[1] Orr R J, Rutter S M, Yarrow N H. Changes in ingestive behaviour of yearling dairy heifers due to changes in sward state during grazing down of rotationally stocked ryegrass or white clover pastures[J]. Applied Animal Behaviour Science,2004,87(3):205-222
[2] Vickery P J. Grazing and net primary production of a temperate grassland[J]. Journal of Applied Ecology,1972,9(1):307-314
[3] Seither M, Wrage N, Isselstein J. Sward composition and grazer species effects on nutritive value and hebage accumulation[J]. Agronomy Journal,2012,104(2):497-506
[4] Grigoli A D, Todaro M, Miceli G D, et al. Effects of continuous and rotational grazing of different forage species on ewe milk production[J]. Small Ruminant Research,2012,106(8):29-36
[5] 李茜若,张军,张彩琴,等. 内蒙古典型草原羊草生长高度与气象因子的相关性研究[J]. 中国草地学报,2015,37(4):74-79
[6] 张新杰,韩国栋,丁海君,等. 短花针茅荒漠草原不同载畜率的土壤呼吸与植物地下生物量的关系[J].草地学报,2015,23(3):483-488
[7] 杨阳,韩国栋,李元恒,等. 内蒙古不同草原类型土壤呼吸对放牧强度及水热因子的响应[J]. 草业学报,2012,21(6):8-14
[8] 陈志芳,贾平洋,杨阳,等. 放牧强度对不同草地类型生态系统气体交换影响的研究[J]. 草地学报,2012,20(3):464-470
[9] 萨仁高娃,曹芙,王成杰,等. 短期放牧强度对典型草原土壤有机碳及pH值的影响[J]. 畜牧与饲料科学,2014(3):5-7
[10] 武倩,韩国栋,王成杰,等. 短期内混合放牧对荒漠草原植物群落特征的影响[J]. 草原与草业,2015,27(1):40-45
[11] 王静,赵萌莉,韩国栋,等. 内蒙古典型草原不同功能群生产力对凋落物去除的响应[J]. 草业学报,2013,22(6):31-38
[12] 阿拉木斯,敖特根,王成杰,等. 克氏针茅草原种群特征对放牧强度的响应[J]. 中国草地学报,2012,34(5):35-39
[13] 薛艳林,殷国梅,张英俊,等. 冷蒿形态对放牧强度的响应策略[J]. 中国草地学报,2014,36(6):18-22
[14] 张英俊,杨高文,刘楠,等. 草原碳汇管理对策[J]. 草业学报,2013,22(2):290-299
[15] 任继周,梁天刚,林慧龙,等. 草地对全球气候变化的响应及其碳汇潜势研究[J]. 草业学报,2011,20(2):1-22
[16] 乌兰,韩国栋,乔江,等. 生态地境和状态-转换模型的研究综述[J]. 中国草地学报,2014,36(3):90-97
[17] 姜超,张英俊,罗海玲,等. 内蒙古荒漠草原区分采食成分的最佳蜡层指示剂组合[J]. 草地学报,2012,20(3):576-582
[18] 肖金玉,侯扶江,于应文,等. 链烷技术估测放牧动物牧草采食量与消化率[J]. 草业学报,2005,14(4):125-130
[19] McSherry M E, Ritchie M E. Effects of grazing on grassland soil carbon: a global review[J]. Global Change Biology,2013,19(5):1347-1357
[20] Wang W, Fang J. Soil respiration and human effects on global grasslands[J]. Global And Planetary Change,2009,67(1):20-28
[21] Keyes S D. High resolution synchrotron imaging of wheat root hairs growing in soil and image based modelling of phosphate uptake[J]. New phytologist,2013,198(4):1023-1029
[22] Poorter H, Nicklas K J. Biomass allocation to leaves, stems and roots: meta-analyses of interspecific variation and environmental control[J]. New Phytologist,2012,193(1):30-50
[23] 希吉日塔娜. 不同放牧制度和轮牧时间对短花针茅荒漠草原植被的影响[D]. 内蒙古:内蒙古农业大学,2013:9-16
[24] 周道玮,钟荣珍,孙海霞,等. 草地畜牧业系统:要素、结构和功能[J]. 草地学报,2013,21(2):207-213
[25] 穆少杰,周可新,陈奕兆,等. 草地生态系统碳循环及其影响因素研究进展[J]. 草地学报,2014,22(3):439-447
[26] 刘晓妮,李刚,赵祥,等. 放牧对赖草群落生物量及植物多样性的影响[J]. 草地学报,2014,22(5):942-948
[27] 殷国梅,张英俊,赵艳红,等. 无芒隐子草叶表皮微形态对放牧强度的响应[J]. 草地学报,2014,22(4):816-821
[28] 郑伟,李世雄,董全民,等. 放牧方式对环青海湖高寒草原群落特征的影响[J]. 草地学报,2013,21(5):869-874
[29] Ljubicic I, Britvec M, Jelaska S D, et al. Plant diversity and chemical soil composition of rocky pastures in relation to the sheep grazing intensity on the northern Adriatic islands (Croatia)[J]. Acta Botanica Croatica,2014,73(2):419-435 [30 ]Da Silva, Damian F. Pasture grazing intensity and presence or absence of cattle dung input and its relationships to soybean nutrition and yield in integrated crop-livestock systems under no-till[J]. European Journal of Agronomy,2014,57(S1):84-91
[31] Rong Y, Yuan F, Ma L. Effectiveness of exclosures for restoring soils and vegetation degraded by overgrazing in the Junggar Basin, China[J]. Grassland Science,2014,60(2):118-124
[32] Currie P O. Cattle weight gain comparisons under seasonlong and rotation grazing systems [C]//Hyder D N,ed. Proceedings of the first international rangeland congress. USA: Denver,Colorado,1978:579-580
