بهمنظور بررسی اثرات مصرف مقادیر مختلف نیتروژن همراه با کاربرد بیوچار پوسته برنج و نانوذرات روی بر خصوصیات کمی و کیفی برنج رقم طارم هاشمی، آزمایشی بهصورت کرتهای خرد شده در قالب طرح بلوکهای کامل تصادفی با سه تکرار در مزرعه شخصی واقع در شهرستان آمل در سال زراعی 99-1398 اجرا شد. مصرف مقادیر نیتروژن در چهار سطح (صفر، 25، 50 و 75 کیلوگرم در هکتار) از منبع کود اوره بهعنوان عامل اصلی و کاربرد کودهای بیوچار (40 تن در هکتار) و نانوذرات روی (50 میلیگرم بر لیتر) در چهار سطح شامل: 1- شاهد (عدم مصرف بیوچار و نانواکسید روی)، 2- کاربرد بیوچار، 3- کاربرد نانواکسید روی و 4- کاربرد ترکیبی بیوچار و نانواکسید روی بهعنوان عامل فرعی در نظر گرفته شدند. نتایج نشان داد که کاربرد کود نیتروژن در مقادیر 50 و 75 کیلوگرم در هکتار بهترتیب موجب حصول حداکثر عملکرد دانه (4340 کیلوگرم در هکتار) و تولید بالاترین غلظت نیتروژن دانه (30/1 درصد) گردید. کاربرد ترکیبی بیوچار و نانوذرات روی سبب افزایش معنیدار خصوصیات کمی و کیفی برنج گردید، به گونهای که بیشترین عملکرد دانه تولیدی (4062 کیلوگرم در هکتار) و حداکثر غلظت روی در دانه (5/28 میلیگرم بر کیلوگرم) در شرایط کاربرد همزمان بیوچار + نانوذرات مشاهده شد. با توجه به نتایج مطالعه حاضر، مصرف نیتروژن به میزان 50 کیلوگرم در هکتار و کاربرد همزمان بیوچار پوسته برنج + نانوذرات روی بهعنوان مقدار بهینه نیتروژن و گزینه مطلوب کودی جهت افزایش عملکرد محصول و غنیسازی دانه برنج شناخته شدند.
Alharby, H. F., Metwali, E. M. R., Fuller, M. P., and Aldhebiani, A. Y. 2016. Impact of application of zinc oxide nanoparticles on callus induction, plant regeneration, element content and antioxidant enzyme activity in tomato (Solanumlycopersicum ) under salt stress. Archives of Biological Sciences 68 (4): 723-735. https://doi.org/10.2298/ABS151105017A
Ali, I., Ullah, S., He, L., Zhao, Q., Iqbal, A., Wei, S., Shah, T., Ali, N., Bo, Y., Adnan, M., Amanullah, and Jiang, L. 2020. Combined application of biochar and nitrogen fertilizer improves rice yield, microbial activity and N-metabolism in a pot experiment. PeerJ. https://doi.org/10.7717/peerj.10311
Ajayi, A. E., and Horn, R. 2016. Modification of chemical and hydrophysical properties of two texturally differentiated soils due to varying magnitudes of added biochar. Soil Tillage Research 164: 34-44. https://doi.org/10.1016/j.still.2016.01.011
Bouqbis, L., Daoud, S., Koyro, H. W., Kammann, C. I., and Ainlhout, L. F. Z. 2016. Biochar from argan shells: production and characterization. International Journal of Recycling Organic Waste in Agriculture 5 (4): 361-365. https://doi.org/10.1007/s40093-016-0146-2
Cui, Y. F., Meng, J., Wang, Q. X., Zhang, W. M., Cheng, X. Y., and Chen, W. F. 2017. Effect of straw and biochar addition on soil nitrogen, carbon, and super rice yield in cold waterlogged paddy soils of north China. Journal of Integrative Agriculture 16 (5): 1064-1074. https://doi.org/10.1016/S2095-3119(16)61578-2
Dimkpa, C. O., White, J. C., Elmer, W. H., and Ardea-Torresdey, J. 2017. Nanoparticle and ionic Zn promote nutrient loading of sorghum grain under low NPK fertilization. Journal of Agricultural and Food Chemistry 65 (39): 8552- https://doi.org/10.1021/acs.jafc.7b02961
Emami, A. 1996. Methods of plant analysis. Vol 982. Soil and Water Research Institute. 130 p. (in Persian).
