Scientia Agricultura Sinica ›› 2012, Vol. 45 ›› Issue (14): 2886-2894.doi: 10.3864/j.issn.0578-1752.2012.14.011

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

Effect of Optimized Fertilization on Grain Yield of Rice and Nitrogen Use Efficiency in Paddy Fields with Different Basic Soil Fertilities

 ZENG  Xiang-Ming, HAN  Bao-Ji, XU  Fang-Sen, HUANG  Jian-Liang, CAI  Hong-Mei, SHI  Lei   

  1. 1.华中农业大学农业部长江中下游耕地保育重点实验室,武汉 430070
    2.华中农业大学作物生理生态与栽培研究中心,武汉 430070
  • Received:2011-12-05 Online:2012-07-15 Published:2012-03-07

Abstract: 【Objective】 The effects of optimized fertilization on grain yield of rice and nitrogen use efficiency in paddy fields with different basic soil fertilities in Jianghan plain of China were studied. 【Method】 Three-year field trials were carried out to investigate the differences in grain yield, soil N dependent rate (SNDR), N fertilization contribution rate (NCR) and the N fertilization efficiency of the popular middle rice variety Fengliangyouxiang1 in three treatments, including modified farmers’ fertilizer practice (MFP), farmers’ fertilizer practice (FFP) and the control, in Jianghan plain, China. 【Result】 The results showed that the grain yield of MFP was the highest among all the three different nitrogen fertilizer treatments in all the field spots with different basic soil fertilities. The grain yield of MFP increased by about 6.9% and 5.0% in the high soil fertility field (HSF) and low soil fertility field (LSF) compared with the treatment of FFP, respectively; and about 17.3% and 30.3% in HSF and LSF compared with the control, respectively. Moreover, the N recovery efficiency (NRE), N agronomic efficiency (NAE) and partial factor productivity of applied N (PEPN) of MFP increased more greatly compared with that of FFP. The contribution of N fertilization to the grain yield in the LSF was significantly more than that in the HSF; however, low soil N dependent rate and good grain yield potential were observed in the LSF. 【Conclusion】 Optimized fertilization reduced the relative contribution of basic soil fertilities to the grain yield of rice and increased N fertilization efficiency.

Key words: basic soil fertility, nitrogen fertilization, modified farmers&rsquo, fertilizer practice, grain yield of rice, nitrogen use efficiency

[1]申建波, 张福锁. 水稻养分资源综合管理理论与实践. 北京: 中国农业大学出版社, 2006: 236-263.

Shen J B, Zhang F S. Theory and Practice of Nutrient Resources Management on Rice. Beijing: China Agricultural University Press, 2006: 236-263. (in Chinese)

[2]彭少兵, 黄见良, 钟旭华, 杨建昌, 王光火, 邹应斌, 张福锁, 朱庆森, Roland Buresh, Christian Witt. 提高中国稻田氮肥利用率的研究策略. 中国农业科学, 2002, 35(9): 1095-1103.

Peng S B, Huang J L, Zhong X H, Yang J C, Wang G H, Zou Y B, Zhang F S, Zhu Q S, Buresh R, Witt C. Research strategy in improving fertilizer-nitrogen use efficiency of irrigated rice in China. Scientia Agricultura Sinica, 2002, 35(9): 1095-1103. (in Chinese)

[3]Peng S B, Buresh R J, Huang J L, Yang J C, Zou Y B, Zhong X H, Wang G H, Zhang F S. Strategies for overcoming low agronomic nitrogen use efficiency in irrigated rice systems in China. Field Crops Research, 2006, 96: 37-47.

[4]张福锁, 马文奇. 肥料投入水平与养分资源高效利用的关系. 土壤与环境, 2000, 9(2): 154-157.

Zhang F S, Ma W Q. The relationship between fertilizer input level and nutrient use efficiency. Soil and Environmental Sciences, 2000, 9(2): 154-157. (in Chinese)

[5]杨 利, 甘 曦, 余延丰, 范先鹏, 熊桂云, 张富林. 江汉平原稻区中稻养分利用效率的初步研究. 湖北农业科学, 2010, 49(10): 2380-2383.

