Register      Login
Crop and Pasture Science Crop and Pasture Science Society
Plant sciences, sustainable farming systems and food quality

Articles citing this paper

An in vitro study on the ability of polyethylene glycol to inhibit the effect of quebracho tannins and tannic acid on rumen fermentation in sheep, goats, cows, and deer

P. Frutos A B , G. Hervás A , F. J. Giráldez A and A. R. Mantecón A
+ Author Affiliations
- Author Affiliations

A Estación Agrícola Experimental (CSIC) Apdo. 788 – 24080 León, Spain.

B Corresponding author. Email: p.frutos@eae.csic.es

Australian Journal of Agricultural Research 55(11) 1125-1132 https://doi.org/10.1071/AR04058
Submitted: 10 March 2004  Accepted: 20 September 2004   Published: 26 November 2004



67 articles found in Crossref database.

Strategies to reduce greenhouse gases from ruminant livestock
Meale S. J., McAllister T. A., Beauchemin K. A., Harstad O. M., Chaves A. V.
Acta Agriculturae Scandinavica, Section A - Animal Science. 2012 62(4). p.199
Effects of tannins and Monensin in a feedlot diet on in vitro ruminal fermentation
Martello Hariany Ferreira, Paula Nelcino Francisco de, Macedo Bruna Gomes, Zervoudakis Joanis Tilemahos, Brutti Danielle Dias, Carvalho Perivaldo, Teobaldo Ronyatta Weich, Cabral Luciano da Silva, Fonseca Mozart Alves
Semina: Ciências Agrárias. 2019 40(6Supl2). p.3223
Recent advances in research in the rumen bloat of ruminant animals fed high-concentrate diets
Wang Yusu, Wang Lizhi, Wang Zhisheng, Xue Bai, Peng Quanhui, Hu Rui, Yan Tianhai
Frontiers in Veterinary Science. 2023 10
Botanical Composition of Yearling-Steer and Mature-Ewe Diets in the Kansas Flint Hills
Sowers C.A., Gatson G.A., Wolf J.D., Fick W.H., Olson K.C.
Rangeland Ecology & Management. 2019 72(1). p.126
Effect of the administration of young oak (Quercus pyrenaica) leaves to cattle on ruminal fermentation
Doce R.R., Hervás G., Belenguer A., Toral P.G., Giráldez F.J., Frutos P.
Animal Feed Science and Technology. 2009 150(1-2). p.75
The effect of supplementing leaves of four tannin‐rich plant species with polyethylene glycol on digestibility and zootechnical performance of zebu bulls (Bos indicus)
Yisehak K., De Boever J. L., Janssens G. P. J.
Journal of Animal Physiology and Animal Nutrition. 2014 98(3). p.417
Tannins as feed additives to modulate ruminal biohydrogenation: Effects on animal performance, milk fatty acid composition and ruminal fermentation in dairy ewes fed a diet containing sunflower oil
Toral Pablo G., Hervás Gonzalo, Bichi Elena, Belenguer Álvaro, Frutos Pilar
Animal Feed Science and Technology. 2011 164(3-4). p.199
Milk fatty acid composition, rumen microbial population and animal performance in response to diets rich in linoleic acid supplemented with
Purba R. A. P., Yuangklang C., Paengkoum S., Paengkoum P.
Animal Production Science. 2020 62(14). p.1391
Methane emissions by goats consuming Sericea lespedeza at different feeding frequencies
Puchala R., Animut G., Patra A.K., Detweiler G.D., Wells J.E., Varel V.H., Sahlu T., Goetsch A.L.
Animal Feed Science and Technology. 2012 175(1-2). p.76
Effect of polyethylene glycol on in vitro gas production of some non-leguminous forage trees in tropical region of the south of Mexico
Rojas Hernández S., Olivares Pérez J., Elghandour M. M. M. Y., Cipriano-Salazar M., Ávila-Morales B., Camacho-Díaz L. M., Salem A. Z. M., A Cerrillo Soto M.
Agroforestry Systems. 2015 89(4). p.735
In vivo and in vitro effects of a blend of essential oils on rumen methane mitigation
Castro-Montoya Joaquin, Peiren Nico, Cone John W., Zweifel Beatrice, Fievez Veerle, De Campeneere Sam
