Scientia Agricultura Sinica ›› 2012, Vol. 45 ›› Issue (18): 3721-3732.doi: 10.3864/j.issn.0578-1752.2012.18.005

• TILLAGE & CULTIVATION·PHYSIOLOGY & BIOCHEMISTRY·AGRICULTURE INFORMATION TECHNOLOGY • Previous Articles     Next Articles

Long-Lasting Effect of Year-Round Tillage Patterns on Yield and Grain Quality of Wheat in Chengdu Plain of China

 TANG  Yong-Lu, LI  Chao-Su, WU  Chun, MA  Xiao-Ling, HUANG  Gang   

  1. 1.四川省农业科学院作物研究所,成都  61006
    2. 南方丘区节水农业研究四川省重点实验室,成都 610066
  • Received:2012-03-22 Online:2012-09-15 Published:2012-06-18

Abstract: 【Objective】 In order to optimize regional farming system, the long-lasting effect of year-round tillage patterns on wheat yield and quality traits was studied. 【Method】 A long-term field experiment under rice-wheat system was established at Guanghan county in Chengdu Plain of China in 2004 to investigate the long-lasting effect of year-round tillage patterns combing tillage and crop straw management on grain yield and quality of wheat. Treatments designed include no-tillage wheat with rice straw mulching + rotary-tillage rice with no wheat straw (WZRR), no-tillage wheat with rice straw mulching + rotary-tillage rice with no wheat straw + Autumn vegetable (WZRRV), no-tillage wheat with rice straw mulching + no-tillage rice with wheat straw mulching (WZRZ), no-tillage wheat with rice straw mulching + no-tillage rice with wheat straw mulching under raised-bed planting (WRZB), and rotary-tillage wheat + rotary-tillage rice without any straw (CK). 【Result】 The results from 7-year duration showed: Undulating changes amongst years in grain yield and yield components for all treatments were observed while CK had lower yields in most years than other treatments with obvious decreasing trend. Obvious descending trend in grain number per spike and upswing in thousand-grain weight for all treatments were observed. All treatments excluding CK improved available N, P, and K content of up layer soil at major stages of wheat growth and the quality of individual plant and canopy at late stage. Most grain quality traits of wheat of WZRZ and WRZB were slightly higher than or same as that of CK but WZRR and WZRRV showed a downward trend in grain protein content, Zeleny sedimentation volume, and dough stability time.【Conclusion】 No tillage, crop straw retention and their year-round combinations could stable grain yield of wheat and improve soil fertility, with highlights in technological packages of both no tillage and straw retention for wheat and rice.

Key words: wheat, Chengdu Plain, tillage patterns, long-lasting effect, grain yield, grain quality

[1]袁礼勋, 黄  钢, 余  遥, 赵玉庭, 宋治世. 四川盆地免耕稻茬麦增产机理研究. 西南农业学报, 1991, 4(4): 49-56.

Yuan L X, Huang G, Yu Y, Zhao Y T, Song Z S. Yield increasing mechanism of no-tillage agriculture for wheat fallowing rice in Sichuan Basin. Southwest China Journal of Agricultural Sciences, 1991, 4(4): 49-56. (in Chinese)

[2]刘世平, 陈后庆, 陈文林, 戴其根, 霍中洋, 许  轲, 张洪程. 稻麦两熟制不同耕作方式与秸秆还田对小麦产量和品质的影响. 麦类作物学报, 2007, 27(5) : 859-863.

Liu S P, Chen H Q, Chen W L, Dai Q G, Huo Z Y, Xu K, Zhang H C. Comprehensive evaluation of tillage and straw returning on wheat yield and quality in a wheat-rice double cropping system. Journal of Triticeae Crops, 2007,27(5) : 859-863. (in Chinese)

[3]徐阳春, 沈其荣, 雷宝坤, 储国良, 王全洪. 水旱轮作下长期免耕和施用有机肥对土壤某些肥力性状的影响. 应用生态学报, 2000, 11(4): 549-552.

Xu Y C, Shen Q R, Lei B Q, Chu G L, Wang Q H. Effect of long-term no-tillage and application of organic manure on some proper ties of soil fertility in rice/wheat rotation. Chinese Journal of Applied Ecology,2000,11(4): 549-552. (in Chinese)

[4]谢瑞芝, 李少昆, 李小君, 金亚征, 王克如, 初震东, 高世菊. 中国保护性耕作研究分析-保护性耕作与作物生产. 中国农业科学, 2007, 40(9): 1914-1924.

