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不同水氮环境条件下小麦氮素含量和氮素利用效率的遗传模型研究
引用本文:郝西,董中东,李艳,崔党群.不同水氮环境条件下小麦氮素含量和氮素利用效率的遗传模型研究[J].麦类作物学报,2006,26(4):103-106.
作者姓名:郝西  董中东  李艳  崔党群
作者单位:1. 河南农业大学农学院,河南,郑州,450002;浙江大学生命科学学院,浙江,杭州,310029
2. 河南农业大学农学院,河南,郑州,450002
基金项目:国家粮食丰产科技工程项目;河南省重大专项基金
摘    要:为了研究不同水氮环境条件下小麦氮素含量和氮素利用效率(NUE)的遗传模型,随机选用8个亲本组配成28个双列杂交组合,在正常和水氮亏缺胁迫两种环境下进行随机区组试验,采用Hayman的分析方法研究了各性状的遗传模型。结果表明,在正常环境下籽粒和茎秆的氮素含量为加性-显性-上住性模型遗传,叶片氮素含量和氮素利用效率为加性-上住性模型遗传。在水氮亏缺胁迫环境条件下,籽粒和叶片氮素含量为加性-显性模型遗传。茎秆氮素含量和氮素利用效率为加性-显性-上位性模型遗传。可见,小麦氮素含量和氮素利用效率的遗传模型在不同的水氮环境中不完全一样。

关 键 词:小麦  水氮环境  氮素利用效率  氮素含量  遗传模型
文章编号:1004-1389(2006)04-0103-04
收稿时间:2006-02-06
修稿时间:2006-04-10

Genetic Model of Nitrogen Concentrations and Nitrogen Utilization Efficiency of Wheat in Different Water and Nitrogen Environment
HAO Xi,DONG Zhong-dong,LI Yan,CUI Dang-qun.Genetic Model of Nitrogen Concentrations and Nitrogen Utilization Efficiency of Wheat in Different Water and Nitrogen Environment[J].Journal of Triticeae Crops,2006,26(4):103-106.
Authors:HAO Xi  DONG Zhong-dong  LI Yan  CUI Dang-qun
Institution:1. College of Agronomy, Henan Agricultural University, Zhengzhou, Henan 450002 ,China; 2. College of Life Science,Zhejiang University,Hangzhou,Zhejiang 310029,China
Abstract:In order to study the genetic model of nitrogen concentrations and nitrogen utilization efficiency(NUE) of wheat in different water and nitrogen environments,the random blocks experiment in 2 environments for a set of diallel cross of 8 parents was conducfed.The results showed that the total nitrogen concentrations of grain and stem fit additive-dominance-epistasis model,the total nitrogen concentrations of leaf and nitrogen utilization efficiency fit additive-epistasis mode in normal environment;the total nitrogen concentrations of grain and leaf fit additive-dominance model,the total nitrogen concentrations of stem and nitrogen utilization efficiency fit additive-dominance-epistasis mode in intimidate environment.It is thus evident that the genetic models of nitrogen concentrations and nitrogen utilization efficiency of wheat in different water and nitrogen environments were different.
Keywords:Wheat  Water and nitrogen environment  Nitrogen utilization efficiency  Nitrogen content  Genetic model
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