Nutrient management technologies of millets for higher productivity and nutritional security


1915 / 1239

Authors

  • GANPAT LOUHAR Ph D Scholar, ICAR-Indian Agricultural Research Institute, New Delhi 110 012, India
  • R S BANA Scientist, ICAR-Indian Agricultural Research Institute, New Delhi 110 012, India
  • VIPIN KUMAR M Sc student, ICAR-Indian Agricultural Research Institute, New Delhi 110 012, India
  • HEMENT KUMAR JRF, Division of Agronomy, ICAR-Indian Agricultural Research Institute, New Delhi 110 012, India

https://doi.org/10.56093/ijas.v90i12.110267

Keywords:

Crop nutrition, Fertilizer, Millets, Nutritional security, Rainfed ecosystems, Sustainability

Abstract

Millets are important source of food and livelihood in arid and semi-arid ecologies and covers a significant area in these regions due to their strong abiotic and biotic stress tolerance, particularly their capacity to withstand dry conditions. Since, the grains of these crops have better nutritional qualities compared to other cereals, therefore, to ensure nutritional security in the vulnerable regions, millets can be good option to be included as staple food. The continuous application of high analysis chemical fertilizers without organic manures resulted in reduced water holding capacity, emergence of multi-nutrient deficiencies and consequently lower crop yields. Thus, for long-term ecological and economic sustainability in rainfed millet systems, there is a need to enhance soil organic carbon (SOC) and nutrient buffering capacity of soil by integrated nutrient management through increasing the use of organic sources such as farmyard manures (FYM), biocompost, biofertilizers and legumes inclusion in cropping systems. Efficient nutrient management approaches are among key strategies to realize higher yields in rainfed regions. The systematic information is lacking on nutrient management in different millets, particularly on precision nutrient management. Use of cost effective and locally available organic nutrient sources and biofertilizers in combination with chemical fertilizers, not only enhances yield and soil fertility but also improves grain quality.

Downloads

Download data is not yet available.

References

AICRPSM. 2020. AICRPSM, 2020, ICAR-All India Coordinated Research project on Small Millets, Bengaluru. Available online: http://www.aicrpsm.res.in/

Amgai R B, Pantha S, Chhetri T B, Budhathoki S K, Khatiwada S P and Mudwari A. 2013. Variation on agro-morphological traits in Nepalese foxtail millet (Setaria italica). Agronomy Journal of Nepal 2: 133–138. DOI: https://doi.org/10.3126/ajn.v2i0.7528

Anonymous. 2015. A report of variety release proposal for the state seed sub-committee, MPKV, Rahuri, Govt. of Maharashtra.

Bala R S, Swain S, Sengotuvel D and Parida N R. 2010. Nutritious millets for enhancing income and improved nutrition: a case study from Tamilnadu and Orissa. Minor millets in South India.

Bamboriya S D, Bana R S, Pooniya V, Rana K S and Singh Y V. 2017a. Planting density and nitrogen management effects on productivity, quality and water-use efficiency of rainfed pearlmillet (Pennisetum glaucum) under conservation agriculture. Indian Journal of Agronomy 62 (3): 363–366.

Bamboriya S D, Bana R S, Pooniya V, Singh Y V, Bamboriya S and Choudhary K M. 2017b. Effect of planting density and nitrogen management on micronutrient content, soil fertility and microbial properties in conservation agriculture based rainfed pearlmillet. International Journal of Chemical Studies 5 (4): 849–853.

Bana R S and Gautam R C. 2009. Nutrient management through organic sources in pearl millet (Pennisetum glaucum)-wheat (Triticum aestivum) cropping system. International Journal of Tropical Agriculture 27(1-2): 127–129.

Bana R S, Gautam R C and Rana K S. 2012. Effect of different organic sources on productivity and quality of pearlmillet (Pennisetum glaucum) and their residual effect on wheat (Triticum aestivum). Annals of Agricultural Research 33(3): 126–130.

