Scientia Agricultura Sinica ›› 2011, Vol. 44 ›› Issue (21): 4395-4405.doi: 10.3864/j.issn.0578-1752.2011.21.008

• SOIL & FERTILIZER·WATER-SAVING IRRIGATION·AGROECOLOGY & ENVIRONMENT • Previous Articles     Next Articles

Effects of Different Fertilization and Mulching Cultivation Methods on Yield and Soil Water Use of Winter Wheat on Weibei Dryland

 XUE  Cheng, WANG  Chao-Hui, LI  Fu-Cui, ZHAO  Hu-Bing, ZHOU  Ling, LI  Xiao-Han   

  1. 1.西北农林科技大学资源环境学院,陕西杨凌 712100
  • Received:2010-07-26 Online:2011-11-01 Published:2011-04-18

Abstract: 【Objective】 Research on effects of fertilization and mulching cultivation patterns on yield and water use of winter wheat is recognized to be of great significance in increasing crop yield and water and nutrient efficiency on Weibei dryland.【Method】Field experiments were carried out to study the effects of recommended N fertilization based on soil test, topdressing, ridge-mulching and furrow seeding, and covering soil surface by retention of wheat straw during summer fallow on winter wheat yield, biomass, harvesting index, water use efficiency and annual changes of soil water.【Result】 Results showed that compared to local farmers’ cultivation mode (apply all the fertilizers to soil once before seeding), topdressing of partial N fertilizer (25% of total) in dry-land region increased winter wheat yield by 6%-14% and WUE by 7%-10%, with WUE reaching 12.2 kg•hm-2•mm-1 to 13.6 kg•hm-2•mm-1; ridge-mulching and furrow seeding combined with N reduced topdressing increased winter wheat yield by 15%-41% and WUE by 10%-30%, and the WUE were as high as 12.2 kg•hm-2•mm-1 to 16.5 kg•hm-2•mm-1. Optimizing nitrogen fertilizer application by 1/4 nitrogen fertilizer being topdressed and at the same time using the ridge-mulching and furrow seeding was found to be able to enhance deep soil water usage by winter wheat, increase water content of winter wheat at heading stage and then enhance the biomass and harvesting index at harvest. This method led to a higher soil water consumption over the whole growing season, but the water use efficiency was also increased due to much more increase of grain yield. However, only reducing nitrogen input did not increase the water use efficiency. Nitrogen reduced topdressing combined with ridge-mulching and furrow seeding also increased soil storage of rainfall water during summer fallow and the summer fallow efficiency, by covering furrow soil surface by retention of wheat straw and keeping the ridge mulched plastic film during summer fallow. This method  achieved annual soil water balance and was proved to be able to sustainablely increase winter wheat yield.【Conclusion】Optimizing nitrogen application combined with ridge-mulching and furrow seeding was showed to be the cultivation and fertilization method to increase yield and water use efficiency for winter wheat growing in Weibei dryland area on the Loess Plateau.

Key words: winter wheat, fertilization, ridge-mulching and furrow seeding, grain yield, soil water

[1]李生秀. 旱地: 农业发展的寄托. 自然杂志, 2008, 30(6): 344-349.

Li S X. Drylands: Sustenance for agricultural development in the future. Chinese Journal of Nature, 2008, 30(6): 344-349. (in Chinese)

[2]黄明斌, 李玉山. 黄土塬区旱作冬小麦增产潜力研究. 自然资源学报, 2000, 15(2): 143-148

Huang M B, Li Y S. On potential yield increase of dryland winter wheat on the loess tableland. Journal of Natural Resources, 2000, 15(2): 143-148. (in Chinese)

[3]罗俊杰, 王  勇, 樊廷录. 旱地不同生态型冬小麦水分利用效率对播前底墒的响应. 干旱地区农业研究, 2010, 28(1): 61-65.