Yang L, Gan X, Yu Y F, Fan X P, Xiong G Y, Zhang F L. Preliminary study on nutrient used efficiency of mid-rice in the Jianghan     plain. Hubei Agricultural Sciences, 2010, 49(10): 2380-2383. (in Chinese)

[6]王 卫, 谢小立, 谢永宏, 陈惟财. 不同施肥制度对双季稻氮吸收、净光合速率及产量的影响. 植物营养与肥料学报, 2010, 16(3): 752-757.

Wang W, Xie X L, Xie Y H, Chen W C. Effects of different fertilization on nitrogen uptake, net photosynthesis rate and yield of rice. Plant Nutrition and Fertilizer Science, 2010, 16(3): 752-757. (in Chinese)

[7]黄小红, 张 磷, 肖妙玲, 谢晓丽, 冯 晔, 陈少芬, 赵立峰. 施肥制度对土壤肥力的影响. 中国农学通报, 2010, 26(13): 200-206.

Huang X H, Zhang L, Xiao M L, Xie X X, Feng Y, Chen S F, Zhao L F. Effects of fertilization systems on soil fertility. Chinese Agricultural Science Bulletin, 2010, 26(13): 200-206. (in Chinese)

[8]向圣兰, 刘 敏, 陆 敏, 张丽佳, 黄明蔚. 不同施氮水平对水稻产量、吸氮量及土壤肥力的影响. 安徽农业科学, 2008, 36(19): 8178-8179.

Xiang S L, Liu M, Lu M, Zhang L J, Huang M W. Effects of different nitrogen applications on grain yield and soil fertility. Journal of Anhui Agricultural Sciences, 2008, 36(19): 8178-8179. (in Chinese)

[9]周卫军, 王凯荣, 张光远, 谢小立. 施肥进步在红壤稻作区水稻增产中的贡献及其对土壤肥力的影响. 土壤通报, 2002, 33(3): 197-201.

Zhou W J, Wang K R, Zhang G Y, Xie X L. Contribution of fertilization development in rice-yield increase and effects on soil fertility in red paddy area. Chinese Journal of Soil Science, 2002, 33(3): 197-201. (in Chinese)

[10]向秀媛, 刘 强, 彭建伟, 荣湘民, 柴慧清, 周 旋. 不同地力和养分管理模式对早稻产量和氮肥利用率的影响. 湖南农业科学, 2011(11): 79-81.

Xiang X Y, Liu Q, Peng J W, Rong X M, Chai H Q, Zhou X. Impacts of different soil fertility levels and nutrient management models on yield and nitrogen use efficiency of early-rice. Journal of Hunan Agricultural Sciences, 2011(11): 79-81. (in Chinese)

[11]Asai H, Samson B K, Stephan H M, Songyikhangsuthor K, Homma K, Kiyono Y, Inoue Y, Shiraiwa T, Horie T. Biochar amendment techniques for upland rice production in Northern Laos1 I. Soil physical properties, leaf SPAD and grain yield soil physical  properties, leaf SPAD and grain yield. Field Crops Research, 2009, 111: 81-84.

[12]Chen X P, Cui Z L, Vitousek P M, Cassman K G, Matsond P A, Bai J S, Meng Q F, Hou P, Yue S C, Römhelde V, Zhang F S. Integrated soil-crop system management for food security. Proceedings of the National Academy of Sciences of the USA, 2011, 108(16): 6399-6404.

[13]Ju X T, Xing G X, Chen X P, Zhang S L, Zhang L J, Liu X J, Cui Z L, Yin B, Christie P, Zhu Z L, Zhang F S. Reducing environmental risk by improving N management in intensive Chinese agricultural systems. Proceedings of the National Academy of Sciences of the USA, 2009, 106(9): 3041-3046.

