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草业学报  2015 

草地划区轮牧饲养原则及设计

DOI: 10.11686/cyxb20150220, PP. 176-184

Keywords: 划区轮牧,区块,载畜率,放牧频次,放牧强度,设计

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Abstract:

为了推进北方草地可持续集约放牧饲养管理,促进完善划区轮牧实验设计及目的,本文总结了放牧国际划区轮牧的10条原则:单位时间的产草量确定载畜率,拔节期指示春季放牧开始时间,开始恢复再生的时间决定放牧时间天数,放牧间隔日数决定放牧频次,计算确定区块数及区块面积,满足牲畜采食行为,充分利用饲草质量和营养,保证牲畜饮水充足,环境友好、易执行、可操作、有弹性。在此基础上,设计了1个划区轮牧实践参考方案,并论述了划区轮牧目标及管理评价标准,讨论了1条北方草地可持续集约养羊畜牧业的发展途径。

References

[1]  Barnes F R, Miller D A, Nelson C J, et al . Forages. An Introduction to Grassland Agriculture (6th ed)[M]. Iowa, United States: Iowa State University Press, 1995.
[2]  White H E, Wolf D D. Controlled Grazing of Virginia’s Pastures[M]. Virginia, United States: Virginia State University, Publication 418-012, 2009.
[3]  Hodgson J, Illius A. The Ecology and Management of Grazing Systems[M]. Oxon: CAB International, 1996.
[4]  Undersander D, Albert B, Cosgrove D, et al . Pasture for Profit: A Guild to Rotational grazing[M]. Madison, United States: University of Wisconsin Extension Service No. A3529, 2002.
[5]  Ren J Z, Mu X D. Tentative discussion on rotational grazing. Scientia Agricultura Sinica, 1964, 14(1): 21-25.
[6]  Wu D H. Study on rotational grazing in summer and autumn. Journal of Southwest University for Nationalities, 1979, 1: 1-11.
[7]  Li B. The preliminary estimate on effect of rotational grazing and continuous grazing on livestock weight. Grassland of China,1982,4: 19-23.
[8]  Zhang Z T, Xu Z X, Han G D. The comparison experiments of seasonal rotational grazing and continuous grazing. Acta Agrestia Sinica, 1991,1(1): 72-77.
[9]  Han G D, Xu Z X, Zhang Z T. The comparison experiments of seasonal rotational grazing and continuous grazing. Journal of Arid Land Resources and Environment,1990,4(4): 85-93.
[10]  Han G D. The foraging behavior of sheep for seasonal rotational grazing and continuous grazing. Grassland of China,1993,2: 1-4.
[11]  The Ministry of Agriculture of People’s Republic of China. The technical regulations of rotational grazing of prairie[S].The industry standard of agriculture in People’s Republic of China NY/T-1343-2007.
[12]  Vallentine J. Grazing Management[M]. New York: Academic Press, 1990.
[13]  Zhou D W,Lin J Q, Qin M L. Extensive grazing and designed feeding with supplemented legume forages on natural grassland. Chinese Journal of Applied Ecology, 2004, 15(7): 1187-1193.
[14]  Kerr P. A Guild to Improved Lamb Growth[M]. Palmerston North: New Zealand Sheep Council, 2000.
[15]  Nicol A M. Livestock Feeding on Pasture[M]. Hamilton, New Zealand: New Zealand Society of Animal Production, 1987.
[16]  Decker A M, Jung G A, Washko J B, et al . Management and Productivity of Perennial Grasses in the Northeast: I. Reed Canarygrass[M]. Morgantown, United States: West Virginia University Agricultural Experiment Station, 1969.
[17]  Shi S D. The discussion of design and calculation method for rotational grazing. Grassland Science of China, 1987,4(2): 47-48.
