MSB_2025v16n5

Molecular Soil Biology 2025, Vol.16, No.5, 265-271 http://bioscipublisher.com/index.php/msb 271 Mahjourimajd S., Kuchel H., Langridge P., and Okamoto M., 2016, Evaluation of Australian wheat genotypes for response to variable nitrogen application, Plant and Soil, 399: 247-255. https://doi.org/10.1007/s11104-015-2694-z Martre P., Dueri S., Guarin J., Ewert F., Webber H., Calderini D., Molero G., Reynolds M., Miralles D., Garcia G., Brown H., George M., Craigie R., Cohan J., Deswarte J., Slafer G., Giunta F., Cammarano D., Ferrise R., Gaiser T., Gao Y., Hochman Z., Hoogenboom G., Hunt L., Kersebaum K., Nendel C., Padovan G., Ruane A., Srivastava A., Stella T., Supit I., Thorburn P., Wang E., Wolf J., Zhao C., Zhao Z., and Asseng S., 2024, Global needs for nitrogen fertilizer to improve wheat yield under climate change, Nature Plants, 10: 1081-1090. https://doi.org/10.1038/s41477-024-01739-3 Noor H., Yan Z., Sun P., Zhang L., Ding P., Li L., Ren A., Sun M., and Gao Z., 2023, Effects of nitrogen on photosynthetic productivity and yield quality of wheat (Triticum Aestivum L.), Agronomy, 13(6): 1448. https://doi.org/10.3390/agronomy13061448 Tyagi B., Foulkes J., Singh G., Sareen S., Kumar P., Broadley M., Gupta V., Krishnappa G., Ojha A., Khokhar J., King I., and Singh G., 2020, Identification of wheat cultivars for low nitrogen tolerance using multivariable screening approaches, Agronomy, 10: 417. https://doi.org/10.3390/agronomy10030417 Walsh O., Marshall J., Nambi E., Shafian S., Jayawardena D., Jackson C., Lamichhane R., Owusu E., and McClintick‐Chess J., 2022, Spring wheat yield and grain quality response to nitrogen rate, Agronomy Journal, 114(4): 2562-2572. https://doi.org/10.1002/agj2.21101 Wang Y., Peng Y., Lin J., Wang L., Jia Z., and Zhang R., 2023, Optimal nitrogen management to achieve high wheat grain yield, grain protein content, and water productivity: a meta-analysis, Agricultural Water Management, 290: 108587. https://doi.org/10.1016/j.agwat.2023.108587 Wu W., Wang Y., Wang L., Xu H., Zörb C., Geilfus C., Xue C., Sun Z., and Ma W., 2022, Booting stage is the key timing for split nitrogen application in improving grain yield and quality of wheat – a global meta-analysis, Field Crops Research, 287: 108665. https://doi.org/10.1016/j.fcr.2022.108665 Xu A., Chen Y., Wei X., Effah Z., Li L., Xie J., Liu C., and Anwar S., 2024, Does nitrogen fertilization improve nitrogen-use efficiency in spring wheat? Agronomy, 14(9): 2049. https://doi.org/10.3390/agronomy14092049 Xu A., Li L., Xie J., Wang X., Coulter J., Liu C., and Wang L., 2020, Effect of long-term nitrogen addition on wheat yield, nitrogen use efficiency, and residual soil nitrate in a semiarid area of the loess plateau of China, Sustainability, 12(5): 1735. https://doi.org/10.3390/su12051735 Yan H., Shi H., Hu C., Luo M., Xu C., Wang S., Li N., Tang W., Zhou Y., Wang C., Xu Z., Chen J., Ma Y., Sun D., and Chen M., 2021, Transcriptome differences in response mechanisms to low-nitrogen stress in two wheat varieties, International Journal of Molecular Sciences, 22(22): 12278. https://doi.org/10.3390/ijms222212278 Yan Q., Jia Y., Dong F., Shen Y., Li F., and Zhang M., 2024, Metabolomics uncovers the mechanisms of nitrogen response to anthocyanins synthesis and grain quality of colored grain wheat (Triticum Aestivum L.), Journal of Agricultural and Food Chemistry, 72(34): 19003-19015. https://doi.org/10.1021/acs.jafc.4c04756 Yokamo S., Irfan M., Huan W., Wang B., Wang Y., Ishfaq M., Lu D., Chen X., Cai Q., and Wang H., 2023, Global evaluation of key factors influencing nitrogen fertilization efficiency in wheat: a recent meta-analysis (2000-2022), Frontiers in Plant Science, 14: 1272098. https://doi.org/10.3389/fpls.2023.1272098 Zhang Z., Yu Z., Zhang Y., and Shi Y., 2022, Impacts of fertilization optimization on soil nitrogen cycling and wheat nitrogen utilization under water-saving irrigation, Frontiers in Plant Science, 13: 878424. https://doi.org/10.3389/fpls.2022.878424 Zörb C., Ludewig U., and Hawkesford M., 2018, Perspective on wheat yield and quality with reduced nitrogen supply, Trends in Plant Science, 23: 1029-1037. https://doi.org/10.1016/j.tplants.2018.08.012

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