[1] BERNARDES T F,DO R A C. Study on the practices of silage production and utilization on Brazilian dairy farms[J]. Journal of Dairy Science,2014,97(3):1852-1861 [2] SCHAUMANN. Maize silage handbook[EB/OL]. https://www.bonsilage.de/downloads/FIBEL_Bonsilage_MAIS_GB_RGB_170706.pdf,2017-07-06/2023-02-16 [3] YAN Y H,MA Y M,ZHOU S F,et al. Silage technology in Lolium multiflorum[J]. Journal of Agricultural Biotechnology,2014,22(6):762-770 [4] 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 [5] 格根图,尤思涵,贾玉山,等. 天然草地牧草青贮技术研究进展[J]. 草地学报,2016,24(5):953-959 [6] 张颖超,尹守亮,王一炜,等. 木本饲料青贮研究进展[J]. 生物技术通报,2021,37(9):48-57 [7] LAUER J. The "-lages" of corn[EB/OL]. http://www.midwestforage.org/pdf/1135.pdf.pdf,2017-08-15/2023.02.16 [8] FERRARETTO L F,SHAVER R D,LUCK B D. Silage review:Recent advances and future technologies for whole-plant and fractionated corn silage harvesting[J]. Journal of Dairy Science,2018,101(5):3937-3951 [9] LI H Y,XU L,LIU W J,et al. Assessment of the nutritive value of whole corn stover and its morphological fractions[J]. Asian-Australasian Journal of Animal Sciences,2014,27(2):194-200 [10] 夏科,姚庆,李富国,等. 奶牛常用粗饲料的瘤胃降解规律[J]. 动物营养学报,2012,24(4):769-777 [11] HAGE F E L,LEGLAND D,BORREGA N,et al. Tissues lignification,cell wall p-coumaroylation and degradability of maize stems depend on water status[J]. Journal of Agricultural and Food Chemistry,2018,66(19):4800-4808 [12] TIAN S Z,LIU Z,WANG B W,et al. Balancing the use of maize residues for soil amendment and forage[J]. Plant,Soil and Environment,2016,62(11):490-496 [13] COOK D E,BENDER R W,SHINNERS K J,et al. The effects of calcium hydroxide-treated whole-plant and fractionated corn silage on intake,digestion,and lactation performance in dairy cows[J]. Journal of Dairy Science,2016,99(7):5385-5393 [14] JUNG H G,PHILLIPS R L. Putative seedling ferulate ester (sfe) maize mutant:Morphology,biomass yield,and stover cell wall composition and rumen degradability[J]. Crop Science,2010,50(1):403-418 [15] TERLER G,GRUBER L,KNAUS W F. Nutritive value of ensiled maize stover from nine different varieties harvested at three different stages of maturity[J]. Grass and Forage Science,2019,74(1):53-64 [16] CONE J,ENGELS F M. The influence of ageing on cell wall composition and degradability of three maize genotypes[J]. Animal Feed Science and Technology,1993,40(4):331-342 [17] FERREIRA G,MARTIN L L,TEETS C L,et al. Effect of drought stress on in vitro neutral detergent fiber digestibility of corn for silage[J]. Animal Feed Science and Technology,2021,273(2):114803 [18] KATOCH R,TRIPATHI A A,SOOD S. Improving nutritive value and digestibility of maize stover:A review[J]. Forage Research,2017,43(3):174-180 [19] HENDRIKS A T W M,ZEEMAN G. Pretreatments to enhance the digestibility of lignocellulosic biomass[J]. Bioresource Technology,2009,100(1):10-18 [20] 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(1-4):122-135 [21] GUSMÃO J O,LIMA L M,FERRARETTO L F,et al. Effects of hybrid and maturity on the conservation and nutritive value of snaplage[J]. Animal Feed Science and Technology,2021,274:114899 [22] CAPRARO D,ZANFI C,BASSI M,et al. Effect of physical form of whole ear corn silage (coarse vs wet milled) included at high dietary levels (30 vs 40% dry matter) on performance of heavy finishing pigs[J]. Animal Feed Science and Technology,2014,198:271-278 [23] TERLER G,GRUBERA L,KNAUS W F. Effect of variety and harvest date on nutritive value and ruminal degradability of ensiled maize ears[J]. Archives of Animal Nutrition,2017,71(5):333-346 [24] AMARAL-PHILLIPS D M. Bunker silo and drive-over silage pile management[R/OL]. https://afs.ca.uky.edu/files/bunker_silo_and_drive-over_silage_pile_management.pdf,2018-12-04/2023-02-18 [25] HOFFMAN P C,ESSER N M,SHAVER R D,et al. Influence of ensiling time and inoculation on alteration of the starch-protein matrix in high-moisture corn[J]. Journal of Dairy Science,2011,94(5):2465-2474 [26] ETTLE T,SCHWARZ F J. Effect of maize variety harvested at different maturity stages on feeding value and performance of dairy cows[J]. Animal Research,2003,52(4):337-349 [27] FERREIRA G,BURCH A,MARTIN L L,et al. Effect of drought stress on in situ ruminal starch degradation kinetics of corn for silage[J]. Animal Feed Science and Technology,2021,279:115027 [28] BEESON W M,PERRY T W. The comparative feeding value of high moisture corn and low moisture corn with different feed additives for fattening beef cattle[J]. Journal of Animal Science,1958,17(2):368-373 [29] 丁光省. 美国青贮玉米种植情况的调研报告[J]. 中国乳业,2019(205):17-22 [30] AKINS M S,SHAVER R D. Effect of corn snaplage on lactation performance by dairy cows[J]. The Professional Animal Scientist,2014,30(1):86-92 [31] PORDEUS N M,OLIVEIRA E R,TAKIYA C S,et al. Snaplage with microbial inoculant or organic acids has altered fermentative losses,microorganism counts,starch content and improves feed intake,digestibility and modulates ruminal fermentation in lambs[J]. New Zealand Journal of Agricultural Research,https://doi.org/10.1080/00288233.2022.2077770 [32] OLIVEIRA JUNIOR J,DOMINGUES E,BERNARDES T,et al. Intramuscular fat and expression of genes involved in lipid metabolism and gluconeogenesis in Nellore bulls fed snaplage[J]. Journal of Animal Science,2022,100(S3):305-306 [33] ABENI F,PETRERA F,DAL P A,et al. Blood parameters in fattening pigs fed whole-ear corn silage and housed in group pens or in metabolic cages[J]. Journal of Animal Science,2015,93(8):3901-3908 [34] ZANFI C,COLOMBINI S,MASON F,et al. Digestibility and metabolic utilization of diets containing whole-ear corn silage and their effects on growth and slaughter traits of heavy pigs[J]. Journal of Animal Science,2014,92(1):211-219 [35] ZANFI C,SPANGHERO M. Digestibility of diets containing whole ear corn silage for heavy pigs[J]. Livestock Science,2012,145(1-3):287-291 [36] MASON F,PASCOTTO E,ZANFI C,et al. Effect of dietary inclusion of whole ear corn silage on stomach development and gastric mucosa integrity of heavy pigs at slaughter[J]. The Veterinary Journal,2013,198(3):717-719 [37] OLIVEIRA E R,TAKIYA C S,VALLE T A,et al. Effects of exogenous amylolytic enzymes on fermentation,nutritive value,and in vivo digestibility of rehydrated corn silage[J]. Animal Feed Science and Technology,2019,251:86-95 [38] HAWTON J,BACHE D,MCKENZIE B. High-moisture grains for swine[EB/OL]. https://porkgateway.org/resource/high-moisture-grains-for-swine/,2006-06-03/2023.02.16 [39] HOFFMAN P,MUCK R. Inoculating high moisture corn[EB/OL]. https://fyi.extension.wisc.edu/forage/inoculating-high-moisture-corn/,2017-06-29/2023.02.16 [40] FERRARETTO L F,SHAVER R D. Effects of whole-plant corn silage hybrid type on intake,digestion,ruminal fermentation,and lactation performance by dairy cows through a meta-analysis[J]. Journal of Dairy Science,2015,98(4):2662-2675 [41] PERSICHETTI J P,ALMEIDA JU'NIOR G A,COSTA C,et al. Nutritional value of high moisture corn silage in the diet of Holstein cows[J]. Arquivo Brasileiro de Medicina Veterinária e Zootecnia,2014,66(5):1495-1503 [42] CAETANO M,GOULART R S,RIZZO P M,et al. Impact of flint corn processing method and dietary starch concentration on finishing performance of Nellore bulls[J]. Animal Feed Science and Technology,2019,251:166-175 [43] NIVEN S J,ZHU C,COLUMBUS D,et al. Impact of controlled fermentation and steeping of high