Effects of chicken manure and chemical fertilizer on Growth and Yield of Japonica Rice

Main Article Content

Phopaijit, S.
Suraphonphinit, A.
Phakamas, N.

Abstract

Organic and inorganic nitrogen fertilizers are normally used in Indica rice (Oryza sativa L.) production system, but information on the effects of chicken manure on Japonica rice is limited. The effects of chicken manure and chemical fertilizers on growth and yield of Japonica rice were determined. Rice varieties were significantly different for most traits including plant height, crop growth rate (CGR), biomass, percentage of filled and unfilled grain, number of grains per spikelet and harvest index (HI), except for grain yield. Chemical fertilizer had the highest grain yield followed by chicken manure, non-treated control and chemical fertilizer together with chicken manure, respectively. The interaction effects between fertilizer treatment and rice variety were not significant for all characters. These rice varieties seemed to better respond to chemical fertilizer than chicken manure treatments

Article Details

How to Cite
Phopaijit, S., Suraphonphinit, A., & Phakamas, N. (2022). Effects of chicken manure and chemical fertilizer on Growth and Yield of Japonica Rice. International Journal of Agricultural Technology, 18(1), 293–310. retrieved from https://li04.tci-thaijo.org/index.php/IJAT/article/view/6616
Section
Original Study

References

Alia, F. J., Shamshuddin, J., Fauziah, C. I., Husni, M. H. A. and Panhwar, Q. A. (2015). Effects of aluminum, iron and/or low pH on rice seedlings grown in solution culture. International Journal of Agriculture and Biology, 17:702-710.

Amanullah, L., Almas, K. and Shah, P. (2010). Timing and rate of nitrogen application influence profitability of maize planted at low and high densities in Northwest Pakistan. Agronomy Journal, 102:575-579.

Bricker, A. A. (1989). MSTAT-C User’s Guide. Michigan State University, East Lansing, MI.

Cordero-Lara, K. I. (2020). Temperate japonica rice (Oryza sativa L.) breeding: History, present and future challenges. Chilean Journal Agricultural Research, 80:303-314.

Dróżdż, D., Wystalska, K., Malinska, K., Grosser, A., Grobelak, A. and Kacprzak, M. (2020). Management of poultry manure in Poland – Current state and future perspectives. Journal of Environmental Management, 264:110327. Retrieved from http://www.elsevier.com/locate/jenvman.

Fageria, N. K., Baligar, V. C. and Jones, C. A. (2011). Growth and mineral nutrition of field crops. 3rd ed. Boca Raton, FL: CRC Press.

Gharib, H. S., Metwally, T. F., Naeem, S. S. and Gewaily, E. E. (2011). Influence of some stimulating compounds and nitrogen fertilizer levels on growth and yield of hybrid rice. Zagazig Journal of Agricultural Research, 38:2011. Retrieved from https://www.researchgate.net/publication /270903779.

Kakar, K., Xuan, T. D., Noori, Z., Aryan, S. and Gulab, G. (2020). Effects of organic and inorganic fertilizer application on growth, yield, and grain quality of rice. Agriculture, 10: 544. Retrieved from https://doi:10.3390/agriculture10110544.

Kousei, A. (2010). Present Situation and Future of Japanese Restaurants in Thailand, Bangkok.

Laza, M. R. C., Peng, S., Akita, S. and Saka, H. (2003). Contribution of biomass partitioning and translocation to grain yield under sub-optimum growing conditions in irrigated tice. Plant Production Science, 6:28-35.

Moe, K., Htwe, A. Z., Dien, D. C., Kajihara, Y. and Yamakawa, T. (2020). Effects of organic fertilizer applied using the estimated mineralizable nitrogen method on nitrogen uptake, growth characteristics, yield, and yield components of Genkitsukushi rice (Oryza sativa). Journal of Plant Nutrition, 43:1400-1417.

Mahmud, A. J., Shamsuddoha, A. T. M. and Haque, M. N. (2016). Effect of organic and inorganic fertilizer on the growth and yield of rice (Oryza sativa L.). Nature and Science, 14:45-54.

Mondal, D., Ghosh, A., Roy, D., Kumar, A., Shamurailatpam, D., Bera, S., Ghosh, R., Bandopadhyay, P. and Majumder, A. (2017). Yield loss assessment of rice (Oryza Sativa L.) due to different biotic stresses under system of rice intensification (SRI). Journal of Entomology and Zoology Studies, 5:1974-1980.

