219
Views
3
CrossRef citations to date
0
Altmetric
Research Articles

Influence of zinc fertilization levels and frequencies on crop productivity, zinc uptake and buildup of soil zinc in maize–wheat system

, , ORCID Icon &
Pages 1774-1785 | Received 25 Nov 2020, Accepted 09 Feb 2021, Published online: 21 Jan 2022

References

  • Abbas, G., G. Hassan, M. U. A. Ali, M. Aslam, and Z. Abbas. 2010. Response of wheat to different doses of ZnSO4 under Thal desert environment. Pakistan Journal of Botany 42 (6):4079.
  • Adhikari, T., and R. K. Rattan. 2007. Distribution of zinc fractions in some major soils of India and the impact on nutrition of rice. Communications in Soil Science and Plant Analysis 38 (19-20):2779–98. doi: https://doi.org/10.1080/00103620701663032.
  • Agbenin, J. O. 2003. The distribution and transformation of iron and manganese in soil fractions in a savanna Alfisol under continuous cultivation. Nutrient Cycling in Agroecosystems 66 (3):259–70. doi: https://doi.org/10.1023/A:1024453315497.
  • Alloway, B. J. 2004. Zinc in soils and crop nutrition, 1–116. Brussels: IZA Publications, International Zinc Association.
  • Behera, S. K., and D. Singh. 2009. Effect of 31 years of continuous cropping and fertilizer use on soil properties and uptake of micronutrient by maize (Zea mays) – wheat (Triticum aestivum) system. Indian Journal of Agricultural Sciences 79:264–7.
  • Behera, K. S., D. Singh, B. S. Dwivedi, S. Singh, S. Kumar, and D. S. Rana. 2008. Distribution of fractions of zinc and their contribution towards availability and plant uptake of zinc under long-term maize and wheat cropping on an inceptisol. Soil Research 46 (1):83–9. doi: https://doi.org/10.1071/SR07073.
  • Brennan, R. F., M. D. A. Bolland, and K. H. M. Siddique. 2001. Responses of cool-season grain legumes and wheat to soil-applied zinc. Journal of Plant Nutrition 24 (4-5):727–41. doi: https://doi.org/10.1081/PLN-100103666.
  • Cakmak, I., and E. Hoffland. 2012. Zinc for the improvement of crop production and human health. Plant and Soil 361 (1-2):1–2. doi: https://doi.org/10.1007/s11104-012-1504-0.
  • Chao, T. T., and L. Zhou. 1983. Extraction techniques for selective dissolution of amorphous iron oxides from soils and sediments. Soil Science Society of America Journal 47 (2):225–32. doi: https://doi.org/10.2136/sssaj1983.03615995004700020010x.
  • Chao, T. T. 1972. Selective dissolution of manganese oxides from soil and sediments with acidified hydroxylamine hydrochloride. Soil Science Society of America Journal 36 (5):764–8. doi: https://doi.org/10.2136/sssaj1972.03615995003600050024x.
  • Chitdeshwari, T., and R. Krishnaswamy. 1998. Effect of zinc and zinc rich organic manures on the available micronutrients’ status in rice soil. Advances in Plant Sciences 11:211–9.
  • Fageria, N., V. Baligar, and R. Clark. 2002. Micronutrients in crop production. Advances in Agronomy 77:185–268.
  • Faisal, N., and F. Muhammad. 2019. Application of micronutrients in rice-wheat cropping system of South Asia. Rice Science 26:356–71.
  • Husain, F. M., I. Ahmad, M. H. Baig, M. S. Khan, M. S. Khan, I. Hassan, and N. A. Al-Shabib. 2016. Broad-spectrum inhibition of AHL-regulated virulence factors and biofilms by sub-inhibitory concentrations of ceftazidime. RSC Advances 6 (33):27952–62. doi: https://doi.org/10.1039/C6RA02704K.
  • Issac, R. A., and J. D. Kerber. 1971. Atomic absorption and flame photometry: Techniques and uses in soil, plant and water analysis. In Instrumental methods for analysis of soil and plant tissue, 17–37. Madison, Wisconsin: Soil Science Society of America–Agronomy Society of America, Inc.
  • Iwasaki, K., G. Yoshikawa, and K. Sakurai. 1993. Fractionation of zinc in greenhouse soils. Soil Science and Plant Nutrition 39 (3):507–15. doi: https://doi.org/10.1080/00380768.1993.10419791.
  • Jackson, M. L. 1973. Soil chemical analysis, 38–56. New Delhi: Prentice-Hall, Private Limited.
  • Jahanzab, A., and S. Hussain. 2019. Zinc fractions in differently-textured soils of southern Punjab (Pakistan) and status of zinc in flag leaves of wheat. Journal of Global Innovations in Agricultural and Social Sciences 7:59-64. doi: https://doi.org/10.22194/JGIASS/7.853.
  • Jalali, M., and Z. V. Khanlari. 2008. Effect of aging process on the fractionation of heavy metals in some calcareous soils of Iran. Geoderma 143 (1-2):26–40. doi: https://doi.org/10.1016/j.geoderma.2007.10.002.
  • Jat, M. L., T. Satyanarayana, K. Majumdar, J. P. Tetarwal, R. K. Jat, and Y. S. Sharawat. 2013. Fertilizer best management practices for maize systems. Indian Journal of Fertilizers 9:80–94.
