Evaluation of the effect of integrated fertilization on some soil properties and the growth and yield of Armenian cucumber (Cucumis melo var.flexuosus Nauds)
DOI:
https://doi.org/10.54174/4sybmv31Keywords:
Integrated fertilization ,Organic fertilization, Bio-fertilizers, Sustainable agriculture.Abstract
This study aimed to evaluate the effect of integrated fertilization (chemical, organic, and biological) on some chemical and biological properties of soil as well as the growth and yield of Armenian cucumber (Cucumis melo var. flexuosus).
A field experiment was carried out with five fertilizer treatments (control without fertilizer, chemical fertilizer (CF), organic fertilizer (OF), biological fertilizer (BF) and their mixture (CF+OF+BF). The following properties were evaluated: soil salinity (EC), soil reaction (pH), organic matter content (OM), NPK concentration in soil and plant, and numbers of Azotobacter and Pseudomonas bacteria in the rhizosphere.
The results showed that the integrated fertilization treatment was superior in improving the chemical properties of the soil, as it reduced the EC and pH values, and increased OM. It also recorded the highest concentrations of major nutrients in the soil and plant (N: 40,000, P: 44,000, K: 40,000 mg kg⁻¹), compared to the control treatment.
It led to a significant increase in the numbers of beneficial bacteria 28.66×10³ and 23.33×10³ cfu /g soil for Azotobacter and Pseudomonas, respectively. These results confirm the effectiveness of integrated fertilization in enhancing soil fertility and improving nutritional and biological efficiency, which supports its adoption as a sustainable strategy as an alternative or complement to traditional chemical fertilization.
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References
Alguacil,M. M.; E. Caravaca ; A. Roldan (2005) Changes in rhizosphere microbial activity mediated by native or allochthonous AM fungal in the reforestation at mediterranean degraded environment Biology and Fertility of Soil 41(1) :59-68.
Ali, Nour El-Din Shawqi (2011) Fertilizer Technologies and Their Uses, College of Agriculture - University of Baghdad.
Al-Rawi, Khashe’ Mahmoud and Abdul Aziz Mohammed Khalaf (2000). Design and Analysis of Agricultural Experiments. Dar Al-Kutub for Printing and Publishing. University of Mosul.
Al-Halfi, Intisar Hadi Hamidi: and Falih, Mukhallad Ibrahim (2017) Response of the yield of two varieties of bread wheat to mineral, biological and organic fertilizers. Iraqi Journal of Agricultural Sciences -1661-:1671(6) 48.
Black , C. A. (1965) . Methods of soil Analysis part (2) . Chemical and Microbiological Properties . Am. Soc. Agron . INC . Publisher , Madison , Wisconsin , U.S.A.
Bremner, J.M. (1970). Regular Kjeldahl methods. In: A.L. Page; R.H. Miller
and D.R. Keeney (1982) (eds.) Methods of soil analysis. Part 2, 2 nd
ed. ASA. Inc. inadison, Wisconsin, U.S.A.
Joshi D., K.M. Gediya, M. Singh and M. Kushwaha . ( 2016). Effect of organic manures on yield and yield attributes of cowpea (Vigna unguiculata (L.) Walp) under middle Gujarat condition . Extended Summaries Vol. 1 : 4th International Agronomy Congress, Nov. 22–26, 2016, New Delhi, India.
Mahdy,A.M.(2011).Comparative effects of different soil amendments on
amelioration of saline-sodic soils .Soil &Water Res .6(4) 205-216.
Meena V. S. , P. K. Mishra , J. K. Bisht , A. Pattanayak.( 2017 ). Agriculturally Important Microbes for Sustainable Agriculture . Volume I: Plant-soil-microbe nexus . Springer Nature Singapore Pte Ltd.
Murphy, J. and J. P. Riley, (1962). A modified single solution method for the determination of phosphate in natural waters. Anal. Chem. Acta. 27 : 31 – 36.
Nsabimana, D.; R.J. Haynes and F.M. wall is (2004) . Size , activity and
catabolic diversity of the soil microbial biomass as affected by land
use . Appl. Soil Ecol. 26: 81 – 92 .
Stephane, P .and Jacques , L.(2000). Specific of biovars of Ralstonia solanacearum in plant tissues by Nested .PCR RELP. Euripen J.Plant Pathology 106:255-265.
TNAU (ICAR)( 2019) .Agricultural Microbiology. Agrimoon.com.
Patel D.M. , J.C. Patel, G.N. Patel and B.J. Patel (2016). Productivity of Summer Groundnut Under Organic Farming . Extended Summaries Vol. 1 : 4th International Agronomy Congress, Nov. 22–26, New Delhi, India .
Patel T.S. , F.P. Minocheherhomji ,( 2018) Plant growth promoting Rhizobacteria: blessing to agriculture. - Int J Pure App Biosci
Parween T. ; P. Bhandari , S. Jan, M. uzzafar, T. Fatma, and S.K. Raza (2017). Role of Bioinoculants as Plant Growth-Promoting Microbes for Sustainable Agriculture . Agriculture, DOI 10.1007/978-981-10-5589-8_9.
Parewa H. P. , J. Yadav , A. Rakshit , V. S. Meena and N. Karthikeyan ( 2014 ). Plant Growth Promoting Rhizobacteria Enhance Growth and Nutrient Uptake of Crops . Agriculture for Sustainable Development 2(2):101-116 .
Zaki, Lubna Noah Amin and Mohamed Mahmoud Abdel Halim (2007). Use of beneficial microorganisms in agriculture (E.M. fertilizer). Regional Workshop on the Uses of E.M. and Recycling of Agricultural Waste in Cooperation with the Japanese EMRO Foundation, Cairo.
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