专论与研究

不同土壤类型下灌溉方式对水稻产量形成及水分利用效率的影响

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  • 扬州大学 农业部长江流域稻作技术创新中心 /江苏省作物遗传生理国家重点实验室培育点,江苏 扬州 225009

网络出版日期: 2018-05-20

基金资助

国家重点研发计划项目(2016YFD0200805);江苏“农业三新”工程项目(SXGC[2016]321);江苏农业科技攻关(BE2015340, BE2016351);江苏省农业科技自主创新项目(CX[15]1002)

Effects of Different Irrigation Methods on Yield and Water Use Efficiency of Rice in Different Soil Types

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Online published: 2018-05-20

摘要

以常规粳稻南粳9108为试验材料,在壤土、黏土、砂土3种类型土壤下,自有效分蘖临界叶龄期开始分别设置轻度节水灌溉(-15kPa)、重度节水灌溉(-25kPa)处理,并以常规水层灌溉为对照(CK),探究不同土壤类型下不同灌溉方式对水稻产量及水分利用效率的影响。结果表明,在壤土和黏土条件下,与CK相比,轻度节水灌溉、重度节水灌溉处理显著提高了水稻产量和水分利用效率,其中,轻度节水灌溉较CK分别增产13.89%和10.96%,重度节水灌溉分别增产7.02%和6.61%,水分利用效率轻度节水灌溉较CK分别提高32.0%和26.0%,重度节水灌溉较CK分别提高29.0%和26.0%;在砂土条件下,轻度节水灌溉和重度节水灌溉处理产量较CK明显下降,但水分利用效率提高,其中,轻度节水灌溉处理较CK减产5.67%、水分利用效率较CK提高18.0%,重度节水灌溉处理较CK减产11.22%、水分利用效率较CK提高21.0%。在壤土、黏土条件下,轻度节水灌溉能够提高地上部群体干物质积累量、光合势、群体生长速率和净同化率,从而提高产量,而砂土条件下节水灌溉降低了地上部群体干物质积累,最终导致减产。

本文引用格式

陈梦云,李晓峰,陈雨霏,任红茹,汪伟,荆培培,霍中洋* . 不同土壤类型下灌溉方式对水稻产量形成及水分利用效率的影响[J]. 中国稻米, 2018 , 24(3) : 10 -15 . DOI: 10.3969/j.issn.1006-8082.2018.03.003

Abstract

In order to discuss the influence of different irrigation methods on yield and water use efficiency of rice, an experiment was conducted in loam, clay, sand, using japonica rice Nangeng 9108 as material. The results showed that compared with the water layer irrigation treatment(CK), mild water saving irrigation treatment(soil water potential -15kPa)and severe water saving irrigation treatment(soil water potential -25 kPa) significantly improved rice yield and water use efficiency in the condition of loam and clay, the grain yield of mild water saving irrigation treatment were increased by 13.89% and 10.96%, the grain yield of severe water saving irrigation treatment were increased by 7.02% and 6.61%, the water use efficiency of mild water saving irrigation treatment were increased by 32.0% and 26.0%, the water use efficiency of severe water saving irrigation treatment were increased by 29.0% and 26.0%, respectively; in the condition of sand, the yield of mild saving irrigation treatment and severe water saving irrigation treatment were significantly lower than CK, but the water use efficiency was improved, the yield of mild water-saving irrigation treatment was reduced by 5.67% compared with CK, water use efficiency was increased by 18.0%; the yield of severe water saving irrigation treatment was reduced by 11.22%, water use efficiency was increased by 21.0%. The results showed that in the condition of loam and clay, the mild water saving irrigation could increase the dry matter accumulation, photosynthetic potential, population growth rate and net assimilation rate of the aboveground population, eventually increase the grain yield.