[33] Heady H F, Child R D. Rangeland ecology and management[J]. Ecology,1994,27(1):529-538
[34] Cutrim Junior J A A, Cavalcante A C R, Candido M J D, et al. Biomass flow in Tifton-85 bermudagrass canopy subjected to different management strategies under rotational grazing with dairy goats[J]. Revista Brasileira De Zootecnia,2013,42(2):77-86
[35] Jun H, Uta D, Lin L J, et al. Effects of rotational and continuous grazing on herbage quality, feed intake and performance of sheep on a semi-arid grassland steppe[J]. Archives of Animal Nutrition,2013,67(1):62-76
[36] Lee H, Alday J G, Rose R J, et al. Long-term effects of rotational prescribed burning and low-intensity sheep grazing on blanket-bog plant communities[J]. Journal of Applied Ecology,2013,50(3):625-635
[37] Zanine A D M, Nascimento Júnior D D, Sousa B M D L, et al. Tillering dynamics in Guinea grass pastures subjected to management strategies under rotational grazing[J]. Revista Brasileira De Zootecnia,2013,42(3):155-161
[38] Silveira M L, Liu K, Sollenberger L E, et al. Short-term effects of grazing intensity and nitrogen fertilization on soil organic carbon pools under perennial grass pastures in the southeastern USA[J]. Soil Biology & Biochemistry,2013,58(2):42-49
[39] Vendramini J M B, Sollenberger L E, Lamb G C, et al. Forage Accumulation, Nutritive Value, and Persistence of ‘Mulato Ⅱ’ Brachiariagrass in Northern Florida[J]. Crop Science,2012,52(2):914-922
[40] Zhou L, Zhu Y, Yang G, et al. Quantitative evaluation of the effect of prohibiting grazing policy on grassland desertification reversal in northern China[J]. Environmental Earth Sciences,2013,68(8):2181-2188
[41] McCarthy B, Pierce K M, Delaby L, et al. The effect of stocking rate and calving date on grass production, utilization and nutritive value of the sward during the grazing season[J]. Grass & Forage Science,2013,68(3):364-377
[42] Han G D, Wei Z J. Experiment on Rotational Grazing System in Stipa breviflora Desert Steppe[J]. Journal of Inner Mongola Institute of Agriculture & Animal Husbandry,2001,(1)
[43] Endo T, Mitani T, Takahashi M, et al. Effect of set stocking and rotational grazing by lactating dairy cows on sward structure, herbage production and utilization[J]. Japanese Journal of Grassland Science,2009,55(1):9-14
[44] Hull J L, Meyer J H, Ca R. Rotation and continuous grazing on irrigated pasture using beef steers[J]. Journal of Animal Science,1967,26(5):1160-1164
[45] Chillo V, Ojeda R A, Anand M, et al. A novel approach to assess livestock management effects on biodiversity of drylands[J]. Ecological Indicators,2015,50:69-78
[46] Molle G, Giovanetti V, Fois N. Responses to condensed tannins of flowering sulla (Hedysarum coronarium L.) grazed by dairy sheep[J]. Livestock Science,2009,123(2-3):138-146
[47] Nie Z N, Zollinger R P, Behrendt R. Impact of deferred grazing and fertilizer on herbage production, soil seed reserve and nutritive value of native pastures in steep hill country of southern Australia[J]. Grass & Forage Science,2015,70(3):394-405
[48] Sanderman J, Reseigh J, Wurst M, et al. Impacts of rotational grazing on Soil Carbon in Native Grass-Based Pastures in Southern Australia[J]. Plos One,2015,10(8):e0136157
[49] Jakoby O, Quaas M F, Baumgärtner S, et al. Adapting livestock management to spatio-temporal heterogeneity in semi-arid rangelands[J]. Journal of Environmental Management,2015,162(1):179-189
