Enhancing drought tolerance in Indian mustard (Brassica juncea) through microbial inoculants under varying irrigation regimes
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Keywords:
Irrigation, Microbes, Mustard, Relative water content, YieldAbstract
A field experiment was conducted during the winter (rabi) seasons of 2020–21, 2021–22 and 2022–23 at College of Agriculture, Sri Karan Narendra Agriculture University, Jobner, Rajasthan to identify the appropriate bacterial strains and irrigation levels to enhance drought tolerance and productivity in Indian mustard [Brassica juncea (L.) Czern.]. The experiment was laid out in a split plot design assigning irrigation treatments (no irrigation, 50% deficit irrigation and normal level of irrigation) in main plots and microbes (MRD-17, MKS-6, Biophos and Biophos+, CRIDAMI-I, CRIDA MI-II and control) in sub plots. Results demonstrated that normal level of irrigation (2 irrigations) yielded superior outcomes in terms of plant height, dry matter accumulation, yield attributes, viz. seed yield (1542 kg/ha), stover yield (3677 kg/ha), relative water content (70.72%), protein content (18.1%), oil content (38.7%), water use efficiency (7.50 kg/ha-mm), net returns (₹52529/ha) and B:C ratio (2.07). This was significantly higher compared to 50% deficit irrigation and no irrigation treatments. Among microbial inoculants, CRIDA MI-II exhibited the highest impact on growth and yield attributes, viz. seed yield (1312 kg/ha), stover yield (3262 kg/ha), protein content (17.2%), water use efficiency (5.88 kg/ha-mm), net returns (₹42294/ha) and B:C ratio (1.72). Notably, it was statistically comparable to the effects of CRIDA MI-I and Biophos and Biophos+ across most parameters. The comprehensive results of this study advocated the strategic implementation of both optimal irrigation practices and microbial inoculants as a sustainable approach to enhance productivity and drought tolerance in Indian mustard, particularly in the arid and semi-arid regions of Rajasthan.
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References
A.O.A.C. 1960. Official Method of Analysis, 18th edn. Association of Official Agricultural Chemists, Washington.
Arnon D I. 1949. Copper enzymes in isolated chloroplast. Polyphenol oxidase in Beta vulgaris. Plant Physiology 24: 1–15.
Anonymous. 2022. Government of India, Ministry of Agriculture and Farmers Welfare, Department of Agriculture, Cooperation and Farmers Welfare, Directorate of Economics and Statistics. pp. 52–53.
Asha A D, Nivetha N, Krishna G K, Lavanya A K, Vikram K V and Paul S. 2021. Interactive effect of rhizobacteria and drought stress on physiological attributes of mustard. The Indian Journal of Agricultural Sciences 91(5): 734–38.
Barrs H D and Weatherley P E. 1962. A re-examination of the relative turgidity technique for estimating water deficits in leaves. Australian Journal of Biological Sciences 15: 413–28.
Bharti V, Nandan R, Kumar V and Panday I B. 2007. Effect of irrigation levels on yields, water use efficiency and economics of winter maize (Zea mays L.) based intercropping systems. Indian Journal of Agronomy 52(1): 27–30.
Bodner G, Nakhforoosh A and Kaul H. 2015. Management of crop water under drought: A review. Agronnomy for Sustainable Development 35: 401–42.
Fisher R A. 1950. Statistical Methods for Research Workers. Oliver and Boyd, Edinburg, London.
Kavamura V N, Santos S N, Da Silva J L, Parma M M, Ávila L A, Visconti A, Zucchi T D, Taketani R G, Andreote F D and De Melo I S. 2013. Screening of Brazilian cacti rhizobacteria for plant growth promotion under drought. Microbiological Research 168: 183–91.
Maurya S K, Kalhapure A, Singh N, Kumar A, Yadav P, Kumar M and Maurya B K. 2022. Growth and yield response of different Indian mustard varieties to irrigation scheduling. Biological Forum-An International Journal 14(3): 434–39.
Mayak S, Tirosh T and Glick B R. 2004. Plant growth promoting bacteria confer resistance in tomato plants to salt stress. Plant Physiology and Biochemistry 42: 565–72.
Meena K K, Sorty A M, Bitla U M, Choudhary K, Gupta P, Pareek A, Singh D P, Prabha R, Sahu P K, Gupta V K and Singh H B. 2017. Abiotic stress responses and microbe mediated mitigation in plants: the omics strategies. Frontiers in Plant Science 8: 172.
Mishra J, Singh R K, Yadav D, Sahoo S and Mishra A P. 2019. Quality of Indian mustard [Brassica juncea (L.) Czernj and Cosson] as influenced by tillage and irrigation frequency. Journal of Pharmacognosy and Phytochemistry 8(1): 2280–83.
Nivetha N, Kiruthika A, Asha A D, Lavanya A K, Vikram K V, Manjunatha B S and Paul S. 2020. Osmotolerant rhizobacteria improve seedling vigour and plant growth of mustard under water scarcity. International Journal of Current Microbiology and Applied Sciences 9(12): 1928–37.
Panse V G and Sukhatme P V. 1985. Statistical Methods for Agricultural Workers. ICAR, New Delhi.
Rai R K, Singh V P and Upadhyay A. 2017. Irrigation scheduling. Planning and Evaluation of Irrigation Projects, pp. 385–412. Elsevier.
Shivran H, Kumar S, Tomar R and Chouhan G V. 2018. Effect of irrigation schedules on productivity and water use efficiency in Indian mustard (Brassica juncea L.). International Journal of Chemical Studies 6(4): 15–17.
Singh S P, Mahapatra B S, Pramanick B and Yadav V R. 2021. Effect of irrigation levels, planting methods and mulching on nutrient uptake, yield, quality, water and fertilizer productivity of field mustard (Brassica rapa L.) under sandy loam soil. Agricultural Water Management 244: 106539.
Singh S M, Shukla A, Choudhary S, Semwal M P, Bhushan C, Negi M S and Mahapatra B S. 2017. Enhancing water-use efficiency of Indian mustard (Brassica juncea) under deficit and adequate irrigation scheduling with hydrogel. International Journal of Basic and Applied Agricultural Research 15: 1–4.
Viets F G. 1966. Increasing water use efficiency by soil management. Plant Environment and the Efficient Water Use. Pierre W H, Kirkham D, Pesek J and Shaw R (Eds). The Soil Science Society of America, Madison, US.
Yadav M, Yadav K K, Singh D P, Lakhawat S S and Vyas A K. 2021. Effect of irrigation frequency and zinc fertilization on growth and yield of Indian mustard (Brassica juncea L). The Pharma Innovation Journal 10(9): 1427–31.
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