Livestock Science. 2015 180 p.134
Bioactive compounds from pomegranate by-products increase the in vitro ruminal accumulation of potentially health promoting fatty acids
Natalello Antonio, Hervás Gonzalo, Toral Pablo G., Luciano Giuseppe, Valenti Bernardo, Mendoza Alejandro G., Pauselli Mariano, Priolo Alessandro, Frutos Pilar
Animal Feed Science and Technology. 2020 259 p.114355
Is the anthelmintic effect of heather supplementation to grazing goats always accompanied by anti-nutritional effects?
Frutos P., Moreno-Gonzalo J., Hervás G., García U., Ferreira L.M.M., Celaya R., Toral P.G., Ortega-Mora L.M., Ferre I., Osoro K.
Animal. 2008 2(10). p.1449
Botanical composition of mature ewe diets in the Kansas Flint Hills
Sowers Consuelo A, Wolf James D, Fick Walter H, Olson K C
Translational Animal Science. 2018 2(suppl_1). p.S166
Milk Production, Conjugated Linoleic Acid Content, and In Vitro Ruminal Fermentation in Response to High Levels of Soybean Oil in Dairy Ewe Diet
Gómez-Cortés P., Frutos P., Mantecón A.R., Juárez M., de la Fuente M.A., Hervás G.
Journal of Dairy Science. 2008 91(4). p.1560
Feeding quebracho tannins to sheep enhances rumen fermentative activity to degrade browse shrubs
Ammar H., López S., Kammoun M., Bodas R., Giráldez F.J., González J.S.
Animal Feed Science and Technology. 2009 149(1-2). p.1
Effect of condensed tannin supplementation on in vivo nutrient digestibilities and energy values of concentrates in sheep
Gerlach Katrin, Pries Martin, Südekum Karl-Heinz
Small Ruminant Research. 2018 161 p.57
Influence of polyethylene glycol on the excretion and digestibility of amino acids in casein and tannic acid‐fed broilers
Mansoori Behzad, Ghazi Shahab
Journal of the Science of Food and Agriculture. 2007 87(11). p.2092
Effect of Tannin-Binding Agents (Polyethylene Glycol and Polyvinylpyrrolidone) Supplementation on In Vitro Gas Production Kinetics of Some Grape Yield Byproducts
Besharati Maghsoud, Taghizadeh Akbar
ISRN Veterinary Science. 2011 2011 p.1
Is polyethylene glycol innocuous to the rumen bacterial community? A preliminary in vitro study
Belenguer A., Hervás G., Toral P. G., Fondevila M., Frutos P.
Animal Production Science. 2011 51(11). p.990
The effects of dried pistachio (Pistachio veraL.) by-product addition on corn silage fermentation andin vitromethane production
Denek Nihat, Aydin Sadik Serkan, Can Abdullah
Journal of Applied Animal Research. 2017 45(1). p.185
Evaluation of ensiled soy sauce by-product combined with several additives as an animal feed
Sadarman Sadarman, Ridla Muhammad, Nahrowi Nahrowi, Ridwan Roni, Jayanegara Anuraga
Veterinary World. 2020 13(5). p.940
Rockrose and quebracho condensed tannins have a minor impact on the fatty acid profile of goat milk and cheese without altering animal performance and composition of products
Jerónimo Eliana, Guerreiro Olinda, Soldado David, Fialho Letícia, Cachucho Liliana, Garrido Ana Lúcia, Conceição Cristina, Alves Susana P., Bessa Rui J.B., Santos-Silva José
Animal Feed Science and Technology. 2023 300 p.115654
Sphaeralcea Angustifolia as a Substitute for Alfalfa for Growing Goats
Mellado Miguel, Salas Gabriela, Pittroff Wolfgang
Rangeland Ecology & Management. 2008 61(4). p.405
Ruminal degradation of mountain pastures infested by Euphorbia polygalifolia in cattle and sheep: effect of previous grazing in invaded areas
Mora Manuel J, Hervás Gonzalo, Mantecón Ángel R, Busqué Juan, Frutos Pilar
Journal of the Science of Food and Agriculture. 2006 86(13). p.2153
