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Research Articles

Can sulfur improve the fiber yield of jute?

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Pages 943-957 | Received 06 May 2021, Accepted 15 Feb 2022, Published online: 05 May 2022

References

  • Abdallah, M., L. Dubousset, F. Meuriot, P. Etienne, J. Avice, and A. Ourry. 2010. Effect of mineral sulphur availability on nitrogen and sulphur uptake and remobilization during the vegetative growth of Brassica napus L. Journal of Experimental Botany 61 (10):2635–46. doi: 10.1093/jxb/erq096.
  • Abrol, Y. P, and A. Ahmad. 2003. Sulphur in plants. Springer: Dordrecht. doi: 10.1007/978-94-017-0289-8_7.
  • Alam, M. M., S. A. Ahmad, A. H. Khan, and A. Hoque. 1970. Nutrient uptake, harvest and addition by crops under different cropping sequences. Dhaka University Journal of Biological Sciences 20 (1):81–9. doi: 10.3329/dujbs.v20i1.8874.
  • Basumatary, A., J. J. Shangne, K. N. Das, and D. Bhattacharyya. 2018. Impact of sulfur fertilization on distribution of sulfur fractions and use efficiency in blackgram in subtropical acidic soil of Assam, India. Journal of Plant Nutrition 41 (11):1436–43. doi: 10.1080/01904167.2018.1457683.
  • Bohn, H. L. R. A. Myer, and G. A. O’Connor. 2001. Soil chemistry. 3rd ed. Wiley: New York.
  • Biswas, B., D. C. Ghosh, M. K. Dasgupta, N. Trivedi, J. Timsina, and A. Dobermann. 2006. Integrated assessment of cropping systems in the eastern Indo-Gangetic plains. Field Crops Research 99 (1):35–47. doi: 10.1016/j.fcr.2006.03.002.
  • Black, C. A. 1965. Methods of soil analysis Part 2. Madison: American Society of Agronomy Inc.
  • Carciochi, W. D., F. Salvagiotti, A. Pagani, N. I. R. Calvo, M. Eyherabide, H. R. S. Rozas, and I. A. Ciampitti. 2020. Nitrogen and sulfur interaction on nutrient use efficiencies and diagnostic tools in maize. European Journal of Agronomy 116:126045. doi: 10.1016/j.eja.2020.126045.
  • Chang, E. H., R. S. Chung, and Y. W. Tsai. 2007. Effect of application rates of organic fertilizers on soil enzymes activities and microbial counts. Soil Science and Plant Nutrition 53 (2):132–40. doi: 10.1111/j.1747-0765.2007.00122.x.
  • Dutt, A. K. 1962. Sulphur deficiency of jute. Tropical Agriculture (Trinidad) 39 (1):73–6.
  • Evans, C. A., and C. C. Rost. 1945. Total organic sulphur and humus sulphur of Minnesota soils. Soil Science 59:125–35.
  • Elliott, D., D. Reuter, G. Reddy, and R. Abbott. 1997. Phosphorus nutrition of spring wheat (Triticum aestivum L.). 1. Effects of phosphorus supply on plant symptoms, yield, components of yield, and plant phosphorus uptake. Australian Journal of Agricultural Research 48 (6):855–68. doi: 10.1071/A96159.
  • Fageria, N. K. V. C. Baligar, and C. Jones. 1997. Growth and mineral nutrition of field crops, 494. 2nd ed. New York: Marcel Dekker, Inc.
  • Gomez, K. A., and A. A. Gomez. 1984. Statistical procedures for agricultural research. Hoboken, NJ: John Wiley and Sons.
  • Haneklaus, S. E. Bloem, and E. Schnug. 2007. Sulfur interactions in crop ecosystems. In Sulfur in plants an ecological perspective, ed. M. J. Hawkesford and L. J. De Kok, 17–58. Germany: Springer. doi: 10.1007/978-1-4020-5887-5_2.
  • Hocking, P. J., P. J. Randall, and A. Pinkerton. 1987. Sulphur nutrition of sunflower as affected by nitrogen supply; Effect on vegetative growth, the development of yield components and seed yield and quality. Field Crops Research 16 (2):157–75. doi: 10.1016/0378-4290(87)90005-0.
  • Hussain, S. G. 1990. Sulphur in Bangadesh agriculture. Sulphur Agriculture 14:25–8.