[50] Teague W R, Dowhower S L, Baker S A, et al. Soil and herbaceous plant responses to summer patch burns under continuous and rotational grazing[J]. Agriculture Ecosystems & Environment,2010,137(1-2):113-123
[51] Jacobo E J, Rodríguez A M, Bartoloni N, et al. Rotational grazing effects on rangeland vegetation at a farm Scale[J]. Rangeland Ecology & Management,2006,59(3):249-257
[52] Wang C J, Tas B M, Glindemann T, et al. Rotational and continuous grazing of sheep in the Inner Mongolian Steppe of China[J]. Journal of Animal Physiology & Animal Nutrition,2009,93(2):245-252
[53] Chillo V, Ojeda R. Disentangling ecosystem responses to livestock grazing in drylands[J]. Agriculture Ecosystems & Environment,2014,197(1):271-277
[54] Bretherton S, Tordoff G T, Boddy L. Compensatory growth of Phanerochaete velutina mycelial systems grazed by Folsomia candida (Collembola)[J]. Fems Microbiology Ecology,2006,58(1):33-40
[55] Van der Graaf A J, Stahl J, Bakker J P. Compensatory growth of Festuca rubra after grazing: can migratory herbivores increase their own harvest during staging?[J]. Functional Ecology,2005,19(6):961-969
[56] 周道玮,钟荣珍,孙海霞,等. 草地划区轮牧饲养原则及设计[J]. 草业学报,2015,24(2):176-184
[57] Paine L K, Undersander D, Casler M D. Pasture growth, production, and quality under rotational and continuous grazing management[J]. Journal of Production Agriculture,1999,12 (4):569-577
[58] Sigua G C, Chase C C, Albano J. Soil-extractable phosphorus and phosphorus saturation threshold in beef cattle pastures as affected by grazing management and forage type[J]. Environmental Science & Pollution Research,2014,21(3):1691-1700
[59] Dicke M, Loon J J A. Multitrophic effects of herbivore-induced plant volatiles in an evolutionary context [J]. Entomologia Experimentalis Et Applicata,2000,97(3):237-249
[60] Bailey B L, Griggs T C, Rayburn E B, et al. Beef heifer growth and reproductive performance following two levels of pasture allowance during the fall grazing period[J]. Journal of Animal Science,2014,92(8):3659-3669
[61] Guggeri D, Meikle A, Carriquiry M, et al. Effect of different management systems on growth, endocrine parameters and puberty in Hereford female calves grazing Campos grassland[J]. Livestock Science,2014,167(9):455-462
[62] Vinton M A, Hartnett D C. Effects of bison grazing on Andropogon gerardii and Panicum virgatum in burned and unburned Tallgrass Prairie[J]. Oecologia,1992,90(3):374-382
[63] Trlica M J, Rittenhouse L R. Grazing and Plant Performance[J]. Ecological Applications,1993,3(1):21-23
[64] Mahieu M. Effects of stocking rates on gastrointestinal nematode infection levels in a goat/cattle rotational stocking system[J]. Veterinary Parasitology,2013,198(1-2):136-144
[65] Whitley N C, Oh S H, Lee S J, et al. Impact of integrated gastrointestinal nematode management training for U.S. goat and sheep producers[J]. Veterinary Parasitology,2014,200(3-4):271-275
[66] Brito D L, Dallago B S L, Louvandini H, et al. Effect of alternate and simultaneous grazing on endoparasite infection in sheep and cattle[J]. Revista Brasileirade Parasitologia Veterinaria,2013,22(4):485-494
[67] Aumont G, Gruner L. Population evolution of the free-living stage of goat gastrointestinal nematodes on herbage under tropical conditions in Guadeloupe (French West Indies)[J]. International Journal for Parasitology,1989,19(5):539-546
[68] Barger I A, Siale K, Banks D J D, et al. Rotational grazing for control of gastrointestinal nematodes of goats in a wet tropical environment[J]. Veterinary Parasitology,1994,53(1-2):109-116