Xie R Z, Li S K, Li X J, Jin Y Z, Wang K R, Chu Z D, Gao S J. The analysis of conservation tillage in China-conservation tillage and crop production: Reviewing the evidence. Scientia Agricultura Sinica, 2007, 40(9): 1914-1924. (in Chinese)

[5]黄  明, 吴金芝, 李友军, 姚宇卿, 张灿军, 蔡典雄, 金  轲. 不同耕作方式对旱作冬小麦旗叶衰老和籽粒产量的影响. 应用生态学报, 2009, 20(6): 1355-1361.

Huang M, Wu J Z, Li Y J, Yao Y Q, Zhang C J, Cai D X, Jin K. Effects of tillage pattern on the flag leaf senescence and grain yield of winter wheat under dry farming. Chinese Journal of Applied Ecology, 2009, 20(6): 1355-1361. (in Chinese)

[6]吴  婕, 朱钟麟, 郑家国, 姜心禄. 秸秆覆盖还田对土壤理化性质及作物产量的影响. 西南农业学报, 2006, 19(2): 192-195.

Wu J, Zhu Z L, Zheng J G, Jiang X L. Influences of straw mulching treatment on soil physical and chemical properties and crop yields. Southwest China Journal of Agricultural Sciences, 2006, 19(2): 192-195. (in Chinese)

[7]陈尚洪, 刘定辉, 朱钟麟, 舒 丽, 王昌全. 四川盆地秸秆还田免耕对土壤养分及碳库的影响. 中国水土保持科学, 2008, 6(Sl), 54-56.

Chen S H, Liu D H, Zhu Z L, Shu L, Wang C Q. Effects of straw-mulching and no-tillage on soil nutrients and carbon pool in Sichuan Basin. Science of Soil and Water Conservation, 2008, 6(Sl), 54-56. (in Chinese)

[8]王改玲, 郝明德, 许继光, 洪坚平. 保护性耕作对黄土高原南部地区小麦产量及土壤理化性质的影响. 植物营养与肥料学报, 2011, 17(3): 539-544.

Wang G L, Hao M D, Xu J G, Hong J P. Effect of conservation tillage on wheat yield and soil physicochemical properties in the south of Loess Plateau. Plant Nutrition and Fertilizer Science, 2011, 17(3): 539-544. (in Chinese)

[9]Hammel J E. Long-term tillage and crop rotation effects on winter wheat production in northern Idano. Agronomy Journal, 1995, 87: 16-22.

[10]高亚军, 李生秀. 旱地秸秆覆盖条件下作物减产的原因及作用机制分析. 农业工程学报, 2005, 21(7):15-19.

Gao Y J, Li S X. Cause and mechanism of crop yield reduction under straw mulch in dryland. Transactions of the CSAE, 2005, 21(7):15-19. (in Chinese)

[11]Govaerts B, Sayre K D, Deckers J. Stable high yields with zero tillage and permanent bed planting? Field Crops Research, 2005, 94: 33-42.

[12]Wang X B, Cai D X, Hoogmoed W B, Oenema O, Perdok U D. Potential effect of conservation tillage on sustainable land use: A review of global long-term studies. Pedosphere, 2006, 16(5): 587-595.

[13]Riley H, Pommeresche R, Eltun R, Hansen S, Korsaeth A. Soil structure, organic matter and earthworm activity in a comparison of cropping systems with contrasting tillage, rotations, fertilizer levels and manure use. Agriculture Ecosystems & Environment, 2008, 124: 275-284.

[14]张  锋, 李  鹏, 张凤云, 李新华, 孙明柱, 高国强. 玉米秸秆还田对不同类型小麦产量和品质的影响. 山东农业科学, 2011(3): 30-32.

Zhang F, Li P, Zhang F Y, Li X H, Sun M Z, Gao G Q. Effects of corn stalk returning on yield and quality of different types of wheat. Shandong Agricultural Sciences, 2011(3): 30-32. (in Chinese)

[15]江晓东, 迟淑筠, 李增嘉, 吕美容, 王 芸, 史桂萍, 迟岩慧, 郑延海. 不同土壤耕作模式对冬小麦籽粒品质的影响. 农业工程学报, 2007, 23(7): 54-57.

