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Research Articles

Vol. 13 No. sp1 (2026): Recent Advances in Agriculture

Plant growth regulators as a strategy for growth and yield optimization of Indian mustard (Brassica juncea L.) under different agri-horticultural systems

DOI
https://doi.org/10.14719/pst.13320
Submitted
23 December 2025
Published
26-02-2026

Abstract

India is the world's largest importer of edible oils, with an annual expenditure of approximately USD 10.5 billion, while ranking fourth in global vegetable oil production. Despite this production status, India remains heavily dependent on imports to meet its edible oil demands. Oilseed production in India is rainfed and has shown stagnation, with cultivation largely undertaken by marginal and smallholder farmers. Agricultural productivity can be enhanced using plant growth regulators (PGRs), which improve physiological responses to environmental stress. The present study investigates the effects of different PGRs-1 % potassium nitrate (KNO3), 200 ppm salicylic acid and 1 % urea on the growth, yield and economic returns of Indian mustard (Brassica juncea L.) under different agri-horticultural systems (AHS). The experiment was conducted at Indian Agricultural Research Institute, New Delhi, in the Rabi season of 2022–2023. It was laid out in a split-plot design with three main-plot treatments (Moringa based AHS, Phalasa based AHS and Karonda based AHS) and four sub-plot treatments (control, 1 % KNO3, 200 ppm salicylic acid and 1 % urea) with 3 replications. Results revealed that 1 % KNO3 significantly improved dry matter accumulation, plant height and numbers of branches, while moringa-based AHS produced the highest yield (18.80 q/ha). Foliar application of 1 % KNO3 resulted in the highest seed yield (18.86 q/ha) and stover yield (58.83 q/ha), outperforming the other treatments. The integration of PGR application with suitable AHS emerged as an effective strategy for enhancing the productivity and resource-use efficiency of Indian mustard, indicating its potential for improving crop yields in India’s oilseed production systems.

