
Effects of Integrated Organic and Inorganic Fertilizers on Yield and Growth Parameters of Rice Varieties
Received date: 2018-07-10
Accepted date: 2018-11-02
Online published: 2019-05-24
We investigated the effects of integrated organic and inorganic fertilizers on the growth and yield of indica rice variety Manawthukha and japonica rice variety Genkitsukushi. In a split-plot design, the two rice varieties were assigned as main plot factors, and the integrated treatments were the subplot factors, including no-N fertilizer (N0), 50% chemical fertilizer (CF) (CF50), 100% CF (CF100), 50% CF + 50% poultry manure (PM) (CF50PM50), 50% CF + 50% cow manure (CM) (CF50CM50), and 50% CF + 50% compost (CP) (CF50CP50). CF100 was equivalent to N at 85 kg/hm2. Manure was applied based on the estimated mineralizable nitrogen (EMN) level, which is dependent on total N (%) of each manure type. Manawthukha rice plants were taller with higher tiller number and dry matter content. However, higher soil-plant analysis development (SPAD) values were measured in Genkitsukushi throughout the crop growth period, resulting in higher seed-setting rate (%) and greater yield. At the same N level, CF50PM50 application in both rice varieties resulted in higher SPAD values, plant height and tiller number than CF100. CF50PM50 containing total N more than 4% supplied synchronized N for the demands of the rice plants, resulting in maximum dry matter, yield and yield components. CF50CM50 and CF50CP50 treatments containing total N less than 4% resulted in lower yields which were similar to CF100. These results indicated that integrating organic and inorganic fertilizers enhanced growth parameters and yields of Manawthukha and Genkitsukushi, while reducing the dose of chemical fertilizer.
Moe Kyi, Moh Moh Seinn, Zaw Htwe Aung, Kajihara Yoshinori, Yamakawa Takeo . Effects of Integrated Organic and Inorganic Fertilizers on Yield and Growth Parameters of Rice Varieties[J]. Rice Science, 2019 , 26(5) : 309 -318 . DOI: 10.1016/j.rsci.2019.08.005
| [1] | Akoumianakis Κ A, Karapanos Ι C, Giakoumaki Μ, Alexopoulos A A, Passam H C.2011. Nitrogen, season and cultivar affect radish growth, yield, sponginess and hollowness.Int J Plant Prod, 5(2): 111-120. |
| [2] | Arif M, Tasneem M, Bashir F, Yassen G, Iqbal R M.2014. Effect of integrated use of organic manures and inorganic fertilizers on yield and yield components of rice.J Agric Res, 52(2): 197-206. |
| [3] | Barakat M A, Ismail S M, Ehsan M.2016. Immobilization of Ni and Zn in soil by cow and chicken manure.Int J Waste Resour, 6: 228. |
| [4] | Binh N T, Shima K.2018. Nitrogen mineralization in soil amended with compost and urea as affected by plant residues supplements with controlled C/N ratios.J Adv Agric Technol, 5: 8-13. |
| [5] | Biswas T, Paul S K, Sarkar M A R, Sarkar S K.2016. Integrated use of poultry manure with prilled urea and urea super granules for improving yield and protein content of aromatic rice (cv. BRRI dhan 50).Progress Agric, 27: 86-93. |
| [6] | Cao Y S, Tian Y H, Yin B, Zhu Z L.2013. Assessment of ammonia volatilization from paddy fields under crop management practices aimed to increase grain yield and N efficiency.Field Crops Res, 147: 23-31. |
| [7] | Cataldo D A, Schrader L E, Youngs V L.1974. Analysis by digestion and colorimetric assay of total nitrogen in plant tissues high in nitrate.Crop Sci, 14(6): 854-856. |
| [8] | Chao X, Wu L H, Ju X T, Zhang F S.2005. Role of nitrification inhibitor DMPP (3,4-dimethylpyrazole Phosphate) in NO3-N accumulation in greengrocery (Brassica campestris L. ssp chinensis) and vegetable soil. J Environ Sci, 17(1): 81-83. |
