Open Access

Assessment of the impact of NP fertilizer application depth on the rate of initial dry matter accumulation of maize (Zea mays L.)


Cite

Fageria N.K., Baligar, V.C. (2005): Enhancing nitrogen use efficiency in crop plants. Advances in Agronomy 88: 97-185.10.1016/S0065-2113(05)88004-6Search in Google Scholar

Gaj R., Szulc P., Siatkowski I., Waligóra H. (2020): Assessment of the effect of the mineral fertilization system on the nutritional status of maize plants and grain yield prediction. Agriculture 10: 404, doi:10.3390/agriculture10090404.10.3390/agriculture10090404Search in Google Scholar

Gomez K.A., Gomez A.A. (1984): Statistical procedures for agricultural research. Wiley, New York.Search in Google Scholar

Hay R., Porter J. (2006): The Physiology of Crop Yield. 2nd Edition. Blackwell Publishing,Search in Google Scholar

Subedi K.D., Ma B.L. (2005): Nitrogen uptake and partitioning in stay-green and leafy maize hybrids. Crop Science 45: 740-747.10.2135/cropsci2005.0740Search in Google Scholar

Sucunza F.A., Gutierrez-Boem F.H., Garcia F.O., Boxler M. (2018): Long-term phosphorus fertilization of wheat, soybean and maize on Molisols: soil test trends, critical levels and balances. Eur. J. Agron. 96: 87-95.Search in Google Scholar

Szulc P., Bocianowski J., Nowosad K., Rybus-Zając M., Waligóra H., Michalski T. (2017): The dynamics of a dry matter accumulation in the initial period of growth of four varieties of the “stay-green” type of maize (Zea mays L.). Pak. J. Bot., 49 (3): 1017-1022.Search in Google Scholar

Thomas H., Stoddart J.L. (1980): Leaf senescence. Annual Review of Plant Physiology 31: 83-111.10.1146/annurev.pp.31.060180.000503Search in Google Scholar

eISSN:
1896-3811
Language:
English
Publication timeframe:
2 times per year
Journal Subjects:
Life Sciences, Bioinformatics, other, Mathematics, Probability and Statistics, Applied Mathematics