1,208
Views
3
CrossRef citations to date
0
Altmetric
Non-Ruminants Nutrition and Feeding

Effects of dietary xylooligosaccharides supplementation on the intestinal morphology, nitrogen metabolism, faecal ammonia release, antioxidant capacity, and immune organ indices of broilers

ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon & ORCID Icon
Pages 1352-1361 | Received 13 Jul 2022, Accepted 12 Aug 2022, Published online: 27 Aug 2022

References

  • Afsharmanesh M, Sadaghi B, Silversides FG. 2013. Influence of supplementation of prebiotic, probiotic, and antibiotic to wet-fed wheat-based diets on growth, ileal nutrient digestibility, blood parameters, and gastrointestinal characteristics of broiler chickens. Comp Clin Pathol. 22(2):245–251.
  • Bhatia L, Sharma A, Bachheti RK, Chandel AK. 2019. Lignocellulose derived functional oligosaccharides: production, properties, and health benefits. Prep Biochem Biotechnol. 49(8):744–758.
  • Boonchuay P, Wongpoomchai R, Jaturasitha S, Mahatheeranont S, Watanabe M, Chaiyaso T. 2021. Prebiotic properties,antioxidant activity,and acute oral toxicity of xylooligosaccharides derived enzymatically from corncob. Food Biosci. 40:100895.
  • Borsoi A, Quinteiro-Filho WM, Calefi AS, Ferreira AJP, Astolfi-Ferreira CS, Florio JC, Palermo-Neto J. 2015. Effects of cold stress and Salmonella Heidelberg infection on bacterial load and immunity of chickens. Avian Pathol. 44(6):490–497.
  • Carvalho AFA, Neto PO, da Silva DF, Pastore GM. 2013. Xylo-oligosaccharides from lignocellulosic materials: chemical structure, health benefits and production by chemical and enzymatic hydrolysis. Food Res Int. 51(1):75–85.
  • Christophersen CT, Petersen A, Licht TR, Conlon MA. 2013. Xylo-oligosaccharides and inulin affect genotoxicity and bacterial populations differently in a human colonic simulator challenged with soy protein. Nutrients. 5(9):3740–3756.
  • Corrigan A, de Leeuw M, Penaud-Frézet S, Dimova D, Murphy RA. 2015. Phylogenetic and functional alterations in bacterial community compositions in broiler ceca as a result of mannan oligosaccharide supplementation. Appl Environ Microbiol. 81(10):3460–3470.
  • Cummings JH, Bingham SA. 1987. Dietary fibre, fermentation and large bowel cancer. Cancer Surv. 6(4):601–621.
  • de Figueiredo FC, Ranke FFB, de Oliva-Neto P. 2020. Evaluation of xylooligosaccharides and fructooligosaccharides on digestive enzymes hydrolysis and as a nutrient for different probiotics and Salmonella typhimurium. LWT. 118:108761.
  • De Maesschalck C, Eeckhaut V, Maertens L, De Lange L, Marchal L, Nezer C, De Baere S, Croubels S, Daube G, Dewulf J, et al. 2015. Effects of xylo-oligosaccharides on broiler chicken performance and microbiota. Appl Environ Microbiol. 81(17):5880–5888.
  • Dibner JJ, Richards JD. 2005. Antibiotic growth promoters in agriculture: history and mode of action. Poult Sci. 84(4):634–643.
  • Fan YK, Croom J, Christensen VL, Black BL, Bird AR, Daniel LR, Mcbride BW, Eisen EJ. 1997. Jejunal glucose uptake and oxygen consumption in turkey poults selected for rapid growth. Poult Sci. 76(12):1738–1745.
  • Fei Y, Wang Y, Pang Y, Wang W, Zhu D, Xie M, Lan S, Wang Z. 2019. Xylooligosaccharide modulates gut microbiota and alleviates colonic inflammation caused by high fat diet induced obesity. Front Physiol. 10:1601.
  • Fellah JS, Jaffredo T, Nagy N, Dunon D. 2014. Chapter 3 - development of the avian immune system. In: Schat KA, Kaspers B, Kaiser P, editors. Avian Immunology. 2nd ed. London: Academic Press; p. 45–63.
  • Ghalwash HR, Salah AS, El‐Nokrashy AM, Abozeid AM, Zaki VH, Mohamed RA. 2022. Dietary supplementation with Bacillus species improves growth, intestinal histomorphology, innate immunity, antioxidative status and expression of growth and appetite‐regulating genes of Nile tilapia fingerlings. Aquac Res. 53(4):1378–1394.
