Enhancing productivity and profitability of spring maize (Zea mays) in Uttarakhand's Tarai region through effective weed management practices and irrigation scheduling


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Authors

  • MUNNY CHINYO Govind Ballabh Pant University of Agriculture and Technology, Pantnagar, Uttarakhand 263 145, India image/svg+xml
  • SANDEEP KUMAR ICAR-National Bureau of Soil Survey and Land Use Planning, Jorhat, Assam image/svg+xml
  • T P SINGH Govind Ballabh Pant University of Agriculture and Technology, Pantnagar, Uttarakhand 263 145, India image/svg+xml
  • S CHANDRA Govind Ballabh Pant University of Agriculture and Technology, Pantnagar, Uttarakhand 263 145, India image/svg+xml
  • SURAJ GOND Govind Ballabh Pant University of Agriculture and Technology, Pantnagar, Uttarakhand 263 145, India image/svg+xml

https://doi.org/10.56093/ijas.v94i11.150851

Keywords:

IW/CPE ratio, Maize, Tembotrione, Topramezone, Weed

Abstract

A field experiment was conducted during the spring seasons of 2022 and 2023 at Norman E Borlaug Crop Research Centre, Govind Ballabh Pant University of Agriculture and Technology, Pantnagar, Uttarakhand to enhance maize yield and profitability. The experiment was conducted a split-plot design (SPD) with two irrigation scheduling treatments, viz. irrigation applied at an IW/CPE ratio of 0.8 (I1); and 1.2 (I2) in main plot and 8 weed management treatments, viz. W1, atrazine 1000 g/ha; W2, tembotrione 120 g/ha; W3, topramezone 25.2 g/ha; W4, atrazine 1000 g/ ha followed by hand-weeding at 35 DAS (days after sowing); W5, atrazine 1000 g/ha followed by tembotrione 120 g/ha; W6, atrazine 1000 g/ha followed by topramezone 25.2 g/ha; W7, weed-free; and W8, weedy check in sub-plots. Irrigation applied at IW/CPE ratio of 1.2 significantly improved the maize productivity and profitability, yielding higher net returns (₹66,206.9/ha) and grain yield (6.1 t/ha). Among the herbicidal treatments, atrazine 1000 g/ha followed by topramezone 25.2 g/ha recorded the highest weed control efficiency (80%) and maize grain yield (6.3 t/ ha). The percentage net monetary return was in the following sequence: W6 (100%) > W7 (92.4%) > W5 (91.8%) > W4 (89.6%) > W3 (81.5%) > W2 (78.2%) > W1 (67.6%) > W8 (46.4%). The percentage gain in grain yield was recorded in the following sequence: W7 (100%) > W6 (91.4%) > W5 (87.4%) > W4 (86.4%) > W3 (84.1%) > W2 (81.1%) > W1 (71.5%) > W8 (52.5%). In conclusion, optimizing irrigation to IW/CPE ratio of 1.2 and employing weed management practice atrazine (1000 g/ha) followed by topramezone (25.2 g/ha) application, can significantly enhance spring maize yield, weed control efficiency and economic returns in Uttarakhand's Tarai region.

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References

Ahirwar S, Subbaiah R, Gupta P, Tiwari M K, Trivedi M M and Vaishnav P. 2023. Effect of irrigation regimes and mulching on the crop physiology and yield of rabi maize (Zea mays). International Journal of Environment and Climate Change 13(9): 1011–20.

Dass S, Kumar A, Jat S L, Parihar C M, Singh A K and Jat M L. 2012. Maize holds potential for diversification and livelihood security. Indian Journal of Agronomy 57(3): 32–37.

Dutta D, Mudi D D and Thentu T L. 2015. Effect of irrigation levels and planting geometry on growth, cob yield and water use efficiency of baby corn (Zea mays L.). Journal Crop and Weed 11(2): 105–10.

Gomez K A and Gomez A A. 1984. Statistical Procedures for Agricultural Research. John Wiley and Sons, New York, USA. Hussain S, Wang J, Asad Naseer M, Saqib M, Siddiqui M H, Ihsan F, Xiaoli C, Xiaolong R, Hussain S and Ramzan H N. 2023.

Water stress memory in wheat/maize intercropping regulated photosynthetic and antioxidative responses under rainfed conditions. Scientific Reports 13(1): 13688.

ICAR-IIMR. 2021. Annual Report 2020–2021. ICAR-Indian Institute of Maize Research, Pusa, New Delhi.

