107
Views
0
CrossRef citations to date
0
Altmetric
Research Articles

Assessment of cost and effect of integrated application of granular nutrient-rich poultry organic fertilizer and inorganic fertilizers on biomass yield of Aloe barbadensis in agro-climatic zone of Kabul, Afghanistan

, , , , &
Pages 4239-4251 | Received 08 Dec 2021, Accepted 25 May 2023, Published online: 21 Jun 2023

References

  • Antonious, G., E. Turley, and M. Dawood. 2019. Ascorbic acid, sugars, phenols, and nitrates concentrations in tomato grown in animal manure amended soil. Agriculture 9 (5):94. doi: 10.3390/agriculture9050094.
  • Assefa, S., W. Haile, and W. Tena. 2021. Effects of phosphorus and sulfur on yield and nutrient uptake of wheat (Triticum aestivum L.) on Vertisols, North Central, Ethiopia. Heliyon 7 (3):e06614. doi: 10.1016/j.heliyon.2021.e06614.
  • Bamagoos, A., H. Alharby, and S. Fahad. 2021. Biochar coupling with phosphorus fertilization modifies antioxidant activity, osmolyte accumulation and reactive oxygen species synthesis in the leaves and xylem sap of rice cultivars under high-temperature stress. Physiology and Molecular Biology of Plants: An International Journal of Functional Plant Biology 27 (9):2083–100. doi: 10.1007/s12298-021-01062-7.
  • Bashir, M. A., M. Naveed, Z. Ahmad, B. Gao, A. Mustafa, and A. Núñez-Delgado. 2020. Combined application of biochar and sulfur regulated growth, physiological, antioxidant responses and Cr removal capacity of maize (Zea mays L.) in tannery polluted soils. Journal of Environmental Management 259:110051. doi: 10.1016/j.jenvman.2019.110051.
  • Carciochi, W. D., F. Salvagiotti, A. Pagani, N. I. R. Calvo, M. Eyherabide, H. R. S. Rozas, and I. A. Ciampitti. 2020. Nitrogen and sulfur interaction on nutrient use efficiencies and diagnostic tools in maize. European Journal of Agronomy 116:126045. doi: 10.1016/j.eja.2020.126045.
  • Chowdhury, T., M. A. H. Chowdhury, W. Qingyue, C. E. Enyoh, W. Wang, and M. S. I. Khan. 2021. Nutrient uptake and pharmaceutical compounds of Aloe vera as influenced by integration of inorganic fertilizer and poultry manure in soil. Heliyon 7 (7):e07464. doi: 10.1016/j.heliyon.2021.e07464.
  • Chowdhury, T., M. A. H. Chowdhury, M. A. Rahman, K. Nahar, M. T. I. Chowdhury, and M. S. I. Khan. 2020c. Response of Aloe vera to inorganic and organic fertilization in relation to leaf biomass yield and post harvest fertility of soil. Bulgarian Journal of Agricultural Science 26 (2):346–54.
  • Chowdhury, M. A. H., T. Sultana, M. A. Rahman, T. Chowdhury, C. E. Enyoh, B. K. Saha, and W. Qingyue. 2020a. Nitrogen use efficiency and critical leaf N concentration of Aloe vera in urea and diammonium phosphate amended soil. Heliyon 6 (12):e05718. doi: 10.1016/j.heliyon.2020.e05718.
  • Chowdhury, M. A. H., T. Sultana, M. A. Rahman, B. K. Saha, T. Chowdhury, and S. Tarafder. 2020b. Sulphur fertilization enhanced yield, its uptake, use efficiency and economic returns of Aloe vera L. Heliyon 6 (12):e05726. doi: 10.1016/j.heliyon.2020.e05726.
  • Cristiano, G., B. Murillo-Amador, and B. De Lucia. 2016. Propagation techniques and agronomic requirements for the cultivation of Barbados aloe (Aloe vera (L.) Burm. F.)—A review. Frontiers in Plant Science 7:1410. doi: 10.3389/fpls.2016.01410.