[18]  Heady H F, Child A D. Rangeland Ecology and Management[M]. San Francisco, United States: Westview Press, 1994.
[19]  Heitschmidt R K, Walker J W. Grazing management: technology for sustaining rangeland ecosystems.Rangelands, 1996, 18: 194-215.
[20]  Holechek J L, Pleper A D, Herbel C H. Range Management Principles and Practices (6th Edition)[M]. Upper Saddle River, New Jersey: Prentice Hall, 2009.
[21]  Briske D, Derner J, Brown J, et al . Rotational grazing on rangelands: Reconciliation of perception and experimental evidence.Rangeland Ecology and Management, 2008, 61(1): 3-17.
[22]  Briske D, Nathan F, Sayre L, et al . Origin, persistence, and resolution of the rotational grazing debate integrating human dimensions into rangeland research.Rangeland Ecology and Management, 2011, 64(4): 325-334.
[23]  Zou H, Wang X G, Gong A Q. et al . The experiments of rotational grazing using electric fence in winter and spring grassland. Chinese Qinghai Journal of Animal and Veterinary Sciences, 1998, 28(4): 29-30.
[24]  Li Q F, Han G D, Ao T G, et al . Approach on restoration mechanism of rotational grazing system on desert stepp. Transactions of the Chinese Society of Agricultural, 2003, 19(4): 224-227.
[25]  Sa R L, Hou X Y, Li J X, et al . Organic carbon storage in vegetation-soil systems of typical grazing degraded steppes. Acta Prataculturae Sinica, 2013,22(5): 18-26.
[26]  An H, Xu K. The effect of grazing disturbance on soil properties in desert steppe. Acta Prataculturae Sinica, 2013,22(4): 35-42.
[27]  Li J H, Li Z Q, Ren J Z. The effects of grazing on grassland plants.Acta Prataculturae Sinica, 2002,11(1): 4-11.
[28]  Du Y G, Liang D Y, Cao G M, et al . Effect on incrassation of mattic epipedon and pasture nutrien-t moisture using by grazing in alpine Kobresia meadow .Acta Prataculturae Sinica,2008,17(3): 146-150.
[29]  Wang C T, Wang Q L, Jing Z C, et al . Vegetation roots and soil physical and chemical characteristic changes in Kobresia pygmaca meadow under different grazing gradients.Acta Prataculturae Sinica, 2008,17(5):9-15.
[30]  Wu G L, Du G Z. Discussion on ecological construction and sustainable development of degraded Alpine grassland ecosystem of the Qinghai Tibetan plateau. Chinese Journal of Nature, 2007, 29(3): 15-19.
[31]  Jiang X L, Zhang W G, Yang Z Y, et al . The influence of disturbance on community structure and plant diversity of alpine meadow. Acta Botanica Boreali-Occidentalia Sinica, 2009, 23(9): 1479-1485.
[32]  Geng W C, Ma X Y, Ma N. Models of rotational grazing on sown pastures in Yunnan-Guizhou Plateau of China. Acta Prataculturae Sinica, 2000,9(3):58-65.
[33]  Sollenberger L E, Vanzant E S. Interrelationships among forage nutritive value and quantity and individual animal performance. Crop Science, 2011, 51: 420-432.
[34]  Zhou D W, Sun H X, Liu C L, et al . Some critical question for grassland farming in northern China. Pratacultural Science, 2009, 26(11): 1-11.
