[1] 张红, 陈凤鸣, 黄兴国, 等. 构树叶的营养价值及其在动物生产中的应用研究进展[J]. 动物营养学报, 2020, 32(9): 4086-4092 [2] 林炎丽. 不同加工方式对构树营养价值的影响[D]. 长春: 吉林农业大学, 2019: 2-4 [3] 邓铭, 池宙, 林东波, 等. 发酵构树饲料对断奶仔猪生长性能、养分表观消化率和血清生化指标的影响[J]. 动物营养学报, 2021, 33(1): 165-174 [4] 林锦翔. 饲喂构树青贮对荷斯坦奶牛生产性能、养分消化率和瘤胃微生物多样性的影响[D]. 郑州: 河南农业大学, 2019: 10-17 [5] 杨青春, 陈绍红, 刘铀. 构树叶对育肥猪生产性能、肉品质及营养物质表观消化率的影响[J]. 河南农业科学, 2014, 43(7): 133-137 [6] ZHANG F F, WANG X Z, LU W H, et al. Meta-analysis of the effects of combined homo-and hetero-fermentative lactic acid bacteria on the fermentation and aerobic stability of corn silage[J]. International Journal of Agriculture and Biology, 2018, 20(8): 1846-1852 [7] OLIVEIRA A S, WEINBERG Z G, OGUNADE I M, et al. Meta-analysis of effects of inoculation with homofermentative and facultative heterofermentative lactic acid bacteria on silage fermentation, aerobic stability, and the performance of dairy cows[J]. Journal of Dairy Science, 2017, 100(6): 4587-4603 [8] TOHNO M, KOBAYASHI H, NOMURA M, et al. Genotypic and phenotypic characterization of lactic acid bacteria isolated from Italian ryegrass silage[J]. Animal Science Journal, 2012, 83(2): 111-120 [9] 时建忠. 青贮接种菌的研究[J]. 中国饲料, 2003(5): 15-16, 26 [10] 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[J]. 中国农业科学, 1995(2): 73-82 [11] 高静, 刘广华, 蔡中峰, 等. 杂交构树青贮的研究及应用进展[J]. 山东畜牧兽医, 2019, 40(4): 64-65 [12] ARRIOLA K G, KIM S C, ADESOGAN A T. Effect of applying inoculants with heterolactic or homolactic and heterolactic bacteria on the fermentation and quality of corn silage[J]. Journal of Dairy Science, 2011, 94(3): 1511-1516 [13] SCHMIDT R J, JR K L. The effects of Lactobacillus buchneri with or without a homolactic bacterium on the fermentation and aerobic stability of corn silages made at different locations[J]. Journal of Dairy Science, 2010, 93(4): 1616-1624 [14] WEINBERG Z G, MUCK R E. New trends and opportunities in the development and use of inoculants for silage[J]. FEMS Microbiology Reviews, 1996(19): 53-68 [15] 张慧杰. 饲草青贮微生物菌群动态变化与乳酸菌的鉴定筛选[D]. 北京: 中国农业科学院, 2011: 1-4 [16] 杨杨, 石超, 郭旭生. 高寒草甸魏斯氏乳酸菌的分离鉴定及理化特性研究[J]. 草业学报, 2014, 23(1): 266-275 [17] 陈堞, 林凯程, 林沁, 等. 大米草中耐盐乳酸菌的分离鉴定及对大米草青贮品质的影响[J]. 草地学报, 2020, 28(2): 565-570 [18] 尹雪, 郭雪峰, 刘俊峰, 等. 盐穗木青贮中乳酸菌的分离及筛选[J]. 中国农业科学, 2018, 51(14): 2825-2834 [19] 凌代文. 乳酸细菌分类鉴定及实验方法[M]. 北京: 中国轻工业出版社, 1999: 117-127 [20] 刘慧. 现代食品微生物学实验技术[M]. 北京: 中国轻工业出版社, 2011: 260-284 [21] LI D, NI K, PANG H, et al. Identification and antimicrobial activity detection of lactic acid bacteria isolated from corn stover silage[J]. Asian-Australas Journal of Animal Sciences, 2015, 28(5): 620-631 [22] 何轶群, 雷赵民, 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[J]. 生物技术通报, 2013(5): 177-183 [23] WOO P C, NG K H, LAU S K, et al. Usefulness of the Microseq 500 16S ribosomal DNA-based bacterial identification system for identification of clinically significant bacterial isolates with ambiguous biochemical profiles[J]. Journal Clinical Microbiology, 2003, 41(5): 1996-2001 [24] LAU S K, WOO P C, WOO G K, et al. Catheter-related microbacterium bacteremia identified by 16S rRNA gene sequencing[J]. Journal Clinical Microbiology, 2002, 40(7): 2681-2685 [25] 陈芝兰, 程池, 马凯, 等. 西藏地区牦牛发酵乳制品中乳酸菌的分离与鉴定[J]. 食品科学, 2008, 29(12): 408-412 [26] 高静. 藏北嵩草附着乳酸菌的生物学特性及其对苜蓿青贮饲料发酵品质的影响[D]. 兰州: 兰州大学, 2013: 22-23 [27] 刘飞. 青贮饲料中优良乳酸菌的分离鉴定及其应用[D]. 哈尔滨: 东北农业大学, 2005: 2-5 [28] 崔棹茗, 郭刚, 原现军, 等. 青稞秸秆青贮饲料中优良乳酸菌的筛选及鉴定[J]. 草地学报, 2015, 23(3): 607-615 [29] MCONALD P, HENDERSON A R, HERON S J. The Biochemistry of Silage[M]. Kingston: Chalcombe Publications, 1999: 95-127 [30] WOOLFORD M K. The detrimental effects of air in silage[J]. Apply Bacteriol, 1990(68): 101-116 [31] WOOLFORD M K, SAWCZYC M K. An investigation into the effect of culture of lactic acid bacteria on fermentation in silage[J]. Grass and Forage Science, 1984(39): 139-148 [32] 付彤. 玉米青贮饲料中优势乳酸菌的筛选与青贮发酵调控技术研究[D]. 郑州: 河南农业大学, 2014: 3-7 [33] 张大伟. 乳酸菌的分离鉴定及其在玉米秸秆青贮中的应用[D]. 郑州: 郑州大学, 2007: 27-39 [34] 张涛. 紫花苜蓿青贮菌剂筛选、作用机理及其应用研究[D]. 北京: 中国农业大学, 2005: 50-56 [35] WEINBERG Z G, ASHBELL G, HEN Y, et al. The effect of applying lactic acid bacteria inoculant applied at ensiling on the aerobic stability of wheat and sorghum silages[J]. Journal of Industrial Microbiology and Biotechnology, 1995(15): 493-497 |