  • Dastagir, G., and S. Hussain. 2015. Effect of fertilizer treatments on the growth of Aloe vera L. Pakistan Journal of Botany 47:147–55.
  • Duncan, E. G., C. A. O’Sullivan, M. M. Roper, J. S. Biggs, and M. B. Peoples. 2018. Influence of co-application of nitrogen with phosphorus, potassium and sulphur on the apparent efficiency of nitrogen fertiliser use, grain yield and protein content of wheat. Field Crops Research 226:56–65. doi: 10.1016/j.fcr.2018.07.010.
  • Eisa, E. M., T. I. M. Idris, and M. O. Warrag. 2014. Influence of sulfur fertilizer on growth and yield of aloe vera plants. Sudan Journal of Science and Technology 15:65–73.
  • El Baroudy, A. A. 2016. Mapping and evaluating land suitability using a GIS-based model. CATENA 140:96–104. doi: 10.1016/j.catena.2015.12.010.
  • Fahad, S., S. Hussain, S. Saud, M. Tanveer, A. A. Bajwa, S. Hassan, A. N. Shah, A. Ullah, C. Wu, F. A. Khan, et al. 2015. A biochar application protects rice pollen from high-temperature stress. Plant Physiology and Biochemistry (PPB) 96:281–7. doi: 10.1016/j.plaphy.2015.08.009.
  • Fahad, S., O. Sonmez, S. Saud, D. Wang, C. Wu, M. Adnan, and V. Turan. 2021. Sustainable soil and land management and climate change. Boca Raton: CRC Press.
  • Farrokhi, E., A. R. Koocheki, M. M. Nassiri, and R. Khademi. 2021. The effects of manure and biological and chemical fertilizers on yield and some morphological characteristics of aloe vera (Aloe burbadensis Miller.) in Bushehr Province.
  • Fazeel, M. L. M., S. Sutharsan, and S. Srikrishnah. 2019. Effect of different levels of nitrogen fertilizer and jeewamirta application on growth and yield of Abelmoschus esculentus L.
  • Ghosh, B. C., B. N. Mittra, R. Saha, and S. Palit. 2003. Performance of aloe vera as influenced by organic and inorganic sources of fertilizer supplied through fertigation.
  • Guleria, V., A. Vashisht, A. Gupta, T. Salven, C. Thakur, and D. Kumar. 2013. Response of Aloe vera to organic sources of nutrients under rainfed conditions. Medicinal Plants—International Journal of Phytomedicines and Related Industries 5 (3):159–63. doi: 10.5958/j.0975-6892.5.3.025.
  • Haidari, M. D., K. Kojima, N. Ohkama-Ohtsu, S. Sugihara, H. Sekimoto, S. Habibi, and T. Yokoyama. 2017. Evaluation of the effects of soil microorganisms on 137Cs uptake of soybean cultivars with different 137Cs accumulation properties in seeds as affected by single/co-inoculation using Bradyrhizobium and arbuscular mycorrhizal fungi and soil types. Soil Microorganisms 71 (2):49–63.
  • Hasan, M. U., R. Riaz, A. U. Malik, A. S. Khan, R. Anwar, R. N. U. Rehman, and S. Ali. 2021. Potential of Aloe vera gel coating for storage life extension and quality conservation of fruits and vegetables: An overview. Journal of Food Biochemistry 45 (4):e13640. doi: 10.1111/jfbc.13640.
  • Hassanpouraghdam, M. B., L. Vojodi Mehrabani, R. Badali, M. A. Aazami, F. Rasouli, K. KaKaei, and M. Szczepanek. 2022. Cerium oxide salicylic acid nanoparticles’ (CeO2: SA-NPs) foliar application and in-soil animal manure use influence the growth and physiological responses of Aloe vera L. Agronomy 12 (3):731. doi: 10.3390/agronomy12030731.