[14]Cui Z L, Chen X P, Miao Y X, Zhang F S, Sun Q P, Schroder J, Zhang H L, Li J L, Shi L W, Xu J F, Ye Y L, Liu C S, Yang Z P, Zhang Q, Huang S M, Bao D J. On-farm evaluation of the improved soil Nmin-based nitrogen management for summer maize in North China Plain. Agronomy Journal, 2008, 100(3): 517-525.

[15]Zhang F S, Cui Z L, Fan M S, Zhang W F, Chen X P, Jiang R F. Integrated soil-crop system management: reducing environmental risk while increasing crop productivity and improving nutrient use efficiency in China. Journal of Environmental Quality, 2011, 40: 1051-1057.

[16]薛亚光, 王康君, 颜晓元, 尹  斌, 刘立军, 杨建昌. 不同栽培模式对杂交粳稻常优3号产量及养分吸收利用效率的影响. 中国农业科学, 2011, 44(23): 4781-4792.

Xue Y G, Wang K J, Yan X Y, Yin B, Liu L J, Yang J C. Effects of different cultivation patterns on grain yield and nutrient absorption and utilization efficiency of Japonica hybrid rice Changyou 3. Scientia Agricultura Sinica, 2011, 44(23): 4781-4792. (in Chinese)

[17]刘立军, 桑大志, 刘翠莲, 王志琴, 杨建昌, 朱庆森. 实时实地氮肥管理对水稻产量和氮素利用率的影响. 中国农业科学, 2003, 36(12): 1456-1461.

Liu L J, Sang D Z, Liu C L, Wang Z Q, Yang J C, Zhu Q S. Effects of real-time and site-specific nitrogen managements on rice yield and nitrogen use efficiency. Scientia Agricultura Sinica, 2003, 36(12): 1456-1461. (in Chinese)

[18]贺 帆, 黄见良, 崔克辉, 曾建敏, 徐 波, 彭少兵, R J Buresh. 实时实地氮肥管理对水稻产量和稻米品质的影响. 中国农业科学, 2007, 40(1): 123-132.

He F, Huang J L, Cui K H, Zeng J M, Xu B, Peng S B, Buresh R J. Effect of real-time and site-specific nitrogen management on rice yield and quality. Scientia Agricultura Sinica, 2007, 40(1): 123-132. (in Chinese)

[19]韩宝吉, 曾祥明, 卓光毅, 徐芳森, 姚忠清, 肖习明, 石 磊. 氮肥施用措施对湖北中稻产量、品质和氮肥利用率影响的研究. 中国农业科学, 2011, 44(4): 842-850.

Han B J, Zeng X M, Zhuo G Y, Xu F S, Yao Z Q, Xiao X M, Shi L. Effects of fertilization technology of nitrogen (N) on grain yield, grain quality and N-use efficiency of midseason rice in Hubei Province. Scientia Agricultura Sinica, 2011, 44(4): 842-850. (in Chinese)

[20]Haefele S M, Wopereis M C S, Schloebohm A M, Wiechmann H. Long-term fertility experiments for irrigated rice in the West African Sahel: effect on soil characteristics. Field Crops Research, 2004, 85: 61-77.

[21]Inthavong T, Shu F K, Tsubo M. Spatial variations in water availability, soil fertility and grain yield in rainfed lowland rice: A case study from Savannakhet Province, Lao PDR. Plant Production Science, 2011, 14(2): 184-195.

[22]张祥明, 郭熙盛, 武 际, 王允青, 李霞红, 陈景道. 江淮地区稻田基础土壤肥力与水稻合理施用技术研究. 中国农学通报, 2009, 25(15): 131-135.

Zhang X M, Guo X S, Wu J, Wang Y Q, Li X H, Chen J D. Research on basic soil fertility and reasonable fertilization technology in paddy fields in the Jianghuai region. Chinese Agricultural Science Bulletin, 2009, 25(15): 131-135. (in Chinese)

[23]张 军, 张洪程, 段祥茂, 徐宗进, 杨  波, 郭保卫, 杜 斌, 戴其根,  许 轲, 霍中洋, 魏海燕. 地力与施氮量对超级稻产量、品质及氮素利用率的影响. 作物学报, 2011, 37(11): 2020-2029.