Short communication: The effect of different inclusion levels of polyethylene glycol as a silage additive on ensilage characteristics of pomegranate peel and in vitro rumen fermentation
Hatami Ali, Alipour Daryoush, Hozhabri Fardin, Tabatabaei Meisam
Spanish Journal of Agricultural Research. 2015 13(2). p.e06SC01
Effect of the administration of young leaves of Quercus pyrenaica on rumen fermentation in relation to oak tannin toxicosis in cattle
Doce R. R., Belenguer A., Toral P. G., Hervás G., Frutos P.
Journal of Animal Physiology and Animal Nutrition. 2013 97(1). p.48
Effect of feeding sericea lespedeza (Lespedeza cuneata) on growth performance, blood metabolites, and carcass characteristics of Kiko crossbred male kids
Solaiman S., Thomas J., Dupre Y., Min B.R., Gurung N., Terrill T.H., Haenlein G.F.W.
Small Ruminant Research. 2010 93(2-3). p.149
Effect of quebracho-chestnut tannin extracts at 2 dietary crude protein levels on performance, rumen fermentation, and nitrogen partitioning in dairy cows
Aguerre M.J., Capozzolo M.C., Lencioni P., Cabral C., Wattiaux M.A.
Journal of Dairy Science. 2016 99(6). p.4476
Methane Production of Fresh Sainfoin, with or without PEG, and Fresh Alfalfa at Different Stages of Maturity is Similar but the Fermentation End Products Vary
Rufino-Moya Pablo José, Blanco Mireia, Bertolín Juan Ramón, Joy Margalida
Animals. 2019 9(5). p.197
Effect of Polyethylene Glycol onin VitroGas Production Kinetics ofProsopis CinerariaLeaves at Different Growth Stages
Elahi Mostafa Yousef, Nia Moslem Moslemi, Salem Abdelfattah Z.M., Mansouri Hormoz, Olivares-Pérez Jaime, Cerrillo-Soto Maria A., Kholif Ahmed E.
Italian Journal of Animal Science. 2014 13(2). p.3175
Effect of oak acorn level on colostrum composition and plasma immunoglobulin G of late-pregnant goats and their kids
Jafari H., Fatahnia F., Khatibjoo A., Taasoli G., Fazaeli H.
Animal. 2018 12(11). p.2300
Effect of diet supplementation with sunflower oil on milk production, fatty acid profile and ruminal fermentation in lactating dairy ewes
Hervás Gonzalo, Luna Pilar, Mantecón Ángel R., Castañares Natalia, de la Fuente Miguel Angel, Juárez Manuela, Frutos Pilar
Journal of Dairy Research. 2008 75(4). p.399
Influence of tannic acid and polyethylene glycol on the excretion and digestibility of amino acids in gelatin-fed broilers
Mansoori B., Acamovic T.
British Poultry Science. 2009 50(2). p.199
The influence of addition of gallic acid, tannic acid, or quebracho tannins to alfalfa hay on in vitro rumen fermentation and microbial protein synthesis
Getachew G., Pittroff W., Putnam D.H., Dandekar A., Goyal S., DePeters E.J.
Animal Feed Science and Technology. 2008 140(3-4). p.444
Defaunating capacity of tropical fodder trees: Effects of polyethylene glycol and its relationship to in vitro gas production
Monforte-Briceño Gregorio E., Sandoval-Castro Carlos A., Ramírez-Avilés Luis, Leal Concepción M. Capetillo
Animal Feed Science and Technology. 2005 123-124 p.313
Influence of tropical plant sources containing plant secondary compound on rumen fermentation using in vitro gas fermentation technique
NORRAPOKE THITIMA, WANAPAT METHA, FOIKLANG SUBAN
The Indian Journal of Animal Sciences. 2014 84(9).
Effect of mimosa tannin and pectin on microbial protein synthesis and gas production during in vitro fermentation of 15N-labelled maize shoots
Bento M.H.L., Makkar H.P.S., Acamovic T.
Animal Feed Science and Technology. 2005 123-124 p.365
Evaluating the influence of tannic acid alone or with polyethylene glycol on the intestinal absorption capacity of broiler chickens, using d-xylose absorption test
