Field-scale studies quantify limitations for wheat grain zinc biofortification in dryland areas

被引:4
|
作者
Li, Chao [1 ]
Guo, Zikang [1 ]
Wang, Xingshu [1 ]
Ma, Yue [1 ]
Liu, Jinshan [1 ,2 ]
Shi, Mei [1 ,2 ]
Zhang, Di [3 ]
Malhi, Sukhdev S. [4 ]
Siddique, Kadambot H. M. [5 ]
Wang, Zhaohui [1 ,2 ]
机构
[1] Northwest A&F Univ, Coll Nat Resources & Environm, Minist Agr, Key Lab Plant Nutr & Agri Environm Northwest China, Shaanxi 712100, Peoples R China
[2] Northwest A&F Univ, State Key Lab Crop Stress Biol Arid Areas, Shaanxi 712100, Peoples R China
[3] Yangling Vocat & Tech Coll, Shaanxi 712100, Peoples R China
[4] Univ Alberta, Dept Renewable Resources, Edmonton, AB, Canada
[5] Univ Western Australia, UWA Inst Agr, Perth, WA 6001, Australia
关键词
Wheat; Grain Zn concentration; DTPA-Zn; Olsen-P; Cultivar; SOIL FERTILITY MANAGEMENT; WINTER-WHEAT; AGRONOMIC BIOFORTIFICATION; MAIZE PRODUCTIVITY; CEREAL-GRAINS; IRON; PHOSPHORUS; YIELD; PROTEIN; FERTILIZATION;
D O I
10.1016/j.eja.2022.126687
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Optimizing of agronomic measures is an efficient way to improve crop zinc (Zn) nutrition and human dietary Zn intake. We collected field management, soil, and plant information from 78 fields in Shuiqing, 106 fields in Yongshou, and 120 fields in Qiujialing on China's Loess Plateau to explore limitations in wheat grain Zn and design alternative options to achieve the target grain Zn concentration (40 mg kg-1). The Shuiqing fields had an average grain yield of 5022 kg ha-1 and grain Zn concentration of 22.8 mg kg-1, with no fields achieving the target grain Zn concentration due to phosphorus (P) fertilizer overuse (254 kg P2O5 ha-1) and very low soil DTPA-Zn (0.23 mg kg-1). Two Yongshou fields reached the target grain Zn concentration but had 52.3%, 16.0%, and 51.4% lower average grain yield, P fertilizer rate, and soil Olsen-P, respectively, than other fields. The Qiujialing fields had an average grain Zn concentration of 34.8 mg kg-1, with 18.3% of fields >= 40 mg kg-1, of which 91% had soil DTPA-Zn >= 0.5 mg kg-1 and 45.2% higher grain Zn uptake than other fields due to newly released wheat cultivars, low P fertilizer rates, low soil Olsen-P, and high soil mineral nitrogen. In conclusion, a feasible framework for achieving the target grain Zn level would be using cultivars with high Zn uptake capacity, reducing P fertilizer use and soil Olsen-P, and improving soil available Zn in low Zn soils.
引用
收藏
页数:10
相关论文
共 50 条
  • [1] Zinc biofortification of bread winter wheat grain by single zinc foliar application
    Ivanovic, Dragana
    Dodig, Dejan
    Duric, Nenad
    Kandic, Vesna
    Tamindzic, Gordana
    Nikolic, Nina
    Savic, Jasna
    CEREAL RESEARCH COMMUNICATIONS, 2021, 49 (04) : 673 - 679
  • [2] Biofortification and Localization of Zinc in Wheat Grain
    Cakmak, I.
    Kalayci, M.
    Kaya, Y.
    Torun, A. A.
    Aydin, N.
    Wang, Y.
    Arisoy, Z.
    Erdem, H.
    Yazici, A.
    Gokmen, O.
    Ozturk, L.
    Horst, W. J.
    JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2010, 58 (16) : 9092 - 9102
  • [3] Optimizing Grain Zinc Biofortification in Bread Wheat: Innovative Fertilization Strategies for Field Conditions
    Akca, Hanife
    Taban, Suleyman
    JOURNAL OF SOIL SCIENCE AND PLANT NUTRITION, 2024, 24 (03) : 4714 - 4726
  • [4] Spraying high concentrations of chelated zinc enhances zinc biofortification in wheat grain
    Xu, Meng
    Liu, Mengjiao
    Si, Linlin
    Ma, Qingxu
    Sun, Tao
    Wang, Jun
    Chen, Kaijun
    Wang, Xiangjie
    Wu, Lianghuan
    JOURNAL OF THE SCIENCE OF FOOD AND AGRICULTURE, 2022, 102 (09) : 3590 - 3598
  • [5] Zinc interception and absorption in wheat spikes contribute significantly to grain zinc biofortification
    Hu, Naiyue
    Gao, Zhiqiang
    Zhang, Wanqing
    Du, Chenghang
    Zhang, Yinghua
    Zhao, Zhigan
    Wang, Zhimin
    CROP & PASTURE SCIENCE, 2024, 75 (05):
  • [6] Zinc seed coating improves the growth, grain yield and grain biofortification of bread wheat
    Rehman, Abdul
    Farooq, Muhammad
    ACTA PHYSIOLOGIAE PLANTARUM, 2016, 38 (10)
  • [7] Biofortification with Zinc and Iron Improves the Grain Quality and Yield of Wheat Crop
    Ramzan, Yasir
    Hafeez, Muhammad Bilal
    Khan, Shahbaz
    Nadeem, Majid
    Saleem-ur-Rahman
    Batool, Sumaira
    Ahmad, Javed
    INTERNATIONAL JOURNAL OF PLANT PRODUCTION, 2020, 14 (03) : 501 - 510
  • [8] Exogenous Application of Zinc Sulphate at Heading Stage of Wheat Improves the Yield and Grain Zinc Biofortification
    Sher, Ahmad
    Sarwar, Bushra
    Sattar, Abdul
    Ijaz, Muhammad
    Ul-Allah, Sami
    Hayat, Malik Tahir
    Manaf, Abdul
    Qayyum, Abdul
    Zaheer, Ahmad
    Iqbal, Javed
    El Askary, Ahmad
    Gharib, Amal F.
    Ismail, Khadiga Ahmed
    Elesawy, Basem H.
    AGRONOMY-BASEL, 2022, 12 (03):
  • [9] Evaluation of iron and zinc in grain and grain fractions of hexaploid wheat and its related species for possible utilization in wheat biofortification
    Kumar, Upendra
    Mathpal, Priyanka
    Malik, Sachin
    Kumar, Naveen
    Kumar, Satish
    Chugh, Vishal
    Sheikh, Imran
    Sharma, Prachi
    Singh, Tejveer
    Dhaliwal, H. S.
    Kumar, Sundip
    PLANT GENETIC RESOURCES-CHARACTERIZATION AND UTILIZATION, 2016, 14 (02): : 101 - 111
  • [10] Biofortification strategies to increase grain zinc and iron concentrations in wheat
    Velu, G.
    Ortiz-Monasterio, I.
    Cakmak, I.
    Hao, Y.
    Singh, R. P.
    JOURNAL OF CEREAL SCIENCE, 2014, 59 (03) : 365 - 372