Bana R S, Pooniya V, Choudhary A K, Rana K S and Tyagi V K. 2016. Influence of organic nutrient sources and moisture management on productivity, biofortification and soil health in pearlmillet (Pennisetum glaucum) + clusterbean (Cyamopsis tetragonaloba) intercropping system of semi-arid India. Indian Journal of Agricultural Sciences 86(11): 1418–25.

Rana K S and Bana R S. 2012. Pearlmillet. (In) Text Book of Field Crops Production, Vol 1, p 396. ICAR, New Delhi.

Bana R S, Rana K S, Dass A, Choudhary A K, Pooniya V, Vyas A K, Kaur R, Sepat S and Rana D S. 2013. A Manual on Dryland Farming and Watershed Management. India. IARI, New Delhi, p 104.

Bana R S, Sepat S, Rana K S, Pooniya V and Choudhary A K. 2018. Moisture-stress management under limited and assured irrigation regimes in wheat (Triticum aestivum): Effects on crop productivity, water use efficiency, grain quality, nutrient acquisition and soil fertility. Indian Journal of Agricultural Sciences 86 (10): 1606–12.

Bana R S. 2014. Agrotechniques for conserving water and sustaining production in rainfed agriculture. Indian Farming 63(10): 30–35.

Basavaraju T B and Purushotham S. 2009. Integrated nutrient management in rainfed ragi (Eleusine coracana L. Gaertn.), Mysore Journal of Agricultural Sciences 43: 366–368.

Chaudhari P P, Patel D A, Virdia H M and Patel B M. 2011. Nutrient management in finger millet (Eleusine coracana) on hilly area of South Gujarat. Green Farming 2(6): 658–660.

Choudhary A K and Suri V K. 2014. Integrated nutrient management technology for direct-seeded upland rice (Oryza sativa) in northwestern Himalayas. Communications in Soil Science and Plant Analysis 45(6): 777–84. DOI: https://doi.org/10.1080/00103624.2013.861914

Cothren J T, Matocha J E and Clark L E. 2000. Integrated crop management for sorghum. Sorghum: Origin, History, Technology, and Production, pp 409-441. C W Smith and R A Federiksen (Eds). John Wily and Sons Inc.

Coulibaly A, Kouakou B and Chen J. 2011. Phytic acid in cereal grains: structure, healthy or harmful ways to reduce phytic acid in cereal grains and their effects on nutritional quality. American Journal of Plant Nutrition and Fertilization Technology 1(1): 1–22. DOI: https://doi.org/10.3923/ajpnft.2011.1.22

Dass A, Suri V K and Choudhary A K. 2014. Site-specific nutrient management approaches for enhanced nutrient-use efficiency in agricultural crops. Research and Reviews: Journal of Crop Science and Technology, 3(3):1–6.

Dass A, Rana K S, Choudhary A K and Bana R S. 2014. Climate Resilient Dryland Farming and Watershed Management, p 250. Post Graduate School, IARI, New Delhi and ICAR, DARE, Ministry of Agriculture, Govt. of India, New Delhi, India.

Devi P B, Vijayabharathi R, Sathyabama S, Malleshi N G and Priyadarisini V B. 2014. Health benefits of finger millet (Eleusine coracana) polyphenols and dietary fiber: a review. Journal of Food Science and Technology 51(6): 1021–1040. DOI: https://doi.org/10.1007/s13197-011-0584-9

Gautam R C. 2000. Effect of organic manure, bio-fertilizer and inorganic fertilizers on growth, yield and quality of rainfed pearlmillet. Annals of Agricultural Research 21(4): 459–464.

GOI. 2018. Agricultural statistics at a glance. Directorate of Economics and Statistics, Government of India.

