参考文献/References:
[1]张晓庆,王梓凡,参木友,等.中国农作物秸秆产量及综合利用现状分析[J].中国农业大学学报, 2021, 26(9): 30-41.
[2]李双双,赵辉. 微生物阿魏酸酯酶性质及应用研究进展[J].食品与发酵科技, 2020, 56(5):75-80.
[3]WILSON D B. Microbial diversity of cellulose hydrolysis[J]. Current Opinion in Microbiology, 2011, 14(3): 259-263.
[4]CAO B B, WANG R, YANG H J, et al. In situ ruminal degradation of phenolic acid, cellulose and hemicellulose in crop brans and husks differing in ferulic and p-coumaric acid patters[J]. Journal of Agricultural Science, 2015, 153(7): 1312-1320.
[5]马松成,陈静,毛华明. 瘤胃微生态系统[J]. 中国畜牧兽医, 2007, 34(1):31-34.
[6]李君风,原现军,董志浩,等.西藏地区牦牛瘤胃中兼性厌氧纤维素降解菌的分离鉴定[J].草业学报,2017,26(6):176-184.
[7]DONAGHY J, KELLY P F, MCKAY A M. Detection of ferulic acid esterase production by Bacillus spp. and lactobacilli[J]. Applied Microbiology and Biotechnology, 1998, 50(2):257-260.
[8]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.
[9]凌代文. 乳酸菌分类鉴定及实验方法[M]. 北京: 中国轻工业出版社,1999: 1-25.
[10]LIU B Y, HUAN H L, GU H R, et al. Dynamics of a microbial community during ensiling and upon aerobic exposure in lactic acid bacteria inoculation-treated and untreated barley silages[J]. Bioresource Technology, 2019, 273: 212-219.
[11]BRODERICK G A, KANG J H. Automated simultaneous determination of ammonia and total amino acids in ruminal fluid and in vitro media[J]. Journal of Dairy Science, 1980, 63(1): 64-75.
[12]袁洁,马冉冉,张文洁,等. 自然青贮多花黑麦草优良乳酸菌的筛选及对多花黑麦草青贮品质的影响[J]. 草业学报, 2021, 30(11): 132-143.
[13]VAN SOEST P J, ROBERTSON J B, LEWIS B A. Methods for dietary fiber, neutral detergent fiber, and nonstarch polysaccharides in relation to animal nutrition[J]. Journal of Dairy Science, 1991, 74(10):3583-3597.
[14]Association of Official Analytical Chemists. Official methods of analysis[Z]. 15th Ed. Association of Official Analytical Chemists, Artington, Virginia, USA. 1990.
[15]DUBOS M, GILLES K A, HAMILTON J K, et al. Colorimetric method for determination of sugars and related substances [J]. Analytical Chemistry, 1956, 28(3):350-353.
[16]GOTO I, MINSON D J. Prediction of the day matter digestibility of tropical grasses using a pepsin-cellulase assay[J]. Animal Feed Science and Technology, 1977, 2(3): 247-253.
[17]RUSSELL J B, RYCHLIK J L. Factors that alter rumen microbial ecology[J]. Science, 2001, 292(5519): 1119-1122.
[18]买尔哈巴·艾合买提,樊振,李越中,等. 瘤胃中纤维素分解菌的分离、鉴定及其产酶条件的优化[J]. 微生物学报, 2013, 53(5): 470-477.
[19]李干. 产阿魏酸酯酶菌筛选、培养条件及酶学性质研究[D]. 南京:南京林业大学,2011.
[20]卢颖欣,张宁,欧仕益,等. 产阿魏酸酯酶乳酸菌的乳杆菌筛选以及基因克隆[J]. 食品工业科技, 2013, 34(20): 199-203.
[21]荆佩欣.产阿魏酸酯酶乳酸菌的筛选、酶学特性及其在苜蓿青贮中的应用研究[D].兰州:兰州大学,2017.
[22]薛银刚. 鼠李糖乳杆菌的筛选、鉴定及加工特性研究[D]. 扬州:扬州大学, 2006.
[23]章德法,徐为民,徐幸莲. 香肠乳杆菌增殖培养基及培养条件的优化研究[J].食品工业科技, 2009, 30(1): 147-149.
[24]MUCK R E, NADEAU E M G, MCALLISTER T A, et al. Silage review: recent advances and future uses of silage additives[J]. Journal of Dairy Science, 2018, 101(5): 3980-4000.
[25]ZHOU Y, DROUIN P, LAFRENIRE C. Effect of temperature (5-25 ℃) on epiphytic lactic acid bacteria populations and fermentation of whole-plant corn silage[J]. Journal of Applied Microbiology, 2016, 121(3): 657-671.
[26]KUNG L, RANJIT N K. The effect of Lactobacillus buchneri and other additives on the fermentation and aerobic stability of barley silage[J]. Journal of Dairy Science, 2001, 84(5):1149-1155.
[27]FAN X M, ZHAO S S, YANG F Y, et al. Effects of lactic acid bacterial inoculants on fermentation quality, bacterial community, and mycotoxins of alfalfa silage under vacuum or nonvacuum treatment[J]. Microorganisms, 2021, 9(12): 2614.
[28]贾婷婷,吴哲,玉柱. 不同类型乳酸菌添加剂对燕麦青贮品质和有氧稳定性的影响[J].草业科学, 2018, 35(5): 1266-1272.
[29]MUCK R E. Silage microbiology and its control through additives[J]. Revista Brasileira de Zootecnia, 2010, 39(Suppl special): 183-191.
[30]FILYA I, MUCK R E, CONTRERAS-GOVEA F E. Inoculant effects on alfalfa silage: fermentation products and nutritive value[J]. Journal of Dairy Science, 2007, 90(11):5108-5114.
[31]华金玲. 添加乳酸菌对整株水稻秸青贮发酵品质的影响[D]. 哈尔滨:东北农业大学, 2006.
[32]TIAN J P, XU N X, LIU B Y, et al. Interaction effect of silo density and additives on the fermentation quality, microbial counts, chemical composition and in vitro degradability of rice straw silage[J]. Bioresource Technology, 2020, 297:122412.
[33]LYNCH J P, JIN L, LARA E C, et al. The effect of exogenous fibrolytic enzymes and a ferulic acid esterase-producing inoculant on the fibre degradability, chemical composition and conservation characteristics of alfalfa silage[J]. Animal Feed Science and Technology, 2014, 193: 21-31.
[34]NSEREKO V L, SMILEY B K, RUTHERFORD W M, et al. Influence of inoculating forage with lactic acid bacterial strains that produce ferulate esterase on ensilage and ruminal degradation of fiber[J]. Animal Feed Science and Technology, 2008, 145(1):122-135.