[1] Stokes M R. Effects of an enzyme mixture, an inoculant, and their interaction on silage fermentation and dairy production. Journal of Dairy Science, 1992, 75(3): 764-773. [2] Liu H, Bu D P, Lü Z W, et al . Effects of wilting and additives on fermentation quality of alfalfa ( Medicago sativa ) silage. Acta Prataculturae Sinica, 2015, 24(5): 126-133. 刘辉, 卜登攀, 吕中旺, 等. 凋萎和不同添加剂对紫花苜蓿青贮品质的影响. 草业学报, 2015, 24(5): 126-133. [3] Cai Y M, Kumai S, Liao Z, et al . Effect of lactic acid bacteria inoculants on fermentative quality of silage. Scientia Agricultura Sinica, 1995, 28(2): 73-82. 蔡义民, 熊井清雄, 廖芷, 等. 乳酸菌剂对青贮饲料发酵品质的改善效果. 中国农业科学, 1995, 28(2): 73-82. [4] Taylor C C, Ranjit N J, Mills J A, et al . The effect of treating whole-plant barley with Lactobacillus buchneri 40788 on silage fermentation, aerobic stability, and nutritive value for dairy cows. Journal of Dairy Science, 2002, 85(7): 1793-1800. [5] Liu Q H, Zhang J G, Lu X L. The effects of lactic acid bacteria inoculation on the fermentation quality and aerobic stability of king grass silage. Acta Prataculturae Sinica, 2009, 18(4): 131-137. 刘秦华, 张建国, 卢小良. 乳酸菌添加剂对王草青贮发酵品质及有氧稳定性的影响. 草业学报, 2009, 18(4): 131-137. [6] Lü W L, Diao Q Y, Yan G L. Effect of Lactobacillus buchneri on the quality and aerobic stability of green corn-stalk silages. Acta Prataculturae Sinica, 2011, 20(3): 143-148. 吕文龙, 刁其玉, 闫贵龙. 布氏乳杆菌对青玉米秸青贮发酵品质和有氧稳定性的影响. 草业学报, 2011, 20(3): 143-148. [7] Kung L J, Schimidt R J, Ebling T E, et al . The effect of Lactobacillus buchneri 40788 on the fermentation and aerobic stability of ground and whole high-moisture corn. Journal of Dairy Science, 2007, 90(5): 2309-2314. [8] Filya I, Sucu E, Karabulut A. The effect of Lactobacillus buchneri on the fermentation, aerobic stability and ruminal degradability of maize silage. Journal of Applied Microbiology, 2006, 101(6): 1216-1223. [9] Xing L, Han L J, Liu X, et al . Effects of lactobacillus and cellulose on the fermentation characteristics and microorganism of whole-plant corn silage. Journal of China Agricultural University, 2004, 9(5): 38-41. 兴丽, 韩鲁佳, 刘贤, 等. 乳酸菌和纤维素酶对全株玉米青贮发酵品质和微生物菌落的影响. 中国农业大学学报, 2004, 9(5): 38-41. [10] Wang X L, Zhang H J, Sun Q Z, et al . Research progress of lactic acid bacteria and its additives in forage grass silage system. Journal of Traditional Chinese Veterinary Medicine, 2012, 6: 20-23. 王晓力, 张慧杰, 孙启忠, 等. 饲草青贮系统中乳酸菌及其添加剂研究进展. 中兽医医药杂志, 2012, 6: 20-23. [11] Ma D, Liang H H, Shao W Q, et al . Fermentation product and aerobic stability of whole crop corn and wilted Italian ryegrass silage inoculated without and with different lactic acid bacteria. Acta Agrestia Sinica, 2014, 6: 1365-1370. 马迪, 梁慧慧, 邵文强, 等. 不同乳酸菌添加剂对青贮黑麦草和青贮玉米发酵产物和有氧稳定性的影响. 草地学报, 2014, 6: 1365-1370. [12] Chen L, Yuan X J, Guo G, et al . The effects of lactic acid bacteria and propionic acid on the fermentation quality and aerobic stability of total mixed ration silages prepared with whole-crop corn in Tibet. Acta Veterinaria et Zootechnica Sinica, 2015, 46(1): 104-111. 