Luo J J, Wang Y, Fan T L. Effect of winter wheat yield and WUE with different soil water before sowing in semi-arid areas. Agricultural Research in the Arid Areas, 2010, 28(1): 61-65. (in Chinese)

[4]李  岗, 王虎全, 谢惠民, 韩思明. 渭北旱地小麦生产潜力及开发对策研究. 西北农业大学学报, 1997, 25(3): 26-30.

Li G, Wang H Q, Xie H M, Han S M. Potential productivity and developmental countermeasures of wheat in Weibei dryland. Acta Universitatis Agriculturalis Boreali-Occidentalis, 1997, 25(3): 26-30. (in Chinese)

[5]高焕文, 李问盈, 李洪文. 中国特色保护性耕作技术. 农业工程学报,  2003, 19(3):1-4.

Gao H W, Li W Y, Li H W. Conservation tillage technology with Chinese characteristrics. Transactions of the Chinese Society of Agricultural Engineering, 2003, 19(3): 1-4. (in Chinese)

[6]Baumhardt R L, Jones O R. Residue management and tillage effects on soil-water storage and grain yield of dryland wheat and sorghum for a clay loam in Texas. Soil and Tillage Research, 2002, 68(2): 71-82.

[7]赵聚宝, 梅旭荣, 薛军红, 钟兆站, 张天佑. 秸秆覆盖对旱地作物水分利用效率的影响. 中国农业科学, 1996, 29(2): 59-66.

Zhao J B, Mei X R, Xue J H, Zhong Z Z, Zhang T Y. The effect of straw mulch on crop water use efficiency in dryland. Scientia Agricultura Sinica, 1996, 29(2): 59-66. (in Chinese)

[8]周凌云. 秸秆覆盖对农田土壤物理条件影响的研究. 农业现代化研究, 1997, 18(5): 311-314.

Zhou L Y. Effects of straw mulch on soil physical conditions in field. Research of Agricultural Modernization, 1997, 18(5): 311-314. (in Chinese)

[9]Li F M, Guo A H, Wei H. Effects of clear plastic film mulch on yield of spring wheat. Field Crops Research, 1999, 63: 79-86.

[10]宋秋华, 李凤民, 王  俊, 刘洪升, 李世清. 覆膜对春小麦农田微生物数量和土壤养分的影响. 生态学报, 2002, 22(12): 2125-2132.

Song Q H, Li F M, Wang J, Liu H S, Li S Q. Effect of various mulching durations with plastic film on soil microbial quantity and plant nutrients of spring wheat field in semi-arid Loess Plateau of China. Acta Ecologica Sinica, 2002, 22(12): 2125-2132. (in Chinese)

[11]王彩绒, 田霄鸿, 李生秀. 沟垄覆膜集雨栽培对冬小麦水分利用效率及产量的影响. 中国农业科学,  2004, 37(2): 208-214.

Wang C R, Tian X H, Li S X. Effects of plastic sheet-mulching on ridge for rainwater-harvesting cultivation on WUE and yield of winter wheat. Scientia Agricultura Sinica, 2004, 37(2): 208-214. (in Chinese)

[12]Li S X, Wang Z H, Hu T T, Gao Y J, Stewart B A. Nitrogen in dryland soils of china and its management. Advances in Agronomy, 2009, 101: 123-181.

[13]王圣瑞, 马文奇, 徐文华, 黎青慧, 张福锁. 陕西省小麦施肥现状与评价研究. 干旱地区农业研究,  2003, 21(1): 31-37.

Wang S R, Ma W Q, Xu W H, Li Q H, Zhang F S. Evaluation and present situation of fertilization for wheat in Shaanxi Province. Agricultural Research in the Arid Areas, 2003, 21(1): 31-37. (in Chinese)

[14]胡恒觉, 张仁陟, 黄高宝. 黄土高原旱地农业: 理论、技术、潜力.  北京: 中国农业出版社, 2002: 249-250.

Hu H J, Zhang R Z, Huang G B. Dryland Farming for Loess Plateau. Beijing: China Agricultural Press, 2002: 249-250. (in Chinese)

[15]周  奇, 赵永敢, 张存岭. 氮肥基追比和追肥时期对小麦产量的影响. 安徽农学通报, 2009, 15(3): 92-95.

