Patpour, M., Hovmøller, M. S., Rodriguez-Algaba, J., Randazzo, B., Villegas, D., Shamanin, V. P., Berlin, A., Flath, K., Czembor, P., Hanzalova, A., Slikova, S., Skolotneva, E. S., Jin, Y., Szabo, L., Meyer, K. J. G., Valade, R.
, Thach, T., Hansen, J. G. & Justesen, A. F. (2022).
Wheat Stem Rust Back in Europe: Diversity, Prevalence and Impact on Host Resistance.
Frontiers in Plant Science,
13, Artikel 882440.
https://doi.org/10.3389/fpls.2022.882440
Qian, X., Zhou, J., Luo, B., Dai, H., Hu, Y., Ren, C.
, Peixoto, L., Guo, L., Wang, C., Zamanian, K., Zhao, B., Zang, H. & Zeng, Z. (2022).
Yield advantage and carbon footprint of oat/sunflower relay strip intercropping depending on nitrogen fertilization.
Plant and Soil,
481(1-2), 581-594.
https://doi.org/10.1007/s11104-022-05661-5
Alderkamp, L. M.
, Cronin, I. V., Poyda, A.
, Manevski, K., van Middelaar, C. E. & Taube, F. (2022).
Yields and Nitrogen Dynamics in Ley-Arable Systems: Comparing Different Approaches in the APSIM Model.
Agronomy,
12(3), Artikel 738.
https://doi.org/10.3390/agronomy12030738
Sha, Y., Chi, D., Chen, T., Wang, S., Zhao, Q., Li, Y., Sun, Y.
, Chen, J. & Lærke, P. E. (2022).
Zeolite application increases grain yield and mitigates greenhouse gas emissions under alternate wetting and drying rice system.
Science of the Total Environment,
838(Part 4), Artikel 156067.
https://doi.org/10.1016/j.scitotenv.2022.156067
Liu, G., Zheng, J., Chen, T., Chen, X.
, Chen, W., Sun, Y.
, Lærke, P. E., Chen, Y., Siddique, K. H. M., Chi, D.
& Chen, J. (2022).
Zeolite mitigates N2O emissions in paddy fields under alternate wetting and drying irrigation.
Agriculture, Ecosystems and Environment,
339, Artikel 108145.
https://doi.org/10.1016/j.agee.2022.108145