  • Jaggi, R. C., M. S. Aulakh, and R. Sharma. 2005. Impacts of elemental S applied under various temperature and moisture regimes on pH and available P in acidic, neutral and alkaline soils. Biology and Fertility of Soils 41 (1):52–8. doi: 10.1007/s00374-004-0792-9.
  • Kour, S., V. K. Jalali, and S. Arora. 2007. Vertical distribution of forms of sulphur in some sub-tropical zone soils of Jammu region. Environment and Ecology 25:708–12.
  • Kour, S., V. K. Jalali, S. Arora, A. S. Bali, and M. Gupta. 2014. Direct and residual effect of sulphur fertilization on yield, uptake and use efficiency in Indian mustard and succeeding rice crop. Journal of Plant Nutrition 37 (14):2291–301. doi: 10.1080/01904167.2014.920389.
  • Kumar, M., S. R. Singh, S. K. Jha, A. Shamna, S. P. Mazumdar, A. Singh, D. K. Kundu, and B. S. Mahapatra. 2014. System productivity, profitability and resource use efficiency of jute (Corchorus olitorious) based cropping systems in the eastern Indo-Gangetic plain. Indian Journal of Agricultural Sciences 84 (2):33–7.
  • Kumar, S, and A. K. Ghorai. 2017. Sulphur is crucial for jute production. www.krishisewa.com.
  • Kumar, S., S. K. Tewari, and S. S. Singh. 2011. Effect of sources and levels of sulphur on growth yield and quality of sunflower. Indian Journal of Agronomy 56 (3):242–6.
  • Kumar, V., and M. Singh. 1980. Interactions of sulfur, phosphorus and molybdenum in relation to uptake and utilization of phosphorus by soybean. Soil Science 130:26–31.
  • Magorzata, S., and Z. Lucyna. 2009. Effect of different rates and forms of sulphur on content of available phosphorus in soil. Journal of Elementology 14:795–803.
  • Mazumdar, S. P., D. K. Kundu, A. R. Saha, B. Majumdar, R. Saha, A. K. Singh, D. Barman, D. Ghosh, R. Dey, M. S. Behera, et al. 2018. Carbon and nutrient dynamics under long-term nutrient management in tropical rice-wheat-jute system. Archives of Agronomy and Soil Science 64 (11):1595–607. doi: 10.1080/03650340.2018.1446521.
  • Mehmood, M. Z., O. Afzal, M. Ahmed, G. Qadir, A. M. Kheir, M. A. Aslam, A. M. U. Din, I. Khan, M. J. Hassan, T. A. Meraj, et al. 2021. Can sulphur improve the nutrient uptake, partitioning, and seed yield of sesame? Arabian Journal of Geosciences 14 (10):865. doi: 10.1007/s12517-021-07229-6.
  • Mengel, K, and E. A. Kirkby. 2001. Principles of plant nutrition. Dordrecht: Kluwer Academic.
  • Motior, M., A. Abdou, F. H. Al Darwish, K. A. El-Tarabily, M. A. Awad, F. Golam, and M. Sofian-Azirun. 2011. Influence of elemental sulfur on nutrient uptake, yield and quality of cucumber grown in sandy calcareous soil. Australian Journal of Crop Science 5:1610–5.
  • Morris, R. J. 2007. Sulphur in agriculture: International perspective. In Proceedings TSI-FAI-IFA Symposium cum Workshop on “Sulphur in Balanced Fertilization, eds. R. K. Tewatia, R. S. Choudhary, and S. P. Kalwe, 1–7. New Delhi: The Fertilizer Association of India.
  • Muchow, R., and R. Davis. 1988. Effect of nitrogen supply on the comparative productivity of maize and sorghum in a semi-arid tropical environment radiation interception and biomass accumulation. Field Crops Research 18 (1):17–30. doi: 10.1016/0378-4290(88)90056-1.
  • Ray, P. K., A. K. Jana, D. K. Maitra, M. N. Saha, J. Chaudhury, S. Saha, and A. R. Saha. 2000. Fertilizer prescription on soil test basis for jute, rice and wheat in a typic Ustrochrept. Journal of the Indian Society of Soil Science 48:79–84.