Jiang X D, Chi S J, Li Z J, Lü M R, Wang Y, Shi G P, Chi Y H, Zheng Y H. Effects of different tillage patterns on grain quality of winter wheat. Transactions of the CSAE, 2007, 23(7): 54-57. (in Chinese)

[16]李朝苏, 王克如, 谢瑞芝, 付书明, 李少昆, 汤永禄. 稻麦轮作区麦秸还田对水稻产量及主要品质性状的影响. 西南农业学报, 2009, 22(4): 895-900.

Li C S, Wang K R, Xie R Z, Fu S M, Li S Q, Tang Y L. Effect of wheat residue retention on grain yield and main quality characters of rice in rice-wheat cropping system. Southwest China Journal of Agricultural Sciences, 2009, 22(4): 895-900. (in Chinese)

[17]贾树龙, 孟春香, 任图生, 杨云马. 耕作及残茬管理对作物产量及土壤性状的影响. 河北农业科学, 2004, 12(4): 37-42.

Jia S L, Meng C X, Ren T S, Yang Y M. Effect of tillage and residue management on crop yield and soil properties. Journal of Hebei Agricultural Sciences, 2004, 12(4): 37-42. (in Chinese )

[18]庄恒扬, 刘世平, 沈新平, 陈后庆, 陆建飞. 长期少免耕对稻麦产量及土壤有机质与容重的影响. 中国农业科学, 1999, 32(4): 39-44.

Zhuang H Y, Liu S P, Shen X P, Chen H Q, Lu J F. Effect of long-term minima land zero tillages on rice and wheat yields, soil organic matter and bulk density. Scientia Agricultura Sinica, 1999, 32 (4): 39-44. (in Chinese)

[19]王育红, 蔡典雄, 姚宇卿, 王小彬, 吕军杰, 李俊红, 丁志强, 张 洁. 豫西旱坡地长期定位保护性耕作研究—Ⅰ.连年免耕和深松覆盖对冬小麦生育及产量的影响. 干旱地区农业研究, 2009, 27(5): 47-51.

Wang Y H, Cai D X, Yao Y Q, Wang X B, Lv J J, Li J H, Ding Z Q, Zhang J. Study on long-term site specific conservation tillage on sloping dryland in the western part of Henan Ⅰ. Effects of No-till and subsoiling with mulching on growth characteristics and yield of winter wheat. Agricultural Research in the Arid Areas, 2009, 27(5): 47-51. (in Chinese)

[20]赵小容, 赵燮京, 陈先藻. 保护性耕作对土壤水分和小麦产量的影响. 农业工程学报, 2009, 25(S1): 6-10.

Zhao X R, Zhao X J, Chen X Z. Effects of conservation tillage on soil moisture and wheat yield. Transactions of the CSAE, 2009, 25(S1): 6-10. (in Chinese)

[21]Timsina J, Connor D J. Productivity and management of rice-wheat systems: issues and challenges. Field Crops Research, 2001, 69: 93-132.

[22]严 洁, 邓良基, 黄  剑. 保护性耕作对土壤理化性质和作物产量的影响. 中国农机化, 2005(2): 31-34.

Yan J, Deng L J, Huang J. Effect of conservation tillage on soil physicochemical properties and crop yields. Chinese Agricultural Mechanization , 2005(2): 31-34. (in Chinese)

[23]官会林, 沈有信, 段庆钟. 旱地作物免耕垄作土壤供肥性能研究. 西南大学学报:自然科学版, 2007, 29(9): 108-112.

Guan H L, Shen Y X, Duan Q Z. Properties of soil nutrient-supply in no-tillage of raised-bed Planting systems of upland dry-land crops. Journal of Southwest University: Natural Science Edition, 2007, 29(9): 108-112. (in Chinese)

[24]郝建平. 垄作栽培对小麦产量和品质影响的研究. 安徽农业科学, 2007, 35(35) : 11426-11427.

Hao J P. Study on the effects of ridge-tillage cultivation on the yield and quality of wheat. Journal of Anhui Agricultural Sciences, 2007, 35(35): 11426-11427. (in Chinese)

[25]侯海鹏, 于立河, 郭  伟, 薛盈文, 薛文多, 杨永安. 不同耕作方式对黑龙江省春小麦品质的影响. 黑龙江八一农垦大学学报, 2007, 19(6): 18-21.

Hou H P, Yu L H, Guo W, Xue Y W, Xue W D, Yang Y A. Effect of different tillage system on the quality of spring wheat in Heilongjiang Province. Journal of Heilongjiang August First Land Reclamation University, 2007, 19(6): 18-21. (in Chinese)
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