Mansoori B., Nodeh H., Modirsanei M., Kiaei M.M., Farkhoy M.
Animal Feed Science and Technology. 2007 134(3-4). p.252
Effects of tannins and monensin on the modulation of in vitro ruminal fermentation and ammonia production of nitrogen‐fertilized and non‐fertilized Urochloa brizantha cv. Marandu
Brutti Danielle Dias, De Paula Nelcino Francisco, Zervoudakis Joanis Tilemahos, Cabral Luciano da Silva, Fonseca Mozart Alves, Macedo Bruna Gomes, Lima Leni Rodrigues
Grassland Science. 2019 65(2). p.101
A commentary on methodological aspects of hydrolysable tannins metabolism in ruminant: a perspective view
Lotfi R.
Letters in Applied Microbiology. 2020 71(5). p.466
Methane emission by goats consuming different sources of condensed tannins
Animut G., Puchala R., Goetsch A.L., Patra A.K., Sahlu T., Varel V.H., Wells J.
Animal Feed Science and Technology. 2008 144(3-4). p.228
Effects of condensed tannins supplementation level on weight gain and in vitro and in vivo bloat precursors in steers grazing winter wheat1
Min B. R., Pinchak W. E., Anderson R. C., Fulford J. D., Puchala R.
Journal of Animal Science. 2006 84(9). p.2546
The Inclusion of Concentrate with Quebracho Is Advisable in Two Forage-Based Diets of Ewes According to the In Vitro Fermentation Parameters
Rufino-Moya Pablo Jose, Blanco Mireia, Lobón Sandra, Bertolín Juan Ramon, Armengol Ramón, Joy Margalida
Animals. 2019 9(7). p.451
Effects of a tannin-rich legume (Onobrychis viciifolia) on in vitro ruminal biohydrogenation and fermentation
Toral Pablo G., Hervás Gonzalo, Missaoui Hajer, Andrés Sonia, Giráldez Francisco J., Jellali Saida, Frutos Pilar
Spanish Journal of Agricultural Research. 2016 14(1). p.e0602
Comparison of feed intake, digestion and rumen function among domestic ruminant species grazing in upland vegetation communities
Ferreira L. M. M., Hervás G., Belenguer A., Celaya R., Rodrigues M. A. M., García U., Frutos P., Osoro K.
Journal of Animal Physiology and Animal Nutrition. 2017 101(5). p.846
The links between supplementary tannin levels and conjugated linoleic acid (CLA) formation in ruminants: A systematic review and meta-analysis
Purba Rayudika Aprilia Patindra, Paengkoum Pramote, Paengkoum Siwaporn, Koronowicz Aneta Agnieszka
PLOS ONE. 2020 15(3). p.e0216187
In vitro Dry Matter Digestibility and in vitro Gas Production of Some Acacia Seeds Treated with Sodium Hydroxide and Poly Ethylene Glycol
Atta Elmna Balgees, A., Sharaf Ali Moawia Mohamed
Pakistan Journal of Nutrition. 2020 19(8). p.381
Biological effect of tannins from different vegetal origin on microbial and fermentation traits in vitro
Rodríguez R., de la Fuente G., Gómez S., Fondevila M.
Animal Production Science. 2014 54(8). p.1039
The effect of tannic acid and polyethylene glycol on the absorption capacity of chicken intestine for d‐xylose and β‐carotene
Mansoori B., Modirsanei M.
Journal of Animal Physiology and Animal Nutrition. 2012 96(1). p.47
Comparison of ruminal lipid metabolism in dairy cows and goats fed diets supplemented with starch, plant oil, or fish oil
Toral P.G., Bernard L., Belenguer A., Rouel J., Hervás G., Chilliard Y., Frutos P.
Journal of Dairy Science. 2016 99(1). p.301
Effect of Tannins on the In Vitro Growth of Escherichia coli O157:H7 and In Vivo Growth of Generic Escherichia coli Excreted from Steers
Min Byeng R., Pinchak William E., Anderson Robin C., Callaway Todd R.
Journal of Food Protection. 2007 70(3). p.543
Effect of replacing oat fodder with fresh and chopped oak leaves on in vitro rumen fermentation, digestibility and metabolizable energy
