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氮素对大麦籽粒中酚酸和蛋白质含量的影响
引用本文:王祥军,齐军仓,贾力群,王倩,王琴,马建峰,王仙,曹连莆. 氮素对大麦籽粒中酚酸和蛋白质含量的影响[J]. 核农学报, 2011, 25(1): 162-168
作者姓名:王祥军  齐军仓  贾力群  王倩  王琴  马建峰  王仙  曹连莆
作者单位:石河子大学农学院,新疆石河子,832000
基金项目:国家自然科学基金项目,现代农业产业技术体系建设专项资金
摘    要:采用穗培养技术在7个氮素(NH4NO3为氮源)浓度水平(N1:0mg/L;N2:412.5 mg/L;N3:825.0mg/L;N4:1237.5mg/L;N5:1650.0ms/L;N6:3300.0mg/L;N7:4950.0mg/L)下研究了氮素对2个大麦品种籽粒中酚酸和蛋白质含量的影响.结果表明,在高氮水平(N...

关 键 词:氮素  酚酸  蛋白质  大麦

EFFECTS OF NITROGEN ON PHENOLIC ACID AND PROTEIN CONTENT IN BARLEY(Hordeum vulgare L.)GRAIN
WANG Xiang-jun,QI Jun-cang,JIA Li-qun,WANG Qian,WANG Qin,MA Jian-feng,WANG Xian,CAO Lian-pu. EFFECTS OF NITROGEN ON PHENOLIC ACID AND PROTEIN CONTENT IN BARLEY(Hordeum vulgare L.)GRAIN[J]. Acta Agriculturae Nucleatae Sinica, 2011, 25(1): 162-168
Authors:WANG Xiang-jun  QI Jun-cang  JIA Li-qun  WANG Qian  WANG Qin  MA Jian-feng  WANG Xian  CAO Lian-pu
Affiliation:College of Agronomy, Shihezi University, Shihezi, Xinjiang
Abstract:Nitrogen is one of the necessary nutrient elements for crop growth. The primary and secondary metabolisms of plant are regulated by nitrogen nutrient levels. As important secondary metabolites, phenolic acids play significant roles in plant resistances, and potentially contribute to barley qualities. However, little is known concerning effects of nitrogen on barley (Hordeum vulgare L.) phenolic acids. In the present study, two barley cultivars were used, and seven nitrogen concentration treatments (0, 412.5, 825.0, 1237.5, 1650, 3300, and 4950mg/L, respectively) under in vitro spike culture were conducted to investigate the effects of nitrogen on phenolic acid and protein contents in barley grain. Results showed that the development of barley grain was inhibited under high nitrogen levels (3300~4950mg/L), and grain weight decreasing significantly was as the response. Total hydroxybenzoic acid content (THBA), total hydroxycinnamic acid content (THCA), total phenolic acid content (TPA) and THBA/THCA ratio were all significantly affected by nitrogen concentration, cultivar and the interaction between nitrogen concentration and cultivar. Four indexes above were all significantly positively correlated with nitrogen concentration. Except for hordein content (HC), the protein indexes of crude protein content (CPC), salt-soluble protein content (SSPC), and glutelin content (GC) were all significantly affected by nitrogen concentration, moreover, SSPC and GC were significantly affected by cultivar and the interaction between nitrogen concentration and cultivar. Excluding HC and GC in the four indexes, CPC and SSPC were significantly positive|correlated with nitrogen concentration. The results also indicated that phenolic acid contents (including THBA, THCA, and TPA) in barley grain increased cooperated with CPC and SSPC when the nitrogen nutrient level went up.
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