Jain V, Kewat M and Jain N. 2014. Effect of application of post-emergence herbicides at different levels of available soil moisture content in irrigated wheat (Triticum aestivum). Indian Journal of Agronomy 59(1): 82–86.

Kaur M and Vashist K K. 2016. Effect of sowing method, mulch and irrigation regimes on yield and yield components of August sown maize (Zea mays L.). Journal of Crop and Weed 12(2): 150–54.

Kaur N, Vashist K K and Brar A S. 2021. Productivity of maize (Zea mays) under different crop sequences and irrigation regimes. The Indian Journal of Agricultural Sciences 91(6): 828–32.

Kumar S, Singh V K, Shekhawat K, Upadhyay P K, Dwivedi B, Rathore S S, Kumar A and Yadav A. 2024. Enhancing productivity, economics and energy efficiency through precision nitrogen and water management in conservation agriculture- based maize (Zea mays) in the Indo-Gangetic Plains. The Indian Journal of Agricultural Sciences 94(3): 333–36.

Mani V, Pandita M, Gautam K C and Bhagwan D. 1973. Weed killing chemicals in potato cultivation. Indian Farming 23: 7–13.

Rao A N and Chauhan B S. 2015. Weeds and weed management in India: A review. Weed Science in the Asian-Pacific Region,

pp. 87–118. Rao V S, Yaduraju N T, Chandrasena N R, Hassan G and Sharma A R (Eds.). Indian Society Weed Science, Hyderabad, Telangana. http://oar.icrisat. org/9093/1/Chapter. pdf (Accessed on November 1, 2018)

Reddy M B, Elankavi S, Baradhan G and Muthuselvam K. 2022. Evaluation of weed management practices on weed dynamics and yield of maize (Zea mays L.). Crop Research 57(5–6): 330–34.

Salika R and Riffat J. 2021. Abiotic stress responses in maize: A review. Acta Physiologiae Plantarum 43(9): 130.

Sampathkumar T, Pandian B J, Jeyakumar P and Manickasundaram P. 2014. Effect of deficit irrigation on yield, relative leaf water content, leaf proline accumulation and chlorophyll stability index of cotton-maize cropping sequence. Experimental Agriculture 50(3): 407–25.

Shekhar C, Singh D, Singh A K, Nepalia V and Choudhary J. 2014. Weed dynamics, productivity and soil health under different tillage and weed control practices in wheat (Triticum aestivum L.)-maize (Zea mays L.) cropping sequence. Indian Journal of Agronomy 59(4): 561–67.

Shukla R, Bhatnagar A, Singh G, Singh D K, Rawat S and Kumar S. 2023. Effects of sequential and combined application of tank-mix herbicides on weed growth and productivity of maize (Zea mays). The Indian Journal of Agricultural Sciences 93(10): 1153–55.

Tilman D, Balzer C, Hill J and Befort B L. 2011. Global food demand and the sustainable intensification of agriculture. Proceedings of the National Academy of Sciences. 20260–64. Triveni U, Rani Sandhya Y, Patro T S S K and Bharathalakshmi M. 2017. Effect of different pre- and post-emergence herbicides on weed control, productivity and economics of maize. Indian Journal of Weed Science 49(3): 231–35.

Willemse C, Soltani N, David C H, Jhala A J, Robinson D E and Sikkema P H. 2021. Interaction of 4-hydroxyphenylpyruvate dioxygenase (HPPD) and atrazine alternative photosystem II (PS II) inhibitors for control of multiple herbicide-resistant waterhemp (Amaranthus tuberculatus) in corn. Weed Science 69(4): 492–503.

Yadav O P, Prasanna B M, Yadava P, Jat S L, Kumar D, Dhillon B S, Solanki I S and Sandhu J S. 2016. Doubling maize (Zea mays) production of India by 2025: Challenges and opportunities. The Indian Journal of Agricultural Sciences 86(4): 427–34.

Zaidi P, Yadav M, Maniselvan P, Khan R, Shadakshari T, Singh R and Pal D. 2010. Morpho-physiological traits associated with cold stress tolerance in tropical maize (Zea mays L.). Maydica 55: 201–08.

Submitted

2024-04-23

Published

2024-11-13

Issue

Section

Articles

How to Cite

CHINYO, M. ., KUMAR, S. ., SINGH, T. P. ., CHANDRA, S. ., & GOND, S. . (2024). Enhancing productivity and profitability of spring maize (Zea mays) in Uttarakhand’s Tarai region through effective weed management practices and irrigation scheduling. The Indian Journal of Agricultural Sciences, 94(11), 1189–1194. https://doi.org/10.56093/ijas.v94i11.150851
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