  • Gibson GR, Roberfroid MB. 1995. Dietary modulation of the human colonic microbiota: introducing the concept of prebiotics. J Nutr. 125(6):1401–1412.
  • González-Ortiz G, Santos T, Bedford MR. 2021. Evaluation of xylanase and a fermentable xylo-oligosaccharide on performance and ileal digestibility of broiler chickens fed energy and amino acid deficient diets. Anim Nutr. 7(2):488–495.
  • Hansen CHF, Frøkiaer H, Christensen AG, Bergström A, Licht TR, Hansen AK, Metzdorff SB. 2013. Dietary xylooligosaccharide downregulates IFN-γ and the low-grade inflammatory cytokine IL-1β systemically in mice. J Nutr. 143(4):533–540.
  • Hu YJ, Cowling BJ. 2020. Reducing antibiotic use in livestock, China. Bull World Health Organ. 98(5):360–361.
  • Inan MS, Rasoulpour RJ, Yin L, Hubbard AK, Rosenberg DW, Giardina C. 2000. The luminal short-chain fatty acid butyrate modulates NF-κB activity in a human colonic epithelial cell line. Gastroenterology. 118(4):724–734.
  • Jazi V, Mohebodini H, Ashayerizadeh A, Shabani A, Barekatain R. 2019. Fermented soybean meal ameliorates Salmonella Typhimurium infection in young broiler chickens. Poult Sci. 98(11):5648–5660.
  • Kajihara M, Kato S, Konishi M, Yamagishi Y, Horie Y, Ishii H. 2000. Xylooligosaccharide decreases blood ammonia levels in patients with liver cirrhosis. Am J Gastroenterology. 95(9):2514–2514.
  • Lasrado LD, Gudipati M. 2015. Antioxidant property of synbiotic combination of Lactobacillus sp. and wheat bran xylo-oligosaccharides. J Food Sci Technol. 52(7):4551–4557.
  • Li SZ, Liu J, Chen ZM, Zheng AJ, Liu GH, Cai HY, Xu Y, Chang WH. 2021. Effects of xylo-oligosaccharides from poplar on growth performance, intestinal digestive enzyme activity and short-chain fatty acid content and serum hormone levels of broilers. Chin J Anim Nutr. 33(2):832–840.
  • Li Z, Summanen PH, Komoriya T, Finegold SM. 2015. In vitro study of the prebiotic xylooligosaccharide (XOS) on the growth of Bifidobacterium spp and Lactobacillus spp. Int J Food Sci Nutr. 66(8):919–922.
  • Licht TR, Ebersbach T, Frøkiaer H. 2012. Prebiotics for prevention of gut infections. Trends Food Sci Technol. 23(2):70–82.
  • Liu HY, Li X, Zhu X, Dong WG, Yang GQ. 2021. Soybean oligosaccharides attenuate odour compounds in excreta by modulating the caecal microbiota in broilers. Animal. 15(3):100159.
  • Luo D, Li J, Xing T, Zhang L, Gao F. 2021. Combined effects of xylo‐oligosaccharides and coated sodium butyrate on growth performance, immune function, and intestinal physical barrier function of broilers. Anim Sci J. 92(1):e13545.
  • Majumdar S, Bhattacharyya DK, Bhowal J. 2021. Evaluation of nutraceutical application of xylooligosaccharide enzymatically produced from cauliflower stalk for its value addition through a sustainable approach. Food Funct. 12(12):5501–5523.
  • Manning TS, Gibson GR. 2004. Prebiotics. Best Pract Res Clin Gastroenterol. 18(2):287–298.
  • Min YN, Yang HL, Xu YX, Gao YP. 2016. Effects of dietary supplementation of synbiotics on growth performance,intestinal morphology, sIgA content and antioxidant capacities of broilers. J Anim Physiol Anim Nutr. 100(6):1073–1080.
  • Nascimento CEO, Simões LCO, Pereira JC, da Silva RR, de Lima EA, de Almeida GC, Penna ALB, Boscolo M, Gomes E, da Silva R. 2022. Application of a recombinant GH10 endoxylanase from Thermoascus aurantiacus for xylooligosaccharide production from sugarcane bagasse and probiotic bacterial growth. J Biotechnol. 347:1–8.
