FAO AGRIS - Système international des sciences et technologies agricoles

Spectral Signature Description production and quality characteristics of potato plants in response to different levels of mineral and organic fertilization.

2025

Malak Adnan Al-Sheman


Informations bibliographiques
Editeur
Damascus University . Faculty of agricultural engineering
D'autres materias
تسميد; Spunta; الإنتاجية; فيرمي كمبوست; السلوك الطيفي; النمو; Potato; سبونتا; Spectral behavior
Langue
arabe
Note
References 1-Abdallah, N.; Alhamadani, S. and Kadhum, A. (2021). Response of potatoes planted in Gypsifrious soil to organic, biologicaland mineral fertilization. College of Agriculture/University of Anbar,8(2):89 2-Abdel Naby, H. M.; E. L. El-Gamily and A. A. A. Gab Allah. (2018). Response of Potato Plants to Sources and Rates of Potassium Fertilizer. Plant Production, Mansoura Univ., 9(1):67-71, 2018. 3- Akhand, K., Nizamuddin, M., Roytman, L. and Kogan, F. (2016). Using Remote Sensing Satellite Data and Artificial Neural Network for Prediction of Potato Yield in Bangladesh. Remote Sensing SPIE Digital Library, 11(3):52-66. 4- Alam, M. N., Jahan, M. S., Ali, M. K., Ashraf, M. A., & Islam, M. K. (2007). Effect of vermicompost and chemical fertilizers on growth, yield and yield components of potato in barind soils of Bangladesh. Journal of Applied Sciences Research, 3(12), 1879–1888. 5-Al-Khaled, A., Atownsend, P. and Wang, Y. (2023). American Journal of potato Research. 100 (1): 1-14. 6- Al-Gaadi, K. A., Al-Hassaballa, A. A., Tola, E.and Kayad, A. (2016). Prediction of Potato Crop Yield Using Precision Agriculture Techniques. Journal Pone, 11(9). 7-Ansari, A. A. (2008). Effect of Vermicompost on the Productivity of Potato (Solanum tuberosum), Spinach (Spinacia oleracea) and Turnip (Brassica campestris). World Journal of Agricultural Sciences 4 (3): 333-336. 8- Baniuniene A., Zekaite V. (2008). The Effect of Mineral and Organic Fertilizers on Potato Tuber Yield and Quality. Agronomi jas Vēstis (Latvian Journal of Agronomy), No.11, LLU, 2008.9-Barakat, M. S., Abdo-rozik, A.H., and AL-Aroby, S.M. Studies on the response of potato. (1991). Growth, yield and tuber quality to source and leaves of nitrogen. Alex. J, Agri. Res.36 (2), 129-141. 10-Bhujel, S., Pant, C. and Sapkota, S. (2021). Effect of organic and chemical fertilizer on growth and yield of potato (Solanum tuberosum) varieties in Nepal. SAARC. J. Agric, 19(1): 103-112. 11- Clevers, J.; Kooistra, L. and Van den Brande, M. (2017). Using Sentinel-2 Data for Retrieving LAI and Leaf and Canopy Chlorophyll Content of A Potato Crop. Remote Sensing, 9(5). 12- Edwards, C. A., Arancon, N. Q., & Sherman, R. (2004). Vermiculture technology: Earthworms, organic wastes, and environmental management. CRC Press 13- Eshu, K. (2014). Studies on integrated nutrient management in potato (Solanum tuberosum L.). Ph. D Theses. Indira Gandhi Krishi Vishwavi dyalaya, Raipur, India. P43. 14- FAO (2022). Food and Agriculture Organization of the United Nations. Retrieved from, http: // www.fao.org / FAOSTAT. 15-Ferdous, J., Roy, T. S., Chakraborty, R. and Mostafa, M. (2020). Vermicompost influences processing quality of potato tubers. SAARC journal of agriculture, 17(2): 173-184. 16-Lazcano, C., & Dominguez, J. (2011). The use of vermicompost in sustainable agriculture: impact on plant growth and soil fertility. Soil nutrients, 10 (1-23) : 187. 