Application of different proportions of sweet sorghum silage as a substitute for corn silage in dairy cows
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Chuanshe Zhou | Jinhe Kang | Z. Tan | Liang Chen | Zixin Liu | Zhiwei Kong | X. Lv | Guijie Zhang | S. Tang | Jingjing Xie | Zhiyan Du
[1] R. Dewhurst,et al. Effect of ammonia concentration on rumen microbial protein production in vitro , 2021, British Journal of Nutrition.
[2] P. Cunniff. Official Methods of Analysis of AOAC International , 2019 .
[3] B. Corl,et al. Production performance, nutrient digestibility, and milk fatty acid profile of lactating dairy cows fed corn silage- or sorghum silage-based diets with and without xylanase supplementation. , 2019, Journal of dairy science.
[4] M. Rezaei,et al. Total replacement of corn silage with sorghum silage improves milk fatty acid profile and antioxidant capacity of Holstein dairy cows. , 2018, Journal of dairy science.
[5] Xiaolin Zhu,et al. Effects of dietary methionine and lysine supplementation on nutrients digestion, serum parameters and mRNA expression of related amino acid sensing and transporting genes in growing goats , 2018, Small Ruminant Research.
[6] S. Huws,et al. Nutritive value of maize and sorghum silages: fibre fraction degradation and rumen microbial density in buffalo cows , 2018 .
[7] F. Giallongo,et al. Using brown midrib 6 dwarf forage sorghum silage and fall-grown oat silage in lactating dairy cow rations. , 2017, Journal of dairy science.
[8] N. Iqbal,et al. Eco-biology, impact, and management of Sorghum halepense (L.) Pers. , 2017, Biological Invasions.
[9] R. Mantovani,et al. Effects of total replacement of corn silage with sorghum silage on milk yield, composition, and quality , 2017, Journal of Animal Science and Biotechnology.
[10] Chuanshe Zhou,et al. Effects of Lactobacillus acidophilus supplementation for improving in vitro rumen fermentation characteristics of cereal straws , 2017 .
[11] D. Hoyt,et al. New roles in hemicellulosic sugar fermentation for the uncultivated Bacteroidetes family BS11 , 2016, The ISME Journal.
[12] J. Jiao,et al. Age and feeding system (supplemental feeding versus grazing) modulates colonic bacterial succession and host mucosal immune maturation in goats. , 2016, Journal of animal science.
[13] Board on Agriculture. Nutrient Requirements of Dairy Cattle , 2016 .
[14] C. Lynch,et al. Branched-chain amino acids in metabolic signalling and insulin resistance , 2014, Nature Reviews Endocrinology.
[15] Laura F. Gentry,et al. Identifying factors controlling the continuous corn yield penalty , 2013 .
[16] W. G. Johnson,et al. Herbicide Resistance: Toward an Understanding of Resistance Development and the Impact of Herbicide-Resistant Crops , 2012, Weed Science.
[17] M. Ferreira,et al. Nutritive value of diferents silage sorghum ( Sorghum bicolor L. Moench) cultivares - doi: 10.4025/actascianimsci.v34i2.12853 , 2012 .
[18] P. Seguin,et al. Short communication: Effects of feeding sweet sorghum silage on milk production of lactating dairy cows. , 2012, Journal of dairy science.
[19] M. Rogero,et al. Leucine supplementation improves adiponectin and total cholesterol concentrations despite the lack of changes in adiposity or glucose homeostasis in rats previously exposed to a high-fat diet , 2011, Nutrition & metabolism.
[20] M. Hanigan,et al. Effects of jugular-infused lysine, methionine, and branched-chain amino acids on milk protein synthesis in high-producing dairy cows. , 2011, Journal of dairy science.
[21] B. Min,et al. Effect of feeding sericea lespedeza (Lespedeza cuneata) on growth performance, blood metabolites, and carcass characteristics of Kiko crossbred male kids , 2010 .
[22] S. Colombini,et al. Brown midrib forage sorghum silage for the dairy cow: nutritive value and comparison with corn silage in the diet , 2010 .
[23] M. Oba,et al. Increasing dietary sugar concentration may improve dry matter intake, ruminal fermentation, and productivity of dairy cows in the postpartum phase of the transition period. , 2009, Journal of dairy science.
[24] Donghai Wang,et al. Evaluation and Characterization of Forage Sorghum as Feedstock for Fermentable Sugar Production , 2009, Applied biochemistry and biotechnology.
