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Integrated management strategy for improving the grain yield and nitrogen-use efficiency of winter wheat

机译:提高冬小麦籽粒产量和氮素利用效率的综合管理策略

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摘要

Understanding of how combinations of agronomic options can be used to improve the grain yield and nitrogen use efficiency (NUE) of winter wheat is limited.A three-year experiment involving four integrated management strategies was conducted from 2013 to 2015 in Tai'an,Shandong Province,China,to evaluate changes in grain yield and NUE.The integrated management treatments were as follows: current practice (T1); improvement of current practice (T2);high-yield management (T3),which aimed to maximize grain yield regardless of the cost of resource inputs; and integrated soil and crop system management (T4) with a higher seeding rate,delayed sowing date,and optimized nutrient management.Seeding rates increased by 75 seeds m-2with each treatment from T1 (225 seeds m-2) to T4 (450 seeds m-2).The sowing dates were delayed from T1 (5th Oct.) to T2 and T3 (8th Oct.),and to T4 treatment (12th Oct.).T1,T2,T3,and T4 received 315,210,315,and 240 kg N ha-1,120,90,210 and 120 kg P2O5ha-1,30,75,90,and 45 kg K2O ha-1,respectively.The ratio of basal application to topdressing for T1,T2,T3,and T4 was 6:4,5:5,4:6,and 4:6,respectively,with the N topdressing applied at regreening for T1 and at jointing stage for T2,T3,and T4.The P fertilizers in all treatments were applied as basal fertilizer.The K fertilizer for T1 and T2 was applied as basal fertilizer while the ratio of basal application to topdressing (at jointing stage) of K fertilizer for both T3 and T4 was 6:4.T1,T2,T3,and T4 were irrigated five,four,four and three times,respectively.Treatment T3 produced the highest grain yield among all treatments over three years and the average yield was 9 277.96 kg ha-1.Grain yield averaged across three years with the T4 treatment (8 892.93 kg ha-1) was 95.85% of that with T3 and was 21.72 and 6.10% higher than that with T1 (7 305.95 kg ha-1) and T2 (8 381.41 kg ha-1),respectively.Treatment T2 produced the highest NUE of all the integrated treatments.The NUE with T4 was 95.36% of that with T2 and was 51.91 and 25.62% higher than that with T1 and T3,respectively.The N uptake efficiency (UPE) averaged across three years with T4 was 50.75 and 16.62% higher than that with T1 and T3,respectively.The N utilization efficiency (UTE) averaged across three years with T4 was 7.74% higher than that with T3.The increased UPE with T4 compared with T3 could be attributed mostly to the lower available N in T4,while the increased UTE with T4 was mainly due to the highest N harvest index and low grain N concentration,which consequently led to improved NUE.The net profit for T4 was the highest among four treatments and was 174.94,22.27,and 28.10% higher than that for T1,T2,and T3,respectively.Therefore,the T4 treatment should be a recommendable management strategy to obtain high grain yield,high NUE,and high economic benefits in the target region,although further improvements of NUE are required.
机译:了解如何使用农艺学方法组合提高冬小麦的籽粒产量和氮素利用效率(NUE)有限.2013年至2015年在山东泰安进行了为期三年的试验,涉及四种综合管理策略为了评价粮食产量和NUE的变化,采用综合管理方法。改进现行做法(T2);高产管理(T3),其目的是在不考虑资源投入成本的情况下最大限度地提高粮食产量;并结合了土壤和作物系统管理(T4),具有较高的播种率,延迟播种日期和优化的养分管理。每次处理从T1(225种子m-2)到T4(450种子)的播种率提高了75种子m-2。 m-2)。播种日期从T1(10月5日)推迟到T2和T3(10月8日),再推迟到T4处理(10月12日).T1,T2,T3和T4分别获得315,210,315和240 kg N ha-1,120,90,210和120 kg P2O5ha-1,30,75,90和45 kg K2O ha-1.T1,T2,T3和T4的基础施用量与追肥比例为6:4 ,5:5,4:6和4:6,分别在T1的绿化期和T2,T3和T4的拔节期施氮肥。所有处理中的P肥均用作基础肥。 T1和T2的钾肥作为基础肥料,而T3和T4的钾肥的基础施用与追肥比例(拔节期)为6:4.T1,T2,T3和T4分别灌溉五,四分别治疗四次和三次。在所有处理中,谷物的产量是三年来最高的,平均产量为9 277.96 kg ha-1。使用T4处理(3 892.93 kg ha-1),三年平均谷物产量是使用T3的95.85%,与T1(7 305.95 kg ha-1)和T2(8 381.41 kg ha-1)相比,分别高出21.72和6.10%。处理T2产生了所有综合处理中最高的NUE.T4的NUE为95.36%。 T2分别比T1和T3分别高51.91和25.62%。三年内,T4的平均氮吸收效率(UPE)分别比T1和T3高50.75和16.62%。 T4三年的平均效率(UTE)比T3高7.74%。与T3相比,T4的UPE增加主要归因于T4中的可用氮较低,而T4的UTE增加主要是由于最高的氮素收获指数和较低的籽粒氮浓度,从而导致NUE的改善。 T4的净利润在四种处理中最高,分别比T1,T2和T3的高174.94、22.27和28.10%。因此,T4处理应该是获得高谷物产量的推荐管理策略, NUE高,目标地区的经济效益高,尽管还需要进一步改善NUE。

著录项

  • 来源
    《农业科学学报(英文版)》 |2018年第2期|315-327|共13页
  • 作者单位

    State Key Laboratory of Crop Biology/Key Laboratory of Crop Ecophysiology and Farming System,Ministry of Agriculture/Agronomy College,Shandong Agricultural University,Tai'an 271018,P.R.China;

    Administrative Committee of Yellow River Delta Agri-High-Tech Industry Demonstration Zone,Dongying 257347,P.R.China;

    State Key Laboratory of Crop Biology/Key Laboratory of Crop Ecophysiology and Farming System,Ministry of Agriculture/Agronomy College,Shandong Agricultural University,Tai'an 271018,P.R.China;

    State Key Laboratory of Crop Biology/Key Laboratory of Crop Ecophysiology and Farming System,Ministry of Agriculture/Agronomy College,Shandong Agricultural University,Tai'an 271018,P.R.China;

    State Key Laboratory of Crop Biology/Key Laboratory of Crop Ecophysiology and Farming System,Ministry of Agriculture/Agronomy College,Shandong Agricultural University,Tai'an 271018,P.R.China;

    College of Plant Science and Technology,Huazhong Agricultual University,Wuhan 430070,P.R.China;

    State Key Laboratory of Crop Biology/Key Laboratory of Crop Ecophysiology and Farming System,Ministry of Agriculture/Agronomy College,Shandong Agricultural University,Tai'an 271018,P.R.China;

    State Key Laboratory of Crop Biology/Key Laboratory of Crop Ecophysiology and Farming System,Ministry of Agriculture/Agronomy College,Shandong Agricultural University,Tai'an 271018,P.R.China;

    State Key Laboratory of Crop Biology/Key Laboratory of Crop Ecophysiology and Farming System,Ministry of Agriculture/Agronomy College,Shandong Agricultural University,Tai'an 271018,P.R.China;

    State Key Laboratory of Crop Biology/Key Laboratory of Crop Ecophysiology and Farming System,Ministry of Agriculture/Agronomy College,Shandong Agricultural University,Tai'an 271018,P.R.China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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