Rajkumar K., Bhar R., Kannan A., Jadhav R.V., Singh Birbal, Mal G.
Veterinary World. 2015 8(8). p.1021
Effects of lespedeza condensed tannins alone or with monensin, soybean oil, and coconut oil on feed intake, growth, digestion, ruminal methane emission, and heat energy by yearling Alpine doelings1
Liu Haiying, Puchala Richard, LeShure Shirron, Gipson Terry A, Flythe Michael D, Goetsch Arthur L
Journal of Animal Science. 2019 97(2). p.885
Nutritive value and digestibility of mistletoes and woody species browsed by goats in a semi-arid savanna, southwest Zimbabwe
Ndagurwa H.G.T., Dube J.S.
Livestock Science. 2013 151(2-3). p.163
Influence of tannic acid application on alfalfa hay: in vitro rumen fermentation, serum metabolites and nitrogen balance in sheep
Getachew G., Pittroff W., DePeters E.J., Putnam D.H., Dandekar A., Goyal S.
Animal. 2008 2(3). p.381
Effects of high condensed-tannin substrate, prior dietary tannin exposure, antimicrobial inclusion, and animal species on fermentation parameters following a 48 h in vitro incubation1
Hoehn A N, Titgemeyer E C, Nagaraja T G, Drouillard J S, Miesner M D, Olson K C
Journal of Animal Science. 2018 96(1). p.343
Antiparasitic Tannin-Rich Plants from the South of Europe for Grazing Livestock: A Review
Rodríguez-Hernández Pablo, Reyes-Palomo Carolina, Sanz-Fernández Santos, Rufino-Moya Pablo José, Zafra Rafael, Martínez-Moreno Francisco Javier, Rodríguez-Estévez Vicente, Díaz-Gaona Cipriano
Animals. 2023 13(2). p.201
In vitro methane and gas production with inocula from cows and goats fed an identical diet
Mengistu Genet, Hendriks Wouter H, Pellikaan Wilbert F
Journal of the Science of Food and Agriculture. 2018 98(4). p.1332
Adición de taninos a dietas de rumiantes y su efecto sobre la calidad y rendimiento de la carne
Jenko Carolina, Bonato Patricia, Fabre Romina, Perlo Flavia, Tisocco Osvaldo, Teira Gustavo
Ciencia, Docencia y Tecnología. 2018 (Vol29No56).
Supplementation strategies to enhance intake of romerillo (Chiliotrichum diffusum) by sheep in southern Patagonia
Lira Raul, MacAdam Jennifer, Sales Francisco, Villalba Juan J.
Small Ruminant Research. 2020 192 p.106205
Effects of Increasing Doses of Condensed Tannins Extract from Cistus ladanifer L. on In Vitro Ruminal Fermentation and Biohydrogenation
Guerreiro Olinda, Alves Susana P., Costa Mónica, Duarte Maria F., Jerónimo Eliana, Bessa Rui J. B.
Animals. 2021 11(3). p.761
Ruminal biohydrogenation as affected by tanninsin vitro
Vasta Valentina, Makkar Harinder P. S., Mele Marcello, Priolo Alessandro
British Journal of Nutrition. 2008 102(1). p.82
In vitro response to EPA, DPA, and DHA: Comparison of effects on ruminal fermentation and biohydrogenation of 18-carbon fatty acids in cows and ewes
Toral P.G., Hervás G., Carreño D., Leskinen H., Belenguer A., Shingfield K.J., Frutos P.
Journal of Dairy Science. 2017 100(8). p.6187
Ability of different types and doses of tannin extracts to modulate in vitro ruminal biohydrogenation in sheep
Carreño D., Hervás G., Toral P.G., Belenguer A., Frutos P.
Animal Feed Science and Technology. 2015 202 p.42
Fermentation kinetics of sainfoin hay with and without PEG
Calabrò S., Guglielmelli A., Iannaccone F., Danieli P. P., Tudisco R., Ruggiero C., Piccolo G., Cutrignelli M. I., Infascelli F.
Journal of Animal Physiology and Animal Nutrition. 2012 96(5). p.842
Unravelling the conundrum of tannins in animal nutrition and health
Mueller‐Harvey Irene
Journal of the Science of Food and Agriculture. 2006 86(13). p.2010

Committee on Publication Ethics


Abstract Export Citation Get Permission