  • Hussain, S., M. Mubeen, S. R. Sultana, A. Ahmad, S. Fahad, W. Nasim, S. Ahmad, A. Ali, H. U. Farid, and H. M. R. Javeed. 2022. Managing greenhouse gas emission. In Modern techniques of rice crop production, 547–564. Springer Singapore Pte. Limited.
  • Kalinova, J., and N. Vrchotova. 2011. The influence of organic and conventional crop management, variety and year on the yield and flavonoid level in common buckwheat groats. Food Chemistry 127 (2):602–8. doi: 10.1016/j.foodchem.2011.01.050.
  • Kianimanesh, K., M. H. Lebaschi, K. Jaimand, V. Abdossi, and S. R. Tabaei-Aghdaei. 2021. The changes in yield, biochemical properties and essential oil compounds of saffron (Crocus sativus L.) plants treated with organic and inorganic fertilizers under dryland farming system. Journal of Medicinal Plants and By-Product 10 (1):37–44.
  • Kumar, R., and M. Mathur. 2019. Primary metabolite profiling and antioxidant potential assay from selected plant parts of Gmelina arborea. Journal of Drug Delivery and Therapeutics 9 (4-s):376–81.
  • Langholtz, M., B. H. Davison, H. I. Jager, L. Eaton, L. M. Baskaran, M. Davis, and C. C. Brandt. 2021. Increased nitrogen use efficiency in crop production can provide economic and environmental benefits. The Science of the Total Environment 758:143602. doi: 10.1016/j.scitotenv.2020.143602.
  • Liang, Q., H. Chen, Y. Gong, M. Fan, H. Yang, R. Lal, and Y. Kuzyakov. 2012. Effects of 15 years of manure and inorganic fertilizers on soil organic carbon fractions in a wheat-maize system in the North China Plain. Nutrient Cycling in Agroecosystems 92 (1):21–33. doi: 10.1007/s10705-011-9469-6.
  • Manvitha, K., and B. Bidya. 2014. Aloe vera: A wonder plant its history, cultivation and medicinal uses. Journal of Pharmacognosy and Phytochemistry 2 (5):85–8.
  • Moniruzzaman, M., B. Rokeya, S. Ahmed, A. Bhowmik, M. I. Khalil, and S. H. Gan. 2012. In vitro antioxidant effects of Aloe barbadensis Miller extracts and the potential role of these extracts as antidiabetic and antilipidemic agents on streptozotocin-induced type 2 diabetic model rats. Molecules (Basel, Switzerland) 17 (11):12851–67. doi: 10.3390/molecules171112851.
  • Morris, C., and M. Winter. 1999. Integrated farming systems: The third way for European agriculture? Land Use Policy 16 (4):193–205. doi: 10.1016/S0264-8377(99)00020-4.
  • Nejatzadeh, F. 2019. Data on growth and production of (Aloe vera L.) treated by different levels of vermicompost and nitrogen fertilizer. Data in Brief 22:709–15. doi: 10.1016/j.dib.2018.12.052.
  • Nicolau-Lapena, I., P. Colas-Meda, I. Alegre, I. Aguilo-Aguayo, P. Muranyi, and I. Vinas. 2021. Aloe vera gel: An update on its use as a functional edible coating to preserve fruits and vegetables. Progress in Organic Coatings 151:106007. doi: 10.1016/j.porgcoat.2020.106007.
  • Owoade, F. M., G. O. Adeoye, O. Oluwa, O. O. Olatunji, and B. A. Lawal. 2008. Fertilizer trials on performance of Aloe-vera. Research on Crops 9 (2):386–9.
  • Oyetunji, O., N. Bolan, and G. Hancock. 2022. A comprehensive review on enhancing nutrient use efficiency and productivity of broadacre (arable) crops with the combined utilization of compost and fertilizers. Journal of Environmental Management 317:115395. doi: 10.1016/j.jenvman.2022.115395.