  • Jyothi, T. Y., Y. V. Shetyy, M. D. Kumar, and H. V. Rudramurthy. 2010. Distribution of zinc fractions in traditional arecanut garden soils of Karnataka. Environmental Ecology 28:1229–34.
  • Katyal, V., and B. Gangwar. 2000. Effect of frequency and levels of sulphur and zinc application on crop productivity of rice-rice system in east coast areas. Journal of Indian Society of Coastal Agricultural Research 18 (1):12–5.
  • Laik, R., S. K. Singh, V. Kumar, S. P. Singh, A. Shukla, Nidhi, and R. C. Yadav. 2019. Zinc fertilization in rice-wheat cropping system under upland calcareous soil. Journal of Plant Nutrition 42 (3):296–306. doi: https://doi.org/10.1080/01904167.2018.1482916.
  • Lindsay, W. L., and W. A. Norvell. 1978. Development of a DTPA soil test for zinc, iron, manganese and copper. Soil Science Society of America Journal 42 (3):421–8. doi: https://doi.org/10.2136/sssaj1978.03615995004200030009x.
  • Lindström, B. E. M., B. E. Frankow-Lindberg, A. S. Dahlin, M. Wivstad, and C. A. Watson. 2013. Micronutrient concentrations in common and novel forage species and varieties grown on two contrasting soils. Grass and Forage Science 68 (3):427–36. doi: https://doi.org/10.1111/gfs.12006.
  • Liu, D., W. Zhang, Y. Liu, X. Chen, and C. Zou. 2020. Soil application of zinc fertilizer increases maize yield by enhancing the kernel number and kernel weight of inferior grains. Frontiers in Plant Science 11:188. doi: https://doi.org/10.3389/fpls.2020.00188.
  • Manchanda, J. S., V. K. Nayyar, and I. M. Chibba. 2006. Speciation of exchangeable and crystalline Fe oxide bound Zn, Cu, Fe and Mn ions from calcareous soils during sequential fractionation. Chemical Speciation and Bioavailability 18 (1):27–37.
  • Merwin, H. D., and M. Peech. 1951. Exchangeability of soil potassium in sand, silt and clay fractions as influenced by the nature of complementary exchangeable cations. Soil Science Society of America Journal 15 (C):125–8. doi: https://doi.org/10.2136/sssaj1951.036159950015000C0026x.
  • Olsen, S. R., C. V. Cole, F. S. Watanabe, and L. A. Dean. 1954. Estimation of available phosphorus in soil by extraction with sodium bicarbonate. Washington, DC, United States: Department of Agriculture, Circular 939.
  • Priyanka, S. K., Sharma, and R. H. Meena. 2017. Fractionation and distribution of zinc under integrated nutrient management system on maize-wheat cropping system in Typic Haplustepts. Journal of Pharmacognosy and Phytochemistry 6 (6):2301–5.
  • Raja, M. E., and B. R. V. Iyengar. 1986. Chemical pools of zinc in some soils as influenced by sources of applied zinc. Journal of the Indian Society of Soil Science 34:97–105.
  • Richards, L. A. 1954. Diagnosis and improvement of saline and alkali soils. In Agriculture Hand Book No. 60, 7–33. USA: USDA.
  • Saha, S., B. Saha, T. Seth, S. Dasgupta, M. Ray, B. Pal, S. Pati, S. K. Mukhopadhyay, and G. Hazra. 2019. Micronutrients availability in soil–plant system in response to long-term integrated nutrient management under rice–wheat cropping system. Journal of Soil Science and Plant Nutrition 19 (4):712–24. doi: https://doi.org/10.1007/s42729-019-00071-6.
  • Shukla, A. K., P. K. Tiwari, A. Pakhare, and C. Prakash. 2016. Zn and Fe in soil, plant, animal and human health. Indian Journal of Fertilizers 12:133–49.
  • Shuman, L. M. 1991. Chemical forms of micronutrients in soils. In Micronutrients in agriculture, eds. J. J. Mortvedt, F. R. Cox, L. M. Shuman, and R. M. Welch, 113–44. Maidson, WI: Soil Science Society of America.
  • Soon, Y. K. 1994. Changes in forms of soil zinc after 23 years of cropping following clearing of a boreal forest. Canadian Journal of Soil Science 74 (2):179–84. doi: https://doi.org/10.4141/cjss94-025.
  • Subbiah, B. V., and G. L. Asija. 1956. A rapid procedure for estimation of available nitrogen in soils. Current Science 25:259–60.
  • Walkley, A., and Black. 1934. An examination of the degtjareff method for determination of soil organic method and a proposed modification of chromic acid titration method. Soil Science 37:29–39.
  • Warden, B. T., and H. M. Reisenauer. 1991. Fractionation of soil manganese forms important to plant availability. Soil Science Society of America Journal 55 (2):345–9. doi: https://doi.org/10.2136/sssaj1991.03615995005500020007x.
  • Yaseen, M. K., and S. Hussain. 2021. Zinc-biofortified wheat required only a medium rate of soil zinc application to attain the targets of zinc biofortification. Archives of Agronomy and Soil Science 67 (4):551–62. doi: https://doi.org/10.1080/03650340.2020.1739659.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.