Scientia Agricultura Sinica ›› 2009, Vol. 42 ›› Issue (11): 3863-3870 .doi: 10.3864/j.issn.0578-1752.2009.11.013

• TILLAGE & CULTIVATION·PHYSIOLOGY & BIOCHEMISTRY • Previous Articles     Next Articles

A Model for Predicting Grain Protein Content in Barley

XU Shou-jun, YANG Heng-shan, FAN Fu, WANG Yun, XU Ru-gen, ZHUANG Heng-yang
  

  1. (内蒙古民族大学农学院)
  • Received:2009-03-02 Revised:2009-06-09 Online:2009-11-10 Published:2009-11-10

Abstract:

【Objective】 Modelling grain protein composition in barley is of significant importance for establishing production management decision support system. 【Method】 Based on time-course observations on the nitrogen accumulation, assignment, absorption and remobilization under various nitrogen rate regimes with different cultivars, a dynamic model was developed to simulate the nitrogen accumulation and assignment before anthesis and the nitrogen absorption and remobilization model after anthesis in barley. The critical nitrogen content in heading period was used to calculate the biggest accumulation quantity of nitrogen. The latent distribution index of leaf and stem, which was the variety heredity parameter, were used to distinguish the difference in nitrogen assignment in different varieties. The dynamic content of the nitrogen accumulation before anthesis could be described with a Richards model. The dynamic content of the nitrogen remobilization in leaf with leaf area index (LAI) could be described with a power model, and the nitrogen absorption of grain from soil with dry weight could be described with a power model. The dynamic content of nitrogen density in stem and spike with physiological development time(PDT) could be described with a nonlinear model. The model was validated with independent experiment data. 【Result】 The results showed that the absolute prediction error ranges for grain protein contents were 0.04%-1.27%, and RMSEs were 0.20%-0.72%. 【Conclusion】 The present model with empirical and mechanism appears to provide a reliable prediction.

Key words: barley, nitrogen accumulation, protein, simulation

[1] HU Sheng,LI YangYang,TANG ZhangLin,LI JiaNa,QU CunMin,LIU LieZhao. Genome-Wide Association Analysis of the Changes in Oil Content and Protein Content Under Drought Stress in Brassica napus L. [J]. Scientia Agricultura Sinica, 2023, 56(1): 17-30.
[2] MO WenJing,ZHU JiaWei,HE XinHua,YU HaiXia,JIANG HaiLing,QIN LiuFei,ZHANG YiLi,LI YuZe,LUO Cong. Functional Analysis of MiZAT10A and MiZAT10B Genes in Mango [J]. Scientia Agricultura Sinica, 2023, 56(1): 193-202.
[3] FAN YanGen,WANG Yu,LIU FuHao,ZHAO XiuXiu,XIANG QinZeng,ZHANG LiXia. Screening and Verification of CsHIPP26.1 Interaction Protein in Tea Plant [J]. Scientia Agricultura Sinica, 2022, 55(8): 1630-1641.
[4] LI ShiJia,LÜ ZiJing,ZHAO Jin. Identification of R2R3-MYB Subfamily in Chinese Jujube and Their Expression Pattern During the Fruit Development [J]. Scientia Agricultura Sinica, 2022, 55(6): 1199-1212.
[5] XIAO LuTing,LI XiuHong,LIU LiJun,YE FaYin,ZHAO GuoHua. Effects of Starch Granule Size on the Physical and Chemical Properties of Barley Starches [J]. Scientia Agricultura Sinica, 2022, 55(5): 1010-1024.
[6] WANG LÜYang,CUI LeiHong,FENG JiangYin,HONG QiuXia,YOU MeiJing,BAO HaoYu,HANG SuQin. Effects of CaSR and CCK-1R Mediated Soybean Protein Hydrolysate on Appetite Using Mouse [J]. Scientia Agricultura Sinica, 2022, 55(4): 807-815.
[7] YANG ShiMan, XU ChengZhi, XU BangFeng, WU YunPu, JIA YunHui, QIAO ChuanLing, CHEN HuaLan. Amino Acid of 225 in the HA Protein Affects the Pathogenicities of H1N1 Subtype Swine Influenza Viruses [J]. Scientia Agricultura Sinica, 2022, 55(4): 816-824.
[8] ZHAO HuiTing,PENG Zhu,JIANG YuSuo,ZHAO ShuGuo,HUANG Li,DU YaLi,GUO LiNa. Expression and Binding Properties of Odorant Binding Protein AcerOBP7 in Apis cerana cerana [J]. Scientia Agricultura Sinica, 2022, 55(3): 613-624.
[9] YIN YanYu,XING YuTong,WU TianFan,WANG LiYan,ZHAO ZiXu,HU TianRan,CHEN Yuan,CHEN Yuan,CHEN DeHua,ZHANG Xiang. Cry1Ac Protein Content Responses to Alternating High Temperature Regime and Drought and Its Physiological Mechanism in Bt Cotton [J]. Scientia Agricultura Sinica, 2022, 55(23): 4614-4625.
[10] TONG ShiFeng,REN ZhiBin,LIN Fei,GE YuZhu,TAO JingLi,LIU Yang. Proteomic Analysis of Sperm with Different Freezing Tolerance in Erhualian Boar [J]. Scientia Agricultura Sinica, 2022, 55(23): 4743-4752.
[11] PEI YueHong,LI FengWei,LIU WeiNa,WEN YuXia,ZHU Xin,TIAN ShaoRui,FAN GuangJin,MA XiaoZhou,SUN XianChao. Characteristics of Cysteine Proteinase Gene Family in Nicotiana benthamiana and Its Function During TMV Infection [J]. Scientia Agricultura Sinica, 2022, 55(21): 4196-4210.
[12] ZHANG Rui,ZHANG XueYao,ZHAO XiaoMing,MA EnBo,ZHANG JianZhen. Antibody Preparation and Subcellular Localization of LmKnk3-5′ in Locusta migratoria [J]. Scientia Agricultura Sinica, 2022, 55(2): 329-338.
[13] ZHANG XinYao,ZHANG Min,ZHU YuanPeng,HUI XiaoLi,CHAI RuShan,GAO HongJian,LUO LaiChao. Effects of Reduced Phosphorus Application on Crop Yield and Grain Nutritional Quality in the Rice-Wheat Rotation System in Chaohu Lake Basin [J]. Scientia Agricultura Sinica, 2022, 55(19): 3791-3806.
[14] CHEN FengQiong, CHEN QiuSen, LIN JiaXin, WANG YaTing, LIU HanLin, LIANG BingRuoShi, DENG YiRu, REN ChunYuan, ZHANG YuXian, YANG FengJun, YU GaoBo, WEI JinPeng, WANG MengXue. Genome-Wide Identification of DIR Family Genes in Tomato and Response to Abiotic Stress [J]. Scientia Agricultura Sinica, 2022, 55(19): 3807-3821.
[15] ZHANG XiaoPing,SA ShiJuan,WU HanYu,QIAO LiYuan,ZHENG Rui,YAO XinLing. Leaf Stomatal Close and Opening Orchestrate Rhythmically with Cell Wall Pectin Biosynthesis and Degradation [J]. Scientia Agricultura Sinica, 2022, 55(17): 3278-3288.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!