Effects of High Concentrate Diet on Gastrointestinal Health of Ruminants and Its Regulation Measures

  • WEI Ziwei ,
  • DENG Ming ,
  • SUN Baoli ,
  • GUO Yongqing
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  • College of Animal Science, South China Agricultural University, Guangzhou 510642, China

Received date: 2020-07-21

  Online published: 2021-03-18

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Abstract

Feeding high concentrate diet is a common strategy to increase the energy level in ruminant diets, but this usually leads to acute or subacute rumen acidosis and posterior intestinal acidosis, thereby endangering its gastrointestinal health. High concentration diets fed to ruminants can affect the digestion and utilization of roughage, weaken the function of gastrointestinal microflora, and reduce the absorption and barrier capacity of gastrointestinal epithelium. In this paper, the effects of high concentration diet on the microbial flora and epithelium in the gastrointestinal tract of ruminants and the corresponding regulation measures were reviewed in order to provide references for improving the health level of the gastrointestinal tract of ruminants.

Cite this article

WEI Ziwei , DENG Ming , SUN Baoli , GUO Yongqing . Effects of High Concentrate Diet on Gastrointestinal Health of Ruminants and Its Regulation Measures[J]. Chinese Journal of Animal Nutrition, 2021 , 33(3) : 1277 -1285 . DOI: 10.3969/j.issn.1006-267x.2021.03.010

