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Articles

The nutritional value of some fruit tree leaves for finishing lambs

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References

  • Soleimani A, Abdollahi H, Zare Ghamari A. Horticultural research and development in Iran: a review. Progress Horticult. 2011;43(2):173–180.
  • Alemardan A, Asadi W, Rezaei M, Tabrizi L, Mohammadi S. Cultivation of Iranian seedless barberry (Berberis integerrima ‘Bidaneh’): A medicinal shrub. Ind Crops Prod. 2013;50:276–228.
  • Moghaddam M, Taghizaeh A, Nobakht A, Ahmadi A. Nutritive value of grape pomace and raisin vitis leaves using nylon bags and gas production techniques. Iran J Anim Sci Res. 2012;3(4):435–443.
  • Ghavipanjeh N, Fathi Nasri MH, Farhangfar H, Modaresi J. In situ, in vitro and in vivo nutritive value assessment of Barberry leaf as a roughage for goat feeding. Small Rum Res. 2016;141:94–98.
  • Ahmad J, Khan S, Iqbal D. Evaluation of antioxidant and antimicrobial activity of Ficus carica leaves: an in vitro approach. J Plant Pathol Microb. 2013;4:1–4.
  • Essid A, Aljane F, Ferchichi A. Mineral and phenolic content of leaves of Tunisian caprifig (Ficus carica L.) accessions. J New Sci. 2015;21:977–984.
  • Usenik V, Fabčič J, Štampar F. Sugars, organic acids, phenolic composition and antioxidant activity of sweet cherry (Prunus avium L.). Food Chem. 2008;107(1):185–192.
  • Nahand MK, Doust-Nobar RS, Maheri-Sis N, Mahmoudi S. Determination of feed value of cherry, apricot and almond tree leaves in ruminant using in situ method. Open Vet J. 2012;2(1):83–87.
  • Hong-Guang L, Xiao-Gao X, Jun-Xing Z, et al. Ruminal degradability characteristics of four unconventional roughages in mutton sheep. China Herbivore Sci. 2017;37(3):18–22.
  • Azim A, Ghazanfar S, Latif A, Nadeem MA. Nutritional evaluation of some top fodder tree leaves and shrubs of District Chakwal, Pakistan in relation to ruminants requirements. Pakistan J of Nutrition. 2010;10(1):54–59.
  • Temel S, Pehluvan M. Evaluating orchard and poplar leaves during autumn as an alternative fodder source for livestock feeding. Cienc Inv Agr. 2015;42(1):5–33.
  • AOAC. Official Methods of Analysis of AOAC International. 18th ed. Gaithersburg, MD: AOAC International; 2005.
  • Ankom Technology. Acid Detergent Fibre in Feeds-Filter Bag Technique. Macedon, NY: Ankom Technology; 2006.
  • Ankom Technology. Method for Determining Acid Detergent Lignin in Beakers. Macedon, NY: Ankom Technology; 2005.
  • Ankom Technology. Neutral Detergent Fiber in Feeds-Filter Bag Technique. Macedon, NY: Ankom Technology; 2006.
  • Van Soest PV, Robertson JB, Lewis BA. Methods for dietary fiber, neutral detergent fiber, and nonstarch polysaccharides in relation to animal nutrition. J Dairy Sci. 1991;74(10):3583–3597.
  • Jasaitis DK, Wohlt JE, Evans JL. Influence of feed ion content on buffering capacity of ruminant feedstuffs in vitro. J Dairy Sci. 1987;70(7):1391–1403.
  • Sniffen CJ, O'Connor JD, Van Soest PJ, Fox DG, Russell JB. A net carbohydrate and protein system for evaluating cattle diets: II. Carbohydrate and protein availability. J Anim Sci. 1992;70(11):3562–3577.
  • Menke KH, Steingass H. Estimation of the energetic feed value obtained from chemical analysis and in vitro gas production using rumen fluid. Anim Res Develop. 1988;28:7–55.
  • NRC. Nutrient Requirements of Small Ruminants: Sheep, Goats, Cervids, and New World Camelids. 6th ed. Washington, DC: National Academy Press; 2007:384.
  • Ørskov ER, McDonald I. The estimation of protein degradability in the rumen from incubation measurements weighted according to rate of passage. J Agric Sci. 1979;92(2):499–503.
