Literature DB >> 12613868

Lactational effect of propionic acid and duodenal glucose in cows.

S Rigout1, C Hurtaud, S Lemosquet, A Bach, H Rulquin.   

Abstract

Five dairy cows were arranged in a 5 x 5 Latin square design to compare the effects of two amounts of either duodenal glucose or ruminal propionic acid (C3) on milk yield and composition. Treatments consisted of a grass silage-based diet supplemented with glucogenic nutrients either infused in the rumen as a mixture of volatile fatty acids (control) or pure C3 (1.72 and 3.45 Mcal/d) or in the duodenum as glucose (1.72 and 3.45 Mcal/d). Treatments were isoenergetic and isonitrogenous and contained 100 and 115% of energy and protein requirements according to INRA (1989), respectively. Only C3 treatments significantly modified ruminal volatile fatty acid composition and linearly increased C3 percentage (up to 25.5%). Both treatments substantially decreased milk fat yield and content, and linearly increased milk and protein yields. Although no significant differences between glucose and C3 were highlighted for milk yield and composition, it seems that mechanisms involved in milk fat decrease are different. Indeed, whereas C3 treatments decreased fatty acid production in an homogeneous way, short- and long-chain fatty acids decreased and medium-chain fatty acid production increased with glucose treatments. A bibliographical study confirmed that increasing glucogenic precursors (GP) supply curvilinearly increase milk yield, linearly increase milk protein content (+ 0.04% per Mcal of GP) and curvilinearly decrease milk fat content (- 0.14% per Mcal of GP). Thus, it appears important to account for the nature of energy supplied by the ration in formulation.

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Year:  2003        PMID: 12613868     DOI: 10.3168/jds.S0022-0302(03)73603-0

Source DB:  PubMed          Journal:  J Dairy Sci        ISSN: 0022-0302            Impact factor:   4.034


  7 in total

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2.  Feeding Date-Palm Leaves Ensiled with Fibrolytic Enzymes or Multi-Species Probiotics to Farafra Ewes: Intake, Digestibility, Ruminal Fermentation, Blood Chemistry, Milk Production and Milk Fatty Acid Profile.

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3.  Synchronous feeding of liquid protein source with different grains on performance, digestibility, ruminal fermentation, blood metabolites, and carcass characters in growing lambs.

Authors:  Fatemeh Jiriaei; Mehdi Kazemi-Bonchenari; Mohammad Hossein Moradi; Davood Mirmohammadi
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4.  Rumen fermentation and performance of lactating dairy cows affected by physical forms and urea treatment of rice straw.

Authors:  P Gunun; M Wanapat; N Anantasook
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Review 5.  A Glimpse of the World of Volatile Fatty Acids Production and Application: A review.

Authors:  Swarnima Agnihotri; Dong-Min Yin; Amir Mahboubi; Tugba Sapmaz; Sunita Varjani; Wei Qiao; Derya Y Koseoglu-Imer; Mohammad J Taherzadeh
Journal:  Bioengineered       Date:  2022-01       Impact factor: 3.269

6.  Probiotic effect of ferulic acid esterase-producing Lactobacillus plantarum inoculated alfalfa silage on digestion, antioxidant, and immunity status of lactating dairy goats.

Authors:  Fuhou Li; Baibing Zhang; Yixin Zhang; Xia Zhang; Samaila Usman; Zitong Ding; Lizhuang Hao; Xusheng Guo
Journal:  Anim Nutr       Date:  2022-06-22

7.  The effect of calcium propionate on the ruminal bacterial community composition in finishing bulls.

Authors:  Qianqian Yao; Yan Li; Qingxiang Meng; Zhenming Zhou
Journal:  Asian-Australas J Anim Sci       Date:  2016-09-16       Impact factor: 2.509

  7 in total

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