17- Li, B., Xu, X., zhang, L., Han, J., Bian, C., Li, G., Liu, J. and Jin, L. (2020). Above-ground biomass estimation and yield prediction in potato by using UAV-based RGB and hyperspectral imaging. ISPRS Journal of Photogrammetry and Remote Sensing: 161-172.18- Malla, M., Tesema, G. and Hegano, A. (2021). Evaluation of vermicompost on growth, yield and yield components of potato (Solanum tuberosum L.) in Debub Ari Woreda, Southwestern Ethiopia. Agricultural and Veterinary Sciences Vol. 9 Iss. 1. 19- Mostafa, M., Roy, T. S. and Chakraborty, R. (2019). Bio-active compounds of potato influenced by vermicompost and tuber size during ambient storage condition. International Journal of Recycling of Organic Waste in Agriculture, 8(1): 225-234. 20-Mukiibi, A., Machakaire, A.T.B. and Steyn. J. M. (2024). A Systematic Review of Vegetation Indices for Potato Growth Monitoring and Tuber Yield Prediction from Remote Sensing. Springer Science. 21- Neelam., Kumar, N., Ram, C. N., Priyanshi., Singh, S. K. and Mishra, A. K. (2025). Comparative study of organic, inorganic and biofertilizers on growth performance and yield of potato (Solanum tuberosum L.). International Journal of Research in Agronomy 2025; 8(5): 490-493. 22-Panigrahy, S. and Chakraborty, M. (1998). An Integrated Approach for Potato Crop Intensification Using Temporal Remote Sensing Data. ISPRS Journal of photogrammetry and remote sensing, 53(1): 54-60. 23-Paz-Solis, A. (2002). Leaf Area Index (LAI), Landsat 7 ETM+ Satellite images, and GIS used to determine fire and restoration activity along the Rio Grande in the Albuquerque area for June 2000 and 2001, CE 547- GIS in water Resources Engineering. 24- Reddy, M., Reddy, K. S., & Reddy, K. (2010). Influence of integrated nutrient management on growth and yield of potato. Journal of Soils and Crops, 20(2), 255–258. 25-Rehman, S., Castro, F., Aprile, A., Benedetti, M. and Fanizzi, F. P. (2023). Vermicompost: Enhancing Plant Growth and Combating Abiotic and Biotic Stress. Agronomy, 13(4): 1134.26-Rouse, J. W., Haas, R. H., Schell, J. A and Deering, D.W. (1973). Monitoring Vegetation Systems in the Great Plains with ERTS. Third ERTS Symposium, NASA SP-351 I:309-317. 27- Serrano, L., J. Penuelas, and S.L. Ustin, (2002). Remote Sensing of Nitrogen and Lignin in Mediterranean vegetation from AVIRIS Data: Decomposing Biochemical from Structural Signals. Remote Sensing of Environment 81: 355-364. 28-Yongxin, l., Shuang, l., Shaoguang, D., Yanran, Y., Bo, l., Dianqiu, L., Liping, J., Chunsong, B. and Jiangang, L. (2023). Methodological evolution of potato yield prediction: a comprehensive review. Plant Science. DOI 10.3389 29-Sharma, R. C., & Banik, P. (2014). Vermicompost and fertilizer application: Effect on Productivity and Profitability of baby corn (Zea Mays L.) and soil health. Compost Science & Utilization, 22 ( 2 ) : 92-83. . 30-Theunissen, J., Ndakidemi, P. A., & Laubscher, C. P. (2010). Potential of vermicompost produced from plant waste on the growth and nutrient status in vegetable production. International Journal of the physical sciences. 31- Zewide, I., Singh, S., & Kassa, H. (2021). Vermicompost and NP Fertilizers Jointly Enhance Growth and Biomass and Improve Quality of Potato Tubers. Russian Agricultural Sciences, 47: 333-339.
Type
Thesis

2025-11-20
EndNote
Consulter Google Scholar
Si vous remarquez des informations incorrectes dans cette référence bibliographique, veuillez nous contacter à l'adresse [email protected]