| [9] | Curtin D, Wright C E, Beare M H, Mccallum F M.2006. Hot water-extractable nitrogen as an indicator of soil nitrogen availability.Soil Sci Soc Am J, 70(5): 1512-1521. |
| [10] | Eghball B, Wienhold B J, Gilley J E, Eigenberg R A.2002. Mineralization of manure nutrients.J Soil Water Conserv, 57: 470-473. |
| [11] | Garnett T, Conn V, Kaiser B N.2009. Root based approaches to improving nitrogen use efficiency in plants.Plant Cell Environ, 32(9): 1272-1283. |
| [12] | Gil M V, Carballo M T, Calvo L F.2011. Modelling N mineralization from bovine manure and sewage sludge composts.Bioresour Technol, 102: 863-871. |
| [13] | Hasanuzzaman M, Ahamed K U, Rahmatullah N M, Akhter N, Nahar K, Rahman M L.2010. Plant growth characters and productivity of wetland rice (Oryza sativa L.) as affected by application of different manures. Emir J Food Agric, 22: 46-58. |
| [14] | Hu R F, Cao J M, Huang J K, Peng S B, Huang J L, Zhong X H, Zou Y B, Yang J C, Buresh R J.2007. Farmer participatory testing of standard and modified site-specific nitrogen management for irrigated rice in China.Agric Syst, 94(2): 331-340. |
| [15] | Huang J L, He F, Cui K H, Buresh R J, Xu B, Gong W H, Peng S B.2008. Determination of optimal nitrogen rate for rice varieties using a chlorophyll meter.Field Crops Res, 105: 70-80. |
| [16] | Hussain N, Hassan G, Arshadullah M, Mujeeb F.2001. Evaluation of amendments for the improvement of physical properties of sodic soil.Int J Agric Biol, 3: 319-322. |
| [17] | John F, Pain B F, Chambers B J, Williams J C.2000. Plant uptake of nitrogen from the organic nitrogen fraction of animal manures: A laboratory experiment.J Agric Sci, 134(2):159-168. |
| [18] | Kenchaiah A.1997. Organic farming in rice [Ph.D. Thesis]. Tamil Coimbatore: Nadu Agricultural University. |
| [19] | Khalil M I, Hossain M B, Schmidhalter U.2005. Carbon and nitrogen mineralization in different upland soils of the subtropics treated with organic materials.Soil Biol Biochem, 37(8): 1507-1518. |
| [20] | Kirchmann H, Lundvall A.1993. Relationship between nitrogen immobilization and volatile fatty acids in soil after application of pig and cattle slurry.Biol Fert Soils, 15(3): 161-164. |
| [21] | Krupnik T J, Six J, Ladha J K, Paine M J, Kessel C V.2004. An assessment of fertilizer nitrogen recovery efficiency by grain crops. In: Mosier A R. Agriculture and the Nitrogen Cycle: Assessing the Impacts of Fertilizer Use on Food Production and the Environment. Paris, France: Scientific Committee on Problems of the Environment. |
| [22] | Liang Y C, Yang Y F, Yang C G, Shen Q R, Zhou J M, Yang L Z.2003. Soil enzymatic activity and growth of rice and barley as influenced by organic matter in an anthropogenic soil.Geoderma, 115: 149-160. |
| [23] | Liu X W, Wang H Y, Zhou J M, Hu F Q, Zhu D J, Chen Z M, Liu Y Z.2016. Effect of N fertilization pattern on rice yield, N use efficiency and fertilizer-N fate in the Yangtze River basin, China.PLoS One, 11: e0166002. |
| [24] | Masarirambi M T, Mandisodza F C, Mashingaidze A B, Bhebhe E.2012. Influence of plant population and seed tuber size on growth and yield components of potato (Solanum tuberosum). Int J Agr Biol, 14: 545-549. |
| [25] | Miah M M U.1994. Prospects and problems of organic farming in Bangladesh. Paper presented at the Workshop on Integrated Nutrient Management for Sustainable Agriculture held at SRDI, Dhaka: 26-28. |
| [26] | Muramoto J, Goto I, Ninaki M.1992. Rapid analysis of exchangeable cations and cation exchange capacity (CEC) of soils by shaking extraction method.J Soil Sci Plant Nutr, 63: 210-215. |