Zhou Q, Zhao Y G, Zhang C L. Effect of topdressing time and ratio between basic manuring and after manuring of nitrogenous fertilizers on yield of wheat. Anhui Agricultural Science Bulletin, 2009, 15(3): 92-95. (in Chinese)

[16]张仁陟, 李小刚, 胡恒觉. 施肥对提高旱地农田水分利用效率的机理. 植物营养与肥料学报, 1999, 5(3): 221-226.

Zhang R Z, Li X G, Hu H J. The mechanism of fertilization in increasing water use efficiency. Plant Nutrition and Fertilizer Science, 1999, 5(3): 221-226. (in Chinese)

[17]李芳林, 郝明德, 杨  晓, 许晶晶. 黄土旱塬施肥对土壤水分和冬小麦产量的影响. 麦类作物学报, 2010, 30(1): 154-157

Li F L, Hao M D, Yang X, Xu J J. Effects of fertilization on soil water and winter wheat yield in dry land of Loess Plateau. Journal of Triticeae Crops, 2010, 30(1): 154-157. (in Chinese)

[18]王小燕, 张永丽, 于振文. 水氮互作对济麦20籽粒蛋白质品质及氮素和水分利用效率的影响. 麦类作物学报, 2010, 30(2): 318-325.

Wang X Y, Zhang Y L, Yu Z W. Effect of water-nitrogen interaction on grain protein quality, nitrogen use efficiency and water use efficiency of Jimai 20. Journal of Triticeae Crops, 2010, 30(2): 318-325. (in Chinese)

[19]李志军, 赵爱萍, 丁晖兵, 李  科, 简毓峰. 旱地玉米垄沟周年覆膜栽培增产效应研究. 干旱地区农业研究, 2006, 24(2): 12-17.

Li Z J, Zhao A P, Ding H B, Li K, Jian Y F. Production effect of corn under whole-year furrow-film cultivation in dryland. Agricultural Research in the Arid Areas, 2006, 24(2): 12-17. (in Chinese)

[20]邱临静, 王林权, 李生秀, 张素霞. 旱地不同栽培模式和施肥方法对小麦光合产物积累运转的影响. 土壤通报, 2007, 38(3): 513-518.

Qiu L J, Wang L Q, Li S X, Zhang S X. Effect of different cultivation models and fertilization patterns on the accumulation and transportation of photosynthate for wheat in rain-fed land. Chinese Journal of Soil Science, 2007, 38(3): 513-518. (in Chinese)

[21]王俊鹏, 蒋  骏, 韩清芳, 贾志宽, 张久成. 宁南半干旱地区春小麦农田微集水种植技术研究. 干旱地区农业研究, 1999, 17(2): 8-13.

Wang J P, Jiang J, Han Q F, Jia Z K, Zhang J C. Technique of spring wheat cultivation of farmland water micro-collection in semiarid areas of Southern Ningxia. Agricultural Research in the Arid Areas, 1999, 17(2): 8-13. (in Chinese)

[22]李  军, 王龙昌, 孙小文, 王立祥. 宁南半干旱偏旱区旱作农田沟垄径流集水蓄墒效果与增产效应研究. 干旱地区农业研究, 1997, 15(1): 16-20.

Li J, Wang L C, Sun X W, Wang L X. The effect of water harvesting with ridge building on semi-arid fields in South Ningxia. Agricultural Research in the Arid Areas, 1997, 15(1): 16-20. (in Chinese)

[23]徐学选, 穆兴民. 小麦水肥产量效应研究进展. 干旱地区农业研究,  1999, 17(3): 6-12.

Xu X X, Mu X M. Research achievements on the relationship between wheat yield and water and fertilizer. Agricultural Research in the Arid Areas, 1999, 17(3): 6-12. (in Chinese)

[24]李玉山, 苏陕民. 长武王东沟高效生态经济系统的综合研究. 北京: 科学技术文献出版社, 1991.