Fageria, N. K., Gheyi, H. R., and Carvalho, C. S. 2014. Yield, potassium uptake, and use efficiency in upland rice genotypes. II INOVAGRI International Meeting, 13-16 April, Fortaleza, Brazil. pp 4515-
Faraji, F., Esfehani, M., Kavoosi, M., Nahvi, M., and Rabiyi, B. 2012. Effects of split application and levels of nitrogen fertilizer on growth indices and grain yield of rice (Oryza sativa Khazar). Iranian Journal of Field Crop Science 43 (2): 323-333. (in Persian with English abstract). https://doi.org/10.22059/ijfcs.2012.28492
Farooq, M., Ullah, A., Rehman, A., Nawaz, A., Nadeem, A., Wakeel, A., Nadeem, F., and Siddique, K. H. M. 2018. Application of zinc improves the productivity and biofortification of fine grain aromatic rice grown in dry seeded and puddle transplanted production systems. Field Crops Research 216: 53- https://doi.org/10.1016/j.fcr.2017.11.004
Hirzel, J., Pedreros, A., and Cordero, K. 2011. Effect of nitrogen rates and split nitrogen fertilization on grain yield and its components in flooded rice. Chilean Journal of Agricultural Research 71 (3): 437- https://doi.org/10.4067/S0718-58392011000300015
Huang, M., Long, F. A. N., Jiang, L. G., Yang, S. Y., Zou, Y. B., and Uphoff, N. 2019. Continuous applications of biochar to rice: Effects on grain yield and yield attributes. Journal of Integrative Agriculture 18 (3): 563- https://doi.org/10.1016/S2095-3119(18)61993-8
Hussain, S., Maqsood, M. A., Rengel, Z., and Aziz, T. 2012. Biofortification and estimated human bioavailability of zinc in wheat grains as influenced by methods of zinc application. Plant and Soil 361 (1-2): 279-290. https://doi.org/10.1007/s11104-012-1217-4
Islam, S. M. M., Gaihre, Y. K., Shah, A. L., Singh, U., Sarkar, M. I. U., Satter, J., Sanabria, M. A., and Biswas, J. C. 2016. Rice yields and nitrogen use efficiency with different fertilizers and water management under intensive lowland rice cropping systems in Bangladesh. Nutrient Cycling in Agroecosystems 106: 143- https://doi.org/10.1007/s10705-016-9795-9
Kelarijani, S. M., Barari Tari, D., Niknejad, Y., Fallah, H., and Amiri, E. 2021. Nitrogen affects on rice growth and nitrogen efficiency indices in different geographical regions in northern Iran. Romanian Agricultural Research 38: 79-92.
Ji, C., Li, J., Jiang, C., Zhang, L., Shi, L., Xu, F., and Cai, H. 2021. Zinc and nitrogen synergistic act on root-to-shoot translocation and preferential distribution in rice. Journal of Advanced Research. (In Press). https://doi.org/10.1016/j.jare.2021.04.005
Kamara, A., Kamara, H. S., and Kamara, M. S. 2015. Effect of rice straw biochar on soil quality and the early growth and biomass yield of two rice varieties. Agricultural Sciences 6 (08): 798. https://doi.org/10.4236/as.2015.68077
Kavoosi, M., and Yazdani, M. R. 2020. Effect of irrigation interval and nitrogen fertilizer rate on grain yield and yield components of rice (Oryza sativa) cv. Hashemi. Iranian Journal of Crop Sciences 22 (2): 168-182. (in Persian with English abstract). https://doi.org/10.29252/abj.22.2.168
Kheyri, N., and Mobasser, H. R. 2016. Effect of seedling age and seeding rate in nursery on some agronomic traits and seed yield of rice (Oryza sativa) cv. Tarom Hashemi. Journal of Crop Ecophysiology 10 (2): 431-446. (in Persian with English abstract).