| [27] | Murphy J, Riley J P.1962. A modified single solution method for the determination of phosphate in natural waters.Anal Chim Acta, 27: 31-36. |
| [28] | Myint A K, Yamakawa T, Zenmyo T, Thao H T B, Sarr P S.2011. Effects of organic-manure application on growth, grain yield, and nitrogen, phosphorus, and potassium recoveries of rice variety Manawthuka in paddy soils of differing fertility.Commun Soil Sci Plant Anal, 42: 457-474. |
| [29] | Nishio M.2007. Basic Knowledge of Using Compost and Organic Fertilizers. Tokyo: Association of Rural and Fishing Cooperation: 213. |
| [30] | Nuruzzaman M, Yamamoto Y, Nitta Y, Yoshida T, Miyazaki A.2000. Varietal differences in tillering ability of fourteen japonica and indica rice varieties. Soil Sci Plant Nutr, 46(2): 381-391. |
| [31] | Ohyama T, Ito M, Kobayashi K, Araki S, Yasuyoshi S, Sasaki O, Yamazaki T, Soyama K, Tanemura R, Mizuno Y, Ikarashi T.1991. Analytical procedures of N, P, K contents in plant and manure materials using H2SO4-H2O2 Kjeldahl digestion method.Bull Facul Agric Niigata Univ, 43: 110-120. |
| [32] | Peng S B, Yang J C.2003. Current status of the research on high yielding and high efficiency in resource use and improving grain quality in rice.Chin J Rice Sci, 17: 275-280. (in Chinese with English abstract) |
| [33] | Peng S B, Buresh R J, Huang J L, Zhong X H, Zou Y B, Yang J C, Wang G H, Liu Y Y, Hu R F, Tang Q Y, Cui K H, Zhang F S, Dobermann A.2010. Improving nitrogen fertilization in rice by site-specific N management: A review.Agron Sustain Dev, 30(3): 649-656. |
| [34] | Razzaque M M A.1996. Comparative study on the effect of rice straw, farmyard manure and fertilizer nitrogen on the growth and yields of BR11 rice. [MS. Thesis]. Mymensingh: Bangladesh Agricultural University. |
| [35] | Sahrawat K L.1983. Nitrogen availability indexes for submerged rice soils.Adv Agron, 36: 415-451. |
| [36] | Sharma A R, Mitra B N.1991. Direct and residual effect of organic material and phosphorous fertilizers in rice (Oryza sativa L.) based cropping System. Ind J Agron, 36: 299-303. |
| [37] | Singh G R, Chaure N K, Parihar S S.2001. Organic farming for sustainable agriculture.Ind Farming, 52: 12-17. |
| [38] | Sudarsono W A, Melati M, Aziz S A.2014. Growth and yield of organic rice with cow manure application in the first cropping season.Agrivita J Agric Sci, 36: 19-25. |
| [39] | Truog E.1930. The determination of the readily available phosphorus in soils.J Amer Soci Agron, 22: 874-882. |
| [40] | Vose P B, Blixt S G.1984. Crop breeding: A contemporary basis. Oxford (Oxfordshire), New York: Pergamon Press: 443. |
| [41] | Whitmore A P.2007. Determination of the mineralization of nitrogen from composted chicken manure as affected by temperature.Nutr Cycl Agroecosys, 77: 225-232. |
| [42] | Yang Y C, Zhang M, Li Y C, Fan X H, Geng Y Q.2012. Controlled release urea improved nitrogen use efficiency, activities of leaf enzymes, and rice yield.Soil Sci Soc Am J, 76(6): 2307-2317. |
| [43] | Yoshida S.1981. Fundamental of Rice Crop Science. Los Baños, Laguna, the Philippines: International Rice Research Institute: 269 |
| [44] | Zhang M, Yao Y L, Tian Y H, Ceng K, Zhao M, Zhao M, Yin B.2018. Increasing yield and N use efficiency with organic fertilizer in Chinese intensive rice cropping systems.Field Crops Res, 227: 102-109. |
| [45] | Zhu G L, Peng S B, Huang J L, Cui K H, Nie L X, Wang F.2016. Genetic improvements in rice yield and concomitant increases in radiation and nitrogen-use efficiency in middle reaches of Yangtze River.Sci Rep, 6: 21049. |
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