Nakwilai, P., Cheabu, S., Narumon, P., Saensuk, C., Arikita, S. and Malumpong, C. (2020). Evaluation of japonica rice (Oryza sativa L.) varieties and their improvement in terms of stability, yield and cooking quality by pure-line selection in Thailand. Sci Asia, 46:157-168.

NASA [Online]. Retrieved from https://power.larc.nasa.gov/data-access-viewer/ [accessed 20 July 2021].

Nishad, A., Mishra, A. N., Chaudhari, R., Aryan, R. K. and Katiyar, P. (2018). Effect of temperature on growth and yield of rice (Oryza sativa L.) cultivars. International Journal of Chemical Studies, 6:1381-1383.

Palawisut, W., Ariyapruek, D., Anawong, J. and Khanjana, P. (1995). Effect of planting dates on yield and quality of Japonica rice seed. Thai Agricultural Research Journal, 13:102-109.

Parker, M. B., Perkins, H. F. and Fuller, H. L. (1959). Nitrogen, phosphorus and potassium content of poultry manure and some factors influencing its composition. Poultry Science, 38:1154-1158.

Peng, S., Laza, R. C., Visperas, R. M., Sanico, A. L., Cassman, K. G. and Khush, G. S. (2000). Grain yield of rice cultivars and lines developed in the Philippines since 1966. Crop Science, 40:307-314.

Puteh, A. B., Mondal, M. M. A., Ismail, M. R. and Latif, M. A. (2014). Grain sterility in relation to dry mass production and distribution in rice (Oryza sativa L.). BioMed Research International, 2014:302179. Retrieved from https://doi.org/10.1155/2014/302179.

Rajarajeswari, N. V. L. and Muralidharan, K. (2006). Assessments of farm yield and district production loss from bacterial leaf blight epidemics in rice. Crop Protection, 25:244-252.

Ricepedia (2021). The global staple. Retrieved from https://ricepedia.org/rice-as-food/the-global-staple-rice-consumers.

Saichompoo, U., Narumol, P., Nakwilai, P. and Thongyos, P. (2021). Breeding novel short grain rice for tropical region to combine important agronomical traits, biotic stress resistance and cooking quality in Koshihikari background. Rice Science, 28:479í492.

Sakata, T., Takashi, H., Nishiyama, I. and Higashitani, A. (2000). Effects of temperature on the development of pollen mother cells and microspores in barley (Hordeum vulgare L.) Journal of Plant Research, 113:395-402.

Sun T., Yang, X., Tan, X., Han, K., Tang, S., Tong, W., Zhu, S., Hu, Z. and Wu, L. (2020). Comparison of agronomic performance between Japonica/Indica hybrid and Japonica cultivars of rice based on different nitrogen rates. Agronomy, 10:171. Retrieved from https://doi:10.3390/agronomy10020171.

Ullah, S. S., Ruhul-Amin, A. K. M., Roy, T. S., Mandal, M. S. H. and Mehraj, H. (2016). Effect of nitrogen sources for spikelet sterility and yield of Boro rice varieties. Advances in Plants and Agriculture Research, 5:614-622.

Warinrak, B. (2012). The History of Japanese Rice in Thailand: During the Period from Past to Year 2012, CRC, Rice Department, Thailand. [in Thai].

Warinrak, B. (2013) Japonica Rice Production Technology in Thailand, CRC, Rice Department, Thailand. [in Thai].

Whitney, R. S., Gradner, R. and Robertson, D. W. (1950). The effectiveness of manure and commercial fertilizers in restoring the productivity of subsoils exposed by leveling. Agronomy Journal, 42:239-245.

Wu, Y. C., Chang, S. J. and Lur, H. S. (2016). Effects of field high temperature on grain yield and quality of a subtropical type Japonica rice-Pon-Lai rice. Plant Production Science, 145-19:143

Yang, J., Peng, S., Zhang, Z. and Wang, Z. (2002). Grain and dry matter yields and partitioning of assimilates in Japonica/Indica hybrid rice. Crop Science, 42:766. Retrieved from https://doi:10.2135/cropsci2002.7660.

Zia, M. S., Baig, M. B. and Tahir, M. B. (1998). Soil environment issues and their impact on agricultural productivity of high potential areas of Pakistan. Science, 4:56-61.