References

  1. 1. Anonymous. Economic survey of India 2022–23. New Delhi: Directorate of Economics and Statistics, Government of India; 2023.
  2. 2. Anonymous. Agricultural statistics at a glance 2022–23. Government of India; 2023.
  3. 3. Srivastava K, Srivastava A. Advances in oilseeds production technologies. In: Advances in crop production and climate change. Boca Raton: CRC Press; 2023. p. 143–83. https://doi.org/10.1201/9781003281948-6
  4. 4. Rathore SS, Babu S, El-Sappah AH, Shekhawat K, Singh VK, Singh RK, et al. Integrated agroforestry systems improve soil carbon storage, water productivity and economic returns in the marginal land of the semi-arid region. Saudi J Biol Sci. 2022;29(10):103427. https://doi.org/10.1016/j.sjbs.2022.103427
  5. 5. Rathore SS, Shekhawat K, Babu S, Singh VK. Mitigating moisture stress in Brassica juncea through deficit irrigation scheduling and hydrogel in Ustochrepts soils of semi-arid India. Heliyon. 2020;6(12):e05754. https://doi.org/10.1016/j.heliyon.2020.e05786
  6. 6. Qiao X, Sai L, Chen X, Xue L, Lei J. Impact of fruit-tree shade intensity on the growth, yield and quality of intercropped wheat. PLoS One. 2019;14(4):e0203238. https://doi.org/10.1371/journal.pone.0203238
  7. 7. Fayez KA, Bazaid SA. Improving drought and salinity tolerance in barley by application of salicylic acid and potassium nitrate. J Saudi Soc Agric Sci. 2014;13(1):45–55. https://doi.org/10.1016/j.jssas.2013.01.001
  8. 8. Joseph B, Jini D, Sujatha S. Insight into the role of exogenous salicylic acid on plants. Asian J Crop Sci. 2010;2(4):226-35. https://doi.org/10.3923/ajcs.2010.226.235
  9. 9. Yadav T, Kumar A, Yadav RK, Yadav G, Kumar R, Kushwaha M. Salicylic acid and thiourea mitigate salinity and drought stress on physiological traits governing yield in pearl millet–wheat. Saudi J Biol Sci. 2020;27(8):2010–17. https://doi.org/10.1016/j.sjbs.2020.06.030
  10. 10. Rathore SS, Shekhawat K, Kandpal BK, Premi OP. Micro-irrigation and fertigation improves gas exchange, productivity traits and economics of Indian mustard (Brassica juncea L.) under semi-arid conditions. Aust J Crop Sci. 2014;8(4):582–95.
  11. 11. Shah SH, Islam S, Alamri S, Parrey ZA, Mohammad F, Kalaji HM. Plant growth regulators mediated changes in growth, photosynthesis, nutrient acquisition and productivity of mustard. Agriculture. 2023;13(3):570. https://doi.org/10.3390/agriculture13030570
  12. 12. Pluhařová K, Leontovyčová H, Stoudková V, Pospíšilová R, Maršík P, Klouček P, et al. Salicylic acid mutant collection as a tool to explore the role of salicylic acid in regulation of plant growth under a changing environment. Int J Mol Sci. 2019;20(24):6365. https://doi.org/10.3390/ijms20246365
  13. 13. Shekhawat K, Rathore SS, Premi OP, Kandpal BK, Chauhan JS. Advances in agronomic management of Indian mustard (Brassica juncea L.): an overview. Int J Agron. 2012;2012:408284. https://doi.org/10.1155/2012/408284
  14. 14. Palma F, López-Gómez M, Tejera NA, Lluch C. Salicylic acid improves salinity tolerance of Medicago sativa in symbiosis with Sinorhizobium meliloti by preventing nitrogen fixation inhibition. Plant Sci. 2013;208:75–82. https://doi.org/10.1016/j.plantsci.2013.03.015
  15. 15. Hassanein RA, Abdelkader AF, Ali H, Amin AA, Mohammed Rashad ES. Grain-priming and foliar pretreatment enhanced stress defense in wheat (Triticum aestivum var. Gimaza 9) cultivated in drought land. Aust J Crop Sci. 2012;6(1):121–7.
  16. 16. Sardar H, Nisar A, Anjum MA, Naz S, Ejaz S, Ali S, et al. Foliar spray of moringa leaf extract improves growth and concentration of pigment, minerals and stevioside in stevia (Stevia rebaudiana). Ind Crops Prod. 2021;166:113485. https://doi.org/10.1016/j.indcrop.2021.113485
  17. 17. De Jong M, George G, Ongaro V, Williamson L, Willetts B, Ljung K, et al. Auxin and strigolactone signaling are required for modulation of Arabidopsis shoot branching by nitrogen supply. Plant Physiol. 2014;166(1):384–95. https://doi.org/10.1104/pp.114.242388
  18. 18. Arif Y, Bajguz A, Hayat S. Moringa oleifera extract as a natural plant biostimulant. J Plant Growth Regul. 2023;42(3):1291–306. https://doi.org/10.1007/s00344-022-10630-4
  19. 19. Sarkar RK, Pal PK. Effect of pre-sowing seed treatment and foliar spray of nitrate salts on growth and yield of greengram (Vigna radiata). Indian J Agric Sci. 2006;76(1):62–5
  20. 20. Godara OP, Kakralya BL, Kumar S, Kumar V, Singhal RK. Influence of sowing time, varieties and salicylic acid application on physiological parameters of Indian mustard (Brassica juncea). J Pure Appl Microbiol. 2016;10(4):2821–28. https://doi.org/10.22207/JPAM.10.4.79
  21. 21. Alam M, Hayat K, Ullah I, Sajid M, Ahmad M, Basit A, et al. Improving okra (Abelmoschus esculentus) growth and yield by mitigating drought through exogenous application of salicylic acid. Fresenius Environ Bull. 2020;29(1):529–35.
  22. 22. Khan MI, Fatma M, Per TS, Anjum NA, Khan NA. Salicylic acid-induced abiotic stress tolerance and underlying mechanisms in plants. Front Plant Sci. 2015;6:462. https://doi.org/10.3389/fpls.2015.00462
  23. 23. Bamishaiye EI, Olayemi FF, Awagu EF, Bamshaiye OM. Proximate and phytochemical composition of Moringa oleifera leaves at three stages of maturation. Adv J Food Sci Technol. 2011;3(4):233–7.
  24. 24. Rathore SS, Shekhawat K, Singh VK, Babu S, Singh RK, Upadhyay PK, et al. Diversified agroforestry systems improve carbon footprint and farmers’ livelihood under limited irrigation conditions. bioRxiv. 2020. https://doi.org/10.1101/2020.07.17.208405
  25. 25. Melesse A, Steingass H, Boguhn J, Schollenberger M, Rodehutscord M. Effects of elevation and season on nutrient composition of leaves and green pods of Moringa stenopetala and Moringa oleifera. Agrofor Syst. 2012;86(3):505–18. https://doi.org/10.1007/s10457-012-9514-8
  26. 26. Singh R, Khan V, Jha A, Jain P, Umar S, Iqbal N. Salicylic acid and potassium alleviate salt stress in mustard. In: Plant signaling molecules in regulation of ROS-scavenging system. Singapore: Springer Nature; 2025. p. 301–22. https://doi.org/10.1007/978-981-95-3377-0_14
  27. 27. Hayat S, Ahmad A, editors. Salicylic acid: a plant hormone. Dordrecht: Springer; 2007. https://doi.org/10.1007/1-4020-5184-0
  28. 28. Sánchez NR, Ledin S, Ledin I. Biomass production and chemical composition of Moringa oleifera under different management regimes in Nicaragua. Agrofor Syst. 2006;66(3):231–42. https://doi.org/10.1007/s10457-005-8847-y
  29. 29. Muhl QE, du Toit ES, Robbertse PJ. Adaptability of Moringa oleifera Lam. seedlings to three temperature regimes. Am J Plant Sci. 2011;2(6):776–84. https://doi.org/10.4236/ajps.2011.26092
  30. 30. Kwiatkowski CA. Response of winter rape (Brassica napus ssp. oleifera) to foliar fertilization and different seeding rates. Acta Agrobot. 2012;65(2):161–70. https://doi.org/10.5586/aa.2012.070
  31. 31. Kumar A, Singh V, Singh R. Correlation and path analysis in Indian mustard. J Oilseed Brassica. 2018;9(1):45–50.
  32. 32. Meena HS, Ram B, Meena PD. Growth, yield attributes and productivity of Indian mustard influenced by growth regulators. Indian J Agric Sci. 2020;90(4):123–8.
  33. 33. Tripathi MK, Chaturvedi S, Shukla DK. Yield components and their association in mustard. Plant Arch. 2011;11(2):689–92.
  34. 34. Davies PJ. Plant hormones: biosynthesis, signal transduction, action. Dordrecht: Springer; 2010.
  35. 35. Sheoran RK, Kumar A, Singh D. Dry matter accumulation and partitioning in mustard. J Crop Weed. 2014;10(6):55–59.
  36. 36. Rana DS, Rana KS, Shivay YS. Yield determinants in mustard under varying management practices. Ann Agric Res. 2019;40(2):87–92.
  37. 37. Taiz L, Zeiger E, Møller IM, Murphy A. Plant physiology and development. Sunderland (MA): Sinauer Associates; 2015.

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