陈雷, 原现军, 郭刚, 等. 添加乳酸菌制剂和丙酸对全株玉米全混合日粮青贮发酵品质和有氧稳定性的影响. 畜牧兽医学报, 2015, 46(1): 104-111. [13] He Y Q, Wan X R, Wu R, et al . Isolation and identification of excellent lactic acid bacteria from silage and its biological characteristics research. Biotechnology Bulletin, 2013, (5): 177-183. 何轶群, 万学瑞, 吴润, 等. 青贮饲料中优良乳酸菌的分离鉴定及其生物学特性研究. 生物技术通报, 2013, (5): 177-183. [14] Wan X R, Wu J P, Lei Z M, et al . Effect of lactic acid bacteria on corn silage quality and stability after aerobic exposure. Acta Prataculturae Sinica, 2016, 25(4): 204-211. 万学瑞, 吴建平, 雷赵民, 等. 优良抑菌活性乳酸菌对玉米青贮及有氧暴露期微生物数量和pH的影响. 草业学报, 2016, 25(4): 204-211. [15] Yuan Y. The Experiment of Animal Nutrition Tutorial[M]. Beijing: China Agricultural University Press, 2006: 29-46. 袁缨. 动物营养学实验教程[M]. 北京: 中国农业大学出版社, 2006: 29-46. [16] Broderick G A, Kang J H. Automated simultaneous determination of ammonia and total amino acids in ruminal fluid and in vitro media. Journal of Dairy Science, 1980, 63(1): 64. [17] Lin C, Bolsen K K, Brent B E, et al . Epiphytic lactic acid bacteria succession during the pre-ensiling and ensiling periods of alfalfa and maize. Journal of Applied Bacteriology, 1992, 73(5): 375-387. [18] Tabacco E, Piano S, Revello-Chion A, et al . Effect of Lactobacillus buchneri LN4637 and Lactobacillus buchneri LN40177 on the aerobic stability, fermentation products, and microbial populations of corn silage under farm conditions. Journal of Dairy Science, 2011, 94(11): 5589-5598. [19] Aksu T, Baytok E D. Effects of a bacterial silage inoculant on corn silage fermentation and nutrient digestibility. Small Ruminant Research, 2004, 55(3): 249-252. [20] Weinberg Z G, Ashbell G, Hen Y. The effect of applying lactic acid bacteria at ensiling on the aerobic stability of silages. Journal of Applied Bacteriology, 1993, 75: 512-518. [21] Kung L J, Tung R S, Maciorowski K. Effect of a microbial inoculant (Ecosy) and/or a glycopeptide antibiotic (vancomycin) on fermentation and aerobic stability of wilted alfalfa silage. Animal Feed Science and Technology, 1991, 35(2): 37-48. [22] Cai Y. The role of lactic acid bacteria in the preparation of high fermentation quality. Grassland Science, 2001, 47: 527-533. [23] Cai Y, Fujita Y, Murai M, et al . Application of lactic acid bacteria ( Lactobacillus plantarum Chikuso-1) for silage preparation forage paddy rice. Journal of Japanese Society of Grassland Science, 2003, 49: 477-485. [24] Liu H, Bu D P, Lü Z W, et al . Effect of lactic acid bacteria or chemical preservative on the quality and aerobic stability of alfalfa silage produced in farm-scale silos. Acta Veterinaria et Zootechnica Sinica, 2015, 46(5): 784-791. 刘辉,卜登攀, 吕中旺, 等. 乳酸菌和化学保存剂对窖贮紫花苜蓿青贮品质和有氧稳定性的影响. 畜牧兽医学报, 2015, 46(5): 784-791. |