Li Y S, Su S M. Efficienl Ecological and Economic System in Wangdong Watershed of Changwu County. Beijing: Science and Technology Literature Press, 1991. (in Chinese)

[25]陈君达, 李洪文. 旱地玉米保护性机械化耕作技术和机具体系. 中国农业大学学报, 1998, 3(4): 33-38.

Chen J D, Li H W. Technology and machinery system of mechanized conservation tillage for dryland maize. Journal of China Agricultural University, 1998, 3(4): 33-38. (in Chinese)

[26]余泳昌, 刘晓文, 李明枝, 梁晓辉. 夏玉米免耕秸秆覆盖机械化栽培栽培技术的研究. 河南农业大学学报, 2002, 36(4): 309-312.

Yu Y C, Liu X W, Li M Z, Liang X H. Study on summer corn mechanization cultivating technology no-tillage drilling with mulching. Journal of Henan Agricultural University, 2002, 36(4): 309-312. (in Chinese)

[27]李生秀. 西北地区农业持续发展面临的问题和对策. 干旱地区农业研究, 2003, 21(3): 1-10.

Li S X. Constraints and strategies for agricultural sustainability on the drylands in northwest China. Agricultural Research in the Arid Areas, 2003, 21(3): 1-10. (in Chinese)

[28]柳云龙, 吕  军, 王人潮, 韩小非, 陈永强. 低丘侵蚀红壤垦种绿化后土壤结构、养分积聚和持水性能. 水土保持学报, 2000, 14(4): 79-82.