  • National Research Council (NRC). 1994. Nutrient requirements of poultry. 9th revised ed. Washington (DC): National Academy Press.
  • Paiva D, Walk C, McElroy A. 2014. Dietary calcium, phosphorus, and phytase effects on bird performance, intestinal morphology, mineral digestibility, and bone ash during a natural necrotic enteritis episode. Poult Sci. 93(11):2752–2762.
  • Pu J, Zhao X, Wang Q, Wang Y, Zhou H. 2016. Development and validation of a HPLC method for determination of degree of polymerization of xylo-oligosaccharides. Food Chem. 213:654–659.
  • Ribeiro T, Cardoso V, Ferreira LMA, Lordelo MMS, Coelho E, Moreira ASP, Domingues MRM, Coimbra MA, Bedford MR, Fontes CMGA. 2018. Xylo-oligosaccharides display a prebiotic activity when used to supplement wheat or corn-based diets for broilers. Poult Sci. 97(12):4330–4341.
  • Seesuriyachan P, Kawee-ai A, Chaiyaso T. 2017. Green and chemical-free process of enzymatic xylooligosaccharide production from corncob: enhancement of the yields using a strategy of lignocellulosic destructuration by ultra-high pressure pretreatment. Bioresour Technol. 241:537–544.
  • Shang Y, Kumar S, Thippareddi H, Kim WK. 2018. Effect of dietary fructooligosaccharide (FOS) supplementation on ileal microbiota in broiler chickens. Poult Sci. 97(10):3622–3634.
  • Shoaf K, Mulvey GL, Armstrong GD, Hutkins RW. 2006. Prebiotic galactooligosaccharides reduce adherence of enteropathogenic Escherichia coli to tissue culture cells. Infect Immun. 74(12):6920–6928.
  • Shrivastava A, Mishra SP, Pradhan S, Choudhary S, Singla S, Zahra K, Aggarwal LM. 2021. An assessment of serum oxidative stress and antioxidant parameters in patients undergoing treatment for cervical cancer. Free Radic Biol Med. 167:29–35.
  • Sonkar RM, Gade PS, Bokade V, Mudliar SN, Bhatt P. 2021. Ozone assisted autohydrolysis of wheat bran enhances xylooligosaccharide production with low generation of inhibitor compounds: a comparative study. Bioresource Technol. 338(14):125559.
  • Sun Z, Lv W, Yu R, Li J, Liu H, Sun W, Wang Z, Li J, Shan Z, Qin Y. 2013. Effect of a straw-derived xylooligosaccharide on broiler growth performance, endocrine metabolism, and immune response. Can J Vet Res. 77:105–109.
  • Suo H, Lu L, Xu G, Xiao L, Chen X, Xia R, Zhang L, LUO X. 2015. Effectiveness of dietary xylo-oligosaccharides for broilers fed a conventional corn-soybean meal diet. J Integr Agr. 14(10):2050–2057.
  • Tarantino G, Scalera A, Finelli C. 2013. Liver-spleen axis: intersection between immunity, infections and metabolism. World J Gastroenterol. 19(23):3534–3542.
  • Tarradas J, Tous N, Esteve-Garcia E, Brufau J. 2020. The control of intestinal inflammation: a major objective in the research of probiotic strains as alternatives to antibiotic growth promoters in poultry. Microorganisms. 8(2):148.
  • Venegas DP, De la Fuente MK, Landskron G, González MJ, Quera R, Dijkstra G, Harmsen HJM, Faber KN, Hermoso MA. 2019. Short chain fatty acids (SCFAs)-mediated gut epithelial and immune regulation and its relevance for inflammatory bowel diseases. Front Immunol. 10:277.
  • Vieira TF, Corrêa RCG, Moreira RFPM, Peralta RA, de Lima EA, Helm CV, Garcia JAA, Bracht A, Peralta RM. 2021. Valorization of peach palm (bactris gasipaes kunth) waste: production of antioxidant xylooligosaccharides. Waste Biomass Valor. 12(12):6727–6740.
  • Wang J, Cao Y, Wang C, Sun B. 2011. Wheat bran xylooligosaccharides improve blood lipid metabolism and antioxidant status in rats fed a high-fat diet. Carbohyd Polym. 86(3):1192–1197.
  • Wang Q, Wang XF, Xing T, Li JL, Zhu XD, Zhang L, Gao F. 2021. The combined impact of xylo-oligosaccharides and gamma-irradiated Astragalus polysaccharides on growth performance and intestinal mucosal barrier function of broilers. Poult Sci. 100(3):100909.