Zhang J, Zhang H C, Duan X M, Xu Z J, Yang B, Guo B W, Du B, Dai Q G, Xu K, Huo Z Y, Wei H Y. Effects of soil fertility and nitrogen application rates on super rice yield, quality, and nitrogen use efficiency. Acta Agronomica Sinica, 2011, 37(11): 2020-2029. (in Chinese)

[24]彭建伟, 丁哲利, 刘 强, 柴慧清, 阎佩云,任可爱. 地力和养分管理模式对水稻产量和氮肥利用率的影响. 中国农学通报, 2010, 26(22): 190-195.

Peng J W, Ding Z L, Liu Q, Chai H Q, Yan P Y, Ren K A. Effect of soil fertility level and nutrient management model on rice yield and nitrogen use efficiency. Chinese Agricultural Science Bulletin, 2010, 26(22): 190-195. (in Chinese)

[25]黄欠如, 胡 锋, 李辉信, 赖 涛, 袁颖红. 红壤性水稻土施肥的产量效应及与气候、地力的关系. 土壤学报, 2006, 43(6): 926-933.

Huang Q R, Hu F, Li H X, Lai T, Yuan Y H. Crop yield response to fertilization and its relations with climate and soil fertility in red paddy soil. Acta Pedologica Sinica, 2006, 43(6): 926-933. (in Chinese)

[26]鲁运江, 刘启华. 优化施肥对水稻产量及地力的影响. 湖北农业科学, 1994(6): 36-41.

Lu Y J, Liu Q H. Effects of modified fertilization technology on grain yield and soil fertility. Hubei Agricultural Sciences, 1994(6): 36-41. (in Chinese)

[27]石全红, 王 宏, 陈 阜, 褚庆全. 中国中低产田时空分布特征及增产潜力分析. 中国农学通报, 2010, 26(19): 369-373.

Shi Q H, Wang H, Chen F, Chu Q Q. The spatial-temporal distribution characteristics and yield potential of medium-low yielded farmland in China. Chinese Agricultural Science Bulletin, 2010, 26(19): 369-373. (in Chinese)

[28]林鹏生. 我国中低产田分布及粮食增产潜力研究[D]. 北京: 中国农业科学院, 2008: 6-8.

Lin P S. Study on the distribution and possible production increasement of medium and low-yield farmland in China[D].  Beijing: Chinese Academy of Agricultural Sciences, 2008: 6-8. (in Chinese)

[29]杨建昌, 杜 永, 刘 辉. 长江下游稻麦周年超高产栽培途径与技术. 中国农业科学, 2008, 41(6): 1611-1621.

Yang J C, Du Y, Liu H. Cultivation approaches and techniques for annual super-high-yielding of rice and wheat in the lower reaches of Yangtze River. Scientia Agricultura Sinica, 2008, 41(6): 1611-1621. (in Chinese)

[30]杨建昌, 王 朋, 刘立军, 王志琴, 朱庆森. 中籼水稻品种产量与株型演进特征研究. 作物学报, 2006, 32(7): 949-955.

