Scientia Agricultura Sinica ›› 2009, Vol. 42 ›› Issue (12): 4218-4227 .doi: 10.3864/j.issn.0578-1752.2009.12.012

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

Effects of Different Irrigation Treatments on Water Consumption Characteristics and Grain Starch Components Accumulation in Strong Gluten Wheat Jimai 20

ZHANG Yong-li, YU Zhen-wen, ZHENG Cheng-yan, GU Shu-bo   

  1. (山东农业大学农学院/农业部作物生理生态与栽培重点开放实验室)
  • Received:2009-03-05 Revised:2009-05-11 Online:2009-12-10 Published:2009-12-10
  • Contact: YU Zhen-wen

Abstract:

【Objective】 The objective of this experiment was to study the effect of different irrigation treatments on characteristics of water consumption, grain starch components accumulation, grain weight and yield in wheat under different soil texture, so as to provide a theoretical basis for water-saving and high-yield cultivation of wheat. 【Method】 The research was carried out with strong gluten wheat cultivar Jimai 20 by setting different irrigation times and amounts in wheat growth seasons in 2004-2005 and 2006-2007, Water balance measurement was used to calculate water consumption amount during the wheat growth period, and Dual-Wavelength Spectrophotometry was used to determine the amylose and amylopectin content, then the starch accumulation amount was calculated. 【Result】 In the 2004-2005 growth season(in clay-soil field), 60 mm of water being irrigated respectively at pre-sowing stage, jointing stage and anthesis stage in W1 treatment (the grain yield under this treatment was 8 701.23 kg•hm-2) and 60mm of water was irrigated respectively at pre-sowing stage, pre-winter stage, jointing stage and anthesis stage in W2 treatment(the grain yield in this treatment was 9 159.30 kg•hm-2). The water consumption amount was lower in treatment W1 than that in treatment W2, while precipitation enjoy a higher percentage in water consumption amount in W1 treatment, and irrigation efficiency and water use efficiency were higher, but soil water use efficiency had no significant difference between W1 and W2 treatments. The grain weight at maturity had no significant difference among all the treatments. In the 2006-2007 growth season (in sandy-soil field), treatment W3’ under which 60mm of water was irrigated respectively at pre-sowing stage, pre-winter stage, jointing stage and anthesis stage got the highest grain yield. There was no significant difference in water consumption amount and the percentage of precipitation in water consumption amount between treatment W3’ and other irrigation treatments, while the soil water and precipitation use efficiency and water use efficiency were higher in treatment W3’ than those in other irrigation treatments, but the irrigation water use efficiency was lower in treatment W3’ than those in other irrigation treatments. The grain weight had no significant difference between treatment W3’ and W2’ which was irrigated 60 mm of water at pre-sowing stage, jointing stage and anthesis stage respectively, but were higher than that of other treatments. Treatment W1 had higher soil water relative content in 0-140 cm soil layer at pre-winter stage and anthesis stage in 0-80 cm soil layer at jointing stage than those in treatment W0 which no irrigation, then 60 mm of water was irrigated respectively at jointing stage and anthesis stage, and the treatment W1 got lower amolyse accumulation amount and higher amylopectin accumulation amount at late grain filling period and higher value of amylopectin content to amolyse content at maturity period than those in treatment W0. Treatment W2 had higher soil water relative content in 80-140 cm soil layer at jointing stage and anthesis stage than those in treatment W1, then 60 mm of water was irrigated respectively at jointing stage and anthesis stage, but the amylopectin accumulation amount, amolyse accumulation amount and grain weight had no significant change. 【Conclusion】 In clay-soil field which has better ability of water conservation, the amolyse accumulation amount was lower in W1 treatment than W0 treatment, and amylopectin accumulation amount and the ratio of amylopectin content to amolyse content in grains in W1 treatment were higher than those in W0 treatment, and the grain yield and water use efficiency were also higher. The increase of irrigation amount had no significant effect on the starch component accumulation amount and grain weight, while water use efficiency was decreased. The highest grain yield and highest water use efficiency were achieved in W3’ treatment in sandy-soil field which had lower ability of soil conservation. The result has provided a reference for the irrigation strategy of wheat production in clay-soil field and sandy-soil field.

Key words: irrigation treatment, strong gluten wheat, water consumption characteristics, starch components, grain weight, grain yield

[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 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.
[4] 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.
[5] 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.
[6] 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.
[7] LIU QiuYuan,ZHOU Lei,TIAN JinYu,CHENG Shuang,TAO Yu,XING ZhiPeng,LIU GuoDong,WEI HaiYan,ZHANG HongCheng. Comprehensive Evaluation of Nitrogen Efficiency and Screening of Varieties with High Grain Yield and High Nitrogen Efficiency of Inbred Middle-Ripe Japonica Rice in the Middle and Lower Reaches of Yangtze River [J]. Scientia Agricultura Sinica, 2021, 54(7): 1397-1409.
[8] 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.
[9] CHU Guang,XU Ran,CHEN Song,XU ChunMei,WANG DanYing,ZHANG XiuFu. Effects of Alternate Wetting and Soil Drying on the Grain Yield and Water Use Efficiency of Indica-Japonica Hybrid Rice and Its Physiological Bases [J]. Scientia Agricultura Sinica, 2021, 54(7): 1499-1511.
[10] LI JiangLing,YANG Lan,RUAN RenWu,LI ZhongAn. Analysis of Photosynthetic Characteristics of Hybrid Wheat at Seedling Stage and Its Use for Early Prediction of Strong Heterosis Combinations [J]. Scientia Agricultura Sinica, 2021, 54(23): 4996-5007.
[11] MA Yue,TIAN Yi,YUAN AiJing,WANG HaoLin,LI YongHua,HUANG TingMiao,HUANG Ning,LI Chao,DANG HaiYan,QIU WeiHong,HE Gang,WANG ZhaoHui,SHI Mei. Response of Wheat Yield and Protein Concentration to Soil Nitrate in Northern Wheat Production Region of China [J]. Scientia Agricultura Sinica, 2021, 54(18): 3903-3918.
[12] FEI ShuaiPeng,YU XiaoLong,LAN Ming,LI Lei,XIA XianChun,HE ZhongHu,XIAO YongGui. Research on Winter Wheat Yield Estimation Based on Hyperspectral Remote Sensing and Ensemble Learning Method [J]. Scientia Agricultura Sinica, 2021, 54(16): 3417-3427.
[13] ZHANG XiangYu,GUO Jia,WANG San,CHEN CongPing,SUN ChangHui,DENG XiaoJian,WANG PingRong. Gene Mapping and Candidate Gene Analysis of Grain Width Mutant gw87 in Rice [J]. Scientia Agricultura Sinica, 2021, 54(12): 2487-2498.
[14] HOU JiaMin,LUO Ning,WANG Su,MENG QingFeng,WANG Pu. Effects of Increasing Planting Density on Grain Yield, Leaf Area Index and Photosynthetic Rate of Maize in China [J]. Scientia Agricultura Sinica, 2021, 54(12): 2538-2546.
[15] TaoTao YANG,JiaXin XIE,Shan HUANG,XueMing TAN,XiaoHua PAN,YongJun ZENG,QingHua SHI,Jun ZHANG,YanHua ZENG. The Impacts of Post-Anthesis Warming on Grain Yield and Quality of Late Japonica Rice in a Double Rice Cropping System [J]. Scientia Agricultura Sinica, 2020, 53(7): 1338-1347.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!