Liu Y L, Lü J, Wang R C, Han X F, Chen Y Q. Soil structure, nutrient accumulation and water retention character in eroded hilly red soil after virescence. Journal of Soil and Water Conservation, 2000, 14(4): 79-82. (in Chinese)
[1] WANG HaoLin,MA Yue,LI YongHua,LI Chao,ZHAO MingQin,YUAN AiJing,QIU WeiHong,HE Gang,SHI Mei,WANG ZhaoHui. Optimal Management of Phosphorus Fertilization Based on the Yield and Grain Manganese Concentration of Wheat [J]. Scientia Agricultura Sinica, 2022, 55(9): 1800-1810.
[2] GUI RunFei,WANG ZaiMan,PAN ShengGang,ZHANG MingHua,TANG XiangRu,MO ZhaoWen. Effects of Nitrogen-Reducing Side Deep Application of Liquid Fertilizer at Tillering Stage on Yield and Nitrogen Utilization of Fragrant Rice [J]. Scientia Agricultura Sinica, 2022, 55(8): 1529-1545.
[3] WANG YangYang,LIU WanDai,HE Li,REN DeChao,DUAN JianZhao,HU Xin,GUO TianCai,WANG YongHua,FENG Wei. Evaluation of Low Temperature Freezing Injury in Winter Wheat and Difference Analysis of Water Effect Based on Multivariate Statistical Analysis [J]. Scientia Agricultura Sinica, 2022, 55(7): 1301-1318.
[4] ZOU WenXin, SU WeiHua, CHEN YuanXue, CHEN XinPing, LANG Ming. Effects of Long-Term Nitrogen Application on Ammonia Oxidizer Communities for Nitrification in Acid Purple Soil [J]. Scientia Agricultura Sinica, 2022, 55(3): 529-542.
[5] YI YingJie,HAN Kun,ZHAO Bin,LIU GuoLi,LIN DianXu,CHEN GuoQiang,REN Hao,ZHANG JiWang,REN BaiZhao,LIU Peng. The Comparison of Ammonia Volatilization Loss in Winter Wheat- Summer Maize Rotation System with Long-Term Different Fertilization Measures [J]. Scientia Agricultura Sinica, 2022, 55(23): 4600-4613.
[6] WAN HuaQin,GU Xu,HE HongMei,TANG YiFan,SHEN JianHua,HAN JianGang,ZHU YongLi. Effect of CO2 Like Fertilization on Rice Growth by HCO3- in Biogas Slurry [J]. Scientia Agricultura Sinica, 2022, 55(22): 4445-4457.
[7] HAN DongMei,HUANG ShiLian,OUYANG SiYing,ZHANG Le,ZHUO Kan,WU ZhenXian,LI JianGuang,GUO DongLiang,WANG Jing. Optimizing Management Mode of Disease and Nutrient During the Entire Fruit Development for Improving Postharvest Storability of Longan Fruit [J]. Scientia Agricultura Sinica, 2022, 55(21): 4279-4293.
[8] LIU Feng,JIANG JiaLi,ZHOU Qin,CAI Jian,WANG Xiao,HUANG Mei,ZHONG YingXin,DAI TingBo,CAO WeiXing,JIANG Dong. Analysis of American Soft Wheat Grain Quality and Its Suitability Evaluation According to Chinese Weak Gluten Wheat Standard [J]. Scientia Agricultura Sinica, 2022, 55(19): 3723-3737.
[9] WANG ChuHan,LIU Fei,GAO JianYong,ZHANG HuiFang,XIE YingHe,CAO HanBing,XIE JunYu. The Variation Characteristics of Soil Organic Carbon Component Content Under Nitrogen Reduction and Film Mulching [J]. Scientia Agricultura Sinica, 2022, 55(19): 3779-3790.
[10] RU Chen,HU XiaoTao,LÜ MengWei,CHEN DianYu,WANG WenE,SONG TianYuan. Effects of Nitrogen on Nitrogen Accumulation and Distribution, Nitrogen Metabolizing Enzymes, Protein Content, and Water and Nitrogen Use Efficiency in Winter Wheat Under Heat and Drought Stress After Anthesis [J]. Scientia Agricultura Sinica, 2022, 55(17): 3303-3320.
[11] HAN ShouWei,SI JiSheng,YU WeiBao,KONG LingAn,ZHANG Bin,WANG FaHong,ZHANG HaiLin,ZHAO Xin,LI HuaWei,MENG Yu. Mechanisms Analysis on Yield Gap and Nitrogen Use Efficiency Gap of Winter Wheat in Shandong Province [J]. Scientia Agricultura Sinica, 2022, 55(16): 3110-3122.
[12] MA Yue,TIAN Yi,MU WenYan,ZHANG XueMei,ZHANG LuLu,YU Jie,LI YongHua,WANG HaoLin,HE Gang,SHI Mei,WANG ZhaoHui,QIU WeiHong. Response of Wheat Yield and Grain Nitrogen, Phosphorus and Potassium Concentrations to Test-Integrated Potassium Application and Soil Available Potassium in Northern Wheat Production Regions of China [J]. Scientia Agricultura Sinica, 2022, 55(16): 3155-3169.
[13] GAO RenCai,CHEN SongHe,MA HongLiang,MO Piao,LIU WeiWei,XIAO Yun,ZHANG Xue,FAN GaoQiong. Straw Mulching from Autumn Fallow and Reducing Nitrogen Application Improved Grain Yield, Water and Nitrogen Use Efficiencies of Winter Wheat by Optimizing Root Distribution [J]. Scientia Agricultura Sinica, 2022, 55(14): 2709-2725.
[14] MENG Yu,WEN PengFei,DING ZhiQiang,TIAN WenZhong,ZHANG XuePin,HE Li,DUAN JianZhao,LIU WanDai,FENG Wei. Identification and Evaluation of Drought Resistance of Wheat Varieties Based on Thermal Infrared Image [J]. Scientia Agricultura Sinica, 2022, 55(13): 2538-2551.
[15] XU FangLei,ZHANG Jie,LI Yang,ZHANG WeiWei,BO QiFei,LI ShiQing,YUE ShanChao. Effects of Fertilization Methods on Ammonia Volatilization of Spring Maize in Dry Farming on the Loess Plateau [J]. Scientia Agricultura Sinica, 2022, 55(12): 2360-2371.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!