S0049-3848(14)00284-9

Original Article

Effect of Crop Geometry and Age of Seedlings on Productivity and Nutrient Uptake of Finger Millet (Eleusine coracana L. Gaertn)

Year: 2019 | Month: September | Volume 12 | Issue 3

References (15)

1.Affholder, F., Poeydebat, C., Corbeels, M., Scopel, E. and Tittonell P. 2013. The yield gap of major food crops in family agriculture in the tropics: Assessment and analysis through field surveys and modeling. F. Crop. Res., 143: 106-118.

View at Google Scholar

2.Agricultural Statistics at a Glance. 2017. Directorate of Economics and Statistics, Ministry of Agriculture and Farmers Welfare, Government of India.

View at Google Scholar

3.AICSMIP (All India Co-ordinated Small Millets Improvement Project). Annual Report 2013. GKVK Campus, UAS, Bangalore, pp. AG 15-18.

View at Google Scholar

4.Bhahmachari, K., Sarkar, S., Santra D.K. and Maitra, S. 2019. Millet for Food and Nutritional Security in Drought Prone and Red laterite Region of Eastern India. International Journal of Plant & Soil Science, 26(6): 1-7

View at Google Scholar

5.Kalaraju, K., Deva Kumar, N., Nagaraja, N. and Ningappa, K.B. 2011. Effect of methods of planting on growth and yield of finger millet genotypes under organic farming. Research on Crops, 10(1): 20-24

View at Google Scholar

6.Mishra, K. 2019. Yield gap analysis of finger millet through front line demonstration. International Journal of Chemical Studies, 7(1): 842-844.

View at Google Scholar

7.Panse, V.G. and Sukhatme, P.V. 1985. Statistical methods for Agricultural workers, ICAR, New Delhi

View at Google Scholar

8.Pasuquin, E., Lafarge, T and Tubana, B. 2008. Transplanting young seedlings in irrigated rice field: Early and high tiller production enchanced grain yield. Field Crops Research, 105: 141-155

View at Google Scholar

9.Prakasha, G., Kalyana Murthy, K.N., Prathima A.S. and Rohani N.M. 2018. Effect of Spacing and Nutrient Levels on Growth Attributes and Yield of Finger Millet (Eleusine coracana L. Gaertn) Cultivated under Guni Planting Method in Red Sandy Loamy Soil of Karnataka, India. International Journal of Current Microbiology and Applied Sciences, 7(05): 1337-1343.

View at Google Scholar

10.Rajesh, K. 2011. System of crop intensification in finger millet (Eleusine coracana (L.) Gaertn) under irrigated condition. M. Sc. (Ag.) Thesis, TNAU, Coimbatore.

View at Google Scholar

11.Roy, N.R., Chakraborty, T., Sounda, G. and Maitra, S. 2002. Growth and yield attributes of finger millet as influenced by plant population and different levels of nitrogen and phosphorus. Indian Agriculturist, 46(1&2): 65-71

View at Google Scholar

12.Seetharam, A. and Krishne Gowda, K.T. 2007. Production and utilization of small millets in India. Food uses of small millets and avenues for further processing and value addition, UAS, GKVK, Bangalore, pp. 1-9.

View at Google Scholar

13.Suresh, A.P. 2013. “Integrated nitrogen management under different crop establishment methods in summer pearl millet (Pennisetum glaucum L.) under middle Gujarat condition” M.Sc. (Ag.) Thesis, Anand Agricultural University, Anand, Gujrat.

View at Google Scholar

14.Uphoff, N., Marguerite, T., Devi, J., Behera, D., Verma, A. K and Pandian, B.J. 2011. National Colloquium on System of Crop Intensification (SCI). In: http://sri.ciifad.cornell. edu/aboutsri/othercrops/index.html.

View at Google Scholar

15.Veeranna, G. and Reddy, P.R.R. 2010. Performance of System of Rice Intensification (SRI) under different planting geometry and age of seedlings. Andhra Agricultural Journal, 57(4): 397-399.

View at Google Scholar

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