[1] 任长忠, 胡跃高. 中国燕麦学[M]. 北京:中国农业出版社, 2013:7 [2] 赵桂琴, 师尚礼. 青藏高原饲用燕麦研究与生产现状, 存在问题与对策[J]. 草业科学, 2004, 21(11):17-21 [3] 刘伟, 贾玉山, 格根图, 等. 燕麦青贮研究进展[J].草地学报, 2022, 30(12):3175-3183 [4] 张毕阳, 赵桂琴. 燕麦干草与青贮玉米不同组合对绵羊生产性能和消化代谢的影响[J]. 草原与草坪, 2018, 38(2):19-24 [5] ZHAO G, JU Z, CHAI J, et al. Effects of silage additives and varieties on fermentation quality, aerobic stability, and nutritive value of oat silage[J]. Journal of Animal Science, 2018, 96(8):3151-3160 [6] ZHANG M, TAN Z, WANG X, et al. Impact inoculum dosage of lactic acid bacteria on oat and wheat silage fermentation at ambient and low temperatures[J]. Crop and Pasture Science, 2018, 69(12):1225-1236 [7] ZHANG M, WANG X, CUI M, et al. Ensilage of oats and wheatgrass under natural alpine climatic conditions by indigenous lactic acid bacteria species isolated from high-cold areas[J]. PloS One, 2018, 13(2):1371-1386 [8] KUNG L, SHAVER R, GRANT R, et al. Silage review:Interpretation of chemical, microbial, and organoleptic components of silages[J]. Journal of Dairy Science, 2018, 101(5):4020-4033 [9] DING Z, BAI J, XU D, et al. Microbial community dynamics and natural fermentation profiles of ensiled alpine grass Elymus nutans prepared from different regions of the Qinghai-Tibetan plateau[J]. Frontiers in Microbiology, 2020, 11(10):885-870 [10] 琚泽亮, 赵桂琴, 覃方锉, 等. 青贮时间及添加剂对高寒牧区燕麦-箭筈豌豆混播捆裹青贮发酵品质的影响[J]. 草业学报, 2016, 25(6):148-157 [11] 覃方锉, 赵桂琴, 焦婷, 等. 含水量及添加剂对燕麦捆裹青贮品质的影响[J].草业学报, 2014, 23(6):119-125 [12] SANTOS A, AVILA C, SCHWAN R. Selection of tropical lactic acid bacteria for enhancing the quality of maize silage[J]. Journal of Dairy Science, 2013, 96(12):7777-7789 [13] ZHOU Y, DROUIN P, LAFRENIERE 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 [14] 李海萍, 关皓, 贾志锋, 等. 添加麦麸和乳酸菌对川西北高寒地区燕麦裹包青贮品质和有氧稳定性的影响[J].草地学报, 2023, 31(1)302-310 [15] 崔棹茗. 农作物秸秆青贮饲料中耐低温乳酸菌的筛选、鉴定及验证研究[D]. 南京:南京农业大学, 2015:7-8 [16] 杨晓丹. 西藏牧草青贮饲料中耐低温乳酸菌的筛选、鉴定及验证研究[D]. 南京:南京农业大学, 2015:61-62 [17] ZHANG M, LV H, TAN Z, et al. Improving the fermentation quality of wheat straw silage stored at low temperature by psychrotrophic lactic acid bacteria[J]. Animal Science Journal, 2017, 88(2):277-285 [18] 王鹏, 白春生, 刘林, 等. 低温条件下混合乳酸菌制剂对芦苇发酵品质的影响[J]. 草地学报, 2011, 19(1):127-131 [19] 蔺豆豆, 琚泽亮, 柴继宽, 等. 青藏高原燕麦附着耐低温乳酸菌的筛选与鉴定[J]. 草业学报, 2022, 31(5):103-114 [20] 琚泽亮, 赵桂琴, 柴继宽, 等. 不同燕麦品种在甘肃中部的营养价值及青贮发酵品质综合评价[J]. 草业学报, 2019, 28(9):77-86 [21] CAO Y, CAI Y, HIRAKUBO T, et al. Fermentation characteristics and microorganism composition of total mixed ration silage with local food by-products in different seasons[J]. Animal Science Journal, 2011, 82(2):259-266 [22] WANG C, NISHINO N. Effects of storage temperature and ensiling period on fermentation products, aerobic stability and microbial communities of total mixed ration silage[J]. Journal of Applied Microbiology 2013, 114(6):1687-1695 [23] 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 [24] 赵牧其尔, 王志军, 包健, 等. 不同青贮添加剂对饲用谷子青贮品质的影响[J]. 草地学报, 2022, 30(4):1021-1026 [25] 张越, 王小芬, 代佳丽, 等. 低温燕麦青贮乳酸菌复合菌系的构建及其青贮效果[J]. 农业工程学报, 2019, 35(14):308-314 [26] 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[J]. 草业学报, 2011, 20(3):143-148 [27] CAI Y, KUMAI S, OGAWA M, et al. Characterization and identification of Pediococcus species isolated from forage crops and their application for silage preparation[J]. Applied and Environmental Microbiology, 1999, 65(7):2901-2906 [28] LIU Q, CHEN M, ZHANG J, et al. Characteristics of isolated lactic acid bacteria and their effectiveness to improve stylo (Stylosanthes guianensis Sw.) silage quality at various temperatures[J]. Animal Science Journal, 2012, 83(2):128-135 |