Kheyri, N., Ajam-Norouzi, H., Mobasser, H. R., and Torabi, B. 2018. Effect of different resources and methods of silicon and zinc application on agronomic traits, nutrient uptake and grain yield of rice (Oryza sativa). Applied Ecology and Environmental Research 16: 5781-5798. https://doi.org/10.15666/aeer/1605_57815798
Kheyri, N., Ajam-Norouzi, H., Mobasser, H. R., and Torabi, B. 2019a. Effects of silicon and zinc nanoparticles on growth, yield, and biochemical characteristics of rice. Agronomy Journal 111 (6): 3084- https://doi.org/10.2134/agronj2019.04.0304
Kheyri, N., Ajam Norouzi, H., Mobasser, H. R., and Torabi, B. 2019b. Comparison of NPs foliar application of silicon and zink with soil application on agronomic and physiological traits of rice (Oryza sativa ). Iranian Journal of Field Crops Research 17 (3): 503-515. (in Persian with English abstract). https://doi.org/10.22067/gsc.v17i3.80028
Kheyri, N., and Abbasalipour, M. 2021. Effect of foliar application of ZnO nanoparticles on yield components, yield and Zn efficiency indices in rice under water stress. Environmental Stresses in Crop Sciences 13 (4): 1203- (in Persian with English abstract). https://doi.org/10.22077/escs.2020.2298.1591
Koyama, S., Katagiri, T., Minamikawa, K., Kato, M., and Hayashi, H. 2016. Effects of rice husk charcoal application on rice yield, methane emission, and soil carbon sequestration in andosol paddy soil. Japan Agricultural Research Quarterly 50: 319- https://doi.org/10.6090/jarq.50.319
Lai, L., Ismail, M. R., Muharam, F. M., Yusof, M. M., Ismail, R., and Jaafar, N. M. 2017. Effect of rice straw biochar and nitrogen fertilizer on rice growth and yield. Asian Journal of Crop Science 9 (4): 159- https://doi.org/10.3923/ajcs.2017.159.166
Liu, J., Schulz, H., Brandl, S., Miehtke, H., Huwe, B., and Glaser, B. 2012. Shortterm effect of biochar and compost on soil fertility and water status of a Dystric Cambisol in NE Germany under field conditions. Journal of Plant Nutrition and Soil Science 175 (5): 698-707. https://doi.org/10.1002/jpln.201100172
Mahmoud-Soltani, S., Allahgholipoor, M., Shakouri Katigari, M., and Poursafar-Tabalvandani, A. 2020. Effect of basal and foliar application of zinc sulphate fertilizer on zinc uptake, yield and yield components of rice (Hashemi Cultivar). Iranian Journal of Soil and Water Research 51: 1013-1026. (in Persian with English abstract). https://doi.org/10.22059/ijswr.2020.291977.668383
Mahmoud Soltani, S., and Abbasian, A. 2021. Simultaneous application effect of rice husk biochar and zinc sulfate fertilizer on yield, yield components of rice (Oryza sativa) Hashemi cultivar and some soil chemical properties. Iranian Journal of Soil and Water Research 52 (3): 707-719. (in Persian with English abstract). https://doi.org/10.22059/ijswr.2021.315776.668843
Manolikaki, I., and Diamadopoulos, E. 2017. Ryegrass yield and nutrient status after biochar application in two Mediterranean soils. Archives of Agronomy and Soil Science 63 (8): 1093-1107. https://doi.org/10.1080/03650340.2016.1267341
Mavi, M. S., Singh, G., Singh, B. P., Sekhon, B. S., Choudhary, O. P., Sagi, S., and Berry, R. 2018. Interactive effects of rice-residue biochar and N-fertilizer on soil functions and crop biomass in contrasting soils. Journal of Soil Science and Plant Nutrition 18 (1): 41-59. https://doi.org/10.4067/S0718-95162018005000201
Mazaherinia, S., Astaraei, A. R., Fotovat, A., and Monshi, A. 2010. Effect of nano iron oxide particles on Fe, Mn, Zn and Cu concentrations in wheat plant. Journal of World Applied Sciences 7 (1): 156-162.
Moslehi, N., Niknejad, Y., Fallah Amoli, H., and Kheyri, N. 2016. Effect of integrated application of chemical, organic and biological fertilizers on some of the morphophysiological traits of rice (Oryza sativa) Tarom Hashemi cultivar. Crop Physiology Journal 8 (30): 87-103. (in Persian).
Nematzadeh, G. A., Khush, G. S., and Brar, B. S. 1993. Classification of rice germplasm from Iran via isozyme analysis. Rice Genetic Newsletter 1: 1-
Oladele, S., Adeyemo, A., Awodun, M., Ajayi, A., and Fasina, A. 2019. Effects of biochar and nitrogen fertilizer on soil physicochemical properties, nitrogen use efficiency and upland rice (Oryza sativa) yield grown on an Alfisol in Southwestern Nigeria. International Journal of Recycling of Organic Waste in Agriculture 8: 295-308. https://doi.org/10.1007/s40093-019-0251-0
Pampolino, M. F., Manguiat, I. J., Ramanathan, S., Gines, H. C., Tan, P. S., Chi, T. T. N., Rajendran, R., and Buresh, R. J. 2007. Environmental impact and economic benefits of site-specific nutrient management (SSNM) in irrigated rice systems. Agricultural Systems 93 (1-3): 1-24. https://doi.org/10.1016/j.agsy.2006.04.002
Panam, Z., Astaraei, A., and Lakzian, A. 2016. Effect of zinc oxide (nano and ordinary) and Glomus intraradices fungi on yield components and concentration of micronutrients in green bean plant. Journal of Soil and Plant Interactions 7 (2): 71-83. (in Persian with English abstract).
Paramasivam, K., Saraswathi, R., Subramanian, M., Marimuthu, R., Parthasarathy, P., Ramanathan, S., Manuel, S. W., and Ranganathan, T. B. 2005. A high yielding medium duration rice variety for Tamil Nadu. Mad Agriculture Journal 92: 1-3.