  • Kazemi M, Ghasemi Bezdi K. An investigation of the nutritional value of Camelthorn (Alhagi maurorum) at three growth stages and its substitution with part of the forage in Afshari ewes’ diets. Anim Feed Sci Technol. 2021;271:114762.
  • Edwards A, Mlambo V, Lallo CHO, Garcia GW, Diptee MD. In vitro ruminal fermentation parameters of tanner grass (Brachiaria arrecta) supplemented with leaves from three forage trees. LRRD. 2012;24(6):24102.
  • Komolong MK, Barber DG, McNeill DM. Post-ruminal protein supply and N retention of weaner sheep fed on a basal diet of lucerne hay (Medicago sativa) with increasing levels of quebracho tannins. Anim Feed Sci Technol. 2001;92(1–2):59–72.
  • Getachew G, Robinson PH, DePeter EJ, Taylor SJ. Relationships between chemical composition, dry matter degradation and in vitro gas production of several ruminant feeds. Anim Feed Sci Technol. 2004;111(1-4):57–71.
  • Iranian Council of Animal Care. Guide to the Care and Use of Experimental Animals. Vol. 1. Isfahan, Iran: Isfahan University of Technology; 1995.
  • Thang CM, Ledin I, Bertilsson J. Effect of using cassava products to vary the level of energy and protein in the diet on growth and digestibility in cattle. Livest Sci. 2010;128(1–3):166–172.
  • Placer ZA, Cushman LL, Johnson BC. Estimation of product of lipid peroxidation (malonyl dialdehyde) in biochemical systems. Anal Biochem. 1966;16(2):359–364.
  • SAS Institute INC. Sas User’s Guide: Statistics. Cary, NC: Statistical Analysis Systems Institute Inc.; 2002.
  • Salem AZM, Robinson PH, El-Adawy MM, Hassan AA. In vitro fermentation and microbial protein synthesis of some browse tree leaves with or without addition of polyethylene glycol. Anim Feed Sci Technol. 2007;138(3-4):318–330.
  • Reed JD. Relationship among soluble phenolics, insoluble proanthocyanidins and fiber in east African browse species. J Range Manage. 1986;39(1):5–7.
  • Salem AZM, Salem MZM, El-Adawy MM, Robinson PH. Nutritive evaluations of some browse tree foliages during the dry season: secondary compounds, feed intake and in vivo digestibility in sheep and goats. Anim Feed Sci Technol. 2006;127(3-4):251–267.
  • Giridhar K, Prabhu T, Singh KC, et al. Nutritional potentialities of some tree leaves based on polyphenols and rumen in vitro gas production. Vet World. 2018;11(10):1479–1485.
  • Gurbuz Y. Determination of nutritive value of leaves of several Vitis vinifera varieties as a source of alternative feedstuff for sheep using in vitro and in situ measurements. Small Rum Res. 2007;71(1–3):59–66.
  • Arzani H, Barkhori S, Moetamedi J, Azarnivand H. Animal unit equivalent (AUE) and daily forage need of Baloochi sheep while grazing on lowland rangelands in Kerman province. Iran J Anim Sci. 2011;41(4):351–362.
  • Norton BW. The nutritive value of tree legumes. In: Gutteridge RC, Shelton HM, eds. Forage Tree Legumes in Tropical Agriculture. Wallingford: Cab international; 1994:177–191.
  • Gulsoy S, Ozkan G, Ozkan K. Mineral elements, phenolics and organic acids of leaves and fruits from Berberis crataegina DC. Asian J Chem. 2011;23(7):3071–3074.
  • Fernández-Cáceres PL, Martín MJ, Pablos F, González AG. Differentiation of tea (Camellia sinensis) varieties and their geographical origin according to their metal content. J Agric Food Chem. 2001;49(10):4775–4779.
  • Versari A, Laurie VF, Ricci A, Laghi L, Parpinello GP. Progress in authentication, typification and traceability of grapes and wines by chemometric approaches. Food Res Int. 2014;60:2–18.
  • NRC. Nutrient Requirements of Sheep. Washington, DC: National Academy Press; 1985.