Yang J C, Wang P, Liu L J, Wang Z Q, Zhu Q S. Evolution characteristics of grain yield and plant type for mid-season indica  rice cultivars. Acta Agronomica Sinica, 2006, 32(7): 949-955. (in Chinese)
[1] ZHANG JianJun, DANG Yi, ZHAO Gang, WANG Lei, FAN TingLu, LI ShangZhong. Influences of Mulching Periods and Nitrogen Application Rates on Maize Yield as well as Water and Nitrogen Use Efficiencies in Loess Plateau of Eastern Gansu Province [J]. Scientia Agricultura Sinica, 2022, 55(3): 479-490.
[2] 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.
[3] 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.
[4] LU BingLin,CHE ZongXian,ZHANG JiuDong,BAO XingGuo,WU KeSheng,YANG RuiJu. Effects of Long-Term Intercropping of Maize with Hairy Vetch Root Returning to Field on Crop Yield and Nitrogen Use Efficiency Under Nitrogen Fertilizer Reduction [J]. Scientia Agricultura Sinica, 2022, 55(12): 2384-2397.
[5] WU TianQi,LI YaFei,SHI JiangLan,NING Peng,TIAN XiaoHong. Effects of Basal Nitrogen and Foliar Zinc Application at the Early Filling Stage on Zinc Enrichment and Protein Components Content in Wheat Grain [J]. Scientia Agricultura Sinica, 2022, 55(10): 1971-1986.
[6] PENG BiLin,LI MeiJuan,HU XiangYu,ZHONG XuHua,TANG XiangRu,LIU YanZhuo,LIANG KaiMing,PAN JunFeng,HUANG NongRong,FU YouQiang,HU Rui. Effects of Simplified Nitrogen Managements on Grain Yield and Nitrogen Use Efficiency of Double-Cropping Rice in South China [J]. Scientia Agricultura Sinica, 2021, 54(7): 1424-1438.
[7] XIANG Wei,WANG Lei,LIU TianQi,LI ShiHao,ZHAI ZhongBing,LI ChengFang. Effects of Biochar Plus Inorganic Nitrogen on the Greenhouse Gas and Nitrogen Use Efficiency from Rice Fields [J]. Scientia Agricultura Sinica, 2020, 53(22): 4634-4645.
[8] DING XiangPeng,LI GuangHao,ZHANG JiWang,LIU Peng,REN BaiZhao,ZHAO Bin. Effects of Base Application Depths of Controlled Release Urea on Yield and Nitrogen Utilization of Summer Maize [J]. Scientia Agricultura Sinica, 2020, 53(21): 4342-4354.
[9] ZOU WenXiu,HAN XiaoZeng,LU XinChun,CHEN Xu,HAO XiangXiang,YAN Jun. Effect of Maize Straw Return Aftereffect on Nitrogen Use Efficiency of Maize [J]. Scientia Agricultura Sinica, 2020, 53(20): 4237-4247.
[10] XUE Liang,MA ZhongMing,DU ShaoPing,FENG ShouJiang,RAN ShengBin. Effects of Application of Nitrogen on Melon Yield, Nitrogen Balance and Soil Nitrogen Accumulation Under Plastic Mulching with Drip Irrigation [J]. Scientia Agricultura Sinica, 2019, 52(4): 690-700.
[11] SiYang REN,QingSong ZHANG,TingYu LI,FuSuo ZHANG. Spatiotemporal Variation of Winter Wheat Yield and Nitrogen Management in Five Provinces of North China Plain [J]. Scientia Agricultura Sinica, 2019, 52(24): 4527-4539.
[12] REN KeYu,DUAN YingHua,XU MingGang,ZHANG XuBo. Effect of Manure Application on Nitrogen Use Efficiency of Crops in China: A Meta-Analysis [J]. Scientia Agricultura Sinica, 2019, 52(17): 2983-2996.
[13] JIN XiuKuan, MA MaoTing, ZHAO TongKe, AN ZhiZhuang, JIANG LingLing. Effects of Nitrogen Application on Yield, Water and Nitrogen Use Efficiency of Winter Wheat Under Supplemental Irrigation Based on Measured Soil Moisture Content [J]. Scientia Agricultura Sinica, 2018, 51(7): 1334-1344.
[14] ZhaoHui LIU, XiaoBin WU, DeShui TAN, Yan LI, LiHua JIANG. Application and Environmental Effects of One-off Fertilization Technique in Major Cereal Crops in China [J]. Scientia Agricultura Sinica, 2018, 51(20): 3827-3839.
[15] Ping LIU, DeShui TAN, Yu XU, HaiTao LIN, Yan LI, XiaoZong SONG, YuWen SHEN, ZhaoHui LIU. Effects of Fertilization Methods of Self-Made Wheat-Specific Controlled-Release Nitrogen Fertilizer on Fertilizer Efficiencies [J]. Scientia Agricultura Sinica, 2018, 51(20): 3897-3908.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!