Pramanik, K., and Bera, A. K. 2013. Effect of seedling age and nitrogen fertilizer on growth, chlorophyll content, yield and economics of hybrid rice (Oryza sativa). Journal of Agronomy and Plant Production 4 (S): 3489-3499.
Rehman, H. U. 2014. N-Zn dynamics under different rice production systems (Doctoral dissertation. University of Agriculture. Faisalabad).
Sandhu, S. S., and Mahal, S. S. 2014. Performance of rice under different planting methods, nitrogen levels and irrigation schedules. Indian Journal of Agronomy 59 (3): 392-
Schulz, H., Dunst, G., and Glaser, B. 2013. Positive effects of composted biochar on plant growth and soil fertility. Agronomy for sustainable development 33 (4): 817-827. https://doi.org/10.1007/s13593-013-0150-0
Shahane, A. A., Shivay, S., Kumar, D., and Prasanna, R. 2018. Interaction effect of nitrogen, phosphorus, and zinc fertilization on growth, yield, and nutrient contents of aromatic rice varieties. Journal of Plant Nutrition 41: 2344-2355. https://doi.org/10.1080/01904167.2018.1510507
Sheykhzadeh, M., Mobasser, H., Rahimi Petrodi, E., and Rezvani, M. 2021. Effects of foliar application of potassium silicate and nanoparticles (silicon + zinc) in different stages of growthand development on quantitative yield and grain enrichment of rice (Oryza sativa). Iranian Journal of Field Crops Research 19 (1): 73-89. (in Persian with English abstract). https://doi.org/10.22067/jcesc.2021.37184.0
Tayefe, M., Gerayzade, A., Amiri, E., and Nasrollah Zade, 2014. Effect of nitrogen on rice yield, yield components and quality parameters. African Journal of Biotechnology 13 (1): 91-105. https://doi.org/10.5897/AJB11.2298
Tuyogon, D. S. J., Impa, S. M., Castillo, O. B., Larazo, W., and Johnson-Beebout, S. E. 2016. Enriching rice grain zinc through zinc fertilization and water management. Soil Science Society of America Journal 80 (1): 121-134. https://doi.org/10.2136/sssaj2015.07.0262
Wu, P., Cui, P. X., Fang, G. D., Wang, Y., Wang, S. Q., Zhou, D. M., Zhang, W., and Wang, Y. J. 2018. Biochar decreased the bioavailability of Zn to rice and wheat grains: insights from microscopic to macroscopic scales. Science of the Total Environment 621: 160-167. https://doi.org/10.1016/j.scitotenv.2017.11.236
Xu, H., Zhong, G., Lin, J., Ding, Y., Li, G., Wang, S., Liu, Z., Tang, S., and Ding, C. 2015. Effect of nitrogen management during the panicle stage in rice on the nitrogen utilization of rice and succeeding wheat crops. European Journal of Agronomy 70: 41-47. https://doi.org/10.1016/j.eja.2015.06.008
Yuvaraj, M., and Subramanian, K. S. 2014. Fabrication of zinc nano fertilizer on growth parameter of rice. Trends in Biosciences 7 (17): 2564-2565.
شیخ نظری, سبحان, نیکنژاد, یوسف, فلاح, هرمز, & براری تاری, داوود. (1401). اثر مصرف مقادیر نیتروژن همراه با بیوچار و نانوذرات روی بر خصوصیات کمی و کیفی برنج (Oryza sativa L.). پژوهشهای زراعی ایران, 20(3), 349-361. doi: 10.22067/jcesc.2022.75649.1150
MLA
سبحان شیخ نظری; یوسف نیکنژاد; هرمز فلاح; داوود براری تاری. "اثر مصرف مقادیر نیتروژن همراه با بیوچار و نانوذرات روی بر خصوصیات کمی و کیفی برنج (Oryza sativa L.)", پژوهشهای زراعی ایران, 20, 3, 1401, 349-361. doi: 10.22067/jcesc.2022.75649.1150
HARVARD
شیخ نظری, سبحان, نیکنژاد, یوسف, فلاح, هرمز, براری تاری, داوود. (1401). 'اثر مصرف مقادیر نیتروژن همراه با بیوچار و نانوذرات روی بر خصوصیات کمی و کیفی برنج (Oryza sativa L.)', پژوهشهای زراعی ایران, 20(3), pp. 349-361. doi: 10.22067/jcesc.2022.75649.1150
VANCOUVER
شیخ نظری, سبحان, نیکنژاد, یوسف, فلاح, هرمز, براری تاری, داوود. اثر مصرف مقادیر نیتروژن همراه با بیوچار و نانوذرات روی بر خصوصیات کمی و کیفی برنج (Oryza sativa L.). پژوهشهای زراعی ایران, 1401; 20(3): 349-361. doi: 10.22067/jcesc.2022.75649.1150
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