  • Saha, S., A.R. Saha and P. K. Ray. 1998. Evaluation of extractants for available sulfur and its critical limit in jute growing soils of West Bengal. Indian Agriculturist 42 (4): 241–246.
  • Sarkar, S., and B. Majumdar. 2016. Present status of jute production and technological and social interventions needed for making jute agriculture sustainable and remunerative in West Bengal. Indian Journal of Natural Fibres 3 (1):23–36.
  • Singh, N., and M. Singh. 1980. Effect of sulphur and selenium on nitrogen, sulphur and selenium and phosphorus in raya (Brassica juncea Coss) grown in some soils. Journal of the Indian Society of Soil Science 28(4): 491-500.
  • Singh, R., P. Parihar, and S. M. Prasad. 2018. Sulfur and calcium simultaneously regulate photosynthetic performance and nitrogen metabolism status in As-challenged Brassica juncea L. seedlings. Frontiers in Plant Science 9:772. doi: 10.3389/fpls.2018.00772.
  • Singh, S. R., D. K. Kundu, M. K. Tripathi, P. Dey, A. R. Saha, M. Kumar, I. Singh, and B. S. Mahapatra. 2015. Impact of balanced fertilization on nutrient acquisition, fibre yield of jute and soil quality in New Gangetic alluvial soils of India. Applied Soil Ecology 94:24–34.
  • Singh, Y. V., D. K. Singh, P. K. Sharma, R. K. Singh, and P. Singh. 2014. Interaction effect of phosphorus and sulphur on the growth, yield and mineral composition of mungbean (Vigna radiata L.). Journal of the Indian Society of Soil Science 62 (2):179–83.
  • Srinivasarao, C., A. N. Ganeshamurthy, M. Ali, R. N. Singh, and K. K. Singh. 2004. Sulphur fractions, distribution, and their relationships with soil properties in different soil types of major pulse-growing regions of India. Communications in Soil Science and Plant Analysis 35 (19-20):2757–69. doi: 10.1081/CSS-200036435.
  • Steffenson, D. 1954. Irregularities of chromosome division in Tradescantia grown on low sulfate. Experimental Cell Research 6:554–6.
  • Takkar, P. N. 1987. Economics of S fertilization use in India. In Proceedings of Symposium on fertilizer-S Requirements and Sources in Developing Countries of Asia and Pacific, ADINAP/FAO/The Sulphur Institute and KIAR, Bangkok, 123–37.
  • Takahashi, H., S. Kopriva, M. Giordano, K. Saito, and R. Hell. 2011. Sulfur assimilation in photosynthetic organisms: Molecular functions and regulations of transporters and assimilatory enzymes. Annual Review of Plant Biology 62:157–84. doi: 10.1146/annurev-arplant-042110-103921.
  • Tandon, H. L. S. 1993. Methods of analysis of soils, plants, water and fertilizers. New Delhi: Fertilizer Development and Consultation Organization.
  • Tandon, H. L. S. 2011. Sulphur in soils, crops and fertilizers, 204. New Delhi, India: Fertilizer Development and Consultation Organization.
  • Tripathi, N. 2003. Role of FCO in promoting quality secondary and micronutrients. Fertiliser News 48:111–4.
  • Tripathi, D., and K. Singh. 1992. Vertical distribution of sulphur in representative soil groups of Himachal Pradesh. Journal of the Indian Society of Soil Science 40:447–53.
  • Watson, D. l. 1947. Comparative physiological studies on the growth of field crops. I. Variation in net assimilation rate and leaf area between species and varieties and within and between yea rs. Annals of Botany 11 (1):41–76. doi: 10.1093/oxfordjournals.aob.a083148.
  • Williams, C. H., and A. Steinberg. 1959. Soil sulphur fractions as chemical indices of available sulphur in some Australian soils. Australian Journal of Agricultural Research 10 (3):340–52. doi: 10.1071/AR9590340.

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