  • Wang Z, Yu H, Xie J, Cui H, Gao X. 2019. Effect of pectin oligosaccharides and zinc chelate on growth performance, zinc status, antioxidant ability, intestinal morphology and short-chain fatty acids in broilers. J Anim Physiol Anim Nutr (Berl). 103(3):935–946.
  • Wang J, Zhang C, Zhao S, Ding X, Bai S, Zeng Q, Zhang K, Zhuo Y, Xu S, Mao X, et al. 2021. Dietary apple pectic oligosaccharide improves reproductive performance, antioxidant capacity, and ovary function of broiler breeders. Poult Sci. 100(7):101200.
  • Wu Z, Chen J, Pirzado SA, Haile TH, Cai H, Liu G. 2022. The effect of fermented and raw rapeseed meal on the growth performance, immune status and intestinal morphology of broiler chickens. Anim Physiol Nutr. 106(2):296–307.
  • Wu YY, Guo YM, Wang Z. 2006. Effect of XOS on growth performance, intestinal physiology and morphology of broilers. J Chin Agric Univ. 11(4):42–46.
  • Xiao X, Wang Y, He J, Li Y. 2020. Effects of xylooligosaccharide (XOS) and probiotics (PRO) on production performance, egg quality and intestinal short-chain fatty acids of laying hens in late laying period. Anim Sci. 12(1):21–25.
  • Xu Q, Azzam MMM, Zou X, Dong X. 2020. Effects of chitooligosaccharide supplementation on laying performance, egg quality, blood biochemistry, antioxidant capacity and immunity of laying hens during the late laying period. Ital J Anim Sci. 19(1):1181–1188.
  • Xu D, Wu J, Sun L, Qin X, Fan X, Zheng X. 2021. Combined stress of acute cold exposure and waterless duration at low temperature induces mortality of shrimp Litopenaeus vannamei through injuring antioxidative and immunological response in hepatopancreas tissue. J Therm Biol. 100:103080.
  • Xue Z, Ansari AR, Zhao X, Zang K, Liang Y, Cui L, Hu Y, Cheng R, Zhang X, Zhong J, et al. 2019. RNA-seq-based gene expression pattern and morphological alterations in chick thymus during postnatal development. Int J Genomics. 2019:6905194.
  • Yang WB. 2012. Effects of xylooligosaccharides with different particle size on antibacterial function in vitro and applications in broiler diets [MSc]. Nanjing City (China): Nanjing Agricultural University.
  • Yang C, Tang XW, Liu X, Yang H, Bin DM, Liu HJ, Tang QH, Tang JY. 2022. Effects of dietary oligosaccharides on serum biochemical index, intestinal morphology, and antioxidant status in broilers. Anim Sci J. 93(1):e13679.
  • Yin J, Li F, Kong X, Wen C, Guo Q, Zhang L, Wang W, Duan Y, Li T, Tan Z, et al. 2019. Dietary xylo-oligosaccharide improves intestinal function in weaned piglets. Food Funct. 10(5):2701–2709.
  • Yuan L, Li W, Huo Q, Du C, Wang Z, Yi B, Wang M. 2018. Effects of xylo-oligosaccharide and flavomycin on the immune function of broiler chickens. PeerJ. 6(3):e4435.
  • Zhang JF, Bai KW, Su WP, Wang AA, Zhang LL, Huang KH, Wang T. 2018. Curcumin attenuates heat-stress-induced oxidant damage by simultaneous activation of GSH-related antioxidant enzymes and Nrf2-mediated phase II detoxifying enzyme systems in broiler chickens. Poult Sci. 97(4):1209–1219.
  • Zhao Y. 2013. Effects of superfine xylooligosaccharides on growth performance, antioxidant and immunity function of broiler chickens [MSc]. Nanjing City (China): Nanjing Agricultural University.
  • Zhou J, Wu S, Qi G, Fu Y, Wang W, Zhang H, Wang J. 2021. Dietary supplemental xylooligosaccharide modulates nutrient digestibility, intestinal morphology, and gut microbiota in laying hens. Anim Sci. 7(1):152–162.
  • Zidan D, Sabran MR, Ramli NS, Shafie SR, Fikry M. 2021. Prebiotic properties of xylooligosaccharide extracted from sugarcane wastes (pith and rind): a comparative study. Int J Food Sci Technol. 56(5):2175–2181.