Govindappa M, Vishwanath A P, Harsha K N, Thimmegowda P and Jnanesh A C. 2009. Response of finger millet (Eluesine coracana L.) to organic and inorganic sources of nutrients under rainfed condition. Journal of Crop and Weed 5: 291–293.

Khan M A A, Rajamani K and Reddy A P K. 2012. Nutrient management in rabi sweet sorghum grown as inter-crop in Pongamia based agri-silvi culture system. Journal of the Indian Society of Soil Science 60(4): 335–339.

Kumar N and Gautam R C. 2004. Effect of moisture conservation and nutrient management practices on growth and yield of pearl millet (Pennisetum glaucum) under rainfed conditions. Indian Journal of Agronomy 49(3): 182–185.

Kumara O, Naik T B and Ananadakumar B M. 2014. Effect weed management practices and fertility levels on soil health in finger millet-groundnut cropping system. International Journal of Agricultural Sciences 10: 351–355.

Mubeena P, Halepyati A S and Chittapur B M. 2019. Effect of date of sowing and nutrient management on nutrient uptake and yield of foxtail millet (Setaria italica L.). International Journal of Bio-Resource and Stress Management 10(1): 92–95. DOI: https://doi.org/10.23910/IJBSM/2019.10.1.1891

NAAS. 2018. Role of Millets in Nutritional Security of India. National Academy of Agricultural Sciences, New Delhi.

Nainwal K, Verma O and Reena. 2018. Conservation of minor millets for sustaining agricultural biodiversity and nutritional security. Journal of Pharmacognosy and Phytochemistry 1: 1576–1580.

Nemade S M, Ghorade R B and Mohod N B. 2017. Integrated nutrient management (INM) in sorghum chickpea cropping system under unirrigated conditions. International Journal of Current Microbiology and Applied Sciences 6(2): 379–385. DOI: https://doi.org/10.20546/ijcmas.2017.602.042

Nigade R D and More S D. 2013. Performance of finger millet varieties to different levels of fertilizer on yield and soil properties in sub-mountane zone of Maharashtra. International Journal of Agriculture Sciences 9(1): 256–259.

Ojha E, Adhikari B B and Katuwal Y. 2018. Nurient management trial on foxtail millet at Sundarbazar, Lamjung. Journal of the Institute of Agriculture and Animal Science 35(1): 89–94. DOI: https://doi.org/10.3126/jiaas.v35i1.22518

Pallavi C, Joseph B, Aariff Khan M A and Hemalatha S. 2016. Economic evaluation of finger millet under different nutrient management practices. International Journal of Current Microbiology and Applied Sciences 5: 690–698. DOI: https://doi.org/10.20546/ijcmas.2016.508.078

Prabudoss V, Jawahar S, Shanmugaraja P and Dhanam K. 2014. Effect of integrated nutrient management on growth, yield and economics of transplanted kodo millet. European Journal of Biotechnology and Bioscience 1(4): 30–33.

Prakash V, Gupta A and Srivastava A K. 2008. Millet production techonology in North West Himalayas. Indian Farming 58: 7-12.

Pushpa H M, Gowda R C, Naveen D V, Bhagyalakshmi T and Hanumanthappa D C. 2013. Influence of long term fertilizer application on root biomass and nutrient addition of finger millet. Asian Journal of Soil Science 8: 67–71.

Rana K S, Kumar D and Bana R S. 2012. Agronomic research on pearlmillet (Pennisetum glaucum L.). Indian Journal of Agronomy 57(3rd IAC: Special issue): 45–51.

Rani Y, Triveni U, Patro T S S K and Anuradha N. 2017. Effect of nutrient management on yield and quality of finger millet (Eleusine coracana). International Journal of Chemical Studies 5(6): 1211–1216. DOI: https://doi.org/10.20546/ijcmas.2017.607.321

Raundal P and Vidya P. 2017. Response of little millet varieties to different levels of fertilizers under rainfed condition. International Advanced Research Journal in Science, Engineering and Technology 4(8): 55–58.

