂肪酸(SCFA)摄取动力学的改变和上皮功能的改变。因此,本研究评估了饲粮多不饱和脂肪酸(PUFA)对饲喂高精料日粮羔羊瘤胃发酵产物、瘤胃上皮基因表达及瘤胃微生物相关变化的影响。采用完全随机设计,饲喂26只适应高精料日粮的阿夫沙里羔羊,在基础日粮中添加100 g油补充剂(OS;分别添加60 g葵花籽油和40 g鱼油,饲喂10 (OS10)、20 (OS20)和30 (OS30) d (n = 6)。以不添加油的羔羊(OS0, n = 8)为对照,在试验第0 d屠宰,其余羔羊分别在饲喂10、20和30 d屠宰。屠宰后收集瘤胃食糜,评价发酵和微生物群落。取瘤胃乳头检测上皮基因表达。与OS0羔羊相比,在OS30羔羊中添加PUFA有降低总短链脂肪酸浓度、降低乙酸浓度和提高丙酸浓度的趋势。与OS0相比,OS20和OS30羔羊的乙酸丙酸比降低,瘤胃pH升高。与OS0相比,所有纳入OS组的异戊酸和戊酸浓度均降低。单羧酸转运蛋白亚型1和4、胰岛素样生长因子结合蛋白3、固醇调节元件结合蛋白1和2的相对mRNA丰度随着OS持续时间的增加而降低。OS10和OS20羔羊的3-羟基-3-甲基戊二酰辅酶a合成酶1 mRNA转录物相对丰度高于OS0羔羊。OS20和OS30与OS0相比,脂多糖结合蛋白mRNA表达降低。饲粮中添加PUFA降低了OS20和OS30羔羊的纤毛虫原生动物数量,增加了溶纤维丁酸弧菌数量,而增加了OS30羔羊的elsdenmegasphaera。综上所述,高精料饲粮中添加葵花籽油和鱼油对瘤胃微生物群落有显著影响,瘤胃纤毛虫原虫显著减少,溶纤维双歧杆菌和埃尔斯德氏芽胞杆菌显著增加。这些结果导致更稳定的瘤胃pH值和发酵转向更多的丙酸生成。考虑营养物质的消化将有助于充分理解在高精料日粮中添加多聚脂肪酸的好处。
Effects of dietary oil sources (sunflower and fish) on fermentation characteristics, epithelial gene expression and microbial community in the rumen of lambs fed a high-concentrate diet.
The feeding of high-concentrate diets commonly results in lowered pH and ruminal dysbiosis which cause shifts in uptake dynamics of short-chain fatty acids (SCFA) and altered epithelial function. Therefore, the current study evaluated the effect of dietary polyunsaturated fatty acids (PUFA) on ruminal fermentation products, gene expression in the ruminal epithelium and the associated changes in ruminal microorganisms in lambs fed a high-concentrate diet. Twenty-six Afshari lambs adapted to a high-concentrate diet during a completely randomised design were fed with a basal diet supplemented with 100 g oil supplement (OS; 60 g sunflower oil and 40 g fish oil) for 10 (OS10), 20 (OS20) and 30 (OS30) d, respectively (n = 6). Lambs with no oil supplementation (OS0, n = 8) were considered as control and slaughtered at d 0 of the experiment, and the remaining lambs were slaughtered at 10, 20 and 30 d on feed. After slaughter, ruminal digesta was collected for evaluating fermentation and microbial community. Ruminal papillae were taken for assessment of epithelial gene expression. Compared with OS0 lambs, supplemental PUFA in OS30 lambs tended to decrease total SCFA concentration with decreased acetic and increased propionic acid concentrations. Acetate:propionate ratios were decreased and ruminal pH was increased in OS20 and OS30 lambs compared to OS0. All groups with included OS had decreased concentrations of iso-valeric and valeric acids compared to OS0. Relative mRNA abundance of monocarboxylate transporter isoforms 1 and 4, insulin-like growth factor binding protein 3, sterol regulatory element-binding proteins 1 and 2 decreased with increasing OS duration. The relative abundance of 3-hydroxy-3-methylglutaryl-CoA synthase 1 mRNA transcript was higher for OS10 and OS20 lambs relative to OS0 lambs. OS20 and OS30 showed a decrease of lipopolysaccharide binding protein mRNA expression compared with OS0. Feeding supplemental PUFA decreased Ciliate protozoa and increased Butyrivibrio fibrisolvens in OS20 and OS30 lambs, whereas Megasphaera elsdenii was increased in OS30 lambs. In conclusion, combined supplementation of sunflower and fish oil to a high-concentrate diet affects the ruminal microbial community with prominent decreases in ruminal ciliate protozoa and increases in B. fibrisolvens and M. elsdenii. These results lead to a more stabilised ruminal pH and a fermentation shift towards more propionate generation. Consideration of nutrients digestion will help to fully understand the benefits of feeding PUFA with a high-concentrate diet.
期刊介绍:
Archives of Animal Nutrition is an international journal covering the biochemical and physiological basis of animal nutrition. Emphasis is laid on original papers on protein and amino acid metabolism, energy transformation, mineral metabolism, vitamin metabolism, nutritional effects on intestinal and body functions in combination with performance criteria, respectively. It furthermore deals with recent developments in practical animal feeding, feedstuff theory, mode of action of feed additives, feedstuff preservation and feedstuff processing. The spectrum covers all relevant animal species including food producing and companion animals, but not aquatic species.
Seldom can priority be given to papers covering more descriptive studies, even if they may be interesting and technically sound or of impact for animal production, or for topics of relevance for only particular regional conditions.