[69] Colvin A F, Walkden-Brown S W, Knox M R. Role of host and environment in mediating reduced gastrointestinal nematode infections in sheep due to intensive rotational grazing[J]. Veterinary Parasitology,2012,184(2):180-192
[70] Jackson R D, Oates L G, Schacht W H, et al. Nitrous oxide emissions from cool-season pastures under managed grazing[J]. Nutrient Cycling in Agroecosystems,2015,101(3):365-376
[71] Farruggia A, Pomiès D, Coppa M, et al. Animal performances, pasture biodiversity and dairy product quality: How it works in contrasted mountain grazing systems[J]. Agriculture Ecosystems & Environment,2014,185(3):231-244
[72] Burkea J M, Millerb J E, Terrillc T H. Impact of rotational grazing on management of gastrointestinal nematodes in weaned lambs[J]. Veterinary Parasitology,2009,163(1-2):67-72
[73] Schmutz M, Weindl P, Carrasco S. The effects of breed, grazing system and concentrate supplementation on the fatty acid profile of the musculus longissimus dorsi and the kidney fat of steers[J]. Archiv Fur Tierzucht-Archives of Animal Breeding,2014,57(23):1-16
[74] Forbes T D, Hodgson J. The reaction of grazing sheep and cattle to the presence of dung from the same or the other species[J]. Grass & Forage Science,1985,40(2):177-182
[75] Abaye O, Allen V G. Grazing sheep and cattle together or separately: Effect on soils and plants[J]. Agronomy Journal,1997,89(3):380-386
[76] Critchley C N R, Adamson H F, Mclean B M L, et al. Vegetation dynamics and livestock performance in system-scale studies of sheep and cattle grazing on degraded upland wet heath[J]. Agriculture Ecosystems & Environment,2008,128(1-2):59-67
[77] Fraser M D, Vale J E, Dhanoa M S. Alternative upland grazing systems: Impacts on livestock performance and sward characteristics[J]. Agriculture Ecosystems & Environment,2013,175(8):8-20
[78] Wrage N, Strodthoff J, Cuchillo H M, et al. Phytodiversity of temperate permanent grasslands: ecosystem services for agriculture and livestock management for diversity conservation[J]. Biodiversity & Conservation,2011,20(14):3317-3339
[79] Sebastià M, Bello F, Puig L, et al. Grazing as a factor structuring grasslands in the Pyrenees[J]. Applied Vegetation Science,2008,11(2):215-222
[80] Marion B, Bonis A, Bouzillé J B. How much do grazing-induced heterogeneity impact plant diversity and richness in wet grasslands?[J]. Ecoscience,2010,17(3):229-239
[81] Sandford S, Scoones I. Opportunistic and conservative pastoral strategies: Some economic arguments[J]. Ecological Economics,2006,58(1):1-16
[82] Campbell B M, Gordon I J, Luckert M K, et al. In search of optimal stocking regimes in semi-arid grazing lands: One size does not fit all[J]. Ecological Economics,2006,60(1):75-85
[83] Euclides V P B, Montagner D B, Difante G D S, et al. Sward structure and livestock performance in guinea grass cv: Tanzania pastures managed by rotational stocking strategies[J]. Scientia Agricola,2014,71(6):451-457
[84] 陈辰,王靖,潘学标,等. CENTUR模型在内蒙古草地生态系统的适用性评价[J]. 草地学报,2012,20(6):1011-1019
[85] 方广玲,香宝,唐古拉,等. 基于可持续发展分析的西藏地区生态监测指标构建[J]. 草地学报,2015,1(1):5-13
[86] 李惠梅,张安录. 基于结构方程模型的三江源牧户草地生态环境退化认知研究[J]. 草地学报,2015,23(4):679-688
[87] 文石林,刘强,荣湘民,等. 南方草食动物生产预测模型——以湖南道县为例[J]. 草地学报,2012,20(1):183-188
[88] Sabatier R, Oates L G, Brink G E, et al. Grazing in an uncertain environment: Modeling the Trade-Off between production and robustness[J]. Agronomy Journal,2015,107(1):257-264
[89] 张旭,冯琦胜,梁天刚. 玛曲县草畜平衡优化方案与管理决策初探[J]. 草地学报,2012,20(1):23-30 |