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张 敏,刘 添,李亚静,李翠平,郭振清,贾秀领,杨 敏,秦保平,安浩军,蔡瑞国.减少灌水次数对强筋小麦氮素积累转运和籽粒蛋白质含量的影响[J].麦类作物学报,2019,(7):802
减少灌水次数对强筋小麦氮素积累转运和籽粒蛋白质含量的影响
Effect of Irrigation Times on Nitrogen Accumulation,Transportation and Grain Protein Content of Strong Gluten Wheat
  
DOI:10.7606/j.issn.1009-1041.2019.07.07
中文关键词:  强筋小麦  灌水次数  氮素积累转运  蛋白质含量  籽粒产量
英文关键词:Strong gluten wheat  Reducing irrigation times  N accumulation and transport  Protein content  Grain yield
基金项目:“十三五”国家重点研发计划项目(2016YED0300402-2)
作者单位
张 敏,刘 添,李亚静,李翠平,郭振清,贾秀领,杨 敏,秦保平,安浩军,蔡瑞国 (1.河北科技师范学院农学与生物科技学院河北秦皇岛 0666002.河北省农林科学院粮油作物研究所河北石家庄 0500353.保定市农业科学院河北保定 072550) 
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中文摘要:
      为探究减少灌水次数对强筋小麦氮素积累、转运和籽粒蛋白质含量的影响,选用4个强筋小麦品种(津农7号、农优3号、师栾02-1和中麦998),在大田条件下设置3种灌水处理(CK:冬水+拔节水+开花水;W2:冬水+拔节水;W1:冬水),研究了减少灌水次数对强筋小麦植株各器官氮素的积累与转运、籽粒蛋白质及其组分的含量、蛋白质产量和籽粒产量的影响,并对协调强筋小麦籽粒蛋白质含量和产量的适宜灌水次数进行了探讨。结果表明,减少灌水次数后,强筋小麦营养器官氮素积累量明显降低,氮素转运量增加;籽粒蛋白质含量升高;蛋白质组分的变化表现为,清蛋白、球蛋白和谷蛋白含量升高,醇溶蛋白含量下降;籽粒产量显著下降,水分利用效率升高,但不同品种增幅不同。综上所述,减少灌水次数能促进强筋小麦营养器官的氮素向籽粒转运,使籽粒蛋白质含量升高,籽粒蛋白质品质得到改善。本试验条件下,W2处理(冬水+拔节水)可以有效协调强筋小麦产量和籽粒蛋白质含量的关系,同时提高水分利用效率。
英文摘要:
      In order to explore the effect of irrigation times on nitrogen(N) accumulation,transportation and grain protein content in strong gluten wheat,four strong gluten wheat varieties(Jinnong 7,Nongyou 3,Shiluan 02-1 and Zhongmai 998)were selected in this study,and three irrigation treatments (CK:Winter water + drawing water + flowering water,W2:Winter water+drawing water,W1:Winter water) were set up. The changes of N accumulation and transportation,contents of grain protein and its components,and protein yield and grain yield were analyzed.The appropriate irrigation times for coordinating quality and yield of strong gluten wheat was discussed.The results showed that N accumulation in vegetative organs of strong gluten wheat was decreased significantly and N transport rate was increased after reducing irrigation times(RIT). RIT led to the increase of protein content in strong gluten wheat grains,but the effects on protein components were different. The specific performance was to increase the content of albumin and glutenin,and reduce the content of gliadin. RIT significantly reduced grain yield of strong gluten wheat. RIT improved water use efficiency of strong gluten wheat and the effect varied among cultivars. To sum up,RIT properly promoted the transportation of N from vegetative organs to grain,increased grain protein content,and affected protein composition in strong gluten wheat. In this experiment,W2 treatment effectively coordinated the relationship between yield and protein content of strong gluten wheat,and improved water use efficiency.
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