  • Palm, C. A., C. N. Gachengo, R. J. Delve, G. Cadisch, and K. E. Giller. 2001. Organic inputs for soil fertility management in tropical agroecosystems: Application of an organic resource database. Agriculture, Ecosystems & Environment 83 (1–2):27–42. doi: 10.1016/S0167-8809(00)00267-X.
  • Patidar, V. P., B. Nagar, P. S. Chauhan, K. Chauhan, A. S. Vijayan, S. B. S. Pandey, and R. K. Nagar. 2020. Effect of organic manures on growth performance of Aloe barbadensis Mill. in Semi-arid region of Rajasthan. Journal of Pharmacognosy and Phytochemistry 9 (6):1587–8.
  • Rahimi, A., S. Siavash Moghaddam, M. Ghiyasi, S. Heydarzadeh, K. Ghazizadeh, and J. Popović-Djordjević. 2019. The influence of chemical, organic and biological fertilizers on agrobiological and antioxidant properties of Syrian Cephalaria (Cephalaria syriaca L.). Agriculture 9 (6):122. doi: 10.3390/agriculture9060122.
  • Rahman, M. M., M. A. Alam, M. M. Salehin, G. S. Ahammad, R. J. Janny, N. Jahan, and M. M. Haque. 2021. Dataset on the influence of zinc foliar application and vermicompost on agromorphogenic traits of Aloe vera. Data in Brief 38:107436. doi: 10.1016/j.dib.2021.107436.
  • Sabat, M., S. Patel, P. Shelake, and M. Priyadharshini. 2018. Assessment of physical properties of fresh aloe leaves and influence of drying temperature on physico-chemical properties of aloe vera. International Journal of Chemical Studies 6 (6):2846–50.
  • Sánchez-Machado, D. I., J. López-Cervantes, R. Sendón, and A. Sanches-Silva. 2017. Aloe vera: Ancient knowledge with new frontiers. Trends in Food Science & Technology 61:94–102. doi: 10.1016/j.tifs.2016.12.005.
  • Scala, K. D., A. Vega-Gálvez, K. Ah-Hen, Y. Nuñez-Mancilla, G. Tabilo-Munizaga, M. Pérez-Won, and C. Giovagnoli. 2013. Chemical and physical properties of aloe vera (Aloe barbadensis Miller) gel stored after high hydrostatic pressure processing. Food Science and Technology 33 (1):52–9. doi: 10.1590/S0101-20612013005000002.
  • Shah, Fahad, Saddam, Hussain, Shah, Saud, Shah, Hassan, Mohsin, Tanveer, Muhammad Zahid, Ihsan, Adnan Noor, Shah, Abid, Ullah, Fahad, Khan, Sami, Ullah, Hesham, Alharby,. (2016). A combined application of biochar and phosphorus alleviates heat-induced adversities on physiological, agronomical and quality attributes of rice. Plant Physiology and Biochemistry (PPB) 103, 191–8. doi: 10.1016/j.plaphy.2016.03.001.
  • Sharma, S., and S. Sharma. 2018. Aloe vera: An ancient herb its components and applications. Journal of Pharmacognosy and Phytochemistry 7 (6):514–6.
  • Sharrif Moghaddasi, M., and M. Res. 2011. Aloe vera their chemicals composition and applications: A review. Int J Biol Med Res, 2 (1):466–71.
  • Sultana, T., A. H. Chowdhury, A. Rahman, B. K. Saha, T. Chowdhury, M. A. Islam, and R. Fancy. 2021a. Phosphorous use efficiency and its requirement for aloe vera cultivated on silty loam soils. Communications in Soil Science and Plant Analysis 52 (3):268–85. doi: 10.1080/00103624.2020.1862152.
  • Sultana, T., A. H. Chowdhury, B. K. Saha, A. Rahman, T. Chowdhury, and R. Sultana. 2021b. Response of Aloe vera to potassium fertilization in relation to leaf biomass yield, its uptake and requirement, critical concentration and use efficiency. Journal of Plant Nutrition 44 (14):2081–95. doi: 10.1080/01904167.2021.1881546.
