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Proanthocyanidins (condensed tannin) destabilise plant protein foams in a dose dependent manner

GJ Tanner, PJ Moate, LH Davis, RH Laby, YuGuang Li, PJ Larkin and YG Li
46(6) pp.1101 - 1109


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Tibe Olekile, Meagher Lucy P., Fraser Karl, Harding David R. K.
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Escaray Francisco J, Passeri Valentina, Babuin Florencia M, Marco Francisco, Carrasco Pedro, Damiani Francesco, Pieckenstain Fernando L, Paolocci Francesco, Ruiz Oscar A
BMC Plant Biology. 2014 14(1). p.40
Potential effects of a high CO2 future on leguminous species
Singer Stacy D., Chatterton Syama, Soolanayakanahally Raju Y., Subedi Udaya, Chen Guanqun, Acharya Surya N.
Plant-Environment Interactions. 2020 1(2). p.67
Genetic Manipulation of Condensed Tannins in Higher Plants1
Robbins Mark P., Bavage Adrian D., Strudwicke Catherine, Morris Phillip
Plant Physiology. 1998 116(3). p.1133
Molecular Breeding of Forage Crops (2001)
Spangenberg G., Kalla R., Lidgett A., Sawbridge T., Ong E. K., John U.
Alternative temperate forages containing secondary compounds for improving sustainable productivity in grazing ruminants
Ramírez-Restrepo C.A., Barry T.N.
Animal Feed Science and Technology. 2005 120(3-4). p.179
The Role of Proanthocyanidins Complex in Structure and Nutrition Interaction in Alfalfa Forage
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The hunt for the “holy grail”: Condensed tannins in the perennial forage legume white clover (Trifolium repens L.)
Caradus John R., Voisey Christine R., Cousin Grieg R., Kaur Rupinder, Woodfield Derek R., Blanc Alexia, Roldan Marissa B.
Grass and Forage Science. 2022 77(2). p.111
Metabolic Engineering of Plant Secondary Metabolism (2000)
Robbins M. P., Morris P.
Encyclopedia of Dairy Sciences (2002)
Moate P.J., Laby R.H.
Foam stability of leaves from anthocyanidin‐accumulating Lc‐alfalfa and relation to molecular structures detected by fourier‐transformed infrared‐vibration spectroscopy
Jonker A., Gruber M. Y., Wang Y., Coulman B., McKinnon J. J., Christensen D. A., Yu P.
Grass and Forage Science. 2012 67(3). p.369
Biotransformation of Waste Biomass into High Value Biochemicals (2014)
Negi Sangeeta
Plant bioactives for ruminant health and productivity
Rochfort Simone, Parker Anthony J, Dunshea Frank R.
Phytochemistry. 2008 69(2). p.299
Use of ‘natural’ products as alternatives to antibiotic feed additives in ruminant production
Jouany J.-P., Morgavi D.P.
Animal. 2007 1(10). p.1443
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
Potential contribution of plants bioactive in ruminant productive performance and their impact on gastrointestinal parasites elimination
Zeineldin Mohamed M., Sabek Ahmed A., Barakat Radwa A., Elghandour Mona M. M. Y., Salem Abdelfattah Z. M., de Oca Jiménez Roberto Montes
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McAllister Tim A., Martinez Tomas, Bae Hee Dong, Muir Alister D., Yanke L. Jay, Jones Graham A.
Journal of Chemical Ecology. 2005 31(9). p.2049
The Effect of Birdsfoot Trefoil (Lotus corniculatus) and White Clover (Trifolium repens) in Mixed Pasture Swards on Incoming and Established Nematode Infections in Young Lambs
Bernes G., Waller P. J., Christensson D.
Acta Veterinaria Scandinavica. 2000 41(4). p.351
Plant Polyphenols 2 (1999)
Gruber Margaret Y., Ray Heather, Auser Patricia, Skadhauge Birgitte, Falk Jon, Thomsen Karl K., Stougaard Jens, Muir Alister, Lees Garry, Coulman Bruce, McKersie Bryan, Bowley Steve, von Wettstein Diter
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In Vitro Cellular & Developmental Biology - Plant. 2020 56(4). p.548
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Abrahams Sharon, Tanner Gregory J., Larkin Philip J., Ashton Anthony R.
Plant Physiology. 2002 130(2). p.561
Molecular Breeding of Forage Crops (2001)
Gruber M. Y., Ray H., Blahut-Beatty L.
Occurrence of Condensed Tannins in Wheat and Feasibility for Reducing Pasture Bloat
MacKown Charles T., Carver Brett F., Edwards Jeffrey T.
Crop Science. 2008 48(6). p.2470
Are nutritional adaptations of wild deer relevant to commercial venison production$
Hudson Robert J., Jeon Byong-Tae
Écoscience. 2003 10(4). p.462
Germplasm Sources for Improvement of Forage Quality in Lotus corniculatus L. and L. uliginosus Schkuhr (Fabaceae)
Kelman W. M.
Genetic Resources and Crop Evolution. 2006 53(8). p.1707
Molecular Enhancement of Alfalfa: Improving Quality Traits for Superior Livestock Performance and Reduced Environmental Impact
Singer Stacy D., Weselake Randall J., Acharya Surya
Crop Science. 2018 58(1). p.55
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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
Associative effects between forages on feed intake and digestion in ruminants
Niderkorn V., Baumont R.
Animal. 2009 3(7). p.951
The multi-faceted role of condensed tannins in the goat ecosystem
Muir James P.
Small Ruminant Research. 2011 98(1-3). p.115
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International Journal of Molecular Sciences. 2017 18(5). p.1105
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A. Attia Marwa F., M. Nour El-Din Adel N., El-Zarkouny Samir Z., El-Zaiat Hani M., Zeitoun Moustafa M., A. Sallam Sobhy M.
Open Journal of Animal Sciences. 2016 06(04). p.269
Plant Polyphenols 2 (1999)
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Journal of Crop Science and Biotechnology. 2022 25(4). p.381
Plant Polyphenols 2 (1999)
Robbins Mark P., Bavage Adrian D., Morris Phillip
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Tedeschi L.O., Ramírez-Restrepo C.A., Muir J.P.
animal. 2014 8(7). p.1095
Polyphenols and agriculture: beneficial effects of proanthocyanidins in forages
Aerts Rob J., Barry Tom N., McNabb Warren C.
Agriculture, Ecosystems & Environment. 1999 75(1-2). p.1
When Art and Science Meet: Integrating Knowledge of French Herders with Science of Foraging Behavior
Meuret M., Provenza F.D.
Rangeland Ecology & Management. 2015 68(1). p.1
Plant Phenolics and Human Health (2009)
Iandolino Alberto B., Cook Douglas R.
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ISHII Junichiro, OMURA Hiroshi, MITSUI Tadao, EGUCHI Norichika, UENO Takashi, GOTO Hisaya, ITO Hiroshi
Animal Science Journal. 2012 83(1). p.36
Production and transcriptional regulation of proanthocyanidin biosynthesis in forage legumes
Zhou Meiliang, Wei Li, Sun Zhanmin, Gao Lihua, Meng Yu, Tang Yixiong, Wu Yanmin
Applied Microbiology and Biotechnology. 2015 99(9). p.3797
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Gedir J. V., Sporns P., Hudson R. J.
Journal of Chemical Ecology. 2005 31(12). p.2761
Managing Phenol Contents in Crop Plants by Phytochemical Farming and Breeding—Visions and Constraints
Treutter Dieter
International Journal of Molecular Sciences. 2010 11(3). p.807
Applications of Gene-Based Technologies for Improving Animal Production and Health in Developing Countries (2005)
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