moisture corn on its nutritional value for pigs[J]. Livestock Science,2007,109(1-3):166-169 [44] DA SILVA N C,NASCIMENTO C F,NASCIMENTO F A,et al. Fermentation and aerobic stability of rehydrated corn grain silage treated with different doses of Lactobacillus buchneri or a combination of Lactobacillus plantarum and Pediococcus acidilactici[J]. Journal of Dairy Science,2018,101(5):4158-4167 [45] CARVALHO-ESTRADA P A,ANDRADE P A M,PAZIANI S F,et al. Rehydration of dry corn preserves the desirable bacterial community during ensiling[J]. FEMS Microbiology Letters,2020,367(17):139 [46] CASTRO L P,PEREIRA M N,DIAS J D L,et al. Lactation performance of dairy cows fed rehydrated and ensiled corn grain differing in particle size and proportion in the diet[J]. Journal of Dairy Science,2019,102(11):9857-9869 [47] CARVALHO B F,ÁVILA C L S,BERNARDES T F,et al. Fermentation profile and identification of lactic acid bacteria and yeasts of rehydrated corn kernel silage[J]. Journal of Applied Microbiology,2017,122(3):589-600 [48] REZENDE A V,RABELO C H S,VEIGA R M,et al. Rehydration of corn grain with acid whey improves the silage quality[J]. Animal Feed Science and Technology,2014,197:213-221 [49] FERRARETTO L F,SILVA F W,FERNANDES T,et al. Influence of hybrid,moisture,and length of storage on the fermentation profile and starch digestibility of corn grain silages[J]. Animal Feed Science and Technology,2018,101(5):4643-4649 [50] AGARUSSI M C N,PEREIRA O G,PIMENTEL F E,et al. Microbiome of rehydrated corn and sorghum grain silages treated with microbial inoculants in different fermentation periods[J]. Scientific Reports,2022,12:16864 [51] MOMBACH M A,PEREIRA D H,PINA D S,et al. Rehydration of dry corn grain as an alternative for conservation purposes[J]. Australian Journal of Crop Science,2018,12(9):1472-1478 [52] BOLSON D C,PEREIRA D H,PINA D S,et al. Corn silage rehydrated with crude glycerin in lambs' diets[J]. Tropical Animal Health and Production,2020,52(6):3307-3314 [53] 张文芝,李平,纪树仁,等. 果穗率对改善玉米青贮饲料发酵品质和营养价值的作用[J]. 中国草地学报,2017,39(6):84-89 [54] PHILIPPEAU C,MICHALET-DOREAU B. Influence of genotype and stage of maturity of maize on rate of ruminal starch degradation[J]. Animal Feed Science and Technology,1997,68(2):25-35 [55] DER BEDROSIAN M C,NESTOR K E,KUNG L. The effects of hybrid,maturity,and length of storage on the composition and nutritive value of corn silage[J]. Journal of Dairy Science,2012,95(9):5115-5126 [56] FERRARETTO L F,SHAVER R D. Meta-analysis:Effect of corn silage harvest practices on intake,digestion,and milk production by dairy cows[J]. The Professional Animal Scientist,2012,28(2):141-149 [57] FERRARETTO L,SHAVER R,LAUER J. Influence of ensiling on the digestibility of whole-plant corn silage[J]. Focus on Forage,2014,16(3):1-3 [58] PAULA E M,SAYLOR B A,GOESER J,et al. Influence of cutting height on nutrient composition and yield of whole-plant cutting height through a meta-analysis[R/OL]. https://www.rockriverlab.eu/wp-content/uploads/CuttingHeightADSAPresentation.pdf,2019-06-23/2023-02-18 [59] SALVATI G G S,SANTOS W P,SILVEIRA J M,et al. Effect of kernel processing and particle size of whole-plant corn silage with vitreous endosperm on dairy cow performance[J]. Journal of Dairy Science,2021,104(2):1794-1810 [60] KUNG L,SHAVER R. Interpretation and use of silage fermentation analysis reports[J]. Focus on Forage,2002,3(13):1-5 [61] 罗盈,罗撄宁,包锦泽,等. 添加剂和青贮密度对玉米穗和玉米芯青贮发酵品质的互作效应分析[J]. 饲料工业,2021,46(2):35-37 [62] 李影正,程榆林,徐璐璐,等. 不同玉米品种(系)的全株、果穗与秸秆青贮特性比较[J]. 草业学报,2022,31(8):144-156 [63] 戴志翔,李征,廖晨星,等. 高湿玉米青贮制作关键点分析[J]. 中国饲料,2022(17):111-116 [64] 刘宇洋,高文韩,孔令芝,等. 化学添加剂对有氧胁迫下湿贮玉米发酵品质和有氧稳定性的影响[J]. 草地学报,2022,30(12):3455-3463 |