[25] M. Flythe,et al. The effects of monensin on amino acid catabolizing bacteria isolated from the Boer goat rumen , 2009 .
[26] M. Oba,et al. Effects of replacing corn dry distillers’ grains with triticale dry distillers’ grains on lactation performance and plasma metabolites of dairy cows. , 2008 .
[27] R. Grant,et al. Comparison of brown midrib sorghum-sudangrass with corn silage on lactational performance and nutrient digestibility in Holstein dairy cows. , 2008, Journal of dairy science.
[28] P. Weimer,et al. Dominance of Prevotella and low abundance of classical ruminal bacterial species in the bovine rumen revealed by relative quantification real-time PCR , 2007, Applied Microbiology and Biotechnology.
[29] J. Cant,et al. Responses to amino acid imbalances and deficiencies in lactating dairy cows. , 2006, Journal of dairy science.
[30] F. Santini,et al. Corn silage versus grain sorghum silage as a supplement to growing steers grazing high quality pastures: Effects on performance and ruminal fermentation , 2006 .
[31] G. Broderick,et al. Effect of molasses supplementation on the production of lactating dairy cows fed diets based on alfalfa and corn silage. , 2004, Journal of dairy science.
[32] R J Grant,et al. Comparison of brown midrib-6 and -18 forage sorghum with conventional sorghum and corn silage in diets of lactating dairy cows. , 2004, Journal of dairy science.
[33] T. Klopfenstein,et al. Utilization of distillers grains from the fermentation of sorghum or corn in diets for finishing beef and lactating dairy cattle. , 2002, Journal of animal science.
[34] K. Beauchemin,et al. Effects of grain processing, forage to concentrate ratio, and forage particle size on rumen pH and digestion by dairy cows. , 2001, Journal of dairy science.
[35] B. Pysera,et al. The effect of gestation and lactation of dairy cows on lipid and lipoprotein patterns and composition in serum during winter and summer feeding , 2000 .
[36] R J Grant,et al. Brown midrib sorghum in diets for lactating dairy cows. , 1999, Journal of dairy science.
[37] M. Oba,et al. Evaluation of the importance of the digestibility of neutral detergent fiber from forage: effects on dry matter intake and milk yield of dairy cows. , 1999, Journal of dairy science.
[38] G. Broderick,et al. Peptidases of the rumen bacterium, Prevotella ruminicola. , 1997, Anaerobe.
[39] S. G. Haddad,et al. Brown midrib sorghum silage for midlactation dairy cows. , 1995, Journal of dairy science.
[40] P. V. Soest. Nutritional Ecology of the Ruminant , 1994 .
[41] A. Famuyiwa,et al. Growth Performance, Feed Intake and Nutrient Digestibility by Beef Calves Fed Sweet Sorghum Silage, Corn Silage and Fescue Hay , 1989 .
[42] H. Makkar,et al. Simple determination of microbial protein in rumen liquor. , 1982, Journal of dairy science.
[43] M. J. Allison. Production of branched-chain volatile fatty acids by certain anaerobic bacteria , 1978, Applied and environmental microbiology.
[44] B. A. Young,et al. Evaluation of Acid-Insoluble Ash as a Natural Marker in Ruminant Digestibility Studies1 ,2 , 1977 .
[45] L. Satter,et al. Effect of ammonia concentration on rumen microbial protein production in vitro , 1974, British Journal of Nutrition.
[46] R. R. Johnson,et al. Studies on the metabolism of valine, proline, leucine and isoleucine by rumen microorganisms in vitro. , 1958, Archives of biochemistry and biophysics.
[47] G. Edwards,et al. Chemical composition and in vitro fermentation characteristics of high sugar forage sorghum as an alternative to forage maize for silage making in Tarim Basin, China , 2016 .
[48] Mark A. Marsalis,et al. Forage sorghum nutritive value: a review. , 2010 .
[49] R. Shaver. Using High Quality Forages to Optimize Production , 2010 .
[50] O. Radostits,et al. Veterinary medicine : a textbook of the diseases of cattle, horses, sheep, pigs and goats , 2007 .
[51] D. A. Dwyer,et al. Effects of branched-chain amino acids and sodium caseinate on milk protein concentration and yield from dairy cows. , 1999, Journal of dairy science.
[52] N. Zummo,et al. Culture of sweet sorghum for sirup production , 1973 .