  • Aregheore EM. Voluntary intake and digestibility of fresh, wilted and dry Leucaena (Leucaena leucocephala) at four levels to a basal diet of guinea grass (Panicum maximum). Asian Australas J Anim Sci. 2002;15(8):1139–1146.
  • McDowell LR. Nutrition of Grazing Ruminants in Warm Climates. New York: Academic Press; 1985:443.
  • NRC. Nutrient Requirements of Beef Cattle. Washington, DC: National Academy Press; 1996.
  • Moniello G, Infascelli F, Pinna W, Camboni G. Mineral requirements of dairy sheep. Ital J Anim Sci. 2005;4(sup1):63–74.
  • Cugnetto A, Santagostini L, Rolle L, Guidoni S, Gerbi V, Novello V. Tracing the “terroirs” via the elemental composition of leaves, grapes and derived wines in cv Nebbiolo (Vitis vinifera L.). Sci Hortic. 2014;172:101–108.
  • Montañez-Valdez OD, Solano-Gama JDJ, Martínez-Tinajero JJ, Guerra-Medina CE, Ley de Coss A, Orozco-Hernandez R. Buffering capacity of common feedstuffs used in ruminant diets. Rev Colomb Cienc Pec. 2013;26(1):37–41.
  • Bujňák L, Maskaľová I, Vajda V. Determination of buffering capacity of selected fermented feedstuffs and the effect of dietary acid-base status on ruminal fluid pH. Acta Vet Brno. 2011;80(3):269–273.
  • Lević J, Prodanović O, Sredanović S. Understanding the buffering capacity in feedstuffs. Biotech Anim Husbandry. 2005;21:309–313.
  • Noziere P, Glasser F, Sauvant D. In vivo production and molar percentages of volatile fatty acids in the rumen: a quantitative review by an empirical approach. Animal. 2011;5(3):403–414.
  • Li Z, Deng Q, Liu Y, et al. Dynamics of methanogenesis, ruminal fermentation and fiber digestibility in ruminants following elimination of protozoa: a meta-analysis. J Anim Sci Biotechnol. 2018;9:89
  • Hetta M, Nordheim H, Gustavsson AM, Martinsson K. Comparison of in vitro degradation of temperate forages using the gas production and filter bag techniques. J Sci Food Agric. 2008;88(2):199–206.
  • Kazemi M, Tahmasbi AM, Valizadeh R, Naserian AA, Moheghi MM. Assessment of nutritive value of four dominant weed species in range of khorasan distinct of Iran by in vitro and in situ techniques. J Anim Vet Adv. 2009;8:2286–2290.
  • Kazemi M. Comparing mineral and chemical compounds, in vitro gas production and fermentation parameters of some range species in Torbat-e Jam, Iran. J Rangel Sci. 2019;9(4):351–363.
  • Blümmel M, Ørskov ER. Comparison of an in vitro gas production and nylon bag degradability of roughages in predicting feed intake in cattle. Anim Feed Sci Technol. 1993;40(2-3):109–119.
  • Beuvink JMW, Spoelstra SF. Interactions between substrate, fermentation end-products, buffering systems and gas production upon fermentation of different carbohydrates by mixed rumen microorganisms in vitro. Appl Microbiol Biotechnol. 1992;37(4):505–509.
  • Bhatta R, Vaithiyanathan S, Singh NP, Shinde AK, Verma DL. Effect of feeding tree leaves as supplements on the nutrient digestion and rumen fermentation pattern in sheep grazing on semi-arid range of India–I. Small Rumin Res. 2005;60(3):273–280.
  • Huyen NT, Wanapat M, Navanukraw C. Effect of mulberry leaf pellet (MUP) supplementation on rumen fermentation and nutrient digestibility in beef cattle fed on rice straw-based diets. Anim Feed Sci Technol. 2012;175(1–2):8–15.
  • Liu JX, Yao J, Yan B, Yu JQ, Shi ZQ. Effects of mulberry leaves to replace rapeseed meal on performance of sheep feeding on ammoniated rice straw diet. Small Rum Res. 2001; 39(2):131–136.
  • Raghuvansi SKS, Prasad R, Mishra AS, et al. Effect of inclusion of tree leaves in feed on nutrient utilization and rumen fermentation in sheep. Bioresour Technol. 2007;98(3):511–517.