Roy A K, Ali N, Lakra R K, Alam P, Mahapatra P and Narayan R. 2018. Effect of integrated nutrient management practices on nutrient uptake, yield of finger millet (Eleusine coracana) and post-harvest nutrient availability under rainfed condition of Jharkhand. International Journal of Current Microbiology and Applied Sciences 7(8): 339–347. DOI: https://doi.org/10.20546/ijcmas.2018.708.038

Rurinda J, Mapfumo P, Van-Wijk M T, Mtambanengwe F, Rufino M C and Chikowo R. 2014. Comparative assessment of maize, finger millet and sorghum for household food security in the face of increasing climatic risk. European Journal of Agronomy 55: 29–41. DOI: https://doi.org/10.1016/j.eja.2013.12.009

Salem A K M, ElKhoby W M, Abou-Khalifa A B and Ceesay M. 2011. Effect of nitrogen fertilizer and seedling age on inbred and hybrid rice varieties. American-Eurasian Journal of Agricultural & Environmental Sciences 11(5): 640–646.

Sankar G M, Sharma K L, Dhanapal G N, Shankar M A, Mishra P K, Venkateswarlu B and Grace J K. 2011. Influence of soil and fertilizer nutrients on sustainability of rainfed finger millet yield and soil fertility in semi-arid Alfisols. Communications in Soil Science and Plant Analysis 42(12): 1462–1483. DOI: https://doi.org/10.1080/00103624.2011.577863

Sarita E S and Singh E. 2016. Potential of millets: nutrients composition and health benefits. Journal of Scientific and Innovative Research 5(2): 46–50. DOI: https://doi.org/10.31254/jsir.2016.5204

Srilatha M, Sharma S H K, Devi U M and Rakha K B. 2014. Grain yield and soil nutrient status of rice-rice cropping system as influenced by nutrient management under long term fertilizer experimentation. Jornal of Progressive Agriculture 5(1): 85–89.

Suruthi S, Sujatha K and Menaka C. 2019. Effect of organic and inorganic foliar nutrition on growth and yield attributes of barnyard millet (Echinochloa frumentacea L.) var. MDU1. International Journal of Chemical Studies 7(3): 851–853.

Thesiya N M, Dobariya J B and Patel J G. 2019. Effect of integrated nutrient management on growth and yield parameters of kharif little millet under little millet-green gram cropping sequence. International Journal of Pure and Applied Bioscience 7 (3): 294–298. DOI: https://doi.org/10.18782/2320-7051.7392

Venugopal G, Sharma S H K, Qureshi A A and Palli C R. 2015. Sorghum yield and nutrient uptake under long term nutrient management practices in sorghum-sunflower cropping system in an alfisol. International Journal of Agriculture, Environment and Biotechnology 8(4): 899–906.

WHO. 2018. Global strategy for women’s, children’s, and adolescent’s health 2016–2030 and the 2030 Agenda for sustainable development.

Wu W and Ma B. 2015. Integrated nutrient management (INM) for sustaining crop productivity and reducing environmental impact: A review. Science of the Total Environment 512(15): 415–427. DOI: https://doi.org/10.1016/j.scitotenv.2014.12.101

Zong X, Wang H, Song Z, Liu D and Zhang A. 2011. Foliar Zn fertilization impacts on yield and quality in pearl millet (Pennisetum glaucum). Frontiers of Agriculture in China 5(4): 552–555. DOI: https://doi.org/10.1007/s11703-011-1132-9

Downloads

Submitted

2021-02-08

Published

2021-02-10

Issue

Section

Review Article

How to Cite

LOUHAR, G., BANA, R. S., KUMAR, V., & KUMAR, H. (2021). Nutrient management technologies of millets for higher productivity and nutritional security. The Indian Journal of Agricultural Sciences, 90(12), 2243–2250. https://doi.org/10.56093/ijas.v90i12.110267
Citation