  • Vasco, C., B. Torres, E. Jácome, A. Torres, D. Eche, and C. Velasco. 2021. Use of chemical fertilizers and pesticides in frontier areas: A case study in the Northern Ecuadorian Amazon. Land Use Policy 107:105490. doi: 10.1016/j.landusepol.2021.105490.
  • Viyasan, A., S. Sutharsan, and S. Srikrishnah. 2021. How organic fertilizers influence growth and yield of Aloe barbadensis?
  • Walker, D. J., and M. P. Bernal. 2008. The effects of olive mill waste compost and poultry manure on the availability and plant uptake of nutrients in a highly saline soil. Bioresource Technology 99 (2):396–403. doi: 10.1016/j.biortech.2006.12.006.
  • Wei, W., Y. Yan, J. Cao, P. Christie, F. Zhang, and M. Fan. 2016. Effects of combined application of organic amendments and fertilizers on crop yield and soil organic matter: An integrated analysis of long-term experiments. Agriculture, Ecosystems & Environment 225:86–92. doi: 10.1016/j.agee.2016.04.004.
  • Winter, C. K., and S. F. Davis. 2006. Organic foods. Journal of Food Science 71 (9):R117–R124. doi: 10.1111/j.1750-3841.2006.00196.x.
  • Wisawapipat, W., N. Chooaiem, S. Aramrak, N. Chittamart, S. Nookabkaew, N. Rangkadilok, J. Satayavivad, and I. Christl. 2021. Sulfur amendments to soil decrease inorganic arsenic accumulation in rice grain under flooded and nonflooded conditions: Insights from temporal dynamics of porewater chemistry and solid-phase arsenic solubility. The Science of the Total Environment 779:146352. doi: 10.1016/j.scitotenv.2021.146352.
  • Xu, M., Y. Lou, X. Sun, W. Wang, M. Baniyamuddin, and K. Zhao. 2011. Soil organic carbon active fractions as early indicators for total carbon change under straw incorporation. Biology and Fertility of Soils 47 (7):745–52. doi: 10.1007/s00374-011-0579-8.
  • Yadav, R. L., B. S. Dwivedi, K. Prasad, O. K. Tomar, N. J. Shurpali, and P. S. Pandey. 2000. Yield trends, and changes in soil organic-C and available NPK in a long-term rice–wheat system under integrated use of manures and fertilisers. Field Crops Research 68 (3):219–46. doi: 10.1016/S0378-4290(00)00126-X.
  • Yépez, L., M. Díaz, E. Granadillo, and F. Chacín. 1993. Frecuencia óptima de riego y fertilización en Aloe vera L. Turrialba Volumen 43:261–7.
  • Yuan, G., W. Huan, H. Song, D. Lu, X. Chen, H. Wang, and J. Zhou. 2021. Effects of straw incorporation and potassium fertilizer on crop yields, soil organic carbon, and active carbon in the rice–wheat system. Soil and Tillage Research 209:104958. doi: 10.1016/j.still.2021.104958.
  • Zhang, X., Q. Fang, T. Zhang, W. Ma, G. L. Velthof, Y. Hou, O. Oenema, and F. Zhang. 2020. Benefits and trade‐offs of replacing synthetic fertilizers by animal manures in crop production in China: A meta‐analysis. Global Change Biology 26 (2):888–900. doi: 10.1111/gcb.14826.
  • Zhang, N., L. Huang, Y. Zhang, L. Liu, C. Sun, and X. Lin. 2021. Sulfur deficiency exacerbates phytotoxicity and residues of imidacloprid through suppression of thiol-dependent detoxification in lettuce seedlings. Environmental Pollution (Barking, Essex: 1987) 291:118221. doi: 10.1016/j.envpol.2021.118221.
  • Zhang, H., M. Xu, and F. Zhang. 2009. Long-term effects of manure application on grain yield under different cropping systems and ecological conditions in China. The Journal of Agricultural Science 147 (1):31–42. doi: 10.1017/S0021859608008265.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.