References

[1] SNYDER E,CREDILLE B.Diagnosis and treatment of clinical rumen acidosis[J].Veterinary Clinics of North America:Food Animal Practice,2017,33(3):451-461.  
[2] OETZEL G R.Diagnosis and management of subacute ruminal acidosis in dairy Herds[J].Veterinary Clinics of North America:Food Animal Practice,2017,33(3):463-480.  
[3] 柳君辉,董国忠,田可.高精料饲粮对反刍动物胃肠道微生物区系的影响及调控[J].动物营养学报,2018,30(12):4821-4827. LIU J H,DONG G Z,TIAN K.Effects of high concentrate diets on gastrointestinal microflora in ruminants and its regulation[J].Chinese Journal of Animal Nutrition,2018,30(12):4821-4827.(in Chinese)
[4] 李洋.亚急性瘤胃酸中毒对奶山羊瘤胃上皮挥发性脂肪酸吸收的影响及其机制研究[D].硕士学位论文.呼和浩特:内蒙古农业大学,2019. LI Y.Effect of subacute rumen acidosis on the absorption of volatile fatty acids in the rumen epithelium of dairy goats and its mechanism research[D].Master's Thesis.Hohhot:Inner Mongolia Agricultural University,2019.(in Chinese)
[5] ZHANG R Y,ZHU W Y,JIANG L S,et al.Comparative metabolome analysis of ruminal changes in Holstein dairy cows fed low-or high-concentrate diets[J].Metabolomics,2017,13(6):74.
[6] CHERDTHONG A.Potential use of rumen digesta as ruminant diet-a review[J].Tropical Animal Health and Production,2020,52(1):1-6.  
[7] PLAIZIER J C,LI S C,DANSCHER A M,et al.Changes in microbiota in rumen digesta and feces due to a grain-based subacute ruminal acidosis (SARA) challenge[J].Microbial Ecology,2017,74(2):485-495.  
[8] 张瑞阳.组学技术研究亚急性瘤胃酸中毒对奶牛瘤胃微生物、代谢和上皮功能的影响[D].博士学位论文.南京:南京农业大学,2015. ZHANG R Y.Omics-based approaches to assess the effects of suabcute ruminal acidosis on rumen microbiota,metabolism and epithelial function in dairy cows[D].Ph.D.Thesis.Nanjing:Nanjing Agricultural University,2015.(in Chinese)
[9] FERNANDO S C,PURVIS Ⅱ H T,NAJAR F Z,et al.Rumen microbial population dynamics during adaptation to a high-grain diet[J].Applied and Environmental Microbiology,2010,76(22):7482-7490.  
[10] LIU J H,BIAN G R,ZHU W Y,et al.High-grain feeding causes strong shifts in ruminal epithelial bacterial community and expression of Toll-like receptor genes in goats[J].Frontiers in Microbiology,2015,6:167.
[11] MAO S Y,HUO W J,ZHU W Y.Microbiome-metabolome analysis reveals unhealthy alterations in the composition and metabolism of ruminal microbiota with increasing dietary grain in a goat model[J].Environmental Microbiology,2016,18(2):525-541.  
[12] 卢劲晔,黄智南,沈赞明.反刍动物瘤胃上皮的结构特点[J].黑龙江畜牧兽医,2014(16):50-52. LU J Y,HUANG Z N,SHEN Z M.Structure features of rumen epithelium in ruminants[J].Heilongjiang Animal Science and Veterinary Medicine,2014(16):50-52.(in Chinese)
[13] STEELE M A,GREENWOOD S L,CROOM J,et al.An increase in dietary non-structural carbohydrates alters the structure and metabolism of the rumen epithelium in lambs[J].Canadian Journal of Animal Science,2012,92(2):123-130.  
[14] STEELE M A,CROOM J,KAHLER M,et al.Bovine rumen epithelium undergoes rapid structural adaptations during grain-induced subacute ruminal acidosis[J].American Journal of Physiology-Regulatory,Integrative and Comparative physiology,2011,300(6):R1515-R1523.
[15] JENSEN C,WEISBJERG M R,NORGAARD P,et al.Effect of maize silage maturity on site of starch and NDF digestion in lactating dairy cows[J].Animal Feed Science and Technology,2005,118(3/4):279-294.
[16] MATTHÉ A,LEBZIEN P,HRIC I,et al.Influence of prolonged adaptation periods on starch degradation in the digestive tract of dairy cows[J].Animal Feed Science and Technology,2003,103(1/2/3/4):15-27.
[17] CORONA L,OWENS F N,ZINN R A.Impact of corn vitreousness and processing on site and extent of digestion by feedlot cattle[J].Journal of Animal Science,2006,84(11):3020-3031.  
[18] PLASCENCIA A,BERMÚDEZ R M,CERVANTES M,et al.Influence of processing method on comparative digestion of white corn versus conventional steam-flaked yellow dent corn in finishing diets for feedlot cattle[J].Journal of Animal Science,2011,89(1):136-141.  
[19] 沈宜钊.日粮淀粉来源与有机酸预处理玉米对奶山羊瘤胃酸中毒的影响及机制[D].博士学位论文.扬州:扬州大学,2018. SHEN Y Z.Effect and mechanism of dietary starch source and organic acid pretreated corn on ruminal acidosis in dairy goats[D].Ph.D. Thesis.Yangzhou:Yangzhou University,2018.(in Chinese)