[35]  Zhou D W, Jiang S C, Wang P. The problems and strategies for grassland management in northern China. Grassland of China, 2004, 26(1): 57-64.
[36]  Zhou D W, Sun H X, Zhong R Z, et al . An introduction to the pasture-straw animal husbandry of agro-pastoral ecotone in northeast China. Soil and Crop, 2012,1(2): 100-109.
[37]  Zhou D W, Zhong R Z, Sun H X, et al . Grassland farming system: components, structure and function. Acta Agrestia Sinica, 2013,21(2): 207-203.
[38]  邢旗, 双全, 那日苏, 等.草原划区轮牧技术应用研究. 内蒙古草业, 2003, 15(1): 1-3.
[39]  任继周.高山草原各型划区轮牧规划问题的研究. 甘肃农业大学学报, 1961, 3(1): 1-12.
[40]  任继周, 牟新待.试论划区轮牧.中国农业科学, 1964, 14(1): 21-25.
[41]  伍典汉.夏秋季划区轮牧试验研究. 西南民族大学学报, 1979, 1: 1-11.
[42]  李斌.划区轮牧与连续放牧对牧草和牲畜增重影响的初步估价. 中国草原, 1982, 4: 19-23.
[43]  章祖同, 许志信, 韩国栋.划区轮牧和季节连牧的比较试验. 草地学报, 1991, 1(1): 72-77.
[44]  周道玮, 孙海霞, 刘春龙, 等.中国北方草地畜牧业的理论基础问题. 草业科学, 2009, 26(11): 1-11.
[45]  周道玮, 姜世成, 王平.中国北方草地生态系统管理问题与对策. 中国草地, 2004, 26(1): 57-64.
[46]  Bertelsen S, Aaulkner B, Buskirk D. Bees-cattle performance and forage characteristics of continuous, 6-Paddock, and 11-Paddock grazing systems. Journal of Animal Science, 1993, 71(6):1381-1389.
[47]  Oates L D, Undersander D J, Gratton C, et al . Management-intensive rotational grazing enhances forage production and quality of subhumid cool-season pastures. Crop Science, 2011, 51(2): 892-901.
[48]  Xing Q, Shuang Q, Na R S, et al . The application research on technology of rotational grazing in grassland. Inner Mongolia Prataculture, 2003, 15(1): 1-3.
[49]  Holechek L, Gomes H, Molinar F, et al . Grazing intensity: critique and approach. Ranglands, 1998, 20(5): 15-18.
[50]  Ren J Z. Research on planning issues of rotational grazing in alpine grassland. Journal of Gansu Agricultural University, 1961, 3(1): 1-12.
[51]  韩国栋, 许志信, 章祖同.划区轮牧和季节连续放牧的比较研究. 干旱区资源与环境, 1990, 4(4): 85-93.
[52]  韩国栋.划区轮牧和季节连续放牧绵羊的牧食行为. 中国草地, 1993, 2: 1-4.
[53]  中华人民共和国农业部.草原划区轮牧技术规程[S].中华人民共和国农业行业标准NY/T-1343-2007.
[54]  周道玮, 林佳乔, 覃盟琳. 东北农牧交错区绵羊的自由放养与设计饲养. 应用生态学报, 2004, 15(7): 1187-1193.
[55]  史生德. 划区轮牧设计计算方法的探讨. 中国草业科学, 1987, 4(2): 47-48.
[56]  邹华, 王湘国, 巩爱歧, 等. 冬春草地应用电围栏划区轮牧试验. 青海畜牧兽医杂志, 1998, 28(4): 29-30.
[57]  李勤奋, 韩国栋, 敖特根, 等.划区轮牧制度在草地资源可持续利用中的作用研究. 农业工程学报, 2003, 19(4): 224-227.
[58]  萨茹拉, 侯向阳, 李金祥, 等.不同放牧退化程度典型草原植被—土壤系统的有机碳储量. 草业学报, 2013, 22(5): 18-26. 浏览
[59]  安慧, 徐坤. 放牧干扰对荒漠草原土壤性状的影响. 草业学报, 2013, 22(4): 35-42. 浏览
[60]  李金花, 李镇清, 任继周. 放牧对草原植物的影响. 草业学报, 2002, 11(1): 4-11.
[61]  杜岩功, 梁东营, 曹广民, 等. 放牧强度对嵩草草甸草毡表层及草地营养和水分利用的影响. 草业学报, 2008, 17(3): 146-150.
[62]  王长庭, 王启兰, 景增春, 等. 不同放牧梯度下高寒小嵩草草甸植被根系和土壤理化特征的变化. 草业学报, 2008, 17(5): 9-15. 浏览
[63]  武高林, 杜国祯. 青藏高原退化高寒草地生态系统恢复和可持续发展探讨. 自然杂志, 2007, 29(3): 15-19.
[64]  江小蕾, 张卫国, 杨振宇, 等. 不同干扰类型对高寒草甸群落结构和植物多样性的影响. 西北植物学报, 2009, 23(9): 1479-1485.
[65]  耿文诚, 马兴跃, 马宁. 云贵高原人工草地划区轮牧模式研究. 草业学报, 2000, 9(3): 58-65.
[66]  周道玮, 孙海霞, 钟荣珍, 等.东北农牧交错区“草地-秸秆畜牧业”概论. 土壤与作物, 2012, 1(2): 100-109.
[67]  周道玮, 钟荣珍, 孙海霞, 等.草地畜牧业系统: 要素、结构和功能. 草地学报, 2013, 21(2): 207-203.

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