  • Rama Prasad J, Prabhakara Rao J, Srinavasa Rao D. Evaluation of complete rations containing haulms at different levels in sheep. Indian J Anim Nutr. 2000;17:147–152.
  • Arelovich HM, Abney CS, Vizcarra JA, Galyean ML. Effects of dietary neutral detergent fiber on intakes of dry matter and net energy by dairy and beef cattle: analysis of published data. Prof Anim Sci. 2008;24(5):375–383.
  • Allen MS. Physical constraints on voluntary intake of forages by ruminants. J Anim Sci. 1996;74(12):3063–3075.
  • Misra AK, Chaturvedi OH, Mishra AS, Tripathi MK, Verma DL, Karim SA. Nutrient intake and utilization in sheep fed urea supplemented diets containing mustard straw and other roughage. Indian J Small Rum. 2001;7(1):8–13.
  • Krishna Mohan DVG, Murthy PRS, Naidu CM, Munirathnam D, Reddy KK. Performance of weaner lambs fed ration containing different proportion of groundnut straw. Indian J Anim Sci. 1985;55:464–467.
  • Nageswara Rao SB, Krishna N, Rama Prasad J, Raghvan GV. Evaluation of nutritional quality of some fibrous resources by in vitro and nylon bag techniques in goats. Indian J Anim Nutr. 1995;12:85–90.
  • Malekkhahi M, Tahmasbi AM, Naserian AA, Danesh Mesgaran M, Kleen JL, Parand AA. Effects of essential oils, yeast culture and malate on rumen fermentation, blood metabolites, growth performance and nutrient digestibility of Baluchi lambs fed high‐concentrate diets. J Anim Physiol Anim Nutr. 2015;99(2):221–229.
  • Vosooghi-Postindoz V, Tahmasbi A, Naserian AA, Valizade R, Ebrahimi H. Effect of water deprivation and drinking saline water on performance, blood metabolites, nutrient digestibility, and rumen parameters in Baluchi lambs. Iran J Appl Anim Sci. 2018;8(3):445–456.
  • Kazemi M, Eskandary Torbaghan A, Tahmasbi AM, Valizadeh R, Naserian AA. Effects of phosalone consumption via feeding with or without sodium bentonite on performance, blood metabolites and its transition to milk of Iranian Baluchi sheep. J Anim Sci Technol. 2017;59(1):1–11.
  • Končić MZ, Kremer D, Karlović K, Kosalec I. Evaluation of antioxidant activities and phenolic content of Berberis vulgaris L. and Berberis croatica Horvat. Food Chem Toxicol. 2010;48(8-9):2176–2180.
  • Bruneton J. Pharmacognosy, Phytochemistry, Medicinal Plants. Paris, France: Lavoisier Publishing; 1995.
  • Karimov A. Berberis alkaloids. Chem Nat Compd. 1993;29(4):415–438.
  • Kumar A, Chopra K, Mukherjee M, Pottabathini R, Dhull DK. Current knowledge and pharmacological profile of berberine: an update. Eur J Pharmacol. 2015;761:288–297.
  • Yildirim S, Ozkan C, Huyut Z, Çınar A. Detection of Se, vit. E, vit. A, MDA, 8-OHdG, and CoQ10 levels and histopathological changes in heart tissue in sheep with white muscle disease. Biol Trace Elem Res. 2019;188(2):419–423.
  • Hemmati M, Asghari S, Zohoori E, Karamian M. Hypoglycemic effects of three Iranian edible plants; jujube, barberry and saffron: correlation with serum adiponectin level. Pak J Pharm Sci. 2015;28(6):2095–2099.
  • Imanshahidi M, Hosseinzadeh H. Pharmacological and therapeutic effects of Berberis vulgaris and its active constituent, berberine. Phytother Res. 2008;22(8):999–1012.
  • Imenshahidi M, Hosseinzadeh H. Berberine and barberry (Berberis vulgaris): a clinical review. Phytother Res. 2019;33(3):504–523.
  • Ko BS, Choi SB, Park SK, Jang JS, Kim YE, Park S. Insulin sensitizing and insulinotropic action of berberine from Cortidis rhizoma. Biol Pharm Bull. 2005;28(8):1431–1437.

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