[20] DANSCHER A M,LI S C,ANDERSEN P H,et al.Indicators of induced subacute ruminal acidosis (SARA) in Danish Holstein cows[J].Acta Veterinaria Scandinavica,2015,57(1):39.
[21] MAO S Y,ZHANG R Y,WANG D S,et al.The diversity of the fecal bacterial community and its relationship with the concentration of volatile fatty acids in the feces during subacute rumen acidosis in dairy cows[J].BMC Veterinary Research,2012,8:237.
[22] LI S,KHAFIPOUR E,KRAUSE D O,et al.Effects of subacute ruminal acidosis challenges on fermentation and endotoxins in the rumen and hindgut of dairy cows[J].Journal of Dairy Science,2012,95(1):294-303.  
[23] LIU J H,XU T T,ZHU W Y,et al.High-grain feeding alters caecal bacterial microbiota composition and fermentation and results in caecal mucosal injury in goats[J].British Journal of Nutrition,2014,112(3):416-427.  
[24] 薛春旭.高精料日粮对山羊小肠微生物发酵、微生物区系及上皮形态结构的影响[D].硕士学位论文.南京:南京农业大学,2017. XUE C X.The impact of high concentrate diet on small intestinal fermentation,microbial community and epithelial morphology of goats[D].Master's Thesis.Nanjing:Nanjing Agricultural University,2017.(in Chinese)
[25] WANG Y,XU L,LIU J H,et al.A high grain diet dynamically shifted the composition of mucosa-associated microbiota and induced mucosal injuries in the colon of sheep[J].Frontiers in Microbiology,2017,8:2080.
[26] YE H M,LIU J H,FENG P F,et al.Grain-rich diets altered the colonic fermentation and mucosa-associated bacterial communities and induced mucosal injuries in goats[J].Scientific Reports,2016,6:20329.
[27] TAO S Y,TIAN J,CONG R H,et al.Activation of cellular apoptosis in the caecal epithelium is associated with increased oxidative reactions in lactating goats after feeding a high-concentrate diet[J].Experimental Physiology,2015,100(3):278-287.  
[28] LI S,YOON I,SCOTT I,et al.Impact of Saccharomyces cerevisiae fermentation product and subacute ruminal acidosis on production,inflammation,and fermentation in the rumen and hindgut of dairy cows[J].Animal Feed Science and Technology,2016,211:50-60.
[29] QUMAR M,KHIAOSA-ARD R,KLEVENHUSEN F,et al.Gastrointestinal endotoxin and metabolic responses in cows fed and recovered from two different grain-rich challenges[J].Livestock Science,2017,203:120-123.
[30] SUN X,YUAN X,CHEN L,et al.Histamine induces bovine rumen epithelial cell inflammatory response via NF-κB pathway[J].Cellular Physiology and Biochemistry,2017,42(3):1109-1119.  
[31] HAO C X,LIU G W,LI X B,et al.Inflammatory mechanism of rumenitis in dairy cows with subacute ruminal acidosis[J].BMC Veterinary Research,2018,14(1):135
[32] 赵晨旭.SARA奶牛瘤胃炎性反应发生机制及瘤胃上皮SLC22A转运蛋白的变化[D].博士学位论文,长春:吉林大学,2019. ZHAO C X.The mechanism of inflammation of rumen and the changes of rumen epithelial SLC22A transporter proteins in dairy cows with SARA[D].Ph.D. Thesis.Changchun:Jilin University,2019.(in Chinese)
[33] 赵芳芳,王洪荣,张营,等.谷物作为反刍动物能量饲料的营养特性及高谷物饲粮对消化道健康的影响[J].动物营养学报,2020,32(6):2476-2482. ZHAO F F,WANG H R ZHANG Y,et al.Nutritional characteristics of grain as energy feed for ruminants and effects of high-grain diet on gastrointestinal tract health[J].Chinese Journal of Animal Nutrition,2020,32(6):2476-2482.(in Chinese)
[34] PLAIZIER J C,DANESH MESGARAN M,DERAKHSHAN H,et al.Review:enhancing gastrointestinal health in dairy cows[J].Animal,2018,12(S2):S399-S418.
[35] WANG Y,GREER D,MCALLISTER T A,et al.Effects of moisture,roller setting,and saponin-based surfactant on barley processing,ruminal degradation of barley,and growth performance by feedlot steers[J].Journal of Animal Science,2003,81(9):2145-2154.  
[36] 曹玉伟,丁健,李艳玲.蒸汽压片玉米在奶牛生产中的应用研究进展[J].中国畜牧兽医,2018,45(5):1211-1218. CAO Y W, DING J,LI Y L.Research progress of steam-flaked corn and its application in dairy cattle production[J].China Animal Husbandry & Veterinary Medicine,2018,45(5):1211-1218.(in Chinese)
[37] GIGER-REVERDIN S,RIGALMA K,DESNOYERS M,et al.Effect of concentrate level on feeding behavior and rumen and blood parameters in dairy goats:relationships between behavioral and physiological parameters and effect of between-animal variability[J].Journal of Dairy Science,2014,97(7):4367-4378.  
