S0049-3848(14)00284-9

Original Article

Effect of Drip Fertigation on the Productivity of Hybrid Rice

Year: 2020 | Month: June | Volume 13 | Issue 2

References (21)

1.Anon. 2016. Agricultural Statistics at a glance-Directorate of Economics and Statistics, Govt. of India, New Delhi.

View at Google Scholar

2.Anusha, S. and Nagaraju. 2015. Performance of rice genotypes under drip irrigation in comparison with aerobic and puddled transplanted condition. Mysore J. of Agril. Sci., 49(2): 193-197.

View at Google Scholar

3.Assouline, S. 2002. The effects of microdrip and conventional drip irrigation on water distribution and uptake. Soil Sci. Soc. Am. J., 66: 1630-1636.

View at Google Scholar

4.Barker, R., Dawe, D. Tuong, TP, Bhuiyan, SI, and Guerra, LC. 1999. The outlook for water resources in the year 2020: challenges for research on water management in rice production. In: International Rice Commission Newsletter No. 49. DV Tran (Ed.) Food and Agriculture Organization of the United Nations. Rome, Italy.

View at Google Scholar

5.Belder, P., Bouman, BA, Spiertz, JH, Lu, G. and Quilang, EJ. 2002. Water use of alternately submerged and nonsubmerged irrigated lowland rice. Water-Wise Rice Production. IRRI, Los Baños, Philippines, pp. 51-61.

View at Google Scholar

6.Belder, P., Bouman, B.A.M, Cabangon, R. Lu, G., Quilang, E.J.P, Li, Y., Spiertz, J.H.J. and Tuong, T.P. 2004. “Effect of water-saving irrigation on rice yield and water use in typical lowland conditions in Asia,” Agric. Water Manage. 65(3): 193–210.

View at Google Scholar

7.Eid, A.R., Bakry, B.A. and Taha, M.H. 2013. Effect of pulse drip irrigation and mulching systems on yield, quality traits and irrigation water use efficiency of soybean under sandy soil conditions. Agricultural Sciences, 5: 249-261.

View at Google Scholar

8.Gomez, K.A. and Gomez, A.A. 1984. Statistical Procedures for Agricultural Research. 2nd Edn., John Wiley and Sons, UK.

View at Google Scholar

9.Wang, Z., Zuoxin, L, Zikunand, Z. Xingbin, L. 2009. Subsurface drip irrigation scheduling for cucumber (Cucumis sativus L.) grown in solar greenhouse based on 20 cm standard pan evaporation in Northeast China, Scientia Horticulturae, 123(1): 51-57.

View at Google Scholar

10.Grassi, Chiara, Bouman, Bas, CastaÃeda, Ambrocio, Manzelli, Marco and Vecchio, Vincenzo. 2009. Aerobic rice: Crop performance and water use efficiency. J. Agri. Env. Int. Dev., 103. 10.12895 /jaeid.20094.35.

View at Google Scholar

11.Hanson, B. and May, D. 2000. Drip irrigation increases tomato yields in salt-affected soil of San Joaquin Valley. California Agriculture, 57: 132-137.

View at Google Scholar

12.Karthika, N. and Ramanathan, S.P. 2019. Effect of drip fertigation on growth, physiological parameters and grain yield of rice grown in Cauvery new delta zone of Tamil Nadu. International Journal of Chemical Studies, 7(3): 2758-2761.

View at Google Scholar

13.Medley, J. and Wilson, L. T. 2005. The use of sub-surface drip irrigation for rice. In: Proceeding of the 10th National Convention System on Cotton and Rice Conference, Texas, USA, pp. 33–34.

View at Google Scholar

14.Ottis, B., Henggeler, J. and Vories, E.D. 2006. Low-pressure, subsurface drip-irrigation for rice. ASA-CSSA-SSSA Annual Meeting [abstracts]. November 12-16, Indianapolis, Indiana. unpaginated CD-ROM.

View at Google Scholar

15.Parthasarathi, T., Mohandass, S., Senthilvel, S. and Vered, E. 2013. Effect of drip irrigation systems on yield of aerobic rice. Environment & Ecology, 31: 1826 – 1829.

View at Google Scholar

16.Reddy BS, Aruna E. 2009. Effect of irrigation levels through drip on growth, yield and quality of cotton. Journal of Cotton Research and Development, 23(1): 56-9.

View at Google Scholar

17.Soman, P. 2012. Drip fertigation for rice cultivation, In: Proc. Asian Irrigation Forum, 11-12 April, 2012, ADB, Manila, Philippines.

View at Google Scholar

18.Sritharan, N., Vijayalakshmi, C., and Selvaraj, P.K. 2010. Effect of micro-irrigation technique on physiological and yield traits in aerobic rice. Int. J. Agric. Environ. & Biotech. 3: 26-28.

View at Google Scholar

19.Stoop, W.A., Uphoff, N., Kassam, A. 2002. A review of agricultural research issues raised by the system of rice intensification (SRI) from Madagascar: Opportunities for improving farming systems for resource poor farmers. Agric. Systems, 71: 249–274.

View at Google Scholar

20.Vanitha K, and Mohandass S. 2014. Effect of humic acid on plant growth characters and grain yield of drip fertigated aerobic rice (Oryza sativa L.). The Bioscan., 9(1): 45-50.

View at Google Scholar

21.Vanitha, K. 2012. Physiological comparison of surface and subsurface drip systems in irrigating aerobic rice (Oryza sativa L.). Unpublished thesis of the Department of crop physiology, Tamil Nadu Agricultural University, India.

View at Google Scholar

International Journal of Agriculture Environment & Biotechnology(IJAEB)| In Association with AAEB

27233781 - Visitors since February 20, 2019