参考文献


[1]    Ali M H, Talukder M S U. Increasing water productivity in crop production—A synthesis[J]. Agr Water Manage, 2008, 95: 1 201-1 213.
[2]    Bossio D, Geheb K, Critchley W. Managing water by managingland: addressing land degradation to improve water productivity and rural livelihoods[J]. Agr Water Manage, 2010, 97: 536-542.
[3]    李王成,冯绍元,康绍忠,等. 石羊河中游荒漠绿洲区土壤水分的分布特征[J]. 水土保持学报,2007,21(3):138-144.
[4]    Connolly R D. Modeling effects of soil structure on the water balance of soil-crop systems: a review[J]. Soil Till Res, 1998, 48: 1-19.
[5]    贾宏伟, 康绍忠, 张富仓,等. 石羊河流域平原区土壤入渗特性空间变异的研究[J]. 水科学进展,2006,17(4): 742-746.
[6]    Ahmadi S H, Andersen M N, Plauborg F, et al. Effects of irrigation strategies and soils on field grown potatoes: yield and water productivity[J]. Agr Water Manage, 2010, 97: 1 923-1 930.
[7]    苏永中,杨荣,刘文杰,等. 基于土壤条件的边缘绿洲典型灌区灌溉需水研究[J]. 中国农业科学,2014,47(6):1 128-1 139.
[8]    Singandhupe R B, Rajput R K. Response of rice to irrigation schedule and nitrogen in sodic soil[J]. Indian J Agron, 1987, 32: 130-133.
[9]    Ramasamy S, Hfmten B, Purushothaman S. Yield formation in rice in response to drainage and nitrogen application[J]. Field Crop Res, 1997, 51: 65-82.
[10]  Ockerby S E, Fuka S. The management of rice grown on raised beds with continuous furrow irrigation[J]. Field Crop Res, 2001, 69: 215-226.
[11]  Bouman B A M, Peng S, Castaňeda A R, et al. Yield and water use of irrigated tropical aerobic rice systems[J]. Agr Water Manage, 2005, 74: 87-105.
[12]  Liu X J, Wang J C, Lu S H, et al. Effects of non-flooded mulching cultivation on crop yield nutrient uptake and nutrient balance in rice-wheat cropping systems[J]. Field Crop Res, 2003, 83: 297-311.
[13]  Tao H, Brueck H, Dittert K, et al. Growth and yield formation for rice (Oryza sativa L.) in the water-saving ground cover rice production system (GCRPS)[J]. Field Crop Res, 2006, 95: 1-12.
[14]  Yang J C, Zhang J H. Crop management techniques to enhance harvest index in rice[J]. J Exp Bot, 2010, 61: 3 177-3 189.
[15]  褚光,展明飞,朱宽宇,等. 干湿交替灌溉对水稻产量与水分利用效率的影响[J]. 作物学报,2016,42(7):1 026-1 036.
[16]  张自常,徐云姬,褚光,等. 不同灌溉方式下的水稻群体质量[J]. 作物学报,2011,37(11):2 011-2 019.
[17]  夏琼梅,陈清华,李从英,等. 浅湿交替节水灌溉对水稻产量及生物学特性的影响[J]. 中国稻米,2015,21(4):114-117.
[18]  Mishra H S, Rathore T R, Pant R C. Effect of intermittent irrigation on groundwater table contribution, irrigation requirement and yield of rice in Mullions of Tarai region[J]. Agr Water Manage, 1990, 18: 231-241.
[19]  Tabbal D F, Bouman B A M, Bhuiyan S I, et al. On-farm strategies for reducing water input in irrigated rice: case studies in the Philippines[J]. Agr Water Manage, 2002, 56: 93-112 .
[20]  柯传勇. 不同水分处理对水稻生长、产量及品质的影响[D]. 武汉:华中农业大学,2010.
[21]  杨龙生,王兴盛, 强爱玲,等. 不同灌溉方式对水稻产量及产量构成因子的影响[J]. 中国稻米,2010,16(1):49-51.
[22]  林贤青,朱德峰,李春寿,等. 水稻不同灌溉方式下的高产生理特性[J]. 中国水稻科学,2005,19(4):328-332.
[23]  张益武,朱利群,王伟,等. 不同灌溉方式和秸秆还田对水稻生长的影响[J]. 作物杂志,2014(2):113-118.
[24]  周明耀,赵瑞龙,顾玉芬,等. 水肥耦合对水稻地上部分生长与生理性状的影响[J]. 农业工程学报,2006,22(8):38-43.
[25]  曹树青,翟虎渠,钮中一,等. 不同产量潜力水稻品种的剑叶光合特性研究[J]. 南京农业大学学报,2000,23(3):1-4.
[26]  洪植蕃,林菲,庄宝华. 两系杂交稻栽培生理生态特性Ⅱ.干物质生产特性[J]. 福建农学院学报,1992,21(2):129-136.
[27]  赵黎明,李明, 郑殿峰,等. 灌溉方式与种植密度对寒地水稻产量及光合物质生产特性的影响[J]. 农业工程学报,2015,31(6):159-169.
[28]  张慎凤. 干湿交替灌溉对水稻生长发育、产量与品质的影响[D]. 扬州:扬州大学,2009.
[29]  陈小飞. 肥水耦合处理对水稻氮素、水分利用率及产量的影晌[D]. 沈阳:沈阳农业大学,2016.
[30]  张玉屏,朱德峰,林贤青,等. 不同灌溉方式对水稻需水量和生长的影响[J]. 灌溉排水学报,2007,26(2):83-85.

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