[38] HARDER H,KHOL-PARISINI A,ZEBELI Q.Modulation of resistant starch and nutrient composition of barley grain using organic acids and thermal cycling treatments[J].Starch-Stärke,2015,67(7/8):654-662.  
[39] DECKARDT K,METZLER-ZEBELI B U,ZEBELI Q.Processing barley grain with lactic acid and tannic acid ameliorates rumen microbial fermentation and degradation of dietary fibre in vitro[J].Science of Food and Agriculture,2016,96(1):223-231.  
[40] SHEN Y Z,DING L Y,CHEN L M,et al.Feeding corn grain steeped in citric acid modulates rumen fermentation and inflammatory responses in dairy goats[J].Animal,2019,13(2):301-308.  
[41] YANG Y,DONG G Z,WANG Z,et al.Treatment of corn with lactic acid or hydrochloric acid modulates the rumen and plasma metabolic profiles as well as inflammatory responses in beef steers[J].BMC Veterinary Research,2018,14(1):408.
[42] 汤利民,王文丹,苏衍菁,等.预防亚急性瘤胃酸中毒的营养调控措施[J].中国奶牛,2019(4):9-13. TANG L M,WANG W D, SU F Q,et al.Nutritional regulation measures for preventing subacute rumen acidosis[J].China Dairy Cattle,2019(4):9-13.(in Chinese)
[43] 赵向辉,张涛,徐明,等.苜蓿干草粒度对山羊采食行为、瘤胃pH和瘤胃内养分降解动力学的影响[J].动物营养学报,2010,22(5):1293-1300. ZHAO X H,ZHANG T,XU M,et al.Effects of alfalfa hay particle size on eating behavior,ruminal pH,and nutrient digestion kinetics of goats[J].Chinese Journal of Animal Nutrition,2010,22(5):1293-1300.(in Chinese)
[44] 倪海星,赵慧敏,王铁岗.甜菜粕替代玉米对肉牛生长性能及瘤胃发酵成分的影响[J].中国饲料,2019(12):89-93. NI H X,ZHAO H M,WANG T G.Effects of dietary sugar beet pulp substitute of corn on growth performance,rumen fermentation and nutrient digestibility of beef[J].China Feed,2019(12):89-93.(in Chinese)
[45] MOJTAHEDI M,DANESH MESGARAN M.Effects of the inclusion of dried molassed sugar beet pulp in a low-forage diet on the digestive process and blood biochemical parameters of Holstein steers[J].Livestock Science,2011,141(2/3):95-103.
[46] 姚军虎.反刍动物碳水化合物高效利用的综合调控[J].饲料工业,2013,34(17):1-12. YAO J H.Comprehensive control of efficient utilization of carbohydrates in ruminants[J].Feed Industry,2013,34(17):1-12.(in Chinese)
[47] CAO Y C,YANG X J,GUO L,et al.Regulation of pancreas development and enzymatic gene expression by duodenal infusion of leucine and phenylalanine in dairy goats[J].Livestock Science,2018,216:9-15.
[48] 刘烨.十二指肠灌注亮氨酸对奶牛胰腺外分泌功能及血液指标的影响[D].硕士学位论文.杨凌:西北农林科技大学,2013. LIU Y.Effect of duodenal perfusion with leucine on exocrine function of pancreas and blood indexes in dairy cows[D].Master's Thesis.Yangling:Northwest Agriculture and Forestry University,2013.(in Chinese)
[49] PAN X H,YANG L,XUE F G,et al.Relationship between thiamine and subacute ruminal acidosis induced by a high-grain diet in dairy cows[J].Journal of Dairy Science,2016,99(11):8790-8801.  
[50] ZHANG H,PENG A L,ZHAO F F,et al.Thiamine ameliorates inflammation of the ruminal epithelium of Saanen goats suffering from subacute ruminal acidosis[J].Journal of Dairy Science,2020,103(2):1931-1943.  
[51] 任胜男,金亚倩,赵芳芳,等.酵母培养物对山羊亚急性瘤胃酸中毒体外发酵模型的调控作用[J].动物营养学报,2020,32(5):2263-2272. REN S N,JIN Y Q,ZHAO F F,et al.Regulating effects of yeast culture on subacute ruminal acidosis fermentation model in vitro in goats[J].Chinese Journal of Animal Nutrition,2020,32(5):2263-2272.(in Chinese)
[52] NEUBAUER V,PETRI R,HUMER E,et al.High-grain diets supplemented with phytogenic compounds or autolyzed yeast modulate ruminal bacterial community and fermentation in dry cows[J].Journal of Dairy Science,2018,101(3):2335-2349.  
[53] NEVILLE E W,FAHEY A G,GATH V P,et al.The effect of calcareous marine algae,with or without marine magnesium oxide,and sodium bicarbonate on rumen pH and milk production in mid-lactation dairy cows[J].Journal of Dairy Science,2019,102(9):8027-8039.  
[54] 李林,曹洋,权素玉,等.添加复合缓冲剂对高精料饲喂泌乳奶山羊乳品质的改善及机制[J].食品科学,2017,38(1):188-192. LI L,CAO Y,QUAN S Y,et al.Improvement and underlying mechanism of milk quality of lactating goats fed high concentrate diet by dietary supplementation of composite buffer[J].Food Science,2017,38(1):188-192.(in Chinese)
[55] ALEX B,ISABEL G,GUILLERMO E,et al.Modulation of rumen pH by sodium bicarbonate and a blend of different sources of magnesium oxide in lactating dairy cows submitted to a concentrate challenge[J].Journal of Dairy Science,2018,101(11):9777-9788.  
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